Fish Karyotypes A Check List
Ryoichi Arai
Fish Karyotypes A Check List
Ryoichi Arai Doctor of Science Honorary permanent curator Department of Zoology, University Museum, University of Tokyo 7-3-1 Hongo, Bunkyo-ku, Tokyo 113-0033, Japan
[email protected]
Library of Congress Control Number: 2010936627 ISBN: 978-4-431-53876-9 Springer Tokyo Berlin Heidelberg New York This work is subject to copyright. All rights are reserved, whether the whole or part of the material is concerned, specifi fically the rights of translation, reprinting, reuse of illustrations, recitation, broadcasting, reproduction on microfi films or in other ways, and storage in data banks. The use of registered names, trademarks, etc. in this publication does not imply, even in the absence of a specific fi statement, that such names are exempt from the relevant protective laws and regulations and therefore free for general use. © Springer 2011 Printed in Japan Printed on acid-free paper Springer is a part of Springer Science+Business Media springer.com
Contents
Introduction ...................................................................................................................................
1
Availability of Fish Karyotypes ...................................................................................................
3
Fish Vouchering and Identification fi .............................................................................................
3
Classification fi of Extant Fishes .....................................................................................................
3
Historical Transition of Numbers of Karyotyped Species/Subspecies ...................................
6
Relationship Between Karyotype and Genome Size .................................................................
6
Cytogenetic Approach to Fish Systematics ................................................................................
25
Database of Karyotypes: How to Use the Database ..................................................................
26
References ........................................................................................................................................ 216 Journal List ...................................................................................................................................... 318 Index ................................................................................................................................................. 325
V
1
Introduction In many vertebrate groups, the study of karyotypes and genome size has contributed along with analyses of mitochondrial and nuclear gene sequences to the resolution of challenges in biology systematics and evolution. However, in fishes—the fi most diverse of all vertebrate groups—higher taxa traditionally have been classified fi largely by morphology and paleontology, with a much smaller input of cytogenetic information. In part, this is because karyotypes can be obtained only from living specimens, tissues, or cells, which makes it challenging to study the karyotypes of fishes that are diffi fi ficult to collect alive (e.g., deep-sea fishes). Of course, even fresh material provides no guarantee that reliable chromosome figures can be obtained easily. DNA sequence data are exerting an increasingly strong influence fl in modern fish systematics, for example, by leading to proposed challenges in the classifi fication of numerous higher taxa ranging from genera to orders. However, the most fruitful approach is certain to be one that involves synthetic analyses of morphology, molecular phylogenetics, comparative karyology, and genome size, rather than focusing on only one or a few of these sources of data. For example, although it may be very diffi ficult to establish homology of karyotypes analyzed by Giemsa staining and several banding methods among taxa, the polarity of karyotype states nonetheless can still be inferred by analysis of Robertsonian fusion/fi fission, tandem fusion, pericentric inversion, paracentric inversion, aneuploidy, or polyploidy in any monophyletic taxon, even when the polarity of DNA sequences is unclear. The role of cytogenetic data is likely to increase further because powerful new methods such as fluorescence in situ hybridization (FISH) (Phillips 2007: P-53) are implemented in fishes beyond model species (e.g., zebrafish, fi medaka, sticklebacks, and pufferfi fish). Given their limited scope, FISH data are not included here, but their future importance is clearly acknowledged. The purpose of this book is to facilitate the implementation of an integrative approach to fi fish systematics by providing karyotype information for 3,425 species/subspecies of extant jawless, cartilaginous, actinopterygian, and lobe-finned fi fishes. This presentation fills an important need, as fish karyotypes tend to be published not only in well-known and easily accessible journals, but also in museum journals of more regional significance fi or in other venues that are diffi ficult to obtain. Several books on fish chromosomes have been published in the past (Denton 1973: D-7; Chiarelli and Capanna 1973: C-1; Ojima 1983: O-73; Vasiliev 1985: V-72; Klinkhardt et al. 1995: K-114), but this volume represents the first in nearly 15 years and is the most comprehensive. Such an update is clearly warranted, given the historical growth in the numbers of karyotyped species/ subspecies listed in Table 1. 㪫㪸㪹㫃㪼㩷㪈㩷㩷㪟㫀㫊㫋㫆㫉㫀㪺㪸㫃㩷㫋㫉㪸㫅㫊㫀㫋㫀㫆㫅㩷㫆㪽㩷㫋㪿㪼㩷㫅㫌㫄㪹㪼㫉㫊㩷㫆㪽㩷㫂㪸㫉㫐㫆㫋㫐㫇㪼㪻㩷㫊㫇㪼㪺㫀㪼㫊㪆㫊㫌㪹㫊㫇㪼㪺㫀㪼㫊 㪘㫌㫋㪿㫆㫉㩿㫊㪀 㩷㩷㪰㪼㪸㫉 㩷㩷㪩㪼㪽㪼㫉㪼㫅㪺㪼㩷㫅㫆㪅 㪤㫐㫏㫀㫅㫀 㪧㪼㫋㫉㫆㫄㫐㫑㫆㫅㫋㫀㪻㪸 㪚㪿㫆㫅㪻㫉㫀㪺㪿㫋㪿㫐㪼㫊 㩷㩷㪟㫆㫃㫆㪺㪼㫇㪿㪸㫃㫀 㩷㩷㪜㫃㪸㫊㫄㫆㪹㫉㪸㫅㪺㪿㫀㫀 㪘㪺㫋㫀㫅㫆㫇㫋㪼㫉㫐㪾㫀㫀 㩷㩷㪚㫃㪸㪻㫀㫊㫋㫀㪸㩷 㩷㩷㪚㪿㫆㫅㪻㫉㫆㫊㫋㪼㫀 㩷㩷㪥㪼㫆㫇㫋㪼㫉㫐㪾㫀㫀 㩷㩷㩷㩷㪟㫆㫃㫆㫊㫋㪼㫀 㩷㩷㩷㩷㪫㪼㫃㪼㫆㫊㫋㪼㫀 㪪㪸㫉㪺㫆㫇㫋㪼㫉㫐㪾㫀㫀 㪫㫆㫋㪸㫃
㪛㪼㫅㫋㫆㫅 㪈㪐㪎㪊 㪛㪄㪎 㪋 㪎
㪧㪸㫉㫂 㪈㪐㪎㪋 㪧㪄㪍 㪉 㪍
㪦㫁㫀㫄㪸㩷㪼㫋㩷㪸㫃㪅 㪈㪐㪎㪍 㪦㪄㪉㪉 㪊 㪏
㪪㫆㫃㪸㩷㪼㫋㩷㪸㫃㪅 㪈㪐㪏㪈 㪪㪄㪏㪏 㪇 㪇
㪦㫁㫀㫄㪸 㪈㪐㪏㪊 㪦㪄㪎㪊 㪊 㪎
㪭㪸㫊㫀㫃㫀㪼㫍 㪈㪐㪏㪌 㪭㪄㪎㪉 㪌 㪈㪊
㪢㫃㫀㫅㫂㪿㪸㫉㪻㫋㩷㪼㫋㩷㪸㫃㪅㩷 㪈㪐㪐㪌 㪢㪄㪈㪈㪋 㪇 㪈㪋
㪘㫉㪸㫀 㪫㪿㫀㫊 㪹㫆㫆㫂 㪏 㪈㪋
㪈 㪈㪌
㪉 㪏
㪇 㪋
㪇 㪇
㪉 㪈㪊
㪉 㪈㪎
㪉 㪌㪉
㪉 㪍㪏
㪉 㪈
㪉 㪋
㪉 㪇
㪋 㪌
㪎 㪎
㪍 㪈㪉
㪎 㪈㪉
㪎 㪉㪈
㪉 㪋㪋㪍 㪊 㪋㪏㪈
㪉 㪌㪇㪌 㪈 㪌㪊㪉
㪉 㪋㪈㪎 㪇 㪋㪊㪍
㪉 㪎㪐㪏 㪈 㪏㪈㪇
㪊 㪈㪃㪇㪊㪌㪁 㪉 㪈㪃㪇㪎㪐㪁
㪈 㪈㪃㪉㪌㪏 㪌 㪈㪃㪊㪈㪏
㪊 㪉㪃㪈㪏㪉㪁 㪌 㪉㪃㪉㪎㪎㪁
㪊 㪊㪃㪉㪐㪍 㪍 㪊㪃㪋㪉㪌
㪁㪪㫐㫅㫆㫅㫐㫄㫆㫌㫊㩷㫊㫇㪼㪺㫀㪼㫊㩷㫎㪼㫉㪼㩷㪺㫆㫌㫅㫋㪼㪻㩷㪸㫊㩷㪻㫀㪽㪽㪼㫉㪼㫅㫋㩷㫊㫇㪼㪺㫀㪼㫊㪅
R. Arai, Fish Karyotypes © Springer 2011
2 Substantial revisions to the species names and higher taxonomy of many fi fishes in the intervening years also make an updated compendium necessary. In this book, synonymies are circumvented by providing both the name reported in the original karyotype papers and currently recognized names. In particular, the classification fi of taxa above the species level follows Nelson (2006: N-68), and species names conform to the up-to-date list in the Catalogue of Fishes by Eschmeyer (http://research.calacademy.org/redirect?url=http://researcharchive.calacademy.org/ research/ichthyology/catalog/fishcatmain.asp, fi E-13). The classifi fication of chromosomes followed Levan et al. (1964: L-25): chromosomes were classifi fied to metacentrics (M), submetacentrics (SM), subtelocentrics (ST), and acrocentrics (A). As shown in Table 1 (Levan et al. 1964), M, m, sm, st, t, and T do not denote chromosomes but rather centromeric position; e.g., acrocentrics is characterized by t. Levan et al. (1964) do not propose abbreviations for chromosomes. Two kinds of abbreviations for chromosomes, M-SM-ST-A and m-sm-st-t(-T), have been adopted in karyotypes. I adopt M-SM-ST-A because chromosome classification fi can be differentiated from centromeric position by these abbreviations and thus the problematic treatment of T in the other system can be avoided. In addition to providing data for extant fishes, fi ancestral chromosome numbers (ACN = NAN sensu Arai and Nagaiwa 1976: A-64) are proposed in this book. To date, karyotype data have been made available for 53 orders (84% of the known total) and 269 families (52% of total). In addition, genome size has been reported in 52 orders (83%) and 264 families (51%), which are available in standardized form as part of the Animal Genome Size Database (http://www.genomesize.com, G-85). As a result, it is possible to compare these two characters, at least at the family level (Tables 2, 3). In some cases, a given karyotype consists of chromosomes that cannot easily be distinguished as either SM or ST, such that different authors may report different information. For example, the arm number (NF1) of Oncorhynchus keta (2n = 74) is reported as 100 in Sasaki et al. (1968: S-14) versus 102 in Ueda (1985: U-72), and the NF2 of Alburnus alburnus (2n = 50) is given as 92 in Cataudella et al. (1977: C-34) versus 86 in Hafez et al. (1978: H-3). These different reports on karyotypes between conspecific fi populations were included in the database (Tables 4–7) without comment, although it should be noted that these differences may derive from artifacts of preparation technique or taxonomic problems, rather than representing real polymorphisms. If so, then it will be important to resolve these discrepancies before meaningful comparisons can be made. Similarly, there may be issues relating to differences in reported karyotypes resulting from different degrees of chromosome condensation, to the lack of a uniform terminology among authors, or even to some miscalculations (number of arms, NOR position, etc.). Some examples of these sources of error were detected when examining the literature; e.g., the same researcher(s) have at times defi fined M/SM as two-arm chromosomes in some taxa, but M/SM/ST as two-arm chromosomes in other taxa. To prevent such confusion, these two-arm definitions fi were differentiated in the present book; i.e., NF1 means M/SM as two-arm chromosomes and NF2 means M/SM/ST as two-arm chromosomes. There are several fundamental questions that remain to be answered with regard to phylogenetic karyology in fi fishes. For example: (1) Why is polyploidy in teleost fishes only observed in freshwater species and not in marine species? (2) What is the phylogenetic significance fi of differences in the number and location of NORs as shown by different banding methods (especially by the FISH method with 18S rDNA and 5S rDNA probes)? (3) In cases in which both large and small B chromosomes have been reported, are both, neither, or only the large B chromosomes to be counted in the diploid chromosome number? Or should this be considered on a case-by-case basis? (4) What is the biological significance fi of microchromosomes, and what is their relationship (if any) with B chromosomes? (5) Can sex chromosomes be differentiated in more species by using FISH methods with probes of genes specific fi to sex chromosomes? Many individuals helped me in various ways with the preparation of this book. For papers on karyotypes, I would like to thank Ana Lucia Dias, Eliana Feldberg, Pedro Manoel Galetti, Jr., John R. Gold, Anisur Rahman Khuda-Bukhsh, Naresh Sahebrao Nagpure, Claudio de Oliveira, Gento Shinohara, Akihiko Shinomiya, Akinori Takai, Toru Taniuchi, Takayoshi Ueda, Han-lin Wu, and
3 numerous researchers who sent kindly me copies of their paper(s). I also wish to express my sincere gratitude to Petr Ráb, who plowed through the whole manuscript and gave me valuable comments, and to T. Ryan Gregory for improving the English text.
Availability of Fish Karyotypes Karyotypes have been reported for 3,425 species/subspecies of fishes fi (including jawless, cartilaginous, ray-finned, fi and lobe-fi finned fishes) (see Table 1). This total represents a coverage of about 12.2% of extant fish diversity (62 orders, 515 families, and 27,977 species); however, these are not sampled evenly from among fish groups and instead are biased toward freshwater taxa such as the Cypriniformes, Characiformes, Siluriformes, Cyprinodontiformes, and Cichlidae in the Perciformes. Specifically, fi numbers of karyotyped species/subspecies are 747 (21.8%) in Cypriniformes, 341 (10.0%) in Characiformes, 362 (10.6%) in Siluriformes, 345 (10.1%) in Cyprinodontiformes, and 130 (3.8%) in Cichlidae (Perciformes). On the other hand, 4 orders (Orectolobiformes, Echinorhiniformes, Pristiophoriformes, and Pristiformes) and 30 families in cartilaginous fishes fi and 5 orders (Albuliformes, Saccopharyngiformes, Ateleopodiformes, Lampriformes, and Polymixiiformes) and 216 families in actinopterygian fishes fi currently lack any karyotype data. Of course, relative coverage depends on the number of recognized taxa, which has been updated signifi ficantly in recent times consequent to molecular analyses that may or may not reflect fl undue infl flation (Nelson 2006: N-68; Kottelat and Freyhof 2007: K-130).
Fish Vouchering and Identification To verify the identification fi of fishes included in karyotype studies, voucher specimens should be deposited in a museum, curated university collection, or another appropriate institute. Unfortunately, vouchered specimens are not available for most species for which karyotypes have been reported, meaning that their initial identification fi cannot be confi firmed. Moreover, there are many papers in which the localities of material fishes fi purchased from fish dealers were not described, which further increases the prospect of taxonomic errors. This problem is especially relevant when the classifi fication of a taxon in question has been revised, making it diffi ficult to link old and new names. For example, two different karyotypes were reported in a labrid, Pseudolabrus japonicus (Arai and Koike 1980: A-75; Ojima and Kashiwagi 1979: O-27). Thereafter, Pseudolabrus japonicus was separated to two different species, P. eosthinus and P. sieboldi by revisional study of P. japonicus (Mabuchi and Nakabo 1997: M-1). By examination of P. japonicus material deposited at a museum, it was known that the two karyotypes corresponded to these two different species (Mabuchi et al. 2002: M-2).
Classification of Extant Fishes Fish systematics has developed greatly during the past 10 years, mainly based on molecular phylogenetic studies. Although results in molecular phylogenetics are not always agreed upon by all researchers, it is necessary that a consistent taxonomic system be used in a database such as this. In this regard, the higher taxonomic classifi fication proposed by Nelson (2006: N-68) has been used with the following updates: Orders Batrachoidiformes and Lophiiformes were changed from the superorder Paracanthopterygii to the superorder Acanthopterygii (Miya et al. 2003, 2005: M-138, 139). Although polyphyly of the order Gasterosteiformes and the suborder Labroidei (order Perciformes) has been reported (Kawahara et al. 2008: K-105; Mabuchi et al. 2007: M-17) and
4 Stylephoriformes (Miya et al. 2007: M-140), close relationship between Alepocephaliformes and Otocephala (Lavoué et al. 2008: L-24), and Gobiiformes (Thacker 2009: T-63) were proposed, these hypotheses were treated as pending problems in this book. The higher-level classification fi used here is as follows: Class Myxini ................................................................................... Order Myxiniformes .................................................
8, 28 8, 28
Class Petromyzontida .................................................................... Order Petromyzontiformes ......................................
8, 29 8, 29
Class Chondrichthyes .................................................................... Subclass Holocephali ................................................................ Order Chimaeriformes ............................................. Subclass Elasmobranchii .......................................................... Order Heterodontiformes ........................................ Order Orectolobiformes .......................................... Order Lamniformes ................................................. Order Carcharhiniformes ........................................ Order Hexanchiformes ............................................ Order Echinorhiniformes ........................................ Order Squaliformes .................................................. Order Squatiniformes .............................................. Order Pristiophoriformes ........................................ Order Torpediniformes ............................................ Order Pristiformes ................................................... Order Rajiformes ...................................................... Order Myliobatiformes ............................................
9, 30 9 9, 30 9 9, 30 9 9, 30 9, 31 9, 32 9 10, 32 10, 32 10 10, 33 10 10, 33 10, 34
Class Actinopterygii ...................................................................... Subclass Cladistia ...................................................................... Order Polypteriformes ............................................. Subclass Chondrostei ................................................................ Order Acipenseriformes .......................................... Subclass Neopterygii ................................................................. Division Holostei ..................................................................... Order Lepisosteiformes ............................................ Order Amiiformes .................................................... Division Teleostei .................................................................... Subdivision Osteoglossomorpha ......................................... Order Hiodontiformes ............................................. Order Osteoglossiformes ......................................... Subdivision Elopomorpha ................................................... Order Elopiformes .................................................... Order Albuliformes .................................................. Order Anguilliformes ............................................... Order Saccopharyngiformes ................................... Subdivision Otocephala (= Ostarioclupeomorpha) .......... Superorder Clupeomorpha Order Clupeiformes ................................................. Superorder Ostariophysi Order Gonorynchiformes ........................................
11, 36 11 11, 36 11 11, 37 11 11 11, 38 11, 38 11 11 11, 38 11, 39 11 11, 40 11 11, 40 12 12 12, 43 12, 44
5 Order Cypriniformes ............................................... Order Characiformes ............................................... Order Siluriformes ................................................... Order Gymnotiformes ............................................. Subdivision Euteleostei ........................................................ Superorder Protacanthopterygii Order Argentiniformes ............................................ Order Osmeriformes ................................................ Order Salmoniformes ............................................... Order Esociformes ................................................... Superorder Stenopterygii Order Stomiiformes ................................................. Superorder Ateleopodomorpha Order Ateleopodiformes .......................................... Superorder Cyclosquamata Order Aulopiformes ................................................. Superorder Scopelomorpha Order Myctophiformes ............................................ Superorder Lampriomorpha Order Lampriformes ................................................ Superorder Polymixiomorpha Order Polymixiiformes ............................................ Superorder Paracanthopterygii ....................................... Order Percopsiformes .............................................. Order Gadiformes ..................................................... Order Ophidiiformes ............................................... Superorder Acanthopterygii ............................................ Series Mugilomorpha Order Mugiliformes ................................................. Series Atherinomorpha Order Atheriniformes .............................................. Order Beloniformes .................................................. Order Cyprinodontiformes ..................................... Series Percomorpha Order Stephanoberyciformes .................................. Order Beryciformes .................................................. Order Zeiformes ....................................................... Order Gasterosteiformes ......................................... Order Batrachoidiformes ......................................... Order Synbranchiformes ......................................... Order Scorpaeniformes ........................................... Order Perciformes .................................................... Order Pleuronectiformes ......................................... Order Lophiiformes .................................................. Order Tetraodontiformes ........................................ Class Sarcopterygii ........................................................................ Subclass Coelacanthimorpha ................................................... Order Coelacanthiformes ........................................ Subclass Dipnotetrapodomorpha ........................................... Order Ceratodontiformes ........................................
12, 45 13, 78 14, 96 15, 117 15 15, 119 15, 120 15, 121 15, 128 15, 128 16 16, 129 16, 130 16 16 16 16, 131 16, 131 17, 132 17 17, 133 17, 134 17, 135 17, 137 18, 152 18, 152 18, 153 18, 154 18, 155 18, 155 19, 157 19, 163 23, 209 23, 212 23, 212 24, 215 24 24, 215 24 24, 215
6 Genus- and species-level designations given here are those presented by Eschmeyer (2009: E-13). Again, there have been many suggested changes to fish taxonomy at this level as well. For example, in European cyprinid fishes, fi many species previously placed in Leuciscus are now in the genera Squalius, Telestes, and Petroleuciscus, and many species previously placed in Chondrostoma are now in the genera Protochondrostoma, Pseudochondrostoma, Parachondrostoma, Achondrostoma, and Iberochondrostoma (Kottelat and Freyhof 2007: K-130). Changes such as these are noted in the karyotype database (Tables 4–7).
Historical Transition of Numbers of Karyotyped Species/Subspecies The number of karyotyped species/subspecies has increased rapidly since the early 1970s. For example, in 1973 karyotypes were available for 481 species/subspecies; in 1985, 1,318 species/ subspecies had been karyotyped; and at the time of this writing, data exist for 3,425 species/subspecies (see Table 1). Since the last compendium in 1995 (K-114), the number of karyotyped taxa in Elasmobranchii, Chondrostei, and Teleostei increased but that in Petromyzontida, Holocephali, Cladistia, and Holostei did not increase. In some cases, an increase in the number of karyotyped taxa in Elasmobranchii and Teleostei has been caused by the erection of numerous additional taxa and through revised techniques for chromosome preparation (Klinkhardt 1991: K-79).
Relationship Between Karyotype and Genome Size Relationships between karyotypes and genome size in families were also explored (see Tables 2, 3). Sources of karyotypes and genome size were usually different. Data of karyotypes and genome size were extracted from Tables 4–7 and the up-to-date list of Gregory (www.genomesize.com, G-85). As with karyotype data, there are signifi ficant gaps in the fish genome size dataset. Two orders (Echinorhiniformes and Pristiophoriformes) and 21 families in cartilaginous fishes fi and eight orders (Alubuliformes, Saccopharyngiformes, Gonorynciformes, Ateleopodiformes, Lampriformes, Polymixiiformes, Percopsiformes, and Stephanoberyciformes) and 230 families in actinopterygian fishes have no information on genome size. Two orders (Echinorhiniformes and Pristiophoriformes) and 19 families in cartilaginous fishes fi and five orders (Albuliformes, Saccopharyngiformes, Ateleopodiformes, Lampriformes, Polymixiiformes) and 181 families in actinopterygian fishes have neither information on karyotypes nor information on genome size. As for jawless fishes, karyotypes and genome size in the Myxiniformes differ from those in the Petromyzontiformes, i.e., 2n ≤ 36 and genome size >5.0 pg/cell in Myxiniformes versus 2n = 76 or >140 and genome size <4.3 pg/cell in Petromyzontiformes. Myxiniformes exhibits different chromosome numbers and DNA amounts between somatic cells and spermatogonia, i.e., 2n = 14–36 in somatic cells versus 2n = 16–96 in spermatogonia. B chromosomes have been reported in spermatogonia in Myxiniformes (Nakai et al. 1995: N-62; Kojima et al. 2010: K-140). As for jawed fishes, diploid chromosome numbers and genome size in cartilaginous fishes except Chimaeriformes are larger than those in actinopterygian fi fishes. The Polypteriformes and the Coelacanthiformes possess about 7.0–9.0 pg/cell. The Ceratodontiformes has extraordinary large genome sizes (more than 80.0 pg/cell). Acipenseriformes is of special interest among Actinopterygii in their possession of 105 to 372 chromosomes and 2.4 to 13.8 pg/cell. Ploidy levels including diploidy (2X), tetraploidy (4X), and hexaploidy (6X) have been inferred in this order. However, the high number of chromosomes suggests another possible series, i.e., tetraploidy, octaploidy, and dodecaploidy (Fontana et al. 2007: F-61).
7 Diploid chromosome numbers and genome size in Neopterygii except the Lepisosteiformes, Osteoglossiformes, Characiformes, Siluriformes, Osmeriformes, and Salmoniformes are usually 48 or 50 and lower than 3.0 pg/cell, respectively. However, more than 3.0 pg/cell in Neopterygii has been reported in Anguilliformes, Cypriniformes, Characiformes, Siluriformes, Argentiniformes, Esociformes, Myctophiformes, Gasterosteiformes, Batrachoidiformes, Synbranchiformes, and Perciformes, i.e., Muraenidae, Cyprinidae (Cyprininae, part of Gobioninae, part of Leuciscinae, part of Rasborinae, Schizothoracinae, and polyploid species in Barbinae), polyploid species of Cobitidae, Catostomidae, part of Characidae, Curimatidae, Prochilodontidae, Ariidae, part of Callichthyidae, Doradidae, part of Loricariidae, Plotosidae, Microstomatidae, part of Umbridae, Myctophidae, part of Syngnathidae, Batrachoididae, part of Synbranchidae, Scaridae, Artedidraconidae, and Channichthyidae. Among taxa described above, freshwater fishes fi such as part of Cypriniformes (Catostomidae, part of Cyprinidae, part of Cobitidae), and part of Siluriformes (part of Callichthyidae) may be of polyploid origin (Allendorf and Thorgaard 1984: A-16; Ferris 1984: F-23). Complex relationships between ploidy and genome size have been reported in the Cobitoidea. In one example, the Leptobotiinae-Balitoridae exhibit 2n = 48–50 and genome size about 1.0 pg/ cell, whereas the Botiinae possess 2n = 98–100 and genome size about 2.0 pg/cell. A second example is provided by comparing Cobitis species with 2n = 48–50 and about 4.0 pg/cell versus those with 2n = 96–100 and about 7.0 pg/cell. A third example comes from non-Cobitis cobitids with 2n = 48–50 with about 2.0 pg/cell versus those with 2n = 96–100 and about 4.5 pg/cell (Suzuki 1996: S-143). The diploid chromosome number in marine neopterygian fishes, which have various genome sizes (0.8–4.4 pg/cell), was generally 46, 48, or 50 with the exception of 2n = 56 in Osmeriformes and did not show polyploidy, although triploidy was exceptionally reported in the Zoarcidae (Perciformes) (Morescalchi et al. 1996: M-89). In other words, it is diffi ficult to infer polyploidy in marine fishes from genome size. fi In Teleostei, genome size is relatively conserved in families, with the important exception of those including recent or ancient polyploids. Diploid chromosome numbers have been thought to vary across taxa above the family level, but when they were analyzed in terms of Robertsonian translocation and tandem fusion, they were found to be more conservative in each family. On the other hand, there are several problems in karyological analysis. The finding of B chromosomes might cause change of 2n, NF, and ancestral chromosome number (ACN) in taxa that have been reported to possess no B chromosomes. It is likely that many more species, when analyzed with suffi ficient intensity, will be found to possess B chromosomes (Camacho et al. 2000: C-2). B chromosomes have been studied actively in Characiformes and neotropical Siluriformes (Carvalho et al. 2008: C-98), but there have been very few data on B chromosomes in the other taxa.
8 㪫㪸㪹㫃㪼㩷㪉㩷㩷㪥㫌㫄㪹㪼㫉㫊㩷㫆㪽㩷㩷㫂㪸㫉㫐㫆㫋㫐㫇㪼㪻㩷㪾㪼㫅㪼㫉㪸㩷㪸㫅㪻㩷㫊㫇㪼㪺㫀㪼㫊㪆㫊㫌㪹㫊㫇㪼㪺㫀㪼㫊㩷㩿㫊㫇㪆㫊㫊㫇㪀㪃㩷㪻㫀㫇㫃㫆㫀㪻㩷㪺㪿㫉㫆㫄㫆㫊㫆㫄㪼㩷 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㫅㫌㫄㪹㪼㫉㩷㩿㪉㫅㪀㩷㪸㫅㪻㩷㪾㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷㫀㫅㩷㪽㪸㫄㫀㫃㫀㪼㫊㩷㫆㪽㩷㫁㪸㫎㫃㪼㫊㫊㩷㪽㫀㫊㪿㪼㫊 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪝㪚㪤㩷㪔㩷㪽㫃㫆㫎㩷㪺㫐㫋㫆㫄㪼㫋㫉㫐㪃㩷㪝㪛㩷㪔㩷㪝㪼㫌㫃㪾㪼㫅㩷㪻㪼㫅㫊㫀㫋㫆㫄㪼㫋㫉㫐㪃㩷㪙㪝㪘㩷㪔㩷㪹㫌㫃㫂㩷㪽㫃㫌㫆㫉㫆㫄㪼㫋㫉㫀㪺㩷㪸㫊㫊㪸㫐㪃㩷㪪㪚㪝㩷㪔㩷㫊㫋㪸㫋㫀㪺㩷㪺㪼㫃㫃㩷㪽㫃㫌㫆㫉㫆㫄㪼㫋㫉㫐㪅 㪦㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐
㩷㩷㪥㫆㪅㩷㫆㪽㩷㪾㪼㫅㪼㫉㪸㩷 㫋㫆㫋㪸㫃 㫊㫋㫌㪻㫀㪼㪻
㩷㩷㪥㫆㪅㩷㫆㪽㩷㫊㫇㪆㫊㫊㫇 㫋㫆㫋㪸㫃 㫊㫋㫌㪻㫀㪼㪻
㪉㫅
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷㩿㫇㪾㪆㪺㪼㫃㫃㪀 㪝㪚㪤 㪝㪛 㪙㪝㪘
㪪㪚㪝
㪧㪟㪰㪣㪬㪤㩷㪚㪟㪦㪩㪛㪘㪫㪘 㪪㫌㪹㫇㪿㫐㫃㫌㫄㩷㪚㫉㪸㫅㫀㪸㫋㪸 㪪㫌㫇㪼㫉㪺㫃㪸㫊㫊㩷㪤㫐㫏㫀㫅㫆㫄㫆㫉㫇㪿㫀 㪚㫃㪸㫊㫊㩷㪤㪰㪯㪠㪥㪠
㪋 㪊
㪉 㪈
㪉㪌 㪋㪌
㪏 㪏 㪋 㪋
㪏 㪈 㪈
㪌 㪈 㪈
㪊㪋 㪈 㪊
㪈㪋 㪈㪈 㪈 㪉
㪤㪰㪯㪠㪥㪠㪝㪦㪩㪤㪜㪪
㪤㫐㫏㫀㫅㫀㪻㪸㪼 㩷㩷㩷㪤㫐㫏㫀㫅㫀㫅㪸㪼 㩷㩷㩷㪜㫇㫋㪸㫋㫉㪼㫋㫀㫅㪸㪼
㪈㪋㪃㩷㪉㪏㪃㩷㪊㪋㪃㩷㪊㪍 㪊㪋㪃㩷㪊㪍
㪈㪋㪉㪄㪈㪍㪏 㪺㪸㪅㩷㪈㪏㪇 㪎㪍
㪌㪅㪋
㪌㪅㪌
㪌㪅㪍
㪉㪅㪍㪄㪉㪅㪐㪃㩷㪋㪅㪉 㪊㪅㪈 㪉㪅㪏
㪊㪅㪉
㪪㫌㫇㪼㫉㪺㫃㪸㫊㫊㩷㪧㪼㫋㫉㫆㫄㫐㫑㫆㫅㫋㫆㫄㫆㫉㫇㪿㫀 㪚㫃㪸㫊㫊㩷㪧㪜㪫㪩㪦㪤㪰㪱㪦㪥㪫㪠㪛㪘㩷 㪧㪜㪫㪩㪦㪤㪰㪱㪦㪥㪫㪠㪝㪦㪩㪤㪜㪪
㪧㪼㫋㫉㫆㫄㫐㫑㫆㫅㫋㫀㪻㪸㪼 㪞㪼㫆㫋㫉㫀㫀㪻㪸㪼 㪤㫆㫉㪻㪸㪺㫀㫀㪻㪸㪼
㪉㪅㪍㪃㩷㪋㪅㪉
㪍㪅㪐㪄㪐㪅㪉 㪋㪅㪍㪄㪍㪅㪐
9 㼀㼍㼎㼘㼑㻌㻟㻌㻌㻺㼡㼙㼎㼑㼞㼟㻌㼛㼒㻌㼗㼍㼞㼥㼛㼠㼥㼜㼑㼐㻌㼓㼑㼚㼑㼞㼍㻌㼍㼚㼐㻌㼟㼜㼑㼏㼕㼑㼟㻛㼟㼡㼎㼟㼜㼑㼏㼕㼑㼟㻌㻔㼟㼜㻛㼟㼟㼜㻕㻘㻌㼐㼕㼜㼘㼛㼕㼐㻌㼏㼔㼞㼛㼙㼛㼟㼛㼙㼑㻌 㻌㻌㻌㻌㻌㻌㻌㻌㻌㻌㻌㻌㼚㼡㼙㼎㼑㼞㻌㻔㻞㼚㻕㻌㼍㼚㼐㻌㼓㼑㼚㼛㼙㼑㻌㼟㼕㼦㼑㻌㼕㼚㻌㼒㼍㼙㼕㼘㼕㼑㼟㻌㼛㼒㻌㼖㼍㼣㼑㼐㻌㼒㼕㼟㼔㼑㼟 㻌㻌㻌㻌㻲㻯㻹㻌㻩㻌㼒㼘㼛㼣㻌㼏㼥㼠㼛㼙㼑㼠㼞㼥㻘㻌㻲㻰㻌㻩㻌㻲㼑㼡㼘㼓㼑㼚㻌㼐㼑㼚㼟㼕㼠㼛㼙㼑㼠㼞㼥㻘㻌㻲㻵㻭㻌㻩㻌㻲㼑㼡㼘㼓㼑㼚㻌㼕㼙㼍㼓㼑㻌㼍㼚㼍㼘㼥㼟㼕㼟㻌㼐㼑㼚㼟㼕㼠㼛㼙㼑㼠㼞㼥㻘㻌㻮㻲㻭㻌㻩㻌㼎㼡㼘㼗㻌㼒㼘㼡㼛㼞㼛㼙㼑㼠㼞㼕㼏㻌㼍㼟㼟㼍㼥㻚
㼀㼍㼎㼘㼑㻌㻟㻚㻝㻌㻌㻯㼘㼍㼟㼟㻌㻯㻴㻻㻺㻰㻾㻵㻯㻴㼀㻴㼅㻱㻿㻌 㻻㼞㼐㼑㼞㻛㼒㼍㼙㼕㼘㼥㻛㼟㼡㼎㼒㼍㼙㼕㼘㼥㻛㼓㼑㼚㼡㼟 㻌㻌㻺㼛㻚㻌㼛㼒㻌㼓㼑㼚㼑㼞㼍㻌 㼠㼛㼠㼍㼘 㼟㼠㼡㼐㼕㼑㼐 㻿㼡㼜㼑㼞㼏㼘㼍㼟㼟㻌㻳㼚㼍㼠㼔㼛㼟㼠㼛㼙㼍㼠㼍 㻳㼞㼍㼐㼑㻌㻯㼔㼛㼚㼐㼞㼕㼏㼔㼠㼔㼕㼛㼙㼛㼞㼜㼔㼕 㻯㼘㼍㼟㼟㻌㻯㻴㻻㻺㻰㻾㻵㻯㻴㼀㻴㼅㻱㻿㻌 㻿㼡㼎㼏㼘㼍㼟㼟㻌㻴㼛㼘㼛㼏㼑㼜㼔㼍㼘㼕
㻌㻌㻺㼛㻚㻌㼛㼒㻌㼟㼜㻛㼟㼟㼜 㼠㼛㼠㼍㼘 㼟㼠㼡㼐㼕㼑㼐
㻝 㻟 㻞
㻜 㻜 㻞
㻟 㻤 㻞㻞
㻞 㻜 㻜 㻞
㻡㻤㻘㻌㻤㻢
㻝
㻝
㻤
㻞 㻞
㻝㻜㻞
㻞 㻟 㻞 㻟 㻞 㻝 㻝
㻜 㻜 㻜 㻜 㻜 㻜 㻜
㻞 㻟 㻝㻞 㻢 㻣 㻝 㻝
㻜 㻜 㻜 㻜 㻜 㻜 㻜 㻜
㻝 㻝 㻝 㻝 㻝 㻞 㻝
㻜 㻜 㻝 㻜 㻜 㻝 㻜
㻟 㻝 㻡 㻝 㻝 㻟 㻝
㻞 㻜 㻜 㻝 㻜 㻜 㻝 㻜
㻝㻞 㻠 㻝 㻟 㻞 㻝㻢 㻞
㻠 㻜 㻜 㻜 㻜 㻞 㻝
㻡㻜 㻣 㻝 㻡 㻞 㻝㻝㻟 㻤
㻢 㻟
㻜 㻞
㻝㻜 㻞㻤
㻝㻣 㻣 㻜 㻜 㻜 㻜 㻡 㻝 㻠 㻜 㻠
㻝 㻝 㻝 㻝
㻝 㻝 㻜 㻝
㻝 㻝 㻞 㻝
㻟 㻝 㻝 㻜 㻝
㻝
㻜
㻞
㻜 㻜
㻯㻴㻵㻹㻭㻱㻾㻵㻲㻻㻾㻹㻱㻿
㻯㼍㼘㼘㼛㼞㼔㼕㼚㼏㼔㼕㼐㼍㼑 㻾㼔㼕㼚㼛㼏㼔㼕㼙㼍㼑㼞㼕㼐㼍㼑 㻯㼔㼕㼙㼍㼑㼞㼕㼐㼍㼑
㻞㼚
㻌㻌㻌㻌㻌㻌㻌㻌㻌㻌㻌㻌㻌㻌㻌㻌㻌㻳㼑㼚㼛㼙㼑㻌㼟㼕㼦㼑㻌㻔㼜㼓㻛㼏㼑㼘㼘㻕㻌㻌㻌㻌㻌㻌㻌㻌㻌㻌㻌 㻲㻯㻹 㻲㻰 㻲㻵㻭 㻮㻲㻭
㻟㻚㻜
㻟㻚㻥 㻟㻚㻞 㻠㻚㻜
㻟㻚㻞
㻿㼡㼎㼏㼘㼍㼟㼟㻌㻱㼘㼍㼟㼙㼛㼎㼞㼍㼚㼏㼔㼕㼕 㻿㼡㼎㼐㼕㼢㼕㼟㼕㼛㼚㻌㻿㼑㼘㼍㼏㼔㼕㼕 㻴㻱㼀㻱㻾㻻㻰㻻㻺㼀㻵㻲㻻㻾㻹㻱㻿
㻴㼑㼠㼑㼞㼛㼐㼛㼚㼠㼕㼐㼍㼑 㻻㻾㻱㻯㼀㻻㻸㻻㻮㻵㻲㻻㻾㻹㻱㻿
㻮㼞㼍㼏㼔㼍㼑㼘㼡㼞㼕㼐㼍㼑 㻳㼕㼚㼓㼘㼥㼙㼛㼟㼠㼛㼙㼍㼠㼕㼐㼍㼑 㻴㼑㼙㼕㼟㼏㼥㼘㼘㼕㼕㼐㼍㼑 㻻㼞㼑㼏㼠㼛㼘㼛㼎㼕㼐㼍㼑 㻼㼍㼞㼍㼟㼏㼥㼘㼘㼕㼕㼐㼍㼑 㻾㼔㼕㼚㼏㼛㼐㼛㼚㼠㼕㼐㼍㼑 㻿㼠㼑㼓㼛㼟㼠㼛㼙㼍㼠㼕㼐㼍㼑 㻸㻭㻹㻺㻵㻲㻻㻾㻹㻱㻿
㻭㼘㼛㼜㼕㼕㼐㼍㼑 㻯㼑㼠㼛㼞㼔㼕㼚㼕㼐㼍㼑 㻸㼍㼙㼚㼕㼐㼍㼑 㻹㼑㼓㼍㼏㼔㼍㼟㼙㼕㼐㼍㼑 㻹㼕㼠㼟㼡㼗㼡㼞㼕㼚㼕㼐㼍㼑 㻻㼐㼛㼚㼠㼍㼟㼜㼕㼐㼕㼐㼍㼑 㻼㼟㼑㼡㼐㼛㼏㼍㼞㼏㼔㼍㼞㼕㼕㼐㼍㼑 㻯㻭㻾㻯㻴㻭㻾㻴㻵㻺㻵㻲㻻㻾㻹㻱㻿
㻯㼍㼞㼏㼔㼍㼞㼔㼕㼚㼕㼐㼍㼑 㻴㼑㼙㼕㼓㼍㼘㼑㼕㼐㼍㼑 㻸㼑㼜㼠㼛㼏㼔㼍㼞㼕㼕㼐㼍㼑 㻼㼞㼛㼟㼏㼥㼘㼘㼕㼕㼐㼍㼑 㻼㼟㼑㼡㼐㼛㼠㼞㼕㼍㼗㼕㼐㼍㼑 㻿㼏㼥㼘㼕㼛㼞㼔㼕㼚㼕㼐㼍㼑 㻿㼜㼔㼥㼞㼚㼕㼐㼍㼑 㼀㼞㼕㼍㼗㼕㼐㼍㼑 㻌㻌㻌㻳㼍㼘㼑㼛㼞㼔㼕㼚㼕㼚㼍㼑 㻌㻌㻌㼀㼞㼕㼍㼗㼕㼚㼍㼑 㻴㻱㼄㻭㻺㻯㻴㻵㻲㻻㻾㻹㻱㻿
㻯㼔㼘㼍㼙㼥㼐㼛㼟㼑㼘㼍㼏㼔㼕㼐㼍㼑 㻴㼑㼜㼠㼞㼍㼚㼏㼔㼕㼕㼐㼍㼑 㻴㼑㼤㼍㼚㼏㼔㼕㼐㼍㼑 㻺㼛㼠㼛㼞㼥㼚㼏㼔㼕㼐㼍㼑 㻱㻯㻴㻵㻺㻻㻾㻴㻵㻺㻵㻲㻻㻾㻹㻱㻿
㻱㼏㼔㼕㼚㼛㼞㼔㼕㼚㼕㼐㼍㼑
㻝㻣㻚㻡
㻝㻠㻚㻡㻘㻌㻞㻥㻚㻢
㻣㻚㻢㻘㻌㻝㻝㻚㻠
㻝㻜㻚㻥
㻤㻚㻡 㻥㻚㻝㻙㻝㻝㻚㻜 㻝㻜㻚㻝
㻤㻞
㻝㻞㻚㻥
㻝㻟㻚㻠
㻝㻜㻚㻜
㼏㼍㻚㻌㻤㻠
㻝㻜㻚㻥
㻣㻠㻙㻥㻜
㻢㻚㻣㻙㻤㻚㻟
㻡㻚㻡㻙㻝㻟㻚㻝
㻡㻚㻣㻙㻥㻚㻥
㻢㻚㻤㻙㻤㻚㻢
㻢㻞㻘㻌㻢㻠㻘㻌㻣㻞 㻣㻤㻙㻤㻢
㻝㻤㻚㻝 㻢㻚㻢
㻝㻝㻚㻟㻙㻝㻠㻚㻣 㻤㻚㻥
㻢㻚㻝
㻝㻡㻚㻠 㻣㻚㻜㻘㻌㻣㻚㻤
㻝㻣㻚㻟 㻤㻚㻢㻙㻥㻚㻤
㻢㻤㻘㻌㻣㻞㻘㻌㻤㻜
㼏㼍㻚㻌㻝㻜㻜 㻣㻞
㻥㻚㻞 㻝㻜㻚㻣
㻝㻜㻠
㻤㻚㻤
㻝㻟㻚㻢
㻤㻚㻜
㻥㻚㻜㻙㻝㻞㻚㻤
10 㪫㪸㪹㫃㪼㩷㪊㪅㪈㩷㩷㪚㫃㪸㫊㫊㩷㪚㪟㪦㪥㪛㪩㪠㪚㪟㪫㪟㪰㪜㪪㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㪦㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㪾㪼㫅㫌㫊 㩷㩷㪥㫆㪅㩷㫆㪽㩷㪾㪼㫅㪼㫉㪸㩷 㫋㫆㫋㪸㫃 㫊㫋㫌㪻㫀㪼㪻 㪪㪨㪬㪘㪣㪠㪝㪦㪩㪤㪜㪪
㪚㪼㫅㫋㫉㫆㫇㪿㫆㫉㫀㪻㪸㪼 㪛㪸㫃㪸㫋㫀㫀㪻㪸㪼 㪜㫋㫄㫆㫇㫋㪼㫉㫀㪻㪸㪼 㪦㫏㫐㫅㫆㫋㫀㪻㪸㪼 㪪㫆㫄㫅㫀㫆㫊㫀㪻㪸㪼 㪪㫈㫌㪸㫃㫀㪻㪸㪼
㩷㩷㪥㫆㪅㩷㫆㪽㩷㫊㫇㪆㫊㫊㫇 㫋㫆㫋㪸㫃 㫊㫋㫌㪻㫀㪼㪻 㪋 㪈㪋 㪇 㪈㪇 㪇 㪋㪈 㪉 㪌 㪈 㪈㪎 㪇 㪈㪇 㪈
㪉 㪎 㪌 㪈 㪎 㪉
㪇 㪇 㪈 㪈 㪇 㪈
㪈
㪈
㪈㪌
㪈 㪈
㪉
㪇
㪌
㪇 㪇
㪐
㪉
㪊㪎
㪍 㪉
㪪㪨㪬㪘㪫㪠㪥㪠㪝㪦㪩㪤㪜㪪
㪪㫈㫌㪸㫋㫀㫅㫀㪻㪸㪼 㪧㪩㪠㪪㪫㪠㪦㪧㪟㪦㪩㪠㪝㪦㪩㪤㪜㪪
㪧㫉㫀㫊㫋㫀㫆㫇㪿㫆㫉㫀㪻㪸㪼
㪉㫅
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷㩿㫇㪾㪆㪺㪼㫃㫃㪀㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷 㪝㪚㪤 㪝㪛 㪝㪠㪘 㪙㪝㪘
㪏㪍 㪍㪉
㪈㪍㪅㪉
㪌㪏㪄㪍㪇㪃㩷㪎㪏
㪈㪋㪅㪇
㪈㪊㪅㪈㪄㪈㪋㪅㪉 㪈㪋㪅㪌 㪈㪏㪅㪉 㪊㪉㪅㪊 㪉㪊㪅㪏㪄㪉㪌㪅㪋 㪊㪋㪅㪈 㪉㪌㪅㪇 㪈㪍㪅㪋㪄㪉㪍㪅㪇 㪈㪐㪅㪌㪄㪉㪊㪅㪉 㪈㪊㪅㪎㪄㪈㪋㪅㪋 㪈㪈㪅㪍
㪏㪏
㪊㪉㪅㪏
㪈㪉㪅㪇
㪈㪏㪅㪍㪄㪈㪐㪅㪍
㪪㫌㪹㪻㫀㫍㫀㫊㫀㫆㫅㩷㪙㪸㫋㫆㫀㪻㪼㪸 㪫㪦㪩㪧㪜㪛㪠㪥㪠㪝㪦㪩㪤㪜㪪
㪥㪸㫉㪺㫀㫅㫀㪻㪸㪼
㩷㩷㩷㩷㩷㩷㪥㪸㫉㪺㫀㫅㪼 㩷㩷㩷㩷㩷㩷㪥㪸㫉㫂㪼 㪫㫆㫉㫇㪼㪻㫀㫅㫀㪻㪸㪼
㪉
㪈
㪉㪉
㪋
㪉
㪇
㪎
㪇 㪇
㪉㪍 㪈 㪋 㪈
㪊 㪇 㪈 㪇
㪉㪊㪏 㪈 㪋㪉 㪋
㪈㪈 㪎 㪇 㪋 㪇
㪧㪩㪠㪪㪫㪠㪝㪦㪩㪤㪜㪪
㪧㫉㫀㫊㫋㫀㪻㪸㪼 㪩㪘㪡㪠㪝㪦㪩㪤㪜㪪
㪩㪸㫁㫀㪻㪸㪼 㪩㪿㫀㫅㫀㪻㪸㪼 㪩㪿㫀㫅㫆㪹㪸㫋㫀㪻㪸㪼 㪩㪿㫐㫅㪺㪿㫆㪹㪸㫋㫀㪻㪸㪼 㪤㪰㪣㪠㪦㪙㪘㪫㪠㪝㪦㪩㪤㪜㪪
㪪㫌㪹㫆㫉㪻㪼㫉㩷㪧㫃㪸㫋㫐㫉㪿㫀㫅㫆㫀㪻㪼㫀 㪧㫃㪸㫋㫐㫉㪿㫀㫅㫀㪻㪸㪼 㪪㫌㪹㫆㫉㪻㪼㫉㩷㪱㪸㫅㫆㪹㪸㫋㫆㫀㪻㪼㫀 㪱㪸㫅㫆㪹㪸㫋㫀㪻㪸㪼 㪪㫌㪹㫆㫉㪻㪼㫉㩷㪤㫐㫃㫀㫆㪹㪸㫋㫆㫀㪻㪼㫀 㪛㪸㫊㫐㪸㫋㫀㪻㪸㪼 㪞㫐㫄㫅㫌㫉㫀㪻㪸㪼 㪟㪼㫏㪸㫋㫉㫐㪾㫆㫅㫀㪻㪸㪼 㪤㫐㫃㫀㫆㪹㪸㫋㫀㪻㪸㪼 㩷㩷㩷㪤㫆㪹㫌㫃㫀㫅㪸㪼 㩷㩷㩷㪤㫐㫃㫀㫆㪹㪸㫋㫀㫅㪸㪼 㩷㩷㩷㪩㪿㫀㫅㫆㫇㫋㪼㫉㫀㫅㪸㪼 㪧㫃㪼㫊㫀㫆㪹㪸㫋㫀㪻㪸㪼 㪧㫆㫋㪸㫄㫆㫋㫉㫐㪾㫆㫅㫀㪻㪸㪼 㪬㫉㫆㫃㫆㫇㪿㫀㪻㪸㪼 㪬㫉㫆㫋㫉㫐㪾㫆㫅㫀㪻㪸㪼
㪉
㪈
㪊
㪈
㪇
㪉
㪍 㪉 㪈
㪉 㪈 㪇
㪍㪏 㪈㪈 㪈
㪉 㪋 㪈 㪈 㪊 㪉 㪉
㪈 㪈 㪈 㪇 㪉 㪈 㪇
㪈㪇 㪉㪇 㪎 㪈 㪉㪇 㪉㪋 㪈㪍
㪉㪉 㪈 㪈 㪇 㪇 㪉㪈 㪏 㪉 㪇 㪍 㪈 㪋 㪈 㪇 㪊 㪉 㪇
㪉㪏 㪌㪋 㪍㪍㪃㩷㪏㪉㪃㩷㪏㪍
㪈㪋㪅㪎㪃㩷㪉㪋㪅㪈
㪉㪈㪅㪇㪄㪉㪋㪅㪇
㪈㪋㪅㪈
㪉㪈㪅㪇㪄㪉㪋㪅㪇 㪈㪋㪅㪇㪄㪈㪌㪅㪇
㪏㪅㪋 㪏㪅㪋 㪈㪋㪅㪍
㪌㪅㪍
㪌㪏㪃㩷㪐㪍㪄㪐㪏
㪌㪅㪏㪄㪎㪅㪉
㪌㪅㪋㪄㪏㪅㪈
㪌㪅㪌㪄㪍㪅㪐
㪌㪅㪍㪄㪎㪅㪉
㪌㪐㪄㪍㪋㪃㩷㪏㪋㪃㩷㪐㪉
㪋㪅㪐㪄㪏㪅㪇
㪌㪅㪐㪄㪏㪅㪊
㪍㪅㪇
㪏㪅㪇
㪍㪋
㪐㪅㪇㪃㩷㪈㪌㪅㪌
㪈㪌㪅㪋 㪈㪈㪅㪎
㪌㪏㪃㩷㪍㪋㪄㪎㪏 㪌㪍
㪎㪅㪏㪄㪈㪇㪅㪈 㪈㪇㪅㪇㪃㩷㪈㪈㪅㪋 㪈㪇㪅㪇
㪏㪅㪌㪄㪈㪊㪅㪎
㪍㪍 㪌㪉㪄㪌㪋 㪍㪋
㪐㪅㪍㪄㪈㪇㪅㪉 㪈㪇㪅㪋㪄㪈㪈㪅㪐 㪈㪇㪅㪇㪄㪈㪇㪅㪉
㪐㪅㪋 㪏㪅㪎㪄㪈㪇㪅㪏
㪍㪍㪃㩷㪐㪇 㪌㪉㪃㩷㪎㪉
㪈㪌㪅㪌
㪈㪊㪅㪈
㪍㪅㪏㪄㪈㪊㪅㪋
㪐㪅㪋 㪈㪍㪅㪉
㪐㪅㪏 㪈㪇㪅㪋
㪈㪊㪅㪇
11 㪫㪸㪹㫃㪼㩷㪊㪅㪉㩷㩷㪚㫃㪸㫊㫊㩷㪘㪚㪫㪠㪥㪦㪧㪫㪜㪩㪰㪞㪠㪠㪅㩷㪧㪸㫉㫋㩷㪈㩷㪚㫃㪸㪻㫀㫊㫋㫀㪸㩷㪸㫅㪻㩷㪚㪿㫆㫅㪻㫉㫆㫊㫋㪼㫀 㪦㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐
㩷㩷㪥㫆㪅㩷㫆㪽㩷㪾㪼㫅㪼㫉㪸㩷 㫋㫆㫋㪸㫃 㫊㫋㫌㪻㫀㪼㪻 㪞㫉㪸㪻㪼㩷㪫㪼㫃㪼㫆㫊㫋㫆㫄㫀㩷㩿㪦㪪㪫㪜㪠㪚㪟㪫㪟㪰㪜㪪㪀 㪚㫃㪸㫊㫊㩷㪘㪚㪫㪠㪥㪦㪧㪫㪜㪩㪰㪞㪠㪠㩷 㪪㫌㪹㪺㫃㪸㫊㫊㩷㪚㫃㪸㪻㫀㫊㫋㫀㪸
㩷㩷㪥㫆㪅㩷㫆㪽㩷㫊㫇㪆㫊㫊㫇 㫋㫆㫋㪸㫃 㫊㫋㫌㪻㫀㪼㪻
㪧㪦㪣㪰㪧㪫㪜㪩㪠㪝㪦㪩㪤㪜㪪
㪧㫆㫃㫐㫇㫋㪼㫉㫀㪻㪸㪼
㪉
㪉
㪈㪍
㪋
㪋
㪉㪌
㪎 㪎
㪉㫅
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷㩿㫇㪾㪆㪺㪼㫃㫃㪀㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷 㪝㪚㪤 㪝㪛 㪝㪠㪘 㪙㪝㪘
㪊㪍㪃㩷㪊㪏
㪐㪅㪈㪄㪈㪋㪅㪌
㪎㪅㪋
㪊㪅㪉㪄㪊㪅㪍 㪍㪅㪈㪄㪐㪅㪈
㪋㪅㪋
㪐㪅㪋㪄㪐㪅㪏
㪪㫌㪹㪺㫃㪸㫊㫊㩷㪚㪿㫆㫅㪻㫉㫆㫊㫋㪼㫀 㪘㪚㪠㪧㪜㪥㪪㪜㪩㪠㪝㪦㪩㪤㪜㪪
㪘㪺㫀㫇㪼㫅㫊㪼㫉㫀㪻㪸㪼 㩿㪉㪯㪀 㩿㪋㪯㪀 㩿㪍㪯㪀 㪧㫆㫃㫐㫆㪻㫆㫅㫋㫀㪻㪸㪼
㪉
㪈
㪉
㪉㪈 㪉㪇 㩷㩷㩷㩷㩷㪈㪇㪌㪄㪊㪎㪉 㪈㪇㪌㪄㪈㪉㪇㩷㩷 㪉㪋㪇㪄㪉㪍㪇㩷㩷 㪊㪎㪉 㪈 㪈㪉㪇
㪉㪅㪋㪄㪋㪅㪎 㪏㪅㪏㪄㪐㪅㪌 㪈㪊㪅㪈 㪊㪅㪉㪄㪋㪅㪐
㪈㪊㪅㪏
㪫㪸㪹㫃㪼㩷㪊㪅㪊㩷㩷㪚㫃㪸㫊㫊㩷㪘㪚㪫㪠㪥㪦㪧㪫㪜㪩㪰㪞㪠㪠㪅㩷㪧㪸㫉㫋㩷㪉㩷㪥㪼㫆㫇㫋㪼㫉㫐㪾㫀㫀 㪦㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㪾㪼㫅㫌㫊 㩷㩷㪥㫆㪅㩷㫆㪽㩷㪾㪼㫅㪼㫉㪸㩷 㫋㫆㫋㪸㫃 㫊㫋㫌㪻㫀㪼㪻 㪪㫌㪹㪺㫃㪸㫊㫊㩷㪥㪼㫆㫇㫋㪼㫉㫐㪾㫀㫀 㪛㫀㫍㫀㫊㫀㫆㫅㩷㪟㫆㫃㫆㫊㫋㪼㫀
㩷㩷㪥㫆㪅㩷㫆㪽㩷㫊㫇㪆㫊㫊㫇 㫋㫆㫋㪸㫃 㫊㫋㫌㪻㫀㪼㪻
㪉
㪈
㪎
㪉 㪉
㪌㪍㪃㩷㪺㪸㪅㩷㪍㪏
㪈
㪈
㪈
㪈 㪈
㪈
㪈
㪉
㪉 㪉
㪋 㪈 㪈㪏 㪋 㪈
㪋 㪈 㪉 㪋 㪇
㪎 㪈 㪉㪇㪈 㪏 㪈
㪈㪋 㪎 㪈 㪉 㪋 㪇
㪈 㪈
㪈 㪈
㪍 㪉
㪊 㪈 㪉
㪣㪜㪧㪠㪪㪦㪪㪫㪜㪠㪝㪦㪩㪤㪜㪪
㪣㪼㫇㫀㫊㫆㫊㫋㪼㫀㪻㪸㪼 㪘㪤㪠㪠㪝㪦㪩㪤㪜㪪
㪘㫄㫀㫀㪻㪸㪼
㪉㫅
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷㩿㫇㪾㪆㪺㪼㫃㫃㪀㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷 㪝㪚㪤 㪝㪛 㪝㪠㪘 㪙㪝㪘
㪉㪅㪏
㪉㪅㪐
㪉㪅㪏
㪋㪍
㪉㪅㪊㪄㪉㪅㪌
㪉㪅㪊
㪌㪇
㪈㪅㪉
㪉㪅㪋
㪛㫀㫍㫀㫊㫀㫆㫅㩷㪫㪼㫃㪼㫆㫊㫋㪼㫀 㪪㫌㪹㪻㫀㫍㫀㫊㫀㫆㫅㩷㪦㫊㫋㪼㫆㪾㫃㫆㫊㫊㫆㫄㫆㫉㫇㪿㪸 㪟㪠㪦㪛㪦㪥㪫㪠㪝㪦㪩㪤㪜㪪
㪟㫀㫆㪻㫆㫅㫋㫀㪻㪸㪼 㪦㪪㪫㪜㪦㪞㪣㪦㪪㪪㪠㪝㪦㪩㪤㪜㪪
㪦㫊㫋㪼㫆㪾㫃㫆㫊㫊㫀㪻㪸㪼 㪧㪸㫅㫋㫆㪻㫆㫅㫋㫀㪻㪸㪼 㪤㫆㫉㫄㫐㫉㫀㪻㪸㪼 㪥㫆㫋㫆㫇㫋㪼㫉㫀㪻㪸㪼 㪞㫐㫄㫅㪸㫉㪺㪿㫀㪻㪸㪼
㪋㪇㪄㪌㪍 㪋㪏 㪋㪏 㪊㪋㪃㩷㪋㪉
㪈㪅㪍㪄㪈㪅㪏
㪉㪅㪉
㪉㪅㪇 㪈㪅㪌 㪉㪅㪇㪄㪉㪅㪋 㪉㪅㪍
㪪㫌㪹㪻㫀㫍㫀㫊㫀㫆㫅㩷㪜㫃㫆㫇㫆㫄㫆㫉㫇㪿㪸 㪜㪣㪦㪧㪠㪝㪦㪩㪤㪜㪪
㪜㫃㫆㫇㫀㪻㪸㪼 㪤㪼㪾㪸㫃㫆㫇㫀㪻㪸㪼
㪈
㪇
㪊
㪊 㪊
㪇 㪇
㪈㪌 㪈㪇
㪇 㪇 㪇 㪇 㪇 㪇
㪈㪌 㪋 㪍
㪊㪊 㪍 㪌 㪇 㪈
㪘㪣㪙㪬㪣㪠㪝㪦㪩㪤㪜㪪
㪪㫌㪹㫆㫉㪻㪼㫉㩷㪘㫃㪹㫌㫃㫆㫀㪻㪼㫀 㪘㫃㪹㫌㫃㫀㪻㪸㪼 㪪㫌㪹㫆㫉㪻㪼㫉㩷㪥㫆㫋㪸㪺㪸㫅㫋㪿㫆㫀㪻㪼㫀 㪟㪸㫃㫆㫊㪸㫌㫉㫀㪻㪸㪼 㪥㫆㫋㪸㪺㪸㫅㫋㪿㫀㪻㪸㪼 㪘㪥㪞㪬㪠㪣㪣㪠㪝㪦㪩㪤㪜㪪
㪪㫌㪹㫆㫉㪻㪼㫉㩷㪘㫅㪾㫌㫀㫃㫃㫆㫀㪻㪼㫀 㪘㫅㪾㫌㫀㫃㫃㫀㪻㪸㪼 㪟㪼㫋㪼㫉㪼㫅㪺㪿㪼㫃㫐㫀㪻㪸㪼 㪤㫆㫉㫀㫅㪾㫌㫀㪻㪸㪼
㪈 㪉 㪉
㪈 㪇 㪈
㪋㪏 㪋㪍㪃㩷㪌㪇㪄㪌㪉
㪊㪏 㪌㪇
㪉㪅㪋 㪉㪅㪇
㪉㪅㪉
㪉㪅㪇
㪉㪅㪏㪄㪊㪅㪊
12 㪫㪸㪹㫃㪼㩷㪊㪅㪊㩷㩷㪚㫃㪸㫊㫊㩷㪘㪚㪫㪠㪥㪦㪧㪫㪜㪩㪰㪞㪠㪠㪅㩷㪧㪸㫉㫋㩷㪉㩷㪥㪼㫆㫇㫋㪼㫉㫐㪾㫀㫀㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㪦㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㪾㪼㫅㫌㫊 㩷㩷㪥㫆㪅㩷㫆㪽㩷㪾㪼㫅㪼㫉㪸㩷 㫋㫆㫋㪸㫃 㫊㫋㫌㪻㫀㪼㪻 㪪㫌㪹㫆㫉㪻㪼㫉㩷㪤㫌㫉㪸㪼㫅㫆㫀㪻㪼㫀 㪚㪿㫃㫆㫇㫊㫀㪻㪸㪼 㪏 㪇 㪤㫌㫉㪸㪼㫅㫀㪻㪸㪼 㪈㪌 㪊 㪤㫐㫉㫆㪺㫆㫅㪾㫉㫀㪻㪸㪼 㪈 㪇 㪪㫌㪹㫆㫉㪻㪼㫉㩷㪚㫆㫅㪾㫉㫆㫀㪻㪼㫀 㪚㫆㫃㫆㪺㫆㫅㪾㫉㫀㪻㪸㪼 㪈 㪇 㪚㫆㫅㪾㫉㫀㪻㪸㪼 㪉㪉 㪉 㪛㪼㫉㫀㪺㪿㫋㪿㫐㫀㪻㪸㪼 㪉 㪇 㪤㫌㫉㪸㪼㫅㪼㫊㫆㪺㫀㪻㪸㪼 㪋 㪈 㪥㪼㫄㫀㪺㪿㫋㪿㫐㫀㪻㪸㪼 㪊 㪇 㪥㪼㫋㫋㪸㫊㫋㫆㫄㪸㫋㫀㪻㪸㪼 㪍 㪇 㪦㫇㪿㫀㪺㪿㫋㪿㫀㪻㪸㪼 㪌㪉 㪎 㪪㪼㫉㫉㫀㫍㫆㫄㪼㫉㫀㪻㪸㪼 㪉 㪇 㪪㫐㫅㪸㫇㪿㫆㪹㫉㪸㫅㪺㪿㫀㪻㪸㪼 㪈㪇 㪈
㩷㩷㪥㫆㪅㩷㫆㪽㩷㫊㫇㪆㫊㫊㫇 㫋㫆㫋㪸㫃 㫊㫋㫌㪻㫀㪼㪻 㪈㪉 㪈㪏 㪇 㪈㪏㪌 㪈㪉 㪋 㪇 㪈㪌 㪌 㪇 㪈㪍㪇 㪌 㪊 㪇 㪏 㪈 㪐 㪇 㪊㪏 㪇 㪉㪐㪇 㪏 㪈㪇 㪇 㪊㪉 㪈
㪪㪘㪚㪚㪦㪧㪟㪘㪩㪰㪥㪞㪠㪝㪦㪩㪤㪜㪪
㪪㫌㪹㫆㫉㪻㪼㫉㩷㪚㫐㪼㫄㪸㫋㫆㫀㪻㪼㫀 㪚㫐㪼㫄㪸㫋㫀㪻㪸㪼 㪪㫌㪹㫆㫉㪻㪼㫉㩷㪪㪸㪺㪺㫆㫇㪿㪸㫉㫐㫅㪾㫆㫀㪻㪼㫀 㪜㫌㫉㫐㫇㪿㪸㫉㫐㫅㪾㫀㪻㪸㪼 㪤㫆㫅㫆㪾㫅㪸㫋㪿㫀㪻㪸㪼 㪪㪸㪺㪺㫆㫇㪿㪸㫉㫐㫅㪾㫀㪻㪸㪼
㪉
㪇
㪉
㪈 㪈 㪈
㪇 㪇 㪇
㪈 㪈㪌 㪈㪇
㪉㫅
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷㩿㫇㪾㪆㪺㪼㫃㫃㪀㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷 㪝㪚㪤 㪝㪛 㪝㪠㪘 㪙㪝㪘
㪊㪍㪃㩷㪋㪉
㪋㪅㪍
㪊㪋㪃㩷㪊㪏
㪉㪅㪋㪄㪊㪅㪍
㪊㪅㪐 㪊㪅㪏
㪊㪏
㪋㪅㪋㪄㪌㪅㪈
㪉㪅㪊
㪊㪏㪄㪋㪏 㪉㪍
㪊㪅㪉
㪇 㪇 㪇 㪇 㪇 㪇 㪇
㪪㫌㪹㪻㫀㫍㫀㫊㫀㫆㫅㩷㪦㫋㫆㪺㪼㫇㪿㪸㫃㪸㩷㩿㪔㩷㪦㫊㫋㪸㫉㫀㫆㪺㫃㫌㫇㪼㫆㫄㫆㫉㫇㪿㪸㪀 㪚㪣㪬㪧㪜㪠㪝㪦㪩㪤㪜㪪
㪪㫌㪹㫆㫉㪻㪼㫉㩷㪛㪼㫅㫋㫀㪺㫀㫇㫀㫋㫆㫀㪻㪼㫀 㪛㪼㫅㫋㫀㪺㫀㫇㫀㫋㫀㪻㪸㪼 㪪㫌㪹㫆㫉㪻㪼㫉㩷㪚㫃㫌㫇㪼㫆㫀㪻㪼㫀 㪧㫉㫀㫊㫋㫀㪾㪸㫊㫋㪼㫉㫀㪻㪸㪼 㪚㪿㫀㫉㫆㪺㪼㫅㫋㫉㫀㪻㪸㪼 㪚㫃㫌㫇㪼㫀㪻㪸㪼 㩷㩷㩷㪘㫃㫆㫊㫀㫅㪸㪼 㩷㩷㩷㪚㫃㫌㫇㪼㫀㫅㪸㪼 㩷㩷㩷㪛㫆㫉㫆㫊㫆㫄㪸㫋㫀㫅㪸㪼 㩷㩷㩷㪧㪼㫃㫃㫆㫅㫌㫃㫀㫅㪸㪼 㪜㫅㪾㫉㪸㫌㫃㫀㪻㪸㪼
㪈
㪇
㪈
㪐 㪈
㪇 㪇
㪊㪋 㪉
㪎 㪈㪍 㪍 㪉㪊 㪈㪍
㪊 㪍 㪋 㪇 㪋
㪊㪈 㪎㪉 㪉㪉 㪋㪋 㪈㪊㪐
㪞㪦㪥㪦㪩㪰㪥㪚㪟㪠㪝㪦㪩㪤㪜㪪
㪪㫌㪹㫆㫉㪻㪼㫉㩷㪚㪿㪸㫅㫆㫀㪻㪼㫀 㪚㪿㪸㫅㫀㪻㪸㪼 㪪㫌㪹㫆㫉㪻㪼㫉㩷㪞㫆㫅㫆㫉㫐㫅㪺㪿㫆㫀㪻㪼㫀 㪞㫆㫅㫆㫉㫐㫅㪺㪿㫀㪻㪸㪼 㪪㫌㪹㫆㫉㪻㪼㫉㩷㪢㫅㪼㫉㫀㫆㫀㪻㪼㫀 㪢㫅㪼㫉㫀㫀㪻㪸㪼 㪧㪿㫉㪸㪺㫋㫆㫃㪸㪼㫄㫀㪻㪸㪼
㪈
㪈
㪈
㪈
㪇
㪌
㪋 㪈
㪇 㪈
㪊㪇 㪈
㪚㪰㪧㪩㪠㪥㪠㪝㪦㪩㪤㪜㪪
㪪㫌㫇㪼㫉㪽㪸㫄㫀㫃㫐㩷㪚㫐㫇㫉㫀㫅㫆㫀㪻㪼㪸 㪚㫐㫇㫉㫀㫅㫀㪻㪸㪼 㩷㩷㩷㪘㪺㪿㪼㫀㫃㫆㪾㫅㪸㫋㪿㫀㫅㪸㪼 㩷㩷㩷㪙㪸㫉㪹㫀㫅㪸㪼 㩿㪉㪯㪀 㩿㪋㪯㪀 㩿㪍㪯㪀 㩷㩷㩷㪚㫌㫃㫋㫉㫀㫅㪸㪼 㩷㩷㩷㪚㫐㫇㫉㫀㫅㫀㫅㪸㪼 㩿㪋㪯㪀 㩿㪍㪯㪀
㪉㪉㪇 㪊 㪖
㪖 㪍
㪈㪏㪇 㪊 㪊㪇 㪈㪍 㪐 㪌 㪈㪌 㪋 㪋 㪈
㪉㪋㪉㪇 㪌㪇 㪖
㪖 㪉㪌
㪊㪇 㪇 㪇 㪊㪇 㪇 㪇 㪉㪊 㪐 㪐 㪌 㪇 㪎 㪉 㪈 㪈 㪇 㪇 㪈 㪇 㪈 㪎㪋㪎 㪍㪊㪇 㪍㪉㪏 㪊㪋 㪈㪌㪋 㪎㪌 㪌㪎 㪉㪉 㪊㪇 㪉㪉 㪉㪉 㪊
㪈㪅㪍 㪋㪍㪃㩷㪋㪏 㪉㪏㪃㩷㪋㪋㪄㪋㪏㪃㩷㪌㪇㪄㪌㪋 㪋㪏 㪋㪉㪃㩷㪋㪋㪃㩷㪋㪏
㪉㪅㪇 㪉㪅㪇㪄㪉㪅㪎 㪉㪅㪇 㪉㪅㪐
㪊㪅㪇
㪉㪅㪈㪄㪉㪅㪊
㪈㪅㪏㪄㪉㪅㪈
㪈㪅㪌㪄㪉㪅㪉 㪉㪅㪎㪄㪊㪅㪎
㪈㪅㪋㪄㪉㪅㪌 㪊㪅㪋㪄㪊㪅㪌㪃㩷㪋㪅㪍
㪉㪅㪍
㪈㪅㪏㪄㪉㪅㪋
㪊㪅㪋㪄㪋㪅㪌 㪌㪅㪋
㪊㪅㪈㪄㪊㪅㪏㪃㩷㪋㪅㪏 㪋㪅㪍㪄㪋㪅㪏㪃㩷㪍㪅㪈
㪈㪅㪏㪄㪉㪅㪈 㪈㪅㪏 㪉㪅㪉
㪉㪅㪉㪄㪉㪅㪏 㪈㪅㪌
㪊㪅㪏
㪊㪉
㪉㪏
㪋㪉㪄㪋㪏 㪋㪏㪄㪈㪌㪇 㪋㪏㪄㪌㪇 㪐㪍㪄㪈㪇㪇 㪈㪌㪇 㪋㪏 㪈㪇㪇㪄㪈㪍㪉 㪈㪇㪇 㪈㪌㪇㪄㪈㪍㪉
㪈㪅㪐㪄㪉㪅㪋
㪊㪅㪋
13 㪫㪸㪹㫃㪼㩷㪊㪅㪊㩷㩷㪚㫃㪸㫊㫊㩷㪘㪚㪫㪠㪥㪦㪧㪫㪜㪩㪰㪞㪠㪠㪅㩷㪧㪸㫉㫋㩷㪉㩷㪥㪼㫆㫇㫋㪼㫉㫐㪾㫀㫀㫀㫀㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㪦㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㪾㪼㫅㫌㫊 㩷㩷㪥㫆㪅㩷㫆㪽㩷㪾㪼㫅㪼㫉㪸㩷 㫋㫆㫋㪸㫃 㫊㫋㫌㪻㫀㪼㪻 㩷㩷㩷㪞㫆㪹㫀㫆㪹㫆㫋㫀㫅㪸㪼 㪖 㪉 㩷㩷㩷㪞㫆㪹㫀㫆㫅㫀㫅㪸㪼 㪖 㪉㪈 㩷㩷㩷㪟㫐㫇㫆㫇㪿㫋㪿㪸㫃㫄㫀㪺㪿㫋㪿㫐㫀㫅㪸㪼 㪉 㪉 㩷㩷㩷㪣㪸㪹㪼㫆㫅㫀㫅㪸㪼 㪖 㪈㪉 㩷㩷㩷㪣㪼㫌㪺㫀㫊㪺㫀㫅㪸㪼 㪖 㪍㪏 㩷㩷㩷㪩㪸㫊㪹㫆㫉㫀㫅㪸㪼㩷㩿㪔㩷㪛㪸㫅㫀㫆㫅㫀㫅㪸㪼㪀㩷 㪖 㪈㪏 㩿㪉㪯㪀 㪈㪍 㩿㪉㪯㪀 㪊 㩷㩷㩷㪪㪺㪿㫀㫑㫆㫋㪿㫆㫉㪸㪺㫀㫅㪸㪼 㪖 㪈㪉 㩿㪋㪯㪀 㪈㪈 㩿㪍㪯㪀 㪈 㩿㪈㪏㪯㪀 㪈 㩷㩷㩷㪪㫈㫌㪸㫃㫀㫆㪹㪸㫉㪹㫀㫅㪸㪼 㪖 㪊 㩷㩷㩷㪫㫀㫅㪺㫀㫅㪸㪼 㪈 㪈 㩷㩷㩷㪯㪼㫅㫆㪺㫐㫇㫉㫀㫅㪸㪼 㪋 㪋 㪧㫊㫀㫃㫆㫉㪿㫐㫅㪺㪿㫀㪻㪸㪼 㪉 㪈 㪪㫌㫇㪼㫉㪽㪸㫄㫀㫃㫐㩷㪚㫆㪹㫀㫋㫆㫀㪻㪼㪸 㪞㫐㫉㫀㫅㫆㪺㪿㪼㫀㫃㫀㪻㪸㪼 㪈 㪈 㪚㪸㫋㫆㫊㫋㫆㫄㫀㪻㪸㪼 㪈㪊 㪐 㪚㫆㪹㫀㫋㫀㪻㪸㪼 㪉㪍 㪈㪐 㩷㩷㩷㪙㫆㫋㫀㫀㫅㪸㪼 㪌 㪌 㩷㩷㩷㪣㪼㫇㫋㫆㪹㫆㫋㫀㫀㫅㪸㪼 㪉 㪉 㩷㩷㩷㪚㫆㪹㫀㫋㫀㫅㪸㪼 㪈㪐 㪈㪉 㩷㩷㩷㩷㩷㩷㩷㪚㫆㪹㫀㫋㫀㫊 㩷㩿㪉㪯㪀 㩷㩷㩷㩷㩷㩷㩷㪚㫆㪹㫀㫋㫀㫊 㩷㩿㪊㪯㪀 㩷㩷㩷㩷㩷㩷㩷㪚㫆㪹㫀㫋㫀㫊 㩷㩿㪋㪯㪀 㩷㩷㩷㩷㩷㩷㩷㩷㫅㫆㫅㪄㪚㫆㪹㫀㫋㫀㫊㩷 㩿㪉㪯㪀 㩷㩷㩷㩷㩷㩷㩷㩷㫅㫆㫅㪄㪚㫆㪹㫀㫋㫀㫊 㩷㩿㪋㪯㪀 㪙㪸㫃㫀㫋㫆㫉㫀㪻㪸㪼 㪌㪐 㪈㪊 㩷㩷㩷㪥㪼㫄㪸㪺㪿㪼㫀㫃㫀㫅㪸㪼 㪉㪐 㪏 㩷㩷㩷㪙㪸㫃㫀㫋㫆㫉㫀㫅㪸㪼 㪉㪐 㪌 㪭㪸㫀㫃㫃㪸㫅㫋㪼㫃㫃㫀㪻㪸㪼 㪈 㪈
㩷㩷㪥㫆㪅㩷㫆㪽㩷㫊㫇㪆㫊㫊㫇 㪉㫅 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷㩿㫇㪾㪆㪺㪼㫃㫃㪀㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷 㫋㫆㫋㪸㫃 㫊㫋㫌㪻㫀㪼㪻 㪝㪚㪤 㪝㪛 㪝㪠㪘 㪙㪝㪘 㪖 㪎 㪌㪇 㪖 㪍㪌 㪌㪇 㪉㪅㪋㪄㪊㪅㪎 㪉㪅㪏㪄㪊㪅㪊 㪊 㪉 㪋㪏 㪈㪅㪐㪄㪉㪅㪈 㪖 㪌㪇 㪋㪋㪃㩷㪋㪏㪃㩷㪌㪇㩷 㪉㪅㪏 㪉㪅㪉㪄㪉㪅㪌 㪉㪅㪉㪄㪉㪅㪍 㪖 㪉㪇㪇 㪋㪏㪃㩷㪌㪇 㪉㪅㪇㪄㪊㪅㪎 㪈㪅㪏㪄㪊㪅㪉 㪉㪅㪌㪄㪉㪅㪏 㪖 㪋㪍 㪋㪏㪄㪎㪏 㪋㪈 㪋㪏㪄㪌㪉 㪉㪅㪉㪃㩷㪊㪅㪋㪄㪋㪅㪍 㪈㪅㪏㪄㪉㪅㪐㪃㩷㪋㪅㪋 㪉㪅㪏 㪊㪅㪉㪃㩷㪊㪅㪍㪄㪋㪅㪋 㪌 㪎㪇㪄㪎㪏 㪉㪅㪊 㪊㪅㪊 㪖 㪉㪐 㪐㪇㪄㪈㪋㪏㪃㩷㪕㪋㪇㪇 㪉㪉 㪐㪇㪄㪐㪉㪃㩷㪐㪏㪄㪈㪇㪇 㪊㪅㪇㪄㪊㪅㪈㪃㩷㪋㪅㪐 㪍 㪈㪋㪏 㪍㪅㪌㪄㪎㪅㪇 㪈 㪋㪈㪎㪄㪋㪎㪇 㪈㪎㪅㪉 㪋㪏 㪉㪅㪇 㪉㪅㪇㪄㪉㪅㪉 㪖 㪊 㪈 㪈 㪋㪏 㪉㪅㪊 㪈㪅㪎㪄㪉㪅㪈 㪖 㪎 㪋㪏 㪉㪅㪈㪄㪉㪅㪏 㪍 㪉 㪌㪇 㪈㪈㪎 㪊 㪈 㪋㪏 㪈㪅㪉 㪈㪅㪇 㪈㪅㪊 㪈㪅㪊 㪎㪉 㪈㪌 㪐㪍㪄㪈㪇㪇 㪊㪅㪎㪄㪌㪅㪌 㪋㪅㪇 㪋㪅㪉㪄㪌㪅㪈 㪈㪎㪎 㪎㪍 㪖 㪉㪇 㪐㪏㪄㪈㪇㪇 㪈㪅㪍㪄㪉㪅㪈 㪈㪅㪏㪄㪈㪅㪐 㪈㪅㪎 㪖 㪈㪈 㪌㪇㪄㪌㪉 㪈㪅㪈 㪈㪊㪇 㪋㪌 㪋㪏㪄㪈㪇㪇 㪈㪍 㪋㪏㪃㩷㪌㪇 㪉㪅㪏㪄㪋㪅㪇 㪋㪅㪊 㪈 㪎㪋㪄㪎㪌 㪍㪅㪇 㪊 㪐㪍㪄㪐㪏㪃㩷㪈㪇㪇 㪍㪅㪏㪄㪎㪅㪍 㪎㪅㪉 㪉㪎 㪋㪏㪃㩷㪌㪇㩷 㪉㪅㪇㪄㪉㪅㪉 㪉㪅㪋㪄㪉㪅㪏 㪊 㪈㪇㪇 㪋㪅㪌㪄㪋㪅㪍 㪌㪐㪇 㪉㪋 㪋㪉㪇 㪈㪐 㪋㪋㪄㪌㪇㪃㩷㪎㪌 㪈㪅㪇㪄㪈㪅㪈㪃㩷㪉㪅㪉 㪈㪎㪇 㪌 㪋㪏㪃㩷㪌㪇 㪇㪅㪐 㪈 㪈 㪌㪇
㪚㪟㪘㪩㪘㪚㪠㪝㪦㪩㪤㪜㪪
㪪㫌㪹㫆㫉㪻㪼㫉㩷㪚㫀㫋㪿㪸㫉㫀㫅㫆㫀㪻㪼㫀 㪚㫀㫋㪿㪸㫉㫀㫅㫀㪻㪸㪼 㪛㫀㫊㫋㫀㪺㪿㫆㪻㫆㫅㫋㫀㪻㪸㪼 㪪㫌㪹㫆㫉㪻㪼㫉㩷㪚㪿㪸㫉㪸㪺㫆㫀㪻㪼㫀 㪘㪺㪼㫊㫋㫉㫆㫉㪿㫐㫅㪺㪿㫀㪻㪸㪼 㪘㫃㪼㫊㫋㫀㫀㪻㪸㪼㩷㩿㪘㫃㪼㫊㫋㫀㪻㪸㪼㪀 㪘㫅㫆㫊㫋㫆㫄㫀㪻㪸㪼 㪚㪿㪸㫉㪸㪺㫀㪻㪸㪼 㩷㩷㩷㪘㫇㪿㫐㫆㪺㪿㪸㫉㪸㪺㫀㫅㪸㪼 㩷㩷㩷㪙㫉㫐㪺㫆㫅㫀㫅㪸㪼 㩷㩷㩷㪚㪿㪸㫃㪺㪼㫀㫅㪸㪼 㩷㩷㩷㪚㪿㪸㫉㪸㪺㫀㫅㪸㪼 㩷㩷㩷㪚㪿㪼㫀㫉㫆㪻㫆㫅㫋㫀㫅㪸㪼 㩷㩷㩷㪞㫃㪸㫅㪻㫌㫃㫆㪺㪸㫌㪻㫀㫅㪸㪼 㩷㩷㩷㪠㪾㫌㪸㫅㫆㪻㪼㪺㫋㫀㫅㪸㪼 㩷㩷㩷㪧㪸㫉㪸㪾㫆㫅㫀㪸㫋㫀㫅㪸㪼 㩷㩷㩷㪪㪼㫉㫉㪸㫊㪸㫃㫄㫀㫅㪸㪼 㩷㩷㩷㪪㫋㪼㫋㪿㪸㫇㫉㫀㫆㫅㫀㫅㪸㪼 㩷㩷㩷㪫㪼㫋㫉㪸㪾㫆㫅㫆㫇㫋㪼㫉㫀㫅㪸㪼 㩷㩷㩷㪫㫉㫀㫇㫆㫉㫋㪿㫀㫅㪸㪼 㪚㪿㫀㫃㫆㪻㫆㫅㫋㫀㪻㪸㪼 㪚㫉㪼㫅㫌㪺㪿㫀㪻㪸㪼 㪚㫋㪼㫅㫆㫃㫌㪺㫀㫀㪻㪸㪼 㪚㫌㫉㫀㫄㪸㫋㫀㪻㪸㪼 㪚㫐㫅㫆㪻㫆㫅㫋㫀㪻㪸㪼
㪊 㪈㪎
㪇 㪇
㪏 㪐㪇
㪈 㪈㪏 㪈㪉
㪈 㪈 㪎
㪈㪌 㪈㪈㪇 㪈㪊㪎
㪉 㪊 㪈 㪈㪉 㪈㪌 㪈㪐 㪉 㪎 㪈㪌 㪋 㪖 㪖 㪉 㪈㪉 㪉 㪏 㪋
㪉 㪉 㪈 㪍 㪐 㪉 㪈 㪈 㪈㪈 㪊 㪉㪇 㪈 㪉 㪈 㪉 㪎 㪇
㪈㪇 㪋㪊 㪉 㪎㪇 㪋㪍 㪌㪇 㪉 㪏 㪏㪇 㪈㪉 㪖 㪖 㪎 㪎㪋 㪎 㪐㪌 㪈㪋
㪊㪋㪈 㪇 㪇 㪇 㪊㪋㪈 㪊 㪌㪇 㪈 㪌㪍 㪊㪐 㪌㪋 㪈㪐㪋 㪋 㪌㪇 㪈㪉 㪌㪇 㪈 㪌㪉㪃㩷㪌㪋 㪈㪊 㪋㪍㪃㩷㪌㪇㪃㩷㪌㪉 㪈㪍 㪊㪉㪃㩷㪋㪉㪃㩷㪌㪇㪃㩷㪌㪉 㪌 㪌㪉 㪈 㪌㪇 㪈 㪌㪉 㪊㪌 㪌㪋㪃㩷㪌㪏㪃㩷㪍㪇㪄㪍㪋 㪋 㪐㪈 㪊㪍㪃㩷㪊㪏㪃㩷㪋㪍㪄㪌㪋 㪈㪈 㪌㪇㪃㩷㪌㪉 㪉 㪌㪋 㪐 㪌㪇 㪉 㪊㪍 㪊㪎 㪋㪍㪃㩷㪌㪋㪃㩷㪌㪍㪃㩷㪈㪇㪉 㪇
㪈㪅㪎㪃㩷㪊㪅㪈 㪉㪅㪋 㪉㪅㪏㪄㪊㪅㪋
㪉㪅㪍㪄㪊㪅㪌 㪉㪅㪌㪄㪉㪅㪎 㪉㪅㪋 㪉㪅㪉 㪉㪅㪉㪄㪊㪅㪈 㪊㪅㪎 㪉㪅㪌㪃㩷㪊㪅㪈 㪉㪅㪋
㪉㪅㪌㪄㪋㪅㪇
㪊㪅㪉㪄㪊㪅㪍 㪊㪅㪌 㪉㪅㪈㪄㪋㪅㪉 㪉㪅㪎㪃㩷㪊㪅㪌
㪉㪅㪏㪄㪊㪅㪏 㪉㪅㪇㪄㪉㪅㪈
㪊㪅㪋 㪉㪅㪉 㪊㪅㪋
㪊㪅㪇
㪊㪅㪉㪄㪊㪅㪋 㪊㪅㪉㪄㪋㪅㪉
14 㪫㪸㪹㫃㪼㩷㪊㪅㪊㩷㩷㪚㫃㪸㫊㫊㩷㪘㪚㪫㪠㪥㪦㪧㪫㪜㪩㪰㪞㪠㪠㪅㩷㪧㪸㫉㫋㩷㪉㩷㪥㪼㫆㫇㫋㪼㫉㫐㪾㫀㫀㫀㫀㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㪦㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㪾㪼㫅㫌㫊 㩷㩷㪥㫆㪅㩷㫆㪽㩷㪾㪼㫅㪼㫉㪸㩷 㫋㫆㫋㪸㫃 㫊㫋㫌㪻㫀㪼㪻 㪜㫉㫐㫋㪿㫉㫀㫅㫀㪻㪸㪼 㪊 㪊 㪞㪸㫊㫋㪼㫉㫆㫇㪼㫃㪼㪺㫀㪻㪸㪼 㪊 㪊 㪟㪼㫄㫀㫆㪻㫆㫅㫋㫀㪻㪸㪼 㪍 㪊 㪟㪼㫇㫊㪼㫋㫀㪻㪸㪼 㪈 㪇 㪣㪼㪹㫀㪸㫊㫀㫅㫀㪻㪸㪼 㪎 㪋 㪧㪸㫉㫆㪻㫆㫅㫋㫀㪻㪸㪼 㪊 㪉 㪧㫉㫆㪺㪿㫀㫃㫆㪻㫆㫅㫋㫀㪻㪸㪼 㪊 㪉
㩷㩷㪥㫆㪅㩷㫆㪽㩷㫊㫇㪆㫊㫊㫇 㪉㫅 㫋㫆㫋㪸㫃 㫊㫋㫌㪻㫀㪼㪻 㪈㪋 㪈㪈 㪊㪐㪄㪋㪉㪃㩷㪋㪏㪄㪌㪋㩷 㪐 㪌 㪋㪏㪃㩷㪌㪉㪃㩷㪌㪋 㪉㪏 㪎 㪌㪋 㪈 㪇 㪍㪈 㪈㪈 㪉㪉㪄㪋㪍 㪉㪈 㪏 㪌㪋 㪉㪈 㪈㪉 㪌㪋
㪪㪠㪣㪬㪩㪠㪝㪦㪩㪤㪜㪪
㪘㫂㫐㫊㫀㪻㪸㪼 㪘㫄㪹㫃㫐㪺㫀㫇㫀㫋㫀㪻㪸㪼 㪘㫄㫇㪿㫀㫃㫀㫀㪻㪸㪼 㪘㫉㫀㫀㪻㪸㪼 㪘㫊㫇㫉㪼㪻㫀㫅㫀㪻㪸㪼 㪘㫊㫋㫉㫆㪹㫃㪼㫇㫀㪻㪸㪼 㪘㫌㪺㪿㪼㫅㫀㫇㫋㪼㫉㫀㪻㪸㪼 㪘㫌㪺㪿㪼㫅㫆㪾㫃㪸㫅㫀㪻㫀㪻㪸㪼 㪘㫌㫊㫋㫉㫆㪾㫃㪸㫅㫀㪻㪸㪼 㪙㪸㪾㫉㫀㪻㪸㪼 㪚㪸㫃㫃㫀㪺㪿㫋㪿㫐㫀㪻㪸㪼 㩷㩷㩷㩷㪚㪸㫃㫃㫀㪺㪿㫋㪿㫐㫀㫅㪸㪼
㪋 㪊 㪉 㪉㪈 㪈㪉 㪈 㪉㪇 㪍 㪈 㪈㪏
㪇 㪉 㪇 㪐 㪈 㪇 㪋 㪇 㪇 㪈㪇
㪋㪉 㪉㪍 㪉㪍 㪈㪌㪇 㪊㪍 㪌㪋 㪐㪋 㪉㪏 㪊 㪈㪎㪇
㪌
㪋
㪈㪊
㩷㩷㩷㩷㩷㩷㩷㩷㪛㫀㪸㫅㪼㫄㪸㪃㩷㪟㫆㫇㫃㫆㫊㫋㪼㫉㫅㫌㫄 㩷㩷㩷㩷㩷㩷㩷㩷㪚㪸㫃㫃㫀㪺㪿㫋㪿㫐㫊 㩷㩷㩷㩷㩷㩷㩷㩷㪤㪼㪾㪸㫃㪼㪺㪿㫀㫊 㩷㩷㩷㩷㪚㫆㫉㫐㪻㫆㫉㪸㪻㫀㫅㪸㪼 㩷㩷㩷㩷㩷㩷㩷㩷㪚㫆㫉㫐㪻㫆㫉㪸㫊 㩷㩿㪉㪯㪀 㩷㩷㩷㩷㩷㩷㩷㩷㪚㫆㫉㫐㪻㫆㫉㪸㫊 㩷㩿㪉㪯㪀 㩷㩷㩷㩷㩷㩷㩷㩷㪚㫆㫉㫐㪻㫆㫉㪸㫊㩷 㩿㪋㪯㪀 㪚㪼㫋㫆㫇㫊㫀㪻㪸㪼 㪚㪿㪸㪺㫀㪻㪸㪼 㪚㫃㪸㫉㫀㫀㪻㪸㪼 㪚㫃㪸㫉㫆㫋㪼㫀㪻㪸㪼 㪚㫉㪸㫅㫆㪾㫃㪸㫅㫀㪻㫀㪻㪸㪼 㪛㫀㫇㫃㫆㫄㫐㫊㫋㫀㪻㪸㪼 㪛㫆㫉㪸㪻㫀㪻㪸㪼 㪜㫉㪼㫋㪿㫀㫊㫋㫀㪻㪸㪼 㪟㪼㫇㫋㪸㫇㫋㪼㫉㫀㪻㪸㪼 㪟㪼㫋㪼㫉㫆㫇㫅㪼㫌㫊㫋㫀㪻㪸㪼 㪠㪺㫋㪸㫃㫌㫉㫀㪻㪸㪼 㪣㫆㫉㫀㪺㪸㫉㫀㫀㪻㪸㪼 㩷㩷㩷㩷㪘㫅㪺㫀㫊㫋㫉㫀㫅㪸㪼 㩷㩷㩷㩷㪟㫐㫇㫆㫇㫋㫆㫇㫆㫄㪸㫋㫀㫅㪸㪼 㩷㩷㩷㩷㪟㫐㫇㫆㫊㫋㫆㫄㫀㫅㪸㪼 㩷㩷㩷㩷㪣㫀㫋㪿㫆㪾㪼㫅㪼㫀㫅㪸㪼 㩷㩷㩷㩷㪣㫆㫉㫀㪺㪸㫉㫀㫀㫅㪸㪼 㩷㩷㩷㩷㪥㪼㫆㫇㫃㪼㪺㫆㫊㫋㫆㫄㫀㫅㪸㪼 㩷㩷㩷㩷㪬㫇㫊㫀㫃㫆㪻㫀㫅㪸㪼 㪤㪸㫃㪸㫇㫋㪼㫉㫌㫉㫀㪻㪸㪼 㪤㫆㪺㪿㫆㫂㫀㪻㪸㪼 㪥㪼㫄㪸㫋㫆㪾㪼㫅㫐㫀㪻㪸㪼 㪧㪸㫅㪾㪸㫊㫀㫀㪻㪸㪼 㪧㫀㫄㪼㫃㫆㪻㫀㪻㪸㪼 㪧㫃㫆㫋㫆㫊㫀㪻㪸㪼 㪧㫊㪼㫌㪻㫆㫇㫀㫄㪼㫃㫆㪻㫀㪻㪸㪼 㪪㪺㪿㫀㫃㪹㪼㫀㪻㪸㪼 㪪㪺㫆㫃㫆㫇㫃㪸㪺㫀㪻㪸㪼 㪪㫀㫃㫌㫉㫀㪻㪸㪼
㪋
㪋
㪈㪍㪋
㪎 㪈 㪈㪋 㪎 㪈 㪉 㪊㪇 㪍 㪉㪌 㪈 㪎
㪇 㪇 㪉 㪇 㪈 㪉 㪈㪈 㪈 㪍 㪈 㪌
㪉㪊 㪊 㪐㪇 㪌㪐 㪊 㪍 㪎㪉 㪈㪋 㪈㪎㪌 㪊 㪋㪍
㪉㪎 㪈㪍 㪖 㪈 㪊㪈 㪖 㪖 㪉 㪈㪈 㪈 㪊 㪊㪈 㪈㪇 㪌 㪈㪌 㪈 㪈㪈
㪌 㪏 㪍 㪇 㪎 㪌 㪈 㪇 㪉 㪇 㪉 㪈㪋 㪈 㪌 㪋 㪈 㪋
㪉㪈㪎 㪎㪐 㪖 㪉 㪉㪇㪐 㪖 㪖 㪈㪐 㪈㪎㪐 㪈 㪉㪏 㪏㪌 㪊㪌 㪉㪍 㪌㪍 㪋 㪐㪎
㪊㪍㪉 㪇 㪐 㪇 㪈㪌 㪈 㪇 㪌 㪇 㪇 㪊㪊 㪋㪏 㪎 㪌 㪈 㪈 㪋㪈 㪈㪉 㪏 㪌 㪇 㪇 㪏 㪇 㪈 㪊 㪈㪊 㪈 㪉㪇 㪈 㪊㪊 㪎㪋 㪈㪇 㪈㪉 㪉㪊 㪇 㪈㪏 㪈㪇 㪈 㪇 㪐 㪇 㪌 㪊㪇 㪉 㪍 㪋 㪈 㪈㪊
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷㩿㫇㪾㪆㪺㪼㫃㫃㪀㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷 㪝㪚㪤 㪝㪛 㪝㪠㪘 㪙㪝㪘 㪉㪅㪊 㪉㪅㪏 㪉㪅㪉㪄㪉㪅㪍 㪉㪅㪏
㪉㪅㪇 㪉㪅㪇㪄㪉㪅㪌 㪊㪅㪈㪄㪊㪅㪎
㪉㪅㪋
㪉㪇㪄㪋㪉 㪌㪉㪄㪌㪍 㪌㪇
㪋㪅㪌
㪋㪅㪐
㪋㪅㪏㪄㪌㪅㪇
㪌㪍㪃㩷㪌㪏
㪋㪋㪃㩷㪋㪏㪄㪍㪇 㪌㪍㪄㪍㪋 㪍㪇㪄㪍㪉 㪌㪍㪄㪌㪏 㪍㪋 㪋㪇㪄㪈㪊㪋 㪌㪍㪄㪍㪉㪃㩷㪎㪋 㪋㪇㪄㪌㪇㪃㩷㪌㪍 㪐㪉㪃㩷㪈㪉㪇㪄㪈㪊㪋
㪈㪅㪏
㪈㪅㪏㪄㪉㪅㪉
㪈㪅㪉㪄㪈㪅㪋 㪈㪅㪐
㪊㪅㪋
㪊㪅㪉
㪏㪅㪋
㪌㪇㪄㪌㪍㪃㩷㪈㪇㪇 㪎㪋 㪌㪍 㪌㪍㪃㩷㪌㪏㪃㩷㪍㪍 㪌㪇 㪋㪍㪃㩷㪌㪉㪄㪌㪏㪃㩷㪏㪎㩷 㪌㪍 㪋㪇㪄㪍㪉
㪈㪅㪐㪄㪉㪅㪈
㪈㪅㪊㪄㪊㪅㪍 㪋㪅㪌㪄㪋㪅㪐 㪍㪅㪊㪄㪏㪅㪏
㪍㪅㪋
㪋㪅㪍㪄㪍㪅㪇 㪏㪅㪋㪄㪏㪅㪏
㪈㪅㪏
㪉㪅㪋
㪉㪅㪍 㪊㪅㪌
㪊㪅㪉
㪈㪅㪏㪄㪉㪅㪉 㪉㪅㪇
㪊㪏㪄㪋㪇㪃㩷㪋㪏㪄㪌㪉 㪌㪋㪃㩷㪌㪏㪃㩷㪎㪉 㪌㪉㪄㪌㪋㪃㩷㪍㪋㪄㪏㪇 㪊㪍㪄㪎㪋 㪌㪋 㪐㪍
㪈㪅㪐㪄㪉㪅㪈
㪉㪅㪋
㪈㪅㪏㪃㩷㪉㪅㪎 㪊㪅㪉㪄㪋㪅㪌
㪊㪅㪉㪄㪊㪅㪋
㪊㪅㪍 㪋㪅㪉 㪋㪅㪉
㪊㪅㪇
㪊㪅㪉
㪈㪅㪐㪃㩷㪉㪅㪏
㪉㪅㪇 㪉㪅㪉㪄㪉㪅㪋
㪉㪅㪊
㪌㪋㪃㩷㪌㪍 㪌㪏㪃㩷㪍㪇 㪌㪇㪃㩷㪌㪋㪃㩷㪌㪍 㪊㪍㪄㪊㪏㪃㩷㪋㪏 㪌㪋 㪌㪏㪃㩷㪍㪍 㪌㪇 㪋㪉㪃㩷㪌㪋㪄㪍㪇㪃㩷㪏㪍
㪊㪅㪉
㪈㪅㪈㪃㩷㪉㪅㪇㪄㪉㪅㪏
㪉㪅㪋 㪊㪅㪌
㪉㪅㪉㪄㪉㪅㪌 㪉㪅㪇 㪉㪅㪊
㪈㪅㪎㪄㪉㪅㪐
㪈㪅㪏
15 㪫㪸㪹㫃㪼㩷㪊㪅㪊㩷㩷㪚㫃㪸㫊㫊㩷㪘㪚㪫㪠㪥㪦㪧㪫㪜㪩㪰㪞㪠㪠㪅㩷㪧㪸㫉㫋㩷㪉㩷㪥㪼㫆㫇㫋㪼㫉㫐㪾㫀㫀㫀㫀㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㪦㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㪾㪼㫅㫌㫊 㩷㩷㪥㫆㪅㩷㫆㪽㩷㪾㪼㫅㪼㫉㪸㩷 㫋㫆㫋㪸㫃 㫊㫋㫌㪻㫀㪼㪻 㪪㫀㫊㫆㫉㫀㪻㪸㪼 㩷㩷㩷㩷㪪㫀㫊㫆㫉㫀㫅㪸㪼 㪍 㪉 㩷㩷㩷㩷㪞㫃㫐㫇㫋㫆㫊㫋㪼㫉㫅㫀㫅㪸㪼 㪈㪈 㪋 㪫㫉㫀㪺㪿㫆㫄㫐㪺㫋㪼㫉㫀㪻㪸㪼 㪋㪈 㪍
㩷㩷㪥㫆㪅㩷㫆㪽㩷㫊㫇㪆㫊㫊㫇 㪉㫅 㫋㫆㫋㪸㫃 㫊㫋㫌㪻㫀㪼㪻 㪐 㪉㪊 㪉 㪋㪉㪃㩷㪋㪍㪄㪋㪏 㪏㪐 㪎 㪊㪍㪃㩷㪋㪉㪃㩷㪌㪇㪄㪌㪍 㪉㪇㪈 㪈㪏 㪊㪉㪃㩷㪌㪋㪃㩷㪏㪈
㪞㪰㪤㪥㪦㪫㪠㪝㪦㪩㪤㪜㪪
㪪㫌㪹㫆㫉㪻㪼㫉㩷㪞㫐㫄㫅㫆㫋㫆㫀㪻㪼㫀 㪞㫐㫄㫅㫆㫋㫀㪻㪸㪼 㪪㫌㪹㫆㫉㪻㪼㫉㩷㪪㫋㪼㫉㫅㫆㫇㫐㪾㫆㫀㪻㪼㫀 㪘㫇㫋㪼㫉㫆㫅㫆㫋㫀㪻㪸㪼 㪟㫐㫇㫆㫇㫆㫄㫀㪻㪸㪼 㪩㪿㪸㫄㫇㪿㫀㪺㪿㫋㪿㫐㫀㪻㪸㪼 㪪㫋㪼㫉㫅㫆㫇㫐㪾㫀㪻㪸㪼
㪉
㪉
㪊㪊
㪈㪊 㪎 㪊 㪌
㪉 㪊 㪈 㪉
㪋㪌 㪈㪍 㪈㪉 㪉㪏
㪈㪎 㪍 㪍 㪈㪈 㪊 㪋 㪈 㪊
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷㩿㫇㪾㪆㪺㪼㫃㫃㪀㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷 㪝㪚㪤 㪝㪛 㪝㪠㪘 㪙㪝㪘
㪉㪅㪊㪄㪉㪅㪍
㪋㪇㪄㪋㪏㪃㩷㪌㪉㪄㪌㪋
㪉㪅㪇
㪉㪉㪃㩷㪉㪋㪃㩷㪌㪉 㪊㪍㪄㪊㪏㪃㩷㪋㪉㪃㩷㪌㪇 㪌㪉 㪉㪏㪄㪋㪇㪃㩷㪋㪍㪄㪋㪏
㪈㪅㪋 㪈㪅㪐 㪉㪅㪇
㪪㫌㪹㪻㫀㫍㫀㫊㫀㫆㫅㩷㪜㫌㫋㪼㫃㪼㫆㫊㫋㪼㫀 㪘㪩㪞㪜㪥㪫㪠㪥㪠㪝㪦㪩㪤㪜㪪
㪪㫌㪹㫆㫉㪻㪼㫉㩷㪘㫉㪾㪼㫅㫋㫀㫅㫆㫀㪻㪼㫀 㪘㫉㪾㪼㫅㫋㫀㫅㫀㪻㪸㪼 㪤㫀㪺㫉㫆㫊㫋㫆㫄㪸㫋㫀㪻㪸㪼 㪦㫇㫀㫊㫋㪿㫆㫇㫉㫆㪺㫋㫀㪻㪸㪼 㪪㫌㪹㫆㫉㪻㪼㫉㩷㪘㫃㪼㫇㫆㪺㪼㫇㪿㪸㫃㫆㫀㪻㪼㫀㩷 㪘㫃㪼㫇㫆㪺㪼㫇㪿㪸㫃㫀㪻㪸㪼 㪙㪸㫋㪿㫐㫃㪸㪺㫆㫅㫀㪻㪸㪼 㪧㫃㪸㫋㫐㫋㫉㫆㪺㫋㫀㪻㪸㪼
㪉 㪈㪈 㪍
㪈 㪋 㪇
㪉㪊 㪊㪏 㪈㪈
㪉㪊 㪉 㪈㪊
㪇 㪇 㪇
㪐㪇 㪊 㪊㪎
㪏
㪉
㪌㪉
㪈 㪋 㪈 㪌 㪊
㪈 㪊 㪈 㪉 㪇
㪍 㪏 㪈 㪈㪍 㪌
㪦㪪㪤㪜㪩㪠㪝㪦㪩㪤㪜㪪
㪞㪸㫃㪸㫏㫀㫀㪻㪸㪼 㪦㫊㫄㪼㫉㫀㪻㪸㪼 㩷㩷㩷㩷㪟㫐㫇㫆㫄㪼㫊㫀㫅㪸㪼 㩷㩷㩷㩷㪦㫊㫄㪼㫉㫀㫅㪸㪼 㩷㩷㩷㩷㪧㫃㪼㪺㫆㪾㫃㫆㫊㫊㫀㫅㪸㪼 㩷㩷㩷㩷㪪㪸㫃㪸㫅㪾㫀㫅㪸㪼 㪩㪼㫋㫉㫆㫇㫀㫅㫅㫀㪻㪸㪼 㪪㪘㪣㪤㪦㪥㪠㪝㪦㪩㪤㪜㪪
㪪㪸㫃㫄㫆㫅㫀㪻㪸㪼 㩷㩷㩷㩷㪚㫆㫉㪼㪾㫆㫅㫀㫅㪸㪼 㩷㩷㩷㩷㪫㪿㫐㫄㪸㫃㫃㫀㫅㪸㪼 㩷㩷㩷㩷㪪㪸㫃㫄㫆㫅㫀㫅㪸㪼
㪊 㪈 㪎
㪊 㪈 㪎
㪊㪉 㪌 㪎㪊
㩷㩷㩷㩷㩷㩷㩷㩷㩷㪙㫉㪸㪺㪿㫐㫄㫐㫊㫋㪸㫏 㩷㩷㩷㩷㩷㩷㩷㩷㩷㪟㫌㪺㪿㫆 㩷㩷㩷㩷㩷㩷㩷㩷㩷㪧㪸㫉㪸㪿㫌㪺㪿㫆 㩷㩷㩷㩷㩷㩷㩷㩷㩷㪦㫅㪺㫆㫉㪿㫐㫅㪺㪿㫌㫊 㩷㩷㩷㩷㩷㩷㩷㩷㩷㪪㪸㫃㫄㫆 㩷㩷㩷㩷㩷㩷㩷㩷㩷㪪㪸㫃㫍㪼㫃㫀㫅㫌㫊 㪜㪪㪦㪚㪠㪝㪦㪩㪤㪜㪪
㪜㫊㫆㪺㫀㪻㪸㪼 㪬㫄㪹㫉㫀㪻㪸㪼
㪈 㪊
㪈 㪊
㪍 㪎
㩷㩷㩷㩷㩷㩷㩷㩷㩷㪛㪸㫃㫃㫀㪸 㩷㩷㩷㩷㩷㩷㩷㩷㩷㪥㫆㫍㫌㫄㪹㫉㪸 㩷㩷㩷㩷㩷㩷㩷㩷㩷㪬㫄㪹㫉㪸 㪪㪫㪦㪤㪠㪠㪝㪦㪩㪤㪜㪪
㪛㫀㫇㫃㫆㫇㪿㫀㪻㪸㪼 㪪㫌㪹㫆㫉㪻㪼㫉㩷㪞㫆㫅㫆㫊㫋㫆㫄㪸㫋㫆㫀㪻㪼㫀 㪞㫆㫅㫆㫊㫋㫆㫄㪸㫋㫀㪻㪸㪼 㪪㫋㪼㫉㫅㫆㫇㫋㫐㪺㪿㫀㪻㪸㪼
㪊
㪇
㪏
㪌 㪈㪇
㪊 㪉
㪉㪊 㪍㪎
㪌 㪌 㪈 㪋 㪇 㪇 㪇 㪇 㪇 㪈㪐 㪈㪇 㪐 㪊 㪊 㪈 㪉 㪇
㪋㪋 㪊㪍㪃㩷㪌㪋㪃㩷㪍㪇㪃㩷㪍㪉
㪈㪅㪎 㪊㪅㪋㪃㩷㪍㪅㪊
㪉㪉㪃㩷㪊㪇㪄㪋㪋
㪈㪅㪏㪄㪉㪅㪈
㪌㪍 㪌㪋㪃㩷㪌㪍 㪌㪍 㪌㪍
㪈㪅㪉
㪈㪅㪌㪄㪈㪅㪎
㪈㪅㪋
㪏㪌 㪏㪌 㪉㪎 㪊 㪌㪌 㪈 㪉 㪈 㪉㪈 㪈㪉 㪈㪏
㪍㪇㪄㪍㪋㪃㩷㪎㪉㪄㪏㪍 㪐㪏㪄㪈㪈㪇 㪌㪉㪄㪐㪉 㪐㪇㪄㪐㪉 㪏㪉㪄㪏㪋 㪍㪉 㪌㪉㪃㩷㪌㪏㪄㪎㪇㪃㩷㪎㪋 㪌㪋㪄㪌㪏㪃㩷㪎㪏㪄㪏㪋 㪎㪏㪄㪏㪋
㪍㪅㪇㪄㪎㪅㪈 㪋㪅㪊
㪌㪅㪈㪄㪍㪅㪐
㪋㪅㪇㪄㪋㪅㪐 㪋㪅㪇
㪋㪅㪐㪄㪍㪅㪋 㪌㪅㪉㪄㪍㪅㪋 㪌㪅㪎
㪋㪅㪈㪄㪍㪅㪍 㪌㪅㪌㪄㪌㪅㪏 㪎㪅㪋㪄㪎㪅㪌
㪋㪅㪎㪄㪌㪅㪇 㪍㪅㪌 㪌㪅㪏㪄㪍㪅㪎
㪈㪈 㪍 㪌 㪈 㪈 㪊
㪌㪇 㪉㪉㪃㩷㪋㪋㪃㩷㪋㪏㪃㩷㪎㪏 㪎㪏 㪋㪏 㪋㪋㪃㩷㪉㪉
㪉㪅㪊
㪉㪅㪉㪄㪉㪅㪎
㪈㪅㪏㪄㪉㪅㪊
㪉㪅㪌 㪉㪅㪈 㪋㪅㪏㪄㪌㪅㪇
㪌㪅㪈
㪎 㪇 㪎 㪊 㪋
㪈㪉㪃㩷㪋㪏 㪊㪌㪃㩷㪋㪏㪄㪌㪉
㪍㪅㪇㪄㪍㪅㪍 㪎㪅㪇
㪌㪅㪋
16 㪫㪸㪹㫃㪼㩷㪊㪅㪊㩷㩷㪚㫃㪸㫊㫊㩷㪘㪚㪫㪠㪥㪦㪧㪫㪜㪩㪰㪞㪠㪠㪅㩷㪧㪸㫉㫋㩷㪉㩷㪥㪼㫆㫇㫋㪼㫉㫐㪾㫀㫀㫀㫀㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㪦㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㪾㪼㫅㫌㫊 㩷㩷㪥㫆㪅㩷㫆㪽㩷㪾㪼㫅㪼㫉㪸㩷 㫋㫆㫋㪸㫃 㫊㫋㫌㪻㫀㪼㪻 㪪㫌㪹㫆㫉㪻㪼㫉㩷㪧㪿㫆㫊㫀㪺㪿㫋㪿㫐㫆㫀㪻㪼㫀 㪧㪿㫆㫊㫀㪺㪿㫋㪿㫐㫀㪻㪸㪼 㪎 㪇 㪪㫋㫆㫄㫀㫀㪻㪸㪼 㪉㪏 㪇
㩷㩷㪥㫆㪅㩷㫆㪽㩷㫊㫇㪆㫊㫊㫇 㫋㫆㫋㪸㫃 㫊㫋㫌㪻㫀㪼㪻 㪇 㪉㪇 㪇 㪉㪎㪊 㪇
㪘㪫㪜㪣㪜㪦㪧㪦㪛㪠㪝㪦㪩㪤㪜㪪
㪘㫋㪼㫃㪼㫆㫇㫆㪻㫀㪻㪸㪼
㪋
㪇
㪈㪉
㪪㫌㪹㫆㫉㪻㪼㫉㩷㪪㫐㫅㫆㪻㫆㫅㫋㫆㫀㪻㪼㫀 㪘㫌㫃㫆㫇㫀㪻㪸㪼 㪧㪸㫉㪸㫌㫃㫆㫇㫀㪻㪸㪼 㪧㫊㪼㫌㪻㫆㫋㫉㫀㪺㪿㫆㫅㫆㫋㫀㪻㪸㪼 㪪㫐㫅㫆㪻㫆㫅㫋㫀㪻㪸㪼 㪪㫌㪹㫆㫉㪻㪼㫉㩷㪚㪿㫃㫆㫉㫆㫇㪿㫋㪿㪸㫃㫄㫆㫀㪻㪼㫀 㪙㪸㫋㪿㫐㫊㪸㫌㫉㫆㫀㪻㫀㪻㪸㪼 㪙㪸㫋㪿㫐㫊㪸㫌㫉㫆㫇㫊㫀㪻㪸㪼 㪚㪿㫃㫆㫉㫆㫇㪿㫋㪿㪸㫃㫄㫀㪻㪸㪼 㪠㫇㫅㫆㫇㫀㪻㪸㪼 㪥㫆㫋㫆㫊㫌㪻㫀㪻㪸㪼 㪪㫌㪹㫆㫉㪻㪼㫉㩷㪘㫃㪼㫇㫀㫊㪸㫌㫉㫆㫀㪻㪼㫀 㪘㫃㪼㫇㫀㫊㪸㫌㫉㫀㪻㪸㪼 㪜㫍㪼㫉㫄㪸㫅㫅㪼㫃㫃㫀㪻㪸㪼 㪧㪸㫉㪸㫃㪼㫇㫀㪻㫀㪻㪸㪼 㪪㪺㫆㫇㪼㫃㪸㫉㪺㪿㫀㪻㪸㪼 㪪㫌㪹㫆㫉㪻㪼㫉㩷㪞㫀㪾㪸㫅㫋㫌㫉㫆㫀㪻㪼㫀 㪙㪸㫋㪿㫐㫊㪸㫌㫉㫀㪻㪸㪼 㪞㫀㪾㪸㫅㫋㫌㫉㫀㪻㪸㪼
㪉 㪈 㪈 㪋
㪇 㪇 㪇 㪊
㪈㪇 㪈㪇 㪈 㪌㪎
㪈 㪈 㪉 㪌 㪊
㪇 㪇 㪈 㪇 㪇
㪈 㪊 㪈㪐 㪉㪐 㪈㪐
㪉 㪊 㪈㪊 㪋
㪇 㪇 㪇 㪇
㪊 㪎 㪌㪍 㪈㪎
㪈 㪈
㪇 㪇
㪉 㪉
㪊 㪊㪉
㪈 㪈㪍
㪍 㪉㪋㪇
㪉㪏 㪈 㪉㪎
㪈 㪉 㪈 㪉 㪈 㪊 㪉
㪇 㪇 㪇 㪇 㪇 㪇 㪇
㪉 㪊 㪈 㪉 㪈 㪈㪇 㪉
㪇 㪇 㪇 㪇 㪇 㪇 㪇 㪇
㪈
㪇
㪈㪇
㪇 㪇
㪌 㪈 㪈
㪇 㪈 㪇
㪍 㪈 㪉
㪈 㪇 㪈 㪇
㪈 㪈
㪇 㪇
㪈㪌 㪈
㪈㪉 㪊 㪈 㪉㪎 㪈
㪍 㪈 㪈 㪇 㪇
㪉㪌 㪌 㪈 㪊㪌㪇 㪉
㪤㪰㪚㪫㪦㪧㪟㪠㪝㪦㪩㪤㪜㪪
㪥㪼㫆㫊㪺㫆㫇㪼㫃㫀㪻㪸㪼 㪤㫐㪺㫋㫆㫇㪿㫀㪻㪸㪼 㪣㪘㪤㪧㪩㪠㪝㪦㪩㪤㪜㪪
㪣㪸㫄㫇㫉㫀㪻㪸㪼㩷㩿㪔㩷㪣㪸㫄㫇㫉㫀㪻㫀㪻㪸㪼㪀 㪣㫆㫇㪿㫆㫋㫀㪻㪸㪼 㪩㪸㪻㫀㫀㪺㪼㫇㪿㪸㫃㫀㪻㪸㪼 㪩㪼㪾㪸㫃㪼㪺㫀㪻㪸㪼 㪪㫋㫐㫃㪼㫇㪿㫆㫉㫀㪻㪸㪼 㪫㫉㪸㪺㪿㫀㫇㫋㪼㫉㫀㪻㪸㪼 㪭㪼㫃㫀㪽㪼㫉㫀㪻㪸㪼 㪧㪦㪣㪰㪤㪠㪯㪠㪠㪝㪦㪩㪤㪜㪪
㪧㫆㫃㫐㫄㫀㫏㫀㫀㪻㪸㪼
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷㩿㫇㪾㪆㪺㪼㫃㫃㪀㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷 㪝㪚㪤 㪝㪛 㪝㪠㪘 㪙㪝㪘
㪉㪅㪍
㪇 㪇 㪐 㪎 㪇 㪇 㪇 㪎 㪉 㪇 㪇 㪉 㪇 㪇 㪇 㪇 㪇 㪇 㪇 㪇 㪇 㪇
㪘㪬㪣㪦㪧㪠㪝㪦㪩㪤㪜㪪
㪉㫅
㪉㪍㪄㪉㪎㪃㩷㪋㪏
㪉㪅㪉㪄㪉㪅㪐
㪈㪅㪍㪄㪉㪅㪌
㪉㪅㪎㪃㩷㪊㪅㪈
㪉㪅㪍 㪊㪅㪏㪄㪋㪅㪇
㪌㪅㪇
㪉㪅㪋
㪉㪋㪃㩷㪊㪍
㪋㪏 㪋㪋㪃㩷㪋㪏
㪪㫌㫇㪼㫉㫆㫉㪻㪼㫉㩷㪧㪸㫉㪸㪺㪸㫅㫋㪿㫆㫇㫋㪼㫉㫐㪾㫀㫀 㪧㪜㪩㪚㪦㪧㪪㪠㪝㪦㪩㪤㪜㪪
㪘㫄㪹㫃㫐㫆㫇㫊㫀㪻㪸㪼 㪘㫇㪿㫉㪼㪻㫆㪻㪼㫉㫀㪻㪸㪼 㪧㪼㫉㪺㫆㫇㫊㫀㪻㪸㪼 㪞㪘㪛㪠㪝㪦㪩㪤㪜㪪
㪙㫉㪼㪾㫄㪸㪺㪼㫉㫆㫋㫀㪻㪸㪼 㪜㫌㪺㫃㫀㪺㪿㫋㪿㫐㫀㪻㪸㪼 㪞㪸㪻㫀㪻㪸㪼 㩷㩷㩷㩷㪞㪸㪻㫀㫅㪸㪼 㩷㩷㩷㩷㪣㫆㫋㫀㫅㪸㪼 㩷㩷㩷㩷㪩㪸㫅㫀㪺㫀㫇㫀㫋㫀㫅㪸㪼 㪤㪸㪺㫉㫆㫌㫉㫀㪻㪸㪼 㪤㪼㫃㪸㫅㫆㫅㫀㪻㪸㪼
㪈㪌 㪇 㪇 㪈㪉 㪈㪇 㪈 㪈 㪇 㪇
㪋㪏
㪉㪍㪃㩷㪊㪏㪄㪋㪏 㪋㪏 㪋㪏
㪈㪅㪎㪄㪈㪅㪐
㪈㪅㪌㪄㪈㪅㪐
㪈㪅㪏
17 㪫㪸㪹㫃㪼㩷㪊㪅㪊㩷㩷㪚㫃㪸㫊㫊㩷㪘㪚㪫㪠㪥㪦㪧㪫㪜㪩㪰㪞㪠㪠㪅㩷㪧㪸㫉㫋㩷㪉㩷㪥㪼㫆㫇㫋㪼㫉㫐㪾㫀㫀㫀㫀㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㪦㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㪾㪼㫅㫌㫊 㩷㩷㪥㫆㪅㩷㫆㪽㩷㪾㪼㫅㪼㫉㪸㩷 㫋㫆㫋㪸㫃 㫊㫋㫌㪻㫀㪼㪻 㪤㪼㫉㫃㫌㪺㪺㫀㫀㪻㪸㪼 㪈 㪇 㪤㫆㫉㫀㪻㪸㪼 㪈㪏 㪇 㪤㫌㫉㪸㪼㫅㫆㫃㪼㫇㫀㪻㫀㪻㪸㪼 㪈 㪈 㪧㪿㫐㪺㫀㪻㪸㪼 㪌 㪉
㩷㩷㪥㫆㪅㩷㫆㪽㩷㫊㫇㪆㫊㫊㫇 㫋㫆㫋㪸㫃 㫊㫋㫌㪻㫀㪼㪻 㪈㪊 㪇 㪈㪇㪌 㪇 㪋 㪈 㪉㪌 㪉
㪎 㪋㪏
㪈 㪉
㪊㪈 㪉㪉㪉
㪍 㪈㪍 㪉
㪇 㪇 㪇
㪉㪉 㪍㪉 㪊
㪊 㪊 㪈 㪉 㪇 㪇 㪇 㪇
㪈㪎
㪏
㪎㪉
㪈㪏 㪈㪏
㪦㪧㪟㪠㪛㪠㪠㪝㪦㪩㪤㪜㪪
㪪㫌㪹㫆㫉㪻㪼㫉㩷㪦㫇㪿㫀㪻㫀㫆㫀㪻㪼㫀 㪚㪸㫉㪸㫇㫀㪻㪸㪼 㪦㫇㪿㫀㪻㫀㫀㪻㪸㪼 㪪㫌㪹㫆㫉㪻㪼㫉㩷㪙㫐㫋㪿㫀㫋㫆㫀㪻㪼㫀 㪘㫇㪿㫐㫆㫅㫀㪻㪸㪼 㪙㫐㫋㪿㫀㫋㫀㪻㪸㪼 㪧㪸㫉㪸㪹㫉㫆㫋㫌㫃㫀㪻㪸㪼
㪉㫅
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷㩿㫇㪾㪆㪺㪼㫃㫃㪀㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷 㪝㪚㪤 㪝㪛 㪝㪠㪘 㪙㪝㪘 㪈㪅㪎㪄㪈㪅㪐 㪈㪅㪐㪄㪉㪅㪇 㪈㪅㪌㪃㩷㪈㪅㪐
㪋㪏 㪉㪏㪃㩷㪋㪏
㪈㪅㪎
㪊㪍 㪋㪊㪃㩷㪋㪋
㪈㪅㪉㪄㪈㪅㪊
㪈㪅㪋㪃㩷㪈㪅㪎
㪈㪅㪍㪄㪉㪅㪇
㪉㪅㪇
㪋㪋㪃㩷㪋㪍㪃㩷㪋㪏
㪈㪅㪊
㪉㪅㪉
㪋㪏 㪋㪏 㪋㪍㪃㩷㪋㪏
㪉㪅㪈
㪪㫌㫇㪼㫉㫆㫉㪻㪼㫉㩷㪘㪺㪸㫅㫋㪿㫆㫇㫋㪼㫉㫐㪾㫀㫀 㪤㪬㪞㪠㪣㪠㪝㪦㪩㪤㪜㪪
㪤㫌㪾㫀㫃㫀㪻㪸㪼 㪘㪫㪟㪜㪩㪠㪥㪠㪝㪦㪩㪤㪜㪪
㪪㫌㪹㫆㫉㪻㪼㫉㩷㪘㫋㪿㪼㫉㫀㫅㫆㫇㫊㫆㫀㪻㪼㫀 㪘㫋㪿㪼㫉㫀㫅㫆㫇㫊㫀㪻㪸㪼 㪪㫌㪹㫆㫉㪻㪼㫉㩷㪘㫋㪿㪼㫉㫀㫅㫆㫀㪻㪼㫀 㪘㫋㪿㪼㫉㫀㫅㫀㪻㪸㪼 㪘㫋㪿㪼㫉㫀㫆㫅㫀㪻㪸㪼 㪤㪼㫃㪸㫅㫆㫋㪼㪸㫅㫀㫀㪻㪸㪼 㪥㫆㫋㫆㪺㪿㪼㫀㫉㫀㪻㪸㪼 㪧㪿㪸㫃㫃㫆㫊㫋㪼㫋㪿㫀㪻㪸㪼
㪈㪈
㪍
㪈㪇㪏
㪈㪉 㪈 㪈㪎 㪉 㪌
㪉 㪈 㪊 㪇 㪇
㪍㪇 㪊 㪈㪈㪊 㪍 㪉㪉
㪙㪜㪣㪦㪥㪠㪝㪦㪩㪤㪜㪪
㪪㫌㪹㫆㫉㪻㪼㫉㩷㪘㪻㫉㫀㪸㫅㫀㪺㪿㫋㪿㫐㫆㫀㪻㪼㫀 㪘㪻㫉㫀㪸㫅㫀㪺㪿㫋㪿㫐㫀㪻㪸㪼 㩷㩷㩷㩷㪘㪻㫉㫀㪸㫅㫀㪺㪿㫋㪿㫐㫀㫅㪸㪼 㩷㩷㩷㩷㪟㫆㫉㪸㫀㪺㪿㫋㪿㫐㫀㫅㪸㪼 㩷㩷㩷㩷㪦㫉㫐㫑㫀㫀㫅㪸㪼 㪪㫌㪹㫆㫉㪻㪼㫉㩷㪙㪼㫃㫆㫅㫆㫀㪻㪼㫀 㪙㪼㫃㫆㫅㫀㪻㪸㪼 㪜㫏㫆㪺㫆㪼㫋㫀㪻㪸㪼 㪟㪼㫄㫀㫉㪸㫄㫇㪿㫀㪻㪸㪼 㪪㪺㫆㫄㪹㪼㫉㪼㫊㫆㪺㫀㪻㪸㪼
㪉 㪈 㪈
㪇 㪇 㪈
㪌 㪈 㪉㪉
㪈㪇 㪏 㪈㪉 㪉
㪋 㪈 㪋 㪈
㪊㪋 㪌㪉 㪈㪇㪐 㪋
㪚㪰㪧㪩㪠㪥㪦㪛㪦㪥㪫㪠㪝㪦㪩㪤㪜㪪
㪪㫌㪹㫆㫉㪻㪼㫉㩷㪘㫇㫃㫆㪺㪿㪼㫀㫃㫆㫀㪻㪼㫀 㪘㫇㫃㫆㪺㪿㪼㫀㫃㫀㪻㪸㪼 㪥㫆㫋㪿㫆㪹㫉㪸㫅㪺㪿㫀㫀㪻㪸㪼 㪩㫀㫍㫌㫃㫀㪻㪸㪼 㪪㫌㪹㫆㫉㪻㪼㫉㩷㪚㫐㫇㫉㫀㫅㫆㪻㫆㫅㫋㫆㫀㪻㪼㫀 㪘㫅㪸㪹㫃㪼㫇㫀㪻㪸㪼 㪚㫐㫇㫉㫀㫅㫆㪻㫆㫅㫋㫀㪻㪸㪼 㪝㫌㫅㪻㫌㫃㫀㪻㪸㪼 㪞㫆㫆㪻㪼㫀㪻㪸㪼 㪧㫆㪼㪺㫀㫃㫀㫀㪻㪸㪼 㩷㩷㩷㩷㪘㫇㫃㫆㪺㪿㪼㫀㫃㫀㪺㪿㫋㪿㫐㫀㫅㪸㪼 㩷㩷㩷㩷㪧㫉㫆㪺㪸㫋㫆㫇㫆㪻㫀㫅㪸㪼 㩷㩷㩷㩷㪧㫆㪼㪺㫀㫃㫀㫀㫅㪸㪼 㪧㫉㫆㪽㫌㫅㪻㫌㫃㫀㪻㪸㪼 㪭㪸㫃㪼㫅㪺㫀㫀㪻㪸㪼
㪉 㪖 㪉㪏
㪉 㪈㪇 㪈㪉
㪎 㪉㪌㪇 㪉㪊㪍
㪊 㪐 㪋 㪈㪍
㪈 㪍 㪉 㪈㪍
㪈㪌 㪈㪇㪋 㪌㪇 㪊㪍
㪈 㪐 㪉㪎 㪈 㪈
㪈 㪊 㪏 㪇 㪈
㪖 㪎㪏 㪉㪉㪌 㪌 㪉
㪉㪈 㪈㪉 㪈㪉 㪐 㪉 㪈 㪍 㪇 㪇 㪉㪍 㪈㪊 㪈㪊 㪇 㪇 㪈㪊 㪈㪊 㪎 㪈 㪋 㪈 㪊㪋㪍 㪉㪇㪌 㪍 㪈㪌㪌 㪋㪋 㪈㪋㪈 㪈 㪊㪌 㪉㪋 㪊㪍 㪋㪋 㪉 㪋 㪊㪏 㪇 㪈
㪉㪋㪃㩷㪉㪏㪃㩷㪋㪏
㪈㪅㪍
㪈㪅㪋
㪉㪅㪍
㪉㪏㪄㪋㪉㪃㩷㪋㪍㪃㩷㪋㪏
㪉㪅㪈㪄㪉㪅㪉
㪈㪅㪌㪄㪈㪅㪐
㪋㪏㪃㩷㪌㪇㪃㩷㪌㪋 㪋㪏 㪋㪇㪃㩷㪋㪍㪃㩷㪋㪏㪃㩷㪌㪉 㪋㪉
㪉㪅㪊 㪈㪅㪐 㪉㪅㪇
㪉㪅㪉
㪉㪅㪇
㪉㪅㪉㪄㪉㪅㪋
㪈㪅㪌
㪈㪅㪐㪄㪉㪅㪋
㪈㪅㪌㪄㪉㪅㪉
㪈㪅㪌
㪈㪅㪌
㪈㪅㪋 㪉㪅㪋 㪊㪅㪇
㪊㪏㪃㩷㪋㪏 㪈㪍㪄㪋㪉㪃㩷㪋㪍㪄㪌㪇 㪉㪇㪃㩷㪊㪋㪄㪋㪏㪃㩷㪌㪋 㪋㪍 㪋㪏㪃㩷㪌㪇㪃㩷㪌㪉 㪊㪉㪄㪊㪋㪃㩷㪋㪇㪄㪋㪏 㪉㪋㪄㪊㪇㪃㩷㪋㪉㪃㩷㪋㪏 㪋㪏 㪋㪏 㪋㪉㪄㪋㪏㩷㩿㪍㪐㪃㩷㪎㪉㪀 㪋㪏
㪉㪅㪎㪄㪊㪅㪇
㪈㪅㪊㪄㪉㪅㪇
㪈㪅㪊㪄㪉㪅㪈
㪉㪅㪉
㪉㪅㪍
㪊㪅㪉 㪉㪅㪏㪄㪊㪅㪇
㪉㪅㪏
㪈㪅㪎㪄㪈㪅㪐
18 㪫㪸㪹㫃㪼㩷㪊㪅㪊㩷㩷㪚㫃㪸㫊㫊㩷㪘㪚㪫㪠㪥㪦㪧㪫㪜㪩㪰㪞㪠㪠㪅㩷㪧㪸㫉㫋㩷㪉㩷㪥㪼㫆㫇㫋㪼㫉㫐㪾㫀㫀㫀㫀㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㪦㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㪾㪼㫅㫌㫊 㩷㩷㪥㫆㪅㩷㫆㪽㩷㪾㪼㫅㪼㫉㪸㩷 㫋㫆㫋㪸㫃 㫊㫋㫌㪻㫀㪼㪻 㪪㪫㪜㪧㪟㪘㪥㪦㪙㪜㪩㪰㪚㪠㪝㪦㪩㪤㪜㪪
㪙㪸㫉㪹㫆㫌㫉㫀㫊㫀㫀㪻㪸㪼 㪚㪼㫋㫆㫄㫀㫄㫀㪻㪸㪼 㪞㫀㪹㪹㪼㫉㫀㪺㪿㫋㪿㫐㫀㪻㪸㪼 㪟㫀㫊㫇㫀㪻㫆㪹㪼㫉㫐㪺㫀㪻㪸㪼 㪤㪼㪾㪸㫃㫆㫄㫐㪺㫋㪼㫉㫀㪻㪸㪼 㪤㪼㫃㪸㫄㫇㪿㪸㫀㪻㪸㪼 㪤㫀㫉㪸㫇㫀㫅㫅㫀㪻㪸㪼 㪩㫆㫅㪻㪼㫃㪼㫋㫀㫀㪻㪸㪼 㪪㫋㪼㫇㪿㪸㫅㫆㪹㪼㫉㫐㪺㫀㪻㪸㪼
㪈 㪐 㪈 㪈 㪋 㪌 㪊 㪈 㪊
㪇 㪇 㪇 㪇 㪇 㪋 㪇 㪇 㪇
㩷㩷㪥㫆㪅㩷㫆㪽㩷㫊㫇㪆㫊㫊㫇 㪉㫅 㫋㫆㫋㪸㫃 㫊㫋㫌㪻㫀㪼㪻 㪌 㪈 㪇 㪉㪇 㪇 㪉 㪇 㪈 㪇 㪌 㪇 㪊㪍 㪌 㪋㪉㪃㩷㪋㪍㪄㪌㪇㪃㩷㪌㪏 㪌 㪇 㪉 㪇 㪊 㪇
㪙㪜㪩㪰㪚㪠㪝㪦㪩㪤㪜㪪
㪪㫌㪹㫆㫉㪻㪼㫉㩷㪫㫉㪸㪺㪿㫀㪺㪿㫋㪿㫐㫆㫀㪻㪼㫀 㪘㫅㫆㫄㪸㫃㫆㫇㫀㪻㪸㪼 㪘㫅㫆㫇㫃㫆㪾㪸㫊㫋㫉㫀㪻㪸㪼 㪛㫀㫉㪼㫋㫄㫀㪻㪸㪼 㪤㫆㫅㫆㪺㪼㫅㫋㫉㫀㪻㪸㪼 㪫㫉㪸㪺㪿㫀㪺㪿㫋㪿㫐㫀㪻㪸㪼 㪪㫌㪹㫆㫉㪻㪼㫉㩷㪙㪼㫉㫐㪺㫆㫀㪻㪼㫀 㪙㪼㫉㫐㪺㫀㪻㪸㪼 㪪㫌㪹㫆㫉㪻㪼㫉㩷㪟㫆㫃㫆㪺㪼㫅㫋㫉㫆㫀㪻㪼㫀 㪟㫆㫃㫆㪺㪼㫅㫋㫉㫀㪻㪸㪼
㪍 㪈 㪊 㪉 㪎
㪇 㪈 㪈 㪈 㪈
㪏 㪉 㪋 㪋 㪊㪐
㪉
㪈
㪐
㪏
㪊
㪎㪏
㪱㪜㪠㪝㪦㪩㪤㪜㪪
㪪㫌㪹㫆㫉㪻㪼㫉㩷㪚㫐㫋㫋㫆㫀㪻㪼㫀 㪚㫐㫋㫋㫀㪻㪸㪼 㪪㫌㪹㫆㫉㪻㪼㫉㩷㪱㪼㫀㫆㫀㪻㪼㫀 㪞㫉㪸㫄㫄㫀㪺㫆㫃㪼㫇㫀㪻㫀㪻㪸㪼 㪦㫉㪼㫆㫊㫆㫄㪸㫋㫀㪻㪸㪼 㪧㪸㫉㪸㫑㪼㫅㫀㪻㪸㪼 㪱㪼㫀㪻㪸㪼 㪱㪼㫅㫀㫆㫅㫋㫀㪻㪸㪼
㪈
㪇
㪊
㪊 㪋 㪊 㪉 㪊
㪇 㪈 㪇 㪈 㪇
㪊 㪈㪇 㪋 㪌 㪎
㪪㪰㪥㪙㪩㪘㪥㪚㪟㪠㪝㪦㪩㪤㪜㪪
㪪㫌㪹㫆㫉㪻㪼㫉㩷㪤㪸㫊㫋㪸㪺㪼㫄㪹㪼㫃㫆㫀㪻㪼㫀 㪚㪿㪸㫌㪻㪿㫌㫉㫀㫀㪻㪸㪼 㪤㪸㫊㫋㪸㪺㪼㫄㪹㪼㫃㫀㪻㪸㪼
㪍 㪌
㪇 㪊
㪈㪅㪌㪄㪈㪅㪎
㪉㪅㪌㪄㪉㪅㪍
㪋㪉㪄㪋㪋
㪉㪅㪌
㪋㪏
㪙㪘㪫㪩㪘㪚㪟㪦㪠㪛㪠㪝㪦㪩㪤㪜㪪
㪈㪅㪊
㪋㪉
㪐 㪎㪊
㪊 㪋 㪋 㪈㪈 㪌 㪌 㪉㪊㪉
㪉㪅㪇 㪈㪅㪏
㪈㪅㪌
㪏 㪋 㪇 㪋
㪇 㪇 㪇 㪈 㪇 㪇 㪋
㪌
㪉㪅㪇
㪋㪋㪃㩷㪋㪍㪃㩷㪋㪏
㪈 㪉 㪈 㪊 㪉 㪈 㪌㪉
㪉㪉
㪋㪏㪃㩷㪌㪇
㪐 㪐
㪉 㪈㪇 㪈 㪊
㪈㪅㪊 㪈㪅㪎
㪎㪏
㪇 㪋 㪇 㪇
㪉㪅㪐
㪋㪏
㪊㪍㪃㩷㪋㪋㪃㩷㪋㪏㪃㩷㪌㪏 㪋㪋㪃㩷㪋㪏 㪌㪏
㪉 㪌 㪈 㪈
㩷㩷㩷㩷㩷㪟㫀㫇㫇㫆㪺㪸㫄㫇㫌㫊㪃㩷㪪㫐㫅㪾㫅㪸㫋㪿㫌㫊 㩷㩷㩷㩷㩷㪥㪼㫉㫆㫇㪿㫀㫊
㪙㪸㫋㫉㪸㪺㪿㫆㫀㪻㫀㪻㪸㪼
㪉 㪇 㪇 㪉 㪇 㪈 㪇 㪈 㪇
㪋㪏 㪋㪋㪄㪋㪍㪃㩷㪎㪇 㪋㪏 㪋㪏
㪈㪐 㪈㪇 㪇 㪈㪇 㪇 㪇 㪐 㪇 㪇 㪇 㪉 㪇 㪇 㪎 㪋 㪈
㪞㪘㪪㪫㪜㪩㪦㪪㪫㪜㪠㪝㪦㪩㪤㪜㪪
㪪㫌㪹㫆㫉㪻㪼㫉㩷㪞㪸㫊㫋㪼㫉㫆㫊㫋㪼㫆㫀㪻㪼㫀 㪘㫌㫃㫆㫉㪿㫐㫅㪺㪿㫀㪻㪸㪼 㪞㪸㫊㫋㪼㫉㫆㫊㫋㪼㫀㪻㪸㪼 㪟㫐㫇㫆㫇㫋㫐㪺㪿㫀㪻㪸㪼 㪠㫅㪻㫆㫊㫋㫆㫄㫀㪻㪸㪼 㪪㫌㪹㫆㫉㪻㪼㫉㩷㪪㫐㫅㪾㫅㪸㫋㪿㫆㫀㪻㪼㫀 㪘㫌㫃㫆㫊㫋㫆㫄㫀㪻㪸㪼 㪚㪼㫅㫋㫉㫀㫊㪺㫀㪻㪸㪼 㪝㫀㫊㫋㫌㫃㪸㫉㫀㫀㪻㪸㪼 㪤㪸㪺㫉㫆㫉㪸㫄㫇㪿㫆㫊㫀㪻㪸㪼 㪧㪼㪾㪸㫊㫀㪻㪸㪼 㪪㫆㫃㪼㫅㫆㫊㫋㫆㫄㫀㪻㪸㪼 㪪㫐㫅㪾㫅㪸㫋㪿㫀㪻㪸㪼
㪐 㪌 㪇 㪈 㪉 㪈 㪈 㪈 㪈 㪊 㪊
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷㩿㫇㪾㪆㪺㪼㫃㫃㪀㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷 㪝㪚㪤 㪝㪛 㪝㪠㪘 㪙㪝㪘
㪋㪉㪃㩷㪋㪍
㪈㪅㪉
㪈㪅㪊
㪈㪅㪉㪄㪈㪅㪋
㪈㪅㪋 㪇㪅㪐㪄㪈㪅㪈 㪈㪅㪋 㪈㪅㪈
㪈㪅㪌㪄㪈㪅㪏 㪋㪏
㪈㪅㪈㪄㪉㪅㪎 㪇㪅㪐㪄㪉㪅㪈
㪇㪅㪐㪄㪈㪅㪈 㪊㪅㪍㪄㪊㪅㪐
㪈㪅㪊
㪊㪅㪋㪄㪍㪅㪇
㪈㪅㪍
㪈㪅㪌
19 㪫㪸㪹㫃㪼㩷㪊㪅㪊㩷㩷㪚㫃㪸㫊㫊㩷㪘㪚㪫㪠㪥㪦㪧㪫㪜㪩㪰㪞㪠㪠㪅㩷㪧㪸㫉㫋㩷㪉㩷㪥㪼㫆㫇㫋㪼㫉㫐㪾㫀㫀㫀㫀㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㪦㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㪾㪼㫅㫌㫊 㩷㩷㪥㫆㪅㩷㫆㪽㩷㪾㪼㫅㪼㫉㪸㩷 㫋㫆㫋㪸㫃 㫊㫋㫌㪻㫀㪼㪻 㪪㫌㪹㫆㫉㪻㪼㫉㩷㪪㫐㫅㪹㫉㪸㫅㪺㪿㫆㫀㪻㪼㫀 㪪㫐㫅㪹㫉㪸㫅㪺㪿㫀㪻㪸㪼 㪋 㪊
㩷㩷㩷㩷㩷㩷㩷㪤㫆㫅㫆㫇㫋㪼㫉㫌㫊 㩷㩷㩷㩷㩷㩷㩷㪪㫐㫅㪹㫉㪸㫅㪺㪿㫌㫊
㩷㩷㪥㫆㪅㩷㫆㪽㩷㫊㫇㪆㫊㫊㫇 㫋㫆㫋㪸㫃 㫊㫋㫌㪻㫀㪼㪻 㪋 㪈㪎 㪋 㪉 㪈
㪊 㪈㪈 㪐 㪈 㪈㪎 㪊 㪈 㪋
㪇 㪉 㪈 㪇 㪇 㪇 㪇 㪇
㪊 㪊㪏 㪊㪌 㪋 㪊㪏 㪊 㪈 㪐
㪈㪇 㪋 㪌 㪈㪏 㪈
㪊 㪇 㪇 㪋 㪇
㪈㪇㪌 㪊㪍 㪈㪇 㪍㪌 㪈㪇
㪉
㪈
㪉
㪌
㪉
㪈㪉
㪈
㪇
㪈
㪈 㪉 㪎㪇 㪈 㪎 㪊 㪉㪉 㪏 㪈 㪍 㪉㪐
㪇 㪇 㪈㪍 㪈 㪍 㪈 㪈 㪇 㪇 㪈 㪇
㪈 㪊 㪉㪎㪌 㪉 㪉㪊 㪏 㪋㪎 㪊㪌 㪈 㪉㪏 㪊㪊㪋
㪈㪇㪈 㪈 㪈 㪊㪍 㪊㪍 㪈㪏 㪈㪍 㪉 㪈 㪇 㪉 㪈 㪇 㪇 㪇 㪇 㪇 㪐 㪊 㪇 㪇 㪍 㪇 㪈 㪈 㪌 㪌 㪇 㪇 㪋㪐 㪇 㪇 㪊㪋 㪉 㪈㪇 㪈 㪈 㪇 㪇 㪈 㪇
㪊㪈 㪋㪍 㪌 㪉㪎㪊 㪋 㪈 㪌 㪉㪉 㪉㪇 㪈㪉
㪏㪍㪎 㪊㪈㪋 㪇 㪋 㪇 㪈㪊 㪇 㪇 㪇 㪈 㪇 㪇
㪪㪚㪦㪩㪧㪘㪜㪥㪠㪝㪦㪩㪤㪜㪪
㪪㫌㪹㫆㫉㪻㪼㫉㩷㪛㪸㪺㫋㫐㫃㫆㫇㫋㪼㫉㫆㫀㪻㪼㫀 㪛㪸㪺㫋㫐㫃㫆㫇㫋㪼㫉㫀㪻㪸㪼 㪪㫌㪹㫆㫉㪻㪼㫉㩷㪪㪺㫆㫉㫇㪸㪼㫅㫆㫀㪻㪼㫀 㪪㪺㫆㫉㫇㪸㪼㫅㫀㪻㪸㪼 㩷㩷㩷㩷㪪㪼㪹㪸㫊㫋㫀㫅㪸㪼 㩷㩷㩷㩷㪪㪺㫆㫉㫇㪸㪼㫅㫀㫅㪸㪼
㪉
㪈
㪎
㪌㪍 㪎 㪉㪇
㪈㪉 㪋 㪌
㪋㪈㪏 㪈㪊㪊 㪈㪏㪌
㩷㩷㩷㩷㩷㩷㩷㪪㪺㫆㫉㫇㪸㪼㫅㪸 㩷㩷㩷㩷㩷㩷㩷㪧㫋㪼㫉㫆㫀㫊 㩷㩷㩷㩷㪘㫇㫀㫊㫋㫀㫅㪸㪼 㩷㩷㩷㩷㪫㪼㫋㫉㪸㫉㫆㪾㫀㫅㪸㪼 㩷㩷㩷㩷㪪㫐㫅㪸㫅㪺㪼㫀㫀㫅㪸㪼 㪚㪸㫉㪸㪺㪸㫅㫋㪿㫀㪻㪸㪼 㪘㫇㫃㫆㪸㪺㫋㫀㫅㫀㪻㪸㪼 㪧㪸㫋㪸㪼㪺㫀㪻㪸㪼 㪞㫅㪸㫋㪿㪸㫅㪸㪺㪸㫅㫋㪿㫀㪻㪸㪼 㪚㫆㫅㪾㫀㫆㫇㫆㪻㫀㪻㪸㪼 㪪㫌㪹㫆㫉㪻㪼㫉㩷㪧㫃㪸㫋㫐㪺㪼㫇㪿㪸㫃㫆㫀㪻㪼㫀 㪫㫉㫀㪾㫃㫀㪻㪸㪼 㪧㪼㫉㫀㫊㫋㪼㪻㫀㫀㪻㪸㪼 㪙㪼㫄㪹㫉㫀㪻㪸㪼 㪧㫃㪸㫋㫐㪺㪼㫇㪿㪸㫃㫀㪻㪸㪼 㪟㫆㫇㫃㫀㪺㪿㫋㪿㫐㫀㪻㪸㪼 㪪㫌㪹㫆㫉㪻㪼㫉㩷㪘㫅㫆㫇㫃㫆㫇㫆㫄㪸㫋㫆㫀㪻㪼㫀 㪘㫅㫆㫇㫃㫆㫇㫆㫄㪸㫋㫀㪻㪸㪼 㪪㫌㫆㫉㪻㪼㫉㩷㪟㪼㫏㪸㪾㫉㪸㫄㫄㫆㫀㪻㪼㫀 㪟㪼㫏㪸㪾㫉㪸㫄㫄㫀㪻㪸㪼 㪪㫌㪹㫆㫉㪻㪼㫉㩷㪥㫆㫉㫄㪸㫅㫀㪺㪿㫋㪿㫐㫆㫀㪻㪼㫀 㪥㫆㫉㫄㪸㫅㫀㪺㪿㫋㪿㫐㫀㪻㪸㪼 㪪㫌㪹㫆㫉㪻㪼㫉㩷㪚㫆㫋㫋㫆㫀㪻㪼㫀 㪩㪿㪸㫄㫇㪿㫆㪺㫆㫋㫋㫀㪻㪸㪼 㪜㫉㪼㫌㫅㫀㫀㪻㪸㪼 㪚㫆㫋㫋㫀㪻㪸㪼 㪚㫆㫄㪼㫇㪿㫆㫉㫀㪻㪸㪼 㪘㪹㫐㫊㫊㫆㪺㫆㫋㫋㫀㪻㪸㪼 㪟㪼㫄㫀㫋㫉㫀㫇㫋㪼㫉㫀㪻㪸㪼 㪘㪾㫆㫅㫀㪻㪸㪼 㪧㫊㫐㪺㪿㫉㫆㫃㫌㫋㫀㪻㪸㪼 㪙㪸㫋㪿㫐㫃㫌㫋㫀㪺㪿㫋㪿㫐㫀㪻㪸㪼 㪚㫐㪺㫃㫆㫇㫋㪼㫉㫀㪻㪸㪼 㪣㫀㫇㪸㫉㫀㪻㪸㪼 㪧㪜㪩㪚㪠㪝㪦㪩㪤㪜㪪
㪪㫌㪹㫆㫉㪻㪼㫉㩷㪧㪼㫉㪺㫆㫀㪻㪼㫀 㪘㪺㫉㫆㫇㫆㫄㪸㫋㫀㪻㪸㪼 㪘㫄㪹㪸㫊㫊㫀㪻㪸㪼 㪘㫇㫃㫆㪻㪸㪺㫋㫐㫃㫀㪻㪸㪼 㪘㫇㫆㪾㫆㫅㫀㪻㪸㪼 㪘㫉㫉㫀㫇㫀㪻㪸㪼 㪙㪸㫅㫁㫆㫊㫀㪻㪸㪼 㪙㪸㫋㪿㫐㪺㫃㫌㫇㪼㫀㪻㪸㪼 㪙㫉㪸㫄㫀㪻㪸㪼 㪚㪸㪼㫊㫀㫆㫅㫀㪻㪸㪼 㪚㪸㫃㫃㪸㫅㫋㪿㫀㫀㪻㪸㪼
㪏 㪐 㪈 㪉㪊 㪈 㪈 㪈 㪎 㪋 㪉
㪇 㪊 㪇 㪋 㪇 㪇 㪇 㪈 㪇 㪇
㪉㫅
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷㩿㫇㪾㪆㪺㪼㫃㫃㪀㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷 㪝㪚㪤 㪝㪛 㪝㪠㪘 㪙㪝㪘
㪉㪋㪃㩷㪋㪉 㪋㪉㪄㪋㪍
㪈㪅㪉㪄㪈㪅㪍 㪌㪅㪍㪄㪏㪅㪌
㪋㪏
㪋㪍㪃㩷㪋㪏 㪊㪋㪄㪋㪏 㪊㪋㪄㪊㪍㪃㩷㪋㪇㪄㪋㪏 㪋㪏
㪈㪅㪏㪄㪈㪅㪐
㪈㪅㪐㪄㪉㪅㪇
㪈㪅㪐㪄㪉㪅㪉
㪉㪅㪐 㪉㪅㪇
㪉㪅㪏
㪋㪎㪄㪋㪏㪃㩷㪌㪇 㪋㪏
㪉㪅㪈 㪈㪅㪉㪃㩷㪈㪅㪏
㪋㪎㪄㪋㪏
㪈㪅㪍
㪈㪅㪍㪃㩷㪉㪅㪇
㪋㪏
㪈㪅㪋㪄㪈㪅㪏
㪊㪇
㪈㪅㪋
㪈㪅㪎
㪈㪅㪋㪄㪈㪅㪐
㪈㪅㪏㪄㪈㪅㪐
㪋㪏
㪉㪅㪏
㪈㪅㪎
㪈㪅㪏
㪈㪅㪌
㪉㪅㪉 㪊㪉㪃㩷㪊㪎㪄㪋㪏㪃㩷㪌㪉 㪋㪏 㪋㪏 㪋㪍 㪋㪏
㪈㪅㪌
㪈㪅㪋㪄㪈㪅㪐
㪈㪅㪏㪄㪈㪅㪐
㪈㪅㪏㪄㪉㪅㪇 㪈㪅㪌 㪈㪅㪏㪄㪉㪅㪇
㪈㪅㪐
㪌㪇
㪈㪅㪎㪄㪈㪅㪐 㪈㪅㪌㪄㪈㪅㪏
㪋㪇㪃㩷㪋㪋㪃㩷㪋㪏
㪈㪅㪈
㪊㪋㪄㪊㪏㪃㩷㪋㪍
㪉㪅㪐
㪈㪅㪍㪄㪉㪅㪍 㪈㪅㪋
㪌㪋 㪉㪅㪉㪄㪉㪅㪊
20 㪫㪸㪹㫃㪼㩷㪊㪅㪊㩷㩷㪚㫃㪸㫊㫊㩷㪘㪚㪫㪠㪥㪦㪧㪫㪜㪩㪰㪞㪠㪠㪅㩷㪧㪸㫉㫋㩷㪉㩷㪥㪼㫆㫇㫋㪼㫉㫐㪾㫀㫀㫀㫀㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㪦㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㪾㪼㫅㫌㫊 㩷㩷㪥㫆㪅㩷㫆㪽㩷㪾㪼㫅㪼㫉㪸㩷 㫋㫆㫋㪸㫃 㫊㫋㫌㪻㫀㪼㪻 㪚㪸㫉㪸㫅㪾㫀㪻㪸㪼 㪊㪉 㪈㪊 㪚㪸㫉㫀㫊㫋㫀㫀㪻㪸㪼 㪉 㪇 㪚㪼㫅㫋㫉㪸㪺㪸㫅㫋㪿㫀㪻㪸㪼 㪉 㪈 㪚㪼㫅㫋㫉㪸㫉㪺㪿㫀㪻㪸㪼 㪏 㪏 㪚㪼㫅㫋㫉㫆㪾㪼㫅㫀㫀㪻㪸㪼 㪈 㪇 㪚㪼㫅㫋㫉㫆㫇㫆㫄㫀㪻㪸㪼 㪈 㪈 㪚㪼㫇㫆㫃㫀㪻㪸㪼 㪋 㪇 㪚㪿㪸㪼㫋㫆㪻㫆㫅㫋㫀㪻㪸㪼 㪈㪈 㪉 㪚㪿㪼㫀㫃㫆㪻㪸㪺㫋㫐㫃㫀㪻㪸㪼 㪌 㪇 㪚㪿㫀㫉㫆㫅㪼㫄㫀㪻㪸㪼 㪉 㪇 㪚㫀㫉㫉㪿㫀㫋㫀㪻㪸㪼 㪈㪉 㪇 㪚㫆㫉㫐㫇㪿㪸㪼㫅㫀㪻㪸㪼 㪈 㪇 㪛㫀㪺㪿㫀㫊㫋㫀㫀㪻㪸㪼 㪈 㪇 㪛㫀㫅㫆㫃㪼㫊㫋㫀㪻㪸㪼 㪈 㪇 㪛㫀㫅㫆㫇㪼㫉㪺㫀㪻㪸㪼 㪉 㪇 㪛㫉㪼㫇㪸㫅㪼㫀㪻㪸㪼 㪈 㪇 㪜㪺㪿㪼㫅㪼㫀㪻㪸㪼 㪋 㪈 㪜㫄㫄㪼㫃㫀㪺㪿㫋㪿㫐㫀㪻㪸㪼 㪊 㪇 㪜㫅㫆㫇㫃㫆㫊㫀㪻㪸㪼 㪈 㪇 㪜㫇㫀㪾㫆㫅㫀㪻㪸㪼 㪍 㪇 㪞㪼㫉㫉㪼㫀㪻㪸㪼 㪏 㪋 㪞㫃㪸㫌㪺㫆㫊㫆㫄㪸㫋㫀㪻㪸㪼 㪈 㪇 㪞㫉㪸㫄㫄㪸㫋㫀㪻㪸㪼 㪉 㪇 㪟㪸㪼㫄㫌㫃㫀㪻㪸㪼 㪈㪎 㪍 㪠㫅㪼㫉㫄㫀㫀㪻㪸㪼 㪉 㪇 㪢㫌㪿㫃㫀㫀㪻㪸㪼 㪈 㪈 㪢㫐㫇㪿㫆㫊㫀㪻㪸㪼 㪈㪍 㪋 㪣㪸㪺㫋㪸㫉㫀㫀㪻㪸㪼 㪈 㪇 㪣㪸㫋㫀㪻㪸㪼 㪉 㪉 㪣㪸㫋㫉㫀㪻㪸㪼 㪊 㪇 㪣㪼㫀㫆㪾㫅㪸㫋㪿㫀㪻㪸㪼 㪋 㪊 㪣㪼㫇㫋㫆㪹㫉㪸㫄㫀㪻㪸㪼 㪈 㪇 㪣㪼㫋㪿㫉㫀㫅㫀㪻㪸㪼 㪌 㪈 㪣㫆㪹㫆㫋㫀㪻㪸㪼 㪉 㪈 㪣㫌㫋㫁㪸㫅㫀㪻㪸㪼 㪎 㪊 㪤㪸㫃㪸㪺㪸㫅㫋㪿㫀㪻㪸㪼 㪌 㪇 㪤㪼㫅㫀㪻㪸㪼 㪈 㪇 㪤㫆㫅㫆㪻㪸㪺㫋㫐㫃㫀㪻㪸㪼 㪉 㪈 㪤㫆㫉㫆㫅㫀㪻㪸㪼 㪊 㪊 㪤㫌㫃㫃㫀㪻㪸㪼 㪍 㪋 㪥㪸㫅㪻㫀㪻㪸㪼 㪋 㪊 㪥㪼㫄㪸㫋㫀㫊㫋㫀㫀㪻㪸㪼 㪈 㪇 㪇 㪥㪼㫄㫀㫇㫋㪼㫉㫀㪻㪸㪼 㪌 㪥㫆㫋㫆㪾㫉㪸㫇㫋㫀㪻㪸㪼 㪈 㪇 㪦㫇㫀㫊㫋㫆㪾㫅㪸㫋㪿㫀㪻㪸㪼 㪊 㪇 㪦㫇㫃㪼㪾㫅㪸㫋㪿㫀㪻㪸㪼 㪈 㪈 㪦㫊㫋㫉㪸㪺㫆㪹㪼㫉㫐㪺㫀㪻㪸㪼 㪈 㪇 㪧㪼㫄㫇㪿㪼㫉㫀㪻㪸㪼 㪉 㪈 㪧㪼㫅㫋㪸㪺㪼㫉㫆㫋㫀㪻㪸㪼 㪎 㪇 㪧㪼㫉㪺㫀㪺㪿㫋㪿㫐㫀㪻㪸㪼 㪈㪈 㪉 㪧㪼㫉㪺㫀㪻㪸㪼 㪈㪇 㪏 㪧㪼㫉㪺㫀㫃㫀㫀㪻㪸㪼 㪈 㪇 㪧㫃㪼㫊㫀㫆㫇㫀㪻㪸㪼 㪈㪈 㪈 㪧㫆㫃㫐㪺㪼㫅㫋㫉㫀㪻㪸㪼 㪋 㪈 㪧㫆㫃㫐㫅㪼㫄㫀㪻㪸㪼 㪏 㪈 㪧㫆㫃㫐㫇㫉㫀㫆㫅㫀㪻㪸㪼 㪉 㪇 㪧㫆㫄㪸㪺㪸㫅㫋㪿㫀㪻㪸㪼 㪏 㪊 㪧㫆㫄㪸㫋㫆㫄㫀㪻㪸㪼 㪈 㪈 㪧㫉㫀㪸㪺㪸㫅㫋㪿㫀㪻㪸㪼 㪋 㪈
㩷㩷㪥㫆㪅㩷㫆㪽㩷㫊㫇㪆㫊㫊㫇 㫋㫆㫋㪸㫃 㫊㫋㫌㪻㫀㪼㪻 㪈㪋㪇 㪉㪍 㪌 㪇 㪏 㪈 㪊㪈 㪉㪊 㪈 㪇 㪈㪉 㪈 㪈㪐 㪇 㪈㪉㪉 㪈㪈 㪉㪉 㪇 㪌 㪇 㪊㪊 㪇 㪉 㪇 㪉 㪇 㪈 㪇 㪉 㪇 㪊 㪇 㪏 㪈 㪈㪌 㪇 㪇 㪈 㪉㪌 㪇 㪋㪋 㪏 㪋 㪇 㪈㪉 㪇 㪈㪋㪌 㪈㪎 㪉 㪇 㪈㪇 㪉 㪋㪌 㪎 㪈 㪇 㪐 㪉 㪏 㪇 㪊㪇 㪊 㪈 㪇 㪊㪐 㪉 㪌 㪈 㪈㪇㪌 㪈㪏 㪋㪇 㪇 㪈 㪇 㪌 㪉 㪏 㪍 㪍㪉 㪍 㪉㪈 㪋 㪈 㪇 㪍㪋 㪇 㪊 㪇 㪎㪏 㪇 㪎 㪉 㪊 㪇 㪉㪍 㪈 㪈㪉 㪇 㪊㪋 㪏 㪉㪇㪈 㪉㪌 㪉 㪇 㪋㪍 㪈 㪋 㪈 㪋㪈 㪈 㪌 㪇 㪏㪉 㪈㪋 㪈 㪈 㪈㪏 㪈
㪉㫅 㪋㪍㪄㪌㪇㪃㩷㪌㪍 㪋㪋㪄㪋㪏 㪋㪇㪃㩷㪋㪍㪃㩷㪋㪏
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷㩿㫇㪾㪆㪺㪼㫃㫃㪀㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷 㪝㪚㪤 㪝㪛 㪝㪠㪘 㪙㪝㪘 㪈㪅㪎 㪈㪅㪉㪄㪈㪅㪋 㪈㪅㪉㪄㪈㪅㪏 㪈㪅㪋㪄㪈㪅㪎
㪈㪅㪐㪄㪉㪅㪈
㪈㪅㪐㪄㪉㪅㪉
㪈㪅㪌㪄㪉㪅㪊
㪈㪅㪌㪄㪈㪅㪍
㪈㪅㪈
㪈㪅㪋㪄㪈㪅㪎 㪈㪅㪊㪄㪈㪅㪌
㪋㪏 㪋㪏
㪈㪅㪎
㪈㪅㪌 㪈㪅㪉
㪋㪉 㪉㪅㪈
㪈㪅㪋 㪈㪅㪋 㪈㪅㪌
㪈㪅㪋
㪋㪏
㪈㪅㪋
㪇㪅㪐
㪈㪅㪉
㪈㪅㪍
㪋㪏
㪈㪅㪍
㪈㪅㪉㪄㪈㪅㪌
㪈㪅㪎
㪈㪅㪎㪄㪉㪅㪇
㪋㪏 㪋㪏
㪈㪅㪏
㪈㪅㪏㪃㩷㪉㪅㪈
㪈㪅㪍㪃㩷㪉㪅㪉
㪋㪏
㪈㪅㪋
㪋㪏
㪈㪅㪇㪄㪈㪅㪋
㪋㪏 㪋㪏 㪋㪎㪄㪋㪏
㪋㪏 㪋㪏 㪋㪋㪃㩷㪋㪏 㪋㪍㪃㩷㪋㪏
㪉㪅㪉㪄㪉㪅㪌
㪉㪅㪏㪄㪊㪅㪉 㪉㪅㪐
㪈㪅㪍 㪈㪅㪉㪄㪈㪅㪊
㪉㪅㪉
㪉㪅㪇㪄㪉㪅㪉
㪈㪅㪋㪄㪉㪅㪎
㪈㪅㪇
㪈㪅㪐 㪈㪅㪈㪄㪈㪅㪊
㪈㪅㪐㪃㩷㪉㪅㪍 㪉㪅㪇 㪈㪅㪏 㪈㪅㪏
㪈㪅㪌㪄㪈㪅㪎 㪉㪅㪈
㪋㪏
㪈㪅㪐
㪋㪏
㪈㪅㪋 㪈㪅㪍 㪈㪅㪐 㪉㪅㪊㪄㪉㪅㪋
㪈㪅㪋㪄㪈㪅㪌 㪈㪅㪎 㪈㪅㪏㪄㪉㪅㪈
㪉㪅㪋
㪈㪅㪌
㪈㪅㪌㪄㪈㪅㪏 㪈㪅㪋 㪈㪅㪍 㪈㪅㪎㪄㪈㪅㪏
㪈㪅㪐 㪉㪅㪉
㪋㪏 㪋㪏 㪋㪏 㪋㪍 㪋㪏 㪋㪏㪃㩷㪌㪉 㪋㪏 㪌㪉
21 㪫㪸㪹㫃㪼㩷㪊㪅㪊㩷㩷㪚㫃㪸㫊㫊㩷㪘㪚㪫㪠㪥㪦㪧㪫㪜㪩㪰㪞㪠㪠㪅㩷㪧㪸㫉㫋㩷㪉㩷㪥㪼㫆㫇㫋㪼㫉㫐㪾㫀㫀㫀㫀㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㪦㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㪾㪼㫅㫌㫊 㩷㩷㪥㫆㪅㩷㫆㪽㩷㪾㪼㫅㪼㫉㪸㩷 㫋㫆㫋㪸㫃 㫊㫋㫌㪻㫀㪼㪻 㪧㫊㪼㫌㪻㫆㪺㪿㫉㫆㫄㫀㪻㪸㪼 㪉㪇 㪇 㪩㪸㪺㪿㫐㪺㪼㫅㫋㫉㫀㪻㪸㪼 㪈 㪇 㪪㪺㫀㪸㪼㫅㫀㪻㪸㪼 㪎㪇 㪉㪌 㪪㪺㫆㫄㪹㫉㫆㫇㫀㪻㪸㪼 㪈 㪇 㪪㪼㫉㫉㪸㫅㫀㪻㪸㪼 㪍㪋 㪏 㪪㫀㫃㫃㪸㪾㫀㫅㫀㪻㪸㪼 㪊 㪈 㪪㫇㪸㫉㫀㪻㪸㪼 㪊㪊 㪈㪋 㪪㫐㫄㫇㪿㫐㫊㪸㫅㫆㪻㫆㫅㫋㫀㪻㪸㪼 㪈 㪇 㪫㪼㫉㪸㫇㫆㫅㫋㫀㪻㪸㪼 㪈㪍 㪉 㪫㫆㫏㫆㫋㫀㪻㪸㪼 㪈 㪇 㪪㫌㪹㫆㫉㪻㪼㫉㩷㪜㫃㪸㫊㫊㫆㫄㪸㫋㫆㫀㪻㪼㫀 㪜㫃㪸㫊㫊㫆㫄㪸㫋㫀㪻㪸㪼 㪈 㪈 㪪㫌㪹㫆㫉㪻㪼㫉㩷㪣㪸㪹㫉㫆㫀㪻㪼㫀 㪚㫀㪺㪿㫃㫀㪻㪸㪼 㪈㪈㪉 㪌㪋 㩷㩷㩷㩷㪘㫄㪼㫉㫀㪺㪸㫅㩷㪺㫀㪺㪿㫃㫀㪻㫊 㪖 㪊㪉 㩷㩷㩷㩷㪘㫊㫀㪸㫅㩷㪺㫀㪺㪿㫃㫀㪻㫊 㪈 㪈 㩷㩷㩷㩷㪘㪽㫉㫀㪺㪸㫅㩷㪺㫀㪺㪿㫃㫀㪻㫊 㪖 㪉㪈 㪜㫄㪹㫀㫆㫋㫆㪺㫀㪻㪸㪼 㪈㪊 㪊 㪧㫆㫄㪸㪺㪼㫅㫋㫉㫀㪻㪸㪼 㪉㪏 㪈㪉 㩷㩷㩷㩷㪘㫄㫇㪿㫀㫇㫉㫀㫆㫅㫀㫅㪸㪼 㪈 㪈 㩷㩷㩷㩷㪚㪿㫉㫆㫄㫀㫅㪸㪼 㪌 㪉 㩷㩷㩷㩷㪣㪼㫇㫀㪻㫆㫑㫐㪾㫀㫅㪸㪼 㪈 㪇 㩷㩷㩷㩷㪧㫆㫄㪸㪺㪼㫅㫋㫉㫀㫅㪸㪼 㪉㪈 㪈㪇 㪍㪏 㪉㪈 㪣㪸㪹㫉㫀㪻㪸㪼 㪦㪻㪸㪺㫀㪻㪸㪼 㪋 㪇 㪪㪺㪸㫉㫀㪻㪸㪼 㪈㪇 㪋 㪪㫌㪹㫆㫉㪻㪼㫉㩷㪱㫆㪸㫉㪺㫆㫀㪻㪼㫀 㪙㪸㫋㪿㫐㫄㪸㫊㫋㪼㫉㫀㪻㪸㪼 㪊 㪈 㪱㫆㪸㫉㪺㫀㪻㪸㪼 㪋㪍 㪊 㪪㫋㫀㪺㪿㪸㪼㫀㪻㪸㪼 㪊㪎 㪍 㪚㫉㫐㫇㫋㪸㪺㪸㫅㫋㪿㫆㪻㫀㪻㪸㪼 㪈 㪇 㪧㪿㫆㫃㫀㪻㪸㪼 㪊 㪈 㪘㫅㪸㫉㪿㫀㪺㪿㪸㪻㫀㪻㪸㪼 㪉 㪇 㪇 㪧㫋㫀㫃㫀㪺㪿㫋㪿㫐㫀㪻㪸㪼 㪈 㪱㪸㫇㫉㫆㫉㫀㪻㪸㪼 㪈 㪇 㪪㪺㫐㫋㪸㫃㫀㫅㫀㪻㪸㪼 㪈 㪇 㪪㫌㪹㫆㫉㪻㪼㫉㩷㪥㫆㫋㫆㫋㪿㪼㫅㫀㫆㫀㪻㪼㫀 㪘㫉㫋㪼㪻㫀㪻㫉㪸㪺㫆㫅㫀㪻㪸㪼 㪋 㪊 㪙㪸㫋㪿㫐㪻㫉㪸㪺㫆㫅㫀㪻㪸㪼 㪈㪈 㪎 㪙㫆㫍㫀㪺㪿㫋㫀㪻㪸㪼 㪊 㪉 㪚㪿㪸㫅㫅㫀㪺㪿㫋㪿㫐㫀㪻㪸㪼 㪈㪈 㪈㪇 㪜㫃㪼㪾㫀㫅㫆㫇㫀㪻㪸㪼 㪈 㪈 㪟㪸㫉㫇㪸㪾㫀㪽㪼㫉㫀㪻㪸㪼 㪈 㪈 㪥㫆㫋㫆㫋㪿㪼㫅㫀㫀㪻㪸㪼 㪈㪋 㪈㪈 㪧㫊㪼㫌㪻㪸㫇㪿㫉㫀㫋㫀㪻㪸㪼 㪈 㪈 㪪㫌㪹㫆㫉㪻㪼㫉㩷㪫㫉㪸㪺㪿㫀㫅㫆㫀㪻㪼㫀 㪘㫄㫄㫆㪻㫐㫋㫀㪻㪸㪼 㪏 㪈 㪚㪿㪸㫄㫇㫊㫆㪻㫆㫅㫋㫀㪻㪸㪼 㪈 㪇 㪚㪿㪼㫀㫄㪸㫉㫉㪿㫀㪺㪿㫋㪿㫐㫀㪻㪸㪼 㪈 㪇 㪚㪿㫀㪸㫊㫄㫆㪻㫆㫅㫋㫀㪻㪸㪼 㪋 㪇 㪚㫉㪼㪼㪻㫀㫀㪻㪸㪼 㪎 㪇 㪣㪼㫇㫋㫆㫊㪺㫆㫇㫀㪻㪸㪼 㪊 㪇 㪧㪼㫉㪺㫆㫇㪿㫀㪻㪸㪼 㪈㪈 㪇 㪧㫀㫅㪾㫌㫀㫇㪼㪻㫀㪻㪸㪼 㪌 㪈 㪫㫉㪸㪺㪿㫀㫅㫀㪻㪸㪼 㪉 㪉 㪫㫉㫀㪺㪿㫆㪻㫆㫅㫋㫀㪻㪸㪼 㪉 㪈 㪫㫉㫀㪺㪿㫆㫅㫆㫋㫀㪻㪸㪼 㪈 㪇 㪬㫉㪸㫅㫆㫊㪺㫆㫇㫀㪻㪸㪼 㪏 㪈
㩷㩷㪥㫆㪅㩷㫆㪽㩷㫊㫇㪆㫊㫊㫇 㪉㫅 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷㩿㫇㪾㪆㪺㪼㫃㫃㪀㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷 㫋㫆㫋㪸㫃 㫊㫋㫌㪻㫀㪼㪻 㪝㪚㪤 㪝㪛 㪝㪠㪘 㪙㪝㪘 㪈㪈㪐 㪇 㪈㪅㪋㪄㪈㪅㪐 㪈 㪇 㪈㪅㪌 㪉㪎㪇 㪊㪏 㪋㪍㪃㩷㪋㪏 㪈㪅㪊㪃㩷㪈㪅㪐 㪈㪅㪉㪄㪈㪅㪍 㪈㪅㪊㪄㪈㪅㪌 㪈㪅㪌㪄㪉㪅㪇 㪊 㪇 㪋㪎㪌 㪉㪐 㪋㪏 㪉㪅㪈㪄㪉㪅㪎 㪈㪅㪏㪄㪉㪅㪉 㪈㪅㪊㪄㪉㪅㪌 㪉㪅㪋㪄㪉㪅㪍 㪊㪈 㪈 㪋㪏 㪈㪅㪊 㪈㪈㪌 㪉㪏 㪋㪏 㪈㪅㪐 㪈㪅㪇㪄㪈㪅㪎 㪈㪅㪊㪄㪈㪅㪌 㪈㪅㪐㪄㪉㪅㪇 㪍 㪇 㪋㪏 㪋 㪋㪏 㪈㪅㪎 㪈㪅㪊㪄㪈㪅㪍 㪍 㪇 㪈㪅㪌 㪈 㪍 㪈 㪋㪏 㪉㪋㪈 㪖 㪈㪊㪇 㪖 㪏㪉 㪊㪏㪄㪌㪉㪃㩷㪍㪇 㪉㪅㪇㪄㪉㪅㪌 㪉㪅㪋 㪉㪅㪇㪄㪉㪅㪋 㪊 㪉 㪋㪍㪃㩷㪋㪏 㪖 㪋㪍 㪊㪏㪄㪋㪏 㪈㪅㪐 㪈㪅㪍㪄㪉㪅㪋 㪉㪅㪇㪄㪉㪅㪋 㪉㪊 㪊 㪋㪏 㪈㪅㪌㪄㪉㪅㪇 㪊㪋㪏 㪋㪍 㪉㪎 㪊 㪋㪏 㪉㪅㪊㪄㪉㪅㪋 㪈㪅㪍㪄㪉㪅㪈 㪖 㪈㪇 㪉㪏㪄㪋㪏 㪉㪅㪈 㪉㪅㪍 㪈㪅㪎㪄㪉㪅㪈 㪉㪅㪉 㪈 㪇 㪖 㪊㪊 㪊㪍㪃㩷㪋㪉㪃㩷㪋㪏 㪉㪅㪊㪄㪊㪅㪋 㪈㪅㪌㪄㪈㪅㪎 㪈㪅㪋㪄㪉㪅㪈 㪋㪌㪊 㪌㪏 㪉㪉㪃㩷㪊㪉㪄㪋㪏 㪈㪅㪌㪄㪊㪅㪌 㪈㪅㪍㪄㪉㪅㪐 㪈㪅㪊㪄㪉㪅㪏 㪈㪅㪏㪄㪉㪅㪇 㪈㪉 㪇 㪏㪏 㪋 㪋㪍㪃㩷㪋㪏 㪋㪅㪉 㪉㪅㪌㪄㪉㪅㪏 㪉㪅㪐㪄㪊㪅㪉 㪊㪅㪏㪄㪋㪅㪍 㪈㪊 㪎 㪈 㪉㪍 㪈㪅㪐 㪉㪊㪇 㪋 㪋㪏㪃㩷㪎㪉 㪉㪅㪐㪄㪊㪅㪉 㪈㪅㪍㪄㪉㪅㪉 㪎㪍 㪍 㪉㪏㪃㩷㪋㪍㪄㪋㪏㪃㩷㪌㪍 㪈㪅㪍 㪋 㪇 㪈㪌 㪉 㪉㪍㪃㩷㪋㪍 㪌 㪇 㪈 㪇 㪈 㪇 㪈 㪇 㪍㪊 㪉㪌 㪐 㪋㪍 㪋㪅㪈 㪈㪍 㪎 㪉㪇㪃㩷㪊㪍㪄㪊㪏㪃㩷㪋㪋㪄㪋㪏 㪉㪅㪏 㪈㪈 㪋 㪋㪏 㪈㪌 㪈㪊 㪋㪎㪄㪋㪏 㪊㪅㪎㪄㪋㪅㪋 㪈 㪈 㪋㪏 㪋㪏 㪍 㪈 㪌㪇 㪉㪎 㪉㪉㪄㪊㪉㪃㩷㪋㪍㪄㪌㪇㪃㩷㪌㪏 㪉㪅㪇㪄㪊㪅㪍 㪈 㪈 㪋㪏 㪏 㪉㪊 㪈 㪋㪍 㪈㪊 㪇 㪈 㪇 㪈㪌 㪇 㪈㪍 㪇 㪌 㪇 㪋㪋 㪇 㪌㪋 㪊 㪉㪍㪃㩷㪋㪉㪃㩷㪋㪏 㪈㪅㪈㪄㪈㪅㪉 㪍 㪉 㪋㪏 㪉 㪈 㪋㪏 㪏 㪇 㪌㪇 㪈 㪉㪍㪄㪊㪉 㪈㪅㪌 㪈㪅㪋
22 㪫㪸㪹㫃㪼㩷㪊㪅㪊㩷㩷㪚㫃㪸㫊㫊㩷㪘㪚㪫㪠㪥㪦㪧㪫㪜㪩㪰㪞㪠㪠㪅㩷㪧㪸㫉㫋㩷㪉㩷㪥㪼㫆㫇㫋㪼㫉㫐㪾㫀㫀㫀㫀㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㪦㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㪾㪼㫅㫌㫊 㩷㩷㪥㫆㪅㩷㫆㪽㩷㪾㪼㫅㪼㫉㪸㩷 㫋㫆㫋㪸㫃 㫊㫋㫌㪻㫀㪼㪻 㪪㫌㪹㫆㫉㪻㪼㫉㩷㪧㪿㫆㫃㫀㪻㫀㪺㪿㫋㪿㫐㫆㫀㪻㪼㫀 㪧㪿㫆㫃㫀㪻㫀㪺㪿㫋㪿㫐㫀㪻㪸㪼 㪈 㪇 㪪㫌㪹㫆㫉㪻㪼㫉㩷㪙㫃㪼㫅㫅㫀㫆㫀㪻㪼㫀 㪙㫃㪼㫅㫅㫀㫀㪻㪸㪼 㪌㪍 㪈㪊 㪚㪿㪸㪼㫅㫆㫇㫊㫀㪻㪸㪼 㪈㪊 㪇 㪚㫃㫀㫅㫀㪻㪸㪼 㪋 㪈 㪛㪸㪺㫋㫐㫃㫆㫊㪺㫆㫇㫀㪻㪸㪼 㪐 㪇 㪣㪸㪹㫉㫀㫊㫆㫄㫀㪻㪸㪼 㪈㪌 㪈 㪫㫉㫀㫇㫋㪼㫉㫐㪾㫀㫀㪻㪸㪼 㪉㪊 㪇 㪪㫌㪹㫆㫉㪻㪼㫉㩷㪠㪺㫆㫊㫋㪼㫆㫀㪻㪼㫀 㪠㪺㫆㫊㫋㪼㫀㪻㪸㪼 㪈 㪇 㪪㫌㪹㫆㫉㪻㪼㫉㩷㪞㫆㪹㫀㪼㫊㫆㪺㫆㫀㪻㪼㫀 㪞㫆㪹㫀㪼㫊㫆㪺㫀㪻㪸㪼 㪊㪍 㪋 㪪㫌㪹㫆㫉㪻㪼㫉㩷㪚㪸㫃㫃㫀㫆㫅㫐㫄㫆㫀㪻㪼㫀 㪚㪸㫃㫃㫀㫆㫅㫐㫄㫀㪻㪸㪼 㪈㪊 㪉 㪛㫉㪸㪺㫆㫅㪼㫋㫋㫀㪻㪸㪼 㪉 㪇 㪪㫌㪹㫆㫉㪻㪼㫉㩷㪞㫆㪹㫀㫆㫀㪻㪼㫀 㪩㪿㫐㪸㪺㫀㪺㪿㫋㪿㫐㫀㪻㪸㪼 㪈 㪇 㪦㪻㫆㫅㫋㫆㪹㫌㫋㫀㪻㪸㪼 㪌 㪊 㪜㫃㪼㫆㫋㫉㫀㪻㪸㪼 㪊㪌 㪈㪇 㩷㩷㩷㩷㪙㫌㫋㫀㫅㪸㪼 㪈㪊 㪊 㩷㩷㩷㩷㪜㫃㪼㫆㫋㫉㫀㫅㪸㪼 㪉㪉 㪌 㪧㫋㪼㫉㪼㫃㪼㫆㫋㫉㫀㪻㪸㪼 㪌 㪈 㪯㪼㫅㫀㫊㫋㪿㫄㫀㪻㪸㪼 㪍 㪇 㪢㫉㪸㪼㫄㪼㫉㫀㫀㪻㪸㪼 㪉 㪇 㪞㫆㪹㫀㫀㪻㪸㪼 㪉㪈㪇 㪋㪐 㩷㩷㩷㩷㪞㫆㪹㫀㫀㫅㪸㪼 㪈㪊㪇 㪉㪈 㩷㩷㩷㩷㪞㫆㪹㫀㫆㫅㪼㫃㫃㫀㫅㪸㪼 㪌㪍 㪈㪌 㩷㩷㩷㩷㪪㫀㪺㫐㪻㫀㫀㫅㪸㪼 㪎 㪈 㩷㩷㩷㩷㪦㫏㫌㪻㪼㫉㪺㫀㫅㪸㪼 㪈㪇 㪏 㩷㩷㩷㩷㪘㫄㪹㫃㫐㫆㫇㫀㫅㪸㪼 㪈㪇 㪉 㪤㫀㪺㫉㫆㪻㪼㫊㫄㫀㪻㪸㪼㩷㩿㪔㩷㪚㪼㫉㪻㪸㫃㫀㪻㪸㪼㪀 㪌 㪇 㪪㪺㪿㫀㫅㪻㫃㪼㫉㫀㫀㪻㪸㪼 㪈 㪇 㪪㫌㪹㫆㫉㪻㪼㫉㩷㪢㫌㫉㫋㫆㫀㪻㪼㫀 㪢㫌㫉㫋㫀㪻㪸㪼 㪈 㪈 㪪㫌㪹㫆㫉㪻㪼㫉㩷㪘㪺㪸㫅㫋㪿㫌㫉㫆㫀㪻㪼㫀 㪘㪺㪸㫅㫋㪿㫌㫉㫀㪻㪸㪼 㪍 㪊 㪜㫇㪿㫀㫇㫇㫀㪻㪸㪼 㪏 㪈 㪣㫌㫍㪸㫉㫀㪻㪸㪼 㪈 㪇 㪪㪺㪸㫋㫆㫇㪿㪸㪾㫀㪻㪸㪼 㪉 㪉 㪪㫀㪾㪸㫅㫀㪻㪸㪼 㪈 㪈 㪱㪸㫅㪺㫃㫀㪻㪸㪼 㪈 㪇 㪪㫌㪹㫆㫉㪻㪼㫉㩷㪪㪺㫆㫄㪹㫉㫆㫃㪸㪹㫉㪸㪺㫆㫀㪻㪼㫀 㪪㪺㫆㫄㪹㫉㫆㫃㪸㪹㫉㪸㪺㫀㪻㪸㪼 㪈 㪇 㪪㫌㪹㫆㫉㪻㪼㫉㩷㪪㪺㫆㫄㪹㫉㫆㫀㪻㪼㫀 㪪㫇㪿㫐㫉㪸㪼㫅㫀㪻㪸㪼 㪈 㪈 㪞㪼㫄㫇㫐㫃㫀㪻㪸㪼 㪈㪍 㪇 㪫㫉㫀㪺㪿㫀㫌㫉㫀㪻㪸㪼 㪈㪇 㪇 㪪㪺㫆㫄㪹㫉㫀㪻㪸㪼 㪈㪌 㪋 㪯㫀㫇㪿㫀㫀㪻㪸㪼 㪈 㪇 㪠㫊㫋㫀㫆㫇㪿㫆㫉㫀㪻㪸㪼 㪊 㪇 㪪㫌㪹㫆㫉㪻㪼㫉㩷㪪㫋㫉㫆㫄㪸㫋㪼㫆㫀㪻㪼㫀 㪘㫄㪸㫉㫊㫀㫇㫀㪻㪸㪼 㪈 㪇 㪚㪼㫅㫋㫉㫆㫃㫆㫇㪿㫀㪻㪸㪼 㪎 㪇 㪥㫆㫄㪼㫀㪻㪸㪼 㪊 㪇 㪘㫉㫀㫆㫄㫄㪸㫋㫀㪻㪸㪼 㪈 㪇 㪫㪼㫋㫉㪸㪾㫆㫅㫌㫉㫀㪻㪸㪼 㪈 㪇 㪪㫋㫉㫆㫄㪸㫋㪼㫀㪻㪸㪼 㪊 㪇 㪪㫌㪹㫆㫉㪻㪼㫉㩷㪘㫅㪸㪹㪸㫅㫋㫆㫀㪻㪼㫀㩷㩿㪣㪸㪹㫐㫉㫀㫅㫋㪿㫀㪺㫀㪃㩷㫀㫅㩷㫇㪸㫉㫋㪀
㩷㩷㪥㫆㪅㩷㫆㪽㩷㫊㫇㪆㫊㫊㫇 㪉㫅 㫋㫆㫋㪸㫃 㫊㫋㫌㪻㫀㪼㪻 㪇 㪉 㪇 㪉㪎 㪊㪍㪇 㪉㪌 㪋㪇㪄㪋㪏 㪏㪍 㪇 㪈㪉 㪈 㪋㪏 㪋㪊 㪇 㪈㪇㪌 㪈 㪋㪏 㪈㪌㪇 㪇 㪇 㪈 㪇 㪌 㪈㪋㪇 㪌 㪋㪉㪃㩷㪋㪍㪃㩷㪋㪏 㪌 㪈㪏㪉 㪌 㪊㪉㪃㩷㪊㪍㪄㪊㪏㪃㩷㪋㪉 㪈㪉 㪇 㪈㪉㪌 㪉 㪇 㪈㪌 㪋 㪋㪋 㪈㪌㪌 㪈㪋 㪖 㪌 㪋㪍㪃㩷㪋㪏 㪖 㪐 㪋㪍㪃㩷㪋㪏 㪊㪍 㪈 㪋㪍 㪈㪉 㪇 㪏 㪇 㪈㪐㪌㪇 㪈㪇㪍 㪖 㪌㪉 㪊㪇㪃㩷㪊㪏㪄㪌㪇㪃㩷㪌㪉 㪖 㪊㪎 㪊㪋㪃㩷㪋㪇㪄㪋㪏㪃㩷㪌㪉 㪖 㪈 㪋㪋 㪖 㪈㪋 㪊㪏㪃㩷㪋㪉㪄㪋㪏 㪊㪏㪃㩷㪋㪋㪃㩷㪋㪍 㪖 㪉 㪊㪇 㪇 㪊 㪇 㪈 㪉 㪈 㪋㪋 㪈㪉 㪏㪇 㪍 㪊㪋㪃㩷㪊㪍㪃㩷㪋㪏 㪈㪍 㪈 㪋㪏 㪈 㪇 㪋 㪉 㪋㪏 㪉㪎 㪊 㪋㪉㪃㩷㪋㪏 㪈 㪇 㪇 㪈 㪇 㪈㪇 㪉㪈 㪈 㪋㪏 㪉㪋 㪇 㪊㪐 㪇 㪌㪈 㪐 㪋㪏 㪈 㪇 㪈㪈 㪇 㪇 㪈 㪇 㪉㪏 㪇 㪈㪍 㪇 㪎 㪇 㪊 㪇 㪈㪌 㪇 㪊㪇
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷㩿㫇㪾㪆㪺㪼㫃㫃㪀㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷 㪝㪚㪤 㪝㪛 㪝㪠㪘 㪙㪝㪘
㪈㪅㪍
㪈㪅㪉㪄㪉㪅㪋
㪈㪅㪇㪄㪈㪅㪎
㪈㪅㪎㪄㪈㪅㪐
㪉㪅㪇 㪈㪅㪎㪄㪉㪅㪍
㪈㪅㪎
㪈㪅㪉㪃㩷㪈㪅㪍
㪈㪅㪋㪃㩷㪉㪅㪇
㪉㪅㪉㪄㪉㪅㪋
㪉㪅㪌 㪉㪅㪌 㪈㪅㪉
㪇㪅㪏㪄㪉㪅㪇 㪉㪅㪋㪄㪊㪅㪇
㪈㪅㪎㪄㪊㪅㪋 㪉㪅㪌
㪉㪅㪋㪄㪉㪅㪏
㪈㪅㪐
㪈㪅㪍㪄㪈㪅㪎
㪈㪅㪋
㪈㪅㪉㪄㪈㪅㪋
㪈㪅㪉
㪈㪅㪎
㪈㪅㪋
㪈㪅㪊㪄㪉㪅㪇 㪈㪅㪌㪄㪈㪅㪍
㪈㪅㪐
㪈㪅㪋 㪈㪅㪉㪄㪈㪅㪋
㪈㪅㪌
㪈㪅㪈㪄㪈㪅㪊 㪈㪅㪍 㪈㪅㪏 㪈㪅㪍㪄㪈㪅㪏 㪈㪅㪊 㪈㪅㪊
㪈㪅㪎㪃㩷㪉㪅㪋
㪈㪅㪏㪄㪉㪅㪉 㪈㪅㪏
㪈㪅㪋㪄㪈㪅㪍
㪈㪅㪍
23 㪫㪸㪹㫃㪼㩷㪊㪅㪊㩷㩷㪚㫃㪸㫊㫊㩷㪘㪚㪫㪠㪥㪦㪧㪫㪜㪩㪰㪞㪠㪠㪅㩷㪧㪸㫉㫋㩷㪉㩷㪥㪼㫆㫇㫋㪼㫉㫐㪾㫀㫀㫀㫀㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㪦㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㪾㪼㫅㫌㫊 㩷㩷㪥㫆㪅㩷㫆㪽㩷㪾㪼㫅㪼㫉㪸㩷 㫋㫆㫋㪸㫃 㫊㫋㫌㪻㫀㪼㪻 㪘㫅㪸㪹㪸㫅㫋㫀㪻㪸㪼 㪋 㪊 㪟㪼㫃㫆㫊㫋㫆㫄㪸㫋㫀㪻㪸㪼 㪈 㪈 㪦㫊㫇㪿㫉㫆㫅㪼㫄㫀㪻㪸㪼㩷 㪈㪋 㪏 㪪㫌㪹㫆㫉㪻㪼㫉㩷㪚㪿㪸㫅㫅㫆㫀㪻㪼㫀 㪚㪿㪸㫅㫅㫀㪻㪸㪼 㪉 㪉 㪪㫌㪹㫆㫉㪻㪼㫉㩷㪚㪸㫇㫉㫆㫀㪻㪼㫀 㪚㪸㫇㫉㫆㫀㪻㪸㪼 㪉 㪈
㩷㩷㪥㫆㪅㩷㫆㪽㩷㫊㫇㪆㫊㫊㫇 㪉㫅 㫋㫆㫋㪸㫃 㫊㫋㫌㪻㫀㪼㪻 㪊㪊 㪐 㪋㪍㪃㩷㪋㪏 㪈 㪈 㪋㪏 㪏㪍 㪉㪇 㪈㪍㪃㩷㪋㪉㪃㩷㪋㪍㪃㩷㪋㪏 㪈㪈 㪉㪐 㪈㪈 㪊㪉㪄㪋㪏㪃㩷㪍㪍㪃㩷㪈㪇㪋 㪈 㪈㪈 㪈 㪋㪉㪄㪋㪍
㪈
㪇
㪊
㪌 㪋 㪈㪍 㪉㪊 㪉㪇 㪈 㪊 㪐 㪋 㪊 㪎 㪊㪌 㪊
㪇 㪉 㪍 㪈㪉 㪉 㪇 㪇 㪇 㪇 㪇 㪌 㪌 㪊
㪍 㪏 㪈㪇㪌 㪍㪇 㪈㪋㪇 㪈 㪉㪇 㪈㪐 㪍 㪉㪇 㪊㪊 㪈㪊㪇 㪈㪉㪎
㪍㪉 㪇 㪇 㪍㪉 㪇 㪊 㪈㪋 㪉㪈 㪊 㪇 㪇 㪇 㪇 㪇 㪎 㪎 㪎
㪈㪉 㪋 㪈 㪈 㪈 㪉 㪈㪇 㪉 㪈 㪈 㪈 㪉 㪈㪍 㪉 㪈 㪉 㪉 㪌
㪉 㪈 㪇 㪇 㪇 㪇 㪇 㪇 㪇 㪇 㪇 㪇 㪇 㪇 㪇 㪇 㪇 㪇
㪋㪉 㪉㪌 㪈 㪈 㪋 㪈㪋 㪍㪏 㪌 㪈 㪌 㪈㪏 㪍 㪍㪉 㪎 㪈 㪋 㪉㪉 㪉㪎
㪋 㪊 㪈 㪇 㪇 㪇 㪇 㪇 㪇 㪇 㪇 㪇 㪇 㪇 㪇 㪇 㪇 㪇 㪇
㪧㪣㪜㪬㪩㪦㪥㪜㪚㪫㪠㪝㪦㪩㪤㪜㪪
㪪㫌㪹㫆㫉㪻㪼㫉㩷㪧㫊㪼㫋㫋㫆㪻㫆㫀㪻㪼㫀 㪧㫊㪼㫋㫋㫆㪻㫀㪻㪸㪼 㪪㫌㪹㫆㫉㪻㪼㫉㩷㪧㫃㪼㫌㫉㫆㫅㪼㪺㫋㫆㫀㪻㪼㫀 㪚㫀㫋㪿㪸㫉㫀㪻㪸㪼 㪪㪺㫆㫇㪿㫋㪿㪸㫃㫄㫀㪻㪸㪼 㪧㪸㫉㪸㫃㫀㪺㪿㫋㪿㫐㫀㪻㪸㪼 㪧㫃㪼㫌㫉㫆㫅㪼㪺㫋㫀㪻㪸㪼 㪙㫆㫋㪿㫀㪻㪸㪼 㪧㪸㫉㪸㫃㫀㪺㪿㫋㪿㫆㪻㫀㪻㪸㪼 㪧㫆㪼㪺㫀㫃㫆㫇㫊㪼㫋㫋㫀㪻㪸㪼 㪩㪿㫆㫄㪹㫆㫊㫆㫃㪼㫀㪻㪸㪼 㪘㪺㪿㫀㫉㫆㫇㫊㪼㫋㫋㫀㪻㪸㪼 㪪㪸㫄㪸㫉㫀㪻㪸㪼 㪘㪺㪿㫀㫉㫀㪻㪸㪼 㪪㫆㫃㪼㫀㪻㪸㪼 㪚㫐㫅㫆㪾㫃㫆㫊㫊㫀㪻㪸㪼 㪣㪦㪧㪟㪠㪠㪝㪦㪩㪤㪜㪪
㪘㫅㫋㪼㫅㫅㪸㫉㫀㫀㪻㪸㪼 㪣㫆㫇㪿㫀㫀㪻㪸㪼 㪫㪼㫋㫉㪸㪹㫉㪸㪺㪿㫀㫀㪻㪸㪼 㪣㫆㫇㪿㫀㪺㪿㫋㪿㫐㫀㪻㪸㪼 㪙㫉㪸㪺㪿㫀㫆㫅㫀㪺㪿㫋㪿㫐㫀㪻㪸㪼 㪚㪿㪸㫌㫅㪸㪺㫀㪻㪸㪼 㪦㪾㪺㫆㪺㪼㫇㪿㪸㫃㫀㪻㪸㪼 㪚㪸㫌㫃㫆㫇㪿㫉㫐㫅㫀㪻㪸㪼 㪥㪼㫆㪺㪼㫉㪸㫋㫀㫀㪻㪸㪼 㪤㪼㫃㪸㫅㫆㪺㪼㫋㫀㪻㪸㪼 㪟㫀㫄㪸㫅㫋㫆㫃㫆㫇㪿㫀㪻㪸㪼 㪛㫀㪺㪼㫉㪸㫋㫀㫀㪻㪸㪼 㪦㫅㪼㫀㫉㫆㪻㫀㪻㪸㪼 㪫㪿㪸㫌㫄㪸㫋㫀㪺㪿㫋㪿㫐㫀㪻㪸㪼 㪚㪼㫅㫋㫉㫆㫇㪿㫉㫐㫅㫀㪻㪸㪼 㪚㪼㫉㪸㫋㫀㫀㪻㪸㪼 㪞㫀㪾㪸㫅㫋㪸㪺㫋㫀㫅㫀㪻㪸㪼 㪣㫀㫅㫆㫇㪿㫉㫐㫅㫀㪻㪸㪼 㪫㪜㪫㪩㪘㪦㪛㪦㪥㪫㪠㪝㪦㪩㪤㪜㪪
㪪㫌㪹㫆㫉㪻㪼㫉㩷㪫㫉㫀㪸㪺㪸㫅㫋㪿㫆㪻㫆㫀㪻㪼㫀 㪫㫉㫀㪸㪺㪸㫅㫋㪿㫆㪻㫀㪻㪸㪼 㪪㫌㪹㫆㫉㪻㪼㫉㩷㪙㪸㫃㫀㫊㫋㫆㫀㪻㪼㫀 㪫㫉㫀㪸㪺㪸㫅㫋㪿㫀㪻㪸㪼 㪙㪸㫃㫀㫊㫋㫀㪻㪸㪼 㪤㫆㫅㪸㪺㪸㫅㫋㪿㫀㪻㪸㪼 㪦㫊㫋㫉㪸㪺㫀㫀㪻㪸㪼 㪪㫌㪹㫆㫉㪻㪼㫉㩷㪫㪼㫋㫉㪸㫆㪻㫆㫅㫋㫆㫀㪻㪼㫀 㪫㫉㫀㫆㪻㫆㫅㫋㫀㪻㪸㪼 㪫㪼㫋㫉㪸㫆㪻㫆㫅㫋㫀㪻㪸㪼 㪛㫀㫆㪻㫆㫅㫋㫀㪻㪸㪼 㪤㫆㫃㫀㪻㪸㪼
㪈㪈
㪇
㪉㪈
㪋 㪈㪈 㪊㪉 㪈㪋
㪉 㪏 㪎 㪉
㪎 㪋㪇 㪈㪇㪉 㪊㪊
㪈 㪈㪐 㪍 㪊
㪇 㪎 㪉 㪈
㪈 㪈㪊㪇 㪈㪐 㪋
㪍㪌 㪇 㪇 㪊㪈 㪉 㪈㪋 㪈㪇 㪌 㪊㪋 㪇 㪉㪐 㪋 㪈
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷㩿㫇㪾㪆㪺㪼㫃㫃㪀㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷 㪝㪚㪤 㪝㪛 㪝㪠㪘 㪙㪝㪘
㪈㪅㪈㪄㪈㪅㪐
㪈㪅㪊 㪈㪅㪊㪄㪈㪅㪐
㪈㪅㪏 㪈㪅㪉㪄㪈㪅㪍 㪉
㪈㪅㪋
㪋㪇㪃㩷㪋㪋 㪉㪏㪃㩷㪊㪏㪃㩷㪋㪍㪃㩷㪋㪏 㪋㪋㪃㩷㪋㪍㪃㩷㪋㪏 㪊㪏㪃㩷㪋㪋
㪈㪅㪋 㪈㪅㪉㪄㪈㪅㪊 㪈㪅㪉
㪊㪋㪄㪋㪉 㪊㪇㪃㩷㪋㪉㪃㩷㪋㪍㪄㪋㪏 㪊㪋㪃㩷㪊㪏㪄㪋㪉㪃㩷㪋㪍
㪈㪅㪌 㪈㪅㪌
㪈㪅㪍 㪈㪅㪊㪄㪈㪅㪌
㪈㪅㪊㪃㩷㪈㪅㪎 㪈㪅㪇㪄㪈㪅㪈 㪈㪅㪈㪄㪈㪅㪎
㪈㪅㪌㪄㪉㪅㪇 㪈㪅㪊㪄㪈㪅㪐
㪈㪅㪊 㪈㪅㪌㪄㪉㪅㪈 㪈㪅㪉
㪋㪍㪃㩷㪋㪏 㪋㪍
㪉㪅㪈 㪈㪅㪌
㪉㪅㪉
㪈㪅㪍 㪉㪅㪇
㪈㪅㪌
㪉㪅㪇
㪋㪏 㪋㪇㪄㪋㪍 㪊㪊㪄㪋㪇 㪊㪋㪄㪊㪍㪃㩷㪋㪏㪄㪌㪇
㪈㪅㪋㪄㪈㪅㪌 㪈㪅㪈㪄㪈㪅㪉 㪉㪅㪇㪄㪉㪅㪉
㪉㪏㪃㩷㪊㪋㪄㪋㪍 㪋㪍㪃㩷㪌㪉 㪋㪍
㪇㪅㪏㪄㪇㪅㪐 㪈㪅㪍㪄㪈㪅㪎 㪈㪅㪎㪄㪈㪅㪐
㪈㪅㪈 㪈㪅㪐
㪈㪅㪇 㪈㪅㪉㪄㪈㪅㪊 㪈㪅㪋 㪇㪅㪐㪄㪈㪅㪊㪃㩷㪈㪅㪍 㪈㪅㪊㪄㪈㪅㪋 㪈㪅㪎㪃㩷㪉㪅㪉
㪇㪅㪏㪄㪈㪅㪇
㪇㪅㪏㪄㪈㪅㪇 㪈㪅㪏
24 㪫㪸㪹㫃㪼㩷㪊㪅㪋㩷㩷㪚㫃㪸㫊㫊㩷㪪㪘㪩㪚㪦㪧㪫㪜㪩㪰㪞㪠㪠㩷 㪦㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊
㩷㩷㪥㫆㪅㩷㫆㪽㩷㪾㪼㫅㪼㫉㪸㩷 㫋㫆㫋㪸㫃 㫊㫋㫌㪻㫀㪼㪻
㩷㩷㪥㫆㪅㩷㫆㪽㩷㫊㫇㪆㫊㫊㫇 㫋㫆㫋㪸㫃 㫊㫋㫌㪻㫀㪼㪻
㪉㫅
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷㩿㫇㪾㪆㪺㪼㫃㫃㪀㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷 㪝㪚㪤 㪝㪛 㪝㪠㪘 㪙㪝㪘
㪚㫃㪸㫊㫊㩷㪪㪘㪩㪚㪦㪧㪫㪜㪩㪰㪞㪠㪠㩷 㪪㫌㪹㪺㫃㪸㫊㫊㩷㪚㫆㪼㫃㪸㪺㪸㫅㫋㪿㫀㫄㫆㫉㫇㪿㪸 㪉
㪈 㪈
㪋㪏㪔㪊㪉㪂㪈㪍㪤㪚
㪌㪋㪔㪊㪋㪂㪉㪇㪤㪚
㪚㪦㪜㪣㪘㪚㪘㪥㪫㪟㪠㪝㪦㪩㪤㪜㪪
㪣㪸㫋㫀㫄㪼㫉㫀㫀㪻㪸㪼
㪈
㪈
㪎㪅㪉
㪪㫌㪹㪺㫃㪸㫊㫊㩷㪛㫀㫇㫅㫆㫋㪼㫋㫉㪸㫇㫆㪻㫆㫄㫆㫉㫇㪿㪸 㪪㫌㪹㫆㫉㪻㪼㫉㩷㪚㪼㫉㪸㫋㫆㪻㫆㫅㫋㫆㫀㪻㪼㫀 㪚㪼㫉㪸㫋㫆㪻㫆㫅㫋㫀㪻㪸㪼
㪈
㪈
㪈
㪌 㪈 㪈
㪪㫌㪹㫆㫉㪻㪼㫉㩷㪣㪼㫇㫀㪻㫆㫊㫀㫉㪼㫅㫆㫀㪻㪼㫀 㪣㪼㫇㫀㪻㫆㫊㫀㫉㪼㫅㫀㪻㪸㪼 㪧㫉㫆㫋㫆㫇㫋㪼㫉㫀㪻㪸㪼
㪈 㪈
㪈 㪈
㪈 㪋
㪋 㪈 㪊
㪚㪜㪩㪘㪫㪦㪛㪦㪥㪫㪠㪝㪦㪩㪤㪜㪪
㩷㩷㩷㩷㩷㪧㫉㫆㫋㫆㫇㫋㪼㫉㫌㫊㩷㪸㫅㫅㪼㪺㫋㪼㫅㫊 㩷㩷㩷㩷㩷㪧㫉㫆㫋㫆㫇㫋㪼㫉㫌㫊㩷㪻㫆㫃㫃㫆㫀
㪊㪏 㪊㪋㪃㩷㪍㪏 㪊㪋 㪍㪏
㪈㪇㪍㪅㪇
㪈㪌㪇㪅㪇
㪈㪍㪈㪅㪇 㪉㪉㪍㪅㪇㪄㪉㪋㪏㪅㪇 㪈㪉㪌㪅㪇㪄㪈㪊㪈㪅㪇 㪏㪇㪅㪇㪄㪉㪍㪍㪅㪇 㪏㪈㪅㪇 㪈㪍㪊㪅㪇
㪈㪇㪐㪅㪇
25
Cytogenetic Approach to Fish Systematics To clarify interrelationships of fi fishes cytogenetically, genome size has been studied in fishes (Hinegardner and Rosen 1972: H-13; Ojima and Yamamoto 1990: O-48; Hardie and Hebert 2004: H-40; Pie et al. 2007: P-61; Smith and Gregory 2009: S-191). However, the question of the C-value enigma has been a puzzle for almost half a century, which suggests that a simple comparison of taxa and their genome size may be insufficient fi for the study of genome evolution in fishes. Concerning genome size, the transposable elements, the spectrum of size and frequency of small spontaneous nucleotide insertions and deletions, and genome duplication are the important parameters in the long-term evolution of genome size (Petrov 2001: P-5; Gregory 2005: G-22). As inferred by gene mapping analysis, inter- and intra-chromosomal rearrangements by Robertsonian translocation, tandem fusion, pericentric- and paracentric-inversion have occurred in fishes and a higher rate of chromosomal rearrangements in teleosts compared to other vertebrates has been hypothesized based on a comparison of the medaka genome with the zebrafish, fi pufferfi fish, and human genomes (Ravi and Venkatesh 2008: R-117). Therefore, synthetic analyses of karyotypes, genome sizes, and DNA sequences, and stepwise study inferring the karyotype and genome size of the latest common ancestor in monophyly from lower to higher taxa, may be necessary to clarify fish systematics. Recently, the early fi fish proto-karyotype has been studied (Jaillon et al. 2004: J-21; Naruse et al. 2004: N-77; Woods et al. 2005: W-37; Kohn et al. 2006: K-141; Nakatani et al. 2007: N-75). According to Sato and Nishida (2010: S-205), whole-genome duplication (WGD), which generates many thousands of duplicate genes, is believed to be one of the major evolutionary events that shaped the genomes of vertebrates including fishes and tetrapods. Interestingly, the analysis of teleost fish genomes has revealed that teleosts experienced an additional WGD (3R-WGD), whereas tetrapods experienced only 1R- and 2R-WGD; exceptionally, some lineages of amphibians and reptiles have experienced an additional WGD. The chromosomal distribution of the homologous genes can be compared between tetrapods and teleosts by whole-genome sequence analysis, and this information can then be used to infer the karyotype of the osteichthyan ancestor. Nakatani et al. (2007: N-75) hypothesized the following karyotype evolution model in fi fishes based on reconstruction of the vertebrate ancestral genome. Before the first fi round of WGD, the vertebrate ancestor karyotype was 2n = 20–26, and the subsequent 2R-WGD and some genome rearrangements yielded the jawed vertebrate ancestor of 2n = 80. After the divergence of Osteichthyes and Chondrichthyes, genome rearrangements reduced the number of chromosomes in the osteichthyan ancestor to 2n = 62. After the divergence of ray-finned fi and lobe-fi finned fishes, in the lineage of ray-fi finned fishes (Actinopterygii), chromosome fusions reduced the number of chromosomes and produced the teleost ancestor with 2n = 26. Subsequently, the whole-genome duplication (3R-WGD) in the teleost ancestor doubled the number of chromosomes to 2n = 52. The number of chromosomes in the teleost lineage has remained nearly unchanged during evolution, and the chromosome numbers of extant teleost species peak at 2n = 48 or 50.
26
Database of Karyotypes: How to Use the Database The database of fish karyotypes (Tables 4–7) is organized in the form of tables subdivided into 12 columns (A to L) as follows. 1.
2. 3.
4.
5.
6. 7.
8.
9.
Column A contains current scientifi fic names of karyotyped taxon. Classifi fication of species, as a rule, followed Eschmeyer’s Catalogue of Fishes (E-13). Classifi fication of higher taxa than species, as a rule, followed Nelson (N-68). Hybrids were not included. Synonymy of species/ subspecies followed, as a rule, Eschmeyer (E-13). Column B includes the names used in the original karyotype papers in cases in which these differ from currently accepted classification. fi Column C shows the sex of fi fishes studied. The majority of fishes reproduce bisexually. However, sex chromosome systems unequivocally identifi fied by karyotypes are known only in a limited number of species. Datasets for such heterosomes were given separately for both sexes and were marked with ‘F’ for females and ‘M’ for males. For possible further items, see also column J. Column D contains diploid chromosome number (2n), marked with an asterisk when inferred from a haploid number. B chromosomes, as a rule, were excluded from diploid chromosome number. Column E includes the karyotype. Classification fi of chromosomes followed Levan et al. (L-25): M, metacentrics, SM, submetacentrics, ST, subtelocentrics, A, acrocentrics. When these could not be clearly derived from source publications, classification fi was as follows: meta- and/or submetacentric (M/SM), submeta- and/or subtelocentric (SM/ST), and subtelo- and/or acrocentric (ST/A). Difference in the karyotype could be attributed to different degrees of chromosome condensation, leading to differences in chromosome classifi fication among authors. In karyotypes of cartilaginous fishes fi and ancient fishes such as lobe-fi finned, acipenseriform, and lepisosteiform fishes, fi small dot-like microchromosomes (MC) have been observed. They are so small that they could not be identified fi to any type of chromosomes defi fined by Levan et al. (1964: L-25) at present. It is unknown whether MC is different from M, SM, ST, and A. In this book, MC was added as an additional type to M, SM, ST, and A. As for papers in which the description of karyotype disagrees with the figures, fi karyotypes based on the figures, as a rule, were adopted. Column F (NF1) shows fundamental arm number, when M and SM are counted as two-armed. Column G (NF2) contains fundamental arm number, when M, SM, and ST are counted as two-armed. The arm number by Scheel (1972: S-24) differs from NF2. As Scheel counted all chromosomes with a short arm as two-arms, acrocentrics with short arms were counted as two-arms, i.e., NF sensu Scheel ≥ NF2. Therefore, Scheel’s arm number is shown in parentheses. Column H includes the number of Ag-NORs. The number and position of NORs can differ by different methods such as chromomycin A3 and silver staining. Silver staining is the method specific fi to NORs and studied widely. The number of Ag-NORs in the embryo tends to be larger than that of adults. Recently, 18S rDNA and 5S rDNA, which are components of NORs, have been examined by fluorescence fl in situ hybridization (FISH). However, the number of species for which NORs have been studied by FISH is limited. Column I shows genome size (pg/cell). Following Gregory (G-85), the methods used to estimate genome size were listed in five categories: flow cytometry (FCM), Feulgen densitometry (FD), Feulgen image analysis densitometry (FIA), bulk fluorometric fl assay (BFA), and static cell fluorometry fl (SCF). To facilitate comparison of genome size (pg/cell), the genome sizes of standard species were updated according to Gregory (G-85): Acipenser ruthenus (3.8 pg), Carassius auratus (3.5 pg), Cyprinus carpio (3.4 pg), Gallus domesticus
27 (2.5 pg), Homo sapiens (7.0 pg), Myxine garmani (9.2 pg), Mus musculus (6.5 pg), Oncorhynchus mykiss (5.2 pg), Salmo salarr (6.0 pg), Scyliorhinus canicula (11.4 pg), Thymallus thymallus (4.3 pg), and Tinca tinca (2.0 pg). Therefore, genome size by Ojima and Yamamoto (O-48) was revised to be 76% of their genome size in this book. The revised genome size was marked with an asterisk. Genome size, which is diffi ficult to specify to one of different karyotypes in a given species, was shown in parentheses. 10. Column J contains cytogenetic information on sex chromosomes, ploidy, B chromosomes, and diploid chromosome number of the latest common ancestor (ACN, ancestral chromosome number) and others: B, B chromosomes; ploidy, 2X, 3X, 6X. ACN was inferred based on 2n and the number of large chromosomes (LC), which were inferred to be formed by fi of ACN is the same as NAN Robertsonian fusion, being 2n + number of LC. The definition sensu Arai and Nagaiwa (1976: A-64). 11. Column K includes the locality of fish analyzed in the karyotype papers. If the locality was not provided in the original source, known distributions for the species appear in parentheses. 12. Column L shows references numbered as provided in the References.
R. Arai, Fish Karyotypes © Springer 2011
㪤㫐㫏㫀㫅㪼 㪤㫐㫏㫀㫅㪼 㪤㫐㫏㫀㫅㪼 㪧㪸㫉㪸㫄㫐㫏㫀㫅㪼 㪧㪸㫉㪸㫄㫐㫏㫀㫅㪼 㪧㪸㫉㪸㫄㫐㫏㫀㫅㪼 㪧㪸㫉㪸㫄㫐㫏㫀㫅㪼
㩷㩷㩷㪤㫐㫏㫀㫅㫀㫅㪸㪼
㪜㫇㫋㪸㫋㫉㪼㫋㫌㫊 㪜㫇㫋㪸㫋㫉㪼㫋㫌㫊 㪜㫇㫋㪸㫋㫉㪼㫋㫌㫊 㪜㫇㫋㪸㫋㫉㪼㫋㫌㫊 㪜㫇㫋㪸㫋㫉㪼㫋㫌㫊 㪜㫇㫋㪸㫋㫉㪼㫋㫌㫊 㪜㫇㫋㪸㫋㫉㪼㫋㫌㫊
㪾㪸㫉㫄㪸㫅㫀 㪾㫃㫌㫋㫀㫅㫆㫊㪸 㪾㫃㫌㫋㫀㫅㫆㫊㪸 㪸㫋㪸㫄㫀 㪸㫋㪸㫄㫀 㪸㫋㪸㫄㫀 㫊㪿㪼㫅㫀
㪹㫌㫉㪾㪼㫉㫀 㪹㫌㫉㪾㪼㫉㫀 㪺㫀㫉㫉㪿㪸㫋㫌㫊 㪺㫀㫉㫉㪿㪸㫋㫌㫊 㫆㫂㫀㫅㫆㫊㪼㪸㫅㫌㫊 㫊㫋㫆㫌㫋㫀㫀 㫊㫋㫆㫌㫋㫀㫀
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪝㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷 㪤㫐㫏㫀㫅㫀㪻㪸㪼 㩷㩷㩷㪜㫇㫋㪸㫋㫉㪼㫋㫀㫅㪸㪼
㪊㪍 㪊㪋 㪊㪋
㪤
㪊㪋
㪝㪃㩷㪤 㪝
㪉㪏
㪝㪃㩷㪤
㪝
㪈㪋
㪤
㪉㪏
㪊㪋 㪊㪋
㪝㪃㩷㪤
㪝㪃㩷㪤
㪊㪋
㪤
㪝㪃㩷㪤
㪊㪋
㪝㪃㩷㪤
㪫㫐㫇㪼㩷㪘 㪫㫐㫇㪼㩷㪙
㪊㪍
㪊㪍
㪛 㪉㫅
㪝
㪝㪃㩷㪤
㪚 㪪㪼㫏
㪹㫌㫉㪾㪼㫉㫀㪸㫉㪼
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪫㪸㪹㫃㪼㩷㪋㪅㪈㩷㩷㪚㫃㪸㫊㫊㩷㪤㪰㪯㪠㪥㪠㪅㩷㪦㫉㪻㪼㫉㩷㪤㪰㪯㪠㪥㪠㪝㪦㪩㪤㪜㪪㩷
㪫㪸㪹㫃㪼㩷㪋㩷㩷㪡㪸㫎㫃㪼㫊㫊㩷㪽㫀㫊㪿㪼㫊
㩿㫊㫇㪼㫉㫄㪸㫋㫆㪾㫆㫅㫀㪸㩷㪉㫅㪔㪍㪍㪄㪐㪍㪀
㪊㪋㪘
㪊㪍㪘
㩿㫊㫇㪼㫉㫄㪸㫋㫆㪾㫆㫅㫀㪸㩷㪉㫅㪔㪋㪏㪀
㩿㫊㫇㪼㫉㫄㪸㫋㫆㪾㫆㫅㫀㪸㩷㪉㫅㪔㪋㪋㪀
㩿㪾㪼㫉㫄㩷㪺㪼㫃㫃㫊㩷㪉㫅㪔㪋㪉㪄㪋㪋㪀
㩿㫊㫇㪼㫉㫄㪸㫋㫆㪾㫆㫅㫀㪸㩷㪉㫅㪔㪈㪍㪀
㩿㫊㫇㪼㫉㫄㪸㫋㫆㪾㫆㫅㫀㪸㩷㪉㫅㪔㪋㪏㪄㪌㪋㪀
㩿㫊㫇㪼㫉㫄㪸㫋㫆㪾㫆㫅㫀㪸㩷㪉㫅㪔㪌㪋㪀
㩿㫊㫇㪼㫉㫄㪸㫋㫆㪾㫆㫅㫀㪸㩷㪉㫅㪔㪏㪇㪀
㩿㫊㫇㪼㫉㫄㪸㫋㫆㪾㫆㫅㫀㪸㩷㪉㫅㪔㪎㪉㪀
㪊㪍㪘
㩿㫊㫇㪼㫉㫄㪸㫋㫆㪾㫆㫅㫀㪸㩷㪉㫅㪔㪌㪉㪀
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪊㪋
㪊㪍
㪉㪏
㪊㪍
㪝 㪥㪝㪈
㪊㪋
㪊㪍
㪉㪏
㪊㪍
㪞 㪥㪝㪉
㪟 㪘㪾㪄 㪥㪦㪩㫊
㪍㪅㪐㩷㪪㪚㪝
㪏㪅㪍㩷㪪㪚㪝
㪐㪅㪉㩷㪪㪚㪝
㪌㪅㪋㩷㪝㪚㪤㪃㩷㩿㪌㪅㪍㩷㪙㪝㪘㪀
㪌㪅㪍㩷㪪㪚㪝㪃㩷㩿㪌㪅㪌㩷㪝㪛㪀
㪌㪅㪋㩷㪪㪚㪝
㪋㪅㪍㩷㪪㪚㪝
㪍㪅㪇㩷㪪㪚㪝
㪠 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
㪥㪄㪍㪉
㪥㪄㪍㪉
㪢㪄㪍㪍㪃㩷㪢㪄㪍㪎
㪥㪄㪍㪉㪃㩷㪘㪄㪈㪇㪍 㪫㪄㪉㪏㪃㩷㪫㪄㪎㪊㪃㩷㪟㪄㪊㪎
㪥㪄㪍㪉
㪙㩷㫀㫅㩷㫊㫇㪼㫉㫄㪸㫋㫆㪾㫆㫅㫀㪸 㪫㪸㫀㫎㪸㫅㩷㩿㪫㪸㫀㫋㫌㫅㪾㪀
㪡㪸㫇㪸㫅㩷㩿㪢㪸㫅㪸㪾㪸㫎㪸㪀
㪡㪸㫇㪸㫅㩷㩿㪢㪸㫅㪸㪾㪸㫎㪸㪀
㪪㪄㪍㪏㪃㩷㪢㪄㪈㪋㪇
㪢㪄㪍㪍㪃㩷㪢㪄㪍㪎
㪢㪄㪍㪍㪃㩷㪢㪄㪍㪎
㪙㩷㫀㫅㩷㫊㫇㪼㫉㫄㪸㫋㫆㪾㫆㫅㫀㪸 㪡㪸㫇㪸㫅㩷㩿㪢㪸㫅㪸㪾㪸㫎㪸㪃㩷㪠㪹㪸㫉㪸㫂㫀㪀 㪥㪄㪍㪃㩷㪥㪄㪍㪉
㪪㫎㪼㪻㪼㫅㩷㩿㪙㪸㫃㫋㫀㪺㪀
㪪㫎㪼㪻㪼㫅㩷㩿㪞㫌㫃㫃㫄㪸㫉㪼㫅㩷㪝㫁㫆㫉㪻㪀 㪥㪄㪋㪎
㪡㪸㫇㪸㫅㩷㩿㪢㪸㫅㪸㪾㪸㫎㪸㪃㩷㪠㪹㪸㫉㪸㫂㫀㪀 㪥㪄㪍㪃㩷㪥㪄㪍㪉
㪥㪅㩷㪧㪸㪺㫀㪽㫀㪺
㪙㩷㫀㫅㩷㫊㫇㪼㫉㫄㪸㫋㫆㪾㫆㫅㫀㪸 㪚㪸㫅㪸㪻㪸㩷㩿㫆㪽㪽㩷㪙㪸㫄㪽㫀㪼㫃㪻㪀
㪙㩷㫀㫅㩷㫊㫇㪼㫉㫄㪸㫋㫆㪾㫆㫅㫀㪸 㪡㪸㫇㪸㫅㩷㩿㪢㪸㫅㪸㪾㪸㫎㪸㪃㩷㪠㪹㪸㫉㪸㫂㫀㪀 㪥㪄㪍㪃㩷㪥㪄㪍㪉
㪙㩷㫀㫅㩷㫊㫇㪼㫉㫄㪸㫋㫆㪾㫆㫅㫀㪸 㪥㪼㫎㩷㪱㪼㪸㫃㪸㫅㪻
㪙㩷㫀㫅㩷㫊㫇㪼㫉㫄㪸㫋㫆㪾㫆㫅㫀㪸 㪥㪼㫎㩷㪱㪼㪸㫃㪸㫅㪻
㪡㪸㫇㪸㫅㩷㩿㪢㪸㫅㪸㪾㪸㫎㪸㪀
㪙㩷㫀㫅㩷㫊㫇㪼㫉㫄㪸㫋㫆㪾㫆㫅㫀㪸 㪡㪸㫇㪸㫅㩷㩿㪢㪸㫅㪸㪾㪸㫎㪸㪃㩷㪠㪹㪸㫉㪸㫂㫀㪀 㪥㪄㪍㪃㩷㪥㪄㪍㪉
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
28
㪤㫆㫉㪻㪸㪺㫀㪸 㪤㫆㫉㪻㪸㪺㫀㪸
㪤㫆㫉㪻㪸㪺㫀㫀㪻㪸㪼
㪞㪼㫆㫋㫉㫀㪸
㪞㪼㫆㫋㫉㫀㫀㪻㪸㪼
㪜㫌㪻㫆㫅㫋㫆㫄㫐㫑㫆㫅 㪠㪺㪿㫋㪿㫐㫆㫄㫐㫑㫆㫅 㪠㪺㪿㫋㪿㫐㫆㫄㫐㫑㫆㫅 㪣㪸㫄㫇㪼㫋㫉㪸 㪣㪸㫄㫇㪼㫋㫉㪸 㪣㪸㫄㫇㪼㫋㫉㪸 㪣㪸㫄㫇㪼㫋㫉㪸 㪣㪸㫄㫇㪼㫋㫉㪸 㪣㪼㫋㪿㪼㫅㫋㪼㫉㫆㫅 㪣㪼㫋㪿㪼㫅㫋㪼㫉㫆㫅 㪧㪼㫋㫉㫆㫄㫐㫑㫆㫅 㪧㪼㫋㫉㫆㫄㫐㫑㫆㫅
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪚 㪪㪼㫏
㫄㫆㫉㪻㪸㫏 㫇㫉㪸㪼㪺㫆㫏
㪸㫌㫊㫋㫉㪸㫃㫀㫊
㪧㪼㫋㫉㫆㫄㫐㫑㫆㫅㫀㪻㪸㪼 㪤
㫄㪸㫉㫀㪸㪼 㪽㫆㫊㫊㫆㫉 㪾㪸㪾㪼㫀 㪧㪼㫋㫉㫆㫄㫐㫑㫆㫅㫀㪻㪸㪼 㪸㪼㫇㫐㫇㫋㪼㫉㪸 㪽㫃㫌㫍㫀㪸㫋㫀㫃㫀㫊 㫃㪸㫄㫆㫋㫋㪼㫀 㫃㪸㫄㫆㫋㫋㪼㫅㫀㫀 㫇㫃㪸㫅㪼㫉㫀 㫑㪸㫅㪸㫅㪻㫉㪼㪸㫀 㪺㪸㫄㫋㫊㪺㪿㪸㫋㫀㪺㪸 㪜㫅㫋㫆㫊㫇㪿㪼㫅㫌㫊㩷㫁㪸㫇㫆㫅㫀㪺㫌㫊 㫉㪼㫀㫊㫊㫅㪼㫉㫀 㪜㫅㫋㫆㫊㫇㪿㪼㫅㫌㫊 㪝㪃㩷㪤 㫄㪸㫉㫀㫅㫌㫊 㫄㪸㫉㫀㫅㫌㫊
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪝㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷 㪧㪼㫋㫉㫆㫄㫐㫑㫆㫅㫋㫀㪻㪸㪼
㪎㪍
㪎㪍
㪈㪏㪇
㪈㪍㪏
㪋㪅㪉㩷㪝㪚㪤㪃㩷㪋㪅㪉㪁㩷㪝㪛㩷
㫅㫌㫄㪼㫉㫆㫌㫊㩷㪤㪆㪪㪤
㪉㪅㪏㪁㩷㪝㪛
㪊㪅㪈㪁㩷㪝㪛
㪊㪅㪉㩷㪙㪝㪘
㪘㫌㫊㫋㫉㪸㫃㫀㪸㩷㩿㪥㪅㪪㪅㪮㪅㪀
㪪㪅㩷㪜㪅㩷㪘㫌㫊㫋㫉㪸㫃㫀㪸
㪪㪅㩷㪮㪅㩷㪘㫌㫊㫋㫉㪸㫃㫀㪸
㪬㪢㩷㩿㪜㫅㪾㫃㪸㫅㪻㪀
㪡㪸㫇㪸㫅㩷㩿㪟㫆㫂㫂㪸㫀㪻㫆㪀 㪡㪸㫇㪸㫅㩷㩿㪟㫆㫂㫂㪸㫀㪻㫆㪀
㪜㫌㫉㫆㫇㪼
㪬㪢
㪬㪪㪘㩷㩿㪞㫉㪼㪸㫋㩷㫃㪸㫂㪼㫊㪀
㪬㪢
㪬㪪㪘㩷㩿㪘㪣㪀
㪬㪪㪘㩷㩿㪘㪣㪀
㪬㪪㪘㩷㩿㪞㫉㪼㪸㫋㩷㫃㪸㫂㪼㫊㪀
㪜㫌㫉㫆㫇㪼
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪈㪋㪋㪄㪈㪍㪉
㪸㫄㫄㫆㪺㫆㪼㫋㪼㫊
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪈㪍㪌㪄㪈㪎㪋 㪈㪍㪏㩷㪤㪆㪪㪤㪆㪪㪫㪆㪘
㪉㪅㪏㪁㩷㪝㪛 㪉㪅㪎㪃㩷㪉㪅㪏㪁㩷㪝㪛
㪈㪍㪍㩷㩿㫄㫆㪻㪼㪀 㪈㪍㪋㩷㩿㫄㫆㪻㪼㪀 㪈㪋㪉
㪉㪅㪍㩷㪝㪚㪤㪃㩷㪉㪅㪐㪁㩷㪝㪛
㪈㪍㪋㩷㩿㫄㫆㪻㪼㪀
㪈㪍㪈㪄㪈㪍㪏
㪈㪍㪈㪄㪈㪍㪏 㩷㪸㫃㫃㩷㪪㪫㪆㪘
㪠 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪉㪅㪍㪁㩷㪝㪛
㪟 㪘㪾㪄 㪥㪦㪩㫊
㪈㪍㪋
㪞 㪥㪝㪉
㪈㪍㪋㩷㩿㫄㫆㪻㪼㪀 㪈㪍㪋㩷㪪㪫㪆㪘
㪝 㪥㪝㪈
㪉㪅㪎㪁㩷㪝㪛
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪈㪍㪍㩷㩿㫄㫆㪻㪼㪀
㪈㪍㪏
㪛 㪉㫅
㪫㪸㪹㫃㪼㩷㪋㪅㪉㩷㩷㪚㫃㪸㫊㫊㩷㪧㪜㪫㪩㪦㪤㪰㪱㪦㪥㪫㪠㪛㪘㪅㩷㪦㫉㪻㪼㫉㩷㪧㪜㪫㪩㪦㪤㪰㪱㪦㪥㪫㪠㪝㪦㪩㪤㪜㪪
㪩㪄㪏㪋
㪧㪄㪌㪐㪃㩷㪩㪄㪈㪈㪍
㪩㪄㪏㪍㪃㩷㪩㪄㪈㪈㪍
㪟㪄㪊㪎
㪧㪄㪍㪇㪃㩷㪫㪄㪎㪊㪃㩷㪩㪄㪈㪈㪍
㪪㪄㪈㪊
㪢㪄㪍㪎
㪱㪄㪋㪇
㪩㪄㪏㪌㪃㩷㪩㪄㪈㪈㪍㪃㩷㪘㪄㪈㪇㪍
㪩㪄㪏㪌㪃㩷㪩㪄㪈㪈㪍
㪩㪄㪏㪌㪃㩷㪩㪄㪈㪈㪍㪃㩷㪭㪄㪏㪍
㪟㪄㪉㪌
㪟㪄㪊㪌㪃㩷㪩㪄㪈㪈㪍
㪩㪄㪏㪌㪃㩷㪩㪄㪈㪈㪍
㪟㪄㪋㪋
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
29
㫄㫆㫅㫊㫋㫉㫆㫊㪸 㪺㫆㫃㫃㫀㪼㫀
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪽㫉㪸㫅㪺㫀㫊㪺㫀 㫁㪸㫇㫆㫅㫀㪺㫌㫊
㪚㪸㫉㪺㪿㪸㫉㫀㪸㫊
㪦㪻㫆㫅㫋㪸㫊㫇㫀㪻㫀㪻㪸㪼
㪚㪸㫉㪺㪿㪸㫉㫆㪻㫆㫅
㫋㪸㫌㫉㫌㫊
㪺㪸㫉㪺㪿㪸㫉㫀㪸㫊
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪝㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷 㪣㪸㫄㫅㫀㪻㪸㪼
㪫㪸㪹㫃㪼㩷㪌㪅㪊㩷㩷㪦㫉㪻㪼㫉㩷㪣㪘㪤㪥㪠㪝㪦㪩㪤㪜㪪
㪟㪼㫋㪼㫉㫆㪻㫆㫅㫋㫌㫊 㪟㪼㫋㪼㫉㫆㪻㫆㫅㫋㫌㫊
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪝㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷 㪟㪼㫋㪼㫉㫆㪻㫆㫅㫋㫀㪻㪸㪼
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪫㪸㪹㫃㪼㩷㪌㪅㪉㩷㩷㪦㫉㪻㪼㫉㩷㪟㪜㪫㪜㪩㪦㪛㪦㪥㪫㪠㪝㪦㪩㪤㪜㪪
㪚㪿㫀㫄㪸㪼㫉㪸 㪟㫐㪻㫉㫆㫃㪸㪾㫌㫊
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪝㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷 㪚㪿㫀㫄㪸㪼㫉㫀㪻㪸㪼
㪫㪸㪹㫃㪼㩷㪌㪅㪈㩷㩷㪦㫉㪻㪼㫉㩷㪚㪟㪠㪤㪘㪜㪩㪠㪝㪦㪩㪤㪜㪪
㪫㪸㪹㫃㪼㩷㪌㩷㩷㪚㫃㪸㫊㫊㩷㪚㪟㪦㪥㪛㪩㪠㪚㪟㪫㪟㪰㪜㪪
㪤
㪚 㪪㪼㫏
㪺㪸㪅㩷㪏㪋
㪏㪉
㪛 㪉㫅
㪈㪇㪉 㪈㪇㪉
㪝
㪛 㪉㫅
㪺㪸㪅㩷㪌㪏
㪏㪍
㪛 㪉㫅
㪤
㪚 㪪㪼㫏
㪝
㪚 㪪㪼㫏
㪋㪏㩷㫅㫆㫅㪄㪘㩷㪂㩷㪊㪋㪘㩷
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪈㪇㩷㪤㪆㪪㪤㩷㪂㩷㪐㪉㩷㪪㪫㪆㪘
㪉㪍㩷㫅㫆㫅㪄㪘㩷㪂㩷㪎㪍㪘㩷
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪸㫃㫃㩷㪘㪆㪤㪚
㪏㪍㩷㪪㪫㪆㪘㪆㪤㪚
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪝 㪥㪝㪈
㪈㪈㪉
㪝 㪥㪝㪈
㪺㪸㪅㩷㪌㪏
㪏㪍
㪝 㪥㪝㪈
㪈㪊㪇
㪞 㪥㪝㪉
㪈㪉㪏
㪞 㪥㪝㪉
㪞 㪥㪝㪉
㪟 㪘㪾㪄 㪥㪦㪩㫊
㪟 㪘㪾㪄 㪥㪦㪩㫊
㪟 㪘㪾㪄 㪥㪦㪩㫊
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪈㪇㪅㪐㩷㪝㪚㪤
㪈㪉㪅㪐㩷㪝㪚㪤
㪠 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪉㪎㪅㪉㪃㩷㪊㪈㪅㪐㩷㪝㪛
㪯㪰㪖
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪈㪎㪅㪌㩷㪝㪚㪤㪃㩷㪈㪋㪅㪌㩷㪝㪛㪃㩷㪈㪊㪅㪍㩷㪙㪝㪘
㪠 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪊㪅㪇㩷㪝㪛㪃㩷㪊㪅㪉㩷㪙㪝㪘
㪠 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㩿㪾㫃㫆㪹㪸㫃㪀
㪘㫋㫃㪸㫅㫋㫀㪺
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪡㪸㫇㪸㫅㩷㩿㪪㪸㪾㪸㫄㫀㩷㪙㪸㫐㪀
㩿㪜㪅㩷㪧㪸㪺㫀㪽㫀㪺㪀
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪬㪪㪘㩷㩿㪣㫆㫊㩷㪘㫅㪾㪼㫃㪼㫊㪀
㪪㫎㪼㪻㪼㫅
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
㪪㪄㪋㪈
㪪㪄㪋㪇㪃㩷㪤㪄㪈㪈㪋
㪠㪄㪍
㪪㪄㪋㪇㪃㩷㪪㪄㪈㪏㪌㪃㩷㪟㪄㪊㪎
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
㪦㪄㪎㪃㩷㪟㪄㪊㪎
㪥㪄㪋㪍
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
30
㪪㫇㪿㫐㫉㫅㫀㪻㪸㪼
㪤㫌㫊㫋㪼㫃㫌㫊 㪤㫌㫊㫋㪼㫃㫌㫊 㪫㫉㫀㪸㫂㫀㫊 㪫㫉㫀㪸㫂㫀㫊
㪫㫉㫀㪸㫂㫀㪻㪸㪼
㪪㫇㪿㫐㫉㫅㪸 㪪㫇㪿㫐㫉㫅㪸
㪺㪸㫅㫀㫊 㫄㪸㫅㪸㫑㫆 㫊㪺㫐㫃㫃㫀㪸 㫊㪼㫄㫀㪽㪸㫊㪺㫀㪸㫋㪸
㫃㪼㫎㫀㫅㫀 㫃㪼㫎㫀㫅㫀
㫌㫄㪹㫉㪸㫋㫀㫃㪼 㫍㪼㫅㫋㫉㫀㫆㫊㫌㫄 㪺㪸㫅㫀㪺㫌㫃㪸 㫊㫋㪼㫃㫃㪸㫉㫀㫊 㫋㫆㫉㪸㫑㪸㫄㪼
㪚㪼㫇㪿㪸㫃㫆㫊㪺㫐㫃㫃㫀㫌㫄 㪚㪼㫇㪿㪸㫃㫆㫊㪺㫐㫃㫃㫀㫌㫄 㪪㪺㫐㫃㫀㫆㫉㪿㫀㫅㫌㫊 㪪㪺㫐㫃㫀㫆㫉㪿㫀㫅㫌㫊 㪪㪺㫐㫃㫀㫆㫉㪿㫀㫅㫌㫊
㪪㪺㫐㫃㫀㫆㫉㪿㫀㫅㫀㪻㪸㪼
㪸㪺㫉㫆㫅㫆㫋㫌㫊 㫃㫀㫄㪹㪸㫋㫌㫊 㫃㫀㫄㪹㪸㫋㫌㫊 㫆㪹㫊㪺㫌㫉㫌㫊 㫇㫃㫌㫄㪹㪼㫌㫊 㪺㫌㫍㫀㪼㫉㫀 㪺㫌㫍㫀㪼㫉㫀 㪾㫃㪸㫌㪺㪸 㪾㫃㪸㫌㪺㪸 㪾㫃㪸㫌㪺㪸 㫋㪼㫉㫉㪸㪼㫅㫆㫍㪸㪼 㫋㪼㫉㫉㪸㪼㫅㫆㫍㪸㪼
㪚㪸㫉㪺㪿㪸㫉㪿㫀㫅㫌㫊 㪚㪸㫉㪺㪿㪸㫉㪿㫀㫅㫌㫊 㪚㪸㫉㪺㪿㪸㫉㪿㫀㫅㫌㫊 㪚㪸㫉㪺㪿㪸㫉㪿㫀㫅㫌㫊 㪚㪸㫉㪺㪿㪸㫉㪿㫀㫅㫌㫊 㪞㪸㫃㪼㫆㪺㪼㫉㪻㫆 㪞㪸㫃㪼㫆㪺㪼㫉㪻㫆 㪧㫉㫀㫆㫅㪸㪺㪼 㪧㫉㫀㫆㫅㪸㪺㪼 㪧㫉㫀㫆㫅㪸㪺㪼 㪩㪿㫀㫑㫆㫇㫉㫀㫆㫅㫆㪻㫆㫅 㪩㪿㫀㫑㫆㫇㫉㫀㫆㫅㫆㪻㫆㫅
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪝㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷 㪚㪸㫉㪺㪿㪸㫉㪿㫀㫅㫀㪻㪸㪼
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪫㪸㪹㫃㪼㩷㪌㪅㪋㩷㩷㪦㫉㪻㪼㫉㩷㪚㪘㪩㪚㪟㪘㪩㪟㪠㪥㪠㪝㪦㪩㪤㪜㪪
㪊㪇㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪉㪉㩷㪤㪚
㪎㪉
㪊㪍㩷㪤㪆㪪㪤㩷㪂㩷㪊㪍㩷㪪㪫㪆㪘 㪌㪉㩷㫅㫆㫅㪄㪘㩷㪂㩷㪉㪇㩷㪘
㪎㪉 㪎㪉
㪤
㪋㪋㩷㪤㪆㪪㪤㩷㪂㩷㪉㪋㩷㪪㪫㪆㪘
㪋㪋㩷㪤㪆㪪㪤㩷㪂㩷㪊㪍㪘
㪍㪏
㪏㪇
㪉㪇㩷㪤㪆㪪㪤㩷㪂㩷㪍㪍㩷㪪㪫㪆㪘 㪈㪏㩷㫅㫆㫅㪄㪘㩷㪂㩷㪍㪇㪘
㪏㪍 㪎㪏
㪉㪍㩷㪤㪆㪪㪤㩷㪂㩷㪊㪏㩷㪪㪫㪆㪘
㪈㪏㪤㩷㪂㩷㪉㪋㪪㪤㩷㪂㩷㪉㪇㩷㪘㪆㪤㪚
㪍㪉 㪍㪋
㪊㪋㩷㪤㪆㪪㪤㩷㪂㩷㪊㪇㩷㪪㪫㪆㪘 㪋㪍㩷㫅㫆㫅㪄㪘㩷㪂㩷㪈㪏㪘
㪍㪋 㪍㪋
㪝
㪝
㪤
㪤
㪊㪉㩷㪤㪆㪪㪤㩷㪂㩷㪌㪏㪘
㪐㪇
㪋㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪉㪇㩷㪪㪫㪆㪘㩷㪸㫅㪻㩷㫆㫋㪿㪼㫉㫊 㪋㪋㩷㫅㫆㫅㪄㪘㩷㪂㩷㪊㪍㪘
㪎㪏 㪏㪇
㩷㪉㪏㩷㪤㪆㪪㪤㩷㪂㩷㪌㪇㩷㪪㪫㪆㪘
㪎㪏 㪤
㪊㪇㩷㪤㪆㪪㪤㩷㪂㩷㪌㪍㩷㪪㪫㪆㪘
㪋㪇㩷㪤㪆㪪㪤㩷㪂㩷㪋㪍㪘
㪏㪍 㪏㪍
㪊㪏㩷㫅㫆㫅㪄㪘㩷㪂㩷㪋㪏㪘
㪏㪍
㪺㪸㪅㩷㪈㪏㩷㪤㪆㪪㪤㩷㪂㩷㫆㫋㪿㪼㫉㫊
㪤
㪝㪃㩷㪤
㪝㪃㩷㪤
㪺㪸㪅㩷㪉㪇㩷㪤㪆㪪㪤㩷㪂㩷㫆㫋㪿㪼㫉㫊
㪺㪸㪅㩷㪎㪋
㪊㪊㩷㪤㪆㪪㪤㩷㪂㩷㪌㪊㪘
㪺㪸㪅㩷㪌㪇㩷㪘㩷㪸㫅㪻㩷㫆㫋㪿㪼㫉㫊
㪊㪉㩷㫅㫆㫅㪄㪘㩷㪂㩷㪌㪉㪘
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪺㪸㪅㩷㪎㪏
㪏㪍
㪏㪋 㪺㪸㪅㩷㪏㪍
㪤
㪛 㪉㫅
㪤
㪚 㪪㪼㫏
㪈㪇㪏
㪈㪈㪉
㪈㪉㪋
㪈㪇㪍
㪐㪇
㪈㪉㪉
㪈㪇㪋
㪐㪏
㪈㪉㪉
㪈㪇㪍
㪈㪈㪍
㪈㪉㪍
㪺㪸㪅㩷㪐㪉
㪺㪸㪅㩷㪐㪏
㪈㪈㪐
㪝 㪥㪝㪈
㪈㪉㪋
㪈㪉㪋
㪐㪍
㪈㪈㪇
㪈㪉㪉
㪈㪉㪋
㪈㪉㪍
㪈㪉㪋
㪺㪸㪅㩷㪈㪉㪇
㪈㪈㪍
㪞 㪥㪝㪉
㪉
㪉
㪟 㪘㪾㪄 㪥㪦㪩㫊
㪐㪅㪍㩷㪙㪝㪘
㪐㪅㪏㩷㪝㪛
㪐㪅㪊㩷㪝㪛
㪐㪅㪍㩷㪝㪛㪃㩷㪐㪅㪉㩷㪙㪝㪘
㪍㪅㪍㩷㪝㪚㪤㪃㩷㩿㪎㪅㪇㩷㪙㪝㪘㪀
㩿㪍㪅㪈㩷㪝㪠㪘㪀
㪈㪊㪅㪉㩷㪝㪛
㪈㪉㪅㪊㩷㪝㪛
㪈㪈㪅㪊㩷㪝㪛
㪈㪏㪅㪈㩷㪝㪚㪤㪃㩷㪈㪌㪅㪋㩷㪙㪝㪘
㪈㪋㪅㪎㩷㪝㪛
㪎㪅㪉㩷㪝㪚㪤
㩿㪏㪅㪍㩷㪙㪝㪘㪀
㪏㪅㪍㩷㪝㪛
㪏㪅㪍㩷㪝㪛
㩿㪎㪅㪍㪁㩷㪝㪚㪤㪀
㪏㪅㪊㩷㪝㪚㪤
㪍㪅㪇㩷㪝㪛
㪌㪅㪌㪃㩷㪍㪅㪇㩷㪝㪛
㪏㪅㪉㩷㪝㪛
㪎㪅㪏㩷㪝㪚㪤㪃㩷㪎㪅㪋㩷㪙㪝㪘
㪍㪅㪎㩷㪝㪚㪤㪃㩷㪍㪅㪏㩷㪙㪝㪘
㪠 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪯㪰㪖
㫊㪼㫏㩷㪺㪿㫉㫆㫄㪖
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㩿㪜㪅㩷㪧㪸㪺㫀㪽㫀㪺㪀
㪡㪸㫇㪸㫅㪃㩷㪧㪸㪺㫀㪽㫀㪺
㪡㪸㫇㪸㫅㩷㩿㪚㪿㫀㪹㪸㪀
㩿㪮㪅㩷㪘㫋㫃㪸㫅㫋㫀㪺㪀
㩿㪾㫃㫆㪹㪸㫃㪀
㪡㪸㫇㪸㫅㩷㩿㪦㪾㪸㫊㪸㫎㪸㫉㪸㪀
㪡㪸㫇㪸㫅㩷㩿㪪㪿㫀㫄㫆㫂㫀㫋㪸㪀
㪠㫋㪸㫃㫐
㪠㫋㪸㫃㫐
㩿㪜㪅㩷㪧㪸㪺㫀㪽㫀㪺㪀
㪡㪸㫇㪸㫅㩷㩿㪪㫌㫉㫌㪾㪸㩷㪙㪸㫐㪀
㪬㪪㪘㩷㩿㪥㪚㪀
㪥㪅㩷㪧㪸㪺㫀㪽㫀㪺
㩿㪾㫃㫆㪹㪸㫃㪀
㪡㪸㫇㪸㫅㩷㩿㫆㪽㪽㩷㪪㪸㫅㫉㫀㫂㫌㪀
㪤㪼㪻㫀㫋㪼㫉㫉㪸㫅㪼㪸㫅
㪬㪪㪘㩷㩿㪥㪚㪀
㪡㪸㫇㪸㫅㩷㩿㪦㪾㪸㫊㪸㫎㪸㫉㪸㪀
㪡㪸㫇㪸㫅㩷㩿㪚㪿㫀㪹㪸㪀
㪤㪼㪻㫀㫋㪼㫉㫉㪸㫅㪼㪸㫅
㪬㪪㪘㩷㩿㪥㪚㪀
㪬㪪㪘㩷㩿㪥㪚㪀
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪪㪄㪋㪇㪃㩷㪤㪄㪈㪈㪋㪃㩷㪟㪄㪊㪎
㪘㪄㪈㪇㪉
㪘㪄㪈㪇㪉
㪪㪄㪈㪈㪌㪃㩷㪟㪄㪊㪎
㪪㪄㪋㪇㪃㩷㪟㪄㪊㪎
㪘㪄㪈㪇㪌㪃㩷㪟㪄㪋㪇
㪘㪄㪈㪇㪈
㪪㪄㪈㪈㪈㪃㩷㪩㪄㪏㪎
㪪㪄㪈㪈㪈㪃㩷㪩㪄㪏㪎
㪪㪄㪋㪇㪃㩷㪟㪄㪊㪎
㪘㪄㪈㪇㪈
㪪㪄㪈㪈㪌
㪪㪄㪋㪇㪃㩷㪤㪄㪈㪈㪋
㪰㪄㪋㪃㩷㪟㪄㪊㪎
㪘㪄㪈㪇㪉
㪘㪄㪈㪇㪌
㪪㪄㪈㪈㪌㪃㩷㪦㪄㪋㪏
㪪㪄㪋㪇㪃㩷㪤㪄㪈㪈㪋
㪘㪄㪈㪇㪌
㪘㪄㪈㪇㪌㪃㩷㪤㪄㪈㪊㪊
㪪㪄㪈㪈㪌
㪪㪄㪋㪈㪃㩷㪟㪄㪊㪎
㪪㪄㪋㪈㪃㩷㪟㪄㪊㪎
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
31
㪺㪼㫇㪼㪻㫀㪸㫅㫌㫊
㫇㪼㫉㫃㫆
㪸㪺㪸㫅㫋㪿㫀㪸㫊 㪸㪺㪸㫅㫋㪿㫀㪸㫊 㪸㪺㪸㫅㫋㪿㫀㪸㫊 㪸㪺㪸㫅㫋㪿㫀㪸㫊
㪺㪼㫅㫋㫉㫀㫅㪸
㫇㫌㫊㫀㫃㫃㫌㫊 㫊㫇㫀㫅㪸㫏
㪪㫈㫌㪸㫋㫀㫅㪸
㪺㪸㫃㫀㪽㫆㫉㫅㫀㪺㪸
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪝㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷 㪪㫈㫌㪸㫋㫀㫅㫀㪻㪸㪼
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪪㫈㫌㪸㫃㫀㪻㪸㪼
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪫㪸㪹㫃㪼㩷㪌㪅㪎㩷㩷㪦㫉㪻㪼㫉㩷㪪㪨㪬㪘㪫㪠㪥㪠㪝㪦㪩㪤㪜㪪
㪪㫈㫌㪸㫃㫌㫊 㪪㫈㫌㪸㫃㫌㫊 㪪㫈㫌㪸㫃㫌㫊 㪪㫈㫌㪸㫃㫌㫊
㪪㫈㫌㪸㫃㫀㪻㪸㪼
㪦㫏㫐㫅㫆㫋㫌㫊
㪦㫏㫐㫅㫆㫋㫀㪻㪸㪼
㪜㫋㫄㫆㫇㫋㪼㫉㫌㫊 㪜㫋㫄㫆㫇㫋㪼㫉㫌㫊
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪝㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷 㪜㫋㫄㫆㫇㫋㪼㫉㫀㪻㪸㪼
㫄㪸㪺㫌㫃㪸㫋㫌㫊
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪫㪸㪹㫃㪼㩷㪌㪅㪍㩷㩷㪦㫉㪻㪼㫉㩷㪪㪨㪬㪘㪣㪠㪝㪦㪩㪤㪜㪪
㪥㫆㫋㫆㫉㫐㫅㪺㪿㫌㫊
㪥㫆㫋㫆㫉㫐㫅㪺㪿㫀㪻㪸㪼
㪟㪼㫇㫋㫉㪸㫅㪺㪿㫀㪸㫊
㪟㪼㫇㫋㫉㪸㫅㪺㪿㫀㫀㪻㪸㪼
㪚㪿㫃㪸㫄㫐㪻㫆㫊㪼㫃㪸㪺㪿㫌㫊 㪸㫅㪾㫌㫀㫅㪼㫌㫊
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪝㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷 㪚㪿㫃㪸䌭䌹㪻㫆㫊㪼㫃㪸㪺㪿㫀㪻㪸㪼
㪫㪸㪹㫃㪼㩷㪌㪅㪌㩷㩷㪦㫉㪻㪼㫉㩷㪟㪜㪯㪘㪥㪚㪟㪠㪝㪦㪩㪤㪜㪪
㪌㪏
㪏㪏
㪛 㪉㫅
㪌㪍㩷㪤㪆㪪㪤㩷㪂㩷㪉㪘
㪍㪋
㪝
㪚 㪪㪼㫏
㪊㪉㩷㪤㪆㪪㪤㩷㪂㩷㪊㪉㩷㪪㪫㪆㪘
㪍㪇
㩷㪉㪍㩷㫅㫆㫅㪄㪘㩷㪂㩷㪍㪉㪘
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪍㪇㩷㫅㫆㫅㪄㪘
㪎㪏
㪊㪏㩷㪤㪆㪪㪤㩷㪂㩷㪋㪇㩷㪪㪫㪆㪘
㪌㪍㩷㪤㪆㪪㪤㩷㪂㩷㪍㪘
㪏㪍㩷㪘㪆㪤㪚
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪋㩷㫅㫆㫅㪄㪘㩷㪂㩷㪈㪇㪇㪘㩷
㪍㪤㩷㪂㩷㪍㪍㩷㪪㪫㪆㪘
㪈㪉㩷㪤㪆㪪㪤㩷㪂㩷㪏㪏㩷㪪㪫㪆㪘
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪤
㪍㪉
㪏㪍
㪏㪍
㪛 㪉㫅
㪈㪇㪋
㪺㪸㪅㩷㪎㪉
㪈㪇㪇
㪛 㪉㫅
㪤
㪤
㪚 㪪㪼㫏
㪝
㪤
㪚 㪪㪼㫏
㪝 㪥㪝㪈
㪈㪈㪋
㪐㪍
㪈㪈㪍
㪈㪈㪏
㪏㪍
㪝 㪥㪝㪈
㪎㪏
㪈㪈㪉
㪝 㪥㪝㪈
㪈㪈㪋
㪞 㪥㪝㪉
㪈㪈㪋
㪈㪉㪇
㪈㪈㪏
㪞 㪥㪝㪉
㪈㪇㪏
㪞 㪥㪝㪉
㪟 㪘㪾㪄 㪥㪦㪩㫊
㪟 㪘㪾㪄 㪥㪦㪩㫊
㪟 㪘㪾㪄 㪥㪦㪩㫊
㪈㪏㪅㪍㩷㪙㪝㪘
㪠 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㩿㪈㪈㪅㪍㩷㪝㪠㪘㪀
㪈㪋㪅㪇㩷㪝㪚㪤
㪈㪉㪅㪇㩷㪙㪝㪘
㪊㪋㪅㪇㩷㪝㪛
㪊㪉㪅㪊㩷㪝㪛
㪈㪍㪅㪈㪁㩷㪝㪚㪤
㪠 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪏㪅㪏㩷㪝㪚㪤
㪐㪅㪉㩷㪝㪛
㪠 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪯㪰 㪆㪯㪯
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪘㪚㪥㪔㪍㪍
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㩿㪜㪅㩷㪧㪸㪺㫀㪽㫀㪺㪀
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪬㪪㪘㩷㩿㫆㪽㪽㩷㪥㪚㪀
㪬㪪㪘㩷㩿㫆㪽㪽㩷㪥㪚㪀
㪪㫎㪼㪻㪼㫅
㩿㪤㪼㪻㫀㫋㪼㫉㫉㪸㫅㪼㪸㫅㪀
㪘㫋㫃㪸㫅㫋㫀㪺
㩿㪾㫃㫆㪹㪸㫃㪀
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㩿㪾㫃㫆㪹㪸㫃㪀
㩿㪾㫃㫆㪹㪸㫃㪀
㪡㪸㫇㪸㫅㩷㩿㪪㫌㫉㫌㪾㪸㩷㪙㪸㫐㪀
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪪㪄㪋㪇㪃㩷㪤㪄㪈㪈㪋㪃㩷㪟㪄㪊㪎
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
㪧㪄㪌㪇㪃㩷㪟㪄㪋㪇
㪤㪄㪈㪈㪋
㪪㪄㪋㪇㪃㩷㪟㪄㪊㪎
㪥㪄㪋㪍
㪪㪄㪈㪈㪊㪃㩷㪪㪄㪈㪏㪌㪃㩷㪦㪄㪎㪋
㪥㪄㪋㪍㪃㩷㪪㪄㪈㪈㪉
㪦㪄㪋㪏
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
㪪㪄㪋㪇㪃㩷㪤㪄㪈㪈㪋
㪠㪄㪊
㪠㪄㪍
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
32
㼏㼍㼘㼕㼒㼛㼞㼚㼕㼏㼍 㼙㼍㼞㼙㼛㼞㼍㼠㼍 㼙㼍㼞㼙㼛㼞㼍㼠㼍 㼠㼛㼗㼕㼛㼚㼕㼟 㼠㼛㼞㼜㼑㼐㼛
㼎㼞㼍㼟㼕㼘㼕㼑㼚㼟㼕㼟 㼖㼍㼜㼛㼚㼕㼏㼍
㻾㼔㼕㼚㼛㼎㼍㼠㼛㼟 㻾㼔㼕㼚㼛㼎㼍㼠㼛㼟 㻾㼔㼕㼚㼛㼎㼍㼠㼛㼟 㻾㼔㼕㼚㼛㼎㼍㼠㼛㼟 㻾㼔㼕㼚㼛㼎㼍㼠㼛㼟 㻾㼔㼕㼚㼛㼎㼍㼠㼛㼟
㻾㼔㼕㼚㼛㼎㼍㼠㼕㼐㼍㼑
㻭㼙㼎㼘㼥㼞㼍㼖㼍 㻰㼕㼜㼠㼡㼞㼡㼟 㻾㼍㼖㼍 㻾㼍㼖㼍 㻾㼍㼖㼍 㻾㼍㼖㼍 㻾㼍㼖㼍
㼔㼥㼚㼚㼕㼏㼑㼜㼔㼍㼘㼡㼟 㼔㼥㼚㼚㼕㼏㼑㼜㼔㼍㼘㼡㼟 㼘㼑㼚㼠㼕㼓㼕㼚㼛㼟㼡㼟 㼜㼞㼛㼐㼡㼏㼠㼡㼟 㼟㼏㼔㼘㼑㼓㼑㼘㼕㼕 㼟㼏㼔㼘㼑㼓㼑㼘㼕㼕
㼞㼍㼐㼕㼍㼠㼍 㼎㼍㼠㼕㼟 㼍㼟㼠㼑㼞㼕㼍㼟 㼏㼘㼍㼢㼍㼠㼍 㼑㼓㼘㼍㼚㼠㼑㼞㼕㼍 㼙㼛㼚㼠㼍㼓㼡㼕 㼜㼛㼘㼥㼟㼠㼕㼓㼙㼍
㻌㻌㻌㻌㻌㻌㻌㻌㻌㻌㻌㻌㻌㻌㻌㻌㻌㻌㻌㻭 㻯㼡㼞㼞㼑㼚㼠㻌㼟㼏㼕㼑㼚㼠㼕㼒㼕㼏㻌㼚㼍㼙㼑㻌㼛㼒㻌㼠㼍㼤㼛㼚 㻲㼍㼙㼕㼘㼥㻛㼟㼜㼑㼏㼕㼑㼟㻌 㻾㼍㼖㼕㼐㼍㼑
㼀㼍㼎㼘㼑㻌㻡㻚㻥㻌㻌㻻㼞㼐㼑㼞㻌㻾㻭㻶㻵㻲㻻㻾㻹㻱㻿
㼀㼛㼞㼜㼑㼐㼛 㼀㼛㼞㼜㼑㼐㼛 㼀㼛㼞㼜㼑㼐㼛 㼀㼛㼞㼜㼑㼐㼛 㼀㼛㼞㼜㼑㼐㼛
㼀㼛㼞㼜㼑㼐㼕㼚㼕㼐㼍㼑
㻺㼍㼞㼏㼕㼚㼑 㻺㼍㼞㼗㼑
㻌㻌㻌㻌㻌㻌㻌㻌㻌㻌㻌㻌㻌㻌㻌㻌㻌㻌㻌㻭 㻯㼡㼞㼞㼑㼚㼠㻌㼟㼏㼕㼑㼚㼠㼕㼒㼕㼏㻌㼚㼍㼙㼑㻌㼛㼒㻌㼠㼍㼤㼛㼚 㻲㼍㼙㼕㼘㼥㻛㼟㼜㼑㼏㼕㼑㼟㻌 㻺㼍㼞㼏㼕㼚㼕㼐㼍㼑
㻾㼍㼖㼍 㻾㼍㼖㼍
㻮 㻾㼑㼜㼛㼞㼠㼑㼐㻌㼕㼚 㼗㼍㼞㼥㼛㼠㼥㼜㼑㻌㼜㼍㼜㼑㼞
㼛㼏㼑㼘㼘㼍㼠㼍
㻾㼍㼖㼕㼒㼛㼞㼙㼑㼟
㻮 㻾㼑㼜㼛㼞㼠㼑㼐㻌㼕㼚 㼗㼍㼞㼥㼛㼠㼥㼜㼑㻌㼜㼍㼜㼑㼞
㼀㼍㼎㼘㼑㻌㻡㻚㻤㻌㻌㻻㼞㼐㼑㼞㻌㼀㻻㻾㻼㻱㻰㻵㻺㻵㻲㻻㻾㻹㻱㻿
㻢㻜 㻡㻥 㻤㻠 㻥㻞 㻢㻠 㻢㻟
㻲 㻲㻘㻌㻹 㻲 㻹
㻥㻢
㻲㻘㻌㻹
㻲
㻥㻢
㻹
㻹
㻡㻤
㻲㻘㻌㻹
㻡㻠㻌㻹㻛㻿㻹㻌㻗㻌㻥㻌㻿㼀㻛㻭
㻡㻡㻌㻹㻛㻿㻹㻌㻗㻌㻥㻌㻿㼀㻛㻭
㻠㻠㻌㼚㼛㼚㻙㻭㻌㻗㻌㻠㻤㻭
㻞㻢㻹㻌㻗㻌㻞㻠㻿㻹㻌㻗㻌㻢㻿㼀㻌㻗㻌㻟㻭㻌
㻞㻢㻹㻌㻗㻌㻞㻡㻿㻹㻌㻗㻌㻢㻿㼀㻌㻗㻌㻟㻭㻌
㻝㻤㻌㻹㻛㻿㻹㻌㻗㻌㻝㻢㻿㼀㻌㻗㻌㻢㻞㻭
㻝㻤㻌㻹㻛㻿㻹㻌㻗㻌㻝㻢㻿㼀㻌㻗㻌㻢㻞㻭
㻟㻜㻌㼚㼛㼚㻙㻭㻌㻗㻌㻞㻤㻭
㻠㻌㻹㻛㻿㻹㻌㻗㻌㻥㻠㻌㻿㼀㻛㻭㻛㻹㻯
㻢㻌㻹㻛㻿㻹㻌㻗㻌㻥㻞㻭
㻥㻤 㻥㻤
㻢㻌㻹㻛㻿㻹㻌㻗㻌㻥㻞㻭
㻱 㻌㻌㻌㻌㻌㻌㻌㻌㻌㻌㻌㻌㻷㼍㼞㼥㼛㼠㼥㼜㼑
㻝㻞㻌㻹㻛㻿㻹㻌㻗㻌㻝㻠㻭㻌㻗㻌㻠㻜㻌㻹㻯
㻤㻢㻭
㻥㻤
㻥㻤
㻰 㻞㼚
㻢㻢
㻹
㻹
㻯 㻿㼑㼤
㻲㻘㻌㻹
㻤㻢
㻹
㻢㻢㻭㻌㻗㻌㻞㻜㻌㻹㻯
㻤㻢㻌㻿㼀㻛㻭
㻤㻢
㻠㻌㻹㻛㻿㻹㻌㻗㻌㻣㻤㻌㻿㼀㻛㻭
㻤㻢
㻞㻤㻌㻹㻛㻿㻹㻌㻗㻌㻞㻢㻌㻿㼀㻛㻭
㻝㻤㻹㻌㻗㻌㻠㻿㻹㻌㻗㻌㻢㻿㼀
㻱 㻌㻌㻌㻌㻌㻌㻌㻌㻌㻌㻌㻌㻷㼍㼞㼥㼛㼠㼥㼜㼑
㻤㻞
㻲㻘㻌㻹
㻲
㻞㻤 㻡㻠
㻲
㻰 㻞㼚
㻲㻘㻌㻹
㻯 㻿㼑㼤
㻝㻝㻣
㻝㻝㻥
㻝㻜㻥
㻝㻝㻝
㻝㻝㻠
㻝㻝㻠
㻝㻜㻞
㻝㻜㻠
㻝㻜㻠
㻲 㻺㻲㻝
㻣㻤
㻤㻢
㻤㻢
㻤㻢
㻤㻢
㻤㻞
㻡㻜
㻲 㻺㻲㻝
㻝㻟㻢
㻝㻝㻡
㻝㻝㻣
㻝㻟㻜
㻝㻟㻜
㻤㻤
㻳 㻺㻲㻞
㻤㻢
㻡㻢
㻳 㻺㻲㻞
㻠
㻠
㻝㻞
㻤
㻴 㻭㼓㻙 㻺㻻㻾㼟
㻟
㻟
㻴 㻭㼓㻙 㻺㻻㻾㼟
㻠㻚㻥㻌㻲㻯㻹㻘㻌㻡㻚㻥㻌㻲㻰
㻡㻚㻥㻌㻲㻰
㻤㻚㻜㻌㻲㻯㻹㻘㻌㻤㻚㻜㻌㻮㻲㻭
㻣㻚㻢㻖㻌㻲㻯㻹
㻢㻚㻥㻌㻲㻰
㻢㻚㻡㻌㻲㻯㻹
㻢㻚㻟㻌㻲㻰
㻣㻚㻜㻌㻲㻰
㻢㻚㻞㻌㻲㻰
㻵 㻳㼑㼚㼛㼙㼑㻌㼟㼕㼦㼑㻌 㻔㼜㼓㻛㼏㼑㼘㼘㻕
㻝㻡㻚㻜㻌㻲㻰
㻝㻠㻚㻜㻌㻲㻰
㻝㻠㻚㻢㻌㻮㻲㻭
㻞㻠㻚㻜㻌㻲㻰
㻤㻚㻠㻌㻮㻲㻭
㻵 㻳㼑㼚㼛㼙㼑㻌㼟㼕㼦㼑㻌 㻔㼜㼓㻛㼏㼑㼘㼘㻕
㻭㻯㻺㻩㻢㻥
㻭㻯㻺㻩㻣㻜
㼄㼅 㻛㼄㼄
㻭㻯㻺㻩㻢㻜
㻶 㻯㼛㼙㼙㼑㼚㼠㼟
㻶 㻯㼛㼙㼙㼑㼚㼠㼟
㻶㼍㼜㼍㼚
㻶㼍㼜㼍㼚
㻔㻱㻚㻌㻼㼍㼏㼕㼒㼕㼏㻕
㻳㼡㼘㼒㻌㼛㼒㻌㻹㼑㼤㼕㼏㼛
㻶㼍㼜㼍㼚㻌㻔㻻㼟㼍㼗㼍㻕
㻶㼍㼜㼍㼚㻌㻔㻻㼟㼍㼗㼍㻕
㻵㼠㼍㼘㼥㻌㻔㼚㼑㼍㼞㻌㻺㼍㼜㼘㼑㼟㻕
㻵㼠㼍㼘㼥㻌㻔㼚㼑㼍㼞㻌㻺㼍㼜㼘㼑㼟㻕
㼁㻿㻭㻌㻔㻺㻯㻕
㻿㼣㼑㼐㼑㼚
㻵㼠㼍㼘㼥
㻿㼣㼑㼐㼑㼚
㻿㼣㼑㼐㼑㼚
㻷 㻌㻌㻌㻌㻌㻌㻌㻸㼛㼏㼍㼘㼕㼠㼥
㻵㼠㼍㼘㼥㻌㻔㼀㼥㼞㼞㼔㼑㼚㼕㼍㼚㻌㻿㼑㼍㻕
㻶㼍㼜㼍㼚㻌㻔㻿㼡㼞㼡㼓㼍㻌㻮㼍㼥㻕
㻵㼠㼍㼘㼥㻌㻔㼀㼥㼞㼞㼔㼑㼚㼕㼍㼚㻌㻿㼑㼍㻕
㻵㼠㼍㼘㼥
㻶㼍㼜㼍㼚㻌㻔㻵㼣㼍㼠㼑㻕㻌
㻶㼍㼜㼍㼚㻌㻔㻵㼦㼡㻕
㻳㼡㼘㼒㻌㼛㼒㻌㻹㼑㼤㼕㼏㼛
㻷 㻌㻌㻌㻌㻌㻌㻌㻸㼛㼏㼍㼘㼕㼠㼥
㻭㻙㻝㻝㻜㻘㻌㻯㻙㻝㻜㻜
㻭㻙㻝㻝㻜
㻿㻙㻠㻜㻘㻌㻹㻙㻝㻝㻠㻘㻌㻴㻙㻟㻣
㻰㻙㻝㻣
㻷㻙㻠㻥
㻷㻙㻠㻥㻘㻌㻻㻙㻠㻤
㻾㻙㻝㻝㻞
㻾㻙㻤㻤㻘㻌㻾㻙㻝㻝㻤㻘㻌㻿㻙㻝㻝㻝
㻿㻙㻠㻜㻘㻌㻹㻙㻝㻝㻠
㻺㻙㻠㻟㻘㻌㻺㻙㻠㻢㻘㻌㻿㻙㻝㻝㻞
㻻㻙㻣㻠㻘㻌㻾㻙㻝㻝㻤㻘㻌㻿㻙㻝㻝㻟
㻺㻙㻠㻟㻘㻌㻺㻙㻠㻢㻘㻌㻿㻙㻝㻝㻝
㻺㻙㻠㻟
㻸 㻾㼑㼒㼑㼞㼑㼚㼏㼑
㻻㻙㻣㻠㻘㻌㻿㻙㻝㻝㻝㻘㻌㻿㻙㻝㻝㻠
㻭㻙㻝㻜㻟
㻿㻙㻝㻝㻠
㻻㻙㻣㻠㻘㻌㻿㻙㻝㻝㻝
㻵㻙㻡㻘㻌㻴㻙㻟㻣
㻵㻙㻡
㻰㻙㻝㻣㻘㻌㻴㻙㻟㻣
㻸 㻾㼑㼒㼑㼞㼑㼚㼏㼑
33
㫋㫉㫀㫊㪼㫉㫀㪸㫋㪸
㪞㫐㫄㫅㫌㫉㪸 㪞㫐㫄㫅㫌㫉㪸
㪞㫐㫄㫅㫌㫉㫀㪻㪸㪼
㪛㪸㫊㫐㪸㫋㫀㫊 㪛㪸㫊㫐㪸㫋㫀㫊 㪛㪸㫊㫐㪸㫋㫀㫊 㪛㪸㫊㫐㪸㫋㫀㫊 㪛㪸㫊㫐㪸㫋㫀㫊 㪛㪸㫊㫐㪸㫋㫀㫊 㪛㪸㫊㫐㪸㫋㫀㫊 㪛㪸㫊㫐㪸㫋㫀㫊 㪫㪸㪼㫅㫀㫌㫉㪸
㫁㪸㫇㫆㫅㫀㪺㪸 㫄㫀㪺㫉㫌㫉㪸
㪸㫂㪸㫁㪼㫀 㪸㫄㪼㫉㫀㪺㪸㫅㪸 㫂㫌㪿㫃㫀㫀 㫄㪸㫋㫊㫌㪹㪸㫉㪸㫀 㫊㪸㪹㫀㫅㪸 㫊㪸㫐㫀 㫍㫀㫆㫃㪸㪺㪼㪸 㫍㫀㫆㫃㪸㪺㪼㪸 㫃㫐㫄㫄㪸
㪪㫌㪹㫆㫉㪻㪼㫉㩷㪤㫐㫃㫀㫆㪹㪸㫋㫆㫀㪻㪼㫀 㪛㪸㫊㫐㪸㫋㫀㪻㪸㪼
㪧㫃㪸㫋㫐㫉㪿㫀㫅㫆㫀㪻㫀㫊
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㪹㫆㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼 㪪㫌㪹㫆㫉㪻㪼㫉㩷㪧㫃㪸㫋㫐㫉㪿㫀㫅㫆㫀㪻㪼㫀 㪧㫃㪸㫋㫐㫉㪿㫀㫅㫀㪻㪸㪼
㪩㪸㫁㫀㪽㫆㫉㫄㪼㫊 㪩㪸㫁㫀㪽㫆㫉㫄㪼㫊
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪫㪸㪹㫃㪼㩷㪌㪅㪈㪇㩷㩷㪦㫉㪻㪼㫉㩷㪤㪰㪣㪠㪦㪙㪘㪫㪠㪝㪦㪩㪤㪜㪪
㪊㪉㩷㪤㪆㪪㪤㩷㪂㩷㪉㪋㩷㪪㪫㪆㪘 㪋㪋㩷㫅㫆㫅㪄㪘㩷㪂㩷㪈㪉㪘
㪌㪍 㪌㪍
㪏㪏 㪈㪇㪇
㪈㪇㪉
㪋
㪈㪊㪅㪎㩷㪝㪛
㪐㪅㪋㩷㪙㪝㪘
㪈㪇㪅㪈㩷㪝㪚㪤
㪐㪅㪍㩷㪝㪛
㪐㪅㪐㪁㩷㪝㪚㪤
㪐㪅㪊㩷㪝㪚㪤㪃㩷㪈㪈㪅㪈㩷㪝㪛
㪏㪅㪇㪃㩷㪏㪅㪋㪁㩷㪝㪚㪤㪃㩷㪏㪅㪊㩷㪝㪛
㪈㪌㪅㪌㩷㪝㪚㪤㪃㩷㪈㪌㪅㪋㩷㪙㪝㪘
㪠 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪈㪈㪅㪋㩷㪝㪚㪤㪃㩷㪈㪍㪅㪉㩷㪙㪝㪘
㪐㪅㪍㩷㪝㪛 㪊㪏㩷㪤㪆㪪㪤㪆㪪㪫㩷㪂㩷㪉㪍㪘
㪈㪇㪋
㪟 㪘㪾㪄 㪥㪦㪩㫊
㪈㪊㪅㪋㩷㪝㪠㪘
㪍㪋
㪈㪇㪋
㪏㪎
㪐㪍
㪞 㪥㪝㪉
㪤
㪋㪍㩷㪤㪆㪪㪤㩷㪂㩷㪈㪉㪘
㪌㪏
㪈㪇㪉
㪐㪍
㪈㪇㪋
㪏㪎
㪈㪇㪍
㪝 㪥㪝㪈
㪤
㪊㪋㩷㪤㪆㪪㪤㩷㪂㩷㪊㪋㩷㪪㪫㪆㪘
㪍㪏
㪝
㪉㪏㩷㪤㪆㪪㪤㩷㪂㩷㪋㪇㩷㪪㪫㪆㪘
㪋㪇㩷㪤㪆㪪㪤㩷㪂㩷㪉㪋㩷㪪㪫㪆㪘
㪍㪏
㪍㪋
㪐㩷㪤㪆㪪㪤㩷㪂㩷㪍㪐㪘
㪊㪋㩷㪤㪆㪪㪤㩷㪂㩷㪊㪏㩷㪪㪫㪆㪘
㪊㪉㩷㫅㫆㫅㪄㪘㩷㪂㩷㪊㪉㪘
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪝㪃㩷㪤
㪤
㪍㪋
㪎㪉 㪎㪏
㪝
㪍㪋
㪛 㪉㫅
㪝
㪝㪃㩷㪤
㪚 㪪㪼㫏
㪯㪰 㪆㪯㪯
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㩿㪮㪅㩷㪘㫋㫃㪸㫅㫋㫀㪺㪀
㪡㪸㫇㪸㫅
㪙㪸㫃㫀
㪧㪸㪺㫀㪽㫀㪺
㪠㫋㪸㫃㫐
㪞㫌㫃㪽㩷㫆㪽㩷㪤㪼㫏㫀㪺㫆
㪞㫌㫃㪽㩷㫆㪽㩷㪤㪼㫏㫀㪺㫆
㪡㪸㫇㪸㫅㩷㩿㪪㪿㫀㫄㫆㫂㫀㫋㪸㪀
㩿㪠㫅㪻㫆㪄㪮㪼㫊㫋㩷㪧㪸㪺㫀㪽㫀㪺㪀
㪬㪪㪘㩷㩿㪥㪚㪀
㪡㪸㫇㪸㫅㩷㩿㪚㪿㫀㪹㪸㪀㩷
㩿㪜㪅㩷㪧㪸㪺㫀㪽㫀㪺㪀
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪪㪄㪋㪇㪃㩷㪟㪄㪊㪎
㪘㪄㪈㪇㪋
㪩㪄㪏㪎㪃㩷㪩㪄㪈㪈㪏㪃㩷㪟㪄㪋㪇
㪘㪄㪈㪇㪊
㪦㪄㪎㪋㪃㩷㪪㪄㪈㪈㪊㪃㩷㪪㪄㪈㪈㪌
㪛㪄㪈㪎㪃㩷㪟㪄㪊㪎
㪛㪄㪈㪎㪃㩷㪫㪄㪎㪊
㪘㪄㪈㪇㪊
㪦㪄㪋㪏㪃㩷㪪㪄㪈㪈㪌
㪤㪄㪈㪈㪋㪃㩷㪪㪄㪈㪈㪌㪃㩷㪪㪄㪈㪏㪌
㪘㪄㪈㪇㪇㪃㩷㪚㪄㪈㪇㪇㪃㩷㪦㪄㪋㪏
㪪㪄㪋㪇㪃㩷㪤㪄㪈㪈㪋㪃㩷㪟㪄㪊㪎
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
34
㪬㫉㫆㫃㫆㫇㪿㫌㫊 㪬㫉㫆㫃㫆㫇㪿㫌㫊
㪬㫉㫆㫃㫆㫇㪿㫀㪻㪸㪼
㪧㪸㫉㪸㫋㫉㫐㪾㫆㫅 㪧㫆㫋㪸㫄㫆㫋㫉㫐㪾㫆㫅 㪧㫆㫋㪸㫄㫆㫋㫉㫐㪾㫆㫅
㪧㫆㫋㪸㫄㫆㫋㫉㫐㪾㫆㫅㫀㪻㪸㪼
㪩㪿㫀㫅㫆㫇㫋㪼㫉㪸
㩷㩷㩷㪩㪿㫀㫅㫆㫇㫋㪼㫉㫀㫅㪸㪼
㪤㫐㫃㫀㫆㪹㪸㫋㫀㫊 㪤㫐㫃㫀㫆㪹㪸㫋㫀㫊 㪤㫐㫃㫀㫆㪹㪸㫋㫀㫊 㪤㫐㫃㫀㫆㪹㪸㫋㫀㫊
㩷㩷㩷㪤㫐㫃㫀㫆㪹㪸㫋㫀㫅㪸㪼
㪤㫆㪹㫌㫃㪸 㪤㫆㪹㫌㫃㪸
㪸㫌㫉㪸㫅㫋㫀㪸㪺㫌㫊 㪿㪸㫃㫃㪼㫉㫀
㪸㫀㪼㫉㪼㪹㪸 㫄㫆㫋㫆㫉㫆 㫆㫉㪹㫀㪾㫅㫐㫀
㪹㫆㫅㪸㫊㫌㫊
㪸㫈㫌㫀㫃㪸 㪺㪸㫃㫀㪽㫆㫉㫅㫀㪺㪸 㪽㫉㪼㫄㫀㫅㫍㫀㫃㫃㫀㫀 㫋㫆㪹㫀㫁㪼㫀
㫁㪸㫇㫆㫅㫀㪺㪸 㫁㪸㫇㫆㫅㫀㪺㪸
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㪹㫆㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼 㪤㫐㫃㫀㫆㪹㪸㫋㫀㪻㪸㪼 㩷㩷㩷㪤㫆㪹㫌㫃㫀㫅㪸㪼
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪫㪸㪹㫃㪼㩷㪌㪅㪈㪇㩷㩷㪦㫉㪻㪼㫉㩷㪤㪰㪣㪠㪦㪙㪘㪫㪠㪝㪦㪩㪤㪜㪪㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀
㪍㪍
㪌㪉 㪌㪋
㪤 㪤
㪋㪋㩷㪤㪆㪪㪤㩷㪂㩷㪏㩷㪪㪫㪆㪘 㪉㪇㩷㪤㪆㪪㪤㩷㪂㩷㪌㪉㪘
㪎㪉
㪉㪉㪤㩷㪂㩷㪈㪇㪪㪤㩷㪂㩷㪏㪪㪫㩷㪂㩷㪉㪍㪘
㪈㪏㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪉㪍㪘
㪋㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪎㪋㪘
㪋㪉㩷㫅㫆㫅㪄㪘㩷㪂㩷㪉㪉㪘
㪋㪇㩷㪤㪆㪪㪤㩷㪂㩷㪈㪋㩷㪪㪫㪆㪘
㪌㪇㩷㫅㫆㫅㪄㪘㩷㪂㩷㪉㪘
㪌㪇㩷㫅㫆㫅㪄㪘㩷㪂㩷㪉㪘
㪊㪉㩷㪤㪆㪪㪤㩷㪂㩷㪉㪇㪘
㪉㪍㪤㩷㪂㩷㪈㪈㪪㪤㩷㪂㩷㪉㪐㩷㪪㪫㪆㪘
㪉㪍㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪉㪏㩷㪪㪫㪆㪘
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪌㪉
㪍㪍
㪝
㪝
㪐㪇 㪍㪍
㪝㪃㩷㪤 㪝㪃㩷㪤
㪍㪋
㪌㪉
㪝
㪌㪉
㪍㪍
㪝
㪛 㪉㫅
㪤
㪚 㪪㪼㫏
㪐㪉
㪐㪍
㪐㪏
㪐㪍
㪐㪍
㪐㪋
㪏㪋
㪈㪇㪊
㪈㪇㪋
㪝 㪥㪝㪈
㪈㪇㪍
㪈㪇㪍
㪈㪇㪍
㪈㪇㪍
㪈㪇㪉
㪈㪇㪉
㪏㪋
㪞 㪥㪝㪉
㪏
㪎
㪊
㪟 㪘㪾㪄 㪥㪦㪩㫊
㪈㪊㪅㪇㩷㪙㪝㪘
㪈㪌㪅㪌㩷㪝㪚㪤㪃㩷㪈㪊㪅㪈㩷㪝㪛
㪈㪇㪅㪇㩷㪝㪚㪤
㪏㪅㪎㩷㪝㪛㪃㩷㪈㪇㪅㪎㩷㪝㪚㪤
㪈㪇㪅㪍㩷㪝㪚㪤㪃㩷㪐㪅㪏㩷㪙㪝㪘
㪈㪇㪅㪋㩷㪝㪚㪤㪃㩷㪐㪅㪏㩷㪙㪝㪘
㪈㪇㪅㪏㩷㪝㪛
㪐㪅㪋㩷㪝㪛
㪐㪅㪊㩷㪝㪛㪃㩷㪐㪅㪍㩷㪝㪚㪤
㪠 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪘㪚㪥㪔㪐㪉
㪘㪚㪥㪔㪐㪉
㪘㪚㪥㪔㪐㪉
㪯㪰㪖
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㩿㪜㪅㩷㪧㪸㪺㫀㪽㫀㪺㪀
㪡㪸㫇㪸㫅
㪙㫉㪸㫑㫀㫃㩷㩿㪘㪤㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪘㪤㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪘㪤㪀
㩿㪮㪅㩷㪘㫋㫃㪸㫅㫋㫀㪺㪀
㪡㪸㫇㪸㫅㩷㩿㪤㫀㫊㪸㫂㫀㪀
㪬㪪㪘㩷㩿㪥㪚㪀
㩿㪜㪅㩷㪧㪸㪺㫀㪽㫀㪺㪀
㩿㪘㫋㫃㪸㫅㫋㫀㪺㩷㫋㫆㩷㪠㫅㪻㫀㪸㫅㪀
㪡㪸㫇㪸㫅㩷㩿㪪㪸㫅㫉㫀㫂㫌㪀
㪡㪸㫇㪸㫅㩷㩿㪪㪸㫅㫉㫀㫂㫌㪀
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪪㪄㪋㪇㪃㩷㪟㪄㪊㪎
㪘㪄㪈㪇㪇㪃㩷㪚㪄㪈㪇㪇
㪭㪄㪎㪎
㪭㪄㪎㪎
㪭㪄㪎㪎
㪪㪄㪋㪇
㪘㪄㪈㪇㪇㪃㩷㪚㪄㪈㪇㪇
㪪㪄㪋㪇㪃㩷㪤㪄㪈㪈㪋㪃㩷㪟㪄㪊㪎
㪪㪄㪋㪇㪃㩷㪤㪄㪈㪈㪋㪃㩷㪟㪄㪊㪎
㪪㪄㪈㪈㪊㩷
㪘㪄㪈㪇㪋
㪘㪄㪈㪇㪋㪃㩷㪚㪄㪈㪇㪇
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
35
㻟㻢㻌㻹㻛㻿㻹 㻞㻢㻹㻌㻗㻌㻝㻜㻿㻹
㻟㻢 㻟㻢 㻟㻢 㻟㻢
㻲㻘㻌㻹 㻲 㻲㻘㻌㻹 㻲
㻟㻢 㻟㻤
㻲㻘㻌㻹
㻟㻠㻌㻹㻛㻿㻹㻌㻗㻌㻠㻭
㻞㻢㻹㻌㻗㻌㻝㻜㻿㻹
㻞㻤㻹㻌㻗㻌㻤㻿㻹
㻟㻢 㻲㻘㻌㻹
㻟㻢㻌㻹㻛㻿㻹
㻟㻢
㻲㻘㻌㻹
㻟㻞㻹㻌㻗㻌㻠㻿㻹
㻞㻢㻹㻌㻗㻌㻝㻜㻿㻹
㻟㻢
㻟㻢 㻲
㻟㻢㻌㻹㻛㻿㻹 㻞㻠㻹㻌㻗㻌㻝㻞㻿㻹
㻟㻢 㻟㻢
㻲㻘㻌㻹 㻲㻘㻌㻹
㻟㻞㻹㻌㻗㻌㻠㻿㻹 㻞㻢㻹㻌㻗㻌㻝㻜㻿㻹
㻟㻢 㻟㻢
㻟㻞㻹㻌㻗㻌㻠㻿㻹
㻟㻢㻌㻹㻛㻿㻹
㻟㻜㻹㻌㻗㻌㻢㻿㻹
㻟㻢
㻲㻘㻌㻹
㻟㻞㻹㻌㻗㻌㻠㻿㼀
㻞㻤㻹㻌㻗㻌㻢㻿㻹㻌㻗㻌㻞㻿㼀
㻱 㻌㻌㻌㻌㻌㻌㻌㻌㻌㻌㻌㻌㻷㼍㼞㼥㼛㼠㼥㼜㼑
㻟㻢
㻟㻢
㻰 㻞㼚
㻹
㻯 㻿㼑㼤
㼑㼚㼐㼘㼕㼏㼔㼑㼞㼕㻌㼏㼛㼚㼓㼕㼏㼡㼟 㻲㻘㻌㻹
㻯㼍㼘㼍㼙㼛㼕㼏㼔㼠㼔㼥㼟 㻯㼍㼘㼍㼙㼛㼕㼏㼔㼠㼔㼥㼟 㻯㼍㼘㼍㼙㼛㼕㼏㼔㼠㼔㼥㼟 㻯㼍㼘㼍㼙㼛㼕㼏㼔㼠㼔㼥㼟
㻱㼞㼜㼑㼠㼛㼕㼏㼔㼠㼔㼥㼟 㻱㼞㼜㼑㼠㼛㼕㼏㼔㼠㼔㼥㼟 㻱㼞㼜㼑㼠㼛㼕㼏㼔㼠㼔㼥㼟 㻱㼞㼜㼑㼠㼛㼕㼏㼔㼠㼔㼥㼟 㻼㼛㼘㼥㼜㼠㼑㼞㼡㼟 㻼㼛㼘㼥㼜㼠㼑㼞㼡㼟 㻼㼛㼘㼥㼜㼠㼑㼞㼡㼟 㻼㼛㼘㼥㼜㼠㼑㼞㼡㼟 㻼㼛㼘㼥㼜㼠㼑㼞㼡㼟 㻼㼛㼘㼥㼜㼠㼑㼞㼡㼟 㻼㼛㼘㼥㼜㼠㼑㼞㼡㼟 㻼㼛㼘㼥㼜㼠㼑㼞㼡㼟 㻼㼛㼘㼥㼜㼠㼑㼞㼡㼟 㻼㼛㼘㼥㼜㼠㼑㼞㼡㼟 㻼㼛㼘㼥㼜㼠㼑㼞㼡㼟 㻼㼛㼘㼥㼜㼠㼑㼞㼡㼟 㻼㼛㼘㼥㼜㼠㼑㼞㼡㼟
㼏㼍㼘㼍㼎㼍㼞㼕㼏㼡㼟 㼏㼍㼘㼍㼎㼍㼞㼕㼏㼡㼟 㼏㼍㼘㼍㼎㼍㼞㼕㼏㼡㼟 㼏㼍㼘㼍㼎㼍㼞㼕㼏㼡㼟 㼐㼑㼘㼔㼑㼦㼕 㼐㼑㼘㼔㼑㼦㼕 㼐㼑㼘㼔㼑㼦㼕 㼑㼚㼐㼘㼕㼏㼔㼑㼞㼕 㼛㼞㼚㼍㼠㼕㼜㼕㼚㼚㼕㼟 㼛㼞㼚㼍㼠㼕㼜㼕㼚㼚㼕㼟 㼜㼍㼘㼙㼍㼟 㼜㼍㼘㼙㼍㼟 㼜㼍㼘㼙㼍㼟 㼜㼍㼘㼙㼍㼟 㼟㼑㼚㼑㼓㼍㼘㼡㼟 㼟㼑㼚㼑㼓㼍㼘㼡㼟 㼣㼑㼑㼗㼟㼕㼕
㻮 㻾㼑㼜㼛㼞㼠㼑㼐㻌㼕㼚 㼗㼍㼞㼥㼛㼠㼥㼜㼑㻌㼜㼍㼜㼑㼞
㻌㻌㻌㻌㻌㻌㻌㻌㻌㻌㻌㻌㻌㻌㻌㻌㻌㻌㻌㻭 㻯㼡㼞㼞㼑㼚㼠㻌㼟㼏㼕㼑㼚㼠㼕㼒㼕㼏㻌㼚㼍㼙㼑㻌㼛㼒㻌㼠㼍㼤㼛㼚 㻲㼍㼙㼕㼘㼥㻛㼟㼜㼑㼏㼕㼑㼟㻌 㻼㼛㼘㼥㼜㼠㼑㼞㼕㼐㼍㼑
㼀㼍㼎㼘㼑㻌㻢㻚㻝㻌㻌㻻㼞㼐㼑㼞㻌㻼㻻㻸㼅㻼㼀㻱㻾㻵㻲㻻㻾㻹㻱㻿㻌㻌
㼀㼍㼎㼘㼑㻌㻢㻌㻌㻯㼘㼍㼟㼟㻌㻭㻯㼀㻵㻺㻻㻼㼀㻱㻾㼅㻳㻵㻵㻌㻔㻻㻿㼀㻱㻵㻯㻴㼀㻴㼅㻱㻿㻕
㻣㻞
㻣㻞
㻣㻞
㻣㻞
㻣㻞
㻣㻞
㻣㻞
㻣㻞
㻣㻞
㻣㻞
㻣㻞
㻣㻞
㻣㻞
㻣㻞
㻣㻞
㻢㻤
㻣㻜
㻲 㻺㻲㻝
㻣㻞
㻣㻞
㻣㻞
㻣㻞
㻣㻞
㻣㻞
㻣㻞
㻣㻞
㻣㻞
㻣㻞
㻣㻞
㻣㻞
㻣㻞
㻣㻞
㻣㻞
㻣㻞
㻣㻞
㻳 㻺㻲㻞
㻞
㻞
㻞
㻴 㻭㼓㻙 㻺㻻㻾㼟
㻥㻚㻤㻌㻲㻰
㻤㻚㻥㻌㻲㻰㻘㻌㻔㻣㻚㻠㻌㻲㻵㻭㻕
㻥㻚㻢㻌㻲㻰
㻥㻚㻣㻌㻲㻰
㻔㻥㻚㻝㻌㻲㻰㻘㻌㻥㻚㻤㻌㻮㻲㻭㻕
㻭㻯㻺㻩㻠㻢 㻔㻭㼒㼞㼕㼏㼍㻕
㻭㻯㻺㻩㻠㻢 㻺㼕㼓㼑㼞㼕㼍
㻔㻭㼒㼞㼕㼏㼍㻕
㻭㻯㻺㻩㻠㻢 㻔㻭㼒㼞㼕㼏㼍㻕
㻭㻯㻺㻩㻠㻢 㻭㼒㼞㼕㼏㼍㻌㻔㼆㼍㼕㼞㼑㻌㻾㻚㻕
㻭㻯㻺㻩㻠㻢 㻔㼃㻚㻌㻭㼒㼞㼕㼏㼍㻕
㻔㼃㻚㻌㻭㼒㼞㼕㼏㼍㻕
㻭㻯㻺㻩㻠㻢 㻔㻭㼒㼞㼕㼏㼍㻕
㻔㻭㼒㼞㼕㼏㼍㻕
㻭㻯㻺㻩㻠㻢 㻭㼒㼞㼕㼏㼍㻌㻔㼆㼍㼕㼞㼑㻌㻾㻚㻕
㻭㻯㻺㻩㻠㻢 㻭㼒㼞㼕㼏㼍㻌㻔㼆㼍㼕㼞㼑㻌㻾㻚㻕
㻭㻯㻺㻩㻠㻢 㼆㼍㼕㼞㼑
㻔㻭㼒㼞㼕㼏㼍㻕
㻭㻯㻺㻩㻠㻢 㻯㼍㼙㼑㼞㼛㼛㼚
㻔㻭㼒㼞㼕㼏㼍㻕
㻭㻯㻺㻩㻠㻢 㻔㻭㼒㼞㼕㼏㼍㻕
㻔㻭㼒㼞㼕㼏㼍㻕
㻵 㻶 㻷 㻳㼑㼚㼛㼙㼑㻌㼟㼕㼦㼑㻌 㻯㼛㼙㼙㼑㼚㼠㼟㻌㻌㻌㻌㻌㻌㻌㻸㼛㼏㼍㼘㼕㼠㼥 㻔㼜㼓㻛㼏㼑㼘㼘㻕
㼂㻙㻟㻣
㻹㻙㻝㻞㻣㻘㻌㼁㻙㻡㻞
㻿㻙㻝㻟㻝㻘㻌㻿㻙㻝㻟㻞
㼂㻙㻟㻣㻘㻌㻴㻙㻠㻝
㻯㻙㻥㻞
㼁㻙㻡㻞
㻰㻙㻤
㼂㻙㻟㻣
㼁㻙㻡㻞
㻯㻙㻥㻞
㻯㻙㻥㻞
㼂㻙㻟㻣
㼁㻙㻡㻞
㼂㻙㻟㻣㻘㻌㻳㻙㻤㻡㻘㻌㻴㻙㻟㻣
㻰㻙㻤
㻯㻙㻝㻟
㻿㻙㻝㻟㻝㻘㻌㻿㻙㻝㻟㻞
㻸 㻾㼑㼒㼑㼞㼑㼚㼏㼑
36
㪧㫆㫃㫐㫆㪻㫆㫅 㪧㫆㫃㫐㫆㪻㫆㫅
㪧㫆㫃㫐㫆㪻㫆㫅㫋㫀㪻㪸㪼
㪘㪺㫀㫇㪼㫅㫊㪼㫉 㪘㪺㫀㫇㪼㫅㫊㪼㫉 㪘㪺㫀㫇㪼㫅㫊㪼㫉 㪘㪺㫀㫇㪼㫅㫊㪼㫉 㪘㪺㫀㫇㪼㫅㫊㪼㫉 㪘㪺㫀㫇㪼㫅㫊㪼㫉 㪘㪺㫀㫇㪼㫅㫊㪼㫉 㪘㪺㫀㫇㪼㫅㫊㪼㫉 㪘㪺㫀㫇㪼㫅㫊㪼㫉 㪘㪺㫀㫇㪼㫅㫊㪼㫉 㪘㪺㫀㫇㪼㫅㫊㪼㫉 㪘㪺㫀㫇㪼㫅㫊㪼㫉 㪘㪺㫀㫇㪼㫅㫊㪼㫉 㪘㪺㫀㫇㪼㫅㫊㪼㫉 㪘㪺㫀㫇㪼㫅㫊㪼㫉 㪘㪺㫀㫇㪼㫅㫊㪼㫉 㪘㪺㫀㫇㪼㫅㫊㪼㫉 㪘㪺㫀㫇㪼㫅㫊㪼㫉 㪘㪺㫀㫇㪼㫅㫊㪼㫉 㪘㪺㫀㫇㪼㫅㫊㪼㫉 㪟㫌㫊㫆㩷 㪟㫌㫊㫆㩷 㪟㫌㫊㫆㩷 㪧㫊㪼㫌㪻㫆㫊㪺㪸㫇㪿㫀㫉㪿㫐㫅㪺㪿㫌㫊 㪪㪺㪸㫇㪿㫀㫉㪿㫐㫅㪺㪿㫌㫊 㪪㪺㪸㫇㪿㫀㫉㪿㫐㫅㪺㪿㫌㫊
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪚 㪪㪼㫏
㫊㫇㪸㫋㪿㫌㫃㪸 㫊㫇㪸㫋㪿㫌㫃㪸 㪤
㪹㪸㪼㫉㫀 㪹㫉㪼㫍㫀㫉㫆㫊㫋㫉㫌㫄 㪹㫉㪼㫍㫀㫉㫆㫊㫋㫉㫌㫄 㪽㫌㫃㫍㪼㫊㪺㪼㫅㫊 㪝 㪾㫌㪼㫃㪻㪼㫅㫊㫋㪸㪼㪻㫋㫀㫀 㫄㪼㪻㫀㫉㫆㫊㫋㫉㫀㫊 㫄㫀㫂㪸㪻㫆㫀 㫄㪼㪻㫀㫉㫆㫊㫋㫉㫀㫊 㫅㪸㪺㪺㪸㫉㫀㫀 㫅㫌㪻㫀㫍㪼㫅㫋㫉㫀㫊 㫆㫏㫐㫉㫀㫅㪺㪿㫌㫊 㫆㫏㫐㫉㫀㫅㪺㪿㫌㫊 㫆㫏㫐㫉㪿㫐㫅㪺㪿㫌㫊㩷㪻㪼㫊㫆㫋㫆㫀 㫇㪼㫉㫊㫀㪺㫌㫊 㫉㫌㫋㪿㪼㫅㫌㫊 㫉㫌㫋㪿㪼㫅㫌㫊 㫊㪺㪿㫉㪼㫅㪺㫂㫀㫀 㫊㫀㫅㪼㫅㫊㫀㫊 㫊㫀㫅㪼㫅㫊㫀㫊 㪝㪃㩷㪤 㫊㫋㪼㫃㫃㪸㫋㫌㫊 㫊㫋㫌㫉㫀㫆 㫋㫉㪸㫅㫊㫄㫆㫅㫋㪸㫅㫌㫊 㪤 㪻㪸㫌㫉㫀㪺㫌㫊 㪿㫌㫊㫆 㪿㫌㫊㫆 㫂㪸㫌㪽㫄㪸㫅㫅㫀 㫇㫃㪸㫋㫆㫉㫐㫅㪺㪿㫌㫊 㫇㫃㪸㫋㫆㫉㪿㫐㫅㪺㪿㫌㫊 㪤 㫇㫃㪸㫋㫆㫉㫐㫅㪺㪿㫌㫊
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪝㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷 㪘㪺㫀㫇㪼㫅㫊㪼㫉㫀㪻㪸㪼
㪫㪸㪹㫃㪼㩷㪍㪅㪉㩷㩷㪦㫉㪻㪼㫉㩷㪘㪚㪠㪧㪜㪥㪪㪜㪩㪠㪝㪦㪩㪤㪜㪪
㪌㪏㪤㩷㪂㩷㪋㪘㩷㪂㩷㪌㪍㩷㪤㪚
㪈㪈㪏
㪎㪍㪤㩷㪂㩷㪏㪇㪪㪤㩷㪂㩷㪉㪇㩷㪪㪫㪆㪘㩷㪂㩷㪍㪋㩷㪤㪚 㪎㪇㩷㪤㪆㪪㪤㩷㪂㩷㪋㪏㩷㪘㪆㪤㪚
㪉㪋㪇 㪈㪈㪏
㪊㪐㪍
㪈㪉㪇
㪊㪉㪤㩷㪂㩷㪏㪪㪤㩷㪂㩷㪏㪘㩷㪂㩷㪎㪉㩷㪤㪚
㪌㪇㩷㪤㪆㪪㪤㩷㪂㩷㪈㪋㪘㩷㪂㩷㪋㪏㩷㪤㪚
㪈㪍㪇
㪈㪍㪉
㪋
㪋㪅㪐㩷㪝㪚㪤
㪊㪅㪉㪃㩷㪊㪅㪐㩷㪝㪚㪤
㪋㪅㪎㩷㪝㪚㪤
㪊㪅㪌㩷㪝㪛
㪊㪅㪌㩷㪝㪚㪤
㪊㪅㪍㩷㪝㪛
㪈㪈㪉
㪋
㪏㪋㩷㪤㪆㪪㪤㩷㪂㩷㪊㪋㩷㪘㪆㪤㪚
㪈㪈㪏
㪉㪇㪉
㪉㪅㪋㩷㪝㪚㪤
㪉㪄㪊
㪍㪇㩷㪤㪆㪪㪤㩷㪂㩷㪌㪏㩷㪘㪆㪤㪚
㪐㪅㪌㩷㪝㪚㪤
㪊㪅㪉㩷㪝㪛
㪊㪅㪎㪃㩷㪋㪅㪎㩷㪝㪚㪤
㪐㪅㪈㩷㪝㪛
㪍㪅㪈㩷㪝㪛
㪊㪅㪎㩷㪝㪚㪤
㪋㪅㪍㩷㪝㪚㪤
㩿㪋㪅㪋㩷㪝㪠㪘㪀
㪈㪈㪏
㪏
㪉㪄㪊
㪉㪄㪊
㪍㪅㪊㩷㪝㪛 㪊㪅㪐㩷㪝㪚㪤
㪊㪅㪏㩷㪝㪚㪤 㪈㪎㪏
㪺㪸㪅㩷㪈㪏㪍
㪈㪏㪏
㪊㪐㪍
㪊㪍㪉
㪈㪎㪍
㪉㪇㪇
㪏
㪉㪯
㪉㪯
㪉㪯
㪉㪯
㪉㪯
㪋㪯
㪉㪯
㪉㪯
㪋㪯
㪋㪯
㪋㪯
㪉㪯
㪉㪯
㪋㪯
㪉㪯
㪉㪯
㪋㪯
㪋㪯 㪍㪯
㪏㪅㪏㩷㪝㪚㪤
㪋㪯
㪋㪯
㪍㪯
㪋㪯
㪈㪋㪅㪊㩷㪝㪚㪤
㪎㪅㪐㩷㪝㪚㪤
㪏㪅㪐㩷㪝㪚㪤
㪈㪏㪅㪍㩷㪝㪠㪘
㪈㪊㪅㪈㩷㪝㪚㪤㪃㩷㪈㪊㪅㪏㩷㪝㪠㪘
㪏㪅㪊㩷㪝㪚㪤
㪝㪄㪌㪏㪃㩷㪝㪄㪍㪈㪃㩷㪝㪄㪎㪇
㪙㪄㪍㪏㪃㩷㪣㪄㪎㪏
㪙㪄㪍㪐㪃㩷㪭㪄㪈㪈㪇
㪙㪄㪊㪎㪃㩷㪙㪄㪍㪏㪃㩷㪭㪄㪎㪉
㪙㪄㪍㪐㪃㩷㪝㪄㪍㪉
㪟㪄㪋㪈
㪢㪄㪌㪋㪃㩷㪙㪄㪍㪐㪃㩷㪟㪄㪋㪈
㪭㪄㪐㪃㩷㪭㪄㪈㪇㪃㩷㪙㪄㪍㪏㪃㩷㪝㪄㪎㪇
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
㪝㪄㪍㪊㪃㩷㪟㪄㪋㪈
㪙㪄㪍㪏
㪝㪄㪊㪉㪃㩷㪝㪄㪍㪈
㪙㪄㪊㪎㪃㩷㪙㪄㪍㪏㪃㩷㪭㪄㪎㪉
㪙㪄㪍㪏
㪙㪄㪍㪐㪃㩷㪝㪄㪍㪈㪃㩷㪝㪄㪎㪇㪃㩷㪭㪄㪈㪈㪇
㪝㪄㪌㪏㪃㩷㪤㪄㪈㪊㪊
㪭㪄㪎㪉㪃㩷㪙㪄㪊㪎㪃㩷㪙㪄㪍㪏㪃㩷㪣㪄㪎㪏
㪯㪄㪉
㪰㪄㪈㪌
㪝㪄㪍㪈
㪩㪄㪈㪇
㪭㪄㪎㪉㪃㩷㪙㪄㪊㪎㪃㩷㪙㪄㪍㪏
㪥㪄㪊㪏
㪙㪄㪍㪐
㪥㪅㩷㪘㫄㪼㫉㫀㪺㪸
㪬㪪㪘㩷㩿㪘㪣㪀
㪥㪅㩷㪘㫄㪼㫉㫀㪺㪸
㪙㪄㪍㪐
㪛㪄㪈㪋㪃㩷㪙㪄㪍㪏㪃㩷㪫㪄㪎㪊
㪙㪄㪍㪐
㪬㪪㪘㩷㩿㪞㫉㪼㪸㫋㩷㪣㪸㫂㪼㫊㪀 㪦㪄㪎
㪘㫄㫌㩷㪛㪸㫉㫐㪸㩷㪩㪅
㩿㪜㪅㩷㪜㫌㫉㫆㫇㪼㪀
㪩㫌㫊㫊㫀㪸㩷㩿㪭㫆㫃㪾㪸㩷㪩㪅㪀
㪘㫄㫌㫉㩷㪩㪅
㪥㪅㩷㪘㫄㪼㫉㫀㪺㪸
㩿㪘㫋㫃㪸㫅㫋㫀㪺㪀
㪚㪸㫊㫇㫀㪸㫅㩷㪪㪼㪸
㪚㪿㫀㫅㪸㩷㩿㪟㫌㪹㪼㫀㪀
㪚㪿㫀㫅㪸㩷㩿㪟㫌㪹㪼㫀㪀
㪘㫄㫌㫉㩷㪩㪅
㪛㪸㫅㫌㪹㪼㩷㪩㪅
㪩㫌㫊㫊㫀㪸㩷㩿㪭㫆㫃㪾㪸㩷㪩㪅㪀
㪠㫉㪸㫅
㪥㪅㩷㪘㫄㪼㫉㫀㪺㪸
㩿㪘㫋㫃㪸㫅㫋㫀㪺㪀
㪩㫌㫊㫊㫀㪸㩷㩿㪙㫃㪸㪺㫂㩷㪪㪼㪸㪀 㪘㪄㪏㪏㪃㩷㪙㪄㪍㪏
㪠㫋㪸㫃㫐
㪝㪸㫉㩷㪜㪸㫊㫋
㪥㪅㩷㪘㫄㪼㫉㫀㪺㪸
㪩㫌㫊㫊㫀㪸㩷㩿㪭㫆㫃㪾㪸㩷㪩㪅㪀
㪬㪪㪘㩷㩿㪮㪠㪀
㪥㪅㩷㪘㫄㪼㫉㫀㪺㪸
㪬㪪㪘㩷㩿㪝㪣㪀
㪩㫌㫊㫊㫀㪸㩷㩿㪪㫀㪹㪼㫉㫀㪸㪀
㪠 㪡 㪢 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㪚㫆㫄㫄㪼㫅㫋㫊㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪈㪉㪇
㪺㪸㪅㩷㪉㪋㪏
㪺㪸㪅㩷㪈㪈㪍
㪎㪏㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪉㪍㩷㪪㪫㪆㪘㩷㪂㩷㪈㪋㪇㩷㪤㪚
㪉㪍㪋
㪉㪋㪇
㪈㪊㪋㩷㪤㪆㪪㪤㩷㪂㩷㪈㪉㪏㩷㪘㪆㪤㪚 㪏㪉㩷㪤㪆㪪㪤㩷㪂㩷㪊㪍㩷㪘㪆㪤㪚
㪉㪍㪉
㪎㪏㩷㪤㪆㪪㪤㩷㪂㩷㪋㪋㩷㪘㪆㪤㪚
㪈㪉㪉
㪈㪈㪏
㪈㪎㪉 㪉㪇㪇
㪊㪐㪇 㪌㪋㪤㩷㪂㩷㪌㪘㩷㪂㩷㪌㪐㩷㪘㪆㪤㪚
㪈㪈 㪏
㪊㪋㪉
㪺㪸㪅㩷㪉㪊㪐
㪉㪋㪐
㪐㪉㩷㪤㪆㪪㪤㩷㪂㩷㪈㪌㪏㩷㪘㪆㪤㪚
㪉㪌㪇
㪍㪄㪏
㪈㪊㪋㩷㪤㪆㪪㪤㩷㪂㩷㪎㪇㩷㪪㪫㪆㪘㩷㪂㩷㪍㪇㩷㪤㪚㩷
㪉㪍㪋
㪊㪐㪏
㪈㪇
㪟 㪘㪾㪄 㪥㪦㪩㫊
㪈㪎㪏㩷㪤㪆㪪㪤㩷㪂㩷㪈㪐㪋㩷㪪㪫㪆㪘
㪞 㪥㪝㪉
㪊㪎㪉
㪌㪌㪇
㪝 㪥㪝㪈
㪏
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪺㪸㪅㩷㪉㪋㪏
㪛 㪉㫅
37
㫆㫊㫊㪼㫌㫊 㫆㫊㫊㪼㫌㫊 㫆㪺㫌㫃㪸㫋㫌㫊
㪺㪸㫃㫍㪸 㪺㪸㫃㫍㪸
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪟㫀㫆㪻㫆㫅 㪟㫀㫆㪻㫆㫅
㪸㫃㫆㫊㫆㫀㪻㪼㫊 㫋㪼㫉㪾㫀㫊㫌㫊
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪝㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷 㪟㫀㫆㪻㫆㫅㫋㫀㪻㪸㪼
㫇㫉㫆㪻㫌㪺㫋㫌㫊
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪦㫊㫋㪼㫆㪾㫃㫆㫊㫊㫀㪽㫆㫉㫄㪼㫊 㪦㫊㫋㪼㫆㪾㫃㫆㫊㫊㫀㪽㫆㫉㫄㪼㫊
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪫㪸㪹㫃㪼㩷㪍㪅㪌㩷㩷㪦㫉㪻㪼㫉㩷㪟㪠㪦㪛㪦㪥㪫㪠㪝㪦㪩㪤㪜㪪
㪘㫄㫀㪸 㪘㫄㫀㪸
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪝㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷 㪘㫄㫀㫀㪻㪸㪼
㪫㪸㪹㫃㪼㩷㪍㪅㪋㩷㩷㪦㫉㪻㪼㫉㩷㪘㪤㪠㪠㪝㪦㪩㪤㪜㪪
㪣㪼㫇㫀㫊㫆㫊㫋㪼㫌㫊 㪣㪼㫇㫀㫊㫆㫊㫋㪼㫌㫊 㪣㪼㫇㫀㫊㫆㫊㫋㪼㫌㫊
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪝㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷 㪣㪼㫇㫀㫊㫆㫊㫋㪼㫀㪻㪸㪼
㪫㪸㪹㫃㪼㩷㪍㪅㪊㩷㩷㪦㫉㪻㪼㫉㩷㪣㪜㪧㪠㪪㪦㪪㪫㪜㪠㪝㪦㪩㪤㪜㪪
㪋㪇㩷㪤㪆㪪㪤㩷㪂㩷㪈㪇㪪㪫 㪋㪉㩷㪤㪆㪪㪤㩷㪂㩷㪏㩷㪪㪫㪆㪘
㪌㪇
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪉㪤㩷㪂㩷㪉㪋㩷㪪㪤㪆㪪㪫㩷㪂㩷㪉㪇㪘
㪉㪇㩷㪤㪆㪪㪤㩷㪂㩷㪉㪍㩷㪪㪫㪆㪘
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪌㪇
㪛 㪉㫅
㪋㪍
㪚 㪪㪼㫏
㪋㪍
㪝
㪛 㪉㫅
㪉㪏㩷㪤㪆㪪㪤㩷㪂㩷㪈㪋㪘㩷㪂㩷㪉㪍㩷㪤㪚
㪈㪉㪤㩷㪂㩷㪉㪉㪪㪤㩷㪂㩷㪉㪉㩷㪪㪫㪆㪘
㪍㪏
㪉㪉㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪈㪍㩷㪤㪚
㪌㪍
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪌㪍
㪛 㪉㫅
㪝
㪚 㪪㪼㫏
㪝
㪝㪃㩷㪤
㪚 㪪㪼㫏
㪐㪉
㪐㪇
㪝 㪥㪝㪈
㪍㪍
㪝 㪥㪝㪈
㪐㪍
㪐㪇
㪐㪇
㪝 㪥㪝㪈
㪉
㪈㪇㪇
㪞 㪟 㪥㪝㪉 㪘㪾㪄 㪥㪦㪩㫊
㪎㪉
㪞 㪟 㪥㪝㪉 㪘㪾㪄 㪥㪦㪩㫊
㪋
㪉
㪞 㪟 㪥㪝㪉 㪘㪾㪄 㪥㪦㪩㫊
㪈㪅㪉㩷㪝㪛
㪈㪅㪉㩷㪝㪛
㪠 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪉㪅㪇㩷㪝㪛
㪉㪅㪍㩷㪝㪛㪃㩷㪉㪅㪊㩷㪝㪠㪘
㪠 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪉㪅㪏㪁㩷㪝㪚㪤㪃㩷㪉㪅㪐㩷㪝㪛㪃㩷㪉㪅㪏㩷㪝㪠㪘
㪠 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪘㪚㪥㪔㪌㪍
㪘㪚㪥㪔㪌㪍㪖
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪘㪚㪥㪔㪌㪍
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪚㪸㫅㪸㪻㪸㩷㩿㪤㪸㫅㫀㫋㫆㪹㪸㪀
㪬㪪㪘㪃㩷㪚㪸㫅㪸㪻㪸
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㩿㪬㪪㪘㪀
㪬㪪㪘㩷㩿㪞㫉㪼㪸㫋㩷㪣㪸㫂㪼㫊㪀
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪬㪪㪘㩷㩿㪞㫉㪼㪸㫋㩷㪣㪸㫂㪼㫊㪀
㩿㪥㪅㩷㪘㫄㪼㫉㫀㪺㪸㪀
㪬㪪㪘㩷㩿㪤㫀㫊㫊㫀㫊㫊㫀㫇㫇㫀㩷㪩㪅㪀
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪙㪄㪈㪋
㪬㪄㪍㪏㪃㩷㪙㪄㪈㪋
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
㪪㪄㪈㪊㪌
㪦㪄㪎㪃㩷㪟㪄㪋㪇
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
㪦㪄㪎㪃㩷㪦㪄㪋㪏㪃㩷㪟㪄㪋㪇
㪦㪄㪊㪉
㪩 㪄㪈㪉㪇
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
38
㼜㼑㼠㼑㼞㼟㼕㼕 㼎㼞㼍㼏㼔㼕㼟㼠㼕㼡㼟
㼏㼔㼕㼠㼍㼘㼍 㼚㼛㼠㼛㼜㼠㼑㼞㼡㼟 㼍㼒㼑㼞 㼚㼕㼓㼞㼕
㻳㼚㼍㼠㼔㼛㼚㼑㼙㼍 㻹㼍㼞㼏㼡㼟㼑㼚㼕㼡㼟
㻯㼔㼕㼠㼍㼘㼍 㻺㼛㼠㼛㼜㼠㼑㼞㼡㼟 㻼㼍㼜㼥㼞㼛㼏㼞㼍㼚㼡㼟 㼄㼑㼚㼛㼙㼥㼟㼠㼡㼟
㻺㼛㼠㼛㼜㼠㼑㼞㼕㼐㼍㼑
㻹㼛㼞㼙㼥㼞㼕㼐㼍㼑
㼎㼡㼏㼔㼔㼛㼘㼦㼕
㼓㼕㼓㼍㼟 㼓㼕㼓㼍㼟 㼚㼕㼘㼛㼠㼕㼏㼡㼟 㼎㼕㼏㼕㼞㼞㼔㼛㼟㼡㼙 㼎㼕㼏㼕㼞㼞㼔㼛㼟㼡㼙 㼒㼑㼞㼞㼑㼕㼞㼍㼕 㼒㼛㼞㼙㼛㼟㼡㼟 㼖㼍㼞㼐㼕㼚㼕 㼘㼑㼕㼏㼔㼍㼞㼐㼠㼕
㻼㼍㼚㼠㼛㼐㼛㼚
㻼㼍㼚㼠㼛㼐㼛㼚㼠㼕㼐㼍㼑
㻭㼞㼍㼜㼍㼕㼙㼍 㻭㼞㼍㼜㼍㼕㼙㼍 㻴㼑㼠㼑㼞㼛㼠㼕㼟 㻻㼟㼠㼑㼛㼓㼘㼛㼟㼟㼡㼙 㻻㼟㼠㼑㼛㼓㼘㼛㼟㼟㼡㼙 㻻㼟㼠㼑㼛㼓㼘㼛㼟㼟㼡㼙 㻿㼏㼘㼑㼞㼛㼜㼍㼓㼑㼟 㻿㼏㼘㼑㼞㼛㼜㼍㼓㼑㼟 㻿㼏㼘㼑㼞㼛㼜㼍㼓㼑㼟
㻌㻌㻌㻌㻌㻌㻌㻌㻌㻌㻌㻌㻌㻌㻌㻌㻌㻌㻌㻭 㻯㼡㼞㼞㼑㼚㼠㻌㼟㼏㼕㼑㼚㼠㼕㼒㼕㼏㻌㼚㼍㼙㼑㻌㼛㼒㻌㼠㼍㼤㼛㼚 㻲㼍㼙㼕㼘㼥㻛㼟㼜㼑㼏㼕㼑㼟㻌 㻻㼟㼠㼑㼛㼓㼘㼛㼟㼟㼕㼐㼍㼑
㻺㼛㼠㼛㼜㼠㼑㼞㼡㼟
㼎㼡㼏㼔㼛㼘㼦㼕
㻮 㻾㼑㼜㼛㼞㼠㼑㼐㻌㼕㼚 㼗㼍㼞㼥㼛㼠㼥㼜㼑㻌㼜㼍㼜㼑㼞
㼀㼍㼎㼘㼑㻌㻢㻚㻢㻌㻌㻻㼞㼐㼑㼞㻌㻻㻿㼀㻱㻻㻳㻸㻻㻿㻿㻵㻲㻻㻾㻹㻱㻿
㻲㻘㻌㻹
㻲
㻲㻘㻌㻹
㻯 㻿㼑㼤
㻠㻌㻹㻛㻿㻹㻌㻗㻌㻝㻜㻿㼀㻌㻗㻌㻟㻢㻭 㻝㻢㻹㻌㻗㻌㻢㻿㻹㻌㻗㻌㻞㻢㻭 㻝㻢㻹㻌㻗㻌㻤㻿㻹㻌㻗㻌㻢㻿㼀㻌㻗㻌㻝㻠㻭
㻡㻜 㻠㻤 㻠㻠
㻠㻞㻭 㻠㻿㻹㻌㻗㻌㻟㻜㻭 㻠㻞㻭
㻠㻞 㻟㻠 㻠㻞
㻠㻞㻭
㻝㻹㻌㻗㻌㻠㻿㻹㻌㻗㻌㻞㻿㼀㻌㻗㻌㻠㻝㻭
㻠㻤
㻠㻞
㻝㻜㻹㻌㻗㻌㻢㻿㻹㻌㻗㻌㻟㻞㻭
㻠㻤
㻝㻞㻹㻌㻗㻌㻝㻞㻌㻿㻹㻛㻿㼀㻌㻗㻌㻞㻠㻭
㻞㻹㻌㻗㻌㻠㻿㻹㻌㻗㻌㻝㻠㻿㼀㻌㻗㻌㻟㻠㻭
㻡㻠
㻠㻤
㻝㻿㻹㻌㻗㻌㻝㻿㼀㻌㻗㻌㻡㻠㻭 㻟㻿㼀㻌㻗㻌㻡㻟㻭
㻡㻢
㻞㻢㻹㻌㻗㻌㻝㻜㻿㻹㻌㻗㻌㻞㻿㼀㻌㻗㻌㻞㻭
㻠㻜 㻡㻢
㻞㻤㻌㻹㻛㻿㻹㻌㻗㻌㻞㻤㻌㻿㼀㻛㻭
㻠㻹㻌㻗㻌㻝㻞㻌㻿㻹㻛㻿㼀㻌㻗㻌㻠㻜㻭
㻱 㻌㻌㻌㻌㻌㻌㻌㻌㻌㻌㻌㻌㻷㼍㼞㼥㼛㼠㼥㼜㼑
㻡㻢
㻡㻢
㻰 㻞㼚
㻠㻞
㻟㻤
㻠㻞
㻠㻞
㻡㻟
㻢㻠
㻢㻤
㻣㻜
㻡㻠
㻢㻜
㻡㻢
㻡㻣
㻣㻢
㻤㻠
㻲 㻺㻲㻝
㻠㻞
㻟㻤
㻠㻞
㻠㻞
㻡㻡
㻢㻠
㻣㻞
㻣㻠
㻣㻜
㻢㻠
㻣㻠
㻡㻥
㻡㻤
㻣㻤
㻣㻞
㻞
㻞
㻞
㻞
㻞
㻞
㻳 㻴 㻺㻲㻞 㻭㼓㻙 㻺㻻㻾㼟
㻞㻚㻢㻌㻮㻲㻭
㻞㻚㻝㻖㻌㻲㻯㻹
㻞㻚㻠㻌㻮㻲㻭
㻝㻚㻡㻌㻮㻲㻭
㻞㻚㻜㻌㻲㻰
㻞㻚㻜㻌㻲㻰
㻝㻚㻥㻌㻲㻰
㻝㻚㻤㻌㻲㻵㻭㻘㻌㻞㻚㻜㻌㻮㻲㻭
㻞㻚㻜㻌㻲㻰
㻔㻝㻚㻢㻌㻲㻵㻭㻘㻌㻞㻚㻜㻌㻮㻲㻭㻕
㻵 㻳㼑㼚㼛㼙㼑㻌㼟㼕㼦㼑㻌 㻔㼜㼓㻛㼏㼑㼘㼘㻕
㻭㻯㻺㻩㻡㻜
㻭㻯㻺㻩㻠㻢
㻭㻯㻺㻩㻡㻜
㻭㻯㻺㻩㻡㻢
㻭㻯㻺㻩㻡㻢㻫
㻭㻯㻺㻩㻡㻢
㻭㻯㻺㻩㻡㻢
㻭㻯㻺㻩㻡㻢
㻭㻯㻺㻩㻡㻢
㻭㻯㻺㻩㻡㻢
㻭㻯㻺㻩㻡㻢
㻭㻯㻺㻩㻡㻢
㻭㻯㻺㻩㻡㻢
㻭㻯㻺㻩㻡㻢
㻶 㻯㼛㼙㼙㼑㼚㼠㼟
㻭㼒㼞㼕㼏㼍
㻭㼒㼞㼕㼏㼍
㻵㼚㼐㼕㼍㻌㻔㻴㼍㼞㼥㼍㼚㼍㻘㻌㼃㻮㻕
㻔㻭㼟㼕㼍㻕
㻭㼒㼞㼕㼏㼍
㻭㼒㼞㼕㼏㼍
㻔㼃㻚㻌㻭㼒㼞㼕㼏㼍㻕
㻔㻺㻚㻌㻭㼡㼟㼠㼞㼍㼘㼕㼍㻕
㻔㻺㼑㼣㻌㻳㼡㼕㼚㼑㼍㻕
㻔㻿㻱㻌㻭㼟㼕㼍㻕
㻔㻿㻚㻌㻭㼙㼑㼞㼕㼏㼍㻕
㻔㻿㻚㻌㻭㼙㼑㼞㼕㼏㼍㻕
㻔㻿㻚㻌㻭㼙㼑㼞㼕㼏㼍㻕
㻔㼃㻚㻌㻭㼒㼞㼕㼏㼍㻕
㻮㼞㼍㼦㼕㼘㻌㻔㻹㼀㻕
㻔㻿㻚㻌㻭㼙㼑㼞㼕㼏㼍㻕
㻷 㻌㻌㻌㻌㻌㻌㻌㻸㼛㼏㼍㼘㼕㼠㼥
㼁㻙㻢㻤㻘㻌㻴㻙㻝㻟
㼁㻙㻢㻤
㻾㻙㻢㻜㻘㻌㻾㻙㻣㻞㻘㻌㻷㻙㻠㻞
㼁㻙㻢㻤㻘㻌㼀㻙㻞㻞㻘㻌㻻㻙㻠㻤
㼁㻙㻢㻤
㼁㻙㻢㻤㻘㻌㻴㻙㻝㻟
㼁㻙㻢㻤㻘㻌㻴㻙㻝㻟
㻴㻙㻝㻠
㻴㻙㻝㻠
㼁㻙㻡㻝㻘㻌㻴㻙㻝㻠
㻿㻙㻝㻞㻡
㻿㻙㻝㻞㻡
㼁㻙㻢㻤㻘㻌㻴㻙㻝㻟㻘㻌㻴㻙㻠㻜
㻴㻙㻝㻠
㻹㻙㻝㻠㻣
㼁㻙㻡㻝㻘㻌㻴㻙㻝㻟㻘㻌㻴㻙㻠㻜
㻸 㻾㼑㼒㼑㼞㼑㼚㼏㼑
39
㪸㫋㫃㪸㫅㫋㫀㪺㫌㫊 㪺㫐㫇㫉㫀㫅㫆㫀㪻㪼㫊 㪺㫐㫇㫉㫀㫅㫆㫀㪻㪼㫊
㫊㪸㫌㫉㫌㫊
㪘㫅㪾㫌㫀㫃㫃㪸 㪘㫅㪾㫌㫀㫃㫃㪸 㪘㫅㪾㫌㫀㫃㫃㪸 㪘㫅㪾㫌㫀㫃㫃㪸 㪘㫅㪾㫌㫀㫃㫃㪸 㪘㫅㪾㫌㫀㫃㫃㪸 㪘㫅㪾㫌㫀㫃㫃㪸 㪘㫅㪾㫌㫀㫃㫃㪸 㪘㫅㪾㫌㫀㫃㫃㪸 㪘㫅㪾㫌㫀㫃㫃㪸 㪘㫅㪾㫌㫀㫃㫃㪸 㪘㫅㪾㫌㫀㫃㫃㪸 㪘㫅㪾㫌㫀㫃㫃㪸 㪘㫅㪾㫌㫀㫃㫃㪸 㪘㫅㪾㫌㫀㫃㫃㪸 㪘㫅㪾㫌㫀㫃㫃㪸 㪘㫅㪾㫌㫀㫃㫃㪸 㪘㫅㪾㫌㫀㫃㫃㪸 㪘㫅㪾㫌㫀㫃㫃㪸
㪸㫅㪾㫌㫀㫃㫃㪸 㪸㫅㪾㫌㫀㫃㫃㪸 㪸㫅㪾㫌㫀㫃㫃㪸 㪸㫅㪾㫌㫀㫃㫃㪸 㪸㫅㪾㫌㫀㫃㫃㪸 㪸㫅㪾㫌㫀㫃㫃㪸 㪸㫅㪾㫌㫀㫃㫃㪸 㪸㫌㫊㫋㫉㪸㫃㫀㫊 㪸㫌㫊㫋㫉㪸㫃㫀㫊 㫁㪸㫇㫆㫅㫀㪺㪸 㫁㪸㫇㫆㫅㫀㪺㪸 㫁㪸㫇㫆㫅㫀㪺㪸 㫁㪸㫇㫆㫅㫀㪺㪸 㫄㪸㫉㫄㫆㫉㪸㫋㪸 㫉㫆㫊㫋㫉㪸㫋㪸 㫉㫆㫊㫋㫉㪸㫋㪸 㫉㫆㫊㫋㫉㪸㫋㪸 㫉㫆㫊㫋㫉㪸㫋㪸 㫉㫆㫊㫋㫉㪸㫋㪸
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㪹㫆㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷 㪪㫌㪹㫆㫉㪻㪼㫉㩷㪘㫅㪾㫌㫀㫃㫃㫆㫀㪻㪼㫀 㪘㫅㪾㫌㫀㫃㫃㫀㪻㪸㪼
㪫㪸㪹㫃㪼㩷㪍㪅㪏㩷㩷㪦㫉㪻㪼㫉㩷㪘㪥㪞㪬㪠㪣㪣㪠㪝㪦㪩㪤㪜㪪
㪤㪼㪾㪸㫃㫆㫇㫊 㪤㪼㪾㪸㫃㫆㫇㫊 㪤㪼㪾㪸㫃㫆㫇㫊
㪤㪼㪾㪸㫃㫆㫇㫀㪻㪸㪼
㪜㫃㫆㫇㫊
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪝㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷 㪜㫃㫆㫇㫀㪻㪸㪼
㪫㪸㪹㫃㪼㩷㪍㪅㪎㩷㩷㪦㫉㪻㪼㫉㩷㪜㪣㪦㪧㪠㪝㪦㪩㪤㪜㪪㩷
㪫㫐㫇㪼㩷㪠 㪫㫐㫇㪼㩷㪠㪠
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪺㫌㫅㪻㫀㫅㪾㪸
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪈㪉㪤㩷㪂㩷㪈㪇㪪㪤㩷㪂㩷㪈㪍㪘
㪊㪏 㪊㪏 㪊㪏
㪝 㪤 㪝㪃㩷㪤
㪊㪏
㪈㪋㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪈㪏㪘
㪊㪏 㪝
㪉㪉㩷㪤㪆㪪㪤㩷㪂㩷㪈㪍㪘
㪊㪏
㪝㪃㩷㪤
㪈㪇㪤㩷㪂㩷㪈㪇㪪㪤㩷㪂㩷㪈㪏㪘
㪈㪉㪤㩷㪂㩷㪈㪇㪪㪤㩷㪂㩷㪈㪍㪘
㪊㪏
㪤
㪈㪉㪤㩷㪂㩷㪈㪇㪪㪤㩷㪂㩷㪈㪍㪘
㪉㪇㩷㪤㪆㪪㪤㩷㪂㩷㪈㪏㪘
㪊㪏
㪊㪏 㪝
㪈㪉㪤㩷㪂㩷㪏㪪㪤㩷㪂㩷㪈㪏㪘 㪈㪉㪤㩷㪂㩷㪏㪪㪤㩷㪂㩷㪈㪏㪘
㪊㪏 㪊㪏
㪝 㪤
㪉㪇㩷㪤㪆㪪㪤㩷㪂㩷㪈㪏㪘
㪊㪏 㪈㪇㪤㩷㪂㩷㪈㪇㪪㪤㩷㪂㩷㪈㪏㪘
㪉㪇㩷㪤㪆㪪㪤㩷㪂㩷㪈㪏㪘
㪊㪏
㪉㪈㩷㪤㪆㪪㪤㩷㪂㩷㪈㪎㪘 㪉㪉㩷㪤㪆㪪㪤㩷㪂㩷㪈㪍㪘
㪊㪏 㪊㪏
㪉㪇㩷㪤㪆㪪㪤㩷㪂㩷㪈㪏㪘
㪊㪏
㪉㪉㩷㪤㪆㪪㪤㩷㪂㩷㪈㪍㪘
㪊㪏
㪝㪃㩷㪤
㪝㪃㩷㪤
㪈㪉㪤㩷㪂㩷㪈㪇㪪㪤㩷㪂㩷㪈㪍㪘
㪊㪏
㪈㪉㪤㩷㪂㩷㪈㪇㪪㪤㩷㪂㩷㪈㪍㪘
㪊㪏
㪈㪉㪤㩷㪂㩷㪈㪇㪪㪤㩷㪂㩷㪈㪍㪘
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪌㪉㪘
㪋㪍㪘
㪌㪇㪘
㪍㩷㪤㪆㪪㪤㩷㪂㩷㪋㪉㩷㪪㪫㪆㪘
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪝
㪛 㪉㫅
㪌㪉
㪋㪍
㪌㪇
㪋㪏
㪛 㪉㫅
㪤
㪚 㪪㪼㫏
㪝
㪝㪃㩷㪤
㪚 㪪㪼㫏
㪌㪏
㪌㪏
㪍㪇
㪍㪇
㪍㪇
㪌㪏
㪌㪏
㪌㪏
㪌㪏
㪌㪏
㪌㪏
㪍㪇
㪌㪐
㪌㪏
㪍㪇
㪍㪇
㪍㪇
㪍㪇
㪍㪇
㪝 㪥㪝㪈
㪌㪉
㪋㪍
㪌㪇
㪌㪋
㪝 㪥㪝㪈
㪌㪏
㪍㪇
㪍㪇
㪍㪇
㪌㪏
㪌㪏
㪌㪏
㪌㪏
㪌㪐
㪌㪏
㪍㪇
㪍㪇
㪍㪇
㪍㪇
㪍㪇
㪉
㪉
㪞 㪟 㪥㪝㪉 㪘㪾㪄 㪥㪦㪩㫊
㪌㪉
㪋㪍
㪌㪇
㪞 㪟 㪥㪝㪉 㪘㪾㪄 㪥㪦㪩㫊
㩿㪉㪅㪇㩷㪝㪠㪘㪀
㩿㪉㪅㪏㩷㪙㪝㪘㪀
㩿㪊㪅㪉㩷㪙㪝㪘㪀
㪠 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㩿㪉㪅㪇㩷㪝㪠㪘㪀
㪉㪅㪋㩷㪙㪝㪘
㪠 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪱㪮㪃㩷㪘㪚㪥㪔㪌㪊
㪱㪱㪃㩷㪘㪚㪥㪔㪌㪋
㪱㪮㪃㩷㪘㪚㪥㪔㪌㪊
㪘㪚㪥㪔㪌㪋
㪱㪱㪃㩷㪘㪚㪥㪔㪌㪋
㪱㪮㪃㩷㪘㪚㪥㪔㪌㪊
㪘㪚㪥㪔㪌㪋
㪘㪚㪥㪔㪌㪊
㪘㪚㪥㪔㪌㪉
㪱㪱㪃㩷㪘㪚㪥㪔㪌㪋
㪱㪮㪃㩷㪘㪚㪥㪔㪌㪊
㪱㪱㪃㩷㪘㪚㪥㪔㪌㪋
㪱㪮㪃㩷㪘㪚㪥㪔㪌㪊
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪘㪚㪥㪔㪌㪋
㪘㪚㪥㪔㪌㪋
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪧㪄㪐
㪧㪄㪎㪃㩷㪧㪄㪐
㪰㪄㪈㪌
㪥㪄㪉㪏㪃㩷㪢㪄㪏㪏
㪥㪄㪉㪏
㪪㪄㪏㪎
㪢 㪄㪏㪏
㪢 㪄㪏㪏
㪪㪄㪏㪎㪃㩷㪟㪄㪈㪊
㪧㪄㪈㪇
㪧㪄㪈㪇
㪧㪄㪈㪊㪃㩷㪧㪄㪈㪋
㪧㪄㪈㪊㪃㩷㪧㪄㪈㪋
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
㪩㪄㪍㪍㪃㩷㪟㪄㪋㪇
㪢㪄㪋㪍㩷
㪛㪄㪉㪊
㪛㪄㪉㪍㪃㩷㪟㪄㪈㪊
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
㪬㪪㪘㩷㩿㪤㪜㪀
㪬㪪㪘㩷㩿㪝㪣㪀
㪬㪪㪘㩷㩿㪙㫆㫊㫋㫆㫅㩷㪙㪸㫐㪀
㪬㪪㪘㩷㩿㪧㪿㫀㫃㪸㪻㪼㫃㫇㪿㫀㪸㪀
㪬㪪㪘㩷㩿㪧㪿㫀㫃㪸㪻㪼㫃㫇㪿㫀㪸㪀
㪧㪄㪈㪋㪃㩷㪟㪄㪋㪈
㪦㪄㪈㪇
㪪㪄㪏㪎㪃㩷㪟㪄㪈㪊
㪧㪄㪈㪇
㪧㪄㪈㪇
㪡㪸㫇㪸㫅㩷㩿㪘㫄㪸㫄㫀㪄㫆㫊㪿㫀㫄㪸㪀 㪢㪄㪐㪊
㪢㫆㫉㪼㪸㩷㩿㪟㪸㫅㩷㪩㪅㪀
㪢㫆㫉㪼㪸㩷㩿㪟㪸㫅㩷㪩㪅㪀
㪚㪿㫀㫅㪸㩷㩿㪮㫌㪿㪸㫅㪀
㪡㪸㫇㪸㫅
㩿㪥㪼㫎㩷㪱㪼㪸㫃㪸㫅㪻㪀
㪥㪼㫎㩷㪱㪼㪸㫃㪸㫅㪻
㩿㪜㫌㫉㫆㫇㪼㪀
㩿㪜㫌㫉㫆㫇㪼㪀
㪠㫋㪸㫃㫐
㪞㪼㫉㫄㪸㫅㫐
㪞㪼㫉㫄㪸㫅㫐
㪧㫆㫃㪸㫅㪻㩷㩿㪢㫉㪸㫂㫆㫎㪀
㪧㫆㫃㪸㫅㪻㩷㩿㪢㫉㪸㫂㫆㫎㪀
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪠㫅㪻㫀㪸㩷㩿㪙㫆㫄㪹㪸㫐㪀
㪠㫅㪻㫀㪸㩷㩿㪮㪙㪀
㪬㪪㪘㩷㩿㪘㫋㫃㪸㫅㫋㫀㪺㪀
㪬㪪㪘㩷㩿㪣㪘㪀
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
40
㼘㼕㼚㼑㼍㼞㼕㼟
㼚㼕㼓㼞㼕㼏㼍㼚㼟 㼜㼍㼞㼐㼍㼘㼕㼟 㼑㼡㼞㼛㼟㼠㼡㼟 㼗㼕㼐㼍㼗㼛 㼙㼕㼘㼕㼍㼞㼕㼟 㼛㼏㼑㼘㼘㼍㼠㼡㼟 㼜㼕㼏㼠㼡㼟 㼜㼕㼏㼠㼡㼟 㼞㼑㼑㼢㼑㼟㼕 㼡㼚㼕㼏㼛㼘㼛㼞 㼢㼕㼏㼕㼚㼡㼟 㼔㼑㼘㼑㼚㼍 㼜㼍㼢㼛㼚㼕㼚㼍
㻭㼞㼕㼛㼟㼛㼙㼍 㻭㼞㼕㼛㼟㼛㼙㼍 㻯㼛㼚㼓㼑㼞 㻯㼛㼚㼓㼑㼞 㻯㼛㼚㼓㼑㼞 㻯㼛㼚㼓㼑㼞 㻯㼛㼚㼓㼑㼞 㻯㼛㼚㼓㼑㼞 㻯㼛㼚㼓㼑㼞 㻯㼛㼚㼓㼑㼞
㼍㼚㼍㼓㼛㼕㼐㼑㼟 㼍㼚㼍㼓㼛 㼏㼛㼚㼓㼑㼞 㼏㼛㼚㼓㼑㼞 㼖㼍㼜㼛㼚㼕㼏㼡㼟 㼙㼥㼞㼕㼍㼟㼠㼑㼞 㼙㼥㼞㼕㼍㼟㼠㼑㼞 㼙㼥㼞㼕㼍㼟㼠㼑㼞 㼙㼥㼞㼕㼍㼟㼠㼑㼞 㼙㼥㼞㼕㼍㼟㼠㼑㼞
㻿㼡㼎㼛㼞㼐㼑㼞㻌㻯㼛㼚㼓㼞㼛㼕㼐㼑㼕 㻯㼛㼚㼓㼞㼕㼐㼍㼑
㻱㼚㼏㼔㼑㼘㼥㼏㼛㼞㼑 㻱㼚㼏㼔㼑㼘㼥㼏㼛㼞㼑 㻳㼥㼙㼚㼛㼠㼔㼛㼞㼍㼤 㻳㼥㼙㼚㼛㼠㼔㼛㼞㼍㼤 㻳㼥㼙㼚㼛㼠㼔㼛㼞㼍㼤 㻳㼥㼙㼚㼛㼠㼔㼛㼞㼍㼤 㻳㼥㼙㼚㼛㼠㼔㼛㼞㼍㼤 㻳㼥㼙㼚㼛㼠㼔㼛㼞㼍㼤 㻳㼥㼙㼚㼛㼠㼔㼛㼞㼍㼤 㻳㼥㼙㼚㼛㼠㼔㼛㼞㼍㼤 㻳㼥㼙㼚㼛㼠㼔㼛㼞㼍㼤 㻹㼡㼞㼍㼑㼚㼍 㻹㼡㼞㼍㼑㼚㼍
㻿㼡㼎㼛㼞㼐㼑㼞㻌㻹㼡㼞㼍㼑㼚㼛㼕㼐㼑㼕 㻹㼡㼞㼍㼑㼚㼕㼐㼍㼑
㻹㼛㼞㼕㼚㼓㼡㼍
㻌㻌㻌㻌㻌㻌㻌㻌㻌㻌㻌㻌㻌㻌㻌㻌㻌㻌㻌㻭 㻯㼡㼞㼞㼑㼚㼠㻌㼟㼏㼕㼑㼚㼠㼕㼒㼕㼏㻌㼚㼍㼙㼑㻌㼛㼒㻌㼠㼍㼤㼛㼚 㻿㼡㼎㼛㼞㼐㼑㼞㻛㼒㼍㼙㼕㼘㼥㻛㼟㼡㼎㼒㼍㼙㼕㼘㼥㻛㼟㼜㼑㼏㼕㼑㼟㻌 㻹㼛㼞㼕㼚㼓㼡㼕㼐㼍㼑
㻭㼟㼠㼞㼛㼏㼛㼚㼓㼑㼞 㻭㼟㼠㼞㼛㼏㼛㼚㼓㼑㼞
㻭㼘㼘㼛㼏㼛㼚㼓㼑㼞 㻭㼚㼍㼓㼛
㻿㼕㼐㼑㼞㼕㼍㻌㼜㼕㼏㼠㼍 㻿㼕㼐㼑㼞㼕㼍㻌㼜㼕㼏㼠㼍
㻹㼡㼞㼍㼑㼚㼍
㻮 㻾㼑㼜㼛㼞㼠㼑㼐㻌㼕㼚 㼗㼍㼞㼥㼛㼠㼥㼜㼑㻌㼜㼍㼜㼑㼞
㼀㼍㼎㼘㼑㻌㻢㻚㻤㻌㻌㻻㼞㼐㼑㼞㻌㻭㻺㻳㼁㻵㻸㻸㻵㻲㻻㻾㻹㻱㻿㻌㻔㼏㼛㼚㼠㼕㼚㼡㼑㼐㻕 㻌㻔㼏㼛㼚㼠㼕㼚㼡㼑㼐㻕
㻝㻞㻌㻹㻛㻿㻹㻌㻗㻌㻞㻢㻌㻿㼀㻛㻭
㻝㻞㻹㻌㻗㻌㻤㻌㻿㻹㻌㻗㻌㻝㻤㻭 㻝㻠㻹㻌㻗㻌㻠㻿㻹㻌㻗㻌㻞㻜㻭 㻤㻹㻌㻗㻌㻝㻜㻿㻹㻌㻗㻌㻞㻜㻭 㻤㻹㻌㻗㻌㻝㻜㻿㻹㻌㻗㻌㻞㻜㻭
㻟㻤 㻟㻤 㻟㻤 㻟㻤 㻟㻤
㻲 㻲 㻲㻘㻌㻹
㻝㻞㻹㻌㻗㻌㻤㻌㻿㻹㻌㻗㻌㻝㻤㻭
㻝㻜㻹㻌㻗㻌㻝㻜㻿㻹㻌㻗㻌㻝㻤㻭
㻟㻤 㻟㻤
㻤㻹㻌㻗㻌㻠㻿㻹㻌㻗㻌㻞㻢㻌㻿㼀㻛㻭
㻟㻤
㻝㻜㻹㻌㻗㻌㻤㻿㻹㻌㻗㻌㻢㻿㼀㻌㻗㻌㻝㻜㻭 㻝㻤㻌㻹㻛㻿㻹㻌㻗㻌㻞㻜㻭
㻟㻠 㻟㻤
㻢㻹㻌㻗㻌㻠㻿㻹㻌㻗㻌㻟㻞㻭
㻹
㻲
㻲㻘㻌㻹
㻲
㻠㻞
㻲
㻤㻹㻌㻗㻌㻢㻿㻹㻌㻗㻌㻞㻤㻭 㻝㻤㻌㻹㻛㻿㻹㻌㻗㻌㻞㻠㻭
㻠㻞 㻠㻞
㻲㻘㻌㻹
㻟㻠㻌㻹㻛㻿㻹㻌㻗㻌㻤㻭 㻝㻞㻌㻹㻛㻿㻹㻌㻗㻌㻟㻜㻭
㻠㻞 㻠㻞
㻲㻘㻌㻹 㻲㻘㻌㻹
㻠㻞㻌㻿㼀㻛㻭
㻠㻞
㻝㻢㻹㻌㻗㻌㻝㻤㻿㻹㻌㻗㻌㻤㻭 㻝㻠㻹㻌㻗㻌㻝㻠㻿㻹㻌㻗㻌㻝㻠㻭
㻠㻞
㻲㻘㻌㻹
㻝㻠㻹㻌㻗㻌㻝㻤㻿㻹㻌㻗㻌㻝㻜㻿㼀
㻠㻞
㻠㻞
㻝㻞㻌㻹㻛㻿㻹㻌㻗㻌㻟㻜㻭 㻝㻢㻹㻌㻗㻌㻤㻿㻹㻌㻗㻌㻝㻞㻭
㻠㻞
㻤㻹㻌㻗㻌㻞㻿㻹㻌㻗㻌㻟㻞㻭
㻢㻹㻌㻗㻌㻤㻿㻹㻌㻗㻌㻝㻞㻿㼀㻌㻗㻌㻝㻢㻭
㻱 㻌㻌㻌㻌㻌㻌㻌㻌㻌㻌㻌㻌㻷㼍㼞㼥㼛㼠㼥㼜㼑
㻟㻢
㻠㻞
㻠㻞
㻡㻜
㻰 㻞㼚
㻲
㻲㻘㻌㻹
㻲㻘㻌㻹
㻯 㻿㼑㼤
㻡㻢
㻡㻢
㻡㻢
㻡㻤
㻡㻤
㻡㻤
㻡㻜
㻡㻜
㻡㻢
㻡㻞
㻡㻞
㻢㻜
㻡㻢
㻡㻠
㻣㻢
㻠㻞
㻣㻜
㻣㻢
㻣㻠
㻢㻜
㻡㻠
㻡㻞
㻡㻢
㻲 㻺㻲㻝
㻡㻢
㻡㻢
㻡㻢
㻡㻤
㻡㻤
㻡㻤
㻡㻢
㻡㻤
㻡㻞
㻢㻜
㻡㻢
㻡㻠
㻣㻢
㻣㻜
㻣㻢
㻤㻠
㻢㻜
㻡㻠
㻡㻞
㻢㻤
㻞
㻞
㻞
㻞
㻞
㻞
㻞
㻞
㻞
㻞
㻞
㻞
㻞
㻳 㻴 㻺㻲㻞 㻭㼓㻙 㻺㻻㻾㼟
㻞㻚㻠㻖㻌㻲㻯㻹
㻞㻚㻠㻖㻌㻲㻯㻹
㻟㻚㻟㻌㻲㻯㻹
㻟㻚㻢㻖㻌㻲㻯㻹
㻡㻚㻝㻌㻮㻲㻭
㻠㻚㻠㻌㻮㻲㻭
㻟㻚㻤㻌㻲㻵㻭
㻠㻚㻢㻖㻌㻲㻯㻹
㻵 㻳㼑㼚㼛㼙㼑㻌㼟㼕㼦㼑㻌 㻔㼜㼓㻛㼏㼑㼘㼘㻕
㻶㼍㼜㼍㼚㻌㻔㼃㼍㼗㼍㼥㼍㼙㼍㻕
㻮㼞㼍㼦㼕㼘㻌㻌㻔㻭㼠㼘㼍㼚㼠㼕㼏㻕
㻵㼚㼐㼕㼍㻌㻔㻼㼛㼞㼠㼛㻌㻺㼛㼢㼛㻕
㻷 㻌㻌㻌㻌㻌㻌㻌㻸㼛㼏㼍㼘㼕㼠㼥
㻶㼍㼜㼍㼚㻌㻔㼅㼍㼙㼍㼓㼡㼏㼔㼕㻕
㻷㼛㼞㼑㼍㻌㻔㼅㼑㼘㼘㼛㼣㻌㻿㼑㼍㻕
㻷㼛㼞㼑㼍㻌㻔㼅㼑㼘㼘㼛㼣㻌㻿㼑㼍㻕
㻶㼍㼜㼍㼚㻌㻔㼃㼍㼗㼍㼥㼍㼙㼍㻕
㻿㼜㼍㼕㼚㻌㻔㻹㼍㼘㼍㼓㼍㻕
㻹㼑㼐㼕㼠㼑㼞㼞㼍㼚㼑㼍㼚
㻶㼍㼜㼍㼚㻌㻔㻷㼛㼎㼑㻕
㻶㼍㼜㼍㼚㻌㻔㼃㼍㼗㼍㼥㼍㼙㼍㻕
㻮㼞㼍㼦㼕㼘㻌㻌㻔㻭㼠㼘㼍㼚㼠㼕㼏㻕
㻹㼑㼐㼕㼠㼑㼞㼞㼍㼚㼑㼍㼚
㻮㼞㼍㼦㼕㼘㻌㻔㻾㻺㻕㻌
㻵㼠㼍㼘㼥
㻯㼔㼕㼚㼍㻌㻔㻳㼡㼍㼚㼓㼐㼛㼚㼓㻕
㻵㼚㼐㼕㼍㻌㻔㻭㼚㼐㼍㼙㼍㼚㻌㻵㼟㻚㻕
㻵㼚㼐㼕㼍㻌㻔㼃㻮㻕
㻮㼞㼍㼦㼕㼘㻌㻔㻿㻼㻕
㻮㼞㼍㼦㼕㼘㻌㻔㻮㼍㼔㼕㼍㻕㻌
㻶㼍㼜㼍㼚㻌㻔㼃㼍㼗㼍㼥㼍㼙㼍㻕
㻯㼔㼕㼚㼍㻌㻔㻿㼔㼍㼚㼐㼛㼚㼓㻕
㼆㼃㻛㼆㼆㻘㻌㻭㻯㻺㻩㻡㻠 㻶㼍㼜㼍㼚㻌㻔㻷㼛㼎㼑㻕
㻭㻯㻺㻩㻡㻠
㼆㼆㻘㻌㻭㻯㻺㻩㻡㻠
㼆㼃㻘㻌㻭㻯㻺㻩㻡㻟
㻭㻯㻺㻩㻡㻞
㻭㻯㻺㻩㻠㻤
㻭㻯㻺㻩㻡㻠
㻭㻯㻺㻩㻡㻠
㻭㻯㻺㻩㻡㻠
㻭㻯㻺㻩㻡㻠
㻭㻯㻺㻩㻡㻠
㻭㻯㻺㻩㻡㻠
㻭㻯㻺㻩㻡㻠
㻭㻯㻺㻩㻡㻞
㼄㼄㻛㼄㼅㻘㻌㻭㻯㻺㻩㻡㻞 㻶㼍㼜㼍㼚㻌㻔㻻㼗㼕㼚㼍㼣㼍㻕
㻭㻯㻺㻩㻡㻞
㻭㻯㻺㻩㻡㻠
㻶 㻯㼛㼙㼙㼑㼚㼠㼟
㼅㻙㻞㻜
㻻㻙㻟㻥㻘㻌㻻㻙㻠㻤
㻺㻙㻟㻞
㻼㻙㻥
㻼㻙㻣㻘㻌㻼㻙㻥
㼀㻙㻡㻘㻌㻻㻙㻠㻤
㻭㻙㻠㻢
㻿㻙㻠㻣㻘㻌㻳㻙㻤㻡
㼀㻙㻤㻘㻌㻻㻙㻠㻤
㼀㻙㻡
㼂㻙㻝㻜㻢
㻯㻙㻥㻥㻘㻌㻿㻙㻥㻘㻌㻳㻙㻤㻡
㼂㻙㻝㻜㻢
㻰㻙㻡㻘㻌㻿㻙㻥㻘㻌㻳㻙㻤㻡
㻾 㻙㻥㻜
㻾 㻙㻠㻡
㻷㻙㻠㻢㻘㻌㻴㻙㻠㻝
㻼㻙㻠㻟
㼂㻙㻝㻜㻢
㼀㻙㻡㻘㻌㼀㻙㻢㻘㻌㼀㻙㻣㻥
㼀㻙㻡㻘㻌㼀㻙㻢
㼀㻙㻡㻘㻌㼀㻙㻢㻘㻌㼀㻙㻣㻥㻘㻌㻻㻙㻠㻤
㼂㻙㻝㻜㻢
㻿㻙㻝㻝㻤
㻸 㻾㼑㼒㼑㼞㼑㼚㼏㼑
41
㼕㼙㼎㼑㼞㼎㼕㼟 㼕㼙㼎㼑㼞㼎㼕㼟 㼙㼥㼞㼡㼟 㼛㼏㼑㼘㼘㼍㼠㼡㼟 㼍㼘㼠㼕㼜㼑㼚㼚㼕㼟 㼙㼍㼏㼞㼛㼞㼔㼥㼚㼏㼔㼡㼟 㼟㼑㼞㼜㼑㼚㼟 㼎㼛㼞㼛 㼎㼛㼞㼛
㼓㼥㼙㼚㼛㼠㼡㼟 㼓㼥㼙㼚㼛㼠㼡㼟
㼏㼕㼚㼑㼞㼑㼡㼟
㻿㼥㼚㼍㼜㼔㼛㼎㼞㼍㼚㼏㼔㼡㼟 㼗㼍㼡㼜㼕
㻿㼥㼚㼍㼜㼔㼛㼎㼞㼍㼚㼏㼔㼕㼐㼍㼑
㻰㼍㼘㼛㼜㼔㼕㼟 㻰㼍㼘㼛㼜㼔㼕㼟 㻱㼏㼔㼑㼘㼡㼟 㻹㼥㼞㼕㼏㼔㼠㼔㼥㼟 㻻㼜㼔㼕㼏㼔㼠㼔㼡㼟 㻻㼜㼔㼕㼟㼡㼞㼡㼟 㻻㼜㼔㼕㼟㼡㼞㼡㼟 㻼㼕㼟㼛㼐㼛㼚㼛㼜㼔㼕㼟 㻼㼕㼟㼛㼐㼛㼚㼛㼜㼔㼕㼟
㻌㻌㻌㻻㼜㼔㼕㼏㼔㼠㼔㼕㼚㼍㼑
㻹㼡㼞㼍㼑㼚㼕㼏㼔㼠㼔㼥㼟 㻹㼡㼞㼍㼑㼚㼕㼏㼔㼠㼔㼥㼟
㻻㼜㼔㼕㼏㼔㼠㼔㼕㼐㼍㼑 㻌㻌㻌㻹㼥㼞㼛㼜㼔㼕㼚㼍㼑
㻹㼡㼞㼍㼑㼚㼑㼟㼛㼤
㻌㻌㻌㻌㻌㻌㻌㻌㻌㻌㻌㻌㻌㻌㻌㻌㻌㻌㻌㻭 㻯㼡㼞㼞㼑㼚㼠㻌㼟㼏㼕㼑㼚㼠㼕㼒㼕㼏㻌㼚㼍㼙㼑㻌㼛㼒㻌㼠㼍㼤㼛㼚 㻿㼡㼎㼛㼞㼐㼑㼞㻛㼒㼍㼙㼕㼘㼥㻛㼟㼡㼎㼒㼍㼙㼕㼘㼥㻛㼟㼜㼑㼏㼕㼑㼟㻌 㻹㼡㼞㼍㼑㼚㼑㼟㼛㼏㼕㼐㼍㼑
㻻㼜㼔㼥㼟㼡㼞㼡㼟
㻟㻤
㻲
㻹
㻞㻢
㻞㻞㻌㻹㻛㻿㻹㻌㻗㻌㻞㻿㼀㻌㻗㻌㻞㻭
㻝㻤㻹㻌㻗㻌㻠㻿㻹㻌㻗㻌㻠㻿㼀㻌㻗㻌㻝㻞㻭
㻟㻤 㻠㻜
㻞㻜㻹㻌㻗㻌㻝㻠㻿㻹㻌㻗㻌㻠㻿㼀 㻝㻢㻹㻌㻗㻌㻞㻜㻿㼀㻌㻗㻌㻞㻭
㻟㻤 㻟㻤
㻝㻜㻹㻌㻗㻌㻝㻢㻿㻹㻌㻗㻌㻠㻿㼀㻌㻗㻌㻤㻭
㻤㻹㻌㻗㻌㻝㻠㻿㻹㻌㻗㻌㻝㻜㻿㼀㻌㻗㻌㻢㻭
㻟㻤 㻟㻤
㻞㻜㻌㻹㻛㻿㻹㻌㻗㻌㻝㻤㻌㻿㼀㻛㻭
㻠㻢
㻲
㻞㻹㻌㻗㻌㻢㻿㻹㻌㻗㻌㻢㻿㼀㻌㻗㻌㻟㻞㻭㻌
㻠㻢
㻞㻹㻌㻗㻌㻢㻿㻹㻌㻗㻌㻡㻿㼀㻌㻗㻌㻟㻟㻭㻌
㻝㻹㻌㻗㻌㻠㻿㼀㻌㻗㻌㻠㻞㻭
㻠㻿㼀㻌㻗㻌㻠㻠㻭
㻲
㻠㻣
㻝㻞㻹㻌㻗㻌㻠㻿㻹㻌㻗㻌㻢㻿㼀㻌㻗㻌㻝㻢㻭
㻱 㻌㻌㻌㻌㻌㻌㻌㻌㻌㻌㻌㻌㻷㼍㼞㼥㼛㼠㼥㼜㼑
㻹
㻠㻤
㻲
㻟㻤
㻰 㻞㼚
㻹
㻯 㻿㼑㼤
㻼㼕㼟㼛 㾁㼐㼛㼚㼛㼜㼔㼕㼟㻌㼦㼛㼜㼔㼕㼟㼠㼕㼡㼟
㻮 㻾㼑㼜㼛㼞㼠㼑㼐㻌㼕㼚 㼗㼍㼞㼥㼛㼠㼥㼜㼑㻌㼜㼍㼜㼑㼞
㼀㼍㼎㼘㼑㻌㻢㻚㻤㻌㻌㻻㼞㼐㼑㼞㻌㻭㻺㻳㼁㻵㻸㻸㻵㻲㻻㻾㻹㻱㻿㻌㻔㼏㼛㼚㼠㼕㼚㼡㼑㼐㻕 㻌㻔㼏㼛㼚㼠㼕㼚㼡㼑㼐㻕
㻠㻤
㻢㻜
㻣㻞 㻡㻠
㻢㻠
㻢㻜
㻡㻤
㻡㻠
㻡㻠
㻠㻤
㻠㻤
㻡㻠
㻲 㻺㻲㻝
㻡㻜
㻢㻠
㻣㻢 㻣㻠
㻢㻤
㻣㻜
㻢㻜
㻡㻥
㻡㻞
㻡㻞
㻢㻜
㻞
㻞
㻞
㻟㻙㻠
㻟㻙㻠
㻳 㻴 㻺㻲㻞 㻭㼓㻙 㻺㻻㻾㼟 㻔㻞㻚㻟㻌㻲㻵㻭㻕
㻵 㻳㼑㼚㼛㼙㼑㻌㼟㼕㼦㼑㻌 㻔㼜㼓㻛㼏㼑㼘㼘㻕
㻯㼔㼕㼚㼍
㻷 㻌㻌㻌㻌㻌㻌㻌㻸㼛㼏㼍㼘㼕㼠㼥
㻭㻯㻺㻩㻡㻠
㻭㻯㻺㻩㻡㻠
㻭㻯㻺㻩㻡㻠
㼆㼆㻘㻌㻭㻯㻺㻩㻡㻠
㼆㼃㻘㻌㻭㻯㻺㻩㻡㻟
㼄㻝㼄㻞㼅㻘㻌㻭㻯㻺㻩㻠㻤
㻶㼍㼜㼍㼚㻌㻔㻴㼛㼗㼗㼍㼕㼐㼛㻕
㻵㼚㼐㼕㼍㻌㻔㻼㼛㼞㼠㼛㼚㼛㼢㼛㻕
㻵㼚㼐㼕㼍㻌㻔㼃㻮㻕
㻶㼍㼜㼍㼚㻌㻔㼅㼍㼙㼍㼓㼡㼏㼔㼕㻕 㻿㼜㼍㼕㼚㻌㻔㻹㼍㼘㼍㼓㼍㻕
㻶㼍㼜㼍㼚㻌㻔㼅㼍㼙㼍㼓㼡㼏㼔㼕㻕
㻮㼞㼍㼦㼕㼘㻌㻔㻾㻺㻕㻌
㻿㼜㼍㼕㼚㻌㻔㻹㼍㼘㼍㼓㼍㻕
㻵㼠㼍㼘㼥㻌㻔㻿㼍㼞㼐㼕㼚㼕㼍㻕
㻵㼠㼍㼘㼥㻌㻔㻿㼍㼞㼐㼕㼚㼕㼍㻕
㻶㼍㼜㼍㼚㻌㻔㻿㼡㼞㼡㼓㼍㻌㻮㼍㼥㻕
㼄㻝㼄㻝㼄㻞㼄㻞㻘㻌㻭㻯㻺㻩㻠㻤 㻶㼍㼜㼍㼚㻌㻔㻿㼡㼞㼡㼓㼍㻌㻮㼍㼥㻕
㻶 㻯㼛㼙㼙㼑㼚㼠㼟
㻵㻙㻝㻟
㻺㻙㻝㻟
㻷㻙㻠㻞
㻺㻙㻟㻞 㼀㻙㻟㻡
㻺㻙㻟㻞
㼂㻙㻝㻜㻢
㻭㻙㻠㻢
㻿㻙㻝㻤㻞
㻿㻙㻝㻤㻞
㻹㻙㻝㻜㻤
㻹㻙㻝㻜㻤
㼆㻙㻞㻟㻘㻌㻴㻙㻠㻝
㻸 㻾㼑㼒㼑㼞㼑㼚㼏㼑
42
㪚㫃㫌㫇㪼㪸 㪚㫃㫌㫇㪼㪸 㪚㫃㫌㫇㪼㪸 㪚㫃㫌㫇㪼㪸 㪚㫃㫌㫇㪼㪸 㪚㫃㫌㫇㪼㪸 㪚㫃㫌㫇㪼㪸 㪚㫃㫌㫇㪼㪸 㪚㫃㫌㫇㪼㪸 㪚㫃㫌㫇㪼㪸 㪚㫃㫌㫇㪼㪸 㪚㫆㫉㫀㪺㪸 㪟㪸㫉㪼㫅㪾㫌㫃㪸 㪟㪼㫉㫂㫃㫆㫋㫊㫀㪺㪿㫋㪿㫐㫊 㪪㪸㫉㪻㫀㫅㪼㫃㫃㪸 㪪㪸㫉㪻㫀㫅㪼㫃㫃㪸 㪪㪸㫉㪻㫀㫅㪼㫃㫃㪸 㪪㪸㫉㪻㫀㫅㫆㫇㫊
㩷㩷㩷㪚㫃㫌㫇㪼㫀㫅㪸㪼
㪘㫃㫆㫊㪸 㪘㫃㫆㫊㪸 㪙㫉㪼㫍㫆㫆㫉㫋㫀㪸 㪙㫉㪼㫍㫆㫆㫉㫋㫀㪸 㪙㫉㪼㫍㫆㫆㫉㫋㫀㪸 㪙㫉㪼㫍㫆㫆㫉㫋㫀㪸 㪙㫉㪼㫍㫆㫆㫉㫋㫀㪸 㪙㫉㪼㫍㫆㫆㫉㫋㫀㪸 㪞㫌㪻㫌㫊㫀㪸 㪞㫌㪻㫌㫊㫀㪸
㪿㪸㫉㪼㫅㪾㫌㫊 㪿㪸㫉㪼㫅㪾㫌㫊 㪿㪸㫉㪼㫅㪾㫌㫊 㪿㪸㫉㪼㫅㪾㫌㫊 㪿㪸㫉㪼㫅㪾㫌㫊 㪿㪸㫉㪼㫅㪾㫌㫊㩷㪿㪸㫉㪼㫅㪾㫌㫊 㫇㪸㫃㫃㪸㫊㫀 㪿㪸㫉㪼㫅㪾㫌㫊㩷㫇㪸㫃㫃㪸㫊㫀 㫇㪸㫃㫃㪸㫊㫀㩷㫄㪸㫉㫀㫊㪸㫃㪹㫀 㫇㪸㫃㫃㪸㫊㫀㩷㫄㪸㫉㫀㫊㪸㫃㪹㫀 㫇㪸㫃㫃㪸㫊㫀㩷㫄㪸㫉㫀㫊㪸㫃㪹㫀 㫊㫆㪹㫆㫉㫅㪸 㪺㫃㫌㫇㪼㫆㫃㪸 㫈㫌㪸㪻㫉㫀㫄㪸㪺㫌㫃㪸㫋㫌㫊 㫄㪼㫃㪸㫅㫌㫉㪸 㫑㫌㫅㪸㫊㫀 㫑㫌㫅㪸㫊㫀 㫊㪸㪾㪸㫏
㫂㪼㫊㫊㫃㪼㫉㫀㩷㫇㫆㫅㫋㫀㪺㪸 㫇㫊㪼㫌㪻㫆㪿㪸㫉㪼㫅㪾㫌㫊 㪸㫌㫉㪼㪸 㪸㫌㫉㪼㪸 㫇㪸㫋㫉㫆㫅㫌㫊 㫇㪼㪺㫋㫀㫅㪸㫋㪸 㫊㫄㫀㫋㪿㫀 㫋㫐㫉㪸㫅㫅㫌㫊 㪺㪿㪸㫇㫉㪸 㫍㪸㫉㫀㪼㪾㪸㫋㪸
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㪹㫆㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷 㪪㫌㪹㫆㫉㪻㪼㫉㩷㪚㫃㫌㫇㪼㫆㫀㪻㪼㫀 㪚㫃㫌㫇㪼㫀㪻㪸㪼 㩷㩷㩷㪘㫃㫆㫊㫀㫅㪸㪼
㪫㪸㪹㫃㪼㩷㪍㪅㪐㩷㩷㪦㫉㪻㪼㫉㩷㪚㪣㪬㪧㪜㪠㪝㪦㪩㪤㪜㪪
㫄㪼㫃㪸㫅㫆㫊㫋㫀㪺㫋㫌㫊
㪞㪸㪻㫌㫊㫀㪸 㪞㪸㪻㫌㫊㫀㪸
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪉㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪋㪉㪘
㪝㪃㩷㪤
㪝㪃㩷㪤
㪝㪃㩷㪤
㪋㪏㩷㪪㪫㪆㪘
㪋㪏㪘
㪋㪏 㪋㪏
㪋㪏㩷㪪㪫㪆㪘
㪏㩷㪤㪆㪪㪤㩷㪂㩷㪊㪍㩷㪪㪫㪆㪘
㪋㪏
㪋㪋
㪈㪍㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪉㪇㪘
㪌㪍
㪉㪉㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪉㪘
㪏㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪋㪇㪘
㪌㪇
㪋㪏㪘
㪎㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪋㪉㪘
㪌㪈
㪉㪏
㪍㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪋㪋㪘
㪌㪉
㪋㪏
㪏㩷㪤㪆㪪㪤㩷㪂㩷㪋㪋㩷㪪㪫㪆㪘
㪌㪉
㪈㪉㪄㪈㪍㩷㪤㪆㪪㪤㩷㪂㩷㪋㪉㪄㪊㪏㩷㪪㪫㪆㪘 㪍㩷㪤㪆㪪㪤㩷㪂㩷㪋㪍㩷㪪㪫㪆㪘
㪌㪋 㪌㪉
㪍㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪋㪉㪘
㪌㪉 㪌㪇
㪏㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪋㪇㪘
㪌㪉
㪝㪃㩷㪤 㪝㪃㩷㪤
㪍㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪋㪋㪘
㪌㪉
㪍㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪋㪋㪘
㪋㪏
㪋㪏
㪋㪏
㪌㪉
㪋㪏
㪌㪉
㪐㪉
㪍㪇
㪍㪇
㪍㪇
㪍㪇
㪌㪏
㪍㪍㪄㪎㪇
㪌㪍
㪍㪇
㪌㪏
㪌㪏
㪋㪍
㪋㪍 㪌㪉
㪋㪍
㪌㪇
㪌㪇
㪌㪇
㪌㪇
㪌㪇
㪋㪏 㪌㪇
㪋㪏
㪝 㪥㪝㪈
㪋㪍 㪋㪍㪘
㪉㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪋㪉㪘
㪝㪃㩷㪤
㪤
㪋㪍 㪋㪍
㪝㪃㩷㪤
㪉㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪋㪉㪘
㪋㪍 㪝㪃㩷㪤
㪊㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪋㪇㪘 㪉㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪋㪉㪘
㪋㪌 㪋㪍
㪤 㪝㪃㩷㪤
㪉㪪㪫㩷㪂㩷㪋㪍㪘
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪋㪏㪘 㪉㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪋㪉㪘
㪋㪏
㪛 㪉㫅
㪋㪏 㪋㪍
㪝㪃㩷㪤 㪝
㪚 㪪㪼㫏
㪋㪏
㪋㪏
㪌㪋
㪐㪉
㪍㪇
㪍㪇
㪍㪇
㪌㪏
㪍㪋
㪍㪇
㪍㪇
㪋㪍
㪌㪇
㪌㪇
㪌㪇
㪌㪇
㪌㪇
㪋㪏 㪌㪇
㪌㪇
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪞 㪟 㪥㪝㪉 㪘㪾㪄 㪥㪦㪩㫊
㪉㪅㪎㩷㪝㪛
㪉㪅㪊㩷㪝㪛
㪈㪅㪌㪁㩷㪝㪚㪤
㩿㪈㪅㪏㩷㪝㪠㪘㪃㩷㪈㪅㪌㩷㪙㪝㪘㪀
㪈㪅㪐㩷㪝㪛
㪉㪅㪏㩷㪙㪝㪘
㪠 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪉
㪘㪚㪥㪔㪌㪉
㪘㪚㪥㪔㪌㪉
㪘㪚㪥㪔㪌㪉
㪘㪚㪥㪔㪌㪉
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪯㪈㪯㪉㪰㪃㩷㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏 㪯 㪈㪯 㪈㪯 㪉㪯 㪉
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪢㪄㪏㪈㪃㩷㪢㪄㪏㪉
㪢㪄㪏㪈㪃㩷㪢㪄㪏㪉
㪢㪄㪏㪈㪃㩷㪢㪄㪏㪉
㪩㪄㪏㪉
㪤㪄㪈㪍㪉
㪢 㪄㪊㪈
㪛㪄㪉㪊
㪛㪄㪉㪊
㪙㪄㪏㪍
㪛㪄㪉㪊
㪙㪄㪌㪌
㪤㪄㪌㪊㪃㩷㪟㪄㪈㪊 㪙㪄㪌㪌
㪭㪄㪎㪉
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
㪡㪸㫇㪸㫅㩷㩿㪠㫎㪸㫋㪼㪀
㪚㪿㫀㫅㪸㩷㩿㪪㪿㪸㫅㪻㫆㫅㪾㪀
㪡㪸㫇㪸㫅㩷㩿㪫㫆㫂㫐㫆㩷㪙㪸㫐㪀
㪠㫅㪻㫀㪸㩷㩿㪘㫅㪻㪸㫄㪸㫅㩷㪠㫊㪅㪀
㪡㪸㫇㪸㫅
㪬㪪㪘㩷㩿㪘㫋㫃㪸㫅㫋㫀㪺㪀
㪠㫅㪻㫀㪸㩷㩿㪮㪙㪀
㪩㫌㫊㫊㫀㪸㩷㩿㪮㪿㫀㫋㪼㩷㪪㪼㪸㪀
㪩㫌㫊㫊㫀㪸㩷㩿㪮㪿㫀㫋㪼㩷㪪㪼㪸㪀
㪩㫌㫊㫊㫀㪸㩷㩿㪮㪿㫀㫋㪼㩷㪪㪼㪸㪀
㪩㫌㫊㫊㫀㪸㩷㩿㪮㪿㫀㫋㪼㩷㪪㪼㪸㪀
㪡㪸㫇㪸㫅
㪩㫌㫊㫊㫀㪸㩷㩿㪙㪸㫃㫋㫀㪺㩷㪪㪼㪸㪀
㪠㪄㪏
㪮㪄㪎
㪠㪄㪏
㪩 㪄㪋㪌
㪦㪄㪋㪏
㪛㪄㪉㪊
㪢 㪄㪋㪍
㪣㪄㪏㪍
㪣㪄㪏㪍
㪣㪄㪏㪍
㪪㪄㪎㪉㪃㩷㪟㪄㪈㪊㪃㩷㪟㪄㪋㪇
㪠㪄㪏
㪪㪄㪎㪉
㪞㪼㫉㫄㪸㫅㫐㩷㩿㪙㪸㫃㫋㫀㪺㩷㪪㪼㪸㪀 㪢㪄㪏㪈㪃㩷㪢㪄㪏㪉
㪥㫆㫉㫎㪼㪾㫀㪸㫅㩷㪪㪼㪸
㪩㫌㫊㫊㫀㪸㩷㩿㪮㪿㫀㫋㪼㩷㪪㪼㪸㪀
㪥㪅㩷㪜㫌㫉㫆㫇㪼
㪬㪪㪘㩷㩿㪤㪜㪀
㩿㪤㫐㪸㫅㫄㪼㫉㪀
㪠㫅㪻㫀㪸㩷㩿㪮㪙㪀
㪬㪪㪘㩷㩿㪘㫋㫃㪸㫅㫋㫀㪺㪀
㪬㪪㪘㩷㩿㪘㫋㫃㪸㫅㫋㫀㪺㪀
㪙㫉㪸㫑㫀㫃
㪬㪪㪘㩷㩿㪘㫋㫃㪸㫅㫋㫀㪺㪀
㪙㫉㪸㫊㫀㫃㩷㩿㪩㪡㪀
㪬㪪㪘㩷㩿㪤㪜㪃㩷㪤㪘㪃㩷㪥㪰㪀 㩷 㩷 㪙㫉㪸㫊㫀㫃㩷㩿㪩㪡㪀
㪽㫆㫉㫄㪼㫉㩷㪬㪪㪪㪩
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
43
㫄㫀㫋㪺㪿㫀㫃㫃㫀 㪺㫆㫄㫇㫉㪼㫊㫊㪸 㪼㫅㪺㫉㪸㫊㫀㪺㪿㫆㫃㫌㫊㩷㫇㫆㫅㫋㫀㪺㫌㫊 㫁㪸㫇㫆㫅㫀㪺㫌㫊 㫄㫆㫉㪻㪸㫏
㫅㪸㫊㫌㫊 㫅㪸㫊㫌㫊 㪹㪸㪼㫃㪸㫄㪸
㫇㫌㫅㪺㫋㪸㫋㫌㫊 㪺㪼㫇㪼㪻㫀㪸㫅㫌㫄 㫇㪼㫋㪼㫅㪼㫅㫊㪼 㫄㪸㫅㫄㫀㫅㪸 㫇㫌㫅㪺㫋㪸㫋㫌㫊
㩷㪘㫅㪺㪿㫆㪸
㪹㫉㪸㪺㪿㫐㪾㫅㪸㫋㪿㫌㫊 㪹㫉㪸㪺㪿㫐㪾㫅㪸㫋㪿㫌㫊 㪫㪿㫉㫀㫊㫊㫀㫅㪸
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪺㪿㪸㫅㫆㫊
㪧㪿㫉㪸㪺㫋㫆㫃㪸㪼㫄㫌㫊
㪸㫅㫊㫆㫉㪾㪼㫀㩷㫊㫇㫀㫅㫆㫊㫌㫊
㪪㫌㪹㫆㫉㪻㪼㫉㩷㪢㫅㪼㫉㫀㫆㫀㪻㪼㫀 㪧㪿㫉㪸㪺㫋㫆㫃㪸㪼㫄㫀㪻㪸㪼
㪚㪿㪸㫅㫆㫊
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㪹㫆㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷 㪪㫌㪹㫆㫉㪻㪼㫉㩷㪚㪿㪸㫅㫆㫀㪻㪼㫀 㪚㪿㪸㫅㫀㪻㪸㪼
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪫㪸㪹㫃㪼㩷㪍㪅㪈㪇㩷㩷㪦㫉㪻㪼㫉㩷㪞㪦㪥㪦㪩㪰㪥㪚㪟㪠㪝㪦㪩㪤㪜㪪
㪘㫅㪺㪿㫆㪸 㪜㫅㪾㫉㪸㫌㫃㫀㫊 㪜㫅㪾㫉㪸㫌㫃㫀㫊 㪜㫅㪾㫉㪸㫌㫃㫀㫊 㪜㫅㪾㫉㪸㫌㫃㫀㫊
㩷㩷㪜㫅㪾㫉㪸㫌㫃㫀㫅㪸㪼
㪚㫆㫀㫃㫀㪸 㪚㫆㫀㫃㫀㪸 㪫㪿㫉㫐㫊㫊㪸
㪜㫅㪾㫉㪸㫌㫃㫀㪻㪸㪼 㩷㩷㪚㫆㫀㫃㫀㫅㪸㪼
㪚㫃㫌㫇㪸㫅㫆㪻㫆㫅 㪛㫆㫉㫆㫊㫆㫄㪸 㪛㫆㫉㫆㫊㫆㫄㪸 㪞㫆㫅㫀㪸㫃㫆㫊㪸 㪢㫆㫅㫆㫊㫀㫉㫌㫊
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㪹㫆㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷 㩷㩷㩷㪛㫆㫉㫆㫊㫆㫄㪸㫋㫀㫅㪸㪼
㪫㪸㪹㫃㪼㩷㪍㪅㪐㩷㩷㪦㫉㪻㪼㫉㩷㪚㪣㪬㪧㪜㪠㪝㪦㪩㪤㪜㪪㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀
㪊㪏㪘 㪋㪏㪘
㪊㪏 㪋㪏
㪝㪃㩷㪤
㪚 㪪㪼㫏
㪉㪏
㪊㪉
㪛 㪉㫅
㪉㪋㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪉㪘
㪈㪋㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪈㪋㩷㪪㪫㪆㪘
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪌㪋
㪌㪇
㪝 㪥㪝㪈
㪞 㪟 㪥㪝㪉 㪘㪾㪄 㪥㪦㪩㫊
㪋㪏
㪉㪅㪏㪁㩷㪝㪚㪤
㪊㪅㪇㩷㪝㪛
㪠 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪊㪅㪇㩷㪝㪛㪃㩷㪊㪅㪏㩷㪙㪝㪘
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪌㪇
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪱㪸㫀㫉㪼
㪫㪸㫀㫎㪸㫅
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㩿㪜㪅㩷㪧㪸㪺㫀㪽㫀㪺㪀
㪡㪸㫇㪸㫅
㪋㪏
㪋㪏㪘
㪬㪪㪘㩷㩿㪚㪘㪀
㪘㫋㫃㪸㫅㫋㫀㪺
㪠㫅㪻㫀㪸㩷㩿㪘㫅㪻㪸㫄㪸㫅㩷㪠㫊㪅㪀
㪚㪿㫀㫅㪸㩷㩿㪟㫌㪹㪼㫀㪀
㪚㪿㫀㫅㪸㩷㩿㪟㫌㪹㪼㫀㪀
㪢㫆㫉㪼㪸㩷㩿㪙㫌㫊㪸㫅㪀
㩿㪠㫅㪻㫀㪸㪀
㪬㪪㪘㩷㩿㪣㪘㪀
㪬㪪㪘㩷㩿㪣㪘㪀
㪚㪿㫀㫅㪸㩷㩿㪪㪿㪸㫅㪻㫆㫅㪾㪀
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪋㪏㪘
㪋㪏
㪘㪚㪥㪔㪋㪏
㪱㪱㪃㩷㪘㪚㪥㪔㪋㪏
㪱㪦㪃㩷㪘㪚㪥㪔㪋㪎
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪋㪏
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪋㪏
㪉
㪉
㪈㪅㪍㩷㪝㪚㪤
㪉㪅㪇㩷㪝㪚㪤
㪠 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪎
㪋㪏
㪊㪏
㪌㪉
㪌㪋
㪌㪇
㪞 㪟 㪥㪝㪉 㪘㪾㪄 㪥㪦㪩㫊
㪩㫌㫊㫊㫀㪸
㪋㪏
㪋㪏
㪋㪉
㪋㪏
㪋㪎
㪋㪏
㪊㪏
㪌㪇
㪌㪇
㪌㪇
㪝 㪥㪝㪈
㪋㪋
㪋㪏
㪋㪏㪘
㪋㪉 㪋㪏
㪋㪉㩷㪪㪫㪆㪘
㪋㪏
㪝㪃㩷㪤
㪋㪏㪘
㪋㪎
㪝 㪤
㪋㪎㪘
㪉㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪋㪋㪘
㪋㪏
㪝㪃㩷㪤
㪉㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪋㪉㪘
㪉㪤㩷㪂㩷㪋㪍㪘
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪋㪏
㪋㪏
㪛 㪉㫅
㪝㪃㩷㪤
㪚 㪪㪼㫏
㪭㪄㪊㪋
㪘㪄㪍㪊
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
㪦㪄㪍㪃㩷㪦㪄㪏㪃㩷㪟㪄㪈㪊
㪦㪄㪋㪏
㪠㪄㪉㪇
㪚㪄㪋㪍
㪛㪄㪉㪊
㪩 㪄㪋㪌
㪟㪄㪉㪈㪃㩷㪰㪄㪈㪌
㪟㪄㪉㪈㪃㩷㪰㪄㪈㪌
㪢 㪄㪈㪉㪌
㪤㪄㪈㪍㪉
㪝㪄㪉㪍
㪝㪄㪉㪍㪃㩷㪞㪄㪏㪌
㪮㪄㪎
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
44
㪘㪺㪿㪼㫀㫃㫆㪾㫅㪸㫋㪿㫌㫊 㪘㪺㪿㪼㫀㫃㫆㪾㫅㪸㫋㪿㫌㫊 㪘㪺㪿㪼㫀㫃㫆㪾㫅㪸㫋㪿㫌㫊 㪘㪺㪿㪼㫀㫃㫆㪾㫅㪸㫋㪿㫌㫊 㪘㪺㪿㪼㫀㫃㫆㪾㫅㪸㫋㪿㫌㫊 㪘㪺㪿㪼㫀㫃㫆㪾㫅㪸㫋㪿㫌㫊 㪘㪺㪿㪼㫀㫃㫆㪾㫅㪸㫋㪿㫌㫊 㪘㪺㪿㪼㫀㫃㫆㪾㫅㪸㫋㪿㫌㫊 㪘㪺㪿㪼㫀㫃㫆㪾㫅㪸㫋㪿㫌㫊 㪘㪺㪿㪼㫀㫃㫆㪾㫅㪸㫋㪿㫌㫊 㪘㪺㪿㪼㫀㫃㫆㪾㫅㪸㫋㪿㫌㫊 㪘㪺㪿㪼㫀㫃㫆㪾㫅㪸㫋㪿㫌㫊 㪘㪺㪿㪼㫀㫃㫆㪾㫅㪸㫋㪿㫌㫊 㪘㪺㪿㪼㫀㫃㫆㪾㫅㪸㫋㪿㫌㫊 㪘㪺㪿㪼㫀㫃㫆㪾㫅㪸㫋㪿㫌㫊 㪘㪺㪿㪼㫀㫃㫆㪾㫅㪸㫋㪿㫌㫊 㪘㪺㪿㪼㫀㫃㫆㪾㫅㪸㫋㪿㫌㫊 㪘㪺㪿㪼㫀㫃㫆㪾㫅㪸㫋㪿㫌㫊 㪘㪺㪿㪼㫀㫃㫆㪾㫅㪸㫋㪿㫌㫊 㪘㪺㪿㪼㫀㫃㫆㪾㫅㪸㫋㪿㫌㫊 㪘㪺㪿㪼㫀㫃㫆㪾㫅㪸㫋㪿㫌㫊 㪘㪺㪿㪼㫀㫃㫆㪾㫅㪸㫋㪿㫌㫊 㪘㪺㪿㪼㫀㫃㫆㪾㫅㪸㫋㪿㫌㫊 㪘㪺㪿㪼㫀㫃㫆㪾㫅㪸㫋㪿㫌㫊 㪘㪺㪿㪼㫀㫃㫆㪾㫅㪸㫋㪿㫌㫊 㪘㪺㪿㪼㫀㫃㫆㪾㫅㪸㫋㪿㫌㫊 㪘㪺㪿㪼㫀㫃㫆㪾㫅㪸㫋㪿㫌㫊 㪘㪺㪿㪼㫀㫃㫆㪾㫅㪸㫋㪿㫌㫊 㪘㪺㪿㪼㫀㫃㫆㪾㫅㪸㫋㪿㫌㫊 㪘㪺㪿㪼㫀㫃㫆㪾㫅㪸㫋㪿㫌㫊 㪩㪿㫆㪻㪼㫌㫊 㪩㪿㫆㪻㪼㫌㫊 㪩㪿㫆㪻㪼㫌㫊 㪩㪿㫆㪻㪼㫌㫊 㪩㪿㫆㪻㪼㫌㫊 㪩㪿㫆㪻㪼㫌㫊
㪺㪿㪸㫅㫂㪸㪼㫅㫊㫀㫊 㪺㪿㪸㫅㫂㪸㪼㫅㫊㫀㫊 㪖 㪺㫐㪸㫅㫆㫊㫋㫀㪾㫄㪸 㪾㫉㪸㪺㫀㫃㫀㫊 㫀㫄㪹㪼㫉㪹㫀㫊 㫃㫆㫅㪾㫀㫇㫀㫅㫅㫀㫊 㫄㪸㪺㫉㫆㫇㫋㪼㫉㫌㫊 㫄㪸㪺㫉㫆㫇㫋㪼㫉㫌㫊 㫄㪸㪺㫉㫆㫇㫋㪼㫉㫌㫊 㫄㪼㫃㪸㫅㫆㪾㪸㫊㫋㪼㫉 㫇㪼㫀㪿㫆㪼㫅㫊㫀㫊 㫉㪿㫆㫄㪹㪼㫌㫊 㫉㪿㫆㫄㪹㪼㫌㫊 㫉㪿㫆㫄㪹㪼㫌㫊 㫉㪿㫆㫄㪹㪼㫌㫊 㫉㪿㫆㫄㪹㪼㫌㫊 㫉㪿㫆㫄㪹㪼㫌㫊 㫉㪿㫆㫄㪹㪼㫌㫊 㫉㪿㫆㫄㪹㪼㫌㫊 㫋㪸㪹㫀㫉㪸㩷㪼㫉㫐㫋㪿㫉㫆㫇㫋㪼㫉㫌㫊 㫋㪸㪹㫀㫉㪸㩷㫅㪸㫂㪸㫄㫌㫉㪸㪼 㫋㪸㪹㫀㫉㪸㩷㫋㪸㪹㫀㫉㪸 㫋㪸㪹㫀㫉㪸㩷㫋㪸㪹㫀㫉㪸 㫋㫆㫅㫂㫀㫅㪼㫅㫊㫀㫊 㫋㫆㫅㫂㫀㫅㪼㫅㫊㫀㫊 㫋㫆㫅㫂㫀㫅㪼㫅㫊㫀㫊 㫐㪸㫄㪸㫋㫊㫌㫋㪸㪼 㫐㪸㫄㪸㫋㫊㫌㫋㪸㪼 㫐㪸㫄㪸㫋㫊㫌㫋㪸㪼 㫋㫐㫇㫌㫊 㪸㫋㫉㪼㫄㫀㫌㫊㩷㪸㫋㫉㪼㫄㫀㫌㫊 㪽㪸㫅㪾㫀 㪽㪸㫅㪾㫀 㪸㫋㫉㪼㫄㫀㫌㫊㩷㫊㫌㫀㪾㪼㫅㫊㫀㫊 㫅㫆㫋㪸㫋㫌㫊 㫅㫆㫋㪸㫋㫌㫊
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㫇㪼㫉㪽㪸㫄㫀㫃㫐㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷 㪪㫌㫇㪼㫉㪽㪸㫄㫀㫃㫐㩷㪚㫐㫇㫉㫀㫅㫆㫀㪻㪼㪸 㪚㫐㫇㫉㫀㫅㫀㪻㪸㪼 㩷㩷㪘㪺㪿㪼㫀㫃㫆㪾㫅㪸㫋㪿㫀㫅㪸㪼
㪫㪸㪹㫃㪼㩷㪍㪅㪈㪈㩷㩷㪦㫉㪻㪼㫉㩷㪚㪰㪧㪩㪠㪥㪠㪝㪦㪩㪤㪜㪪㩷
㪺㫐㪸㫅㫆㫊㫋㫀㪾㫄㪸 㪧㫊㪼㫌㪻㫆㫇㪼㫉㫀㫃㪸㫄㫇㫌㫊 㪸㫋㫉㪼㫄㫀㫌㫊 㪸㫋㫉㪼㫄㫀㫌㫊㩷㪽㪸㫅㪾㫀 㪸㫋㫉㪼㫄㫀㫌㫊 㫊㫌㫀㪾㪼㫅㫊㫀㫊 㪸㫋㫉㪼㫄㫀㫌㫊㩷㫊㫌㫀㪾㪼㫅㫊㫀㫊 㫊㫌㫀㪾㪼㫅㫊㫀㫊
㪘㪺㪸㫅㫋㪿㫆㫉㪿㫆㪻㪼㫌㫊
㪘㫂㪸㪿㫀㫉㪼㪄㫋㪸㪹㫀㫉㪸 㪪㪼㪹㫆㫊㪿㫀㪄㫋㪸㪹㫀㫉㪸
㫉㪿㫆㫄㪹㪼㪸 㫉㪿㫆㫄㪹㪼㪸
㫄㫆㫉㫀㫆㫂㪸㪼 㪘㪺㪸㫅㫋㪿㫆㫉㪿㫆㪻㪼㫌㫊 㫉㪿㫆㫄㪹㪼㪸
㪈㪋㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪈㪋㪪㪫
㪋㪋
㪋㪎
㪋㪍 㪋㪍
㪝㪃㩷㪤
㪋㪍
㪋㪪㪤㩷㪂㩷㪋㪉㪪㪫
㪋㪍
㪝㪃㩷㪤
㪝
㪋㪪㪤㩷㪂㩷㪋㪉㩷㪪㪫㪆㪘
㪋㪍 㪋㪍
㪝㪃㩷㪤
㪋㩷㪤㪆㪪㪤㩷㪂㩷㪋㪉㩷㪪㪫㪆㪘
㪋㩷㪤㪆㪪㪤㩷㪂㩷㪋㪉㩷㪪㪫㪆㪘
㪋㩷㪪㪤㩷㪂㩷㪋㪉㩷㪪㪫㪆㪘 㪋㪪㪤㩷㪂㩷㪋㪉㪪㪫
㪉㪏㩷㪤㪆㪪㪤㩷㪂㩷㪈㪍㩷㪪㪫㪆㪘
㪋㪋
㪈㪉㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪈㪍㩷㪪㪫㪆㪘
㪉㪋㩷㪤㪆㪪㪤㩷㪂㩷㪉㪇㩷㪪㪫㪆㪘
㪤
㪋㪋
㪤
㪈㪉㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪈㪍㩷㪪㪫㪆㪘
㪈㪋㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪏㪪㪫㩷㪂㩷㪏㪘
㪋㪋
㪋㪋 㪋㪋
㪝
㪈㪋㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪈㪍㩷㪪㪫㪆㪘
㪈㪉㪤㩷㪂㩷㪉㪇㩷㪪㪤㪆㪪㪫㩷㪂㩷㪈㪉㪘
㪉㪏㩷㪤㪆㪪㪤㩷㪂㩷㪈㪍㩷㪪㪫㪆㪘 㪈㪋㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪈㪍㩷㪪㪫㪆㪘
㪉㪏㩷㪤㪆㪪㪤㩷㪂㩷㪈㪍㩷㪪㪫㪆㪘
㪈㪉㪤㩷㪂㩷㪉㪇㩷㪪㪤㪆㪪㪫㩷㪂㩷㪈㪉㪘
㪈㪋㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪈㪍㩷㪪㪫㪆㪘
㪈㪋㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪈㪋㪪㪫
㪈㪇㪤㩷㪂㩷㪉㪇㩷㪪㪤㪆㪪㪫㩷㪂㩷㪈㪋㪘
㪝
㪋㪋
㪤
㪋㪋
㪝㪃㩷㪤 㪋㪋
㪋㪋 㪋㪋
㪝㪃㩷㪤 㪝㪃㩷㪤 㪝㪃㩷㪤
㪋㪋
㪤
㪋㪋
㪋㪌 㪋㪍
㪝㪃㩷㪤
㪝㪃㩷㪤
㪉㪎㩷㪤㪆㪪㪤㩷㪂㩷㪉㪇㪪㪫
㪋㪋
㪝㪃㩷㪤
㪋㪋
㪋㪋
㪝㪃㩷㪤
㪝㪃㩷㪤
㪉㪐㩷㪤㪆㪪㪤㩷㪂㩷㪈㪍㪪㪫 㪉㪏㩷㪤㪆㪪㪤㩷㪂㩷㪈㪏㪪㪫
㪋㪋
㪝㪃㩷㪤
㪉㪏㩷㪤㪆㪪㪤㩷㪂㩷㪈㪍㩷㪪㪫㪆㪘
㪋㪋 㪋㪋
㪤 㪝㪃㩷㪤
㪉㪏㩷㪤㪆㪪㪤㩷㪂㩷㪈㪍㩷㪪㪫㪆㪘 㪈㪋㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪏㪪㪫㩷㪂㩷㪈㪇㪘
㪉㪋㩷㪤㪆㪪㪤㩷㪂㩷㪉㪇㩷㪪㪫㪆㪘 㪈㪋㪤㩷㪂㩷㪈㪏㪪㪤㩷㪂㩷㪈㪉㩷㪪㪫㪆㪘
㪋㪋 㪋㪋
㪝㪃㩷㪤 㪝㪃㩷㪤
㪈㪋㪤㩷㪂㩷㪈㪏㪪㪤㩷㪂㩷㪈㪉㩷㪪㪫㪆㪘 㪉㪏㩷㪤㪆㪪㪤㩷㪂㩷㪈㪍㩷㪪㪫㪆㪘
㪈㪍㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪈㪋㪪㪫
㪉㪏㩷㪤㪆㪪㪤㩷㪂㩷㪈㪍㩷㪪㪫㪆㪘
㪘㪺㪸㫅㫋㪿㫆㫉㪿㫆㪻㪼㫌㫊㩷㪸㫊㫄㫌㫊㫊㫀 㪘㪺㪸㫅㫋㪿㫆㫉㪿㫆㪻㪼㫌㫊
㪋㪉
㪝㪃㩷㪤 㪋㪋 㪋㪋
㪋㪋
㪝㪃㩷㪤
㪉㪋㩷㪤㪆㪪㪤㩷㪂㩷㪉㪇㩷㪪㪫㪆㪘
㪈㪋㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪈㪍㩷㪪㪫㪆㪘
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪝㪃㩷㪤 㪝㪃㩷㪤
㪋㪋 㪋㪋
㪝㪃㩷㪤
㪛 㪉㫅
㪝㪃㩷㪤
㪚 㪪㪼㫏
㪧㪸㫉㪸㪺㪿㪼㫀㫃㫆㪾㫅㪸㫋㪿㫌㫊
㪘㪺㪸㫅㫋㪿㫆㫉㪿㫆㪻㪼㫌㫊 㪘㪺㪸㫅㫋㪿㫆㫉㪿㫆㪻㪼㫌㫊㩷㪾㫉㪸㪺㫀㫃㫀㫊
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪌㪇
㪌㪇
㪌㪇
㪌㪇
㪌㪇 㪌㪇
㪎㪉
㪎㪉
㪍㪏
㪎㪉
㪎㪉
㪎㪉
㪎㪉 㪎㪉
㪎㪉
㪎㪉
㪎㪋
㪎㪋 㪎㪋
㪎㪋
㪎㪉
㪎㪉 㪎㪇
㪎㪋
㪎㪍
㪍㪏
㪎㪍 㪎㪉
㪎㪇
㪎㪉
㪍㪏
㪎㪉
㪉
㪉
㪐㪉 㪏㩷㫀㫅㩷㪼㫄㪹㫉㫐㫆
㪉㩷㩿㪍㩷㫀㫅㩷㪼㫄㪹㫉㫐㫆㪀
㪈㪅㪐㩷㪝㪛
㩿㪈㪅㪐㩷㪝㪛㪀
㩿㪉㪅㪊㪁㩷㪝㪚㪤㪃㩷㪉㪅㪇㩷㪝㪛㪀
㪐㪉 㪈㪌㩷㫀㫅㩷㪼㫄㪹㫉㫐㫆
㪏㪇
㪎㪍
㪎㪍
㪐㪋
㪐㪇 㪐㪉
㪏㪏
㪎㪋
㪎㪏
㪈㪅㪏㪁㩷㪝㪛
㪠 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪏㪏 㪏㩷㫀㫅㩷㪼㫄㪹㫉㫐㫆 㩷
㪏㪋
㪉
㪝 㪞 㪟 㪥㪝㪈 㪥㪝㪉 㪘㪾㪄 㪥㪦㪩㫊
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇 㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇 㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇 㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇 㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇 㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪦㪄㪉㪇㪃㩷㪪㪄㪈㪋㪈
㪦㪄㪈㪏
㪦㪄㪉㪇㪃㩷㪦㪄㪋㪏㪃㩷㪫㪄㪍㪃㩷㪫㪄㪈㪈
㪬㪄㪏㪇㪃㩷㪬㪄㪏㪈
㪬㪄㪏㪇㪃㩷㪬㪄㪏㪈 㪬㪄㪏㪇㪃㩷㪬㪄㪏㪈
㪬㪄㪏㪇㪃㩷㪬㪄㪏㪈
㪬㪄㪊㪊
㪣㪄㪐㪃㩷㪣㪄㪈㪈
㪦㪄㪉㪇 㪰㪄㪈㪌
㪬㪄㪉㪋
㪟㪄㪈㪐㪃㩷㪰㪄㪈㪌
㪣㪄㪐㪃㩷㪣㪄㪈㪈
㪟㪄㪈㪐㪃㩷㪰㪄㪈㪌 㪦㪄㪉㪇
㪟㪄㪉㪊㪃㩷㪰㪄㪈㪌
㪦㪄㪉㪇㪃㩷㪫㪄㪍㪃㩷㪫㪄㪈㪈
㪣㪄㪐㪃㩷㪣㪄㪈㪈
㪟㪄㪈㪐㪃㩷㪰㪄㪈㪌㪃㩷㪚㪄㪏㪊
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
㪢㫆㫉㪼㪸㩷㩿㪞㫆㪄㫊㪸㫅㪀
㪚㪿㫀㫅㪸㩷㩿㪣㫀㪸㫆㫅㫀㫅㪾㪀
㪡㪸㫇㪸㫅㩷㩿㪰㫆㫊㪿㫀㫀㩷㪩㪅㪀㩷
㪚㪿㫀㫅㪸㩷㩿㪱㪿㪼㫁㫀㪸㫅㪾㪀
㪡㪸㫇㪸㫅㩷㩿㪝㫌㫂㫌㫆㫂㪸㪀 㪚㪿㫀㫅㪸㩷㩿㪝㫌㫁㫀㪸㫅㪀㩷
㪡㪸㫇㪸㫅㩷㩿㪚㪿㫀㪹㪸㪀
㪢㫆㫉㪼㪸㩷㩿㪞㫆㪄㫊㪸㫅㪀
㪢㫆㫉㪼㪸㩷㩿㪜㫌㫀㪄㫉㫐㪼㫆㫅㪾㪀
㪚㪿㫀㫅㪸㩷㩿㪮㫌㪿㪸㫅㪀 㪢㫆㫉㪼㪸
㩿㪚㪿㫀㫅㪸㪀
㪚㪿㫀㫅㪸㩷㩿㪞㫌㫀㫃㫀㫅㪀
㪡㪸㫇㪸㫅㩷㩿㪣㪸㫂㪼㩷㪙㫀㫎㪸㪀
㪣㪄㪐㪃㩷㪣㪄㪈㪈
㪬㪄㪏㪇㪃㩷㪬㪄㪏㪈
㪦㪄㪉㪇
㪬㪄㪈㪏
㪦㪄㪉㪇 㪬㪄㪉㪋
㪦㪄㪉㪇㪃㩷㪪㪄㪈㪋㪈
㪣㪄㪐㪃㩷㪣㪄㪈㪇
㪣㪄㪐㪃㩷㪣㪄㪈㪈
㪟㪄㪈㪐 㪣㪄㪐
㪘㪄㪏㪌
㪰㪄㪈㪌
㪦㪄㪈㪏
㪡㪸㫇㪸㫅㩷㩿㪝㫌㫂㫌㫆㫂㪸㪀 㪦㪄㪉㪇 㪡㪸㫇㪸㫅㩷㩿㪰㫆㪻㫆㩷㪩㪅㪃㩷㪰㫆㫊㪿㫀㫀㩷㪩㪅㪀 㪦㪄㪉㪇㪃㩷㪦㪄㪋㪏㪃㩷㪫㪄㪍㪃㩷㪫㪄㪈㪈
㪡㪸㫇㪸㫅㩷㩿䌉䌢䌡䌲䌡䌫䌩㪀
㪡㪸㫇㪸㫅㩷㩿㪣㪸㫂㪼㩷㪙㫀㫎㪸㪀
㪡㪸㫇㪸㫅㩷㩿㪣㪸㫂㪼㩷㪙㫀㫎㪸㪀
㪪㫆㫌㫋㪿㩷㪢㫆㫉㪼㪸
㪪㫆㫌㫋㪿㩷㪢㫆㫉㪼㪸 㪪㫆㫌㫋㪿㩷㪢㫆㫉㪼㪸
㪪㫆㫌㫋㪿㩷㪢㫆㫉㪼㪸
㪢㫆㫉㪼㪸㩷㩿㪞㪼㫌㫄㩷㪩㪅㪀
㪢㫆㫉㪼㪸㩷㩿㪤㪸㪄㫉㫐㪼㫆㫅㪾㪀
㪡㪸㫇㪸㫅㩷㩿䌉䌢䌡䌲䌡䌫䌩㪀 㪚㪿㫀㫅㪸㩷㩿㪞㫌㫀㫃㫀㫅㪀
㪚㪿㫀㫅㪸㩷㩿㪘㫄㫌㫉㩷㪩㪅㪀
㪚㪿㫀㫅㪸㩷㩿㪮㫌㪿㪸㫅㪀
㪢㫆㫉㪼㪸㩷㩿㪜㫌㫀㪄㫉㫐㪼㫆㫅㪾㪀
㪚㪿㫀㫅㪸㩷㩿㪮㫌㪿㪸㫅㪀 㪡㪸㫇㪸㫅㩷㩿㪰㫆㪻㫆㩷㪩㪅㪀㩷
㪚㪿㫀㫅㪸㩷㩿㪮㫌㪿㪸㫅㪀
㪡㪸㫇㪸㫅㩷㩿㪣㪸㫂㪼㩷㪙㫀㫎㪸㪀
㪢㫆㫉㪼㪸㩷㩿㪪㪸㫄㪄㫉㫐㪼㪀
㪚㪿㫀㫅㪸㩷㩿㪟㫌㪹㪼㫀㪀
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
45
㪩㪿㫆㪻㪼㫌㫊 㪩㪿㫆㪻㪼㫌㫊 㪩㪿㫆㪻㪼㫌㫊 㪩㪿㫆㪻㪼㫌㫊 㪩㪿㫆㪻㪼㫌㫊 㪩㪿㫆㪻㪼㫌㫊 㪩㪿㫆㪻㪼㫌㫊 㪩㪿㫆㪻㪼㫌㫊 㪩㪿㫆㪻㪼㫌㫊 㪩㪿㫆㪻㪼㫌㫊 㪩㪿㫆㪻㪼㫌㫊 㪩㪿㫆㪻㪼㫌㫊 㪩㪿㫆㪻㪼㫌㫊 㪩㪿㫆㪻㪼㫌㫊 㪩㪿㫆㪻㪼㫌㫊 㪩㪿㫆㪻㪼㫌㫊 㪩㪿㫆㪻㪼㫌㫊 㪩㪿㫆㪻㪼㫌㫊 㪩㪿㫆㪻㪼㫌㫊 㪩㪿㫆㪻㪼㫌㫊 㪩㪿㫆㪻㪼㫌㫊 㪩㪿㫆㪻㪼㫌㫊 㪩㪿㫆㪻㪼㫌㫊 㪫㪸㫅㪸㫂㫀㪸 㪫㪸㫅㪸㫂㫀㪸 㪫㪸㫅㪸㫂㫀㪸 㪫㪸㫅㪸㫂㫀㪸 㪫㪸㫅㪸㫂㫀㪸 㪫㪸㫅㪸㫂㫀㪸 㪫㪸㫅㪸㫂㫀㪸 㪫㪸㫅㪸㫂㫀㪸 㪫㪸㫅㪸㫂㫀㪸 㪫㪸㫅㪸㫂㫀㪸 㪫㪸㫅㪸㫂㫀㪸 㪫㪸㫅㪸㫂㫀㪸 㪫㪸㫅㪸㫂㫀㪸 㪫㪸㫅㪸㫂㫀㪸 㪫㪸㫅㪸㫂㫀㪸 㪫㪸㫅㪸㫂㫀㪸 㪋㪏
㪝㪃㩷㪤
㪏㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪉㪇㪘 㪏㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪉㪇㪪㪫
㪋㪏 㪋㪏
㪐㪍 㪏㩷㩿㪈㪌㩷㫀㫅㩷㪼㫄㪹㫉㫐㫆㪀
㪏㪍
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇 㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪙㫆㫊㫅㫀㪸㪄㪟㪼㫉㫑㪼㪾㫆㫍㫀㫅㪸 㪩㫌㫊㫊㫀㪸㩷㩿㪛㫆㫅㩷㪩㪅㪀
㪟㫌㫅㪾㪸㫉㫐
㪝㫉㪸㫅㪺㪼 㪟㫌㫅㪾㪸㫉㫐
㪢㫆㫉㪼㪸㩷㩿㪞㪸㫅㪾㫎㫆㫅㪄㪻㫆㪀
㪚㪿㫀㫅㪸㪃㩷㪢㫆㫉㪼㪸㩷㩿㪞㫐㫆㫅㪾㪾㫀㪀
㪡㪸㫇㪸㫅㩷㩿㪦㫊㪸㫂㪸㪀
㪡㪸㫇㪸㫅㩷㩿㪪㪸㪾㪸㪀 㪡㪸㫇㪸㫅㩷㩿㪢㫆㪹㪼㪃㩷㪣㪸㫂㪼㩷㪙㫀㫎㪸㪀
㪡㪸㫇㪸㫅㩷㩿㪰㪸㫅㪸㪾㪸㫎㪸㪀
㪡㪸㫇㪸㫅㩷㩿㪦㫊㪸㫂㪸㪀
㪡㪸㫇㪸㫅㩷㩿㪝㫌㫂㫌㫆㫂㪸㪀
㪚㪿㫀㫅㪸㩷㩿㪟㫌㪹㪼㫀㪀
㪢㫆㫉㪼㪸㩷㩿㪞㫆㪄㫊㪸㫅㪀 㪢㫆㫉㪼㪸㩷㩿㪡㪸㫅㪾㪄㪿㪼㫌㫅㪾㪀
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪏㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪉㪏㪪㪫 㪏㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪉㪇㪪㪫
㪋㪏
㪈㪇㪤㩷㪂㩷㪈㪏㪪㪤㩷㪂㩷㪉㪇㩷㪪㪫㪆㪘
㪋㪏
㪋㪏
㪏㪤㩷㪂㩷㪉㪇㩷㪪㪤㪆㪪㪫㩷㪂㩷㪉㪇㪘
㪋㪏
㪉㪏㩷㪤㪆㪪㪤㩷㪂㩷㪉㪇㩷㪪㪫㪆㪘
㪏㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪉㪇㪪㪫 㪈㪇㪤㩷㪂㩷㪈㪏㪪㪤㩷㪂㩷㪉㪇㩷㪪㪫㪆㪘
㪋㪏 㪋㪏
㪏㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪉㪇㪪㪫 㪏㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪈㪍㪪㪫㩷㪂㩷㪋㪘
㪏㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪉㪇㪪㪫
㪋㪏
㪋㪏
㪉㪏㩷㪤㪆㪪㪤㩷㪂㩷㪉㪇㩷㪪㪫㪆㪘
㪋㪏
㪋㪏 㪋㪏
㪈㪇㪤㩷㪂㩷㪈㪏㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪈㪋㪘 㪉㪋㩷㪤㪆㪪㪤㩷㪂㩷㪉㪋㩷㪪㪫㪆㪘㩷
㪋㪏 㪋㪏
㪏㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪈㪏㪪㪫㩷㪂㩷㪉㪘 㪏㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪈㪏㪪㪫㩷㪂㩷㪉㪘
㪈㪉㪤㩷㪂㩷㪉㪏㪪㪤㩷㪂㩷㪏㩷㪪㪫㪆㪘 㪏㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪈㪏㪪㪫㩷㪂㩷㪉㪘
㪋㪏
㪤 㪋㪏 㪋㪏
㪋㪏
㪝㪃㩷㪤
㪈㪉㪤㩷㪂㩷㪉㪉㪪㪤㩷㪂㩷㪏㪪㪫㩷㪂㩷㪍㪘 㪉㪏㩷㪤㪆㪪㪤㩷㪂㩷㪉㪇㩷㪪㪫㪆㪘 㪈㪋㪤㩷㪂㩷㪉㪏㪪㪤㩷㪂㩷㪍㩷㪪㪫㪆㪘
㪋㪏
㪋㪏 㪋㪏 㪋㪏
㪎㪍
㪍㪏
㪎㪍 㪎㪍
㪎㪍
㪎㪍
㪎㪍 㪎㪍
㪎㪍
㪎㪍
㪎㪉
㪎㪍
㪎㪍 㪎㪍
㪎㪍
㪏㪏
㪎㪍 㪐㪇
㪏㪉
㪐㪍
㪐㪍
㪐㪍 㪐㪉
㪎㪍
㪐㪍
㪐㪍
㪏㪉
㪐㪋 㪐㪋
㪐㪋
㪐㪇
㪉㪄㪋
㪈㪄㪊 㪉
㪋
㪉
㪉
㪋
㪉㪄㪊 㪉㪄㪊
㩿㪉㪅㪈㪁㩷㪝㪚㪤㪀
㩿㪉㪅㪈㪁㩷㪝㪚㪤䇮㪉㪅㪈㪝㪛㪀
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇 㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇 㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇 㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇 㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
㪣㪄㪐㪃㩷㪣㪄㪈㪈
㪣㪄㪐㪃㩷㪣㪄㪈㪈
㪘㪄㪏㪊
㪬㪄㪎㪈 㪬㪄㪎㪈
㪬㪄㪉㪉
㪟㪄㪈㪐
㪮㪄 㪊 㪋
㪣㪄㪐㪃㩷㪣㪄㪈㪇 㪣㪄㪊㪏
㪰㪄㪈㪌
㪬㪄㪉㪋
㪟㪄㪈㪐
㪪㪄㪎㪎 㪩㪄㪉㪉
㪤㪄 㪍 㪋
㪟㪄㪉㪃㩷㪟㪄㪋 㪙㪄㪌㪋
㪘㪄㪏㪍
㪬㪄㪉㪋
㪦㪄㪈㪏
㪪㪄㪐㪊 㪦㪄㪉㪇㪃㩷㪦㪄㪋㪏㪃㩷㪫㪄㪋㪃㩷㪫㪄㪈㪈
㪢㪄㪉㪉
㪢㪄㪉㪉
㪦㪄㪉㪇
㪟㪄㪈㪐㪃㩷㪰㪄㪈㪌
㪣㪄㪐㪃㩷㪣㪄㪈㪇 㪣㪄㪐㪃㩷㪣㪄㪈㪈
㪢㫆㫉㪼㪸
㪢㫆㫉㪼㪸
㪡㪸㫇㪸㫅㩷㩿㪤㫀㪼㪀 㪢㫆㫉㪼㪸㩷㩿㪞㪸㫅㪾㫎㫆㫅㪄㪻㫆㪀
㪡㪸㫇㪸㫅
㪡㪸㫇㪸㫅㩷㩿㪝㫌㫂㫌㫆㫂㪸㪃㩷㪟㫐㫆㪾㫆㪀
㪡㪸㫇㪸㫅㩷㩿㪣㪸㫂㪼㩷㪙㫀㫎㪸㪀
㪬㪄㪎㪈
㪣㪄㪈㪌
㪪㪄㪐㪊 㪬㪄㪉㪋
㪬㪄㪈㪊
㪦㪄㪉㪇㪃㩷㪦㪄㪋㪏㪃㩷㪫㪄㪍㪃㩷㪫㪄㪈㪈
㪦㪄㪈㪏
㪢㫆㫉㪼㪸㩷㩿㪞㫆㪄㫊㪸㫅㪀 㪣㪄㪐㪃㩷㪣㪄㪈㪇 㪡㪸㫇㪸㫅㩷㩿㪣㪸㫂㪼㩷㪙㫀㫎㪸㪃㩷㪝㫌㫂㫌㫆㫂㪸㪀 㪦㪄㪉㪇㪃㩷㪦㪄㪋㪏㪃㩷㪫㪄㪍㪃㩷㪫㪄㪈㪈
㪢㫆㫉㪼㪸㩷㩿㪞㫐㫆㫅㪾㫊㪸㫅㪾㪹㫌㫂㪄㪻㫆㪀 㪬㪄㪉㪋
㪢㫆㫉㪼㪸㩷㩿㪞㫆㫅㪾㪄㫁㫌㪀
㪢㫆㫉㪼㪸㩷㩿㪡㪸㫅㪾㪄㪿㪼㫌㫅㪾㪀
㩿㪫㪸㫀㫎㪸㫅㪀
㪚㪿㫀㫅㪸㩷㩿㪪㪿㪸㫅㪾㪿㪸㫀㪀 㪫㪸㫀㫎㪸㫅
㪚㪿㫀㫅㪸㩷㩿㪪㪿㪸㫅㪾㪿㪸㫀㪀
㪚㪿㫀㫅㪸㩷㩿㪮㫌㪿㪸㫅㪀
㪚㪿㫀㫅㪸㩷㩿㪪㪿㪸㫅㪻㫆㫅㪾㪀
㪢㫆㫉㪼㪸㩷㩿㪞㫆㪄㫊㪸㫅㪀 㪚㪿㫀㫅㪸㩷㩿㪢㫌㫅㫄㫀㫅㪾㪀
㪚㪿㫀㫅㪸㩷㩿㪪㫀㪺㪿㫌㪸㫅㪀
㪚㪿㫀㫅㪸㩷㩿㪟㫌㪹㪼㫀㪀 㪎㪍
㪐㪍 㪏㪍 㪏㪋
㪉㪅㪈㩷㪝㪛
㩷㩷㩷㩷㩿㩷㪉㪅㪉㪁㩷㪝㪚㪤㪀
㪘㪚㪥㪔㪌㪇 㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇 㪘㪚㪥㪔㪌㪇
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪚㪿㫀㫅㪸㩷㩿㪘㫄㫌㫉㩷㪩㪅㪀㪃㩷㪢㫆㫉㪼㪸㩷
㪝㪃㩷㪤
㪧㫊㪼㫌㪻㫆㫇㪼㫉㫀㫃㪸㫄㫇㫌㫊㩷㫃㫀㪾㪿㫋㫀 㫌㫐㪼㫂㫀㫀 㫊㫀㫅㪼㫅㫊㫀㫊 㫊㫀㫅㪼㫅㫊㫀㫊 㫊㫀㫅㪼㫅㫊㫀㫊 㪿㫀㫄㪸㫅㫋㪼㪾㫌㫊
㪏㪇 㪏㪉 㪎㪋
㪈㪄㪉 㪉
㪉
㪉
㪎㪍 㪉㩷㩿㪉㩷㫀㫅㩷㪼㫄㪹㫉㫐㫆㪀
㪎㪍
㪐㪍 㪎㪍
㪐㪍
㪐㪍
㪐㪍
㪠 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪋㪏 㪏㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪉㪇㪪㪫
㪊㪋㩷㪤㪆㪪㪤㩷㪂㩷㪈㪋㩷㪪㪫㪆㪘 㪈㪋㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪈㪉㪪㪫㩷㪂㩷㪈㪇㪘
㪏㪇
㪎㪍
㪎㪍
㪎㪍 㪎㪍
㪎㪍
㪎㪍
㪎㪍
㪏㪉
㪌㪇 㪎㪍
㪝 㪞 㪟 㪥㪝㪈 㪥㪝㪉 㪘㪾㪄 㪥㪦㪩㫊
㪋㪏
㪋㪏 㪋㪏
㪝㪃㩷㪤
㪝
㪝㪃㩷㪤 㪝㪃㩷㪤
㪏㪤㩷㪂㩷㪉㪇㩷㪪㪤㪆㪪㪫㩷㪂㩷㪉㪇㪘
㪋㪏
㪝㪃㩷㪤 㪝㪃㩷㪤
㪍㪤㩷㪂㩷㪉㪍㪪㪤㩷㪂㩷㪈㪍㪘
㪏㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪉㪇㪪㪫 㪏㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪉㪇㪘
㪋㪏 㪋㪏
㪋㪏
㪈㪋㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪉㪇㪪㪫
㪋㪏
㪈㪋㪤㩷㪂㩷㪉㪋㩷㪪㪤㪆㪪㪫㩷㪂㩷㪈㪇㪘 㪍㪤㩷㪂㩷㪉㪍㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪈㪉㪘
㪈㪏㪤㩷㪂㩷㪈㪇㪪㪤㩷㪂㩷㪉㪇㪪㪫
㪋㪏
㪋㪏 㪋㪏
㪉㪏㩷㪤㪆㪪㪤㩷㪂㩷㪉㪇㩷㪪㪫㪆㪘
㪈㪇㪤㩷㪂㩷㪉㪋㪪㪤㩷㪂㩷㪈㪋㪪㪫
㪋㪪㪤㩷㪂㩷㪋㪉㩷㪪㪫㪆㪘 㪉㪏㩷㪤㪆㪪㪤㩷㪂㩷㪉㪇㩷㪪㪫㪆㪘
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪋㪏
㪝㪃㩷㪤
㪋㪍 㪋㪏
㪛 㪉㫅
㪝㪃㩷㪤 㪝㪃㩷㪤
㪚 㪪㪼㫏
㫊㪼㫉㫀㪺㪼㫌㫊
㪸㫄㪸㫉㫌㫊
㫆㪺㪼㫃㫃㪸㫋㫌㫊㩷㫊㫄㫀㫋㪿㫀㫀
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪿㫀㫄㪸㫅㫋㪼㪾㫌㫊㩷㪺㪿㫀㫀 㪿㫀㫄㪸㫅㫋㪼㪾㫌㫊㩷㪺㪿㫀㫀 㪿㫀㫄㪸㫅㫋㪼㪾㫌㫊㩷㪿㫀㫄㪸㫅㫋㪼㪾㫌㫊 㪿㫀㫄㪸㫅㫋㪼㪾㫌㫊㩷㪿㫀㫄㪸㫅㫋㪼㪾㫌㫊 㪧㪸㫉㪸㪺㪿㪼㫀㫃㫆㪾㫅㪸㫋㪿㫌㫊㩷㪿㫀㫄㪸㫅㫋㪼㪾㫌㫊 㪝㪃㩷㪤 㫀㫅㫋㪼㫉㫄㪼㪻㫀㪸㩷㫀㫅㫋㪼㫉㫄㪼㪻㫀㪸 㪘㪺㪿㪼㫀㫃㫆㪾㫅㪸㫋㪿㫌㫊 㪝㪃㩷㪤 㫀㫅㫋㪼㫉㫄㪼㪻㫀㪸㩷 㫊㫌㪹㫊㫇㪅 㪘㪺㪿㪼㫀㫃㫆㪾㫅㪸㫋㪿㫌㫊 㪝㪃㩷㪤 㫂㫆㫉㪼㪼㫅㫊㫀㫊 㫂㫆㫉㪼㪼㫅㫊㫀㫊 㪘㪺㪿㪼㫀㫃㫆㪾㫅㪸㫋㪿㫌㫊㩷㫃㫀㫄㪹㪸㫋㪸 㫃㪸㫅㪺㪼㫆㫃㪸㫋㪸 㪘㪺㪿㪼㫀㫃㫆㪾㫅㪸㫋㪿㫌㫊 㪝㪃㩷㪤 㫃㪸㫅㪺㪼㫆㫃㪸㫋㪸 㪘㪺㪿㪼㫀㫃㫆㪾㫅㪸㫋㪿㫌㫊 㫃㫀㫄㪹㪸㫋㪸 㪘㪺㪿㪼㫀㫃㫆㪾㫅㪸㫋㪿㫌㫊 㪝㪃㩷㪤 㫃㫀㫄㪹㪸㫋㪸 㪘㪺㪿㪼㫀㫃㫆㪾㫅㪸㫋㪿㫌㫊 㪝㪃㩷㪤 㫃㫀㫄㪹㪸㫋㪸 㫊㫀㪾㫅㫀㪽㪼㫉 㫊㫀㪾㫅㫀㪽㪼㫉 㪘㪺㪿㪼㫀㫃㫆㪾㫅㪸㫋㪿㫌㫊 㫊㫆㫄㫁㫀㫅㪼㫅㫊㫀㫊
㫊㫇㪅 㫊㫇㪅 㫊㫇㪅
㫅㫆㫋㪸㫋㫌㫊 㫆㪺㪼㫃㫃㪸㫋㫌㫊 㫆㪺㪼㫃㫃㪸㫋㫌㫊 㫆㪺㪼㫃㫃㪸㫋㫌㫊㩷㫂㫌㫉㫌㫄㪼㫌㫊 㫆㪺㪼㫃㫃㪸㫋㫌㫊㩷㫂㫌㫉㫌㫄㪼㫌㫊 㫆㪺㪼㫃㫃㪸㫋㫌㫊㩷㫂㫌㫉㫌㫄㪼㫌㫊 㫆㪺㪼㫃㫃㪸㫋㫌㫊㩷㫂㫌㫉㫌㫄㪼㫌㫊 㫆㪺㪼㫃㫃㪸㫋㫌㫊㩷㫆㪺㪼㫃㫃㪸㫋㫌㫊 㫆㪺㪼㫃㫃㪸㫋㫌㫊㩷㫆㪺㪼㫃㫃㪸㫋㫌㫊 㫆㪺㪼㫃㫃㪸㫋㫌㫊㩷㫆㪺㪼㫃㫃㪸㫋㫌㫊 㫇㫊㪼㫌㪻㫆㫊㪼㫉㫀㪺㪼㫌㫊 㫊㪼㫉㫀㪺㪼㫌㫊㩷㪸㫄㪸㫉㫌㫊 㫊㪼㫉㫀㪺㪼㫌㫊㩷㪸㫄㪸㫉㫌㫊 㫊㪼㫉㫀㪺㪼㫌㫊㩷㪸㫄㪸㫉㫌㫊 㫊㪼㫉㫀㪺㪼㫌㫊㩷㪸㫄㪸㫉㫌㫊 㫊㪼㫉㫀㪺㪼㫌㫊㩷㪸㫄㪸㫉㫌㫊 㫊㪼㫉㫀㪺㪼㫌㫊㩷㫊㪼㫉㫀㪺㪼㫌㫊 㫊㫀㫅㪼㫅㫊㫀㫊 㫊㫀㫅㪼㫅㫊㫀㫊 㫊㫀㫅㪼㫅㫊㫀㫊
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㫇㪼㫉㪽㪸㫄㫀㫃㫐㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷
㪫㪸㪹㫃㪼㩷㪍㪅㪈㪈㩷㩷㪦㫉㪻㪼㫉㩷㪚㪰㪧㪩㪠㪥㪠㪝㪦㪩㪤㪜㪪㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀
46
㪘㪺㫉㫆㫊㫊㫆㪺㪿㪼㫀㫃㫌㫊 㪘㪺㫉㫆㫊㫊㫆㪺㪿㪼㫀㫃㫌㫊 㪘㪺㫉㫆㫊㫊㫆㪺㪿㪼㫀㫃㫌㫊 㪘㪺㫉㫆㫊㫊㫆㪺㪿㪼㫀㫃㫌㫊 㪘㪺㫉㫆㫊㫊㫆㪺㪿㪼㫀㫃㫌㫊 㪘㪺㫉㫆㫊㫊㫆㪺㪿㪼㫀㫃㫌㫊 㪘㪺㫉㫆㫊㫊㫆㪺㪿㪼㫀㫃㫌㫊 㪘㪺㫉㫆㫊㫊㫆㪺㪿㪼㫀㫃㫌㫊 㪘㪺㫉㫆㫊㫊㫆㪺㪿㪼㫀㫃㫌㫊 㪘㫌㫃㫆㫇㫐㪾㪼 㪙㪸㫃㪸㫅㫋㫀㫆㪺㪿㪼㫀㫃㫆㫊 㪙㪸㫃㪸㫅㫋㫀㫆㪺㪿㪼㫀㫃㫆㫊 㪙㪸㫉㪹㫆㪻㪼㫊 㪙㪸㫉㪹㫆㫅㫐㫄㫌㫊 㪙㪸㫉㪹㫆㫅㫐㫄㫌㫊 㪙㪸㫉㪹㫆㫅㫐㫄㫌㫊 㪙㪸㫉㪹㫆㫅㫐㫄㫌㫊 㪙㪸㫉㪹㫌㫊 㪙㪸㫉㪹㫌㫊 㪙㪸㫉㪹㫌㫊 㪙㪸㫉㪹㫌㫊 㪙㪸㫉㪹㫌㫊 㪙㪸㫉㪹㫌㫊 㪙㪸㫉㪹㫌㫊 㪙㪸㫉㪹㫌㫊 㪙㪸㫉㪹㫌㫊 㪙㪸㫉㪹㫌㫊 㪙㪸㫉㪹㫌㫊 㪙㪸㫉㪹㫌㫊 㪙㪸㫉㪹㫌㫊 㪙㪸㫉㪹㫌㫊 㪙㪸㫉㪹㫌㫊 㪙㪸㫉㪹㫌㫊 㪙㪸㫉㪹㫌㫊 㪙㪸㫉㪹㫌㫊 㪙㪸㫉㪹㫌㫊 㪙㪸㫉㪹㫌㫊
㩷㩷㪙㪸㫉㪹㫀㫅㪸㪼
㪫㪸㫅㪸㫂㫀㪸
㫎㪼㫅㪺㪿㫆㫎㪼㫅㫊㫀㫊㩷㪹㪼㫀㫁㫀㪸㫅㪾㪼㫅㫊㫀㫊 㪻㪼㪸㫌㫉㪸㫋㫌㫊 㪽㪸㫊㪺㫀㪸㫋㫌㫊 㪿㪼㫄㫀㫊㫇㫀㫅㫌㫊㩷㪿㪼㫄㫀㫊㫇㫀㫅㫌㫊 㫀㫉㫀㪻㪼㫊㪺㪼㫅㫊㩷㫑㪿㫌㫁㫀㪸㫅㪾㪼㫅㫊㫀㫊 㫃㪸㪹㫀㪸㫋㫌㫊 㫇㪸㫉㪸㫃㫃㪼㫅㫊 㫐㫌㫅㫅㪸㫅㪼㫅㫊㫀㫊 㫐㫌㫅㫅㪸㫅㪼㫅㫊㫀㫊 㪿㫌㪼㪾㪼㫃㫀 㫄㪼㫃㪸㫅㫆㫇㫋㪼㫉㫌㫊 㫄㪼㫃㪸㫅㫆㫇㫋㪼㫉㫌㫊 㪺㪸㫉㫅㪸㫋㫀㪺㫌㫊 㪸㫃㫋㫌㫊 㪾㫆㫅㫀㫆㫅㫆㫋㫌㫊 㪾㫆㫅㫀㫆㫅㫆㫋㫌㫊 㫊㪺㪿㫎㪸㫅㪼㫅㪽㪼㫃㪻㫀㫀 㪸㪹㫃㪸㪹㪼㫊 㪸㫄㪸㫋㫆㫃㫀㪺㫌㫊 㪸㫅㪻㫉㪼㫎㫀 㪸㫅㪼㫄㪸 㪸㫅㫆㫇㫃㫌㫊 㪸㫅㫆㫇㫃㫌㫊 㪸㫉㪾㪼㫅㫋㪼㫌㫊 㪹㪸㫉㪹㫌㫊 㪹㫀㪾㫆㫉㫅㪼㫀 㪹㫉㪼㫍㫀㫇㫀㫅㫅㫀㫊 㪹㫐㫅㫅㫀 㪹㫐㫅㫅㫀㩷㪹㫐㫅㫅㫀 㪹㫐㫅㫅㫀㩷㪹㫐㫅㫅㫀 㪹㫐㫅㫅㫀㩷㫆㪺㪺㫀㪻㪼㫅㫋㪸㫃㫀㫊 㪹㫐㫅㫅㫀㩷㫎㪸㫃㪻㫉㫆㫅㫀 㪺㪸㫃㫀㪻㫌㫊 㪺㪸㫃㫃㪼㫅㫊㫀㫊 㪺㪸㫅㫀㫊 㪺㫐㪺㫃㫆㫃㪼㫇㫀㫊 㪼㫉㫌㪹㪼㫊㪺㪼㫅㫊
㫋㪸㫅㪸㪾㫆
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㫇㪼㫉㪽㪸㫄㫀㫃㫐㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷
㫊㪼㫋㫀㫍㫀㫄㪼㫅㫊㫀㫊
㪧㫌㫅㫋㫀㫌㫊 㪧㫌㫅㫋㫀㫌㫊㩷 㪧㫌㫅㫋㫀㫌㫊㩷 㪧㫌㫅㫋㫀㫌㫊
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪫㪸㪹㫃㪼㩷㪍㪅㪈㪈㩷㩷㪦㫉㪻㪼㫉㩷㪚㪰㪧㪩㪠㪥㪠㪝㪦㪩㪤㪜㪪㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀
㪝㪃㩷㪤
㪝
㪝㪃㩷㪤
㪝㪃㩷㪤
㪝
㪝㪃㩷㪤
㪝㪃㩷㪤
㪝
㪈㪍㪇
㪊㪅㪌㩷㪝㪛
㩿㪪㪅㪜㪅㩷㪘㫊㫀㪸㪀
㩿㪪㪅㪜㪅㩷㪘㫊㫀㪸㪀
㪞㫌㫀㫅㪼㪸㪃㩷㪘㪽㫉㫀㪺㪸
㩿㪘㫊㫀㪸㪀
㪫㪿㪸㫀㫃㪸㫅㪻
㪫㪿㪸㫀㫃㪸㫅㪻㩷㩿㪘㫐㫌㫋㪿㪸㫐㪸㪀 㪫㪿㪸㫀㫃㪸㫅㪻㩷㩿㪘㫐㫌㫋㪿㪸㫐㪸㪀
㪘㪚㪥㪔㪌㪇
㪪㪅㩷㪘㪽㫉㫀㪺㪸
㪜㫋㪿㫀㫆㫇㫀㪸㩷㩿㪘㫃㫍㪼㫉㫆㩷㪩㪅㪀
㪪㪅㩷㪘㪽㫉㫀㪺㪸 㪋㪯㪃㩷㪘㪚㪥㪔㪈㪇㪇 㪪㪅㩷㪘㪽㫉㫀㪺㪸
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇 㪘㪚㪥㪔㪌㪇
㪋㪯㪃㩷㪘㪚㪥㪔㪈㪇㪇 㪠㫅㪻㫀㪸㩷㩿㪮㪅㩷㪞㪿㪸㫋㫊㪀
㪘㪚㪥㪔㪌㪇
㪈㪇㪇
㪈㪇㪇
㪉㪍㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪊㪍㪪㪫㩷㪂㩷㪉㪉㪘
㪎㪍㪤㩷㪂㩷㪉㪋㪪㪫㩷㪂㩷㪌㪇㪘
㪈㪋㪉
㪉㪉㪍
㪉㪌㪇 㪈㪎㪏
㪋
㪋㪯
㪋㪯
㪍㪯
㪍㪯 㪋㪯
㪍㪯 㪍㪯
㪈㪇㪇 㪈㪇㪇 㪈㪌㪇
㪞㫌㫀㫅㪼㪸 㪪㪅㩷㪘㪽㫉㫀㪺㪸
㪘㪽㫉㫀㪺㪸
㪤㪸㪺㪼㪻㫆㫅㫀㪸
㪠㫊㫉㪸㪼㫃㩷㩿㪡㫆㫉㪻㪸㫅㩷㪩㪅㪀
㪪㪅㩷㪘㪽㫉㫀㪺㪸 㪘㪽㫉㫀㪺㪸
㪮㪅㩷㪘㪽㫉㫀㪺㪸
㪮㪅㩷㪘㪽㫉㫀㪺㪸㪃㩷㪞㫌㫀㫅㪼㪸
㪜㫋㪿㫀㫆㫇㫀㪸㩷㩿㪙㪸㫉㫆㩷㪩㪅㪀 㪜㫋㪿㫀㫆㫇㫀㪸㩷㩿㪣㪅㩷㪘㪹㪸㫐㪸㪀
㪍㪯㪃㩷㪘㪚㪥㪔㪈㪌㪇 㪜㫋㪿㫀㫆㫇㫀㪸㩷㩿㪣㪅㩷㪘㪹㪸㫐㪸㪀
㪘㪚㪥㪔㪌㪇
㪍㪯 㪈㪉㪍
㪉 㪉
㪍㪯
㪉㪇㪇 㪉㪉㪇
㪉㪉㪇
㪐㪍
㪈㪌㪇
㪌㪇㩷㪤㪆㪪㪤㩷㪂㩷㪈㪇㪇㪘 㪎㪇㩷㪤㪆㪪㪤㩷㪂㩷㪏㪇㪘
㪈㪌㪇 㪈㪌㪇
㪐㪍 㪏㪏
㪈㪋㪏
㪎㪇㩷㪤㪆㪪㪤㩷㪂㩷㪏㪇㩷㪪㪫㪆㪘
㪈㪌㪇
㪈㪏㪤㩷㪂㩷㪊㪇㪪㪤 㪋㪇㩷㪤㪆㪪㪤㩷㪂㩷㪏㩷㪪㪫㪆㪘
㪋㪏 㪋㪏
㪉
㪉
㪉㪅㪉㩷㪙㪝㪘
㩿㪉㪅㪉㩷㪝㪛㪀
㪉㪅㪈㪁㩷㪝㪚㪤
㪘㪚㪥㪔㪌㪇 㪚㪿㫀㫅㪸㩷㩿㪪㫀㪺㪿㫌㪸㫅㪀 㪋㪯㪃㩷㪘㪚㪥㪔㪈㪇㪇 㪙㫆㫊㫅㫀㪸
㪚㪿㫀㫅㪸㩷㩿㪰㫌㫅㫅㪸㫅㪀
㪚㪿㫀㫅㪸㩷㩿㪞㫌㪸㫅㪾㪻㫆㫅㪾㩷㪀
㪫㪸㫀㫎㪸㫅
㪚㪿㫀㫅㪸㩷㩿㪞㫌㪸㫅㪾㪻㫆㫅㪾㩷㪀
㪚㪿㫀㫅㪸㩷㩿㪞㫌㪸㫅㪾㪻㫆㫅㪾㩷㪀 㪚㪿㫀㫅㪸㩷㩿㪞㫌㪸㫅㪾㫏㫀㪀㩷
㪥㪅㪜㪅㩷㪫㪿㪸㫀㫃㪸㫅㪻
㪚㪿㫀㫅㪸㩷㩿㪞㫌㪸㫅㪾㪻㫆㫅㪾㩷㪀
㪡㪸㫇㪸㫅㩷㩿㪚㪿㫀㪹㪸㪀
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪪㪅㩷㪘㪽㫉㫀㪺㪸 㪋㪯㪃㩷㪘㪚㪥㪔㪈㪇㪇 㪝㫉㪸㫅㪺㪼
㪐㪋
㪐㪉
㪉
㪍
㪉
㪉㪅㪌㩷㪝㪛
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇 㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪌㪇 㪈㪇㪇
㪋㪋㩷㪤㪆㪪㪤㩷㪂㩷㪍㩷㪪㪫㪆㪘 㪈㪉㪤㩷㪂㩷㪋㪏㩷㪪㪤㪆㪪㪫㩷㪂㩷㪋㪇㪘
㪐㪉 㪎㪏
㪏㪋
㪎㪏
㪏㪏 㪎㪍
㪈㪏㪋
㪐㪇
㪐㪇
㪐㪋
㪏㪉
㪐㪇
㪐㪇 㪏㪋
㪐㪋
㪠 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪪㪅㩷㪘㪽㫉㫀㪺㪸
㪋㪉㩷㪤㪆㪪㪤㩷㪂㩷㪏㪘 㪊㪇㩷㪤㪆㪪㪤㩷㪂㩷㪈㪏㩷㪪㪫㪆㪘
㪌㪇 㪋㪏
㪎㪇 㪈㪊㪋
㪐㪏
㪎㪋
㪏㪋 㪎㪉
㪈㪍㪉
㪎㪋
㪎㪉
㪎㪏 㪈㪋㪏
㪏㪋
㪏㪇
㪎㪏
㪏㪇
㪏㪇 㪎㪍
㪎㪉
㪏㪇
㪎㪍
㪝 㪞 㪟 㪥㪝㪈 㪥㪝㪉 㪘㪾㪄 㪥㪦㪩㫊
㪌㪇
㪈㪏㪤㩷㪂㩷㪊㪇㪪㪤㩷㪂㩷㪉㩷㪪㪫㪆㪘 㪉㪉㩷㪤㪆㪪㪤㩷㪂㩷㪉㪍㩷㪪㪫㪆㪘 㪊㪋㩷㪤㪆㪪㪤㩷㪂㩷㪍㪍㩷㪪㪫㪆㪘
㪌㪇
㪍㪤㩷㪂㩷㪉㪏㩷㪪㪤㪆㪪㪫㩷㪂㩷㪈㪍㪘
㪋㪏 㪈㪇㪇
㪈㪉㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪉㪉㪘
㪌㪇
㪈㪇㪤㩷㪂㩷㪉㪋㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪈㪉㪘 㪉㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪉㪋㪘
㪌㪇
㪌㪇 㪌㪇
㪉㪉㪤㩷㪂㩷㪋㪇㪪㪤㩷㪂㩷㪉㪉㪪㪫㩷㪂㩷㪈㪍㪘
㪈㪇㪇
㪈㪇㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪉㪏㪘 㪍㪤㩷㪂㩷㪈㪏㪪㪤㩷㪂㩷㪈㪍㪪㪫㩷㪂㩷㪈㪇㪘
㪌㪇
㪌㪇
㪈㪏㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪈㪍㩷㪪㪫㪆㪘 㪈㪇㪤㩷㪂㩷㪈㪏㪪㪤㩷㪂㩷㪈㪉㪪㪫㩷㪂㩷㪈㪇㪘 㪋㪏㩷㪤㪆㪪㪤㩷㪂㩷㪌㪉㩷㪪㪫㪆㪘
㪌㪇 㪌㪇 㪈㪇㪇
㪈㪋㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪈㪋㪪㪫㩷㪂㩷㪍㪘
㪌㪇
㪈㪍㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪈㪏㪘
㪌㪇 㪝㪃㩷㪤
㪈㪋㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪈㪇㪘
㪌㪇
㪝㪃㩷㪤
㪈㪋㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪈㪇㪘 㪈㪇㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪏㪪㪫㩷㪂㩷㪈㪍㪘
㪈㪇㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪉㪏㪘
㪌㪇 㪌㪇
㪈㪋㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪈㪋㪪㪫㩷㪂㩷㪍㪘
㪌㪇
㪉㪏㩷㪤㪆㪪㪤㩷㪂㩷㪉㪇㩷㪪㪫㪆㪘
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪌㪇
㪋㪏
㪛 㪉㫅
㪝㪃㩷㪤 㪝㪃㩷㪤
㪝㪃㩷㪤
㪝㪃㩷㪤
㪚 㪪㪼㫏
㪛㪄㪉㪎
㪩㪄㪉㪋
㪞㪄㪌㪐
㪪㪄㪈㪐㪊 㪞㪄㪏㪋
㪞㪄㪏㪋
㪞㪄㪍㪍
㪢㪄㪈㪇㪏 㪢㪄㪈㪇㪏
㪞㪄 㪋 㪎
㪪㪄㪈㪐㪊
㪩㪄㪉㪈
㪪㪄㪈㪐㪊 㪟㪄㪉㪃㩷㪟㪄㪋
㪫㪄㪌㪐
㪪㪄㪈㪐㪊
㪞㪄 㪋 㪎
㪪㪄㪈㪐㪊 㪫㪄㪌㪌
㪩㪄㪉㪈
㪫㪄㪍㪇㪃㩷㪟㪄㪈㪊
㪮㪄 㪊 㪈
㪤㪄 㪐 㪤㪄㪐㪃㩷㪪㪄㪈㪋㪈
㪥㪄㪌㪌
㪢㪄㪈㪊㪍
㪦㪄㪋㪏
㪣㪄㪋㪊㪃㩷㪰㪄㪈㪌 㪙㪄㪉㪇
㪱㪄㪌㪃㩷㪱㪄㪏
㪞㪄㪍㪐㪃㩷㪰㪄㪈㪌
㪘㪄㪎㪏
㪞㪄㪍㪐㪃㩷㪰㪄㪈㪌
㪞㪄㪍㪐㪃㩷㪰㪄㪈㪌 㪰㪄㪈㪌
㪘㪄㪏㪋
㪞㪄㪍㪐㪃㩷㪰㪄㪈㪌
㪦㪄㪉㪇
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
47
㪙㪸㫉㪹㫌㫊 㪙㪸㫉㪹㫌㫊 㪙㪸㫉㪹㫌㫊 㪙㪸㫉㪹㫌㫊 㪙㪸㫉㪹㫌㫊 㪙㪸㫉㪹㫌㫊 㪙㪸㫉㪹㫌㫊 㪙㪸㫉㪹㫌㫊 㪙㪸㫉㪹㫌㫊 㪙㪸㫉㪹㫌㫊 㪙㪸㫉㪹㫌㫊 㪙㪸㫉㪹㫌㫊 㪙㪸㫉㪹㫌㫊 㪙㪸㫉㪹㫌㫊 㪙㪸㫉㪹㫌㫊 㪙㪸㫉㪹㫌㫊 㪙㪸㫉㪹㫌㫊 㪙㪸㫉㪹㫌㫊 㪙㪸㫉㪹㫌㫊 㪙㪸㫉㪹㫌㫊 㪙㪸㫉㪹㫌㫊 㪙㪸㫉㪹㫌㫊 㪙㪸㫉㪹㫌㫊 㪙㪸㫉㪹㫌㫊 㪙㪸㫉㪹㫌㫊 㪙㪸㫉㪹㫌㫊 㪙㪸㫉㪹㫌㫊 㪙㪸㫉㪹㫌㫊 㪙㪸㫉㪹㫌㫊 㪙㪸㫉㪹㫌㫊 㪙㪸㫉㪹㫌㫊 㪙㪸㫉㪹㫌㫊 㪙㪸㫉㪹㫌㫊 㪙㪸㫉㪹㫌㫊 㪙㪸㫉㪹㫌㫊 㪙㪸㫉㪹㫌㫊 㪙㪸㫉㪹㫌㫊 㪚㪸㪼㪺㫆㪹㪸㫉㪹㫌㫊 㪚㪸㫇㫆㪼㫋㪸
㪾㪼㪼㫉㫋㫊㫀 㪺㪸㫇㫆㪼㫋㪸
㫊㫇㪅㩷㪈 㫊㫇㪅㩷㪉 㫊㫇㪅㩷㪊
㪼㫋㪿㫀㫆㫇㫀㪺㫌㫊 㪼㫌㫋㪸㪼㫅㫀㪸 㪽㪸㫊㪺㫀㫆㫃㪸㫋㫌㫊 㪾㫆㫂㫋㫊㪺㪿㪸㫀㪺㫌㫊 㪾㫌㫉㫅㪼㫐㫀 㪿㫆㫃㫆㫋㪸㪼㫅㫀㪸 㪿㫆㫊㫇㪼㫊 㫀㫅㫋㪼㫉㫄㪼㪻㫀㫌㫊 㫀㫅㫋㪼㫉㫄㪼㪻㫀㫌㫊 㫀㫊㫊㪼㫅㪼㫅㫊㫀㫊 㫂㪼㫉㫊㫋㪼㫅㫀㫀 㫂㫊㫀㪹㫀 㫂㫌㪹㪸㫅㫀㪺㫌㫊 㫄㪸㪺㫉㫆㫇㫊 㫄㪸㫊㫊㪸㪼㫅㫊㫀㫊 㫄㪼㫉㫀㪻㫀㫆㫅㪸㫃㫀㫊 㫄㫆㫋㪼㪹㪼㫅㫊㫀㫊 㫄㫆㫌㫃㫆㫌㫐㪼㫅㫊㫀㫊 㫅㪸㫊㫌㫊 㫇㪸㫃㫌㪻㫀㫅㫆㫊㫌㫊 㫇㪸㫃㫌㪻㫀㫅㫆㫊㫌㫊 㫇㪸㫃㫌㪻㫀㫅㫆㫊㫌㫊 㫇㪸㫃㫌㪻㫀㫅㫆㫊㫌㫊 㫇㪸㫉㪸㫎㪸㫃㪻㫉㫆㫅㫀 㫇㪼㫃㫆㫇㫆㫅㫅㪼㫊㫀㫌㫊㩷㫇㪼㫋㪼㫅㫐㫀 㫇㪼㫋㫀㫋㫁㪼㪸㫅㫀 㫇㫃㪼㪹㪼㫁㫌㫊 㫇㫃㪼㫌㫉㫆㪾㫉㪸㫄㫄㪸 㫊㪸㪺㫉㪸㫋㫌㫊 㫊㪼㫉㫉㪸 㫋㫉㪼㫍㪼㫃㫐㪸㫅㫀 㫋㫉㪼㫍㪼㫃㫐㪸㫅㫀 㫋㫉㫀㫄㪸㪺㫌㫃㪸㫋㫌㫊 㫎㫌㫉㫋㫑㫀
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㫇㪼㫉㪽㪸㫄㫀㫃㫐㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷
㪹㪸㫉㪹㫌㫊㩷㫇㫃㪼㪹㪼㫁㫌㫊
㫄㪼㫉㫀㪻㫀㫆㫅㪸㫃㫀㫊㩷㫇㪼㫋㪼㫅㫐㫀
㪻㪼㫍㪼㫃㫆㫇㪼㪻㩷㪻㫆㫉㫊㪸㫃㩷㫊㫇㫀㫅㪼 㫉㪼㪻㫌㪺㪼㪻㩷㪻㫆㫉㫊㪸㫃㩷㫊㫇㫀㫅㪼
㫋㪸㫌㫉㫀㪺㫌㫊㩷㫂㫌㪹㪸㫅㫀㪺㫌㫊
㪹㪸㫉㫀㫃㫆㫀㪻㪼㫊
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪫㪸㪹㫃㪼㩷㪍㪅㪈㪈㩷㩷㪦㫉㪻㪼㫉㩷㪚㪰㪧㪩㪠㪥㪠㪝㪦㪩㪤㪜㪪㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀
㪋㪋㩷㪤㪆㪪㪤㩷㪂㩷㪍㩷㪪㪫㪆㪘 㪊㪇㩷㪤㪆㪪㪤㩷㪂㩷㪉㪇㩷㪪㪫㪆㪘 㪌㪇㩷㪤㪆㪪㪤㩷㪂㩷㪌㪇㩷㪪㪫㪆㪘
㪌㪇 㪈㪌㪇 㪈㪇㪇 㪈㪌㪇
㪝㪃㩷㪤 㪝㪃㩷㪤
㪉㪎㪍
㪐㪋
㪈㪍㪉
㪋
㪉
㪘㪚㪥㪔㪌㪇
㪋㪯
㪍㪯
㪍㪯 㪋㪯
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪉㪋㪤㩷㪂㩷㪍㪇㪪㪤㩷㪂㩷㪈㪋㪪㪫㩷㪂㩷㪌㪉㪘
㪋㪏㩷㪤㪆㪪㪤㩷㪂㩷㪉㪘 㪈㪌㪇
㪌㪇
㪝㪃㩷㪤
㪋㪋㩷㪤㪆㪪㪤㩷㪂㩷㪍㪘
㪋㪋㩷㪤㪆㪪㪤㩷㪂㩷㪍㪘
㪈㪉㪤㩷㪂㩷㪉㪏㪪㪤㩷㪂㩷㪈㪇㪪㪫
㪌㪇
㪝㪃㩷㪤
㪌㪇
㪈㪌㪇 㪌㪇
㪊㪇㩷㪤㪆㪪㪤㩷㪂㩷㪈㪏㩷㪪㪫㪆㪘
㪋㪏
㪉㪊㪋
㪐㪇
㪐㪏
㪐㪋
㪐㪋
㪎㪏
㪈㪉㪏 㪈㪉㪏
㪊㪉㩷㪤㪆㪪㪤㩷㪂㩷㪍㪋㩷㪪㪫㪆㪘
㪐㪍
㪉㪋㪏
㪈㪇㪇
㪐㪏
㪐㪋
㪉
㪍㪯
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪍㪯 㪘㪚㪥㪔㪌㪇
㪋㪯
㪋㪯
㪐㪋
㪈㪇㪇
㪝㪃㩷㪤
㪝㪃㩷㪤
㪐㪍
㪍㪯 㪋㪯
㪋㪋㩷㪤㪆㪪㪤㩷㪂㩷㪍㩷㪪㪫㪆㪘
㪌㪇
㪈㪋㪋
㪈㪌㪇
㪏㪇
㪐㪋
㪐㪋
㪐㪍
㪈㪌㪇 㪈㪇㪇
㪉㪍㪤㩷㪂㩷㪈㪏㪪㪤㩷㪂㩷㪈㪏㪪㪫㩷㪂㩷㪊㪏㪘
㪈㪇㪇
㪊㪍㪤㩷㪂㩷㪐㪇㩷㪪㪤㪆㪪㪫㩷㪂㩷㪉㪋㪘
㪋㪋㩷㪤㪆㪪㪤㩷㪂㩷㪍㩷㪪㪫㪆㪘
㪋㪍㩷㪤㪆㪪㪤㩷㪂㩷㪋㪘
㪋㪯
㪋㪯 㪘㪚㪥㪔㪌㪇
㪉 㪋㪯
㪎㪋
㪈㪋㪉
㪈㪇㪇 㪌㪇
㪉㪋㩷㪤㪆㪪㪤㩷㪂㩷㪉㪍㩷㪪㪫㪆㪘
㪌㪇 㪈㪇㪇
㪉㪉㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪈㪉㪪㪫㩷㪂㩷㪋㪍㪘
㪈㪇㪇
㪌㪇
㪝㪃㩷㪤
㪈㪌㪋
㪋㪯
㪘㪚㪥㪔㪌㪇
㪍㪯 㪋㪯
㪍㪯
㪋㪯
㪘㪚㪥㪔㪌㪇
㪋㪯 㪉
㪉
㪉
㪋㪯
㪘㪚㪥㪔㪋㪏
㪍㪯
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪘㪚㪥㪔㪌㪇 㪋㪯
㪐㪉
㪈㪇㪇
㪐㪍
㪠 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪌㪇 㪈㪇㪇
㪈㪋㪤㩷㪂㩷㪉㪏㪪㪤㩷㪂㩷㪏㩷㪪㪫㪆㪘
㪏㪋
㪉㪈㪍
㪉㪋㪇
㪈㪋㪉
㪈㪉㪋 㪎㪍
㪐㪍
㪏㪉㪃㪏㪋
㪈㪐㪇
㪝 㪞 㪟 㪥㪝㪈 㪥㪝㪉 㪘㪾㪄 㪥㪦㪩㫊
㪈㪇㪇
㪈㪇㪇
㪊㪋㩷㪤㪆㪪㪤㩷㪂㩷㪈㪍㪘
㪍㪍㪤㩷㪂㩷㪏㪋㪘
㪈㪌㪇 㪈㪇㪇 㪌㪇
㪐㪇㪤㩷㪂㩷㪍㪇㪘
㪈㪌㪇
㪌㪇
㪤
㪝
㪉㪋㪤㩷㪂㩷㪉㪍㩷㪪㪤㪆㪪㪫 㪋㪍㩷㪤㪆㪪㪤㩷㪂㩷㪌㪇㩷㪪㪫㪆㪘
㪌㪇
㪝㪃㩷㪤
㪍㪤㩷㪂㩷㪈㪏㪪㪤㩷㪂㩷㪎㪍㩷㪪㪫㪆㪘 㪉㪍㩷㪤㪆㪪㪤㩷㪂㩷㪉㪋㩷㪪㪫㪆㪘
㪊㪉㪤㩷㪂㩷㪈㪍㪪㪤
㪋㪇㩷㪤㪆㪪㪤㩷㪂㩷㪈㪈㪇㩷㪪㪫㪆㪘
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪐㪍
㪈㪇㪇 㪌㪇
㪋㪏
㪋㪏
㪈㪌㪇
㪛 㪉㫅
㪝㪃㩷㪤
㪤
㪚 㪪㪼㫏
㪠㫉㪸㫅㩷㩿㪩㫆㫌㪻㪹㪸㫉㪀
㪱㪸㫀㫉㪼
㪜㫋㪿㫀㫆㫇㫀㪸㩷㩿㪟㪸㫉㪼㩷㪩㪅㪀
㪜㫋㪿㫀㫆㫇㫀㪸㩷㩿㪣㪸㫂㪼㩷㪘㪹㪸㫐㪸㪀
㪮㪅㩷㪘㪽㫉㫀㪺㪸㪃㩷㪞㫌㫀㫅㪼㪸 㪜㫋㪿㫀㫆㫇㫀㪸㩷㩿㪘㫃㫍㪼㫉㫆㩷㪩㪅㪀
㪪㪅㩷㪘㪽㫉㫀㪺㪸
㪪㪅㩷㪘㪽㫉㫀㪺㪸
㪪㪅㩷㪘㪽㫉㫀㪺㪸
㪮㪅㩷㪘㪽㫉㫀㪺㪸 㪪㪅㩷㪘㪽㫉㫀㪺㪸
㪜㫋㪿㫀㫆㫇㫀㪸㩷㩿㪣㪸㫂㪼㩷㪫㪸㫅㪸㪀
㪠㫋㪸㫃㫐
㪮㪅㩷㪘㪽㫉㫀㪺㪸㪃㩷㪞㫌㫀㫅㪼㪸
㪮㪅㩷㪘㪽㫉㫀㪺㪸 㪙㫆㫊㫅㫀㪸㪄㪟㪼㫉㫑㪼㪾㫆㫍㫀㫅㪸
㪪㪅㩷㪘㪽㫉㫀㪺㪸
㪜㫋㪿㫀㫆㫇㫀㪸㩷㩿㪦㫄㫆㩷㪩㪅㪀
㪜㫋㪿㫀㫆㫇㫀㪸㩷㩿㪦㫄㫆㩷㪩㪅㪀
㪥㪅㩷㪘㪽㫉㫀㪺㪸 㪜㫋㪿㫀㫆㫇㫀㪸㩷㩿㪙㫌㫃㪹㫌㫃㪸㩷㪩㪅㪀
㪥㪮㪅㩷㪘㪽㫉㫀㪺㪸
㪪㪅㩷㪘㪽㫉㫀㪺㪸
㪠㫋㪸㫃㫐
㪞㫌㫀㫅㪼㪸 㪥㪅㩷㪘㪽㫉㫀㪺㪸
㩿㪩㫌㫊㫊㫀㪸㪀
㪥㪮㪅㩷㪘㪽㫉㫀㪺㪸
㪜㫋㪿㫀㫆㫇㫀㪸㩷㩿㪣㪸㫂㪼㩷㪘㪹㪸㫐㪸㪀
㪜㫋㪿㫀㫆㫇㫀㪸 㪥㪅㩷㪘㪽㫉㫀㪺㪸
㪜㫋㪿㫀㫆㫇㫀㪸
㪪㪅㩷㪘㪽㫉㫀㪺㪸
㩿㪘㪽㫉㫀㪺㪸㪀
㪘㫉㫄㪼㫅㫀㪸㩷㩿㪣㪸㫂㪼㩷㪪㪼㫍㪸㫅㪀 㪪㪅㩷㪘㪽㫉㫀㪺㪸
㩿㪘㪽㫉㫀㪺㪸㪀
㪪㪅㩷㪘㪽㫉㫀㪺㪸
㪜㫋㪿㫀㫆㫇㫀㪸㩷㩿㪤㪼㫂㫀㩷㪩㪅㪀
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐 㪞㪄 㪋 㪎
㪪㪄㪈
㪭㪄㪊㪍
㪞㪄 㪋 㪎
㪞㪄 㪋 㪎
㪞㪄㪏㪋 㪞㪄 㪋 㪎
㪪㪄㪈㪐㪊
㪪㪄㪈㪐㪊
㪫㪄㪌㪌
㪞㪄㪏㪋 㪫㪄㪌㪌
㪞㪄㪋㪐
㪚㪄㪊㪋
㪞㪄 㪍 㪍
㪞㪄㪏㪋 㪪㪄㪎㪍
㪪㪄㪈㪐㪊
㪞㪄㪋㪐
㪞㪄㪋㪐
㪞㪄㪏㪋 㪞㪄 㪋 㪎
㪞㪄㪏㪋
㪪㪄㪈㪐㪊
㪚㪄㪊㪋
㪩㪄㪉㪈 㪞㪄㪏㪋
㪭㪄㪎㪉
㪞㪄㪏㪋
㪞㪄 㪋 㪎
㪞㪄 㪋 㪎 㪞㪄㪏㪋
㪞㪄 㪋 㪎
㪪㪄㪈㪐㪊
㪩㪄㪋
㪢㪄㪈㪇㪐 㪪㪄㪈㪐㪊
㪩㪄㪋
㪪㪄㪈㪐㪊
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
48
㪚㪸㫇㫆㪼㫋㪸 㪚㪸㫇㫆㪼㫋㪸 㪚㪸㫇㫆㪼㫋㪸 㪚㪸㫇㫆㪼㫋㪸 㪚㪸㫇㫆㪼㫋㪸 㪚㪸㫉㪸㫊㫆㪹㪸㫉㪹㫌㫊 㪚㪸㫋㫃㪸 㪚㪸㫋㫃㪸 㪚㪸㫋㫃㪸 㪚㪸㫋㫃㫆㪺㪸㫉㫇㫀㫆 㪚㪿㪸㪾㫌㫅㫀㫌㫊 㪚㫐㪺㫃㫆㪺㪿㪼㫀㫃㫀㪺㪿㫋㪿㫐㫊 㪚㫐㪺㫃㫆㪺㪿㪼㫀㫃㫀㪺㪿㫋㪿㫐㫊 㪚㫐㫇㫉㫀㫅㫀㫆㫅 㪝㫆㫃㫀㪽㪼㫉 㪝㫆㫃㫀㪽㪼㫉 㪟㫐㫇㫊㪼㫃㫆㪹㪸㫉㪹㫌㫊 㪟㫐㫇㫊㫀㪹㪸㫉㪹㫌㫊 㪣㪸㪹㪼㫆㪹㪸㫉㪹㫌㫊 㪣㪸㪹㪼㫆㪹㪸㫉㪹㫌㫊 㪣㪸㪹㪼㫆㪹㪸㫉㪹㫌㫊 㪣㪸㪹㪼㫆㪹㪸㫉㪹㫌㫊 㪣㪸㪹㪼㫆㪹㪸㫉㪹㫌㫊 㪣㪸㪹㪼㫆㪹㪸㫉㪹㫌㫊 㪣㪸㪹㪼㫆㪹㪸㫉㪹㫌㫊 㪣㪸㪹㪼㫆㪹㪸㫉㪹㫌㫊 㪣㪸㪹㪼㫆㪹㪸㫉㪹㫌㫊 㪣㪸㪹㪼㫆㪹㪸㫉㪹㫌㫊 㪣㪸㪹㪼㫆㪹㪸㫉㪹㫌㫊 㪣㪼㫇㫋㫆㪹㪸㫉㪹㫌㫊 㪣㪼㫇㫋㫆㪹㪸㫉㪹㫌㫊 㪣㫌㪺㫀㫆㪹㪸㫉㪹㫌㫊 㪣㫌㪺㫀㫆㪹㪸㫉㪹㫌㫊 㪣㫌㪺㫀㫆㪹㪸㫉㪹㫌㫊 㪣㫌㪺㫀㫆㪹㪸㫉㪹㫌㫊 㪣㫌㪺㫀㫆㪹㪸㫉㪹㫌㫊 㪣㫌㪺㫀㫆㪹㪸㫉㪹㫌㫊 㪤㫐㫊㫋㪸㪺㫆㫃㪼㫌㪺㫌㫊 㪥㪼㫆㫃㫀㫊㫊㫆㪺㪿㫀㫃㫌㫊
㪺㪸㫇㫆㪼㫋㪸 㪺㪸㫇㫆㪼㫋㪸㩷㫊㪼㫍㪸㫅㪾㫀 㪺㪸㫇㫆㪼㫋㪸㩷㫌㫄㪹㫃㪸 㪻㪸㫄㪸㫊㪺㫀㫅㪸 㫋㫉㫌㫋㫋㪸 㪺㪸㫅㫀㫊 㪺㪸㫋㫃㪸 㪺㪸㫋㫃㪸 㪺㪸㫋㫃㪸 㫊㫀㪸㫄㪼㫅㫊㫀㫊 㪺㪿㪸㪾㫌㫅㫀㫆 㪸㫇㫆㪾㫆㫅 㪼㫅㫆㫇㫃㫆㫊 㫄㪸㪺㫉㫆㫊㫋㫆㫄㫌㫊 㪹㫉㪼㫍㫀㪽㫀㫃㫀㫊㩷㪹㫉㪼㫍㫀㪽㫀㫃㫀㫊 㪹㫉㪼㫍㫀㪽㫀㫃㫀㫊㩷㪹㫉㪼㫍㫀㪽㫀㫃㫀㫊 㪺㫌㫉㫄㫌㪺㪸 㫎㪼㫋㫄㫆㫉㪼㫀 㪸㪼㫅㪼㫌㫊 㪺㪸㫇㪼㫅㫊㫀㫊 㪺㪸㫇㪼㫅㫊㫀㫊 㫀㫅㫋㪼㫉㫄㪼㪻㫀㫌㫊 㫀㫅㫋㪼㫉㫄㪼㪻㫀㫌㫊 㫂㫀㫄㪹㪼㫉㫃㪼㫐㪼㫅㫊㫀㫊 㫄㪸㫉㪼㫈㫌㪼㫅㫊㫀㫊 㫅㪸㫋㪸㫃㪼㫅㫊㫀㫊 㫇㫆㫃㫐㫃㪼㫇㫀㫊 㫇㫆㫃㫐㫃㪼㫇㫀㫊 㫇㫆㫃㫐㫃㪼㫇㫀㫊 㪿㫆㪼㫍㪼㫅㫀㫀 㪿㫆㪼㫍㪼㫅㫀㫀 㪹㫆㪺㪸㪾㪼㫀 㪹㫉㪸㪺㪿㫐㪺㪼㫇㪿㪸㫃㫌㫊 㪺㫆㫄㫀㫑㫆 㫄㫀㪺㫉㫆㪺㪼㫇㪿㪸㫃㫌㫊 㫊㪺㫃㪸㫋㪼㫉㫀 㫊㫋㪼㫀㫅㪻㪸㪺㪿㫅㪼㫉㫀 㫄㪸㫉㪾㫀㫅㪸㫋㫌㫊 㪻㫌㫂㪸㫀
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㫇㪼㫉㪽㪸㫄㫀㫃㫐㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷
㪙㪸㫉㪹㫌㫊
㪙㪸㫉㪹㫌㫊 㪙㪸㫉㪹㫌㫊 㪙㪸㫉㪹㫌㫊 㪙㪸㫉㪹㫌㫊 㪙㪸㫉㪹㫌㫊 㪙㪸㫉㪹㫌㫊
㪙㪸㫉㪹㫌㫊
㪙㪸㫉㪹㫌㫊 㪙㪸㫉㪹㫌㫊
㪙㪸㫉㪹㫌㫊 㪙㪸㫉㪹㫌㫊 㪙㪸㫉㪹㫌㫊
㪫㫆㫉 㩷㩿㪝㫆㫃㫀㪽㪼㫉 㪀㩷 㪫㫆㫉 㩷㩿㪝㫆㫃㫀㪽㪼㫉 㪀 㪞㫆㫅㫆㫇㫉㫆㫂㫋㫆㫇㫋㪼㫉㫌㫊 㪧㫌㫅㫋㫀㫌㫊㩷㪻㪸㫉㫇㪿㪸㫅㫀 㪙㪸㫉㪹㫌㫊 㪙㪸㫉㪹㫌㫊
㪙㪸㫉㪹㫌㫊
㪭㪸㫉㫀㪺㫆㫉㪿㫀㫅㫌㫊
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪫㪸㪹㫃㪼㩷㪍㪅㪈㪈㩷㩷㪦㫉㪻㪼㫉㩷㪚㪰㪧㪩㪠㪥㪠㪝㪦㪩㪤㪜㪪㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀
㪈㪇㪤㩷㪂㩷㪊㪇㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪍㪘
㪌㪇
㪈㪏㪤㩷㪂㩷㪊㪏㪪㪤㩷㪂㩷㪉㪏㪪㪫㩷㪂㩷㪈㪍㪘 㪈㪉㪤㩷㪂㩷㪏㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪉㪋㪘 㪋㪏㩷㪤㪆㪪㪤㩷㪂㩷㪈㪇㪇㩷㪪㪫㪆㪘 㪌㪏㩷㪤㪆㪪㪤㩷㪂㩷㪐㪉㩷㪪㪫㪆㪘 㪈㪍㪤㩷㪂㩷㪌㪏㪪㪤㩷㪂㩷㪋㪉㪪㪫㩷㪂㩷㪊㪋㪘
㪈㪇㪇 㪌㪇 㪈㪋㪏 㪈㪌㪇 㪈㪌㪇
㪈㪇㪇 㪈㪇㪇 㪈㪇㪇 㪌㪇
㪝㪃㩷㪤 㪝㪃㩷㪤 㪝㪃㩷㪤
㪈㪇㪇
㪈㪇㪇
㪝㪃㩷㪤
㪉㪍㪤㩷㪂㩷㪌㪇㩷㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪈㪏㪘
㪈㪇㪤㩷㪂㩷㪋㪏㪪㪤㩷㪂㩷㪋㪉㩷㪪㪫㪆㪘 㪈㪍㪤㩷㪂㩷㪈㪇㪪㪤㩷㪂㩷㪉㪋㪘
㪈㪇㪤㩷㪂㩷㪋㪋㪪㪤㩷㪂㩷㪋㪍㩷㪪㪫㪆㪘
㪈㪏㪤㩷㪂㩷㪌㪇㪪㪤㩷㪂㩷㪊㪉㩷㪪㪫㪆㪘
㪈㪉㪤㩷㪂㩷㪍㪇㪪㪤㩷㪂㩷㪉㪏㩷㪪㪫㪆㪘
㪍㪋㩷㪤㪆㪪㪤㩷㪂㩷㪊㪍㪘 㪉㪋㪤㩷㪂㩷㪋㪍㩷㪪㪤㪆㪪㪫㩷㪂㩷㪊㪇㪘
㪈㪇㪤㩷㪂㩷㪊㪋㩷㪪㪤㪆㪪㪫㩷㪂㩷㪍㪘 㪈㪍㪤㩷㪂㩷㪊㪇㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪉㪘
㪌㪇 㪌㪇 㪈㪇㪇 㪈㪇㪇
㪍㪉㩷㪤㪆㪪㪤㩷㪂㩷㪏㪍㩷㪪㪫㪆㪘
㪈㪋㪏
㪈㪏㪤㩷㪂㩷㪍㪇㪪㪤㩷㪂㩷㪋㪉㪪㪫㩷㪂㩷㪊㪇㪘
㪌㪍㩷㪤㪆㪪㪤㩷㪂㩷㪐㪋㩷㪪㪫㪆㪘
㪈㪌㪇
㪈㪌㪇
㪝㪃㩷㪤
㪝
㪉㪍㪤㩷㪂㩷㪋㪋㪪㪤㩷㪂㩷㪋㪉㪪㪫㩷㪂㩷㪊㪏㪘 㪌㪇㩷㪤㪆㪪㪤㩷㪂㩷㪈㪇㪇㩷㪪㪫㪆㪘
㪈㪌㪇 㪈㪌㪇
㪌㪍㩷㪤㪆㪪㪤㩷㪂㩷㪐㪉㩷㪪㪫㪆㪘
㪈㪋㪏 㪝㪃㩷㪤
㪐㪇㩷㪤㪆㪪㪤㩷㪂㩷㪍㪇㩷㪪㪫㪆㪘
㪈㪌㪇 㪈㪌㪇
㪝㪃㩷㪤
㪍㪍㩷㪤㪆㪪㪤㩷㪂㩷㪏㪋㩷㪪㪫㪆㪘
㪈㪋㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪈㪍㪪㪫㩷㪂㩷㪍㪘 㪈㪋㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪉㪇㩷㪪㪫㪆㪘
㪌㪇 㪌㪇
㪍㪤㩷㪂㩷㪉㪋㪪㪤㩷㪂㩷㪈㪉㪪㪫㩷㪂㩷㪏㪘
㪈㪉㪤㩷㪂㩷㪏㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪉㪋㪘
㪌㪇 㪌㪇
㪈㪍㪤㩷㪂㩷㪉㪏㪪㪤㩷㪂㩷㪍㪘
㪌㪇
㪝㪃㩷㪤
㪤
㪝㪃㩷㪤
㪝㪃㩷㪤
㪝
㪍㪍
㪈㪎㪍
㪈㪌㪏 㪎㪍
㪈㪌㪋
㪈㪍㪏
㪈㪎㪉
㪈㪍㪋
㪐㪍
㪉㪈㪇
㪉㪉㪏
㪉㪇㪍
㪉㪉㪇 㪉㪇㪇
㪉㪇㪋
㪉㪋㪇
㪉㪈㪍
㪉㪇㪏 㪉㪉㪋
㪈㪐㪍
㪎㪇
㪈㪌㪍
㪎㪏 㪏㪇
㪏㪇
㪐㪇
㪎㪇
㪐㪋
㪎㪍
㪋㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪊㪋㪘 㪈㪇㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪏㪪㪫㩷㪂㩷㪈㪍㪘 㪈㪏㪤㩷㪂㩷㪌㪋㩷㪪㪤㪆㪪㪫㩷㪂㩷㪉㪍㪘
㪌㪇 㪌㪇 㪐㪏
㪉㪉㪍 㪎㪋
㪎㪍㩷㪤㪆㪪㪤㩷㪂㩷㪉㪋㪪㪫㩷㪂㩷㪌㪇㪘
㪉㪉㪍 㪉㪉㪇
㪉㪊㪍
㪈㪐㪇
㪉㪊㪇
㪈㪏㪉
㪎㪍
㪈㪎㪇
㪐㪋 㪐㪏
㪉㪎㪇
㪉㪍㪉
㪉㪍㪍
㪎㪍
㪈㪏㪋
㪐㪋
㪐㪉
㪐㪋
㪎㪍
㪐㪋
㪏㪋 㪈㪎㪇
㪍㪍
㪏㪏
㪉㪌㪇
㪉㪌㪏
㪈㪐㪇
㪉㪋㪋
㪋
㪍
㪋
㪋
㪋
㪋
㪝 㪞 㪟 㪥㪝㪈 㪥㪝㪉 㪘㪾㪄 㪥㪦㪩㫊
㪏㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪈㪋㪪㪫㩷㪂㩷㪈㪉㪘
㪌㪇
㪈㪌㪇
㪎㪏㩷㪤㪆㪪㪤㩷㪂㩷㪊㪉㪪㪫㩷㪂㩷㪊㪏㪘 㪎㪇㩷㪤㪆㪪㪤㩷㪂㩷㪏㪇㩷㪪㪫㪆㪘
㪈㪋㪏 㪈㪌㪇
㪝㪃㩷㪤 㪝㪃㩷㪤
㪏㪍㩷㪤㪆㪪㪤㩷㪂㩷㪍㪋㩷㪪㪫㪆㪘
㪈㪌㪇
㪝㪃㩷㪤
㪈㪇㪤㩷㪂㩷㪊㪇㪪㪤㩷㪂㩷㪈㪈㪇㪘
㪉㪋㪤㩷㪂㩷㪌㪍㪪㪤㩷㪂㩷㪈㪋㪪㪫㩷㪂㩷㪌㪍㪘
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪈㪌㪇
㪈㪌㪇
㪛 㪉㫅
㪤
㪚 㪪㪼㫏
㪊㪅㪍㩷㪝㪚㪤
㪊㪅㪎㩷㪝㪚㪤
㪊㪅㪎㩷㪝㪚㪤
㪉㪅㪎㩷㪝㪚㪤
㪊㪅㪏㩷㪝㪚㪤
㪊㪅㪌㩷㪝㪛
㪠 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪚㪿㫀㫅㪸㩷㩿㪞㫌㪸㫅㪾㪻㫆㫅㪾㪀㩷 㪚㪿㫀㫅㪸
㪫㫌㫉㫂㪼㫐
㪫㪿㪸㫀㫃㪸㫅㪻㩷㩿㪬㫋㪿㪸㫀㩷㪫㪿㪸㫅㫀㪀
㪫㪿㪸㫀㫃㪸㫅㪻㩷㩿㪘㫐㫌㫋㪿㪸㫐㪸㪀
㪠㫅㪻㫀㪸㩷㩿㪘㫊㫊㪸㫄㪀
㪠㫅㪻㫀㪸㩷㩿㫅㪼㪸㫉㩷㪣㫌㪺㫂㫅㫆㫎㪀 㩿㪘㫊㫀㪸㪀
㪠㫅㪻㫀㪸
㪠㫅㪻㫀㪸㩷㩿㪮㪙㪀
㪤㫀㪻㪻㫃㪼㩷㪜㪸㫊㫋
㪡㫆㫉㪻㪸㫅 㪫㫌㫉㫂㪼㫐㩷㩿㪫㫀㪾㫉㫀㫊㩷㪩㪅㪀
㪫㫌㫉㫂㪼㫐㩷㩿㪫㫀㪾㫉㫀㫊㩷㪩㪅㪀
㪘㫉㫄㪼㫅㫀㪸㩷㩿㪣㪸㫂㪼㩷㪪㪼㫍㪸㫅㪀
㪋㪯
㪋㪯 㪘㪚㪥㪔㪌㪇
㪋㪯
㪋㪯
㪋㪯
㪋㪯 㪋㪯
㪘㪚㪥㪔㪌㪇
㪍㪯
㪦㪄㪉 㪥㪄㪍㪎
㪦㪄㪉
㪤㪄 㪐
㪥㪄㪌㪌
㪞㪄㪍㪐㪃㩷㪰㪄㪈㪌 㪱㪄㪏
㪰㪄㪉㪋
㪤㪄 㪈 㪉
㪤㪄 㪐
㪪㪅㩷㪘㪽㫉㫀㪺㪸
㪪㪅㩷㪘㪽㫉㫀㪺㪸㩷㩿㪤㪸㫉㫀㪺㫆㩷㪩㪅㪀 㪪㪅㩷㪘㪽㫉㫀㪺㪸㩷㩿㪤㪾㪼㫅㫀㩷㪩㪅㪀
㪪㪅㩷㪘㪽㫉㫀㪺㪸
㪜㫋㪿㫀㫆㫇㫀㪸㩷㩿㪘㫎㪸㫊㪿㩷㪩㪅㪀
㪠㫅㪻㫀㪸㩷㩿㪘㫊㫊㪸㫄㪀
㪧㫆㫉㫋㫌㪾㪸㫃 㪚㪅㩷㪫㪿㪸㫀㫃㪸㫅㪻
㪧㫆㫉㫋㫌㪾㪸㫃
㪧㫆㫉㫋㫌㪾㪸㫃
㪧㫆㫉㫋㫌㪾㪸㫃
㪧㫆㫉㫋㫌㪾㪸㫃 㩿㪚㪸㫊㫇㫀㪸㫅㩷㪪㪼㪸㪀
㩿㪘㫊㫀㪸㪀 㩿㪠㫅㪻㫀㪸㪃㩷㪫㪿㪸㫀㫃㪸㫅㪻㪀
㪪㪅㩷㪘㪽㫉㫀㪺㪸
㪢㪄㪋㪍
㪚㪄㪎㪉㪃㩷㪚㪄㪎㪌 㪘㪄㪏㪋
㪚㪄㪎㪉㪃㩷㪚㪄㪎㪌
㪚㪄㪎㪉㪃㩷㪚㪄㪎㪌
㪚㪄㪎㪉㪃㩷㪚㪄㪎㪌
㪚㪄㪎㪉㪃㩷㪚㪄㪎㪌 㪭㪄㪎㪉
㪪㪄㪈㪉㪍 㪱㪄㪉㪐
㪪㪄㪈㪐㪊
㪥㪄㪍㪎
㪦㪄㪉
㪥㪄㪍㪎 㪦㪄㪉
㪦㪄㪉
㪞㪄 㪋 㪎
㪜㫋㪿㫀㫆㫇㫀㪸㩷㩿㪣㪅㩷㪫㪸㫅㪸㪃㩷㪢㫌㫃㪽㫆㩷㪩㪅㪀 㪞㪄㪋㪎㪃㩷㪢㪄㪈㪇㪏
㪪㪅㩷㪘㪽㫉㫀㪺㪸㩷㩿㪪㪅㪮㪅㩷㪚㪸㫇㪼㪀 㪪㪅㩷㪘㪽㫉㫀㪺㪸㩷㩿㪩㫆㫅㪻㪼㪾㪸㫋㩷㪩㪅㪀
㪪㪅㩷㪘㪽㫉㫀㪺㪸㩷㩿㪚㫀㫊㫂㪼㫀㪀
㪫㪿㪸㫀㫃㪸㫅㪻㩷㩿㪘㫐㫌㫋㪿㪸㫐㪸㪀
㪍㪯㪃㩷㪘㪚㪥㪔㪈㪌㪇 㪪㪅㩷㪘㪽㫉㫀㪺㪸㩷㩿㪜㫃㪸㫅㪻㫊㩷㪩㪅㪀
㪍㪯
㪍㪯 㪍㪯
㪍㪯
㪍㪯
㪍㪯
㪍㪯 㪍㪯
㪍㪯
㪘㪚㪥㪔㪌㪇
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
㪢㪄㪋㪍㪃㩷㪚㪄㪈㪇㪏
㪥㪄㪋 㪪㪄㪈㪉㪎
㪣㪄㪉
㪤㪄 㪉 㪎
㪞㪄㪌㪐
㪞㪄㪌㪐 㪢㪄㪌㪈
㪢㪄㪌㪈
㪢㪄㪈㪇㪐
㪠㫉㪸㫅㩷㩿㪞㫆㫃㪼㫊㫋㪸㫅㩷㪥㪸㫋㫅㪅㩷㪧㪸㫉㫂㪀 㪪㪄㪈
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪋㪯㪃㩷㪘㪚㪥㪔㪈㪇㪇 㪠㫅㪻㫀㪸㩷㩿㪮㪅㩷㪞㪿㪸㫋㫊㪀
㪘㪚㪥㪔㪌㪇 㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇 㪋㪯㪃㩷㪘㪚㪥㪔㪐㪏
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪍㪯
㪍㪯 㪍㪯
㪍㪯
㪍㪯
㪍㪯
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
49
㪼㫃㫆㫅㪾㪸㫋㫌㫊 㪾㪼㫉㫃㪸㪺㪿㫀 㫊㫀㫄㪸 㫇㫀㫅㪾㫀㩷㫇㫀㫅㪾㫀 㫇㫀㫅㪾㫀㩷㫉㪼㪾㪸㫅㫀 㫊㫀㫅㪼㫅㫊㫀㫊 㪺㪿㫆㫅㪾㫃㫀㫅㪾㪺㪿㫌㫅㪾㫀 㫁㫌㫃㫃㫀㪼㫅㫀 㪸㪽㪼㫉 㪸㪽㪼㫉 㪸㫊㫇㪼㫉 㪹㫌㫉㪺㪿㪼㫃㫃㫀 㪹㫌㫉㪺㪿㪼㫃㫃㫀 㪹㫌㫉㪾㫀 㫇㪿㫃㪼㪾㪼㫋㪿㫆㫅 㫈㫌㪸㫋㪿㫃㪸㫄㪹㪸㪼 㫋㪼㫅㫌㫀㫊 㫇㫉㫆㪺㫋㫆㫑㫐㫊㫉㫆㫅 㪸㫉㫌㫃㫀㫌㫊 㪹㫀㫅㫆㫋㪸㫋㫌㫊 㪹㫉㪼㫍㫀㫊 㪺㪿㫆㫃㪸 㪺㪿㫆㫃㪸 㪺㪿㫆㫃㪸 㪺㫆㫅㪺㪿㫆㫅㫀㫌㫊 㪺㫆㫅㪺㪿㫆㫅㫀㫌㫊 㪺㫆㫅㪺㪿㫆㫅㫀㫌㫊 㪺㫆㫅㪺㪿㫆㫅㫀㫌㫊 㪺㫆㫅㪺㪿㫆㫅㫀㫌㫊 㪺㫌㫄㫀㫅㪾㫀 㪻㪼㫅㫀㫊㫆㫅㫀㫀 㪼㫍㪼㫉㪼㫋㫋㫀 㪽㪸㫊㪺㫀㪸㫋㫌㫊 㪽㪸㫊㪺㫀㪸㫋㫌㫊
㫊㫇㪅
㪈㪇㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪈㪍㪪㪫㩷㪂㩷㪏㪘 㪋㪉㪤㩷㪂㩷㪊㪇㪪㪤㩷㪂㩷㪉㪍㩷㪪㪫㪆㪘 㪋㪇㪤㩷㪂㩷㪈㪏㪪㪤㩷㪂㩷㪋㪇㩷㪪㪫㪆㪘
㪌㪇 㪌㪇 㪐㪏 㪐㪏
㪝㪃㩷㪤
㪈㪇㪇 㪈㪇㪇
㪝㪃㩷㪤 㪝㪃㩷㪤
㪙㪸㫉㪹㫌㫊
㪍㪤㩷㪂㩷㪊㪏㩷㪪㪤㪆㪪㪫㩷㪂㩷㪍㪘 㪋㪤㩷㪂㩷㪋㪇㪪㪤㩷㪂㩷㪍㪘
㪌㪇 㪌㪇
㪤
㪝㪃㩷㪤
㪈㪍㪤㩷㪂㩷㪉㪋㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪏㪘
㪌㪇
㪤 㪤
㫋㪼㫋㫉㪸㫉㫌㫇㪸㪾㫌㫊
㪋㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪈㪏㪪㪫㩷㪂㩷㪏㪘 㪍㪤㩷㪂㩷㪊㪇㩷㪪㪤㪆㪪㪫㩷㪂㩷㪈㪋㪘 㪍㪤㩷㪂㩷㪉㪍㩷㪪㪤㪆㪪㪫㩷㪂㩷㪈㪏㪘
㪌㪇 㪌㪇 㪌㪇
㪊㪇㩷㪤㪆㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪈㪍㪘㩷
㪈㪏㪤㩷㪂㩷㪉㪍㩷㪪㪤㪆㪪㪫㩷㪂㩷㪍㪘
㪌㪇
㪌㪇
㪈㪇㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪏㪘
㪋㪏
㪌㪇
㪉㪤㩷㪂㩷㪋㩷㪪㪤㪆㪪㪫㩷㪂㩷㪋㪋㪘 㪉㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪋㪍㪘 㪉㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪋㪉㪘
㪌㪇 㪌㪇 㪌㪇
㪏㪤㩷㪂㩷㪊㪋㩷㪪㪤㪆㪪㪫㩷㪂㩷㪏㪘 㪍㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪏㪪㪫㩷㪂㩷㪉㪉㪘
㪌㪇 㪌㪇
㪈㪍㪤㩷㪂㩷㪈㪇㪪㪤㩷㪂㩷㪉㪋㪘 㪍㪤㩷㪂㩷㪉㪍㩷㪪㪤㪆㪪㪫㩷㪂㩷㪈㪏㪘
㪌㪇 㪌㪇
㪤㪃㩷㪝
㪈㪋㪤㩷㪂㩷㪋㪇㪪㪤㩷㪂㩷㪊㪉㪪㪫㩷㪂㩷㪈㪋㪘
㪈㪋㪤㩷㪂㩷㪊㪍㪪㪤㩷㪂㩷㪊㪏㪪㪫㩷㪂㩷㪈㪉㪘 㪈㪋㪤㩷㪂㩷㪋㪇㪪㪤㩷㪂㩷㪊㪏㪪㪫㩷㪂㩷㪏㪘
㪈㪇㪤㩷㪂㩷㪋㪇㪪㪤㩷㪂㩷㪊㪍㪪㪫㩷㪂㩷㪈㪋㪘
㪈㪇㪤㩷㪂㩷㪋㪉㪪㪤㩷㪂㩷㪊㪋㪪㪫㩷㪂㩷㪈㪋㪘
㪈㪋㪤㩷㪂㩷㪋㪍㪪㪤㩷㪂㩷㪊㪉㪪㪫㩷㪂㩷㪏㪘
㪈㪇㪇
㪈㪇㪇
㪈㪇㪇
㪝㪃㩷㪤
㪝㪃㩷㪤
㪈㪇㪇
㪈㪇㪇
㪝㪃㩷㪤
㪝㪃㩷㪤
㪈㪉㪤㩷㪂㩷㪋㪇㪪㪤㩷㪂㩷㪊㪏㪪㪫㩷㪂㩷㪈㪇㪘 㪈㪉㪤㩷㪂㩷㪋㪉㪪㪤㩷㪂㩷㪊㪍㪪㪫㩷㪂㩷㪈㪇㪘
㪈㪏㪤㩷㪂㩷㪉㪏㩷㪪㪤㪆㪪㪫㩷㪂㩷㪌㪉㪘
㪐㪏 㪈㪇㪇 㪈㪇㪇
㪈㪉㪤㩷㪂㩷㪈㪏㪪㪤㩷㪂㩷㪉㪇㩷㪪㪫㪆㪘
㪌㪇 㪝㪃㩷㪤 㪝㪃㩷㪤
㪈㪇㪤㩷㪂㩷㪉㪉㪪㪤㩷㪂㩷㪈㪏㩷㪪㪫㪆㪘
㪌㪇
㪈㪉㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪈㪋㪪㪫㩷㪂㩷㪈㪉㪘
㪌㪇
㪝㪃㩷㪤
㪈㪉㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪈㪋㪪㪫㩷㪂㩷㪈㪉㪘
㪏㪤㩷㪂㩷㪊㪍㪪㪤㩷㪂㩷㪈㪍㪪㪫㩷㪂㩷㪊㪏㪘 㪋㪋㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪋㪋㪘
㪉㪇㪤㩷㪂㩷㪈㪏㪪㪤㩷㪂㩷㪈㪋㪪㪫㩷㪂㩷㪋㪏㪘
㪈㪇㪇 㪐㪏 㪈㪇㪇
㪈㪍㪤㩷㪂㩷㪉㪍㪪㪤㩷㪂㩷㪌㪏㩷㪪㪫㪆㪘 㪊㪉㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪋㪍㪘
㪈㪇㪇
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪈㪇㪇
㪛 㪉㫅
㪝㪃㩷㪤
㪚 㪪㪼㫏
㫁㪸㫇㫆㫅㫀㪺㫌㫊
㪙㩷㫋㫐㫇㪼 㪪㩷㫋㫐㫇㪼
㪙㪸㫉㪹㫆㪻㪼㫊㩷㪻㪸㫃㫀㪼㫅㫊㫀㫊 㪙㪸㫉㪹㫆㪻㪼㫊㩷㫃㪸㪺㫌㫊㫋㫉㫀㫊
㪘㪺㫉㫆㫊㫊㫆㪺㪿㪼㫀㫃㫌㫊 㪙㪸㫉㪹㫌㫊 㪭㪸㫉㫀㪺㫆㫉㪿㫀㫅㫌㫊㩷 㪭㪸㫉㫀㪺㫆㫉㪿㫀㫅㫌㫊 㪭㪸㫉㫀㪺㫆㫉㪿㫀㫅㫌㫊 㩷㫊㫀㫄㫌㫊
㪘㪺㫉㫆㫊㫊㫆㪺㪿㪼㫀㫃㫌㫊
㪥㪼㫆㫃㫀㫊㫊㫆㪺㪿㫀㫃㫌㫊 㪥㪼㫆㫃㫀㫊㫊㫆㪺㪿㫀㫃㫌㫊 㪥㪼㫆㫃㫀㫊㫊㫆㪺㪿㫀㫃㫌㫊 㪥㪼㫆㫃㫀㫊㫊㫆㪺㪿㫀㫃㫌㫊 㪥㪼㫆㫃㫀㫊㫊㫆㪺㪿㫀㫃㫌㫊 㪦㫅㫐㪺㪿㫆㫊㫋㫆㫄㪸 㪦㫅㫐㪺㪿㫆㫊㫋㫆㫄㪸 㪦㫅㫐㪺㪿㫆㫊㫋㫆㫄㪸 㪧㪼㫉㪺㫆㪺㫐㫇㫉㫀㫊 㪧㪼㫉㪺㫆㪺㫐㫇㫉㫀㫊 㪧㫆㫉㫆㫇㫌㫅㫋㫀㫌㫊 㪧㫆㫉㫆㫇㫌㫅㫋㫀㫌㫊 㪧㫉㫆㪹㪸㫉㪹㫌㫊 㪧㫊㪼㫌㪻㫆㪹㪸㫉㪹㫌㫊 㪧㫊㪼㫌㪻㫆㪹㪸㫉㪹㫌㫊 㪧㫊㪼㫌㪻㫆㪹㪸㫉㪹㫌㫊 㪧㫊㪼㫌㪻㫆㪹㪸㫉㪹㫌㫊 㪧㫊㪼㫌㪻㫆㪹㪸㫉㪹㫌㫊 㪧㫊㪼㫌㪻㫆㪹㪸㫉㪹㫌㫊 㪧㫊㪼㫌㪻㫆㪹㪸㫉㪹㫌㫊 㪧㫊㪼㫌㪻㫆㪹㪸㫉㪹㫌㫊 㪧㫊㪼㫌㪻㫆㪹㪸㫉㪹㫌㫊 㪧㫌㫅㫋㫀㫆㫇㫃㫀㫋㪼㫊 㪧㫌㫅㫋㫀㫌㫊 㪧㫌㫅㫋㫀㫌㫊 㪧㫌㫅㫋㫀㫌㫊 㪧㫌㫅㫋㫀㫌㫊 㪧㫌㫅㫋㫀㫌㫊 㪧㫌㫅㫋㫀㫌㫊 㪧㫌㫅㫋㫀㫌㫊 㪧㫌㫅㫋㫀㫌㫊 㪧㫌㫅㫋㫀㫌㫊 㪧㫌㫅㫋㫀㫌㫊 㪧㫌㫅㫋㫀㫌㫊 㪧㫌㫅㫋㫀㫌㫊 㪧㫌㫅㫋㫀㫌㫊 㪧㫌㫅㫋㫀㫌㫊 㪧㫌㫅㫋㫀㫌㫊 㪧㫌㫅㫋㫀㫌㫊
㪿㪼㫏㪸㪾㫆㫅㫆㫃㪼㫇㫀㫊 㪿㪼㫏㪸㪾㫆㫅㫆㫃㪼㫇㫀㫊 㪿㪼㫏㪸㪾㫆㫅㫆㫃㪼㫇㫀㫊 㫊㫌㫄㪸㫋㫉㪸㫅㫌㫊
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㫇㪼㫉㪽㪸㫄㫀㫃㫐㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷
㪫㪸㪹㫃㪼㩷㪍㪅㪈㪈㩷㩷㪦㫉㪻㪼㫉㩷㪚㪰㪧㪩㪠㪥㪠㪝㪦㪩㪤㪜㪪㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀
㪏㪇
㪎㪋
㪎㪏
㪐㪋
㪐㪇
㪌㪋 㪌㪋
㪎㪇
㪎㪍
㪈㪌㪋
㪈㪌㪇 㪈㪌㪋
㪈㪌㪇
㪈㪌㪉
㪈㪍㪇
㪈㪌㪉 㪈㪌㪋
㪏㪇
㪏㪉
㪈㪎㪇 㪈㪌㪍
㪎㪍
㪎㪋
㪎㪋
㪈㪋㪉 㪈㪌㪍
㪈㪊㪏
㪈㪋㪏
㪈㪋㪉
㪏㪋
㪏㪉
㪐㪉 㪏㪍
㪐㪋
㪏㪏
㪐㪋 㪐㪋
㪐㪉
㪌㪏
㪌㪍
㪎㪏
㪐㪉
㪎㪍 㪏㪉
㪈㪏㪍
㪈㪏㪏 㪈㪐㪉
㪈㪏㪍
㪈㪏㪍
㪈㪐㪉
㪈㪐㪇 㪈㪐㪇
㪈㪋㪋
㪐㪉
㪏㪏
㪏㪏
㪈㪌㪏 㪈㪌㪍
㪈㪌㪉
㪈㪌㪋
㪏
㪋
㪋
㪊
㪊
㪋
㪝 㪞 㪟 㪥㪝㪈 㪥㪝㪉 㪘㪾㪄 㪥㪦㪩㫊
㪈㪅㪌㩷㪝㪛
㪈㪅㪏㩷㪝㪚㪤㪃㩷㪉㪅㪇㩷㪙㪝㪘
㩿㪈㪅㪎㩷㪝㪚㪤㪀
㩿㪈㪅㪐㩷㪙㪝㪘㪀
㩿㪉㪅㪇㪁㩷㪝㪚㪤㪀
㪉㪅㪊㩷㪝㪛
㪋㪅㪍㩷㪝㪛
㪠 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪪㪅㩷㪘㪽㫉㫀㪺㪸㩷㩿㪙㪸㫀㫅㫊㫂㫃㫆㫆㪽㪀
㪪㪅㩷㪘㪽㫉㫀㪺㪸㩷㩿㪞㫉㫆㫆㫋㩷㪩㪅㪀
㪪㪅㩷㪘㪽㫉㫀㪺㪸 㪪㪅㩷㪘㪽㫉㫀㪺㪸㩷㩿㪙㫃㫀㫅㪻㪼㫂㫃㫆㫆㪽㪀㩷
㩿㪘㫊㫀㪸㪀
㪚㪿㫀㫅㪸㩷㩿㪰㫌㫅㫅㪸㫅㪀
㪚㪿㫀㫅㪸㩷㩿㪰㫌㫅㫅㪸㫅㪀
㪚㪿㫀㫅㪸㩷㩿㪰㫌㫅㫅㪸㫅㪀 㪚㪿㫀㫅㪸㩷㩿㪰㫌㫅㫅㪸㫅㪀
㪚㪿㫀㫅㪸㩷㩿㪪㫀㪺㪿㫌㪸㫅㪀
㪚㪿㫀㫅㪸㩷㩿㪞㫌㪸㫅㪾㪻㫆㫅㪾㪀㩷
㪚㪿㫀㫅㪸㩷㩿㪞㫌㪸㫅㪾㪻㫆㫅㪾㪀㩷
㩿㪘㫊㫀㪸㪀 㪠㫅㪻㫀㪸
㪠㫅㪻㫀㪸㩷㩿㪤㪼㪾㪿㪸㫃㪸㫐㪸㪀
㪠㫅㪻㫀㪸㩷㩿㪘㪅㪧㪅㪀
㪥㪼㫇㪸㫃
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪉㪙
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇 㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇 㪘㪚㪥㪔㪌㪇
㪋㪯
㪋㪯
㪋㪯 㪋㪯
㩿㪘㫊㫀㪸㪀
㩿㪘㫊㫀㪸㪀
㪠㫅㪻㫀㪸㩷㩿㪢㪼㫉㪸㫃㪸㪀 㩿㪘㫊㫀㪸㪀
㩿㪘㫊㫀㪸㪀
㪠㫅㪻㫀㪸㩷㩿㪡㩷㩽㩷㪢㪀
㩿㪘㫊㫀㪸㪀
㩿㪘㫊㫀㪸㪀 㩿㪘㫊㫀㪸㪀
㪠㫅㪻㫀㪸㩷㩿㪪㫀㫄㫃㫀㫇㪸㫃㩷㪟㫀㫃㫃㫊㪀
㪠㫅㪻㫀㪸㩷㩿㪘㪅㪧㪅㪀 㪠㫅㪻㫀㪸㩷㩿㪡㩷㩽㩷㪢㪀
㩿㪘㫊㫀㪸㪀
㩿㪘㫊㫀㪸㪀
㩿㪘㫊㫀㪸㪀
㪫㪿㪸㫀㫃㪸㫅㪻㩷㩿㪬㫋㪿㪸㫀㩷㪫㪿㪸㫅㫀㪀 㩿㪘㫊㫀㪸㪀
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
㪦㪄㪉
㪥㪄㪍㪊 㪥㪄㪍㪊
㪥㪄㪍㪊
㪥㪄㪍㪊
㪥㪄㪍㪊
㪥㪄㪍㪊㪃㩷㪫㪄㪌㪌 㪥㪄㪍㪊
㪪㪄㪈㪉㪍
㪱㪄㪌㪃㩷㪱㪄㪏
㪱㪄㪌
㪱㪄㪌㪃㩷㪱㪄㪏 㪱㪄㪏
㪣㪄㪋㪊㪃㩷㪰㪄㪈㪌
㪞㪄㪍㪐㪃㩷㪰㪄㪈㪌
㪞㪄㪍㪐㪃㩷㪰㪄㪈㪌
㪪㪄㪈㪉㪊 㪢㪄㪋㪍
㪤㪄 㪈 㪍 㪇
㪪㪄㪈㪎㪊
㪤㪄 㪋 㪏
㪦㪄㪌
㪫㪄㪍㪇
㪥㪄㪌㪎 㪫㪄㪍㪇㪃㩷㪭㪄㪏㪍㪃㩷㪟㪄㪈㪊
㪫㪄㪍㪈
㪪㪄㪋㪐
㪭㪄㪎㪉㪃㩷㪭㪄㪏㪍
㪫㪄㪍㪈㪃㩷㪟㪄㪈㪊 㪫㪄㪈㪉
㪢㪄㪋㪈㪃㩷㪦㪄㪋㪏
㪪㪄㪈㪎㪊 㪫㪄㪌㪉
㪫㪄㪍㪈
㪢㪄㪉㪎
㪫㪄㪍㪇
㪤㪄 㪈 㪉 㪫㪄㪍㪈
㪪㪅㩷㪘㪽㫉㫀㪺㪸㩷㩿㪞㫉㫆㪹㪹㪼㫃㪸㪸㫉㫊㩷㪩㪅㪀 㪥㪄㪍㪊
㪪㪅㩷㪘㪽㫉㫀㪺㪸
㪪㪅㩷㪘㪽㫉㫀㪺㪸㩷㩿㪮㪼㫄㫄㪼㫉㫊㩷㪩㪅㪀㩷 㪪㪅㩷㪘㪽㫉㫀㪺㪸㩷㩿㪫㪿㪼㪼㩷㪩㪅㪀
㪋㪯㪃㩷㪘㪚㪥㪔㪈㪇㪇 㪪㪅㩷㪘㪽㫉㫀㪺㪸㩷㩿㪮㫆㫃㫍㪼㫂㫃㫆㫆㪽㪀
㪋㪯
㪋㪯
㪋㪯 㪋㪯
㪋㪯
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪋㪯㪃㩷㪘㪚㪥㪔㪐㪏㩷 㪋㪯㪃㩷㪘㪚㪥㪔㪐㪏㩷
㪘㪚㪥㪔㪌㪉
㪘㪚㪥㪔㪌㪉
㪘㪚㪥㪔㪌㪉
㪋㪯 㪋㪯
㪋㪯
㪋㪯
㪋㪯
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
50
㪧㫌㫅㫋㫀㫌㫊 㪧㫌㫅㫋㫀㫌㫊 㪧㫌㫅㫋㫀㫌㫊 㪧㫌㫅㫋㫀㫌㫊 㪧㫌㫅㫋㫀㫌㫊 㪧㫌㫅㫋㫀㫌㫊 㪧㫌㫅㫋㫀㫌㫊 㪧㫌㫅㫋㫀㫌㫊 㪧㫌㫅㫋㫀㫌㫊 㪧㫌㫅㫋㫀㫌㫊 㪧㫌㫅㫋㫀㫌㫊 㪧㫌㫅㫋㫀㫌㫊 㪧㫌㫅㫋㫀㫌㫊 㪧㫌㫅㫋㫀㫌㫊 㪧㫌㫅㫋㫀㫌㫊 㪧㫌㫅㫋㫀㫌㫊 㪧㫌㫅㫋㫀㫌㫊 㪧㫌㫅㫋㫀㫌㫊 㪧㫌㫅㫋㫀㫌㫊 㪧㫌㫅㫋㫀㫌㫊 㪧㫌㫅㫋㫀㫌㫊 㪧㫌㫅㫋㫀㫌㫊 㪧㫌㫅㫋㫀㫌㫊 㪧㫌㫅㫋㫀㫌㫊 㪧㫌㫅㫋㫀㫌㫊 㪧㫌㫅㫋㫀㫌㫊 㪧㫌㫅㫋㫀㫌㫊 㪧㫌㫅㫋㫀㫌㫊 㪧㫌㫅㫋㫀㫌㫊 㪧㫌㫅㫋㫀㫌㫊 㪧㫌㫅㫋㫀㫌㫊 㪪㫀㫅㫆㪺㫐㪺㫃㫆㪺㪿㪼㫀㫃㫌㫊 㪪㫀㫅㫆㪺㫐㪺㫃㫆㪺㪿㪼㫀㫃㫌㫊 㪪㫀㫅㫆㪺㫐㪺㫃㫆㪺㪿㪼㫀㫃㫌㫊 㪪㫀㫅㫆㪺㫐㪺㫃㫆㪺㪿㪼㫀㫃㫌㫊 㪪㫀㫅㫆㪺㫐㪺㫃㫆㪺㪿㪼㫀㫃㫌㫊 㪪㫇㫀㫅㫀㪹㪸㫉㪹㫌㫊 㪪㫇㫀㫅㫀㪹㪸㫉㪹㫌㫊 㪪㫇㫀㫅㫀㪹㪸㫉㪹㫌㫊
㪽㫀㫃㪸㫄㪼㫅㫋㫆㫊㫌㫊 㪽㫀㫃㪸㫄㪼㫅㫋㫆㫊㫌㫊 㫃㪸㫋㪼㫉㫀㫊㫋㫉㫀㪾㪸 㫄㪸㫅㫀㫇㫌㫉㪼㫅㫊㫀㫊 㫄㪼㫃㪸㫅㪸㫄㫇㫐㫏 㫅㫀㪾㫉㫆㪽㪸㫊㪺㫀㪸㫋㫌㫊 㫆㫃㫀㪾㫆㫃㪼㫇㫀㫊 㫆㫉㫇㪿㫆㫀㪻㪼㫊 㫆㫉㫇㪿㫆㫀㪻㪼㫊 㫇㪸㫉㫋㫀㫇㪼㫅㫋㪸㫑㫆㫅㪸 㫇㪼㫅㫋㪸㫑㫆㫅㪸 㫊㪸㫉㪸㫅㪸 㫊㪸㫉㪸㫅㪸㩷㫊㫌㪹㫅㪸㫊㫌㫋㫌㫊 㫊㪼㫄㫀㪽㪸㫊㪺㫀㫆㫃㪸㫋㫌㫊 㫊㪼㫄㫀㪽㪸㫊㪺㫀㫆㫃㪸㫋㫌㫊 㫊㫆㫇㪿㫆㫉㪼 㫊㫆㫇㪿㫆㫉㪼 㫊㫆㫇㪿㫆㫉㪼 㫊㫆㫇㪿㫆㫉㪼 㫊㫆㫇㪿㫆㫉㪼 㫊㫆㫇㪿㫆㫉㪼 㫊㫆㫇㪿㫆㫉㫆㫀㪻㪼㫊 㫊㫋㫆㫃㫀㪺㫑㫂㪸㫅㫌㫊 㫋㪼㫋㫉㪸㫑㫆㫅㪸 㫋㪼㫋㫉㪸㫑㫆㫅㪸 㫋㪼㫋㫉㪸㫑㫆㫅㪸 㫋㪼㫋㫉㪸㫑㫆㫅㪸㩷㫇㪸㫉㫋㫀㫇㪼㫅㫋㪸㫑㫆㫅㪸 㫋㫀㪺㫋㫆 㫋㫀㪺㫋㫆 㫋㫀㪺㫋㫆 㫋㫀㫋㫋㪼㫐㪸 㪾㫉㪸㪿㪸㫄㫀㩷㪾㫉㪸㪿㪸㫄㫀 㪾㫉㪸㪿㪸㫄㫀㩷㫋㫀㫅㪾㫀 㪾㫉㪸㪿㪸㫄㫀㩷㫋㫀㫅㪾㫀 㪾㫉㪸㪿㪸㫄㫀㩷㫋㫀㫅㪾㫀 㫄㪸㪺㫌㫃㪸㫋㫌㫊 㪿㫆㫃㫃㪸㫅㪻㫀 㪻㪼㫅㫋㫀㪺㫌㫃㪸㫋㫌㫊㩷㪻㪼㫅㫋㫀㪺㫌㫃㪸㫋㫌㫊 㫊㫀㫅㪼㫅㫊㫀㫊
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㫇㪼㫉㪽㪸㫄㫀㫃㫐㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷
㪉㪉㪤㩷㪂㩷㪉㪉㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪉㪘 㪊㪋㩷㪤㪆㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪈㪇㪘
㪌㪇 㪌㪇
㪤
㪙㪸㫉㪹㫌㫊
㪙㪸㫉㪹㫆㪻㪼㫊㩷㪺㪸㫃㪻㫎㪼㫃㫃㫀 㪙㪸㫉㪹㫆㪻㪼㫊 㪙㪸㫉㪹㫆㪻㪼㫊
㪈㪇㪇
㪝㪃㩷㪤
㪈㪋㪤㩷㪂㩷㪊㪋㪪㪤㩷㪂㩷㪋㪏㪪㪫㪆㪘 㪈㪏㪤㩷㪂㩷㪊㪉㪪㪤㩷㪂㩷㪋㪍㩷㪪㪫㪆㪘
㪐㪍 㪐㪍
㪈㪏㪤㩷㪂㩷㪊㪉㪪㪤㩷㪂㩷㪉㪍㪪㪫㩷㪂㩷㪉㪋㪘
㪈㪏㪤㩷㪂㩷㪊㪉㪪㪤㩷㪂㩷㪉㪍㪪㪫㩷㪂㩷㪉㪋㪘 㪈㪏㪤㩷㪂㩷㪊㪉㪪㪤㩷㪂㩷㪉㪍㪪㪫㩷㪂㩷㪉㪋㪘
㪈㪏㪤㩷㪂㩷㪊㪋㪪㪤㩷㪂㩷㪋㪋㩷㪪㪫㪆㪘
㪐㪍
㪈㪇㪇 㪈㪇㪇
㪉㪉㪤㩷㪂㩷㪊㪍㪪㪤㩷㪂㩷㪊㪏㩷㪪㪫㪆㪘 㪉㪇㪤㩷㪂㩷㪊㪉㪪㪤㩷㪂㩷㪋㪋㩷㪪㪫㪆㪘
㪐㪍
㪌㪇 㪐㪍
㪉㪏㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪍㪪㪫 㪉㪇㪤㩷㪂㩷㪉㪏㩷㪪㪤㪆㪪㪫㩷㪂㩷㪉㪘
㪌㪇
㪉㪇㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪏㪘 㪉㪏㪤㩷㪂㩷㪉㪉㩷㪪㪤㪆㪪㪫
㪍㪤㩷㪂㩷㪊㪋㩷㪪㪤㪆㪪㪫㩷㪂㩷㪈㪇㪘
㪌㪇 㪌㪇
㪌㪇
㪈㪌㪇
㪈㪌㪇 㪈㪌㪇
㪈㪋㪍
㪈㪋㪋
㪈㪋㪏
㪈㪋㪏
㪈㪌㪋
㪐㪋
㪏㪉
㪈㪅㪋㩷㪝㪛
㩿㪈㪅㪎㩷㪝㪚㪤㪀
㪈㪎㪍
㪈㪎㪍 㪈㪎㪍
㪐㪏
㪈㪇㪇
㪐㪉 㪈㪇㪇
㪐㪇
㪋㪅㪍㩷㪝㪛
㪋㪅㪍㩷㪝㪛
㪉㪅㪋㩷㪙㪝㪘
㩿㪈㪅㪏㩷㪝㪚㪤㪀
㩿㪈㪅㪌㩷㪝㪚㪤㪀 㪏㪋
㪏
㪈㪅㪌㩷㪝㪛
㪉㪅㪇㩷㪝㪛㪃㩷㩿㪈㪅㪐㩷㪙㪝㪘㪀
㪍㪤㩷㪂㩷㪉㪏㩷㪪㪤㪆㪪㪫㩷㪂㩷㪈㪍㪘
㪐㪏 㪐㪇
㪌㪋
㪌㪉
㪌㪋
㪌㪋 㪌㪏
㪌㪋
㪌㪍
㪎㪍
㪐㪍 㪐㪇
㪏㪏
㪐㪏
㪐㪇
㪏㪋 㪐㪉
㪏㪍
㪌㪇
㪐㪋 㪏㪋
㪌㪋
㪌㪋
㪌㪉 㪌㪉
㪌㪋
㪌㪍
㪏㪏 㪎㪍
㪎㪍
㪏㪇
㪎㪋
㪏㪏 㪐㪉
㪏
㪠 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪌㪇
㪝㪃㩷㪤 㪝㪃㩷㪤
㪝㪃㩷㪤
㪉㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪋㪍㪘
㪌㪇
㫇㪸㫉㫋㫀㫇㪼㫅㫋㪸㫑㫆㫅㪸
㪉㪤㩷㪂㩷㪉㩷㪪㪤㪆㪪㪫㩷㪂㩷㪋㪋㪘
㪋㪏
㪋㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪋㪉㪘
㪋㪏
㪋㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪋㪉㪘 㪋㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪊㪏㪘
㪝㪃㩷㪤
㪋㪏 㪋㪏
㪝㪃㩷㪤 㪝
㪉㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪋㪉㪘
㪝㪃㩷㪤
㪋㪏
㪝㪃㩷㪤
㪏㪤㩷㪂㩷㪈㪏㩷㪪㪤㪆㪪㪫㩷㪂㩷㪉㪋㪘
㪌㪇 㪉㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪋㪋㪘
㪈㪉㪤㩷㪂㩷㪉㪍㪪㪤㩷㪂㩷㪏㪪㪫㩷㪂㩷㪋㪘 㪈㪉㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪈㪋㪪㪫㩷㪂㩷㪈㪇㪘
㪌㪇 㪌㪇 㪌㪇
㪈㪉㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪈㪉㪪㪫㩷㪂㩷㪈㪉㪘
㪉㪉㪤㩷㪂㩷㪉㪍㩷㪪㪤㪆㪪㪫㩷㪂㩷㪉㪘
㪌㪇 㪌㪇
㪍㪤㩷㪂㩷㪊㪋㩷㪪㪤㪆㪪㪫㩷㪂㩷㪈㪇㪘
㪌㪇
㪏㪏
㪏㪤㩷㪂㩷㪊㪇㩷㪪㪤㪆㪪㪫㩷㪂㩷㪈㪉㪘 㪈㪋㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪈㪍㪘 㪍㪤㩷㪂㩷㪊㪍㩷㪪㪤㪆㪪㪫㩷㪂㩷㪏㪘
㪌㪇
㪈㪍㪤㩷㪂㩷㪊㪋㩷㪪㪤㪆㪪㪫
㪌㪇 㪌㪇 㪌㪇
㪈㪇㪇
㪈㪉㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪈㪋㪪㪫㩷㪂㩷㪈㪉㪘
㪌㪇
㪏㪍
㪍㪤㩷㪂㩷㪊㪉㩷㪪㪤㪆㪪㪫㩷㪂㩷㪈㪉㪘 㪉㪉㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪏㪘
㪌㪇 㪌㪇
㪐㪇
㪈㪉㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪈㪉㪪㪫㩷㪂㩷㪈㪇㪘
㪏㪋
㪏㪤㩷㪂㩷㪉㪍㩷㪪㪤㪆㪪㪫㩷㪂㩷㪈㪍㪘 㪎㪏
㪝 㪞 㪟 㪥㪝㪈 㪥㪝㪉 㪘㪾㪄 㪥㪦㪩㫊
㪌㪇
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪌㪇
㪛 㪉㫅
㪝
㪝㪃㩷㪤
㪤
㪝㪃㩷㪤
㪚 㪪㪼㫏
㪺㪿㫉㫐㫊㫆㫇㫋㪼㫉㫌㫊 㫊㫋㫀㪾㫄㪸 㫊㫋㫀㪾㫄㪸
㪚㪸㫇㫆㪼㫋㪸㩷㫊㪼㫄㫀㪽㪸㫊㪺㫀㫆㫃㪸㫋㪸
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪫㪸㪹㫃㪼㩷㪍㪅㪈㪈㩷㩷㪦㫉㪻㪼㫉㩷㪚㪰㪧㪩㪠㪥㪠㪝㪦㪩㪤㪜㪪㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀
㪚㪿㫀㫅㪸㩷㩿㪰㫌㫅㫅㪸㫅㪀
㪚㪿㫀㫅㪸㩷㩿㪰㫌㫅㫅㪸㫅㪀
㪚㪿㫀㫅㪸㩷㩿㪰㫌㫅㫅㪸㫅㪀
㪚㪿㫀㫅㪸㩷㩿㪰㫌㫅㫅㪸㫅㪀
㪚㪿㫀㫅㪸㩷㩿㪢㫌㫅㫄㫀㫅㪾㪀
㩿㪘㫊㫀㪸㪀
㪠㫅㪻㫀㪸㩷㩿㪘㪅㪧㪅㪀
㪠㫅㪻㫀㪸㩷㩿㪡㪸㫄㫄㫌㪀 㩿㪘㫊㫀㪸㪀
㩿㪘㫊㫀㪸㪀
㩿㪘㫊㫀㪸㪀
㪠㫅㪻㫀㪸
㪫㪿㪸㫀㫃㪸㫅㪻㩷㩿㪤㪸㪼㩷㪟㫆㫅㪾㩷㪪㫆㫅㪀 㩿㪘㫊㫀㪸㪀
㪫㪿㪸㫀㫃㪸㫅㪻㩷㩿㪘㫐㫌㫋㪿㪸㫐㪸㪀
㪠㫅㪻㫀㪸㩷㩿㪟㪸㫉㫐㪸㫅㪸㪀
㪠㫅㪻㫀㪸㩷㩿㪮㪙㪀
㪠㫅㪻㫀㪸㩷㩿㪟㪸㫉㫐㪸㫅㪸㪀 㪠㫅㪻㫀㪸㩷㩿㪡㩷㩽㩷㪢㪀
㪠㫅㪻㫀㪸㩷㩿㪟㪸㫉㫐㪸㫅㪸㪀
㪠㫅㪻㫀㪸㩷㩿㪫㪸㫄㫀㫃㩷㪥㪸㪻㫌㪀
㩿㪘㫊㫀㪸㪀
㪠㫅㪻㫀㪸㩷㩿㪢㪼㫉㪸㫃㪸㪀 㪚㪿㫀㫅㪸㩷㩿㪞㫌㪸㫅㪾㪻㫆㫅㪾㪀㩷
㪠㫅㪻㫀㪸㩷㩿㪟㪸㫉㫐㪸㫅㪸㪀
㩿㪘㫊㫀㪸㪀
㩿㪘㫊㫀㪸㪀
㪥㪅㩷㪫㪿㪸㫀㫃㪸㫅㪻 㩿㪘㫊㫀㪸㪀
㩿㪘㫊㫀㪸㪀
㩿㪘㫊㫀㪸㪀
㪠㫅㪻㫀㪸㩷㩿㪫㪸㫄㫀㫃㩷㪥㪸㪻㫌㪀
㩿㪘㫊㫀㪸㪀 㪠㫅㪻㫀㪸㩷㩿㪤㪸㫅㫀㫇㫌㫉㪀
㪠㫅㪻㫀㪸㩷㩿㪢㪼㫉㪸㫃㪸㪀
㩿㪘㫊㫀㪸㪀
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪋㪯㪃㩷㪘㪚㪥㪔㪈㪇㪇 㪚㪿㫀㫅㪸㩷㩿㪮㫌㪿㪸㫅㪀㩷
㪋㪯㪃㩷㪘㪚㪥㪔㪈㪇㪇 㪚㪿㫀㫅㪸㩷㩿㪞㫌㪸㫅㪾㪻㫆㫅㪾㩷㪀 㪋㪯㪃㩷㪘㪚㪥㪔㪈㪇㪇 㪚㪿㫀㫅㪸㩷㩿㪞㫌㪸㫅㪾㪻㫆㫅㪾㩷㪀
㪋㪯
㪋㪯
㪋㪯
㪋㪯
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇 㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇 㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇 㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪞㪄㪍㪏㪃㩷㪰㪄㪈㪌
㪞㪄㪍㪏㪃㩷㪰㪄㪈㪌 㪞㪄㪍㪏㪃㩷㪰㪄㪈㪌
㪱㪄㪌㪃㩷㪱㪄㪎㪃㩷㪱㪄㪏
㪱㪄㪌
㪱㪄㪌㪃㩷㪱㪄㪎㪃㩷㪱㪄㪏
㪣㪄㪊㪏
㪣㪄㪊㪏
㪫㪄㪍㪈㪃㩷㪟㪄㪈㪊
㪪㪄㪈㪎㪊
㪪㪄㪌㪏㪃㩷㪭㪄㪏㪍 㪫㪄㪍㪈
㪫㪄㪍㪇
㪫㪄㪍㪇㪃㩷㪪㪄㪈㪋㪈㪃㩷㪟㪄㪈㪊
㪢㪄㪈㪇㪉㪃㩷㪭㪄㪏㪍
㪤㪄 㪐 㪦㪄㪌
㪤㪄 㪐
㪩㪄㪋㪍
㪢㪄㪋㪉
㪩㪄㪎㪌 㪫㪄㪌㪉
㪩㪄㪌㪈
㪢㪄㪋㪈
㪪㪄㪈㪊㪍㪃㩷㪭㪄㪏㪍
㪥㪄㪌㪎 㪞㪄㪍㪐㪃㩷㪰㪄㪈㪌
㪩㪄㪌㪌
㪫㪄㪍㪇
㪫㪄㪍㪇
㪘㪄㪏㪋 㪫㪄㪍㪇㪃㩷㪪㪄㪈㪉㪎
㪫㪄㪍㪇
㪫㪄㪍㪈
㪢㪄㪋㪈
㪫㪄㪍㪇 㪪㪄㪎㪋
㪥㪄㪌㪍
㪫㪄㪍㪈
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
51
㪸㫃㪹㫌㫉㫅㫆㫇㫊 㪸㫃㪹㫌㫉㫅㫆㫇㫊 㪸㫅㪻㪼㫉㫊㫆㫅㫀 㪾㫉㪸㪿㪸㫄㫀 㫄㪸㪺㫉㫆㫃㪼㫇㫀㫊 㫂㫌㫉㪼㫄㪸㫋㫊㫌㫀 㫅㫀㪾㫉㫆㪺㪸㫌㪻㪸 㫎㪸㫅㪾㫀 㪺㪿㫀㫅㪼㫅㫊㫀㫊 㪺㪿㫀㫅㪼㫅㫊㫀㫊 㪻㪸㪹㫉㫐㫀 㪻㪸㪹㫉㫐㫀 㪼㫉㫐㫋㪿㫉㫆㫇㫋㪼㫉㫌㫊 㪼㫉㫐㫋㪿㫉㫆㫇㫋㪼㫉㫌㫊 㪼㫉㫐㫋㪿㫉㫆㫇㫋㪼㫉㫌㫊 㫄㫆㫅㪾㫆㫃㫀㪺㫌㫊 㫄㫆㫅㪾㫆㫃㫀㪺㫌㫊
㪘㫅㪸㪹㪸㫉㫀㫃㫀㫌㫊 㪘㫅㪸㪹㪸㫉㫀㫃㫀㫌㫊 㪘㫅㪸㪹㪸㫉㫀㫃㫀㫌㫊 㪘㫅㪸㪹㪸㫉㫀㫃㫀㫌㫊 㪘㫅㪸㪹㪸㫉㫀㫃㫀㫌㫊 㪘㫅㪺㪿㪼㫉㫐㫋㪿㫉㫆㪺㫌㫃㫋㪼㫉 㪘㫅㪺㪿㪼㫉㫐㫋㪿㫉㫆㪺㫌㫃㫋㪼㫉 㪘㫅㪺㪿㪼㫉㫐㫋㪿㫉㫆㪺㫌㫃㫋㪼㫉 㪘㫇㪿㫐㫆㪺㫐㫇㫉㫀㫊 㪘㫇㪿㫐㫆㪺㫐㫇㫉㫀㫊 㪚㪿㪸㫅㫆㪻㫀㪺㪿㫋㪿㫐㫊 㪚㪿㪸㫅㫆㪻㫀㪺㪿㫋㪿㫐㫊 㪚㪿㪸㫅㫆㪻㫀㪺㪿㫋㪿㫐㫊 㪚㪿㪸㫅㫆㪻㫀㪺㪿㫋㪿㫐㫊 㪚㪿㪸㫅㫆㪻㫀㪺㪿㫋㪿㫐㫊 㪚㪿㪸㫅㫆㪻㫀㪺㪿㫋㪿㫐㫊 㪚㪿㪸㫅㫆㪻㫀㪺㪿㫋㪿㫐㫊
㩷㩷㪚㫌㫃㫋㫉㫀㫅㪸㪼
㪺㪿㪼㫃㫐㫅㫆㫀㪻㪼㫊 㪻㫆㫌㫉㫆㫅㪼㫅㫊㫀㫊 㫂㪿㫌㪻㫉㪼㪼 㫂㪿㫌㪻㫉㪼㪼 㫂㪿㫌㪻㫉㪼㪼 㫂㪿㫌㪻㫉㪼㪼 㫄㫌㫊㫊㫌㫃㫃㪸㪿 㫇㫉㫆㪾㪼㫅㪼㫀㫌㫊 㫇㫌㫋㫀㫋㫆㫉㪸 㫇㫌㫋㫀㫋㫆㫉㪸 㫇㫌㫋㫀㫋㫆㫉㪸 㫇㫌㫋㫀㫋㫆㫉㪸 㫊㫀㫅㪼㫅㫊㫀㫊 㫊㫆㫉㫆 㫋㫆㫉 㫋㫆㫉 㫋㫆㫉 㫋㫆㫉 㫋㫆㫉 㪹㪼㫊㫆 㫅㪼㫃㫊㫇㫉㫌㫀㫋㪼㫅㫊㫀㫊
㪫㫆㫉 㪫㫆㫉 㪫㫆㫉 㪫㫆㫉 㪫㫆㫉 㪫㫆㫉 㪫㫆㫉 㪫㫆㫉 㪫㫆㫉 㪫㫆㫉 㪫㫆㫉 㪫㫆㫉 㪫㫆㫉 㪫㫆㫉 㪫㫆㫉 㪫㫆㫉 㪫㫆㫉 㪫㫆㫉 㪫㫆㫉 㪭㪸㫉㫀㪺㫆㫉㪿㫀㫅㫌㫊 㪭㪸㫉㫀㪺㫆㫉㪿㫀㫅㫌㫊
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㫇㪼㫉㪽㪸㫄㫀㫃㫐㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷
㪜㫉㫐㫋㪿㫉㫆㪺㫌㫃㫋㪼㫉 㪜㫉㫐㫋㪿㫉㫆㪺㫌㫃㫋㪼㫉㩷㪿㫐㫇㫊㪼㫃㫆㫅㫆㫋㫌㫊 㪚㫌㫃㫋㪼㫉 㪜㫉㫐㫋㪿㫉㫆㪺㫌㫃㫋㪼㫉㩷㫀㫃㫀㫊㪿㪸㪼㪽㫆㫉㫄㫀㫊 㪜㫉㫐㫋㪿㫉㫆㪺㫌㫃㫋㪼㫉㩷㫀㫃㫀㫊㪿㪸㪼㪽㫆㫉㫄㫀㫊 㪜㫉㫐㫋㪿㫉㫆㪺㫌㫃㫋㪼㫉 㪜㫉㫐㫋㪿㫉㫆㪺㫌㫃㫋㪼㫉
㫄㫆㫊㪸㫃㩷㫄㪸㪿㪸㫅㪸㪻㫀㪺㫌㫊
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪫㪸㪹㫃㪼㩷㪍㪅㪈㪈㩷㩷㪦㫉㪻㪼㫉㩷㪚㪰㪧㪩㪠㪥㪠㪝㪦㪩㪤㪜㪪㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀
㪉㪋㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪌㪇㪘
㪈㪇㪇
㪉㪇㪤㩷㪂㩷㪉㪋㪪㪤㩷㪂㩷㪉㪋㪪㪫㩷㪂㩷㪊㪉㪘
㪈㪉㪤㩷㪂㩷㪉㪋㪪㪤㩷㪂㩷㪈㪉㪪㪫
㪉㪇㪤㩷㪂㩷㪉㪏㩷㪪㪤㪆㪪㪫
㪋㪏 㪝㪃㩷㪤
㪈㪍㪤㩷㪂㩷㪉㪍㪪㪤㩷㪂㩷㪍㪪㪫 㪈㪍㪤㩷㪂㩷㪉㪍㪪㪤㩷㪂㩷㪍㪪㪫
㪋㪏 㪋㪏
㪝㪃㩷㪤 㪝㪃㩷㪤
㪈㪋㪤㩷㪂㩷㪉㪏㪪㪤㩷㪂㩷㪍㪪㪫 㪉㪇㪤㩷㪂㩷㪉㪏㩷㪪㪤㪆㪪㪫
㪋㪏 㪋㪏
㪈㪍㪤㩷㪂㩷㪉㪋㪪㪤㩷㪂㩷㪏㪪㪫
㪋㪏
㪝㪃㩷㪤
㪈㪍㪤㩷㪂㩷㪉㪏㪪㪤㩷㪂㩷㪋㪪㪫
㪈㪍㪤㩷㪂㩷㪉㪍㪪㪤㩷㪂㩷㪍㩷㪪㪫㪆㪘
㪋㪏
㪋㪏
㪝㪃㩷㪤
㪉㪇㪤㩷㪂㩷㪉㪋㪪㪤㩷㪂㩷㪋㪪㪫 㪈㪏㪤㩷㪂㩷㪉㪍㪪㪤㩷㪂㩷㪋㪪㪫 㪈㪍㪤㩷㪂㩷㪉㪍㪪㪤㩷㪂㩷㪍㪪㪫
㪝㪃㩷㪤
㪋㪏 㪋㪏 㪋㪏
㪝㪃㩷㪤 㪝㪃㩷㪤 㪤
㪈㪏㪤㩷㪂㩷㪉㪋㪪㪤㩷㪂㩷㪍㪪㪫
㪋㪏 㪋㪏
㪈㪉㪤㩷㪂㩷㪉㪋㪪㪤㩷㪂㩷㪈㪉㪪㪫 㪈㪋㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪈㪋㪪㪫
㪋㪏 㪋㪏 㪝㪃㩷㪤
㪈㪉㪤㩷㪂㩷㪉㪋㪪㪤㩷㪂㩷㪈㪉㪪㪫 㪈㪋㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪈㪋㪪㪫
㪋㪏 㪋㪏
㪈㪌㪇 㪍㪍㩷㪤㪆㪪㪤㩷㪂㩷㪏㪋㩷㪪㪫㪆㪘 㪺㪸㪅㩷㪈㪌㪇
㪈㪇㪇 㪝㪃㩷㪤
㪉㪍㪤㩷㪂㩷㪈㪏㪪㪫㩷㪂㩷㪌㪍㪘
㪈㪇㪇
㪉㪋㪤㩷㪂㩷㪉㪋㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪋㪍㪘
㪈㪇㪇
㪤
㪋㪋㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪋㪉㩷㪪㪫㪆㪘 㪈㪇㪤㩷㪂㩷㪊㪇㪪㪤㩷㪂㩷㪍㪇㩷㪪㪫㪆㪘
㪈㪏㪤㩷㪂㩷㪊㪇㪪㪤㩷㪂㩷㪌㪉㩷㪪㪫㪆㪘
㪈㪇㪇 㪈㪇㪇 㪈㪇㪇
㪈㪉㪤㩷㪂㩷㪉㪉㪪㪤㩷㪂㩷㪈㪋㪪㪫㩷㪂㩷㪌㪉㪘
㪈㪇㪇
㪉㪇㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪉㪇㪪㪫㩷㪂㩷㪋㪇㪘
㪈㪇㪇 㪊㪉㪤㩷㪂㩷㪈㪍㪪㪫㩷㪂㩷㪌㪉㪘 㪈㪉㪤㩷㪂㩷㪈㪏㪪㪤㩷㪂㩷㪎㪇㩷㪪㪫㪆㪘
㪉㪉㪤㩷㪂㩷㪉㪋㪪㪤㩷㪂㩷㪉㪋㪪㪫㩷㪂㩷㪊㪇㪘
㪈㪇㪇 㪈㪇㪤㩷㪂㩷㪉㪋㪪㪤㩷㪂㩷㪈㪋㪪㪫㩷㪂㩷㪌㪉㪘
㪉㪇㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪉㪉㪪㪫㩷㪂㩷㪋㪋㪘
㪈㪇㪇 㪈㪇㪇
㪈㪏㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪋㪋㪪㪫㩷㪂㩷㪉㪉㪘
㪈㪇㪇 㪈㪇㪇
㪈㪇㪇
㪈㪍㪤㩷㪂㩷㪉㪏㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪌㪇㪘 㪈㪍㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪏㪪㪫㩷㪂㩷㪍㪇㪘
㪉㪉㪤㩷㪂㩷㪊㪇㪪㪤㩷㪂㩷㪋㪏㩷㪪㪫㪆㪘
㪈㪇㪇 㪈㪇㪇
㪉㪇㪤㩷㪂㩷㪊㪇㪪㪤㩷㪂㩷㪉㪋㪪㪫㩷㪂㩷㪉㪍㪘
㪈㪇㪇
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪈㪇㪇
㪛 㪉㫅
㪝㪃㩷㪤
㪝㪃㩷㪤
㪝㪃㩷㪤
㪚 㪪㪼㫏
㪐㪇
㪐㪇 㪐㪇
㪏㪏
㪐㪉
㪐㪇
㪐㪉 㪐㪇
㪐㪉
㪐㪇
㪏㪋
㪏㪋 㪏㪉
㪏㪉
㪏㪋
㪉㪈㪍
㪈㪋㪋
㪈㪉㪍
㪈㪋㪏
㪈㪌㪏 㪈㪋㪇
㪈㪋㪋
㪈㪋㪏
㪈㪊㪋
㪈㪊㪉 㪈㪊㪇
㪈㪊㪋
㪈㪋㪇
㪈㪋㪍
㪈㪊㪋
㪈㪊㪋
㪈㪋㪋 㪈㪊㪉
㪈㪌㪉
㪈㪌㪇
㪐㪍
㪐㪍
㪐㪍
㪐㪍 㪐㪍
㪐㪍
㪐㪍
㪐㪍 㪐㪍
㪐㪍
㪐㪍
㪐㪍
㪐㪍 㪐㪍
㪐㪍
㪐㪍
㪈㪍㪏
㪈㪋㪋
㪈㪌㪋
㪈㪌㪇
㪈㪋㪏
㪈㪋㪏
㪈㪋㪏
㪈㪍㪇
㪈㪎㪇
㪈㪌㪍
㪈㪎㪏
㪈㪌㪇 㪈㪋㪇
㪈㪎㪋
㪍 㪍
㪎
㪏
㪋
㪋
㪋
㪋
㪈㪇
㪋
㪝 㪞 㪟 㪥㪝㪈 㪥㪝㪉 㪘㪾㪄 㪥㪦㪩㫊
㪉㪅㪇㪁㩷㪝㪛
㪉㪅㪈㪁㩷㪝㪛 㪈㪅㪍㪁㩷㪝㪛
㩿㪉㪅㪊㩷㪝㪛㪀
㪠 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪪㪄㪈㪏㪐㪃㩷㪤㪄㪈㪍㪇
㪣㪄㪋
㪢㪄㪊㪍
㪢㪄㪋㪈 㪩㪄㪎㪈
㪤㪄㪈㪉
㪱㪄㪏
㪪㪄㪈㪏㪐㪃㩷㪤㪄㪈㪍㪇
㪣㪄㪋 㪩㪄㪎㪈
㪢㪄㪊㪊
㪪㪄㪈㪏㪐㪃㩷㪤㪄㪈㪍㪇
㪢㪄㪈㪈㪈㪃㩷㪤㪄㪈㪍㪇
㪤㪄㪈㪍㪇
㪢㪄㪈㪈㪈
㪢㪄㪊㪍 㪣㪄㪋
㪱㪄㪏
㪪㪄㪈㪏㪐㪃㩷㪤㪄㪈㪍㪇
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇 㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇 㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㩿㪟㫌㪹㪼㫀㪃㩷㪚㪿㫀㫅㪸㪀
㪚㪿㫀㫅㪸㩷㩿㪟㫌㪹㪼㫀㪀
㩿㪟㫌㪹㪼㫀㪃㩷㪚㪿㫀㫅㪸㪀
㪚㪿㫀㫅㪸㩷㩿㪟㫌㪹㪼㫀㪀 㪚㪿㫀㫅㪸㩷㩿㪟㫌㪹㪼㫀㪀
㪚㪿㫀㫅㪸㩷㩿㪞㫌㪸㫅㪾㪻㫆㫅㪾㪀㩷
㪚㪿㫀㫅㪸㩷㩿㪟㫌㪹㪼㫀㪀
㪢㫆㫉㪼㪸㩷㩿㪰㪼㫊㪸㫅㪄㪾㫌㫅㪀
㪚㪿㫀㫅㪸㩷㩿㪪㫀㪺㪿㫌㪸㫅㪀 㪡㪸㫇㪸㫅㩷㩿㪢㫐㫌㫊㪿㫌㪀
㪚㪿㫀㫅㪸㩷㩿㪪㫀㪺㪿㫌㪸㫅㪀
㪚㪿㫀㫅㪸㩷㩿㪪㫀㪺㪿㫌㪸㫅㪀
㪚㪿㫀㫅㪸㩷㩿㪰㫌㫅㫅㪸㫅㪀㩷
㪚㪿㫀㫅㪸㩷㩿㪢㫌㫅㫄㫀㫅㪾㪀 㪚㪿㫀㫅㪸㩷㩿㪰㫌㫅㫅㪸㫅㪀㩷
㪚㪿㫀㫅㪸㩷㩿㪨㫀㫃㫌㩷㪣㪸㫂㪼㪀
㪚㪿㫀㫅㪸㩷㩿㪢㫌㫅㫄㫀㫅㪾㩷㪣㪸㫂㪼㪀
㪣㪄㪌㪊
㪣㪄㪋㪇㪃㩷㪰㪄㪈㪌㪃㩷㪚㪄㪏㪊
㪣㪄㪌㪊
㪣㪄㪋㪇㪃㩷㪩㪄㪋㪉㪃㩷㪚㪄㪏㪊 㪣㪄㪋㪇㪃㩷㪩㪄㪋㪊㪃㩷㪩㪄㪈㪇㪌㪃㩷㪚㪄㪏㪊
㪣㪄㪊㪉
㪣㪄㪋㪇㪃㩷㪩㪄㪋㪊
㪢㪄㪌㪌㪃㩷㪣㪄㪈㪉
㪣㪄㪊㪉㪃㩷㪰㪄㪈㪌 㪤㪄㪌㪇㪃㩷㪪㪄㪈㪋㪈
㪣㪄㪊㪉㪃㩷㪰㪄㪈㪌
㪰㪄㪈㪌
㪱㪄㪊
㪱㪄㪊 㪱㪄㪊
㪱㪄㪊
㪱㪄㪊
㪍㪯㪃㩷㪘㪚㪥㪔㪈㪌㪇 㪜㫋㪿㫀㫆㫇㫀㪸㩷㩿㪙㫃㫌㪼㩷㪥㫀㫃㪼㪃㩷㪣㪅㩷㪫㪸㫅㪸㪀 㪞㪄㪋㪎㪃㩷㪢㪄㪈㪇㪏 㪍㪯 㪪㪅㩷㪘㪽㫉㫀㪺㪸 㪦㪄㪉
㪋㪯㪃㩷㪘㪚㪥㪔㪈㪇㪇 㪠㫅㪻㫀㪸㩷㩿㪤㪸㪻㪿㫐㪸㩷㪧㫉㪸㪻㪼㫊㪿㪀
㪋㪯㪃㩷㪘㪚㪥㪔㪈㪇㪇 㪠㫅㪻㫀㪸㩷㩿㪬㪅㪧㪅㪀
㪋㪯㪃㩷㪘㪚㪥㪔㪈㪇㪇 㪠㫅㪻㫀㪸㩷㩿㪬㪅㪧㪅㪀
㪋㪯㪃㩷㪘㪚㪥㪔㪈㪇㪇 㪠㫅㪻㫀㪸㩷㩿㪦㫉㫀㫊㫊㪸㪀 㪋㪯㪃㩷㪘㪚㪥㪔㪈㪇㪇 㪠㫅㪻㫀㪸㩷㩿㪟㪸㫉㫐㪸㫅㪸㪀
㪋㪯㪃㩷㪘㪚㪥㪔㪈㪇㪇 㪫㪿㪸㫀㫃㪸㫅㪻㩷㩿㪢㪸㫅㪺㪿㪸㫅㪸㩷㪙㫌㫉㫀㪀
㪋㪯㪃㩷㪘㪚㪥㪔㪈㪇㪇 㪚㪿㫀㫅㪸
㪋㪯㪃㩷㪘㪚㪥㪔㪈㪇㪇 㪠㫅㪻㫀㪸㩷㩿㪬㫋㫋㪸㫉㪸㫂㪿㪸㫅㪻㪀
㪋㪯㪃㩷㪘㪚㪥㪔㪈㪇㪇 㪠㫅㪻㫀㪸㩷㩿㪬㪅㪧㪅㪀 㪋㪯㪃㩷㪘㪚㪥㪔㪈㪇㪇 㪠㫅㪻㫀㪸㩷㩿㪬㪅㪧㪅㪀
㪋㪯㪃㩷㪘㪚㪥㪔㪈㪇㪇 㪠㫅㪻㫀㪸㩷㩿㪬㪅㪧㪅㪀
㪋㪯㪃㩷㪘㪚㪥㪔㪈㪇㪇 㪠㫅㪻㫀㪸㩷㩿㪘㫊㫊㪸㫄㪀
㪋㪯㪃㩷㪘㪚㪥㪔㪈㪇㪇 㪠㫅㪻㫀㪸㩷㩿㪤㪸㪿㪸㫉㪸㫊㫋㫉㪸㪀
㪋㪯㪃㩷㪘㪚㪥㪔㪈㪇㪇 㪠㫅㪻㫀㪸㩷㩿㪢㪸㫉㫅㪸㫋㪸㫂㪸㪀
㪋㪯㪃㩷㪘㪚㪥㪔㪈㪇㪇 㪠㫅㪻㫀㪸㩷㩿㪤㪸㪿㪸㫉㪸㫊㫋㫉㪸㪀
㪋㪯㪃㩷㪘㪚㪥㪔㪈㪇㪇 㪠㫅㪻㫀㪸㩷㩿㪡㪸㫄㫄㫌㪀 㪋㪯㪃㩷㪘㪚㪥㪔㪈㪇㪇 㪠㫅㪻㫀㪸㩷㩿㪤㪸㪿㪸㫉㪸㫊㪿㫋㫉㪸㪀
㪋㪯㪃㩷㪘㪚㪥㪔㪈㪇㪇 㪚㪿㫀㫅㪸
㪋㪯㪃㩷㪘㪚㪥㪔㪈㪇㪇 㪠㫅㪻㫀㪸㩷㩿㪬㫋㫋㪸㫉㪸㫂㪿㪸㫅㪻㪀
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
52
㪚㪸㫉㪸㫊㫊㫀㫆㫀㪻㪼㫊 㪚㪸㫉㪸㫊㫊㫀㫌㫊 㪚㪸㫉㪸㫊㫊㫀㫌㫊 㪚㪸㫉㪸㫊㫊㫀㫌㫊 㪚㪸㫉㪸㫊㫊㫀㫌㫊 㪚㪸㫉㪸㫊㫊㫀㫌㫊 㪚㪸㫉㪸㫊㫊㫀㫌㫊 㪚㪸㫉㪸㫊㫊㫀㫌㫊 㪚㪸㫉㪸㫊㫊㫀㫌㫊 㪚㪸㫉㪸㫊㫊㫀㫌㫊 㪚㪸㫉㪸㫊㫊㫀㫌㫊
㩷㩷㪚㫐㫇㫉㫀㫅㫀㫅㪸㪼
㪚㫌㫃㫋㪼㫉 㪟㪼㫄㫀㪺㫌㫃㫋㪼㫉 㪟㪼㫄㫀㪺㫌㫃㫋㪼㫉 㪟㪼㫄㫀㪺㫌㫃㫋㪼㫉 㪟㪼㫄㫀㪺㫌㫃㫋㪼㫉 㪟㪼㫄㫀㪺㫌㫃㫋㪼㫉㪼㫃㫃㪸 㪟㪼㫄㫀㪺㫌㫃㫋㪼㫉㪼㫃㫃㪸 㪠㫊㪺㪿㫀㫂㪸㫌㫀㪸 㪤㪼㪾㪸㫃㫆㪹㫉㪸㫄㪸 㪤㪼㪾㪸㫃㫆㪹㫉㪸㫄㪸 㪤㪼㪾㪸㫃㫆㪹㫉㪸㫄㪸 㪤㪼㪾㪸㫃㫆㪹㫉㪸㫄㪸 㪤㪼㪾㪸㫃㫆㪹㫉㪸㫄㪸 㪤㪼㪾㪸㫃㫆㪹㫉㪸㫄㪸 㪤㪼㪾㪸㫃㫆㪹㫉㪸㫄㪸 㪦㫊㫋㪼㫆㪹㫉㪸㫄㪸 㪦㫊㫋㪼㫆㪹㫉㪸㫄㪸 㪦㫊㫋㪼㫆㪹㫉㪸㫄㪸 㪦㫊㫋㪼㫆㪹㫉㪸㫄㪸 㪧㪸㫉㪸㪹㫉㪸㫄㫀㫊 㪧㪸㫉㪸㫇㪼㫃㪼㪺㫌㫊 㪧㪸㫉㪸㫇㪼㫃㪼㪺㫌㫊 㪧㫊㪼㫌㪻㫆㪿㪼㫄㫀㪺㫌㫃㫋㪼㫉 㪧㫊㪼㫌㪻㫆㫃㪸㫌㪹㫌㪺㪸 㪪㫀㫅㫀㪹㫉㪸㫄㪸 㪪㫀㫅㫀㪹㫉㪸㫄㪸 㪪㫀㫅㫀㪹㫉㪸㫄㪸
㪺㪸㫅㫋㫆㫅㪼㫅㫊㫀㫊 㪸㫌㫉㪸㫋㫌㫊 㪸㫌㫉㪸㫋㫌㫊㩷㪸㫌㫉㪸㫋㫌㫊 㪸㫌㫉㪸㫋㫌㫊㩷㪸㫌㫉㪸㫋㫌㫊 㪸㫌㫉㪸㫋㫌㫊 㪸㫌㫉㪸㫋㫌㫊 㪸㫌㫉㪸㫋㫌㫊㩷㪸㫌㫉㪸㫋㫌㫊 㪸㫌㫉㪸㫋㫌㫊㩷㪸㫌㫉㪸㫋㫌㫊 㪸㫌㫉㪸㫋㫌㫊㩷㪸㫌㫉㪸㫋㫌㫊 㪸㫌㫉㪸㫋㫌㫊㩷㪸㫌㫉㪸㫋㫌㫊 㪸㫌㫉㪸㫋㫌㫊㩷
㫊㫋㪼㪼㫅㪸㪺㫂㪼㫉㫀 㪸㫄㪹㫃㫐㪺㪼㫇㪿㪸㫃㪸 㪸㫄㪹㫃㫐㪺㪼㫇㪿㪸㫃㪸 㪸㫄㪹㫃㫐㪺㪼㫇㪿㪸㫃㪸 㪸㫄㪹㫃㫐㪺㪼㫇㪿㪸㫃㪸 㪸㫄㪹㫃㫐㪺㪼㫇㪿㪸㫃㪸 㫋㪼㫉㫄㫀㫅㪸㫃㫀㫊 㫋㪼㫉㫄㫀㫅㪸㫃㫀㫊 㪹㪼㫃㪸㫅㪾㪼㫉㫀 㪺㫆㫋㫀㫆 㪺㫆㫋㫀㫆㩷 㪺㫆㫋㫀㫆㩷㪺㫆㫋㫀㫆 㫇㪼㫂㫀㫅㪼㫅㫊㫀㫊 㪸㫉㪾㪼㫅㫋㪼㫌㫊 㪼㫅㪾㫉㪸㫌㫃㫀㫊 㪻㫀㫊㫇㪸㫉 㫊㫀㫅㪼㫅㫊㫀㫊 㪺㪿㪸㫅㪾㫀 㫄㪸㪺㫉㫆㫇㫊 㫄㪼㫃㫉㫆㫊㪼㫀
㫊㫇㪅
㫆㫏㫐㪺㪼㫇㪿㪸㫃㫆㫀㪻㪼㫊 㪹㫃㪼㪼㫂㪼㫉㫀㩷㪹㫃㪼㪼㫂㪼㫉㫀 㪼㫀㪾㪼㫅㫄㪸㫅㫅㫀 㫃㪼㫌㪺㫀㫊㪺㫌㫃㫌㫊 㫅㫀㪾㫉㫆㫄㪸㫉㪾㫀㫅㫀㫊 㫊㪸㫌㫍㪸㪾㪼㫀
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㫇㪼㫉㪽㪸㫄㫀㫃㫐㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷
㪉㪇㪤㩷㪂㩷㪉㪋㪪㪤㩷㪂㩷㪋㪪㪫 㪉㪍㪤㩷㪂㩷㪉㪉㪪㪤 㪈㪍㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪈㪉㪪㪫 㪈㪏㪤㩷㪂㩷㪉㪉㪪㪤㩷㪂㩷㪏㪪㪫
㪋㪏 㪋㪏 㪋㪏 㪋㪏
㪋㪏 㪋㪏
㪝㪃㩷㪤 㪝㪃㩷㪤
㪋㪏
㪝㪃㩷㪤
㫍㪸㫉㪅㩷㪛㫆㫅㪾㫋㫀㫅㪾㫂㫀㫅㪾
㪊㪇㪤㩷㪂㩷㪊㪋㪪㪤㩷㪂㩷㪊㪍㩷㪪㪫㪆㪘 㪌㪉㩷㪤㪆㪪㪤㩷㪂㩷㪋㪏㩷㪪㪫㪆㪘 㪊㪇㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪉㪍㪪㪫㩷㪂㩷㪉㪋㪘
㪈㪇㪇 㪈㪇㪇 㪈㪇㪇
㪈㪉㪤㩷㪂㩷㪊㪍㪪㪤㩷㪂㩷㪌㪉㩷㪪㪫㪆㪘 㪉㪉㫄㩷㪂㩷㪊㪋㪪㪤㩷㪂㩷㪉㪉㪪㪫㩷㪂㩷㪉㪉㪘
㪈㪇㪇
㪉㪉㪤㩷㪂㩷㪊㪇㪪㪤㩷㪂㩷㪋㪏㩷㪪㪫㪆㪘 㪉㪇㪤㩷㪂㩷㪏㪋㩷㪪㪤㪆㪪㪫㪆㪘
㪈㪇㪇 㪈㪇㪋 㪈㪇㪇
㪉㪇㪤㩷㪂㩷㪉㪏㩷㪪㪤㪆㪪㪫㩷㪂㩷㪌㪉㪘
㪈㪇㪇
㪝㪃㩷㪤
㪉㪇㪤㩷㪂㩷㪋㪇㩷㪪㪤㪆㪪㪫㩷㪂㩷㪋㪇㪘
㪈㪇㪇
㪺㪸㫉㪸㫊㫊㫀㫌㫊㩷㪸㫌㫉㪸㫋㫌㫊㪃㩷 㪾㫆㫃㪻㪽㫀㫊㪿㩷
㪝㪃㩷㪤
㪉㪋㪤㩷㪂㩷㪊㪇㪪㪤㩷㪂㩷㪋㪍㩷㪪㪫㪆㪘
㪈㪏㪤㩷㪂㩷㪊㪉㪪㪤㩷㪂㩷㪈㪏㪪㪫㩷㪂㩷㪊㪉㪘
㪉㪇㪤㩷㪂㩷㪉㪋㪪㪤㩷㪂㩷㪋㪪㪫
㪉㪉㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪍㪪㪫
㪈㪋㪤㩷㪂㩷㪉㪍㪪㪤㩷㪂㩷㪏㪪㪫
㪈㪏㪤㩷㪂㩷㪉㪋㪪㪤㩷㪂㩷㪍㪪㪫 㪈㪏㪤㩷㪂㩷㪉㪋㪪㪤㩷㪂㩷㪍㪪㪫
㪈㪏㪤㩷㪂㩷㪉㪉㪪㪤㩷㪂㩷㪏㪪㪫
㪈㪇㪇
㪝㪃㩷㪤
㪈㪇㪇
㪋㪏
㪝㪃㩷㪤
㪝㪃㩷㪤
㪋㪏
㪝㪃㩷㪤
㪋㪏
㪋㪏
㪝㪃㩷㪤
㪉㪋㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪏㪪㪫㩷㪂㩷㪉㪘 㪈㪋㪤㩷㪂㩷㪉㪍㪪㪤㩷㪂㩷㪏㪪㪫
㪋㪏 㪋㪏
㪉㪉㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪏㪪㪫㩷㪂㩷㪋㪘 㪈㪏㪤㩷㪂㩷㪉㪋㪪㪤㩷㪂㩷㪍㪘
㪍㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪈㪉㪪㪫㩷㪂㩷㪈㪍㪘
㪌㪇 㪋㪏 㪋㪏
㪈㪋㪤㩷㪂㩷㪉㪍㪪㪤㩷㪂㩷㪏㪪㪫
㪋㪏
㪝㪃㩷㪤
㪝 㪝
㪝㪃㩷㪤
㪈㪍㪤㩷㪂㩷㪉㪋㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪉㩷㫊㫇㪼㪺㫀㪸㫃
㪋㪏
㪝㪃㩷㪤
㪈㪏㪤㩷㪂㩷㪉㪍㪪㪤㩷㪂㩷㪋㪪㪫
㪋㪏
㪝㪃㩷㪤
㪈㪇㪤㩷㪂㩷㪊㪏㩷㪪㪤㪆㪪㪫
㪈㪏㪤㩷㪂㩷㪉㪋㪪㪤㩷㪂㩷㪍㪪㪫
㪋㪏 㪋㪏
㪋㪏
㪝㪃㩷㪤
㪈㪏㪤㩷㪂㩷㪉㪍㪪㪤㩷㪂㩷㪋㪪㪫
㪈㪍㪤㩷㪂㩷㪉㪍㪪㪤㩷㪂㩷㪍㪪㪫
㪈㪍㪤㩷㪂㩷㪉㪍㪪㪤㩷㪂㩷㪍㪪㪫
㪉㪇㪤㩷㪂㩷㪉㪋㪪㪤㩷㪂㩷㪋㪪㪫
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪝 㪝㪃㩷㪤
㪋㪏 㪋㪏
㪝㪃㩷㪤
㪋㪏 㪋㪏
㪝㪃㩷㪤
㪋㪏
㪤
㪛 㪉㫅
㪝㪃㩷㪤
㪚 㪪㪼㫏
㪾㫆㫃㪻㪽㫀㫊㪿 㪾㫆㫃㪻㪽㫀㫊㪿
㪩㫆㪿㫋㪼㪼
㪜㫉㫐㫋㪿㫉㫆㪺㫌㫃㫋㪼㫉
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪫㪸㪹㫃㪼㩷㪍㪅㪈㪈㩷㩷㪦㫉㪻㪼㫉㩷㪚㪰㪧㪩㪠㪥㪠㪝㪦㪩㪤㪜㪪㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀
㪈㪌㪉 㪈㪌㪇
㪈㪍㪋
㪈㪌㪍
㪈㪋㪏
㪈㪌㪉
㪈㪌㪋
㪈㪌㪇
㪐㪉
㪐㪇
㪏㪏
㪐㪇 㪐㪇
㪏㪏
㪏㪏
㪏㪍
㪏㪋 㪐㪇
㪎㪉
㪏㪏
㪏㪏
㪐㪍 㪏㪋
㪐㪉
㪐㪉
㪐㪇
㪐㪉
㪐㪇
㪐㪇 㪐㪇
㪐㪉
㪈㪎㪍
㪈㪎㪏
㪈㪋㪏
㪈㪍㪇
㪈㪍㪏
㪐㪍
㪐㪍
㪐㪍
㪐㪍 㪐㪍
㪐㪍
㪐㪍
㪐㪋
㪐㪉 㪐㪇
㪏㪋
㪐㪍
㪐㪍
㪐㪍 㪐㪍
㪐㪍
㪐㪍
㪐㪍
㪐㪍
㪐㪍
㪐㪍
㪐㪍
㪐㪍
㪈㪄㪊
㪉
㪋
㪉㪄㪋
㪋
㪋
㪍
㪝 㪞 㪟 㪥㪝㪈 㪥㪝㪉 㪘㪾㪄 㪥㪦㪩㫊
㩿㪊㪅㪋㩷㪝㪠㪘㪃㩷㪋㪅㪇㩷㪙㪝㪘㪀
㩿㪊㪅㪌㩷㪝㪚㪤㪀
㪊㪅㪉㩷㪝㪛
㪊㪅㪎㩷㪝㪛
㩿㪋㪅㪈㪁㩷㪝㪚㪤㪀
㪉㪅㪋㪁㩷㪝㪛
㪈㪅㪎㪁㩷㪝㪛
㩿㪉㪅㪐㪁㩷㪝㪚㪤㪀
㩿㪉㪅㪋㪃㩷㪉㪅㪇㪁㩷㪝㪛㪀
㪉㪅㪍㪁㩷㪝㪚㪤
㪉㪅㪉㪁㩷㪝㪛
㪠 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪣㪄㪋㪇㪃㩷㪰㪄㪈㪌 㪭㪄㪊
㪣㪄㪋㪇
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
㪚㪿㫀㫅㪸㩷㩿㪞㫌㪸㫅㪾㪻㫆㫅㪾㪀㩷
㪚㪿㫀㫅㪸㩷㩿㪞㫌㪸㫅㪾㫏㫀㪀㩷
㪚㪿㫀㫅㪸㩷㩿㪪㫀㪺㪿㫌㪸㫅㪀
㪚㪿㫀㫅㪸㩷㩿㪮㫌㪿㪸㫅㪀
㪚㪿㫀㫅㪸㩷㩿㪪㫀㪺㪿㫌㪸㫅㪀 㪚㪿㫀㫅㪸㩷㩿㪞㫌㪸㫅㪾㪻㫆㫅㪾㪀㩷
㪚㪿㫀㫅㪸㩷㩿㪪㫀㪺㪿㫌㪸㫅㪀
㪚㪿㫀㫅㪸㩷㩿㪟㫌㪹㪼㫀㪀
㪠㫅㪻㫀㪸㩷㩿㪮㪙㪀
㪠㫅㪻㫀㪸㩷㩿㪮㪙㪀 㪠㫅㪻㫀㪸㩷㩿㪡㪸㫄㫄㫌㪀㩷
㪠㫅㪻㫀㪸㩷㩿㪤㪸㫅㫀㫇㫌㫉㪀
㪚㪿㫀㫅㪸㩷㩿㪟㫌㪹㪼㫀㪀
㪚㪿㫀㫅㪸㩷㩿㪟㫌㫅㪸㫅㪀㩷
㪚㪿㫀㫅㪸㩷㩿㪪㪿㪸㫊㪿㫀㪀 㪚㪿㫀㫅㪸㩷㩿㪙㪼㫀㫁㫀㫅㪾㪀
㪚㪿㫀㫅㪸㩷㩿㪟㫌㪹㪼㫀㪀
㪚㪿㫀㫅㪸㩷㩿㪟㫌㪹㪼㫀㪀
㪚㪿㫀㫅㪸㩷㩿㪟㫌㪹㪼㫀㪀
㪚㪿㫀㫅㪸㩷㩿㪧㪼㪸㫉㫃㩷㪩㪅㪀㩷 㪡㪸㫇㪸㫅㩷㩿㪦㫊㪸㫂㪸㪃㩷㪢㫆㪹㪼㪀
㪚㪿㫀㫅㪸㩷㩿㪪㫀㪺㪿㫌㪸㫅㪀
㪚㪿㫀㫅㪸㩷㩿㪪㫀㪺㪿㫌㪸㫅㪀
㪋㪯㪃㩷㪘㪚㪥㪔㪈㪇㪇 㪚㫉㫆㪸㫋㫀㪸 㪋㪯㪃㩷㪘㪚㪥㪔㪈㪇㪇 㪚㪿㫀㫅㪸㩷㩿㪣㪸㫂㪼㩷㪛㫆㫅㪾㫋㫀㫅㪾㪀
㪋㪯㪃㩷㪘㪚㪥㪔㪈㪇㪇 㪚㪿㫀㫅㪸㩷㩿㪘㫄㫌㫉㪀
㪋㪯㪃㩷㪘㪚㪥㪔㪈㪇㪇 㪚㪿㫀㫅㪸
㪋㪯㪃㩷㪘㪚㪥㪔㪈㪇㪇 㪚㪿㫀㫅㪸
㪯㪯㪆㪯㪰 㪚㪿㫀㫅㪸㩷㩿㪰㫌㫅㫅㪸㫅㪀 㪋㪯㪃㩷㪘㪚㪥㪔㪈㪇㪇 㪠㫋㪸㫃㫐
㪋㪯㪃㩷㪘㪚㪥㪔㪈㪇㪇 㪝㫉㪸㫅㪺㪼
㪋㪯㪃㩷㪘㪚㪥㪔㪈㪇㪇 㪡㪸㫇㪸㫅
㪋㪯㪃㩷㪘㪚㪥㪔㪈㪇㪇 㪚㪿㫀㫅㪸㩷㩿㪙㪼㫀㫁㫀㫅㪾㪀
㪘㪄㪉㪊㪃㩷㪤㪄㪌㪋 㪰㪄㪉㪌
㪪㪄㪍㪉㪃㩷㪪㪄㪍㪋㪃㩷㪟㪄㪈㪊㪃㩷㪟㪄㪋㪈
㪰㪄㪈㪋㪃㩷㪩㪄㪈㪇㪌㪃㩷㪭㪄㪏㪍
㪦㪄㪉㪐
㪱㪄㪉㪃㩷㪱㪄㪏 㪚㪄㪍㪇
㪟㪄㪉㪃㩷㪟㪄㪋
㪢㪄㪈㪈㪌㪃㩷㪦㪄㪋㪏
㪮㪄 㪈
㪞㪄㪍㪏㪃㩷㪰㪄㪈㪌
㪣㪄㪊㪉
㪰㪄㪈㪌
㪣㪄㪊㪉
㪚㪄㪏㪊
㪣㪄㪊㪉㪃㩷㪰㪄㪈㪌 㪣㪄㪊㪉㪃㩷㪰㪄㪈㪌
㪰㪄㪈㪌
㪣㪄㪋㪇㪃㩷㪩㪄㪋㪊㪃㩷㪚㪄㪏㪊
㪢㪄㪋㪍
㪤㪄 㪉 㪎 㪪㪄㪌㪍
㪢㪄㪈㪊㪎
㪣㪄㪋㪇㪃㩷㪰㪄㪈㪌
㪣㪄㪍㪊
㪱㪄㪉㪉㪃㩷㪝㪄㪌 㪰㪄㪈㪈
㪱㪄㪈
㪣㪄㪋㪈㪃㩷㪣㪄㪎㪊㪃㩷㪚㪄㪏㪊
㪣㪄㪋㪇㪃㩷㪩㪄㪋㪊㪃㩷㪩㪄㪈㪇㪌㪃㩷㪱㪄㪈
㪚㪄㪏㪌 㪫㪄㪋㪃㩷㪦㪄㪋㪏
㪣㪄㪊㪉㪃㩷㪰㪄㪈㪌
㪣㪄㪊㪉㪃㩷㪰㪄㪈㪌
㪚㪿㫀㫅㪸㩷㩿㪟㫌㪹㪼㫀㪃㩷㪞㫌㪸㫅㪾㪻㫆㫅㪾㪀 㪣㪄㪋㪇㪃㩷㪰㪄㪈㪌㪃㩷㪚㪄㪏㪊
㪚㪿㫀㫅㪸㩷㩿㪟㫌㪹㪼㫀㪀 㪬㪪㪪㪩
㪚㪿㫀㫅㪸㩷㩿㪟㫌㪹㪼㫀㪀
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪋㪯㪃㩷㪘㪚㪥㪔㪈㪇㪇 㪚㪿㫀㫅㪸㩷㩿㪞㫌㪸㫅㪾㪻㫆㫅㪾㪀㩷
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇 㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇 㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇 㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇 㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
53
㪚㪸㫉㪸㫊㫊㫀㫌㫊 㪚㪸㫉㪸㫊㫊㫀㫌㫊 㪚㪸㫉㪸㫊㫊㫀㫌㫊 㪚㪸㫉㪸㫊㫊㫀㫌㫊 㪚㪸㫉㪸㫊㫊㫀㫌㫊 㪚㪸㫉㪸㫊㫊㫀㫌㫊 㪚㪸㫉㪸㫊㫊㫀㫌㫊 㪚㪸㫉㪸㫊㫊㫀㫌㫊 㪚㪸㫉㪸㫊㫊㫀㫌㫊 㪚㪸㫉㪸㫊㫊㫀㫌㫊 㪚㪸㫉㪸㫊㫊㫀㫌㫊 㪚㪸㫉㪸㫊㫊㫀㫌㫊 㪚㪸㫉㪸㫊㫊㫀㫌㫊 㪚㪸㫉㪸㫊㫊㫀㫌㫊 㪚㪸㫉㪸㫊㫊㫀㫌㫊 㪚㪸㫉㪸㫊㫊㫀㫌㫊 㪚㪸㫉㪸㫊㫊㫀㫌㫊 㪚㪸㫉㪸㫊㫊㫀㫌㫊 㪚㪸㫉㪸㫊㫊㫀㫌㫊 㪚㪸㫉㪸㫊㫊㫀㫌㫊 㪚㪸㫉㪸㫊㫊㫀㫌㫊 㪚㪸㫉㪸㫊㫊㫀㫌㫊 㪚㪸㫉㪸㫊㫊㫀㫌㫊 㪚㪸㫉㪸㫊㫊㫀㫌㫊 㪚㪸㫉㪸㫊㫊㫀㫌㫊 㪚㪸㫉㪸㫊㫊㫀㫌㫊 㪚㪸㫉㪸㫊㫊㫀㫌㫊 㪚㪸㫉㪸㫊㫊㫀㫌㫊 㪚㪸㫉㪸㫊㫊㫀㫌㫊 㪚㪸㫉㪸㫊㫊㫀㫌㫊 㪚㪸㫉㪸㫊㫊㫀㫌㫊 㪚㪸㫉㪸㫊㫊㫀㫌㫊 㪚㪸㫉㪸㫊㫊㫀㫌㫊 㪚㪸㫉㪸㫊㫊㫀㫌㫊 㪚㪸㫉㪸㫊㫊㫀㫌㫊 㪚㪸㫉㪸㫊㫊㫀㫌㫊 㪚㪸㫉㪸㫊㫊㫀㫌㫊 㪚㪸㫉㪸㫊㫊㫀㫌㫊 㪚㪸㫉㪸㫊㫊㫀㫌㫊
㪸㫌㫉㪸㫋㫌㫊㩷 㪸㫌㫉㪸㫋㫌㫊 㪸㫌㫉㪸㫋㫌㫊 㪸㫌㫉㪸㫋㫌㫊㩷 㪸㫌㫉㪸㫋㫌㫊 㪸㫌㫉㪸㫋㫌㫊㩷㪸㫌㫉㪸㫋㫌㫊 㪸㫌㫉㪸㫋㫌㫊㩷㪸㫌㫉㪸㫋㫌㫊 㪸㫌㫉㪸㫋㫌㫊㩷㪸㫌㫉㪸㫋㫌㫊 㪸㫌㫉㪸㫋㫌㫊㩷㪸㫌㫉㪸㫋㫌㫊㩷 㪸㫌㫉㪸㫋㫌㫊㩷㪸㫌㫉㪸㫋㫌㫊㩷 㪸㫌㫉㪸㫋㫌㫊㩷㪸㫌㫉㪸㫋㫌㫊㩷 㪸㫌㫉㪸㫋㫌㫊㩷㪸㫌㫉㪸㫋㫌㫊㩷 㪸㫌㫉㪸㫋㫌㫊㩷㪸㫌㫉㪸㫋㫌㫊㩷 㪸㫌㫉㪸㫋㫌㫊㩷㪸㫌㫉㪸㫋㫌㫊㩷 㪸㫌㫉㪸㫋㫌㫊㩷㪸㫌㫉㪸㫋㫌㫊 㪸㫌㫉㪸㫋㫌㫊㩷㪸㫌㫉㪸㫋㫌㫊㩷 㪸㫌㫉㪸㫋㫌㫊㩷㪸㫌㫉㪸㫋㫌㫊㩷 㪸㫌㫉㪸㫋㫌㫊㩷㪸㫌㫉㪸㫋㫌㫊㩷 㪸㫌㫉㪸㫋㫌㫊㩷㪹㫌㪼㫉㪾㪼㫉㫀 㪸㫌㫉㪸㫋㫌㫊㩷㪾㫀㪹㪼㫃㫀㫆 㪸㫌㫉㪸㫋㫌㫊㩷㪾㫀㪹㪼㫃㫀㫆 㪸㫌㫉㪸㫋㫌㫊㩷㪾㫀㪹㪼㫃㫀㫆 㪸㫌㫉㪸㫋㫌㫊㩷㪾㫀㪹㪼㫃㫀㫆 㪸㫌㫉㪸㫋㫌㫊㩷㪾㫀㪹㪼㫃㫀㫆 㪸㫌㫉㪸㫋㫌㫊㩷㪾㫀㪹㪼㫃㫀㫆 㪸㫌㫉㪸㫋㫌㫊㩷㪾㫀㪹㪼㫃㫀㫆 㪸㫌㫉㪸㫋㫌㫊㩷㪾㫀㪹㪼㫃㫀㫆 㪸㫌㫉㪸㫋㫌㫊㩷㪾㫀㪹㪼㫃㫀㫆 㪸㫌㫉㪸㫋㫌㫊㩷㪾㫀㪹㪼㫃㫀㫆 㪸㫌㫉㪸㫋㫌㫊㩷㪾㫀㪹㪼㫃㫀㫆 㪸㫌㫉㪸㫋㫌㫊㩷㪾㫀㪹㪼㫃㫀㫆 㪸㫌㫉㪸㫋㫌㫊㩷㪾㫀㪹㪼㫃㫀㫆 㪸㫌㫉㪸㫋㫌㫊㩷㪾㫀㪹㪼㫃㫀㫆 㪸㫌㫉㪸㫋㫌㫊㩷㪾㫀㪹㪼㫃㫀㫆 㪸㫌㫉㪸㫋㫌㫊㩷㪾㫀㪹㪼㫃㫀㫆 㪸㫌㫉㪸㫋㫌㫊㩷㪾㫀㪹㪼㫃㫀㫆 㪸㫌㫉㪸㫋㫌㫊㩷㪾㫀㪹㪼㫃㫀㫆 㪸㫌㫉㪸㫋㫌㫊㩷㪾㫉㪸㫅㪻㫆㪺㫌㫃㫀㫊㩷 㪸㫌㫉㪸㫋㫌㫊㩷㪾㫉㪸㫅㪻㫆㪺㫌㫃㫀㫊㩷
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㫇㪼㫉㪽㪸㫄㫀㫃㫐㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷
㪺㫃㫆㫅㪼㩷㪘 㪺㫃㫆㫅㪼㩷㪧 㪺㫃㫆㫅㪼㩷㪛 㩷㪥㫀㪾㫆㫉㫆㪹㫌㫅㪸 㩷㪥㫀㪾㫆㫉㫆㪹㫌㫅㪸
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉 㪹㪸㪺㫂㪄㫃㫆㫎㩷㫋㫐㫇㪼 㪹㪸㪺㫂㪄㪿㫀㪾㪿㩷㫋㫐㫇㪼 㪹㪸㪺㫂㪄㪿㫀㪾㪿㩷㫋㫐㫇㪼 㪹㪸㪺㫂㪄㪿㫀㪾㪿㩷㫋㫐㫇㪼 㪯㫀㫁㫀㩷㪺㫆㫃㫆㫌㫉㪄㪺㫉㫌㪺㫀㪸㫅㩷㪺㪸㫉㫇 㪚㪿㫀㫅㪼㫊㪼㩷㪺㫉㫌㪺㫀㪸㫅㩷㪺㪸㫉㫇 㪟㫀㪹㫌㫅㪸 㪟㫀㪹㫌㫅㪸 㩷㪮㪸㫂㫀㫅 㩷㪮㪸㫂㫀㫅 㪩㫐㫌㫂㫀㫅 㪚㫆㫄㪼㫋 㪪㪿㫌㪹㫌㫅㫂㫀㫅 㩷㪢㫌㫉㫆㪄㪻㪼㫄㪼㫂㫀㫅 㩷㪩㪸㫅㪺㪿㫌㫌 㩷㪪㪸㫅㫊㪿㫀㫂㫀㪄㪻㪼㫄㪼㫂㫀㫅 㩷㪫㪼㫋㫊㫌㪾㫐㫆 㩷㪫㪼㫋㫊㫌㪾㫐㫆 㩷㪥㪸㪾㪸㪹㫌㫅㪸
㪫㪸㪹㫃㪼㩷㪍㪅㪈㪈㩷㩷㪦㫉㪻㪼㫉㩷㪚㪰㪧㪩㪠㪥㪠㪝㪦㪩㪤㪜㪪㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀
㪌㪇㪤㩷㪂㩷㪍㪋㪪㪤㩷㪂㩷㪋㪉㩷㪪㪫㪆㪘 㪊㪉㪤㩷㪂㩷㪌㪉㪪㪤㩷㪂㩷㪎㪏㩷㪪㪫㪆㪘
㪈㪌㪍 㪈㪍㪉
㪝
㪋㪋㪤㩷㪂㩷㪍㪋㪪㪤㩷㪂㩷㪋㪏㩷㪪㪫㪆㪘
㪈㪇㪇 㪈㪇㪇
㪝㪃㩷㪤 㪝㪃㩷㪤
㪊㪍㪤㩷㪂㩷㪌㪋㪪㪤㩷㪂㩷㪊㪍㪪㪫㩷㪂㩷㪉㪋㪘㩷 㪋㪉㪤㩷㪂㩷㪌㪋㪪㪤㩷㪂㩷㪊㪍㪪㪫㩷㪂㩷㪉㪋㪘
㪈㪌㪇 㪈㪌㪍
㪝
㪉㪇㪤㩷㪂㩷㪋㪇㪪㪤㩷㪂㩷㪋㪇㩷㪪㪫㪆㪘
㪈㪉㪤㩷㪂㩷㪊㪍㪪㪤㩷㪂㩷㪌㪉㩷㪪㪫㪆㪘
㪈㪋㪤㩷㪂㩷㪉㪋㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪌㪉㪘 㪉㪍㪤㩷㪂㩷㪌㪇㪪㪤㩷㪂㩷㪉㪇㪪㪫㩷㪂㩷㪌㪋㪘 㪊㪍㪤㩷㪂㩷㪌㪋㪪㪤㩷㪂㩷㪊㪍㪪㪫㩷㪂㩷㪉㪋㪘㩷
㪈㪇㪇 㪈㪌㪇 㪈㪌㪇
㪝㪃㩷㪤
㪋㪏㩷㪤㪆㪪㪤㪆㪪㪫㩷㪂㩷㪌㪇㪘㩷 㪋㪍㪤㩷㪂㩷㪏㪉㩷㪪㪤㪆㪪㪫㩷㪂㩷㪊㪉㪘
㪐㪏 㪈㪍㪇
㪝
㪝 㪝
㪉㪇㪤㩷㪂㩷㪋㪇㪪㪤㩷㪂㩷㪋㪇㩷㪪㪫㪆㪘 㪊㪋㪤㩷㪂㩷㪍㪉㪪㪤㩷㪂㩷㪍㪇㩷㪪㪫㪆㪘
㪈㪇㪇 㪈㪌㪍 㪈㪌㪇
㪤
㪋㪉㪤㩷㪂㩷㪎㪋㪪㪤㩷㪂㩷㪋㪇㩷㪪㪫㪆㪘 㪋㪏㪤㩷㪂㩷㪌㪍㪪㪤㩷㪂㩷㪈㪏㪪㪫㩷㪂㩷㪋㪇㪘
㪈㪌㪍 㪈㪌㪍 㪈㪍㪉
㪝㪃㩷㪤
㪋㪉㪤㩷㪂㩷㪎㪋㪪㪤㩷㪂㩷㪋㪇㩷㪪㪫㪆㪘
㪈㪌㪇 㪈㪌㪍
㪈㪉㪤㩷㪂㩷㪊㪍㪪㪤㩷㪂㩷㪌㪉㩷㪪㪫㪆㪘 㪊㪋㪤㩷㪂㩷㪌㪏㪪㪤㩷㪂㩷㪋㪉㪪㪫㩷㪂㩷㪉㪏㪘
㪝㪃㩷㪤 㪝㪃㩷㪤
㪝㪃㩷㪤
㪈㪌㪊 㪈㪇㪇 㪈㪍㪉
㪝 㪝 㪝
㪈㪍㪤㩷㪂㩷㪋㪇㪪㪤㩷㪂㩷㪋㪋㩷㪪㪫㪆㪘
㪈㪇㪇
㪝㪃㩷㪤
㪈㪇㪇
㪝㪃㩷㪤
㪈㪉㪤㩷㪂㩷㪊㪍㪪㪤㩷㪂㩷㪌㪉㩷㪪㪫㪆㪘 㪈㪉㪤㩷㪂㩷㪊㪍㪪㪤㩷㪂㩷㪌㪉㩷㪪㪫㪆㪘
㪈㪇㪇
㪝㪃㩷㪤
㪈㪉㪤㩷㪂㩷㪊㪍㪪㪤㩷㪂㩷㪌㪉㩷㪪㪫㪆㪘
㪈㪍㪤㩷㪂㩷㪏㪋㩷㪪㪤㪆㪪㪫㪆㪘 㪈㪍㪤㩷㪂㩷㪋㪉㪪㪤㩷㪂㩷㪋㪉㩷㪪㪫㪆㪘
㪈㪇㪇
㪝㪃㩷㪤
㪉㪇㪤㩷㪂㩷㪋㪇㩷㪪㪤㪆㪪㪫㩷㪂㩷㪋㪇㪘 㪈㪉㪤㩷㪂㩷㪊㪍㪪㪤㩷㪂㩷㪌㪉㩷㪪㪫㪆㪘
㪈㪇㪇
㪈㪇㪇 㪈㪇㪇
㪝㪃㩷㪤 㪝㪃㩷㪤
㪈㪇㪇 㪈㪇㪇
㪈㪌㪈
㪝
㪈㪉㪤㩷㪂㩷㪊㪍㪪㪤㩷㪂㩷㪌㪉㩷㪪㪫㪆㪘
㪈㪉㪤㩷㪂㩷㪊㪍㪪㪤㩷㪂㩷㪌㪉㩷㪪㪫㪆㪘
㪈㪇㪇 㪈㪇㪇
㪊㪊㪤㩷㪂㩷㪌㪊㪪㪤㩷㪂㩷㪎㪍㩷㪪㪫㪆㪘 㪉㪋㪤㩷㪂㩷㪊㪇㪪㪤㩷㪂㩷㪋㪍㩷㪪㪫㪆㪘
㪊㪍㪤㩷㪂㩷㪌㪍㪪㪤㩷㪂㩷㪎㪇㩷㪪㪫㪆㪘
㪈㪍㪉 㪈㪍㪉 㪈㪇㪇
㪉㪉㪤㩷㪂㩷㪊㪇㪪㪤㩷㪂㩷㪋㪏㩷㪪㪫㪆㪘 㪊㪇㪤㩷㪂㩷㪋㪍㪪㪤㩷㪂㩷㪏㪇㩷㪪㪫㪆㪘
㪈㪇㪇
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪈㪌㪍
㪛 㪉㫅
㪝
㪝
㪝㪃㩷㪤
㪚 㪪㪼㫏
㪈㪍㪇
㪈㪋㪏
㪉㪌㪉
㪉㪋㪇
㪉㪉㪍 㪉㪋㪇
㪈㪊㪏
㪉㪌㪉
㪈㪍㪇
㪉㪋㪍
㪉㪎㪇
㪉㪎㪉 㪉㪍㪍
㪉㪍㪋
㪉㪎㪉
㪈㪋㪏 㪉㪌㪋
㪈㪌㪍
㪈㪌㪏
㪈㪋㪏
㪈㪋㪏
㪈㪋㪏
㪈㪋㪏
㪈㪋㪏
㪈㪋㪏
㪉㪋㪏 㪈㪌㪋
㪉㪌㪋
㪉㪊㪉
㪈㪌㪉
㪉㪏㪏
㪉㪎㪍
㪉㪋㪍 㪉㪎㪍
㪈㪋㪏
㪉㪏㪏
㪈㪋㪍
㪉㪏㪋
㪈㪍㪇
㪉
㪉㪄㪏
㪈㪄㪋
㪋
㪉
㪉 㪉
㪉
㪉
㪍
㪍
㪋
㪝 㪞 㪟 㪥㪝㪈 㪥㪝㪉 㪘㪾㪄 㪥㪦㪩㫊
㪉㪅㪎㪄㪋㪅㪈㩷㪝㪛
㩿㪊㪅㪎㩷㪝㪚㪤㪀
㩿㪌㪅㪌㩷㪝㪚㪤㪀
㩿㪍㪅㪍㪁㩷㪝㪚㪤㪀
㩿㪌㪅㪌㪁㩷㪝㪛㪀
㪋㪅㪍㩷㪝㪛
㪊㪅㪉㩷㪝㪛
㪠 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㩿㫇㪾㪆㪺㪼㫃㫃㪀 㪚㪿㫀㫅㪸㩷㩿㪢㫌㫅㫄㫀㫅㪾㩷㪣㪸㫂㪼㪀㩷
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪡㪸㫇㪸㫅㩷㩿㪟㫆㫂㫂㪸㫀㪻㫆㪀
㪡㪸㫇㪸㫅
㪡㪸㫇㪸㫅
㪚㪿㫀㫅㪸㩷㩿㪮㫌㪿㪸㫅㪀
㪚㪿㫀㫅㪸㩷㩿㪘㫄㫌㫉㪃㩷㪝㪸㫅㪾㫑㪿㪼㫅㪾㪀
㪚㫑㪼㪺㫂
㪥㪅㩷㪚㪿㫀㫅㪸
㪚㪿㫀㫅㪸㩷㩿㪡㫀㪸㫅㪾㫏㫀㪀㩷
㪋㪯㪃㩷㪘㪚㪥㪔㪈㪇㪇 㪡㪸㫇㪸㫅㩷㩿㪣㪸㫂㪼㩷㪙㫀㫎㪸㪀
㪋㪯㪃㩷㪘㪚㪥㪔㪈㪇㪇 㪡㪸㫇㪸㫅㩷㩿㪣㪸㫂㪼㩷㪙㫀㫎㪸㪀
㪍㪙㪃㩷㪍㪯
㪍㪙㪃㩷㪍㪯
㪍㪯㪃㩷㪘㪚㪥㪔㪈㪌㪇 㪧㫆㫃㪸㫅㪻 㪍㪙㪃㩷㪍㪯 㪥㪅㩷㪚㪿㫀㫅㪸
㪋㪯㪃㩷㪘㪚㪥㪔㪈㪇㪇 㪧㫆㫃㪸㫅㪻
㪍㪯
㪋㪯㪃㩷㪘㪚㪥㪔㪈㪇㪇 㪩㫌㫄㪸㫅㫀㪸㩷㩿㪛㪸㫅㫌㪹㪼㩷㫇㫃㪸㫀㫅㪼㪀
㪍㪯㪃㩷㪘㪚㪥㪔㪈㪌㪇 㪩㫌㫊㫊㫀㪸㩷㩿㪘㫄㫌㫉㩷㪩㪅㪀 㪍㪯㪃㩷㪘㪚㪥㪔㪈㪌㪇 㪙㫆㫊㫅㫀㪸
㪋㪯㪃㩷㪘㪚㪥㪔㪈㪇㪇 㪩㫌㫊㫊㫀㪸㩷㩿㪘㫄㫌㫉㩷㪩㪅㪀
㪍㪯
㪍㪯㪃㩷㪘㪚㪥㪔㪈㪌㪇 㪚㪿㫀㫅㪸㩷㩿㪘㫄㫌㫉㪃㩷㪛㪼㪻㫆㫌㪀
㪍㪯㪃㩷㪘㪚㪥㪔㪈㪌㪇 㪚㪿㫀㫅㪸㩷㩿㪘㫄㫌㫉㪃㩷㪝㪸㫅㪾㫑㪿㪼㫅㪾㪀 㪍㪯 㪚㪿㫀㫅㪸㩷㩿㪘㫄㫌㫉㪃㩷㪝㪸㫅㪾㫑㪿㪼㫅㪾㪀
㪍㪯㪃㩷㪘㪚㪥㪔㪈㪌㪇 㪚㪿㫀㫅㪸㩷㩿㪘㫄㫌㫉㪃㩷㪤㫀㫊㪿㪸㫅㪀
㪍㪯㪃㩷㪘㪚㪥㪔㪈㪌㪇 㪚㪿㫀㫅㪸㩷㩿㪘㫄㫌㫉㪀
㪍㪯
㪋㪯㪃㩷㪘㪚㪥㪔㪈㪇㪇 㪡㪸㫇㪸㫅㩷㩿㪣㪸㫂㪼㩷㪪㫌㫎㪸㪀 㪍㪯㪃㩷㪘㪚㪥㪔㪈㪌㪇 㪚㪿㫀㫅㪸
㪍㪯㪃㩷㪘㪚㪥㪔㪈㪌㪇 㪡㪸㫇㪸㫅㩷㩿㪥㫀㫀㪾㪸㫋㪸㪀
㪋㪯㪃㩷㪘㪚㪥㪔㪈㪇㪇 㪡㪸㫇㪸㫅㩷㩿㪥㫀㫀㪾㪸㫋㪸㪀
㪋㪯㪃㩷㪘㪚㪥㪔㪈㪇㪇 㪡㪸㫇㪸㫅㩷㩿㪫㫆㫂㫐㫆㪀
㪋㪯㪃㩷㪘㪚㪥㪔㪈㪇㪇 㪡㪸㫇㪸㫅㩷㩿㪫㫆㫂㫐㫆㪀 㪋㪯㪃㩷㪘㪚㪥㪔㪈㪇㪇 㪡㪸㫇㪸㫅㩷㩿㪫㫆㫂㫐㫆㪀
㪯㪯㪆㪯㪰
㪯㪯㪆㪯㪰
㪋㪯㪃㩷㪘㪚㪥㪔㪈㪇㪇 㪡㪸㫇㪸㫅
㪋㪯㪃㩷㪘㪚㪥㪔㪈㪇㪇 㪡㪸㫇㪸㫅㩷㩿㪫㫆㫂㫐㫆㪀 㪋㪯㪃㩷㪘㪚㪥㪔㪈㪇㪇 㪡㪸㫇㪸㫅
㪊㪙㪃㩷㪍㪯
㪋㪯㪃㩷㪘㪚㪥㪔㪈㪇㪇 㪡㪸㫇㪸㫅㩷㩿㪟㫆㫂㫂㪸㫀㪻㫆㪀
㪋㪯㪃㩷㪘㪚㪥㪔㪈㪇㪇 㪚㪿㫀㫅㪸
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼 㪮㪄㪈㪇㪃㩷㪱㪄㪋㪃㩷㪱㪄㪏 㪮㪄 㪈 㪇
㪢㪄㪏㪍
㪤㪄㪐㪍㪃㩷㪦㪄㪊㪇㪃㩷㪪㪄㪈㪋㪈
㪱㪄㪊㪍
㪱㪄㪊㪍
㪙㪄㪌㪇 㪱㪄㪊㪍
㪙㪄㪌㪇㪃㩷㪞㪄㪏㪌
㪧㪄㪉㪉㪃㩷㪞㪄㪏㪌
㪩㪄㪊㪍
㪢㪄㪏㪌㪃㩷㪢㪄㪐㪋 㪪㪄㪏㪇
㪢㪄㪏㪌㪃㩷㪢㪄㪐㪋
㪮㪄 㪈 㪇
㪪㪄㪍㪋
㪪㪄㪍㪋 㪪㪄㪋㪍㪃㩷㪝㪄㪌
㪪㪄㪍㪋
㪪㪄㪍㪉
㪚㪄㪏㪊
㪦㪄㪊㪇 㪰㪄㪈㪋㪃㩷㪰㪄㪈㪌
㪪㪄㪈㪌㪍
㪪㪄㪈㪌㪍
㪘㪄㪎㪇
㪘㪄㪎㪇 㪘㪄㪎㪇
㪦㪄㪉㪍㪃㩷㪦㪄㪊㪎
㪦㪄㪉㪍㪃㩷㪦㪄㪊㪎
㪦㪄㪈㪉
㪢㪄㪈㪈㪌 㪦㪄㪈㪉㪃㩷㪦㪄㪊㪇
㪦㪄㪋㪌
㪦㪄㪋㪌
㪦㪄㪊㪇㪃㩷㪫㪄㪈㪏
㪱㪄㪋㪃㩷㪱㪄㪏 㪮㪄 㪉
㪚㪿㫀㫅㪸㩷㩿㪰㫌㫅㫅㪸㫅㪃㩷㪜㫉㩷㪿㪸㫀㩷㪣㪸㫂㪼㪀 㪮㪄㪈㪈
㪍㪯 㪚㪿㫀㫅㪸㩷㩿㪢㫌㫅㫄㫀㫅㪾㩷㪣㪸㫂㪼㪀㩷 㪋㪯㪃㩷㪘㪚㪥㪔㪈㪇㪇 㪚㪿㫀㫅㪸㩷㩿㪯㫀㫁㫀㪀
㪍㪯
㪍㪯㪃㩷㪘㪚㪥㪔㪈㪌㪇 㪚㪿㫀㫅㪸㩷㩿㪰㫌㫅㫅㪸㫅㪀㩷
㪯㪯㪆㪯㪰
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
54
㪚㪸㫉㪸㫊㫊㫀㫌㫊 㪚㪸㫉㪸㫊㫊㫀㫌㫊 㪚㪸㫉㪸㫊㫊㫀㫌㫊 㪚㪸㫉㪸㫊㫊㫀㫌㫊 㪚㪸㫉㪸㫊㫊㫀㫌㫊 㪚㪸㫉㪸㫊㫊㫀㫌㫊 㪚㪸㫉㪸㫊㫊㫀㫌㫊 㪚㪸㫉㪸㫊㫊㫀㫌㫊 㪚㪸㫉㪸㫊㫊㫀㫌㫊 㪚㪸㫉㪸㫊㫊㫀㫌㫊 㪚㪸㫉㪸㫊㫊㫀㫌㫊 㪚㪸㫉㪸㫊㫊㫀㫌㫊 㪚㪸㫉㪸㫊㫊㫀㫌㫊 㪚㪸㫉㪸㫊㫊㫀㫌㫊 㪚㪸㫉㪸㫊㫊㫀㫌㫊 㪚㪸㫉㪸㫊㫊㫀㫌㫊 㪚㪸㫉㪸㫊㫊㫀㫌㫊 㪚㪸㫉㪸㫊㫊㫀㫌㫊 㪚㪸㫉㪸㫊㫊㫀㫌㫊 㪚㪸㫉㪸㫊㫊㫀㫌㫊 㪚㪸㫉㪸㫊㫊㫀㫌㫊 㪚㫐㫇㫉㫀㫅㫌㫊 㪚㫐㫇㫉㫀㫅㫌㫊 㪚㫐㫇㫉㫀㫅㫌㫊 㪚㫐㫇㫉㫀㫅㫌㫊 㪚㫐㫇㫉㫀㫅㫌㫊 㪚㫐㫇㫉㫀㫅㫌㫊 㪚㫐㫇㫉㫀㫅㫌㫊 㪚㫐㫇㫉㫀㫅㫌㫊 㪚㫐㫇㫉㫀㫅㫌㫊 㪚㫐㫇㫉㫀㫅㫌㫊 㪚㫐㫇㫉㫀㫅㫌㫊 㪚㫐㫇㫉㫀㫅㫌㫊 㪚㫐㫇㫉㫀㫅㫌㫊 㪚㫐㫇㫉㫀㫅㫌㫊 㪚㫐㫇㫉㫀㫅㫌㫊 㪚㫐㫇㫉㫀㫅㫌㫊 㪚㫐㫇㫉㫀㫅㫌㫊 㪚㫐㫇㫉㫀㫅㫌㫊
㪸㫌㫉㪸㫋㫌㫊㩷㫃㪸㫅㪾㫊㪻㫆㫉㪽㫀㫀㩷 㪸㫌㫉㪸㫋㫌㫊㩷㫃㪸㫅㪾㫊㪻㫆㫉㪽㫀㫀㩷 㪸㫌㫉㪸㫋㫌㫊㩷㫃㪸㫅㪾㫊㪻㫆㫉㪽㫀㫀㩷 㪸㫌㫉㪸㫋㫌㫊㩷㫃㪸㫅㪾㫊㪻㫆㫉㪽㫀㫀㩷 㪸㫌㫉㪸㫋㫌㫊㩷㫃㪸㫅㪾㫊㪻㫆㫉㪽㫀㫀㩷 㪸㫌㫉㪸㫋㫌㫊㩷㫃㪸㫅㪾㫊㪻㫆㫉㪽㫀㫀㩷 㪸㫌㫉㪸㫋㫌㫊㩷㫃㪸㫅㪾㫊㪻㫆㫉㪽㫀㫀㩷 㪸㫌㫉㪸㫋㫌㫊㩷㪹㫌㪼㫉㪾㪼㫉㫀㩷 㪸㫌㫉㪸㫋㫌㫊㩷 㫊㫌㪹㫊㫇㪅㩷㪉 㪸㫌㫉㪸㫋㫌㫊㩷 㫊㫌㪹㫊㫇㪅㩷㪉 㪸㫌㫉㪸㫋㫌㫊㩷 㫊㫌㪹㫊㫇㪅㩷㪈 㪸㫌㫉㪸㫋㫌㫊㩷 㫊㫌㪹㫊㫇㪅㩷㪈 㪸㫌㫉㪸㫋㫌㫊㩷 㫊㫌㪹㫊㫇㪅㩷 㪸㫌㫉㪸㫋㫌㫊 㪺㪸㫉㪸㫊㫊㫀㫌㫊 㪺㪸㫉㪸㫊㫊㫀㫌㫊 㪺㪸㫉㪸㫊㫊㫀㫌㫊 㪺㪸㫉㪸㫊㫊㫀㫌㫊 㪺㪸㫉㪸㫊㫊㫀㫌㫊 㪺㫌㫍㫀㪼㫉㫀 㪺㫌㫍㫀㪼㫉㫀 㪺㪸㫉㫇㫀㫆 㪺㪸㫉㫇㫀㫆 㪺㪸㫉㫇㫀㫆 㪺㪸㫉㫇㫀㫆 㪺㪸㫉㫇㫀㫆 㪺㪸㫉㫇㫀㫆 㪺㪸㫉㫇㫀㫆 㪺㪸㫉㫇㫀㫆 㪺㪸㫉㫇㫀㫆㩷㪺㪸㫉㫇㫀㫆 㪺㪸㫉㫇㫀㫆㩷㪺㪸㫉㫇㫀㫆㩷 㪺㪸㫉㫇㫀㫆㩷㪺㪸㫉㫇㫀㫆 㪺㪸㫉㫇㫀㫆㩷㪺㪸㫉㫇㫀㫆㩷 㪺㪸㫉㫇㫀㫆㩷㪺㪸㫉㫇㫀㫆㩷 㪺㪸㫉㫇㫀㫆㩷 㪺㪸㫉㫇㫀㫆㩷 㪺㪸㫉㫇㫀㫆㩷 㪺㪸㫉㫇㫀㫆㩷 㪺㪸㫉㫇㫀㫆㩷
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㫇㪼㫉㪽㪸㫄㫀㫃㫐㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷
㪈㪋㪏 㪏㪉
㪉㪇㪤㩷㪂㩷㪋㪇㪪㪤㪆㪪㪫㩷㪂㩷㪋㪇㪘 㪋㪏㩷㪤㪆㪪㪤㩷㪂㩷㪌㪉㩷㪪㪫㪆㪘 㪉㪇㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪏㪘 㪌㪉㩷㪤㪆㪪㪤㩷㪂㩷㪋㪏㩷㪪㪫㪆㪘 㪉㪇㪤㩷㪂㩷㪋㪋㩷㪪㪤㪆㪪㪫㩷㪂㩷㪊㪍㪘
㪈㪇㪇 㪈㪇㪇 㪌㪇 㪈㪇㪇 㪈㪇㪇
㪝㪃㩷㪤
㫎㪿㫀㫋㪼㩷㪺㫉㫌㪺㫀㪸㫅㩷㪺㪸㫉㫇㩷
㪙㫃㫌㪼㩷㪺㪸㫉㫇 㪪㪺㪸㫋㫋㪼㫉㪼㪻㩷㫄㫀㫉㫉㫆㫉㩷㪺㪸㫉㫇 㩷㪦㪾㫆㫅 㩷㪦㪾㫆㫅 㩷㪢㫆㪿㪸㫂㫌 㩷㪢㫆㪿㪸㫂㫌
㪧㫀㫃㫀㩷㪺㪸㫉㫇㩷
㪟㪼㪹㪸㫆㩷㪺㪸㫉㫇㩷㩷 㪯㫀㫅㪾㫌㫆㩷㫉㪼㪻㩷㪺㪸㫉㫇
㫄㫀㫉㫉㫆㫉㩷㪺㪸㫉㫇
㪝㪃㩷㪤
㪸㫌㫉㪸㫋㫌㫊㩷㪺㫌㫍㫀㪼㫉㫀
㪈㪇㪇 㪐㪐 㪐㪐 㪐㪐 㪐㪐
㪝 㪤 㪝㪃㩷㪤 㪤
㪈㪉㪤㩷㪂㩷㪊㪌㩷㪪㪤㩷㪂㩷㪌㪉㩷㪪㪫㪆㪘
㪈㪉㪤㩷㪂㩷㪊㪌㩷㪪㪤㩷㪂㩷㪌㪉㩷㪪㪫㪆㪘 㪈㪉㪤㩷㪂㩷㪊㪌㩷㪪㪤㩷㪂㩷㪌㪉㩷㪪㪫㪆㪘
㪈㪉㪤㩷㪂㩷㪊㪌㩷㪪㪤㩷㪂㩷㪌㪉㩷㪪㪫㪆㪘
㪉㪇㪤㩷㪂㩷㪉㪍㪪㪤㩷㪂㩷㪊㪇㪪㪫㩷㪂㩷㪉㪋㪘
㪉㪏㪤㩷㪂㩷㪉㪉㪪㪤㩷㪂㩷㪌㪇㩷㪪㪫㪆㪘
㪉㪏㪤㩷㪂㩷㪉㪉㪪㪤㩷㪂㩷㪌㪇㩷㪪㪫㪆㪘 㪉㪏㪤㩷㪂㩷㪉㪉㪪㪤㩷㪂㩷㪌㪇㩷㪪㪫㪆㪘
㪈㪇㪇 㪈㪇㪇 㪈㪇㪇
㪉㪏㪤㩷㪂㩷㪉㪉㪪㪤㩷㪂㩷㪌㪇㩷㪪㪫㪆㪘
㪉㪉㪤㩷㪂㩷㪊㪋㪪㪤㩷㪂㩷㪉㪉㪪㪫㩷㪂㩷㪉㪉㪘
㪉㪋㪤㩷㪂㩷㪉㪋㩷㪪㪤㪆㪪㪫㩷㪂㩷㪌㪉㪘 㪌㪋㩷㪤㪆㪪㪤㩷㪂㩷㪋㪋㩷㪪㪫㪆㪘
㪈㪇㪇
㪈㪇㪇
㪈㪇㪇
㪈㪇㪇 㪐㪏
㪊㪋㩷㪤㪆㪪㪤㩷㪂㩷㪊㪇㪪㪫㩷㪂㩷㪊㪍㪘 㪌㪇㩷㪤㪆㪪㪤㩷㪂㩷㪋㪏㩷㪪㪫㪆㪘
㪐㪏
㪈㪉㪤㩷㪂㩷㪊㪍㪪㪤㩷㪂㩷㪌㪉㩷㪪㪫㪆㪘 㪉㪇㪤㩷㪂㩷㪊㪉㩷㪪㪤㪆㪪㪫㩷㪂㩷㪋㪏㪘
㪉㪇㪤㩷㪂㩷㪋㪇㪪㪤㩷㪂㩷㪋㪇㪘
㪈㪉㪤㩷㪂㩷㪊㪍㪪㪤㩷㪂㩷㪌㪉㩷㪪㪫㪆㪘
㪈㪇㪇
㪈㪇㪇 㪈㪇㪇
㪈㪇㪋
㪈㪇㪇
㪈㪇㪇
㪤
㪝㪃㩷㪤
㪝㪃㩷㪤
㪝㪃㩷㪤
㪝㪃㩷㪤
㩷㪞㪼㫅㪾㫆㫉㫆㪹㫌㫅㪸
㪊㪋㪤㩷㪂㩷㪍㪉㩷㪤㪪㪆㪪㪫㩷㪂㩷㪍㪇㪘 㪈㪉㪤㩷㪂㩷㪊㪍㪪㪤㩷㪂㩷㪌㪉㩷㪪㪫㪆㪘 㪉㪇㪤㩷㪂㩷㪉㪏㪪㪤㩷㪂㩷㪊㪏㪪㪫㩷㪂㩷㪈㪋㪘
㪈㪋㪍
㪈㪋㪍 㪈㪋㪍
㪈㪋㪍
㪈㪋㪍
㪈㪌㪇
㪈㪌㪇 㪈㪌㪇
㪈㪌㪇
㪈㪌㪍
㪈㪌㪉
㪈㪋㪏
㪈㪊㪋
㪈㪋㪏
㪈㪍㪇
㪈㪋㪏
㪈㪌㪉
㪈㪋㪏 㪈㪋㪏
㪈㪋㪏 㪈㪋㪏
㪈㪍㪇
㪉㪊㪋 㪉㪊㪋
㪈㪌㪍
㪉㪇㪤㩷㪂㩷㪋㪇㩷㪪㪤㪆㪪㪫㩷㪂㩷㪋㪇㪘 㪉㪇㪤㩷㪂㩷㪋㪇㩷㪪㪤㪆㪪㪫㩷㪂㩷㪋㪇㪘
㪈㪇㪇 㪈㪇㪇
㪝㪃㩷㪤
㪈㪉㪤㩷㪂㩷㪊㪍㪪㪤㩷㪂㩷㪌㪉㩷㪪㪫㪆㪘 㪈㪉㪤㩷㪂㩷㪊㪍㪪㪤㩷㪂㩷㪌㪉㩷㪪㪫㪆㪘
㪉㪇㪤㩷㪂㩷㪋㪇㪪㪤㩷㪂㩷㪋㪇㪘
㪝㪃㩷㪤
㪈㪇㪇 㪈㪇㪇
㪺㪸㪅㩷㪈㪌㪇
㪝㪃㩷㪤
㪋㪋㪤㩷㪂㩷㪏㪉㩷㪪㪤㪆㪪㪫㩷㪂㩷㪏㪇㪘
㪉㪇㪍 㪈㪇㪇
㪝 㪝㪃㩷㪤
㪝
㪉㪇㪤㩷㪂㩷㪋㪇㩷㪪㪤㪆㪪㪫㩷㪂㩷㪋㪇㪘 㪊㪋㪤㩷㪂㩷㪍㪉㩷㪪㪤㪆㪪㪫㩷㪂㩷㪍㪇㪘
㪈㪇㪇 㪈㪌㪍
㪝㪃㩷㪤
㪉㪏㪤㩷㪂㩷㪌㪍㪪㪤㩷㪂㩷㪍㪍㩷㪪㪫㪆㪘 㪈㪏㪤㩷㪂㩷㪍㪍㪪㪤㩷㪂㩷㪍㪍㩷㪪㪫㪆㪘
㪈㪌㪇 㪈㪌㪇
㪝 㪝 㪈㪍㪇
㪈㪎㪍
㪈㪎㪏
㪈㪋㪏
㪈㪍㪋
㪈㪌㪉
㪈㪍㪇
㪈㪍㪋
㪐㪉
㪈㪍㪇
㪈㪏㪍
㪉㪌㪉
㪈㪍㪇
㪈㪍㪇
㪈㪍㪇
㪊㪊㪉
㪉㪌㪉
㪉
㪉 㪉
㪉
㪉
㪉
㪉
㪈㪄㪊
㪉
㪉
㪏
㪝 㪞 㪟 㪥㪝㪈 㪥㪝㪉 㪘㪾㪄 㪥㪦㪩㫊
㪈㪇㪇 㪈㪇㪇
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪝
㪛 㪉㫅
㪤 㪝
㪚 㪪㪼㫏
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉 㩷㪞㫀㫅㪹㫌㫅㪸 㩷㪞㫀㫅㪹㫌㫅㪸 㩷㪞㫀㫅㪹㫌㫅㪸 㩷㪞㫀㫅㪹㫌㫅㪸 㩷㪞㫀㫅㪹㫌㫅㪸 㩷㪞㫀㫅㪹㫌㫅㪸 㩷㪞㫀㫅㪹㫌㫅㪸 㩷㪦㫆㫂㫀㫅㪹㫌㫅㪸 㩷㪢㫀㫅㪹㫌㫅㪸 㩷㪢㫀㫅㪹㫌㫅㪸 㪹㫌㪼㫉㪾㪼㫉㫀 㪃㩷㪥㪸㪾㪸㪹㫌㫅㪸 㪹㫌㪼㫉㪾㪼㫉㫀 㪃㩷㪥㪸㪾㪸㪹㫌㫅㪸
㪫㪸㪹㫃㪼㩷㪍㪅㪈㪈㩷㩷㪦㫉㪻㪼㫉㩷㪚㪰㪧㪩㪠㪥㪠㪝㪦㪩㪤㪜㪪㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀
㪉㪙㪃㩷㪘㪚㪥㪔㪈㪇㪇
㪈㪙㪃㩷㪘㪚㪥㪔㪈㪇㪇 㪈㪙㪃㩷㪘㪚㪥㪔㪈㪇㪇
㪘㪚㪥㪔㪈㪇㪇
㪋㪅㪈㪁㩷㪝㪚㪤
㪋㪅㪈㪁㩷㪝㪚㪤
㪋㪅㪈㪁㩷㪝㪚㪤
㪉㪅㪐㪁㪃㩷㪊㪅㪌㩷㪝㪛
㪋㪅㪈㪁㩷㪝㪚㪤 㪊㪅㪍㩷㪝㪛
䋨㪊㪅㪋㩷㪝㪚㪤䋩㪃㩷㪊㪅㪋㩷㪙㪝㪘
㪋㪅㪋㪁㩷㪝㪚㪤㪃㩷㪋㪅㪏㩷㪝㪛
㪊㪅㪏㩷㪝㪛
㪋㪅㪊㩷㪝㪚㪤
㪊㪅㪏㪁㩷㪝㪚㪤
㩿㪋㪅㪈㪁㩷㪝㪚㪤㪃㩷㪊㪅㪋㩷㪝㪛㪀
㩿㪌㪅㪋㪁㩷㪝㪚㪤㪀
㪠 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㩿㫇㪾㪆㪺㪼㫃㫃㪀 㪡㪸㫇㪸㫅㩷㩿㪣㪸㫂㪼㩷㪙㫀㫎㪸㪀 㪡㪸㫇㪸㫅㩷㩿㪣㪸㫂㪼㩷㪙㫀㫎㪸㪀
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪢㪄㪐㪋㪃㩷㪢㪄㪈㪈㪌㪃㩷㪦㪄㪋㪏㪃㩷㪪㪄㪈㪋㪈 㪢㪄㪐㪋㪃㩷㪢㪄㪈㪈㪌㩷
㪢㪄㪐㪋㪃㩷㪢㪄㪈㪈㪌㩷
㪋㪯㪃㩷㪘㪚㪥㪔㪈㪇㪇 㪡㪸㫇㪸㫅㩷㩿䌉䌢䌡䌲䌡䌫䌩㪀
㪩㫌㫄㪸㫅㫀㪸㩷㩿㪛㪸㫅㫌㪹㪼㩷㫇㫃㪸㫀㫅㪼㪀
㪢㪄㪈㪈㪌
㪘㪄㪉㪎㪃㩷㪘㪄㪉㪏
㪘㪄㪌㪈
㪫㪄㪈㪋㪃㩷㪦㪄㪈㪊㪃㩷㪦㪄㪋㪏 㪟㪄㪉
㪫㪄㪎㪊㪃㩷㪟㪄㪈㪊
㪤㪄 㪐 㪍
㪦㪄㪈㪉㪃㩷㪦㪄㪊㪇㪃㩷㪦㪄㪋㪏㪃㩷㪪㪄㪈㪋㪈
㪪㪄㪏㪇 㪟㪄㪉㪃㩷㪟㪄㪋
㪩㪄㪊㪍
㪭㪄㪎㪉㪃㩷㪭㪄㪏㪍
㪢㪄㪈㪈㪌㪃㩷㪤㪄㪌㪋
㪫㪄㪈㪊 㪱㪄㪈㪏
㪢㪄㪏㪍
㪢㪄㪏㪍㪃㩷㪢㪄㪈㪈㪎
㪋㪯㪃㩷㪘㪚㪥㪔㪈㪇㪇 㪡㪸㫇㪸㫅
㪋㪯㪃㩷㪘㪚㪥㪔㪈㪇㪇 㪡㪸㫇㪸㫅 㪋㪯㪃㩷㪘㪚㪥㪔㪈㪇㪇 㪡㪸㫇㪸㫅
㪋㪯㪃㩷㪘㪚㪥㪔㪈㪇㪇 㪡㪸㫇㪸㫅
㪋㪯㪃㩷㪘㪚㪥㪔㪈㪇㪇 㪚㪿㫀㫅㪸㩷㩿㪡㫀㪸㫅㪾㫊㫌㪀
㪋㪯㪃㩷㪘㪚㪥㪔㪈㪇㪇 㪚㪿㫀㫅㪸㩷㩿㪡㫀㪸㫅㪾㫏㫀㪀㩷
㪋㪯㪃㩷㪘㪚㪥㪔㪈㪇㪇 㪚㪿㫀㫅㪸㩷㩿㪡㫀㪸㫅㪾㫏㫀㪀㩷 㪋㪯㪃㩷㪘㪚㪥㪔㪈㪇㪇 㪚㪿㫀㫅㪸㩷㩿㪡㫀㪸㫅㪾㫏㫀㪀㩷
㪋㪯㪃㩷㪘㪚㪥㪔㪈㪇㪇 㪚㪿㫀㫅㪸㩷㩿㪡㫀㪸㫅㪾㫏㫀㪀㩷
㪋㪯㪃㩷㪘㪚㪥㪔㪈㪇㪇 㪚㪿㫀㫅㪸
㪚㪿㫀㫅㪸㩷㩿㪟㫌㪹㪼㫀㪀
㪦㪄㪊㪌
㪦㪄㪊㪌 㪦㪄㪊㪌
㪦㪄㪊㪌
㪱㪄㪈㪏㪃㩷㪝㪄㪌
㪮㪄 㪐
㪮㪄㪐㪃㩷㪝㪄㪌 㪮㪄 㪐
㪮㪄㪐㪃㩷㪝㪄㪌
㪰㪄㪈㪋㪃㩷㪩㪄㪈㪇㪌
㪣㪄㪋㪈㪃㩷㪚㪄㪏㪊
㪋㪯㪃㩷㪘㪚㪥㪔㪈㪇㪇 㪩㫌㫄㪸㫅㫀㪸㪃㩷㪟㫌㫅㪾㪸㫉㫐㪃㩷㪬㫂㫉㪸㫀㫅㪸 㪩㪄㪊㪊 㪋㪯㪃㩷㪘㪚㪥㪔㪈㪇㪇 㪚㫉㫆㪸㫋㫀㪸 㪘㪄㪉㪋
㪋㪯㪃㩷㪘㪚㪥㪔㪈㪇㪇 㪽㫆㫉㫄㪼㫉㩷㪰㫌㪾㫆㫊㫃㪸㫍㫀㪸
㪋㪯㪃㩷㪘㪚㪥㪔㪈㪇㪇 㪞㪼㫉㫄㪸㫅㫐
㪋㪯㪃㩷㪘㪚㪥㪔㪈㪇㪇 㪡㪸㫇㪸㫅 㪋㪯㪃㩷㪘㪚㪥㪔㪈㪇㪇 㪝㫉㪸㫅㪺㪼
㪋 㪯 㪃 㩷 㪘㪚 㪥 㪔 㪈㪇 㪇
㪋㪯㪃㩷㪘㪚㪥㪔㪈㪇㪇 㪡㪸㫇㪸㫅㩷㩿㪣㪸㫂㪼㩷㪙㫀㫎㪸㪀
㪋㪯㪃㩷㪘㪚㪥㪔㪈㪇㪇 㪡㪸㫇㪸㫅㩷㩿㪣㪸㫂㪼㩷㪙㫀㫎㪸㪀
㪋㪯㪃㩷㪘㪚㪥㪔㪈㪇㪇 㪙㫆㫊㫅㫀㪸 㪋㪯㪃㩷㪘㪚㪥㪔㪈㪇㪇 㪝㫉㪸㫅㪺㪼
㪉㪯
㪋㪯㪃㩷㪘㪚㪥㪔㪈㪇㪇 㪩㫌㫊㫊㫀㪸
㪋㪯㪃㩷㪘㪚㪥㪔㪈㪇㪇 㪥㪼㫋㪿㪼㫉㫃㪸㫅㪻㫊
㪋㪯㪃㩷㪘㪚㪥㪔㪈㪇㪇 㪡㪸㫇㪸㫅㩷㩿㪠㫊㪿㫀㪾㪸㫂㫀㩷㪠㫊㪅㪀 㪋㪯㪃㩷㪘㪚㪥㪔㪈㪇㪇 㪚㪿㫀㫅㪸㩷㩿㪡㫀㪸㫅㪾㫊㫌㪀
㪍㪯㪃㩷㪘㪚㪥㪔㪈㪌㪇 㪡㪸㫇㪸㫅㩷㩿㪟㫆㫂㫂㪸㫀㪻㫆㪀
㪋㪯㪃㩷㪘㪚㪥㪔㪈㪇㪇 㪡㪸㫇㪸㫅㩷㩿㪣㪸㫂㪼㩷㪪㫌㫎㪸㪀
㪫㪄㪈㪌 㪦㪄㪊㪇㪃㩷㪦㪄㪊㪎㪃㩷㪦㪄㪋㪏㪃㩷㪬㪄㪈
㪍㪯㪃㩷㪘㪚㪥㪔㪈㪌㪇 㪡㪸㫇㪸㫅㩷㩿㪟㫆㫂㫂㪸㫀㪻㫆㪃㩷㪟㫆㫅㫊㪿㫌㪀 㪤㪄㪐㪍 㪋㪯㪃㩷㪘㪚㪥㪔㪈㪇㪇 㪡㪸㫇㪸㫅㩷㩿㪦㫂㪸㫐㪸㫄㪸㪀㩷 㪯㪯㪆㪯㪰 㪡㪸㫇㪸㫅㩷㩿㪣㪸㫂㪼㩷㪡㫆㫅㫌㫄㪸㪀
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼 㪦㪄㪊㪇㪃㩷㪦㪄㪋㪏 㪫㪄㪈㪌
㪋㪯㪃㩷㪘㪚㪥㪔㪈㪇㪇 㪡㪸㫇㪸㫅㩷㩿㪟㫆㫂㫂㪸㫀㪻㫆㪃㩷㪟㫆㫅㫊㪿㫌㪀 㪤㪄㪐㪍
㪏㪯㪃㩷㪘㪚㪥㪔㪉㪇㪇 㪡㪸㫇㪸㫅㩷㩿㪢㪸㫅㫋㫆㩷㪛㫀㫊㫋㫉㫀㪺㫋㪀
㪍㪯㪃㩷㪘㪚㪥㪔㪈㪌㪇 㪡㪸㫇㪸㫅㪃㩷㪫㪸㫀㫎㪸㫅㪃㩷㪩㫌㫊㫊㫀㪸
㪋㪯㪃㩷㪘㪚㪥㪔㪈㪇㪇 㪡㪸㫇㪸㫅㪃㩷㪫㪸㫀㫎㪸㫅㪃㩷㪩㫌㫊㫊㫀㪸
㪍㪙㪃㩷㪍㪯 㪋㪙㪃㩷㪍㪯
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
55
㫂㫀㪸㫋㫀㫅㪾㪼㫅㫊㫀㫊 㫃㪸㪹㪼㫆㫀㪻㪼㫊 㫉㫀㫍㫌㫃㪸㫉㫀㫊 㫉㫀㫍㫌㫃㪸㫉㫀㫊 㫉㫀㫍㫌㫃㪸㫉㫀㫊 㫅㫌㫄㫄㫀㪽㪼㫉 㪾㫌㫀㪺㪿㪼㫅㫆㫋㫀 㪿㪼㫋㪼㫉㫆㪻㫆㫅 㫊㫇㫃㪼㫅㪻㫀㪻㫌㫊 㫊㫇㫃㪼㫅㪻㫀㪻㫌㫊
㪘㪹㪹㫆㫋㫋㫀㫅㪸 㪘㪹㪹㫆㫋㫋㫀㫅㪸 㪘㪹㪹㫆㫋㫋㫀㫅㪸 㪘㪹㪹㫆㫋㫋㫀㫅㪸 㪘㪹㪹㫆㫋㫋㫀㫅㪸 㪙㪼㫃㫃㫀㪾㫆㪹㫀㫆 㪚㫆㫉㪼㫀㫌㫊 㪚㫆㫉㪼㫀㫌㫊 㪚㫆㫉㪼㫆㫃㪼㫌㪺㫀㫊㪺㫌㫊 㪚㫆㫉㪼㫆㫃㪼㫌㪺㫀㫊㪺㫌㫊
㩷㩷㪞㫆㪹㫀㫆㫅㫀㫅㪸㪼
㪸㪹㪹㫉㪼㫍㫀㪸㫋㪸 㪹㫆㫌㫃㪼㫅㪾㪼㫉㫀 㪹㫆㫌㫃㪼㫅㪾㪼㫉㫀 㪹㫉㪼㫍㫀㪹㪸㫉㪹㪸 㫀㪺㪿㪸㫅㪾㪼㫅㫊㫀㫊 㫃㫆㫅㪾㫀㪹㪸㫉㪹㪸㩷㫄㪼㫉㫀㪻㫀㫆㫅㪸㫃㫀㫊 㫃㫆㫅㪾㫀㪻㫆㫉㫊㪸㫃㫀㫊 㫃㫆㫅㪾㫀㪻㫆㫉㫊㪸㫃㫀㫊 㫐㪸㫃㫌㪼㫅㫊㫀㫊 㫐㪸㫃㫌㪼㫅㫊㫀㫊
㪺㪸㫉㫇㫀㫆㩷 㪺㪸㫉㫇㫀㫆㩷 㪺㪸㫉㫇㫀㫆㩷㪺㪿㫀㫃㫀㪸 㪺㪸㫉㫇㫀㫆㩷㪺㪿㫀㫃㫀㪸 㪺㪸㫉㫇㫀㫆㩷㪺㫆㫄㫄㫌㫅㫀㫊 㪺㪸㫉㫇㫀㫆㩷㪿㪸㪼㫄㪸㫋㫆㫇㫋㪼㫉㫌㫊 㪺㪸㫉㫇㫀㫆㩷㪿㪸㪼㫄㪸㫋㫆㫇㫋㪼㫉㫌㫊 㪺㪸㫉㫇㫀㫆㩷㪿㪸㪼㫄㪸㫋㫆㫇㫋㪼㫉㫌㫊 㪺㪸㫉㫇㫀㫆㩷㫉㫌㪹㫉㫆㪽㫌㫊㪺㫌㫊 㪺㪸㫉㫇㫀㫆㩷㫉㫌㪹㫉㫆㪽㫌㫊㪺㫌㫊 㪻㪸㫃㫀㪼㫅㫊㫀㫊 㫃㫆㫅㪾㫀㫇㪼㪺㫋㫆㫉㪸㫃㫀㫊 㫄㪼㪾㪸㫃㫆㫇㪿㫋㪿㪸㫃㫄㫌㫊 㫄㫀㪺㫉㫀㫊㫋㫀㫌㫊㩷㪽㫌㫏㫀㪸㫅㪼㫅㫊㫀㫊 㫇㪼㫃㫃㪼㪾㫉㫀㫅㫀㩷㪹㪸㫉㪹㪸㫋㫌㫊 㫇㪼㫃㫃㪼㪾㫉㫀㫅㫀㩷㫇㪼㫃㫃㪼㪾㫉㫀㫅㫀 㫉㪸㪹㪸㫌㪻㫀
㪞㫆㪹㫀㫆㪹㫆㫋㫀㪸 㪞㫆㪹㫀㫆㪹㫆㫋㫀㪸 㪞㫆㪹㫀㫆㪹㫆㫋㫀㪸㩷 㪞㫆㪹㫀㫆㪹㫆㫋㫀㪸 㪞㫆㪹㫀㫆㪹㫆㫋㫀㪸 㪞㫆㪹㫀㫆㪹㫆㫋㫀㪸 㪤㫀㪺㫉㫆㫇㪿㫐㫊㫆㪾㫆㪹㫀㫆 㪤㫀㪺㫉㫆㫇㪿㫐㫊㫆㪾㫆㪹㫀㫆 㪤㫀㪺㫉㫆㫇㪿㫐㫊㫆㪾㫆㪹㫀㫆 㪤㫀㪺㫉㫆㫇㪿㫐㫊㫆㪾㫆㪹㫀㫆
㩷㩷㪞㫆㪹㫀㫆㪹㫆㫋㫀㫅㪸㪼
㪚㫐㫇㫉㫀㫅㫌㫊 㪚㫐㫇㫉㫀㫅㫌㫊 㪚㫐㫇㫉㫀㫅㫌㫊 㪚㫐㫇㫉㫀㫅㫌㫊 㪚㫐㫇㫉㫀㫅㫌㫊 㪚㫐㫇㫉㫀㫅㫌㫊 㪚㫐㫇㫉㫀㫅㫌㫊 㪚㫐㫇㫉㫀㫅㫌㫊 㪚㫐㫇㫉㫀㫅㫌㫊 㪚㫐㫇㫉㫀㫅㫌㫊 㪚㫐㫇㫉㫀㫅㫌㫊 㪚㫐㫇㫉㫀㫅㫌㫊 㪚㫐㫇㫉㫀㫅㫌㫊 㪚㫐㫇㫉㫀㫅㫌㫊 㪚㫐㫇㫉㫀㫅㫌㫊 㪚㫐㫇㫉㫀㫅㫌㫊 㪧㫉㫆㪺㫐㫇㫉㫀㫊
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㫇㪼㫉㪽㪸㫄㫀㫃㫐㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷
㫐㫌㫅㫅㪸㫅㪼㫅㫊㫀㫊㩷㪻㪸㫃㫀㪼㫅㫊㫀㫊
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉 㩷㪪㪸㫅㫊㪿㫆㫂㫌 㩷㪪㪸㫅㫊㪿㫆㫂㫌
㪫㪸㪹㫃㪼㩷㪍㪅㪈㪈㩷㩷㪦㫉㪻㪼㫉㩷㪚㪰㪧㪩㪠㪥㪠㪝㪦㪩㪤㪜㪪㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀
㪈㪏㪤㩷㪂㩷㪊㪉㪪㪤
㪌㪇 㪌㪇 㪌㪇 㪌㪇 㪌㪇
㪤 㪝㪃㩷㪤 㪤
㪈㪉㪤㩷㪂㩷㪊㪉㪪㪤㩷㪂㩷㪍㪪㪫
㪌㪇 㪌㪇 㪌㪇 㪌㪇
㪝㪃㩷㪤 㪝㪃㩷㪤 㪝㪃㩷㪤 㪤
㪈㪋㪤㩷㪂㩷㪊㪇㩷㪪㪤㪆㪪㪫㩷㪂㩷㪍㪘
㪈㪍㪤㩷㪂㩷㪉㪉㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪉㪘 㪈㪉㪤㩷㪂㩷㪊㪇㪪㪤㩷㪂㩷㪏㩷㪪㪫㪆㪘
㪈㪍㪤㩷㪂㩷㪉㪉㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪉㪘
㪈㪏㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪉㪘
㪌㪇 㪌㪇
㪌㪇 㪌㪇
㪝 㪝㪃㩷㪤 㪝㪃㩷㪤
㪉㪋㪤㩷㪂㩷㪉㪋㪪㪤㩷㪂㩷㪉㪪㪫 㪉㪉㪤㩷㪂㩷㪉㪋㪪㪤㩷㪂㩷㪋㪪㪫
㪌㪇 㪌㪇
㪤
㪉㪋㪤㩷㪂㩷㪉㪋㪪㪤㩷㪂㩷㪉㪪㪫
㪈㪏㪤㩷㪂㩷㪊㪉㩷㪪㪤㪆㪪㪫 㪈㪍㪤㩷㪂㩷㪊㪉㪪㪤㩷㪂㩷㪉㪪㪫
㪉㪉㪤㩷㪂㩷㪈㪏㪪㪤㩷㪂㩷㪈㪇㪪㪫
㪈㪉㪤㩷㪂㩷㪊㪇㩷㪪㪤㪆㪪㪫㩷㪂㩷㪏㪘 㪊㪉㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪍㩷㪪㪫㪆㪘
㪈㪋㪤㩷㪂㩷㪉㪍㪪㪤㩷㪂㩷㪈㪇㪪㪫
㪤
㪌㪇 㪌㪇
㪌㪇
㪝㪃㩷㪤
㪤
㪈㪏㪤㩷㪂㩷㪊㪉㩷㪪㪤㪆㪪㪫
㪌㪇
㪉㪋㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪈㪉㩷㪪㪫㪆㪘
㪌㪇
㪤
㪉㪉㪤㩷㪂㩷㪉㪉㪪㪤㩷㪂㩷㪍㪪㪫
㪉㪉㪤㩷㪂㩷㪉㪍㪪㪤㩷㪂㩷㪉㪉㪪㪫㩷㪂㩷㪊㪇㪘
㪉㪉㪤㩷㪂㩷㪊㪇㪪㪤㩷㪂㩷㪋㪏㩷㪪㪫㪆㪘
㪈㪇㪇
㪈㪇㪇
㪝㪃㩷㪤
㪝㪃㩷㪤
㪉㪉㪤㩷㪂㩷㪊㪇㪪㪤㩷㪂㩷㪋㪏㩷㪪㪫㪆㪘 㪉㪉㪤㩷㪂㩷㪊㪇㪪㪤㩷㪂㩷㪋㪏㩷㪪㪫㪆㪘
㪈㪇㪇 㪈㪇㪇
㪉㪉㪤㩷㪂㩷㪊㪇㪪㪤㩷㪂㩷㪋㪏㩷㪪㪫㪆㪘 㪉㪉㪤㩷㪂㩷㪊㪇㪪㪤㩷㪂㩷㪋㪏㩷㪪㪫㪆㪘
㪉㪍㪤㩷㪂㩷㪊㪍㪪㪤㩷㪂㩷㪊㪏㩷㪪㪫㪆㪘
㪈㪇㪇 㪈㪇㪇 㪈㪇㪇
㪉㪉㪤㩷㪂㩷㪊㪇㪪㪤㩷㪂㩷㪋㪏㩷㪪㪫㪆㪘
㪈㪇㪇 㪉㪉㪤㩷㪂㩷㪊㪇㪪㪤㩷㪂㩷㪋㪏㩷㪪㪫㪆㪘
㪉㪇㪤㩷㪂㩷㪊㪇㪪㪤㩷㪂㩷㪌㪇㩷㪪㪫㪆㪘 㪉㪉㪤㩷㪂㩷㪊㪋㪪㪤㩷㪂㩷㪉㪉㪪㪫㩷㪂㩷㪉㪉㪘 㪉㪏㪤㩷㪂㩷㪊㪏㪪㪤㩷㪂㩷㪉㪉㪪㪫㩷㪂㩷㪈㪉㪘
㪈㪇㪇 㪈㪇㪇 㪈㪇㪇
㪤 㪝㪃㩷㪤 㪝㪃㩷㪤
㪈㪇㪇
㪉㪋㪤㩷㪂㩷㪉㪋㪪㪤㩷㪂㩷㪌㪉㪘
㪈㪇㪇
㪉㪏㪤㩷㪂㩷㪌㪉㪪㪤㩷㪂㩷㪎㪇㩷㪪㪫㪆㪘
㪈㪌㪇 㪤
㪈㪉㪤㩷㪂㩷㪊㪌㩷㪪㪤㩷㪂㩷㪌㪉㩷㪪㪫㪆㪘 㪉㪉㪤㩷㪂㩷㪊㪇㪪㪤㩷㪂㩷㪋㪏㩷㪪㪫㪆㪘
㪐㪐 㪐㪐 㪈㪇㪇
㪈㪉㪤㩷㪂㩷㪊㪌㩷㪪㪤㩷㪂㩷㪌㪉㩷㪪㪫㪆㪘
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪝
㪛 㪉㫅
㪤
㪚 㪪㪼㫏
㪏㪏 㪐㪉
㪏㪏
㪏㪏
㪐㪋
㪐㪏 㪐㪍
㪐㪏
㪐㪏
㪈㪇㪇
㪐㪇
㪐㪋
㪐㪇
㪏㪏
㪐㪋
㪈㪋㪏
㪈㪌㪉
㪈㪌㪉
㪈㪌㪉
㪈㪌㪉 㪈㪌㪉
㪈㪌㪉
㪈㪍㪉
㪈㪌㪉
㪈㪌㪍 㪈㪍㪍
㪈㪌㪇
㪈㪋㪏
㪉㪊㪇
㪈㪋㪍 㪈㪌㪉
㪈㪋㪍
㪐㪋
㪐㪏
㪐㪏
㪐㪏
㪈㪇㪇
㪈㪇㪇 㪈㪇㪇
㪈㪇㪇
㪈㪇㪇 㪈㪇㪇
㪈㪇㪇
㪈㪇㪇
㪈㪇㪇
㪐㪉
㪈㪇㪇
㪈㪇㪇
㪈㪎㪇
㪈㪎㪏 㪈㪏㪏
㪉
㪉
㪉
㪉
㪉
㪝 㪞 㪟 㪥㪝㪈 㪥㪝㪉 㪘㪾㪄 㪥㪦㪩㫊
㪉㪅㪎㪁㩷㪝㪛
㪊㪅㪌㩷㪝㪛
㪊㪅㪎㩷㪝㪛
㪊㪅㪈㩷㪝㪛
㪊㪅㪋㩷㪝㪛
㪉㪄㪊㩷㪙㪃㩷㪘㪚㪥㪔㪈㪇㪇 㪊㪅㪊㩷㪝㪛
㪈㪙㪃㩷㪘㪚㪥㪔㪈㪇㪇
㪠 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪚㪿㫀㫅㪸
㪚㪿㫀㫅㪸
㪚㪿㫀㫅㪸㩷㩿㪰㫌㫅㫅㪸㫅㪀㩷
㪚㪿㫀㫅㪸㩷㩿㪰㫌㫅㫅㪸㫅㪀㩷
㪚㪿㫀㫅㪸㩷㩿㪰㫌㫅㫅㪸㫅㪀㩷
㪚㪿㫀㫅㪸㩷㩿㪰㫌㫅㫅㪸㫅㪀㩷 㪚㪿㫀㫅㪸㩷㩿㪰㫌㫅㫅㪸㫅㪀㩷
㪚㪿㫀㫅㪸㩷㩿㪰㫌㫅㫅㪸㫅㪀㩷
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇 㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪉
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇 㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪉
㪘㪚㪥㪔㪌㪇 㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇 㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪉
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪦㪄㪊㪌
㪢㫆㫉㪼㪸㩷㩿㪟㪸㫅㩷㪩㪅㪀
㪚㪿㫀㫅㪸㩷㩿㪟㫌㪹㪼㫀㪀 㪢㫆㫉㪼㪸㩷㩿㪢㫆㪄㫊㪸㫅㪀
㪚㪿㫀㫅㪸㩷㩿㪮㫌㪿㪸㫅㪀
㪚㪿㫀㫅㪸㩷㩿㪪㫀㪺㪿㫌㪸㫅㪀
㪢㫆㫉㪼㪸
㪚㪿㫀㫅㪸㩷㩿㪟㫌㪹㪼㫀㪀 㪚㪿㫀㫅㪸㩷㩿㪘㫄㫌㫉㪀
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
㪚㪄㪏㪌
㪬㪄㪊㪊 㪣㪄㪈㪌
㪣㪄㪈㪌
㪬㪄㪊㪊
㪣㪄㪋㪌㪃㩷㪰㪄㪈㪌
㪬㪄㪊㪊 㪣㪄㪊㪏
㪣㪄㪋㪌㪃㩷㪰㪄㪈㪋㪃㩷㪰㪄㪈㪌
㪣㪄㪊㪏㪃㩷㪩㪄㪋㪊
㪣㪄㪋㪌㪃㩷㪰㪄㪈㪌㪃㩷㪩㪄㪋㪊
㪰㪄㪈㪋㪃㩷㪰㪄㪈㪌
㪱㪄㪎㪃㩷㪱㪄㪏
㪱㪄㪊㪃㩷㪱㪄㪏
㪱㪄㪊
㪮㪄㪐㪃㩷㪱㪄㪊㪃㩷㪱㪄㪏 㪱㪄㪊
㪱㪄㪎㪃㩷㪱㪄㪏
㪪㪄㪍㪎
㪱㪄㪉㪃㩷㪱㪄㪏
㪰㪄㪈㪌 㪩㪄㪈㪋
㪱㪄㪏
㪢㪄㪋㪉
㪱㪄㪏
㪦㪄㪊㪌 㪮㪄㪐㪃㩷㪱㪄㪊㪃㩷㪱㪄㪏
㪬㪄㪊㪊
㪣㪄㪉㪐㪃㩷㪰㪄㪈㪌 㪣㪄㪎㪎
㪣㪄㪉㪐㪃㩷㪰㪄㪈㪌
㪣㪄㪋㪊㪃㩷㪰㪄㪈㪌
㪣㪄㪈㪌
㪣㪄㪉㪐㪃㩷㪰㪄㪈㪌㪃㩷㪚㪄㪏㪊 㪮㪄 㪈 㪋
㪚㪿㫀㫅㪸㩷㩿㪞㫌㪸㫅㪾㫏㫀㪃㩷㪞㫌㪸㫅㪾㪻㫆㫅㪾㪀 㩷 㪰㪄㪈㪌
㪚㪿㫀㫅㪸㩷㩿㪧㪼㪸㫉㫃㩷㪩㪅㪀㩷
㪢㫆㫉㪼㪸㩷㩿㪞㪼㫌㫄㩷㪩㪅㪀 㪢㫆㫉㪼㪸
㪢㫆㫉㪼㪸
㪢㫆㫉㪼㪸㩷㩿㪟㪸㫅㩷㪩㪅㪀
㪚㪿㫀㫅㪸㩷㩿㪞㫌㪸㫅㪾㪻㫆㫅㪾㪀
㪢㫆㫉㪼㪸㩷㩿㪟㪸㫅㩷㪩㪅㪀 㪚㪿㫀㫅㪸㩷㩿㪪㫀㪺㪿㫌㪸㫅㪀
㪚㪿㫀㫅㪸㩷㩿㪪㫀㪺㪿㫌㪸㫅㪀
㪚㪿㫀㫅㪸㩷㩿㪪㫀㪺㪿㫌㪸㫅㪀
㪚㪿㫀㫅㪸㩷㩿㪪㫀㪺㪿㫌㪸㫅㪀
㪋㪯㪃㩷㪘㪚㪥㪔㪈㪇㪇 㪚㪿㫀㫅㪸㩷㩿㪥㪸㫅㪺㪿㫆㫅㪾㩷㪀
㪯㪯㪆㪯㪰㪃㩷㪋㪯
㪯㪯㪆㪯㪰㪃㩷㪋㪯
㪯㪯㪆㪯㪰㪃㩷㪋㪯
㪯㪯㪆㪯㪰㪃㩷㪋㪯 㪯㪯㪆㪯㪰㪃㩷㪋㪯
㪯㪯㪆㪯㪰㪃㩷㪋㪯
㪋㪯㪃㩷㪘㪚㪥㪔㪈㪇㪇 㪚㪿㫀㫅㪸
㪯㪯㪆㪯㪰㪃㩷㪋㪯
㪋㪯㪃㩷㪘㪚㪥㪔㪈㪇㪇 㪚㪿㫀㫅㪸㩷㩿㪮㫌㪿㪸㫅㪀 㪋㪯㪃㩷㪘㪚㪥㪔㪈㪇㪇 㪬㪪㪪㪩㩷㩿㪘㫄㫌㫉㩷㪩㪅㪀
㪯㪰㪃㩷㪋㪯
㪋㪯㪃㩷㪘㪚㪥㪔㪈㪇㪇 㪠㫅㪻㫀㪸㩷㩿㪮㪙㪀
㪍㪯㪃㩷㪘㪚㪥㪔㪈㪌㪇 㪚㪿㫀㫅㪸㩷㩿㪰㫌㫅㫅㪸㫅㪀㩷
㪋㪯㪃㩷㪘㪚㪥㪔㪈㪇㪇 㪡㪸㫇㪸㫅 㪋㪯㪃㩷㪘㪚㪥㪔㪈㪇㪇 㪚㪿㫀㫅㪸㩷㩿㪰㫌㫅㫅㪸㫅㪀㩷
㪋㪯㪃㩷㪘㪚㪥㪔㪈㪇㪇 㪡㪸㫇㪸㫅
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
56
㪚㫆㫉㪼㫆㫃㪼㫌㪺㫀㫊㪺㫌㫊 㪞㫅㪸㫋㪿㫆㫇㫆㪾㫆㫅 㪞㫅㪸㫋㪿㫆㫇㫆㪾㫆㫅 㪞㫅㪸㫋㪿㫆㫇㫆㪾㫆㫅 㪞㫅㪸㫋㪿㫆㫇㫆㪾㫆㫅 㪞㫅㪸㫋㪿㫆㫇㫆㪾㫆㫅 㪞㫅㪸㫋㪿㫆㫇㫆㪾㫆㫅 㪞㫅㪸㫋㪿㫆㫇㫆㪾㫆㫅 㪞㫅㪸㫋㪿㫆㫇㫆㪾㫆㫅 㪞㫆㪹㫀㫆 㪞㫆㪹㫀㫆 㪞㫆㪹㫀㫆 㪞㫆㪹㫀㫆 㪞㫆㪹㫀㫆 㪞㫆㪹㫀㫆 㪞㫆㪹㫀㫆 㪞㫆㪹㫀㫆 㪞㫆㪹㫀㫆 㪟㪼㫄㫀㪹㪸㫉㪹㫌㫊 㪟㪼㫄㫀㪹㪸㫉㪹㫌㫊 㪟㪼㫄㫀㪹㪸㫉㪹㫌㫊 㪟㪼㫄㫀㪹㪸㫉㪹㫌㫊 㪟㪼㫄㫀㪹㪸㫉㪹㫌㫊 㪟㪼㫄㫀㪹㪸㫉㪹㫌㫊 㪟㪼㫄㫀㪹㪸㫉㪹㫌㫊 㪟㪼㫄㫀㪹㪸㫉㪹㫌㫊 㪟㪼㫄㫀㪹㪸㫉㪹㫌㫊 㪟㪼㫄㫀㪹㪸㫉㪹㫌㫊 㪟㪼㫄㫀㪹㪸㫉㪹㫌㫊 㪟㪼㫄㫀㪹㪸㫉㪹㫌㫊 㪟㫌㫀㪾㫆㪹㫀㫆 㪧㪸㫉㪸㪺㪸㫅㫋㪿㫆㪹㫉㪸㫄㪸 㪧㪸㫉㪸㪺㪸㫅㫋㪿㫆㪹㫉㪸㫄㪸 㪧㪸㫉㪸㫃㪼㫌㪺㫆㪾㫆㪹㫀㫆 㪧㪸㫉㪸㫃㪼㫌㪺㫆㪾㫆㪹㫀㫆 㪧㫃㪸㫋㫐㫊㫄㪸㪺㪿㪼㫀㫃㫌㫊 㪧㫊㪼㫌㪻㫆㪾㫆㪹㫀㫆 㪧㫊㪼㫌㪻㫆㪾㫆㪹㫀㫆 㪧㫊㪼㫌㪻㫆㪾㫆㪹㫀㫆
㫊㫇㫃㪼㫅㪻㫀㪻㫌㫊 㪺㪸㪼㫉㫌㫃㪼㫊㪺㪼㫅㫊 㪺㪸㪼㫉㫌㫃㪼㫊㪺㪼㫅㫊 㪺㪸㪼㫉㫌㫃㪼㫊㪺㪼㫅㫊 㪼㫃㫆㫅㪾㪸㫋㫌㫊 㪼㫃㫆㫅㪾㪸㫋㫌㫊 㪼㫃㫆㫅㪾㪸㫋㫌㫊㩷㪼㫃㫆㫅㪾㪸㫋㫌㫊 㫀㫄㪹㪼㫉㪹㫀㫊 㫊㫋㫉㫀㪾㪸㫋㫌㫊 㪻㪼㫃㫐㪸㫄㫌㫉㪼㫀 㪾㫆㪹㫀㫆 㪾㫆㪹㫀㫆 㪾㫆㪹㫀㫆 㪾㫆㪹㫀㫆 㪾㫆㪹㫀㫆 㫂㫌㪹㪸㫅㫀㪺㫌㫊 㫊㫆㫃㪻㪸㫋㫆㫍㫀 㫋㪼㫅㫌㫀㪺㫆㫉㫇㫌㫊 㪹㪸㫉㪹㫌㫊 㪹㪸㫉㪹㫌㫊 㫃㪸㪹㪼㫆 㫃㪸㪹㪼㫆 㫃㪸㪹㪼㫆 㫃㫆㫅㪾㫀㫉㫆㫊㫋㫉㫀㫊 㫃㫆㫅㪾㫀㫉㫆㫊㫋㫉㫀㫊 㫃㫆㫅㪾㫀㫉㫆㫊㫋㫉㫀㫊 㫃㫆㫅㪾㫀㫉㫆㫊㫋㫉㫀㫊 㫄㪸㪺㫌㫃㪸㫋㫌㫊 㫄㪸㪺㫌㫃㪸㫋㫌㫊 㫄㫐㫃㫆㪻㫆㫅 㪺㪿㪼㫅㪿㫊㫀㪼㫅㪼㫅㫊㫀㫊 㪾㫌㫀㪺㪿㪼㫅㫆㫋㫀 㫌㫄㪹㫉㫀㪽㪼㫉 㫊㫋㫉㫀㪾㪸㫋㫌㫊 㫊㫋㫉㫀㪾㪸㫋㫌㫊 㪼㫏㫀㪾㫌㫌㫊 㪼㫊㫆㪺㫀㫅㫌㫊 㪼㫊㫆㪺㫀㫅㫌㫊 㫍㪸㫀㫃㫃㪸㫅㫋㫀㩷㪾㫌㫀㫃㫀㫅㪼㫅㫊㫀㫊
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㫇㪼㫉㪽㪸㫄㫀㫃㫐㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷
㪞㫆㫅㫆㫇㫉㫆㫂㫋㫆㫇㫋㪼㫉㫌㫊
㫋㪸㫌㫉㫀㪺㫌㫊
㪼㫃㫆㫅㪾㪸㫋㫌㫊㩷㪺㪸㪼㫉㫌㫃㪼㫊㪺㪼㫅㫊
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪫㪸㪹㫃㪼㩷㪍㪅㪈㪈㩷㩷㪦㫉㪻㪼㫉㩷㪚㪰㪧㪩㪠㪥㪠㪝㪦㪩㪤㪜㪪㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀
㪌㪇
㪝㪃㩷㪤
㪌㪇 㪌㪇 㪌㪇 㪌㪇
㪤 㪝㪃㩷㪤 㪝㪃㩷㪤 㪝㪃㩷㪤
㪌㪇 㪌㪇
㪝㪃㩷㪤
㪝㪃㩷㪤
㪌㪇
㪌㪇 㪌㪇
㪝㪃㩷㪤
㪝㪃㩷㪤
㪈㪋㪤㩷㪂㩷㪊㪇㪪㪤㩷㪂㩷㪍㩷㪪㪫㪆㪘 㪉㪋㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪈㪉㪪㪫
㪌㪇
㪝㪃㩷㪤
㪝㪃㩷㪤
㪈㪋㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪉㪇㪪㪫
㪌㪇
㪝㪃㩷㪤
㪈㪏㪤㩷㪂㩷㪈㪏㪪㪤㩷㪂㩷㪈㪉㪪㪫㩷㪂㩷㪉㪘
㪈㪍㪤㩷㪂㩷㪉㪏㪪㪤㩷㪂㩷㪍㪘
㪈㪍㪤㩷㪂㩷㪉㪏㩷㪪㪤㪆㪪㪫㩷㪂㩷㪍㪘
㪉㪇㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪈㪋㪘
㪈㪏㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪉㪘
㪌㪇
㪝㪃㩷㪤
㪈㪉㪤㩷㪂㩷㪉㪏㩷㪪㪤㪆㪪㪫㩷㪂㩷㪈㪇㪘 㪉㪋㪤㩷㪂㩷㪉㪋㪪㪤㩷㪂㩷㪉㪪㪫
㪈㪍㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪈㪍㪪㪫㩷㪂㩷㪋㪘
㪈㪍㪤㩷㪂㩷㪉㪏㩷㪪㪤㪆㪪㪫㩷㪂㩷㪍㪘
㪈㪋㪤㩷㪂㩷㪉㪏㪪㪤㩷㪂㩷㪏㩷㪪㪫㪆㪘 㪈㪋㪤㩷㪂㩷㪉㪏㩷㪪㪤㪆㪪㪫㩷㪂㩷㪏㪘
㪈㪏㪤㩷㪂㩷㪈㪏㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪋㪘
㪈㪍㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪈㪋㪪㪫㩷㪂㩷㪋㪘
㪈㪋㪤㩷㪂㩷㪉㪏㩷㪪㪤㪆㪪㪫㩷㪂㩷㪏㪘 㪈㪏㪤㩷㪂㩷㪉㪉㩷㪪㪤㪆㪪㪫㩷㪂㩷㪈㪇㪘
㪌㪇 㪌㪇
㪌㪇
㪌㪇
㪝㪃㩷㪤
㪌㪇
㪌㪇 㪌㪇
㪈㪍㪤㩷㪂㩷㪉㪍㩷㪪㪤㩷㪂㩷㪏㩷㪪㪫㪆㪘
㪌㪇 㪝㪃㩷㪤 㪝㪃㩷㪤
㪈㪏㪤㩷㪂㩷㪉㪍㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪉㪘
㪌㪇
㪈㪏㪤㩷㪂㩷㪉㪍㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪉㪘
㪌㪇
㪉㪋㪤㩷㪂㩷㪉㪋㪪㪤㩷㪂㩷㪉㩷㪪㪫㪆㪘 㪉㪇㪤㩷㪂㩷㪉㪏㪪㪤㩷㪂㩷㪉㩷㪪㪫㪆㪘
㪌㪇 㪌㪇 㪝㪃㩷㪤
㪊㪏㩷㪤㪆㪪㪤㩷㪂㩷㪈㪉㩷㪪㪫㪆㪘 㪉㪇㪤㩷㪂㩷㪉㪍㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪉㪘
㪌㪇 㪌㪇
㪝㪃㩷㪤
㪝㪃㩷㪤
㪉㪉㪤㩷㪂㩷㪉㪍㩷㪪㪤㪆㪪㪫㩷㪂㩷㪉㪘 㪉㪉㪤㩷㪂㩷㪉㪋㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪉㪘
㪈㪋㪤㩷㪂㩷㪊㪇㪪㪤㩷㪂㩷㪍㩷㪪㪫㪆㪘
㪉㪉㪤㩷㪂㩷㪉㪋㪪㪤㩷㪂㩷㪋㪪㪫
㪌㪇 㪌㪇
㪌㪇
㪝㪃㩷㪤 㪉㪉㪤㩷㪂㩷㪉㪉㪪㪤㩷㪂㩷㪍㩷㪪㪫㪆㪘
㪌㪇
㪝㪃㩷㪤
㪈㪋㪤㩷㪂㩷㪊㪍㩷㪪㪤㪆㪪㪫 㪈㪉㪤㩷㪂㩷㪊㪉㩷㪪㪤㪆㪪㪫㩷㪂㩷㪍㪘
㪌㪇
㪌㪇 㪌㪇
㪝㪃㩷㪤 㪝㪃㩷㪤
㪈㪉㪤㩷㪂㩷㪉㪋㪪㪤㩷㪂㩷㪈㪋㩷㪪㪫㪆㪘
㪌㪇
㪈㪋㪤㩷㪂㩷㪊㪍㩷㪪㪤㪆㪪㪫 㪈㪉㪤㩷㪂㩷㪉㪍㪪㪤㩷㪂㩷㪈㪉㩷㪪㪫㪖㪘
㪌㪇
㪝㪃㩷㪤
㪊㪍㪤㩷㪂㩷㪍㪋㩷㪪㪤㪆㪪㪫 㪈㪉㪤㩷㪂㩷㪉㪋㪪㪤㩷㪂㩷㪈㪋㩷㪪㪫㪆㪘
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪌㪇
㪈㪇㪇 㪌㪇
㪛 㪉㫅
㪝㪃㩷㪤
㪚 㪪㪼㫏
㪏㪍
㪐㪋
㪐㪋 㪏㪏
㪏㪇
㪏㪉
㪏㪏
㪐㪏
㪏㪇
㪐㪉
㪏㪍
㪏㪉
㪐㪉
㪐㪋
㪐㪋
㪐㪏 㪐㪏
㪐㪍
㪏㪏
㪐㪍
㪐㪋
㪐㪋
㪐㪍
㪏㪍
㪏㪏
㪏㪍
㪐㪏
㪐㪋
㪈㪇㪇
㪈㪇㪇
㪏㪍
㪐㪏
㪐㪇 㪈㪇㪇
㪐㪍
㪐㪋
㪐㪉
㪐㪍
㪐㪍
㪐㪉 㪐㪇
㪐㪏
㪐㪏
㪐㪏
㪐㪏 㪐㪏
㪈㪇㪇
㪈㪇㪇 㪐㪋
㪈㪇㪇
㪉㪇㪇
㪉
㪉
㪋
㪉
㪋
㪋
㪋
㪉
㪋
㪋
㪝 㪞 㪟 㪥㪝㪈 㪥㪝㪉 㪘㪾㪄 㪥㪦㪩㫊
㪊㪅㪈㪁㩷㪝㪚㪤㪃㩷㪊㪅㪊㩷㪝㪛
㪉㪅㪍㩷㪝㪛
㪉㪅㪈㪁㩷㪝㪛
㪉㪅㪉㩷㪝㪛
㪉㪅㪈㪁㩷㪝㪛
㪉㪅㪈㩷㪝㪛
㩿㪉㪅㪌㪁㩷㪝㪚㪤㪀
㪉㪅㪏㩷㪝㪛 㩿㪊㪅㪊㩷㪝㪚㪤㪀
㪉㪅㪋㪁㩷㪝㪚㪤
㪠 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪉
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇 㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪉
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇 㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇 㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇 㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇 㪘㪚㪥㪔㪌㪉
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇 㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪉
㪘㪚㪥㪔㪌㪇 㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪚㪿㫀㫅㪸㩷㩿㪞㫌㫀㫃㫀㫅㪀
㪢㫆㫉㪼㪸㩷㩿㪢㫆㪄㫊㪸㫅㪀
㪡㪸㫇㪸㫅㩷㩿㪣㪸㫂㪼㩷㪙㫀㫎㪸㪃㩷㪢㫆㪹㪼㪀
㪢㫆㫉㪼㪸 㪚㪿㫀㫅㪸㩷㩿㪞㫌㪸㫅㪾㫏㫀㪀㩷
㪚㪿㫀㫅㪸㩷㩿㪘㫄㫌㫉㪀
㪚㪿㫀㫅㪸㩷㩿㪞㫌㫀㫃㫀㫅㪀
㪚㪿㫀㫅㪸㩷㩿㪟㫌㪹㪼㫀㪀
㪢㫆㫉㪼㪸㩷㩿㪟㪸㫅㩷㪩㪅㪀 㪚㪿㫀㫅㪸㩷㩿㪞㫌㪸㫅㪾㪻㫆㫅㪾㪀㩷
㪚㪿㫀㫅㪸㩷㩿㪘㫄㫌㫉㪀
㪚㪿㫀㫅㪸㩷㩿㪮㫌㪿㪸㫅㪀
㪢㫆㫉㪼㪸㩷㩿㪞㪼㫌㫄㩷㪩㪅㪀
㪢㫆㫉㪼㪸㩷㩿㪢㫆㪄㫊㪸㫅㪀 㪢㫆㫉㪼㪸㩷㩿㪟㪸㫅㩷㪩㪅㪀
㪚㪿㫀㫅㪸㩷㩿㪞㫌㪸㫅㪾㪻㫆㫅㪾㩷㪀
㪚㪿㫀㫅㪸㩷㩿㪘㫄㫌㫉㪀
㪚㪿㫀㫅㪸㩷㩿㪞㫌㪸㫅㪾㪻㫆㫅㪾㩷㪀
㪡㪸㫇㪸㫅㩷㩿㪣㪸㫂㪼㩷㪙㫀㫎㪸㪀 㪢㫆㫉㪼㪸㩷㩿㪟㪸㫅㩷㪩㪅㪀
㪡㪸㫇㪸㫅㩷㩿㪢㫆㪹㪼㪀
㪚㪿㫀㫅㪸㩷㩿㪘㫄㫌㫉㪀
㪚㪿㫀㫅㪸㩷㩿㪘㫄㫌㫉㪀
㪩㫌㫊㫊㫀㪸㩷㩿㪭㫆㫃㪾㪸㩷㪹㪸㫊㫀㫅㪀 㪩㫌㫊㫊㫀㪸㩷㩿㪢㫌㪹㪸㫅㩷㪩㪅㪀
㪽㫆㫉㫄㪼㫉㩷㪰㫌㪾㫆㫊㫃㪸㫍㫀㪸
㪽㫆㫉㫄㪼㫉㩷㪰㫌㪾㫆㫊㫃㪸㫍㫀㪸
㪝㫉㪸㫅㪺㪼 㪩㫌㫄㪸㫅㫀㪸㩷㩿㪙㫌㪺㪿㪸㫉㪼㫊㫋㪀
㪬㫂㫉㪸㫀㫅㪼㩷㩿㪚㫉㫀㫄㪼㪸㪀
㪢㫆㫉㪼㪸㩷㩿㪢㫆㪄㫊㪸㫅㪀
㪚㪿㫀㫅㪸㩷㩿㪪㫀㪺㪿㫌㪸㫅㪀
㪡㪸㫇㪸㫅㩷㩿㪪㪿㫀㪾㪸㪀 㪡㪸㫇㪸㫅㩷㩿㪞㫀㪽㫌㪀
㪡㪸㫇㪸㫅㩷㩿㪢㫆㪹㪼㪀
㪡㪸㫇㪸㫅㩷㩿㪢㫆㪹㪼㪃㩷㪣㪸㫂㪼㩷㪙㫀㫎㪸㪀
㪡㪸㫇㪸㫅㩷㩿㪣㪸㫂㪼㩷㪙㫀㫎㪸㪀
㪋㪯㪃㩷㪘㪚㪥㪔㪈㪇㪇 㪢㫆㫉㪼㪸㩷㩿㪞㪼㫌㫄㩷㪩㪅㪀 㪘㪚㪥㪔㪌㪇 㪡㪸㫇㪸㫅㩷㩿㪣㪸㫂㪼㩷㪙㫀㫎㪸㪀
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪣㪄㪋㪊㪃㩷㪰㪄㪈㪌
㪣㪄㪎㪎
㪫㪄㪋㪃㩷㪦㪄㪈㪏㪃㩷㪦㪄㪋㪏㪃㩷㪪㪄㪈㪋㪈
㪣㪄㪎㪎 㪰㪄㪈㪌
㪮㪄 㪈 㪋
㪰㪄㪈㪌
㪣㪄㪉㪐㪃㩷㪣㪄㪋㪈㪃㩷㪩㪄㪋㪊㪃㩷㪱㪄㪉㪌
㪬㪄㪊㪊 㪟㪄㪉㪉㪃㩷㪰㪄㪈㪌
㪮㪄㪈㪋
㪣㪄㪉㪐㪃㩷㪩㪄㪋㪊㪃㩷㪚㪄㪏㪊
㪬㪄㪊㪊
㪣㪄㪎㪎 㪢㪄㪋
㪣㪄㪉㪐㪃㩷㪰㪄㪈㪌
㪮㪄㪈㪋
㪣㪄㪉㪐㪃㩷㪰㪄㪈㪌㪃㩷㪚㪄㪏㪊
㪦㪄㪈㪏 㪢㪄㪋
㪫㪄㪈㪎㪃㩷㪦㪄㪋㪏
㪮㪄 㪈 㪋
㪮㪄 㪈 㪋
㪭㪄㪏㪊 㪭㪄㪏㪊
㪭㪄㪏㪊
㪪㪄㪎㪏
㪟㪄㪉㪃㩷㪟㪄㪋 㪩㪄㪊㪋㪃㩷㪚㪄㪎㪌
㪭㪄㪏㪉
㪣㪄㪎㪎
㪣㪄㪋㪊㪃㩷㪰㪄㪈㪌
㪬㪄㪋㪇 㪦㪄㪈㪏
㪫㪄㪈㪎㪃㩷㪦㪄㪋㪏
㪫㪄㪋
㪬㪄㪋㪇
㪢㪄㪈㪇 㪫㪄㪈㪎
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
57
㪧㫊㪼㫌㪻㫆㪾㫆㪹㫀㫆 㪧㫊㪼㫌㪻㫆㫇㫌㫅㪾㫋㫌㫅㪾㫀㪸 㪧㫊㪼㫌㪻㫆㫇㫌㫅㪾㫋㫌㫅㪾㫀㪸 㪧㫊㪼㫌㪻㫆㫉㪸㫊㪹㫆㫉㪸 㪧㫊㪼㫌㪻㫆㫉㪸㫊㪹㫆㫉㪸 㪧㫊㪼㫌㪻㫆㫉㪸㫊㪹㫆㫉㪸 㪧㫊㪼㫌㪻㫆㫉㪸㫊㪹㫆㫉㪸 㪧㫊㪼㫌㪻㫆㫉㪸㫊㪹㫆㫉㪸 㪧㫊㪼㫌㪻㫆㫉㪸㫊㪹㫆㫉㪸 㪧㫊㪼㫌㪻㫆㫉㪸㫊㪹㫆㫉㪸 㪧㫊㪼㫌㪻㫆㫉㪸㫊㪹㫆㫉㪸 㪧㫊㪼㫌㪻㫆㫉㪸㫊㪹㫆㫉㪸 㪧㫌㫅㪾㫋㫌㫅㪾㫀㪸 㪧㫌㫅㪾㫋㫌㫅㪾㫀㪸 㪧㫌㫅㪾㫋㫌㫅㪾㫀㪸 㪧㫌㫅㪾㫋㫌㫅㪾㫀㪸 㪩㪿㫀㫅㫆㪾㫆㪹㫀㫆 㪩㪿㫀㫅㫆㪾㫆㪹㫀㫆 㪩㪿㫀㫅㫆㪾㫆㪹㫀㫆 㪩㫆㫄㪸㫅㫆㪾㫆㪹㫀㫆 㪩㫆㫄㪸㫅㫆㪾㫆㪹㫀㫆 㪩㫆㫄㪸㫅㫆㪾㫆㪹㫀㫆 㪩㫆㫄㪸㫅㫆㪾㫆㪹㫀㫆 㪩㫆㫄㪸㫅㫆㪾㫆㪹㫀㫆 㪩㫆㫊㫋㫉㫆㪾㫆㪹㫀㫆 㪪㪸㫉㪺㫆㪺㪿㪼㫀㫃㫀㪺㪿㫋㪿㫐㫊 㪪㪸㫉㪺㫆㪺㪿㪼㫀㫃㫀㪺㪿㫋㪿㫐㫊 㪪㪸㫉㪺㫆㪺㪿㪼㫀㫃㫀㪺㪿㫋㪿㫐㫊 㪪㪸㫉㪺㫆㪺㪿㪼㫀㫃㫀㪺㪿㫋㪿㫐㫊 㪪㪸㫉㪺㫆㪺㪿㪼㫀㫃㫀㪺㪿㫋㪿㫐㫊 㪪㪸㫉㪺㫆㪺㪿㪼㫀㫃㫀㪺㪿㫋㪿㫐㫊 㪪㪸㫉㪺㫆㪺㪿㪼㫀㫃㫀㪺㪿㫋㪿㫐㫊 㪪㪸㫉㪺㫆㪺㪿㪼㫀㫃㫀㪺㪿㫋㪿㫐㫊 㪪㪸㫉㪺㫆㪺㪿㪼㫀㫃㫀㪺㪿㫋㪿㫐㫊 㪪㪸㫉㪺㫆㪺㪿㪼㫀㫃㫀㪺㪿㫋㪿㫐㫊 㪪㪸㫉㪺㫆㪺㪿㪼㫀㫃㫀㪺㪿㫋㪿㫐㫊 㪪㪸㫉㪺㫆㪺㪿㪼㫀㫃㫀㪺㪿㫋㪿㫐㫊 㪪㪸㫌㫉㫆㪾㫆㪹㫀㫆 㪪㪸㫌㫉㫆㪾㫆㪹㫀㫆
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪚 㪪㪼㫏
㫍㪸㫀㫃㫃㪸㫅㫋㫀㩷㫍㪸㫀㫃㫃㪸㫅㫋㫀 㪝㪃㩷㪤 㫅㫀㪾㫉㪸 㪝㪃㩷㪤 㫋㪼㫅㫌㫀㪺㫆㫉㫇㫌㫊 㪤 㫇㪸㫉㫍㪸 㫇㪸㫉㫍㪸 㪝㪃㩷㪤 㫇㪸㫉㫍㪸 㫇㪸㫉㫍㪸 㪝㪃㩷㪤 㫇㪸㫉㫍㪸 㫇㪸㫉㫍㪸 㫇㪸㫉㫍㪸 㪝㪃㩷㪤 㫇㫌㫄㫀㫃㪸㩷㫇㫌㫄㫀㫃㪸 㫇㫌㫄㫀㫃㪸㩷 㫊㫌㪹㫊㫇㪅 㪝㪃㩷㪤 㪿㪼㫃㫑㫀 㪿㪼㫃㫑㫀 㪝㪃㩷㪤 㪿㪼㫃㫑㫀 㪝㪃㩷㪤 㪿㪼㫃㫑㫀 㪺㫐㫃㫀㫅㪻㫉㫀㪺㫌㫊 㪝㪃㩷㪤 㫋㫐㫇㫌㫊 㪝㪃㩷㪤 㫍㪼㫅㫋㫉㪸㫃㫀㫊 㪝㪃㩷㪤 㪹㪸㫅㪸㫋㫀㪺㫌㫊 㪞㫆㪹㫀㫆㩷㫂㪼㫊㫊㫃㪼㫉㫀㩷㪹㪸㫅㪸㫋㫀㪺㫌㫊 㫂㪼㫊㫊㫃㪼㫉㫀 㪞㫆㪹㫀㫆 㫌㫉㪸㫅㫆㫊㪺㫆㫇㫌㫊 㪞㫆㪹㫀㫆 㫌㫉㪸㫅㫆㫊㪺㫆㫇㫌㫊 㪞㫆㪹㫀㫆 㪝㪃㩷㪤 㫍㫃㪸㪻㫐㫂㫆㫍㫀 㪞㫆㪹㫀㫆㩷㪸㫃㪹㫀㫇㫀㫅㫅㪸㫋㫌㫊㩷㫍㫃㪸㪻㫐㫂㫆㫍㫀 㪸㫄㫌㫉㪼㫅㫊㫀㫊 㪹㫀㫎㪸㪼㫅㫊㫀㫊 㪺㫑㪼㫉㫊㫂㫀㫀 㪤 㫂㫀㪸㫅㪾㫊㫀㪼㫅㫊㫀㫊 㪤 㫃㪸㪺㫌㫊㫋㫉㫀㫊 㪝㪃㩷㪤 㫅㫀㪾㫉㫀㫇㫀㫅㫅㫀㫊㩷㪺㫑㪼㫉㫊㫂㫀㫀 㪝㪃㩷㪤 㫅㫀㪾㫉㫀㫇㫀㫅㫅㫀㫊㩷㫄㫆㫉㫀㫀 㪝㪃㩷㪤 㫅㫀㪾㫉㫀㫇㫀㫅㫅㫀㫊㩷㫅㫀㪾㫉㫀㫇㫀㫅㫅㫀㫊 㪝㪃㩷㪤 㫅㫀㪾㫉㫀㫇㫀㫅㫅㫀㫊㩷㫅㫀㪾㫉㫀㫇㫀㫅㫅㫀㫊 㫇㪸㫉㫍㫌㫊 㪝㪃㩷㪤 㫊㫀㫅㪼㫅㫊㫀㫊㩷㫊㫀㫅㪼㫅㫊㫀㫊 㪝㪃㩷㪤 㫍㪸㫉㫀㪼㪾㪸㫋㫌㫊㩷㫄㫀㪺㫉㫆㫆㪺㫌㫃㫌㫊 㫍㪸㫉㫀㪼㪾㪸㫋㫌㫊 㪝㪃㩷㪤 㫍㪸㫉㫀㪼㪾㪸㫋㫌㫊㩷㫍㪸㫉㫀㪼㪾㪸㫋㫌㫊 㫍㪸㫉㫀㪼㪾㪸㫋㫌㫊 㪤 㪻㪸㪹㫉㫐㫀 㪝㪃㩷㪤 㪻㫌㫄㪼㫉㫀㫃㫀 㪝㪃㩷㪤
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㫇㪼㫉㪽㪸㫄㫀㫃㫐㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷
㪫㪸㪹㫃㪼㩷㪍㪅㪈㪈㩷㩷㪦㫉㪻㪼㫉㩷㪚㪰㪧㪩㪠㪥㪠㪝㪦㪩㪤㪜㪪㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀
㪈㪏㪤㩷㪂㩷㪉㪋㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪉㪘 㪈㪉㪤㩷㪂㩷㪊㪇㪪㪤㩷㪂㩷㪏㪘 㪈㪏㪤㩷㪂㩷㪊㪉㩷㪪㪤㪆㪪㪫 㪈㪏㪤㩷㪂㩷㪉㪉㪪㪤㩷㪂㩷㪏㪪㪫㩷㪂㩷㪉㪘 㪈㪏㪤㩷㪂㩷㪉㪉㪪㪤㩷㪂㩷㪏㪪㪫㩷㪂㩷㪉㪘 㪈㪏㪤㩷㪂㩷㪉㪉㪪㪤㩷㪂㩷㪈㪇㪪㪫 㪈㪍㪤㩷㪂㩷㪉㪍㪪㪤㩷㪂㩷㪏㩷㪪㪫㪆㪘 㪈㪏㪤㩷㪂㩷㪉㪉㪪㪤㩷㪂㩷㪈㪇㪪㪫 㪈㪏㪤㩷㪂㩷㪉㪉㪪㪤㩷㪂㩷㪏㪪㪫㩷㪂㩷㪉㪘 㪈㪏㪤㩷㪂㩷㪉㪉㪪㪤㩷㪂㩷㪏㪪㪫㩷㪂㩷㪉㪘 㪈㪉㪤㩷㪂㩷㪊㪇㩷㪪㪤㪆㪪㪫㩷㪂㩷㪏㪘 㪈㪏㪤㩷㪂㩷㪊㪉㩷㪪㪤㪆㪪㪫 㪈㪏㪤㩷㪂㩷㪉㪍㪪㪤㩷㪂㩷㪍㪪㪫 㪈㪏㪤㩷㪂㩷㪉㪍㪪㪤㩷㪂㩷㪍㪪㪫
㪌㪇 㪌㪇 㪌㪇 㪌㪇 㪌㪇 㪌㪇 㪌㪇 㪌㪇 㪌㪇 㪌㪇 㪌㪇 㪌㪇 㪌㪇
㪊㪇㪤㩷㪂㩷㪈㪏㩷㪪㪤㪆㪪㪫㩷㪂㩷㪉㪘
㪌㪇
㪌㪇
㪉㪋㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪉㪘
㪌㪇
㪌㪇
㪈㪇㪇
㪈㪋㪤㩷㪂㩷㪉㪉㪪㪤㩷㪂㩷㪈㪉㪪㪫㩷㪂㩷㪉㪘 㪈㪉㪤㩷㪂㩷㪉㪋㪪㪤㩷㪂㩷㪈㪉㪪㪫㩷㪂㩷㪉㪘
㪌㪇 㪌㪇
㪉㪋㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪈㪉㪪㪫㩷㪂㩷㪋㪘
㪈㪋㪤㩷㪂㩷㪉㪉㪪㪤㩷㪂㩷㪈㪉㪪㪫㩷㪂㩷㪉㪘
㪌㪇
㪊㪇㪤㩷㪂㩷㪈㪏㪪㪤㩷㪂㩷㪉㪪㪫 㪉㪏㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪉㪘
㪈㪍㪤㩷㪂㩷㪉㪉㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪍㪘
㪌㪇
㪌㪉
㪈㪍㪤㩷㪂㩷㪉㪍㪪㪤㩷㪂㩷㪏㩷㪪㪫㪆㪘
㪌㪇
㪌㪇 㪌㪇
㪐㪏
㪈㪏㪤㩷㪂㩷㪈㪏㪪㪤㩷㪂㩷㪈㪋㩷㪪㪫㪆㪘 㪉㪇㪤㩷㪂㩷㪊㪇㩷㪪㪤㪆㪪㪫
㪌㪇 㪌㪇
㪐㪋 㪐㪋
㪐㪇
㪐㪇
㪐㪇
㪐㪉
㪐㪇
㪐㪇 㪐㪇
㪐㪉
㪐㪉
㪐㪏 㪐㪏
㪏㪏
㪐㪋
㪏㪍 㪏㪍
㪏㪍
㪏㪏
㪐㪉
㪏㪍
㪈㪇㪇 㪈㪇㪇
㪈㪇㪇
㪐㪉
㪐㪏
㪐㪏
㪈㪇㪇
㪈㪇㪇
㪐㪏 㪐㪏
㪈㪇㪇
㪐㪏
㪈㪇㪇
㪐㪏
㪐㪏 㪐㪏
㪐㪏
㪐㪋
㪈㪇㪇
㪈㪇㪇
㪈㪋㪤㩷㪂㩷㪊㪍㩷㪪㪤㪆㪪㪫
㪈㪇㪇
㪌㪇
㪐㪍
㪐㪇
㪈㪇㪇
㪈㪏㪤㩷㪂㩷㪉㪉㪪㪤㩷㪂㩷㪈㪇㩷㪪㪫㪆㪘
㪐㪍
㪈㪇㪇
㪉㪍㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪋㪪㪫
㪉㪇㪤㩷㪂㩷㪉㪍㪪㪤㩷㪂㩷㪋㪪㪫
㪐㪇
㪈㪇㪇
㪈㪇㪇
㪈㪇㪇
㪐㪏 㪈㪇㪇
㪌㪇
㪈㪏㪤㩷㪂㩷㪉㪉㪪㪤㩷㪂㩷㪈㪇㪪㪫
㪌㪇 㪌㪇 㪌㪇
㪈㪇㪇
㪏㪏
㪐㪇
㪋
㪉
㪋
㪉
㪋
㪝 㪞 㪟 㪥㪝㪈 㪥㪝㪉 㪘㪾㪄 㪥㪦㪩㫊
㪌㪇
㪈㪋㪤㩷㪂㩷㪊㪍㩷㪪㪤㪆㪪㪫 㪈㪋㪤㩷㪂㩷㪊㪍㪪㪤
㪌㪇
㪉㪇㪤㩷㪂㩷㪊㪇㩷㪪㪤㪆㪪㪫 㪈㪍㪤㩷㪂㩷㪉㪉㪪㪤㩷㪂㩷㪈㪉㩷㪪㪫㪆㪘
㪌㪇 㪌㪇 㪌㪇
㪈㪏㪤㩷㪂㩷㪉㪉㪪㪤㩷㪂㩷㪏㪪㪫㩷㪂㩷㪉㪘 㪈㪋㪤㩷㪂㩷㪊㪍㩷㪪㪤㪆㪪㪫
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪌㪇 㪌㪇
㪛 㪉㫅
㪉㪅㪏㪁㩷㪝㪚㪤㪃㩷㪉㪅㪋㩷㪝㪛
㪉㪅㪌㪃㩷㪉㪅㪏㪁㩷㪝㪛
㪉㪅㪍㩷㪝㪛
㪊㪅㪋㩷㪝㪚㪤
㪊㪅㪎㩷㪝㪚㪤
㪊㪅㪇㪁㩷㪝㪚㪤
㪉㪅㪌㩷㪝㪛
㪉㪅㪍㪁㩷㪝㪛
㪊㪅㪈㪁㩷㪝㪚㪤
㪠 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪘㪚㪥㪔㪌㪇 㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪉
㪘㪚㪥㪔㪌㪉
㪘㪚㪥㪔㪌㪉
㪘㪚㪥㪔㪌㪉
㪘㪚㪥㪔㪌㪉
㪘㪚㪥㪔㪌㪉
㪘㪚㪥㪔㪌㪉
㪘㪚㪥㪔㪌㪉 㪘㪚㪥㪔㪌㪉
㪘㪚㪥㪔㪌㪉
㪘㪚㪥㪔㪌㪉
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇 㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇 㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇 㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇 㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪉 㪘㪚㪥㪔㪌㪇
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪚㪿㫀㫅㪸㩷㩿㪮㫌㪿㪸㫅㪀 㪚㪿㫀㫅㪸㩷㩿㪮㫌㪿㪸㫅㪀
㪡㪸㫇㪸㫅㩷㩿㪦㫂㪸㫐㪸㫄㪸㪀㩷
㪡㪸㫇㪸㫅㩷㩿㪣㪸㫂㪼㩷㪙㫀㫎㪸㪀
㪚㪿㫀㫅㪸㩷㩿㪮㫌㪿㪸㫅㪀
㪚㪿㫀㫅㪸㩷㩿㪟㫌㪹㪼㫀㪀 㪚㪿㫀㫅㪸㩷㩿㪞㫌㪸㫅㪾㪻㫆㫅㪾㪀㩷
㪚㪿㫀㫅㪸㩷㩿㪟㫌㪹㪼㫀㪀
㪢㫆㫉㪼㪸㩷㩿㪢㫆㪄㫊㪸㫅㪀
㪚㪿㫀㫅㪸㩷㩿㪘㫄㫌㫉㪀
㪚㪿㫀㫅㪸㩷㩿㪞㫌㪸㫅㪾㪻㫆㫅㪾㪀㩷 㪚㪿㫀㫅㪸㩷㩿㪘㫄㫌㫉㪀
㪢㫆㫉㪼㪸㩷㩿㪞㪼㫌㫄㩷㪩㪅㪀
㪡㪸㫇㪸㫅㩷㩿㪣㪸㫂㪼㩷㪙㫀㫎㪸㪀
㪚㪿㫀㫅㪸㩷㩿㪘㫄㫌㫉㪀
㪪㫃㫆㫍㪸㫂㫀㪸 㪩㫌㫄㪸㫅㫀㪸㩷㩿㪬㫃㫀㫌㪺㩷㫍㫀㫃㫃㪸㪾㪼㪀
㪩㫌㫄㪸㫅㫀㪸㩷㩿㪙㫌㪻㪸㩷㫍㫀㫃㫃㪸㪾㪼㪀
㪚㫑㪼㪺㪿
㪩㫌㫄㪸㫅㫀㪸㩷㩿㪬㫃㫀㫌㪺㩷㫍㫀㫃㫃㪸㪾㪼㪀
㪚㪿㫀㫅㪸㩷㩿㪮㫌㪿㪸㫅㪀 㪚㪿㫀㫅㪸㩷㩿㪪㫀㪺㪿㫌㪸㫅㪀㩷
㪚㪿㫀㫅㪸㩷㩿㪮㫌㪿㪸㫅㪀
㪢㫆㫉㪼㪸
㪢㫆㫉㪼㪸㩷㩿㪢㫆㪄㫊㪸㫅㪀
㪡㪸㫇㪸㫅㩷㩿㪢㫆㪹㪼㪀 㪡㪸㫇㪸㫅㩷㩿㪣㪸㫂㪼㩷㪙㫀㫎㪸㪀
㪡㪸㫇㪸㫅
㪡㪸㫇㪸㫅㩷㩿㪘㫂㫀㫋㪸㪀
㪚㪿㫀㫅㪸㩷㩿㪘㫄㫌㫉㪀
㪚㪿㫀㫅㪸㩷㩿㪟㫌㪹㪼㫀㪀 㪚㪿㫀㫅㪸㩷㩿㪢㫌㫅㫄㫀㫅㪾㪀㩷
㪚㪿㫀㫅㪸㩷㩿㪟㫌㪹㪼㫀㪀
㪢㫆㫉㪼㪸
㪡㪸㫇㪸㫅㩷㩿㪣㪸㫂㪼㩷㪙㫀㫎㪸㪀
㪢㫆㫉㪼㪸㩷㩿㪟㪸㫅㩷㪩㪅㪀 㪡㪸㫇㪸㫅㩷㩿㪢㫆㪹㪼㪀
㪚㪿㫀㫅㪸㩷㩿㪞㫌㪸㫅㪾㪻㫆㫅㪾㪀㩷 㪢㫆㫉㪼㪸㩷㩿㪢㫌㫄㩷㪩㪅㪀
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪟㪄㪉㪉㪃㩷㪰㪄㪈㪌 㪟㪄㪉㪉㪃㩷㪰㪄㪈㪌
㪬㪄㪊㪊
㪫㪄㪋㪃㩷㪫㪄㪈㪉㪃㩷㪦㪄㪈㪏㪃㩷㪦㪄㪋㪏
㪟㪄㪉㪉㪃㩷㪰㪄㪈㪌
㪣㪄㪋㪈㪃㩷㪚㪄㪏㪊 㪟㪄㪉㪉㪃㩷㪰㪄㪈㪌
㪟㪄㪉㪉㪃㩷㪩㪄㪋㪊㪃㩷㪩㪄㪈㪇㪌㪃㩷㪱㪄㪉㪏
㪣㪄㪎㪎
㪮㪄 㪈 㪋
㪟㪄㪉㪉㪃㩷㪰㪄㪈㪌 㪮㪄 㪈 㪋
㪬㪄㪊㪊
㪢㪄㪈㪉
㪮㪄 㪈 㪋
㪩㪄㪉㪉 㪩㪄㪊㪋㪃㩷㪞㪄㪏㪌
㪩㪄㪊㪋
㪡㪄㪈㪉㪃㩷㪞㪄㪏㪌
㪩㪄㪊㪋
㪟㪄㪉㪉㪃㩷㪰㪄㪈㪌 㪣㪄㪋㪊㪃㩷㪰㪄㪈㪌
㪟㪄㪉㪉㪃㩷㪰㪄㪈㪌
㪣㪄㪈㪌
㪣㪄㪎㪎
㪫㪄㪈㪎㪃㩷㪦㪄㪋㪏 㪇㪄㪈㪏㪃㩷㪢㪄㪈㪇
㪤㪄 㪋 㪐
㪘㪄㪎㪏
㪮㪄 㪈 㪋
㪣㪄㪋㪈 㪣㪄㪊㪏
㪣㪄㪉㪐㪃㩷㪩㪄㪋㪊㪃㩷㪚㪄㪏㪊
㪣㪄㪈㪌
㪦㪄㪈㪏
㪢㪄㪌㪐 㪫㪄㪈㪎㪃㩷㪦㪄㪋㪏
㪟㪄㪉㪉㪃㩷㪰㪄㪈㪌 㪢㪄㪌㪐
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
58
㪾㫐㫄㫅㫆㪺㪿㪼㫀㫃㫌㫊 㪸㫉㪾㪼㫅㫋㪸㫋㫌㫊 㪹㫀㫎㪸㪼 㪺㪿㪸㫅㫂㪸㪼㫅㫊㫀㫊 㪺㪿㪸㫅㫂㪸㪼㫅㫊㫀㫊㩷㪹㫀㫎㪸㪼 㪺㪿㪸㫅㫂㪸㪼㫅㫊㫀㫊㩷 㫊㫌㪹㫊㫇㪅 㪾㫉㪸㪺㫀㫃㫀㫊㩷㪾㫉㪸㪺㫀㫃㫀㫊 㪾㫉㪸㪺㫀㫃㫀㫊㩷㪾㫉㪸㪺㫀㫃㫀㫊 㪾㫉㪸㪺㫀㫃㫀㫊㩷㫄㪸㫁㫀㫄㪸㪼 㫁㪸㫇㫆㫅㫀㪺㫌㫊㩷㫁㪸㫇㫆㫅㫀㪺㫌㫊 㫅㫀㫋㪼㫅㫊
㪚㫀㫉㫉㪿㫀㫅㫌㫊 㪚㫀㫉㫉㪿㫀㫅㫌㫊 㪚㫀㫉㫉㪿㫀㫅㫌㫊 㪚㫀㫉㫉㪿㫀㫅㫌㫊 㪚㫀㫉㫉㪿㫀㫅㫌㫊 㪚㫀㫉㫉㪿㫀㫅㫌㫊 㪚㫀㫉㫉㪿㫀㫅㫌㫊 㪚㫀㫉㫉㪿㫀㫅㫌㫊 㪚㫀㫉㫉㪿㫀㫅㫌㫊 㪚㫉㫆㫊㫊㫆㪺㪿㪼㫀㫃㫌㫊 㪚㫉㫆㫊㫊㫆㪺㪿㪼㫀㫃㫌㫊 㪚㫉㫆㫊㫊㫆㪺㪿㪼㫀㫃㫌㫊 㪛㫀㫊㪺㫆㪾㫆㪹㫀㫆 㪞㪸㫉㫉㪸 㪞㪸㫉㫉㪸 㪞㪸㫉㫉㪸 㪞㪸㫉㫉㪸
㩷㩷㪣㪸㪹㪼㫆㫅㫀㫅㪸㪼
㪘㫉㫀㫊㫋㫀㪺㪿㫋㪿㫐㫊 㪘㫉㫀㫊㫋㫀㪺㪿㫋㪿㫐㫊 㪘㫉㫀㫊㫋㫀㪺㪿㫋㪿㫐㫊 㪘㫉㫀㫊㫋㫀㪺㪿㫋㪿㫐㫊 㪟㫐㫇㫆㫇㪿㫋㪿㪸㫃㫄㫀㪺㪿㫋㪿㫐㫊 㪟㫐㫇㫆㫇㪿㫋㪿㪸㫃㫄㫀㪺㪿㫋㪿㫐㫊 㪟㫐㫇㫆㫇㪿㫋㪿㪸㫃㫄㫀㪺㪿㫋㪿㫐㫊 㪟㫐㫇㫆㫇㪿㫋㪿㪸㫃㫄㫀㪺㪿㫋㪿㫐㫊 㪟㫐㫇㫆㫇㪿㫋㪿㪸㫃㫄㫀㪺㪿㫋㪿㫐㫊
㫁㫌㫃㫃㫀㪼㫅㫀 㫄㫆㫃㫀㫋㫆㫉㪼㫃㫃㪸 㫄㫆㫃㫀㫋㫆㫉㪼㫃㫃㪸 㫄㫉㫀㪾㪸㫃㪸 㫄㫉㫀㪾㪸㫃㪸 㫄㫉㫀㪾㪸㫃㪸 㫄㫉㫀㪾㪸㫃㪸 㫉㪼㪹㪸 㫉㪼㪹㪸 㫃㪸㫋㫀㫌㫊㩷㫃㪸㫋㫀㫌㫊 㫃㪸㫋㫀㫌㫊㩷㫃㪸㫋㫀㫌㫊 㫃㪸㫋㫀㫌㫊㩷㫇㫌㫅㫁㪸㪹㪼㫅㫊㫀㫊 㫋㪼㫋㫉㪸㪹㪸㫉㪹㪸㫋㫌㫊 㪺㪸㫄㪹㫆㪻㪾㫀㪾㪼㫅㫊㫀㫊 㪻㪼㫄㪹㪼㪼㫅㫊㫀㫊 㪾㫆㫋㫐㫃㪸㩷㪾㫆㫋㫐㫃㪸 㪾㫆㫋㫐㫃㪸㩷㪾㫆㫋㫐㫃㪸
㫅㫆㪹㫀㫃㫀㫊 㫅㫆㪹㫀㫃㫀㫊 㫅㫆㪹㫀㫃㫀㫊 㫅㫆㪹㫀㫃㫀㫊 㫄㫆㫃㫀㫋㫉㫀㫏 㫄㫆㫃㫀㫋㫉㫀㫏 㫄㫆㫃㫀㫋㫉㫀㫏 㫄㫆㫃㫀㫋㫉㫀㫏 㫄㫆㫃㫀㫋㫉㫀㫏
㩷㩷㪟㫐㫇㫆㫇㪿㫋㪿㪸㫃㫄㫀㪺㪿㫋㪿㫐㫀㫅㪸㪼
㪪㪸㫌㫉㫆㪾㫆㪹㫀㫆 㪪㫈㫌㪸㫃㫀㪻㫌㫊 㪪㫈㫌㪸㫃㫀㪻㫌㫊 㪪㫈㫌㪸㫃㫀㪻㫌㫊 㪪㫈㫌㪸㫃㫀㪻㫌㫊 㪪㫈㫌㪸㫃㫀㪻㫌㫊 㪪㫈㫌㪸㫃㫀㪻㫌㫊 㪪㫈㫌㪸㫃㫀㪻㫌㫊 㪪㫈㫌㪸㫃㫀㪻㫌㫊 㪪㫈㫌㪸㫃㫀㪻㫌㫊 㪪㫈㫌㪸㫃㫀㪻㫌㫊
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㫇㪼㫉㪽㪸㫄㫀㫃㫐㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷
㫋㪸㪼㫅㫀㪸㫋㪸
㪚㫀㫉㫉㪿㫀㫅㪸
㪚㫀㫉㫉㪿㫀㫅㪸
㫄㫆㫉㫀㫋㫉㫀㫏
㪟㫐㫇㫆㫇㪿㫋㪿㪸㫃㫄㫀㪺㪿㫋㪿㫐㫊
㪞㫅㪸㫋㪿㫆㫇㫆㪾㫆㫅㩷㫊㫀㪿㫌㪼㫅㫊㫀㫊
㪾㫉㪸㪺㫀㫃㫀㫊
㪌㪇 㪌㪇
㪝㪃㩷㪤 㪝㪃㩷㪤
㪌㪇 㪌㪇
㪝㪃㩷㪤 㪝
㪌㪇 㪌㪇
㪝㪃㩷㪤
㪌㪇 㪌㪇
㪌㪇
㪝
㪝㪃㩷㪤
㪈㪋㪤㩷㪂㩷㪉㪍㪪㪤㩷㪂㩷㪈㪇㪘
㪈㪋㪤㩷㪂㩷㪈㪇㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪈㪍㪘
㪏㪤㩷㪂㩷㪈㪏㩷㪪㪤㪆㪪㪫㩷㪂㩷㪉㪋㪘 㪈㪋㪤㩷㪂㩷㪈㪏㪪㪤㩷㪂㩷㪈㪏㪘
㪈㪇㪤㩷㪂㩷㪈㪏㪪㪤㩷㪂㩷㪈㪉㪪㪫㩷㪂㩷㪈㪇㪘
㪏㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪈㪉㪪㪫㩷㪂㩷㪈㪏㪘 㪈㪉㪤㩷㪂㩷㪊㪍㪘
㪌㪇 㪋㪏
㪝
㪈㪏㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪋㪘 㪈㪉㪤㩷㪂㩷㪉㪏㪪㪤㩷㪂㩷㪈㪇㪘
㪋㪏 㪌㪇
㪤 㪝
㪍㪤㩷㪂㩷㪏㪪㪤㩷㪂㩷㪈㪋㪪㪫㩷㪂㩷㪉㪉㪘
㪈㪉㪤㩷㪂㩷㪈㪏㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪈㪋㪘
㪌㪇 㪌㪇
㪏㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪈㪋㪪㪫㩷㪂㩷㪉㪉㪘
㪌㪇
㪈㪇㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪈㪏㪘 㪋㪤㩷㪂㩷㪈㪏㪪㪤㩷㪂㩷㪉㪏㪪㪫
㪌㪇 㪌㪇 㪝㪃㩷㪤
㪈㪍㪤㩷㪂㩷㪉㪋㪪㪤㩷㪂㩷㪈㪇㪪㪫
㪌㪇
㪝㪃㩷㪤
㪉㪇㪤㩷㪂㩷㪉㪍㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪉㪘
㪌㪇
㪉㪍㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪍㪘
㪉㪇㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪈㪇㪘
㪝
㪌㪇
㪋㪏
㪝㪃㩷㪤
㪈㪏㪤㩷㪂㩷㪉㪉㪪㪤㩷㪂㩷㪏㪪㪫 㪈㪏㪤㩷㪂㩷㪉㪉㪪㪤㩷㪂㩷㪏㪪㪫
㪈㪋㪤㩷㪂㩷㪉㪋㪪㪤㩷㪂㩷㪈㪇㪘
㪋㪏 㪋㪏 㪋㪏
㪉㪋㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪏㪪㪫
㪝㪃㩷㪤 㪝㪃㩷㪤
㪈㪏㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪈㪇㪪㪫
㪋㪏
㪈㪏㪤㩷㪂㩷㪉㪉㪪㪤㩷㪂㩷㪏㪪㪫 㪈㪋㪤㩷㪂㩷㪉㪋㪪㪤㩷㪂㩷㪈㪇㩷㪪㪫㪆㪘
㪉㪍㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪉㪪㪫
㪉㪇㪤㩷㪂㩷㪊㪇㩷㪪㪤㪆㪪㪫 㪉㪉㪤㩷㪂㩷㪉㪋㪪㪤㩷㪂㩷㪋㪪㪫
㪈㪋㪤㩷㪂㩷㪉㪏㪪㪤㩷㪂㩷㪏㩷㪪㪫㪆㪘
㪉㪇㪤㩷㪂㩷㪊㪇㩷㪪㪤㪆㪪㪫
㪈㪍㪤㩷㪂㩷㪊㪋㪪㪤
㪉㪇㪤㩷㪂㩷㪊㪇㩷㪪㪤㪆㪪㪫 㪉㪇㪤㩷㪂㩷㪊㪇㩷㪪㪤㪆㪪㪫
㪋㪏
㪋㪏 㪋㪏
㪋㪏
㪌㪇
㪝㪃㩷㪤
㪝㪃㩷㪤
㪌㪇
㪝㪃㩷㪤
㪌㪇
㪈㪍㪤㩷㪂㩷㪊㪋㪪㪤 㪉㪉㪤㩷㪂㩷㪉㪋㪪㪤㩷㪂㩷㪋㪪㪫
㪌㪇 㪌㪇
㪝㪃㩷㪤
㪉㪉㪤㩷㪂㩷㪉㪍㪪㪤㩷㪂㩷㪉㪪㪫
㪈㪏㪤㩷㪂㩷㪉㪋㪪㪤㩷㪂㩷㪏㪪㪫
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪌㪇
㪞㫅㪸㫋㪿㫆㫇㫆㪾㫆㫅
㪌㪇
㪛 㪉㫅
㪝㪃㩷㪤
㪝㪃㩷㪤
㪚 㪪㪼㫏
㪞㫅㪸㫋㪿㫆㫇㫆㪾㫆㫅
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪫㪸㪹㫃㪼㩷㪍㪅㪈㪈㩷㩷㪦㫉㪻㪼㫉㩷㪚㪰㪧㪩㪠㪥㪠㪝㪦㪩㪤㪜㪪㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀
㪐㪇
㪎㪋
㪏㪉
㪎㪏
㪍㪇
㪎㪇
㪏㪍 㪐㪇
㪍㪋
㪏㪇
㪍㪋
㪎㪉 㪎㪉
㪐㪇
㪐㪍
㪐㪇
㪏㪇
㪏㪏 㪏㪏
㪏㪍
㪏㪏
㪏㪍
㪏㪏 㪏㪍
㪐㪋
㪐㪍
㪐㪉
㪈㪇㪇
㪐㪍
㪈㪇㪇
㪐㪏
㪐㪉
㪐㪇
㪏㪋
㪎㪍 㪏㪉
㪐㪇
㪏㪉
㪐㪉 㪐㪇
㪎㪏
㪏㪍
㪎㪏
㪏㪉 㪈㪇㪇
㪈㪇㪇
㪐㪏
㪐㪋
㪏㪍
㪐㪍 㪐㪍
㪏㪍
㪐㪍
㪐㪍
㪐㪍
㪐㪍
㪈㪇㪇 㪈㪇㪇
㪈㪇㪇
㪈㪇㪇
㪈㪇㪇 㪈㪇㪇
㪈㪇㪇
㪈㪇㪇
㪈㪇㪇
㪈㪇㪇
㪉
㪉
㪋
㪉
㪍
㪉
㪉
㪉 㪉
㪉
㪝 㪞 㪟 㪥㪝㪈 㪥㪝㪉 㪘㪾㪄 㪥㪦㪩㫊
㪉㪅㪉㩷㪙㪝㪘
㪈㪅㪏㪁㪃㩷㪉㪅㪇㩷㪝㪛
㩿㪉㪅㪋㪁㩷㪝㪚㪤㪀㪃㩷㪉㪅㪇㩷㪝㪛
㪈㪅㪏㪁㩷㪝㪛 㩿㪉㪅㪊㪁㩷㪝㪚㪤㪀㪃㩷㪉㪅㪈㩷㪝㪛
㩿㪉㪅㪌㩷㪝㪛㪀
㪠 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇 㪘㪚㪥㪔㪌㪉
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇 㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇 㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪋㪏 㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏 㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪌㪇 㪘㪚㪥㪔㪌㪉
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇 㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪉
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪟㪄㪉㪉㪃㩷㪰㪄㪈㪌
㪚㪿㫀㫅㪸㩷㩿㪞㫌㪸㫅㪾㪻㫆㫅㪾㪀㩷
㪠㫅㪻㫀㪸㩷㩿㪫㪸㫄㫀㫃㫅㪸㪻㫌㪀
㪠㫅㪻㫀㪸㩷㩿㪡㪸㫄㫄㫌㪀
㩿㪘㫊㫀㪸㪀 㪜㫋㪿㫀㫆㫇㫀㪸
㪚㪿㫀㫅㪸㩷㩿㪞㫌㪸㫅㪾㪻㫆㫅㪾㪀㩷
㪠㫅㪻㫀㪸
㪠㫅㪻㫀㪸㩷㩿㪡㩷㩽㩷㪢㪀
㪠㫅㪻㫀㪸 㪠㫅㪻㫀㪸㩷㩿㪘㫊㫊㪸㫄㪀
㪠㫅㪻㫀㪸㩷㩿㪟㪸㫉㫐㪸㫅㪸㪀
㪠㫅㪻㫀㪸㩷㩿㫅㪼㪸㫉㩷㪣㫌㪺㫂㫅㫆㫎㪀
㪠㫅㪻㫀㪸㩷㩿㪟㪸㫉㫐㪸㫅㪸㪀
㪫㪿㪸㫀㫃㪸㫅㪻㩷㩿㪘㫐㫌㫋㪿㪸㫐㪸㪀 㪠㫅㪻㫀㪸
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
㪤㪄 㪈 㪉
㪤㪄 㪉 㪎
㪩㪄㪈㪇㪌㪃㩷㪣㪄㪋㪈㪃㩷㪚㪄㪏㪊 㪱㪄㪉㪍
㪱㪄㪉㪃㩷㪱㪄㪏㪃㩷㪝㪄㪌
㪣㪄㪍㪇
㪙㪄㪌㪋
㪩㪄㪈㪇㪌㪃㩷㪰㪄㪈㪌㪃㩷㪚㪄㪏㪊 㪱㪄㪉㪃㩷㪱㪄㪏㪃㩷㪝㪄㪌
㪣㪄㪌㪐㪃㩷㪩㪄㪋㪊
㪬㪄㪋㪇 㪣㪄㪉㪐㪃㩷㪰㪄㪈㪌
㪣㪄㪎㪎
㪬㪄㪋㪇㪃㩷㪪㪄㪈㪋㪈
㪢㪄㪈㪋
㪬㪄㪋㪇 㪬㪄㪋㪇
㪮㪄 㪈 㪋
㪫㪄㪈㪎
㪢㪄㪉㪐㪃㩷㪰㪄㪈㪌
㪢㪄㪋㪉
㪢㪄㪊㪏
㪪㪄㪈㪋㪈㪃㩷㪟㪄㪈㪊 㪢㪄㪈㪇㪎
㪞㪄㪍㪐㪃㩷㪩㪄㪋㪊㪃㩷㪰㪄㪈㪌
㪣㪄㪈
㪫㪄㪌㪉
㪤㪄 㪉 㪎 㪢㪄㪋㪍㪃㩷㪚㪄㪈㪇㪏
㪩㪄㪌㪌
㪥㪄㪋
㪩㪄㪌㪌
㪤㪄 㪈 㪉 㪣㪄㪉
㪞㪄㪍㪐㪃㩷㪩㪄㪋㪊㪃㩷㪩㪄㪈㪇㪌㪃㩷㪰㪄㪈㪌
㪚㪿㫀㫅㪸㩷㩿㪞㫌㪸㫅㪾㫊㫀㪃㩷㪞㫌㪸㫅㪾㪻㫆㫅㪾㪀 㪱㪄㪈㪍
㪫㪿㪸㫀㫃㪸㫅㪻㩷㩿㪬㫋㪿㪸㫀㩷㪫㪿㪸㫅㫀㪀
㪠㫅㪻㫀㪸㩷㩿㪮㪙㪀
㪚㪿㫀㫅㪸㩷㩿㪮㫌㪿㪸㫅㪀 㪚㪿㫀㫅㪸㩷㩿㪮㫌㪿㪸㫅㪀
㪚㪿㫀㫅㪸
㪚㪿㫀㫅㪸㩷㩿㪙㪼㫀㫁㫀㫅㪾㪀
㪟㫌㫅㪾㪸㫉㫐
㪚㪿㫀㫅㪸㩷㩿㪮㫌㪿㪸㫅㪀 㪚㪿㫀㫅㪸
㪚㪿㫀㫅㪸㩷㩿㪙㪼㫀㫁㫀㫅㪾㪀
㪡㪸㫇㪸㫅㩷㩿㪣㪸㫂㪼㩷㪙㫀㫎㪸㪀 㪚㪿㫀㫅㪸㩷㩿㪟㫌㪹㪼㫀㪀
㪢㫆㫉㪼㪸㩷㩿㪢㫆㪄㫊㪸㫅㪀
㪡㪸㫇㪸㫅㩷㩿㪪㪿㫀㪾㪸㪃㩷㪦㫂㪸㫐㪸㫄㪸㪀㩷
㪡㪸㫇㪸㫅㩷㩿㪣㪸㫂㪼㩷㪙㫀㫎㪸㪀
㪡㪸㫇㪸㫅㩷㩿㪣㪸㫂㪼㩷㪙㫀㫎㪸㪀 㪡㪸㫇㪸㫅㩷㩿㪟㫐㫆㪾㫆㪃㩷㪦㫂㪸㫐㪸㫄㪸㪀
㪚㪿㫀㫅㪸㩷㩿㪘㫄㫌㫉㪀
㪡㪸㫇㪸㫅㩷㩿㪰㫆㪻㫆㩷㪩㪅㪀㩷
㪚㪿㫀㫅㪸㩷㩿㪮㫌㪿㪸㫅㪀
㪚㪿㫀㫅㪸㩷㩿㪮㫌㪿㪸㫅㪀
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
59
㪞㪸㫉㫉㪸 㪞㪸㫉㫉㪸 㪞㪸㫉㫉㪸 㪞㪸㫉㫉㪸 㪞㪸㫉㫉㪸 㪞㪸㫉㫉㪸 㪞㪸㫉㫉㪸 㪞㪸㫉㫉㪸 㪞㪸㫉㫉㪸 㪞㪸㫉㫉㪸 㪞㪸㫉㫉㪸 㪞㪸㫉㫉㪸 㪞㪸㫉㫉㪸 㪞㪸㫉㫉㪸 㪞㪸㫉㫉㪸 㪞㪸㫉㫉㪸 㪞㪸㫉㫉㪸 㪣㪸㪹㪼㫆 㪣㪸㪹㪼㫆 㪣㪸㪹㪼㫆 㪣㪸㪹㪼㫆 㪣㪸㪹㪼㫆 㪣㪸㪹㪼㫆 㪣㪸㪹㪼㫆 㪣㪸㪹㪼㫆 㪣㪸㪹㪼㫆 㪣㪸㪹㪼㫆 㪣㪸㪹㪼㫆 㪣㪸㪹㪼㫆 㪣㪸㪹㪼㫆 㪣㪸㪹㪼㫆 㪣㪸㪹㪼㫆 㪣㪸㪹㪼㫆 㪣㪸㪹㪼㫆 㪣㪸㪹㪼㫆 㪣㪸㪹㪼㫆 㪣㪸㪹㪼㫆 㪣㪸㪹㪼㫆 㪣㪸㪹㪼㫆
㪾㫆㫋㫐㫃㪸㩷㪾㫆㫋㫐㫃㪸 㫂㪼㫄㫇㫀 㫃㪸㫄㫋㪸 㫃㪸㫄㫋㪸 㫃㫀㫊㫊㫆㫉㪿㫐㫅㪺㪿㫌㫊 㫄㪸㫂㫀㪼㫅㫊㫀㫊 㫄㫌㫃㫃㫐㪸 㫆㫉㫀㪼㫅㫋㪸㫃㫀㫊 㫆㫉㫅㪸㫋㪸 㫀㫄㪹㪼㫉㪹㪸 㫀㫄㪹㪼㫉㪹㪸 㫈㫌㪸㪻㫉㫀㫄㪸㪺㫌㫃㪸㫋㪸 㫉㫌㪽㪸㩷㫆㪹㫋㫌㫊㪸 㫉㫌㪽㪸㩷㫉㫌㪽㪸 㫉㫌㪽㪸㩷 㫊㫌㫉㪼㫅㪻㫉㪸㫅㪸㫋㪿㪸㫅㫀㫀 㫍㪸㫉㫀㪸㪹㫀㫃㫀㫊 㪸㫃㫃㫌㪸㫌㪻㫀 㪹㪸㫋㪸 㪹㪸㫋㪸 㪹㪼㪿㫉㫀 㪺㪸㫃㪹㪸㫊㫌 㪺㪸㫃㪹㪸㫊㫌 㪺㪸㫃㪹㪸㫊㫌 㪺㪸㪼㫉㫌㫃㪼㫌㫊 㪺㫆㫌㪹㫀㪼 㪻㪼㫉㫆 㪻㪼㫉㫆 㪻㫀㫇㫃㫆㫊㫋㫆㫄㫌㫊 㪻㫌㫊㫊㫌㫄㫀㪼㫉㫀 㪾㫆㫅㫀㫌㫊 㫇㪸㫅㪾㫌㫊㫀㪸 㫇㪸㫉㫍㫌㫊 㫇㪸㫉㫍㫌㫊 㫉㫆㪿㫀㫋㪸 㫉㫆㪿㫀㫋㪸 㫉㫆㪿㫀㫋㪸 㫉㫆㪿㫀㫋㪸 㫉㫆㪿㫀㫋㪸
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㫇㪼㫉㪽㪸㫄㫀㫃㫐㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷
㫆㪹㫊㪺㫌㫉㫌㫊
㪺㪼㫉㫌㫃㪸㪼㫌㫊
㫇㫀㫅㪾㫀㩷㫇㫀㫅㪾㫀 㫇㫀㫅㪾㫀㩷㫇㫀㫅㪾㫀
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪫㪸㪹㫃㪼㩷㪍㪅㪈㪈㩷㩷㪦㫉㪻㪼㫉㩷㪚㪰㪧㪩㪠㪥㪠㪝㪦㪩㪤㪜㪪㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇 㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪋㪏
㪠㫅㪻㫀㪸㩷㩿㪘㫃㫃㪸㪿㪸㪹㪸㪻㪀
㪮㪚㪅㩷㪘㪽㫉㫀㪺㪸
㪠㫅㪻㫀㪸㩷㩿㪡㩷㩽㩷㪢㪀
㪠㫅㪻㫀㪸㩷㩿㪢㪼㫉㪸㫃㪸㪀 㪠㫅㪻㫀㪸
㪠㫅㪻㫀㪸㩷㩿㪡㪸㫄㫄㫌㪀
㪠㫅㪻㫀㪸㩷㩿㪬㪅㪧㪅㪀
㪠㫅㪻㫀㪸㩷㩿㪘㫊㫊㪸㫄㪀
㪠㫅㪻㫀㪸㩷㩿㪟㪸㫉㫐㪸㫅㪸㪀 㪤㪸㫃㫀㪃㩷㪮㪅㩷㪘㪽㫉㫀㪺㪸
㪠㫅㪻㫀㪸㩷㩿㪟㪸㫉㫐㪸㫅㪸㪀
㪠㫅㪻㫀㪸㩷㩿㪮㪙㪀
㪈㪇㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪉㪇㪘 㪏㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪉㪋㪘 㪈㪇㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪏㪪㪫㩷㪂㩷㪈㪏㪘
㪌㪇 㪌㪇 㪌㪇
㪎㪋
㪎㪇
㪏㪇
㪏㪉
㪎㪍
㪏㪇 㪋
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪠㫅㪻㫀㪸㩷㩿㫅㪼㪸㫉㩷㪣㫌㪺㫂㫅㫆㫎㪀
㪠㫅㪻㫀㪸㩷㩿㪟㪸㫉㫐㪸㫅㪸㪀
㪠㫅㪻㫀㪸
㪫㪿㪸㫀㫃㪸㫅㪻㩷㩿㪘㫐㫌㫋㪿㪸㫐㪸㪀 㪠㫅㪻㫀㪸㩷㩿㪘㫃㫃㪸㪿㪸㪹㪸㪻㪀
㪉 㪉
㪘㪚㪥㪔㪌㪇 㪘㪚㪥㪔㪌㪇
㪠㫅㪻㫀㪸㩷㩿㪮㪙㪀 㪥㪅㪜㪅㩷㪫㪿㪸㫀㫃㪸㫅㪻
㪈㪋㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪏㪪㪫㩷㪂㩷㪈㪉㪘 㪈㪇㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪉㪇㪘
㪏㪏 㪏㪇
㪏㪋
㪋 㪉
㪉
㪉
㪘㪚㪥㪔㪌㪇 㪘㪚㪥㪔㪌㪇
㪌㪇 㪌㪇
㪏㪇 㪎㪋
㪍㪏
㪏㪋
㪎㪋
㪐㪇
㪎㪉
㪏㪇
㪏㪍
㪏㪋
㪐㪇 㪎㪉
㪮㪚㪅㩷㪘㪽㫉㫀㪺㪸
㪍㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪈㪍㪪㪫㩷㪂㩷㪈㪍㪘
㪎㪋 㪌㪋
㪍㪍
㪎㪍
㪏㪏
㪍㪍
㪍㪋
㪎㪇
㪎㪋 㪎㪇
㪘㪚㪥㪔㪌㪇
㪌㪇
㪌㪇
㪌㪇
㪈㪉㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪈㪍㪘 㪌㪋㪘
㪌㪇 㪌㪋 㪤
㪈㪇㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪏㪪㪫㩷㪂㩷㪉㪍㪘
㪌㪇
㪝
㪈㪉㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪉㪇㩷㪪㪫㪆㪘
㪌㪇 㪋㪏
㪤 㪝㪃㩷㪤
㪉㪍㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪈㪇㪘
㪏㪤㩷㪂㩷㪉㪉㩷㪪㪤㪆㪪㪫㩷㪂㩷㪉㪇㪘 㪈㪉㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪉㪋㪘
㪌㪇 㪋㪏 㪌㪇
㪝㪃㩷㪤
㪈㪇㪤㩷㪂㩷㪈㪇㪪㪤㩷㪂㩷㪈㪋㪪㪫㩷㪂㩷㪈㪍㪘
㪌㪇 㪍㪤㩷㪂㩷㪏㪪㪤㩷㪂㩷㪉㪉㪪㪫㩷㪂㩷㪈㪋㪘
㪍㪤㩷㪂㩷㪈㪏㪪㪤㩷㪂㩷㪈㪍㪪㪫㩷㪂㩷㪈㪇㪘 㪈㪉㪤㩷㪂㩷㪏㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪉㪏㪘
㪌㪇 㪌㪇 㪌㪇
㪝㪃㩷㪤
㪉
㪤㫀㪻㪻㫃㪼㩷㪜㪸㫊㫋 㪠㫅㪻㫀㪸㩷㩿㪘㫃㫃㪸㪿㪸㪹㪸㪻㪀
㪏㪏
㪊㪯
㪘㪚㪥㪔㪌㪉
㪫㫌㫉㫂㫐 㪠㫅㪻㫀㪸㩷㩿㪮㪅㩷㪞㪿㪸㫋㫊㪀
㪌㪇
㪏㪇
㪐㪉
㪜㫋㪿㫀㫆㫇㫀㪸
㪚㪿㫀㫅㪸㩷㩿㪰㫌㫅㫅㪸㫅㪀 㪚㪿㫀㫅㪸㩷㩿㪪㫀㪺㪿㫌㪸㫅㪀
㪮㪅㪚㪅㩷㪘㪽㫉㫀㪺㪸
㪚㪿㫀㫅㪸㩷㩿㪞㫌㪸㫅㪾㪻㫆㫅㪾㪀㩷
㪠㫅㪻㫀㪸㩷㩿㪢㪼㫉㪸㫃㪸㪀
㪮㪅㩷㪘㪽㫉㫀㪺㪸 㪈㪏㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪏㪪㪫㩷㪂㩷㪈㪉㪘
㪏㪍 㪏㪋
㪘㪚㪥㪔㪌㪉
㪘㪚㪥㪔㪌㪇 㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪠㫅㪻㫀㪸㩷㩿㪘㪅㪧㪅㪀 㪜㫋㪿㫀㫆㫇㫀㪸
㪠㫅㪻㫀㪸㩷㩿㪙㫀㪿㪸㫉㪀
㪠㫅㪻㫀㪸㩷㩿㪙㫀㪿㪸㫉㪀
㪌㪇
㪎㪋
㪋㪋 㪌㪇
㪉㪉㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪉㪘 㪈㪋㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪏㪪㪫㩷㪂㩷㪏㪘
㪉
㪘㪚㪥㪔㪌㪇 㪘㪚㪥㪔㪌㪉
㪘㪚㪥㪔㪌㪇
㪱㪮㪆㪱㪱
㪠㫅㪻㫀㪸㩷㩿㪘㪅㪧㪅㪀
㪠㫅㪻㫀㪸㩷㩿㪘㪅㪧㪅㪀 㩷
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪤㫀㪻㪻㫃㪼㩷㪜㪸㫊㫋
㪏㪏
㪐㪍
㪐㪉
㪐㪉
㪏㪏 㪏㪋
㪏㪍
㪏㪏
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪋㪋㪄㪌㪉
㪏㪏
㪎㪏 㪏㪏
㪠 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪤㫀㪻㪻㫃㪼㩷㪜㪸㫊㫋
㪈㪍㪤㩷㪂㩷㪉㪉㪪㪤㩷㪂㩷㪈㪉㪘
㪌㪇
㪏㪏 㪏㪋
㪎㪏
㪏㪉
㪏㪉 㪏㪋
㪎㪋
㪏㪍
㪎㪏
㪎㪇
㪝 㪞 㪟 㪥㪝㪈 㪥㪝㪉 㪘㪾㪄 㪥㪦㪩㫊
㪋㪋㪄㪌㪉
㪈㪏㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪈㪉㩷㪪㪫㪆㪘 㪈㪋㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪈㪉㪪㪫㩷㪂㩷㪋㪘
㪌㪇 㪌㪇
㪌㪇
㪈㪍㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪈㪋㪪㪫㩷㪂㩷㪏㪘
㪈㪏㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪏㪘
㪌㪇
㪌㪇
㪝㪃㩷㪤
㪝㪃㩷㪤
㪝㪃㩷㪤
㪝㪃㩷㪤
㪍㪤㩷㪂㩷㪈㪏㪪㪤㩷㪂㩷㪈㪉㪪㪫㩷㪂㩷㪈㪋㪘 㪈㪍㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪈㪉㪘 㪈㪋㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪈㪍㪘
㪌㪇
㪤
㪈㪉㪤㩷㪂㩷㪉㪋㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪈㪉㪘
㪌㪇 㪌㪇
㪌㪇
㪈㪉㪤㩷㪂㩷㪏㪪㪤㩷㪂㩷㪏㪪㪫㩷㪂㩷㪉㪉㪘 㪈㪋㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪈㪉㪘
㪌㪇
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪌㪇
㪛 㪉㫅
㪝㪃㩷㪤
㪚 㪪㪼㫏
㪥㪄㪋
㪩㪄㪍㪎
㪣㪄㪉
㪤㪄 㪈 㪉 㪡㪄㪈㪇
㪞㪄㪏㪋
㪞㪄㪏㪋
㪫㪄㪌㪉
㪥㪄㪌㪍 㪣㪄㪈
㪢㪄㪊㪏
㪩㪄㪎㪊
㪢㪄㪋㪊
㪩㪄㪌㪌 㪧㪄㪈㪏
㪩㪄㪎㪌㪃㩷㪩㪄㪈㪇㪈
㪤㪄 㪉 㪎
㪡㪄㪈㪇
㪤㪄 㪉 㪎 㪘㪄㪏㪋
㪡㪄㪈㪇
㪞㪄㪏㪋
㪛㪄㪉㪎
㪪㪄㪈㪎㪈 㪥㪄㪎㪉
㪛㪄㪉㪎
㪛㪄㪉㪎
㪢㪄㪈㪇㪎
㪱㪄㪌 㪣㪄㪋㪊㪃㩷㪰㪄㪈㪌
㪞㪄㪏㪋
㪞㪄㪍㪐㪃㩷㪩㪄㪋㪊㪃㩷㪰㪄㪈㪌
㪥㪄㪎㪊
㪪㪄㪈㪎㪈 㪢㪄㪈㪇㪎
㪢㪄㪊㪉
㪢㪄㪋㪈
㪪㪄㪈㪎㪈
㪪㪄㪈㪎㪈
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
60
㫉㫆㪿㫀㫋㪸 㫉㫆㫊㪼㫆㫇㫌㫅㪺㫋㪸㫋㫌㫊 㫉㫆㫌㪸㫅㪼㫋㫀 㫊㪼㫅㪼㪾㪸㫃㪼㫅㫊㫀㫊 㫃㫀㫅㪼㪸㫋㫌㫊 㪺㪿㫉㫐㫊㫆㫇㪿㪼㫂㪸㪻㫀㫆㫅 㫃㫆㫅㪾㫀㪻㫆㫉㫊㪸㫃㫀㫊 㪿㪸㫊㫊㪼㫃㫋㫀 㫍㫀㫋㫋㪸㫋㫌㫊 㫎㪸㪸㫅㪻㪼㫉㫊㫀 㪸㫊㫊㫀㫄㫀㫃㫀㫊 㫅㫆㫋㪸㪹㫀㫃㫀㫊 㫇㫉㫆㪺㪿㫀㫃㫌㫊 㫇㫉㫆㪺㪿㫀㫃㫌㫊 㪻㪼㪺㫆㫉㪸㫋㫌㫊㩷㪻㪼㪺㫆㫉㪸㫋㫌㫊 㪻㪼㪺㫆㫉㪸㫋㫌㫊㩷㫋㫌㫅㪾㫋㫀㫅㪾 㫉㪼㫅㪻㪸㪿㫃㫀㩷㫉㪼㫅㪻㪸㪿㫃㫀
㪘㪹㫉㪸㫄㫀㫊 㪘㪹㫉㪸㫄㫀㫊 㪘㪹㫉㪸㫄㫀㫊 㪘㪹㫉㪸㫄㫀㫊 㪘㪺㪸㫅㫋㪿㫆㪹㫉㪸㫄㪸 㪘㪺㪿㫆㫅㪻㫉㫆㫊㫋㫆㫄㪸 㪘㪺㪿㫆㫅㪻㫉㫆㫊㫋㫆㫄㪸 㪘㫃㪹㫌㫉㫅㫆㫀㪻㪼㫊 㪘㫃㪹㫌㫉㫅㫌㫊 㪘㫃㪹㫌㫉㫅㫌㫊 㪘㫃㪹㫌㫉㫅㫌㫊 㪘㫃㪹㫌㫉㫅㫌㫊 㪘㫃㪹㫌㫉㫅㫌㫊 㪘㫃㪹㫌㫉㫅㫌㫊 㪘㫃㪹㫌㫉㫅㫌㫊 㪘㫅㪸㪼㪺㫐㫇㫉㫀㫊 㪘㫊㫇㫀㫌㫊 㪘㫊㫇㫀㫌㫊 㪙㪸㫃㫃㪼㫉㫌㫊 㪙㪸㫃㫃㪼㫉㫌㫊
㪹㫉㪸㫄㪸 㪹㫉㪸㫄㪸 㪹㫉㪸㫄㪸 㪹㫉㪸㫄㪸 㫄㪸㫉㫄㫀㪻 㪸㫉㪺㪸㫊㫀㫀 㫆㫃㫀㪾㫆㫃㪼㫇㫀㫊 㪹㫀㫇㫌㫅㪺㫋㪸㫋㫌㫊 㪸㫃㪹㫀㪻㫌㫊 㪸㫉㪹㫆㫉㪼㫃㫃㪸 㪸㫃㪹㫌㫉㫅㫌㫊 㪸㫃㪹㫌㫉㫅㫌㫊 㪸㫃㪹㫌㫉㫅㫌㫊 㪸㫃㪹㫌㫉㫅㫌㫊 㪽㫀㫃㫀㫇㫇㫀㫀 㪿㫀㫊㫇㪸㫅㫀㪺㪸 㪸㫊㫇㫀㫌㫊 㪸㫊㫇㫀㫌㫊 㪹㪸㫃㫃㪼㫉㫌㫊 㪹㪸㫃㫃㪼㫉㫌㫊
㩷㩷㪣㪼㫌㪺㫀㫊㪺㫀㫅㪸㪼 㩷㩷㩷㩷㪜㫌㫉㪸㫊㫀㪸㫅㩷㪣㪼㫌㪺㫀㫊㪺㫀㫅㪸㪼
㪣㪸㪹㪼㫆 㪣㪸㪹㪼㫆 㪣㪸㪹㪼㫆 㪣㪸㪹㪼㫆 㪣㪸㪹㫀㫆㪹㪸㫉㪹㫌㫊 㪤㫆㫉㫌㫃㫀㫌㫊 㪦㫊㫋㪼㫆㪺㪿㫀㫃㫀㪺㪿㫋㪿㫐㫊 㪦㫊㫋㪼㫆㪺㪿㫀㫃㫌㫊 㪦㫊㫋㪼㫆㪺㪿㫀㫃㫌㫊 㪦㫊㫋㪼㫆㪺㪿㫀㫃㫌㫊 㪧㪸㫉㪸㫊㫀㫅㫀㫃㪸㪹㪼㫆 㪪㪼㫄㫀㫃㪸㪹㪼㫆 㪪㪼㫄㫀㫃㪸㪹㪼㫆 㪪㪼㫄㫀㫃㪸㪹㪼㫆 㪪㫀㫅㫀㫃㪸㪹㪼㫆 㪪㫀㫅㫀㫃㪸㪹㪼㫆 㪪㫀㫅㫀㫃㪸㪹㪼㫆
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㫇㪼㫉㪽㪸㫄㫀㫃㫐㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷
㪘㪹㫉㪸㫄㫀㫊 㪘㪹㫉㪸㫄㫀㫊
㪸㫃㪹㫀㪻㫌㫊㩷㪸㫉㪹㫆㫉㪼㫃㫃㪸 㪸㫃㪹㫌㫉㫅㫌㫊㩷㪸㫃㪹㫆㫉㪼㫃㫃㪸
㪩㫌㫋㫀㫃㫌㫊
㪻㪼㪺㫆㫉㫌㫊㩷㪻㪼㪺㫆㫉㫌㫊
㪣㪸㪹㪼㫆
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪫㪸㪹㫃㪼㩷㪍㪅㪈㪈㩷㩷㪦㫉㪻㪼㫉㩷㪚㪰㪧㪩㪠㪥㪠㪝㪦㪩㪤㪜㪪㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀
㪈㪋㪤㩷㪂㩷㪉㪏㩷㪪㪤㪆㪪㪫㩷㪂㩷㪏㪘
㪋㪉㩷㪤㪆㪪㪤㩷㪂㩷㪈㪇㩷㪪㪫㪆㪘 㪌㪇
㪌㪉
㪝㪃㩷㪤
㪈㪇㪤㩷㪂㩷㪊㪍㩷㪪㪤㪆㪪㪫㩷㪂㩷㪋㪘 㪈㪋㪤㩷㪂㩷㪉㪏㪪㪤㩷㪂㩷㪏㩷㪪㪫㪆㪘 㪈㪍㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪏㪘
㪌㪇 㪌㪇
㪝㪃㩷㪤 㪝㪃㩷㪤
㪈㪍㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪈㪏㪘
㪊㪉㩷㪤㪆㪪㪤㩷㪂㩷㪈㪏㩷㪪㪫㪆㪘
㪈㪋㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪈㪋㪪㪫㩷㪂㩷㪏㪘
㪈㪍㪤㩷㪂㩷㪈㪇㪪㪤㩷㪂㩷㪈㪍㪪㪫㩷㪂㩷㪏㪘 㪈㪍㪤㩷㪂㩷㪉㪇㩷㪪㪤㪆㪪㪫㩷㪂㩷㪈㪋㪘
㪌㪇
㪌㪇
㪝㪃㩷㪤
㪝㪃㩷㪤
㪌㪇 㪌㪇
㪝㪃㩷㪤 㪝㪃㩷㪤
㪌㪇 㪌㪇
㪝
㪈㪉㪤㩷㪂㩷㪉㪌㪪㪤㩷㪂㩷㪈㪊㩷㪪㪫㪆㪘
㪈㪍㪤㩷㪂㩷㪉㪍㪪㪤㩷㪂㩷㪏㩷㪪㪫㪆㪘
㪌㪇 㪌㪇
㪊㪏㩷㪤㪆㪪㪤㩷㪂㩷㪈㪉㩷㪪㪫㪆㪘
㪌㪇
㪝㪃㩷㪤
㪈㪍㪤㩷㪂㩷㪊㪇㩷㪪㪤㪆㪪㪫㩷㪂㩷㪋㪘 㪈㪉㪤㩷㪂㩷㪊㪉㪪㪤㩷㪂㩷㪍㩷㪪㪫㪆㪘
㪈㪍㪤㩷㪂㩷㪉㪍㪪㪤㩷㪂㩷㪏㩷㪪㪫㪆㪘
㪌㪇 㪌㪇
㪝㪃㩷㪤
㪌㪇
㪌㪇 㪝㪃㩷㪤
㪈㪍㪤㩷㪂㩷㪈㪏㪪㪤㩷㪂㩷㪈㪍㪘 㪈㪉㪤㩷㪂㩷㪈㪏㩷㪪㪤㪆㪪㪫㩷㪂㩷㪉㪇㪘
㪌㪇
㪝㪃㩷㪤
㪈㪍㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪈㪉㪪㪫㩷㪂㩷㪏㪘 㪊㪇㩷㪤㪆㪪㪤㩷㪂㩷㪉㪉㩷㪪㪫㪆㪘
㪈㪇㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪈㪏㪪㪫㩷㪂㩷㪏㪘
㪌㪇 㪌㪉
㪌㪇
㪝㪃㩷㪤
㪈㪇㪤㩷㪂㩷㪈㪏㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪈㪉㪘 㪈㪉㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪈㪉㪘
㪈㪍㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪈㪋㪪㪫
㪤
㪌㪇 㪌㪇
㪌㪇
㪝 㪝㪃㩷㪤 㪤
㪈㪍㪤㩷㪂㩷㪈㪏㪪㪤㩷㪂㩷㪈㪋㪪㪫㩷㪂㩷㪉㪘
㪏㪤㩷㪂㩷㪈㪇㪪㪤㩷㪂㩷㪈㪉㪪㪫㩷㪂㩷㪉㪇㪘
㪝㪃㩷㪤 㪌㪇
㪈㪏㪤㩷㪂㩷㪉㪋㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪋㪘 㪈㪍㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪈㪏㪪㪫㩷㪂㩷㪋㪘
㪌㪇 㪌㪇 㪌㪇
㪈㪍㪤㩷㪂㩷㪊㪇㪪㪤㩷㪂㩷㪋㪪㪫
㪌㪇
㪝
㪊㪇㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪍㪪㪫
㪌㪇
㪝㪃㩷㪤
㪈㪋㩷㪤㪆㪪㪤㩷㪂㩷㪈㪏㪪㪫㩷㪂㩷㪈㪏㪘 㪉㪋㪤㩷㪂㩷㪉㪍㪪㪤㩷㪂㩷㪉㪉㪪㪫㩷㪂㩷㪉㪏㪘
㪏㪍
㪐㪋
㪐㪉
㪏㪉
㪏㪉
㪎㪏
㪎㪍
㪏㪎
㪐㪉
㪏㪏
㪐㪋
㪐㪉
㪏㪋
㪏㪇 㪏㪉
㪎㪋
㪎㪏 㪎㪏
㪏㪍
㪏㪋
㪍㪏
㪐㪉 㪎㪏
㪐㪍
㪐㪋
㪍㪋 㪈㪌㪇
㪏㪇
㪐㪉
㪐㪉
㪐㪍
㪐㪉
㪐㪉 㪏㪍
㪐㪍
㪏㪇
㪏㪋
㪐㪉
㪐㪉
㪏㪏 㪏㪏
㪈㪇㪇
㪐㪏
㪏㪇
㪐㪍 㪐㪍
㪈㪇㪇
㪈㪇㪇
㪏㪉 㪈㪎㪉
㪏㪇 㪉
㪉㪅㪏㩷㪝㪛㪃㩷㪉㪅㪉㩷㪝㪠㪘㪃㩷㪉㪅㪋㩷㪙㪝㪘
㪉
㪉
㪋
㪋
㪉
㪎
㪉
㩿㪉㪅㪊㩷㪝㪚㪤㪀
㪉㪅㪌㩷㪝㪚㪤 㩿㪉㪅㪌㩷㪝㪚㪤㪀
㪊㪅㪈㩷㪝㪚㪤
㩿㪉㪅㪍㩷㪝㪚㪤㪀 㪉㪅㪎㩷㪝㪛
㪉㪅㪏㩷㪝㪚㪤
㪉㪅㪌㩷㪝㪛
㪉㪅㪎㩷㪝㪚㪤
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪉
㪘㪚㪥㪔㪌㪇 㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪇㪄㪉㩷㪙
㪘㪚㪥㪔㪌㪇 㪇㪄㪉㩷㪙
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇 㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇 㪘㪚㪥㪔㪌㪉
㪘㪚㪥㪔㪌㪉
㪘㪚㪥㪔㪌㪇 㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪉
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇 㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪩㫌㫊㫊㫀㪸
㪩㫌㫊㫊㫀㪸
㪪㫎㪼㪻㪼㫅
㪧㫆㫉㫋㫌㪾㪸㫃 㪛㪸㫅㫌㪹㪼㩷㪩㪅㪃㩷㪛㫆㫅㩷㪩㪅
㪫㫌㫉㫂㪼㫐
㪙㫆㫊㫅㫀㪸㪄㪟㪼㫉㫑㪼㪾㫆㫍㫀㫅㪸
㪞㪼㫉㫄㪸㫅㫐
㪠㫋㪸㫃㫐 㪝㫉㪸㫅㪺㪼
㩿㪜㫌㫉㫆㫇㪼㪀
㪠㫋㪸㫃㫐
㪙㫆㫊㫅㫀㪸㪄㪟㪼㫉㫑㪼㪾㫆㫍㫀㫅㪸
㪧㫆㫉㫋㫌㪾㪸㫃 㪧㫆㫉㫋㫌㪾㪸㫃
㪫㫌㫉㫂㪼㫐㩷㩿㪛㪸㫄㩷㪣㪸㫂㪼㪀
㪝㫉㪸㫅㪺㪼
㪧㫆㫃㪸㫅㪻
㪩㫌㫊㫊㫀㪸 㪪㫎㪼㪻㪼㫅
㪚㪿㫀㫅㪸㩷㩿㪪㫀㪺㪿㫌㪸㫅㪀
㪚㪿㫀㫅㪸㩷㩿㪞㫌㪸㫅㪾㪻㫆㫅㪾㪀㩷 㪚㪿㫀㫅㪸㩷㩿㪟㫌㫅㪸㫅㪀㩷
㪚㪿㫀㫅㪸㩷㩿㪰㫌㫅㫅㪸㫅㪀
㪚㪿㫀㫅㪸㩷㩿㪪㫀㪺㪿㫌㪸㫅㪀
㪚㪿㫀㫅㪸㩷㩿㪞㫌㪸㫅㪾㪻㫆㫅㪾㪀㩷
㪫㪿㪸㫀㫃㪸㫅㪻㩷㩿㪢㪸㫅㪺㪿㪸㫅㪸㩷㪙㫌㫉㫀㪀 㪚㪿㫀㫅㪸㩷㩿㪞㫌㪸㫅㪾㪻㫆㫅㪾㪀㩷
㪫㪿㪸㫀㫃㪸㫅㪻㩷㩿㪘㫐㫌㫋㪿㪸㫐㪸㪀
㪫㪿㪸㫀㫃㪸㫅㪻㩷㩿㪘㫐㫌㫋㪿㪸㫐㪸㪀
㪘㪚㪥㪔㪌㪇 㩿㪘㫊㫀㪸㪀 㪋㪯㪃㩷㪘㪚㪥㪔㪈㪇㪇 㪠㫅㪻㫀㪸㩷㩿㪮㪅㩷㪞㪿㪸㫋㫊㪀
㪘㪚㪥㪔㪌㪇
㪫㪿㪸㫀㫃㪸㫅㪻㩷㩿㪘㫐㫌㫋㪿㪸㫐㪸㪀
㪉㪇㪤㩷㪂㩷㪈㪇㪪㪤㩷㪂㩷㪉㪇㪘
㪚㪿㫀㫅㪸㩷㩿㪞㫌㪸㫅㪾㪻㫆㫅㪾㪀㩷 㪤㪸㫃㫀㪃㩷㪮㪅㩷㪘㪽㫉㫀㪺㪸
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪌㪇
㪘㪚㪥㪔㪌㪇
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪤㪸㫃㫀㪃㩷㪮㪅㩷㪘㪽㫉㫀㪺㪸
㪏㪏
㪠 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪞㫌㫀㫅㪼㪸
㪎㪍
㪝 㪞 㪟 㪥㪝㪈 㪥㪝㪉 㪘㪾㪄 㪥㪦㪩㫊
㪌㪇
㪈㪇㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪈㪉㪪㪫㩷㪂㩷㪈㪉㪘
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪌㪇
㪌㪇 㪌㪇
㪛 㪉㫅
㪌㪇 㪈㪇㪇
㪝㪃㩷㪤
㪚 㪪㪼㫏
㪭㪄㪎㪉
㪘㪄㪈㪈㪏㪃㩷㪞㪄㪏㪌
㪥㪄㪌㪇
㪚㪄㪍㪐㪃㩷㪚㪄㪎㪌 㪩㪄㪈㪍㪃㩷㪞㪄㪏㪌
㪞㪄 㪏 㪇
㪪㪄㪏㪉
㪪㪄㪈㪍㪋㪃㩷㪣㪄㪏㪉
㪚㪄㪊㪋㪃㩷㪞㪄㪏㪌 㪟㪄㪊㪃㩷㪟㪄㪋㪃㩷㪟㪄㪌
㪝㪄㪊㪇
㪙㪄㪊㪍
㪪㪄㪏㪉
㪚㪄㪍㪐㪃㩷㪚㪄㪎㪌 㪧㪄㪎㪍
㪞㪄㪎㪐
㪟㪄㪉㪃㩷㪟㪄㪋
㪡㪄㪉
㪘㪄㪈㪈㪏㪃㩷㪭㪄㪏㪍 㪥㪄㪌㪇
㪣㪄㪋㪊㪃㩷㪰㪄㪈㪌
㪞㪄㪍㪐㪃㩷㪰㪄㪈㪌 㪱㪄㪈㪍
㪮㪄 㪈 㪉
㪣㪄㪋㪊㪃㩷㪰㪄㪈㪌
㪞㪄㪍㪐㪃㩷㪰㪄㪈㪌
㪤㪄 㪈 㪉 㪞㪄㪍㪐㪃㩷㪰㪄㪈㪌
㪤㪄 㪈 㪇
㪤㪄 㪈 㪇
㪤㪄㪐㪈㪃㩷㪟㪄㪈㪊㪃㩷㪟㪄㪋㪈 㪥㪄㪌㪌
㪤㪄 㪈 㪇
㪧㪄㪈㪏
㪞㪄㪏㪋
㪞㪄㪍㪐㪃㩷㪩㪄㪋㪊㪃㩷㪰㪄㪈㪌 㪧㪄㪈㪏
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
61
㪙㪸㫃㫃㪼㫉㫌㫊 㪙㪸㫃㫃㪼㫉㫌㫊 㪙㫃㫀㪺㪺㪸 㪙㫃㫀㪺㪺㪸 㪚㪿㪸㫃㪺㪸㫃㪹㫌㫉㫅㫌㫊 㪚㪿㪸㫃㪺㪸㫃㪹㫌㫉㫅㫌㫊 㪚㪿㫆㫅㪻㫉㫆㫊㫋㫆㫄㪸 㪚㪿㫆㫅㪻㫉㫆㫊㫋㫆㫄㪸 㪚㪿㫆㫅㪻㫉㫆㫊㫋㫆㫄㪸 㪚㪿㫆㫅㪻㫉㫆㫊㫋㫆㫄㪸 㪚㪿㫆㫅㪻㫉㫆㫊㫋㫆㫄㪸 㪛㪼㫃㫄㫀㫅㫀㪺㪿㫋㪿㫐㫊 㪛㪼㫃㫄㫀㫅㫀㪺㪿㫋㪿㫐㫊 㪜㫃㫆㫇㫀㪺㪿㫋㪿㫐㫊 㪜㫌㫇㪸㫃㫃㪸㫊㪼㫃㫃㪸 㪠㪹㪼㫉㫆㪺㪿㫆㫅㪻㫉㫆㫊㫋㫆㫄㪸 㪠㪹㪼㫉㫆㪺㪿㫆㫅㪻㫉㫆㫊㫋㫆㫄㪸 㪠㪹㪼㫉㫆㪺㪿㫆㫅㪻㫉㫆㫊㫋㫆㫄㪸 㪠㪹㪼㫉㫆㪺㪿㫆㫅㪻㫉㫆㫊㫋㫆㫄㪸 㪠㪹㪼㫉㫆㪺㫐㫇㫉㫀㫊 㪠㪹㪼㫉㫆㪺㫐㫇㫉㫀㫊 㪠㪹㪼㫉㫆㪺㫐㫇㫉㫀㫊 㪠㪹㪼㫉㫆㪺㫐㫇㫉㫀㫊 㪠㪹㪼㫉㫆㪺㫐㫇㫉㫀㫊 㪠㪹㪼㫉㫆㪺㫐㫇㫉㫀㫊 㪠㪹㪼㫉㫆㪺㫐㫇㫉㫀㫊 㪠㪹㪼㫉㫆㪺㫐㫇㫉㫀㫊 㪠㪹㪼㫉㫆㪺㫐㫇㫉㫀㫊 㪣㪼㫌㪺㪸㫊㫇㫀㫌㫊 㪣㪼㫌㪺㪸㫊㫇㫀㫌㫊 㪣㪼㫌㪺㪸㫊㫇㫀㫌㫊 㪣㪼㫌㪺㫀㫊㪺㫌㫊 㪣㪼㫌㪺㫀㫊㪺㫌㫊 㪣㪼㫌㪺㫀㫊㪺㫌㫊 㪣㪼㫌㪺㫀㫊㪺㫌㫊 㪣㪼㫌㪺㫀㫊㪺㫌㫊 㪣㪼㫌㪺㫀㫊㪺㫌㫊 㪣㪼㫌㪺㫀㫊㪺㫌㫊 㪣㪼㫌㪺㫀㫊㪺㫌㫊
㪹㪸㫃㫃㪼㫉㫌㫊 㫊㪸㫇㪸 㪹㫁㫆㪼㫉㫂㫅㪸 㪹㫁㫆㪼㫉㫂㫅㪸 㫄㫆㫊㫊㫌㫃㪼㫅㫊㫀㫊 㫄㫆㫊㫊㫌㫃㪼㫅㫊㫀㫊 㫂㫅㪼㫉㫀 㫅㪸㫊㫌㫊 㫅㪸㫊㫌㫊 㫇㪿㫆㫏㫀㫅㫌㫊 㫊㫆㪼㫋㫋㪸 㪸㪻㫊㫇㪼㫉㫊㫌㫊 㪾㪿㪼㫋㪸㫃㪻㫀㫀 㪹㪸㫄㪹㫌㫊㪸 㫇㪼㫉㪼㫅㫌㫉㫌㫊 㪸㫃㫄㪸㪺㪸㫀 㫃㪼㫄㫄㫀㫅㪾㫀㫀 㫃㫌㫊㫀㫋㪸㫅㫀㪺㫌㫄 㫃㫌㫊㫀㫋㪸㫅㫀㪺㫌㫄 㪸㫃㪹㫌㫉㫅㫆㫀㪻㪼㫊 㪸㫃㪹㫌㫉㫅㫆㫀㪻㪼㫊 㪸㫃㪹㫌㫉㫅㫆㫀㪻㪼㫊 㪸㫃㪹㫌㫉㫅㫆㫀㪻㪼㫊 㪸㫃㪹㫌㫉㫅㫆㫀㪻㪼㫊 㪸㫃㪹㫌㫉㫅㫆㫀㪻㪼㫊 㫇㪸㫃㪸㪺㫀㫆㫊㫀 㫇㪸㫃㪸㪺㫀㫆㫊㫀 㫇㪸㫃㪸㪺㫀㫆㫊㫀 㪻㪼㫃㫀㫅㪼㪸㫋㫌㫊 㪻㪼㫃㫀㫅㪼㪸㫋㫌㫊 㪻㪼㫃㫀㫅㪼㪸㫋㫌㫊 㪹㪼㫉㪾㫀 㫀㪻㫌㫊 㫀㪻㫌㫊 㫃㪼㫌㪺㫀㫊㪺㫌㫊 㫃㪼㫌㪺㫀㫊㪺㫌㫊 㫃㪼㫌㪺㫀㫊㪺㫌㫊 㫃㪼㫌㪺㫀㫊㪺㫌㫊㩷㪹㪸㫀㪺㪸㫃㪼㫅㫊㫀㫊 㫊㪺㪿㫄㫀㪻㫋㫀
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㫇㪼㫉㪽㪸㫄㫀㫃㫐㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷
㫃㪼㫌㪺㫀㫊㪺㫌㫊㩷㫂㫀㫉㪾㫀㫊㫆㫉㫌㫄
㪩㫌㫋㫀㫃㫌㫊 㪩㫌㫋㫀㫃㫌㫊 㪫㫉㫆㫇㫀㪻㫆㫇㪿㫆㫏㫀㫅㪼㫃㫃㫌㫊 㪫㫉㫆㫇㫀㪻㫆㫇㪿㫆㫏㫀㫅㪼㫃㫃㫌㫊 㪫㫉㫆㫇㫀㪻㫆㫇㪿㫆㫏㫀㫅㪼㫃㫃㫌㫊 㪫㫉㫆㫇㫀㪻㫆㫇㪿㫆㫏㫀㫅㪼㫃㫃㫌㫊
㪚㪿㫆㫅㪻㫉㫆㫊㫋㫆㫄㪸 㪚㪿㫆㫅㪻㫉㫆㫊㫋㫆㫄㪸
㪧㪸㫉㪸㫇㪿㫆㫏㫀㫅㫌㫊 㪧㪸㫉㪸㫇㪿㫆㫏㫀㫅㫌㫊㩷㫇㫊㫋㫉㫆㫊㫊㫀㫀
㪘㪹㫉㪸㫄㫀㫊 㪘㪹㫉㪸㫄㫀㫊
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪫㪸㪹㫃㪼㩷㪍㪅㪈㪈㩷㩷㪦㫉㪻㪼㫉㩷㪚㪰㪧㪩㪠㪥㪠㪝㪦㪩㪤㪜㪪㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀
㪊㪇㩷㪤㪆㪪㪤㩷㪂㩷㪉㪇㩷㪪㪫㪆㪘 㪊㪏㩷㪤㪆㪪㪤㩷㪂㩷㪈㪉㪘 㪈㪌㪤㩷㪂㩷㪈㪌㪪㪤㩷㪂㩷㪈㪉㪪㪫㩷㪂㩷㪏㪘 㪊㪍㩷㪤㪆㪪㪤㩷㪂㩷㪈㪋㩷㪪㪫㪆㪘㩷
㪌㪇 㪌㪇 㪌㪇 㪌㪇
㪌㪇
㪈㪉㪤㩷㪂㩷㪉㪋㪪㪤㩷㪂㩷㪏㪪㪫㩷㪂㩷㪍㪘 㪈㪏㪤㩷㪂㩷㪉㪉㪪㪤㩷㪂㩷㪈㪇㪘 㪈㪍㪤㩷㪂㩷㪉㪋㪪㪤㩷㪂㩷㪈㪇㪘
㪌㪇 㪌㪇 㪌㪇
㪈㪍㪤㩷㪂㩷㪉㪉㩷㪪㪤㪆㪪㪫㩷㪂㩷㪈㪉㪘
㪌㪇 㪝㪃㩷㪤
㪉㪇㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪏㪪㪫㩷㪂㩷㪉㪘
㪌㪇
㪝㪃㩷㪤
㪊㪉㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪉㪘 㪈㪇㪤㩷㪂㩷㪉㪍㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪏㪘
㪌㪇 㪌㪇
㪈㪏㪤㩷㪂㩷㪉㪉㪪㪤㩷㪂㩷㪈㪇㪘
㪌㪇 㪝㪃㩷㪤 㪝㪃㩷㪤
㪈㪍㪤㩷㪂㩷㪉㪍㩷㪪㪤㪆㪪㪫㩷㪂㩷㪏㪘
㪌㪇
㪈㪍㪤㩷㪂㩷㪉㪍㪪㪤㩷㪂㩷㪏㩷㪪㪫㪆㪘
㪌㪇
㪝㪃㩷㪤
㪐㪉
㪐㪇
㪏㪍 㪐㪇
㪐㪇
㪏㪏 㪏㪍
㪐㪇
㪐㪋
㪏㪏
㪐㪏
㪐㪏 㪐㪉
㪐㪉
㪈㪄㪋
㪉
㪉 㪉㪅㪍㩷㪝㪚㪤㪃㩷㪊㪅㪇㩷㪙㪝㪘
㪉㪅㪍㩷㪝㪛
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇 㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇 㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪋㪯 㪘㪚㪥㪔㪌㪇
㪝㪃㩷㪤
㪪㫇㪸㫀㫅
㪊㪯
㪎㪌 㪈㪇㪇 㪌㪇
㪢㫐㫉㪾㫐㫑㫊㫋㪸㫅
㪧㫆㫃㪸㫅㪻 㪢㫐㫉㪾㫐㫑㫊㫋㪸㫅
㪝㫉㪸㫅㪺㪼
㪙㫆㫊㫅㫀㪸㪄㪟㪼㫉㫑㪼㪾㫆㫍㫀㫅㪸
㪙㫆㫊㫅㫀㪸㪄㪟㪼㫉㫑㪼㪾㫆㫍㫀㫅㪸 㪧㫆㫃㪸㫅㪻
㪢㫐㫉㪾㫐㫑㫊㫋㪸㫅
㪜㫃㪹㪼㩷㪩㪅㪃㩷㪛㪸㫅㫌㪹㪼㩷㪩㪅
㪜㫃㪹㪼㩷㪩㪅
㪪㫇㪸㫀㫅 㪩㫌㫊㫊㫀㪸
㪧㫆㫉㫋㫌㪾㪸㫃 㪪㫇㪸㫀㫅
㪋㪯
㪧㫆㫉㫋㫌㪾㪸㫃 㪧㫆㫉㫋㫌㪾㪸㫃
㪧㫆㫉㫋㫌㪾㪸㫃
㪧㫆㫉㫋㫌㪾㪸㫃
㪧㫆㫉㫋㫌㪾㪸㫃
㪧㫆㫉㫋㫌㪾㪸㫃 㪧㫆㫉㫋㫌㪾㪸㫃
㪠㪹㪼㫉㫀㪸
㪧㫆㫉㫋㫌㪾㪸㫃
㪧㫆㫃㪸㫅㪻
㪚㪿㫀㫅㪸㩷㩿㪟㫌㪹㪼㫀㪀
㪚㫉㫆㪸㫋㫀㪸㪃㩷㪙㫆㫊㫅㫀㪸 㪽㫆㫉㫄㪼㫉㩷㪰㫌㪾㫆㫊㫃㪸㫍㫀㪸
㪠㫋㪸㫃㫐
㪽㫆㫉㫄㪼㫉㩷㪰㫌㪾㫆㫊㫃㪸㫍㫀㪸
㩿㪜㫌㫉㫆㫇㪼㪀
㪽㫆㫉㫄㪼㫉㩷㪰㫌㪾㫆㫊㫃㪸㫍㫀㪸 㪙㫆㫊㫅㫀㪸
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇 㪊㪯
㪉㪯㪃㩷㪊㪯
㪊㪯
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇 㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇 㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇 㪘㪚㪥㪔㪌㪇
㪫㫌㫉㫂㪼㫐
㪫㫌㫉㫂㪼㫐
㩿㪜㫌㫉㫆㫇㪼㪀
㪩㫌㫊㫊㫀㪸 㪜㫌㫉㫆㫇㪼
㪪㫎㪼㪻㪼㫅
㪌㪇
㪉
㪉㪅㪋㩷㪝㪚㪤
㪉㪅㪏㩷㪝㪚㪤 㪉㪅㪐㩷㪝㪚㪤
㪉㪅㪏㩷㪝㪚㪤
㪉㪅㪍㩷㪝㪚㪤
㩿㪉㪅㪏㩷㪝㪚㪤㪀
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇 㪘㪚㪥㪔㪌㪇
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪈㪇㪇
㪐㪋
㪈㪄㪋
㪉
㪉
㪋
㪋
㪉㪅㪉㩷㪝㪚㪤 㩿㪉㪅㪌㩷㪝㪚㪤㪀
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪝㪃㩷㪤
㪈㪋㪤㩷㪂㩷㪊㪇㩷㪪㪤㪆㪪㪫㩷㪂㩷㪍㪘
㪈㪋㪋
㪐㪍
㪐㪋 㪐㪋
㪐㪋
㪐㪋
㪐㪋
㪏㪏
㪐㪋
㪐㪉
㪏㪏
㪏㪏
㪏㪏
㪐㪉 㪐㪇
㪠 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪌㪇 㪎㪌
㪌㪇㪃㩷㪎㪌
㪈㪉㪤㩷㪂㩷㪊㪋㩷㪪㪤㪆㪪㪫㩷㪂㩷㪋㪘 㪈㪏㪤㩷㪂㩷㪌㪈㩷㪪㪤㪆㪪㪫㩷㪂㩷㪍㪘
㪌㪇
㪈㪍㪤㩷㪂㩷㪉㪏㩷㪪㪤㪆㪪㪫㩷㪂㩷㪍㪘 㪈㪋㪤㩷㪂㩷㪊㪇㩷㪪㪤㪆㪪㪫㩷㪂㩷㪍㪘
㪎㪌
㪌㪇 㪌㪇
㪈㪉㪤㩷㪂㩷㪊㪉㩷㪪㪤㪆㪪㪫䋫㪍㪘
㪐㪇
㪏㪉
㪏㪏 㪏㪇
㪏㪇
㪏㪍
㪏㪇
㪏㪇 㪏㪏
㪎㪏
㪏㪇
㪎㪍
㪏㪉
㪎㪇
㪝 㪞 㪟 㪥㪝㪈 㪥㪝㪉 㪘㪾㪄 㪥㪦㪩㫊
㪝㪃㩷㪤 㪝㪃㩷㪤
㪝㪃㩷㪤
㪝㪃㩷㪤
㪈㪋㪤㩷㪂㩷㪊㪇㩷㪪㪤㪆㪪㪫㩷㪂㩷㪍㪘
㪌㪇
㪝㪃㩷㪤 㪌㪇
㪏㪤㩷㪂㩷㪊㪉㪪㪤㩷㪂㩷㪈㪇㩷㪪㪫㪆㪘
㪋㪏
㪝㪃㩷㪤
㪈㪇㪤㩷㪂㩷㪉㪋㪪㪤㩷㪂㩷㪈㪉㪪㪫㩷㪂㩷㪉㪘
㪌㪇 㪌㪇
㪊㪏㩷㪤㪆㪪㪤㩷㪂㩷㪈㪉㪘 㪊㪇㩷㪤㪆㪪㪤㩷㪂㩷㪉㪇㩷㪪㪫㪆㪘
㪈㪍㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪈㪋㪪㪫㩷㪂㩷㪍㪘
㪈㪉㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪈㪉㪘
㪌㪇
㪌㪇
㪈㪉㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪈㪉㪪㪫㩷㪂㩷㪈㪉㪘 㪈㪉㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪈㪍㪘
㪌㪇 㪋㪏
㪈㪇㪤㩷㪂㩷㪉㪉㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪏㪘 㪈㪋㪤㩷㪂㩷㪉㪍㩷㪪㪤㪆㪪㪫㩷㪂㩷㪈㪇㪘
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪌㪇 㪌㪇
㪌㪉
㪛 㪉㫅
㪝㪃㩷㪤 㪝㪃㩷㪤
㪝㪃㩷㪤
㪝㪃㩷㪤
㪚 㪪㪼㫏 㪥㪄㪌㪇
㪤㪄 㪌 㪏
㪙㪄㪍㪍 㪤㪄 㪌 㪏
㪟㪄㪉㪃㩷㪟㪄㪋
㪪㪄㪎㪐㩷
㪪㪄㪎㪐㪃㩷㪞㪄㪏㪌㪃㩷㪟㪄㪈㪊 㪙㪄㪍㪍
㪤㪄 㪌 㪏
㪤㪄 㪌 㪋
㪩㪄㪉㪉
㪜㪄㪏 㪭㪄㪎㪉
㪜㪄㪏
㪜㪄㪏
㪘㪄㪈㪈㪈
㪘㪄㪈㪈㪈 㪘㪄㪈㪈㪈
㪤㪄㪋㪌
㪚㪄㪈㪇㪉
㪚㪄㪎㪌㪃㩷㪚㪄㪈㪇㪉
㪚㪄㪍㪏㪃㩷㪚㪄㪎㪌 㪤㪄㪈㪋㪈
㪚㪄㪍㪐㪃㩷㪚㪄㪎㪌
㪤㪄㪈㪋㪈
㪙㪄㪍㪉
㪱㪄㪉㪌㪃㩷㪱㪄㪉㪏㪃㩷㪣㪄㪋㪉㪃㩷㪰㪄㪈㪌
㪙㪄㪈㪐 㪪㪄㪎㪌㪃㩷㪙㪄㪈㪐
㪚㪄㪊㪋
㪙㪄㪈㪎
㪪㪄㪈㪐㪋
㪙㪄㪈㪎 㪪㪄㪏㪌㪃㩷㪞㪄㪏㪌
㪰㪄㪉㪊
㪞㪄 㪎 㪈
㪪㪄㪈㪐㪋
㪘㪄㪈㪈㪏㪃㩷㪞㪄㪏㪌 㪭㪄㪎㪉㪃㩷㪞㪄㪏㪌
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
62
㪣㪼㫌㪺㫀㫊㪺㫌㫊 㪣㫌㪺㫀㫆㪹㫉㪸㫄㪸 㪦㪺㪿㪼㫋㫆㪹㫀㫌㫊 㪧㪸㪺㪿㫐㪺㪿㫀㫃㫆㫅 㪧㪸㪺㪿㫐㪺㪿㫀㫃㫆㫅 㪧㪸㪺㪿㫐㪺㪿㫀㫃㫆㫅 㪧㪸㫉㪸㪺㪿㫆㫅㪻㫉㫆㫊㫋㫆㫄㪸 㪧㪸㫉㪸㪺㪿㫆㫅㪻㫉㫆㫊㫋㫆㫄㪸 㪧㪸㫉㪸㪺㪿㫆㫅㪻㫉㫆㫊㫋㫆㫄㪸 㪧㪼㫃㪼㪺㫌㫊 㪧㪼㫋㫉㫆㫃㪼㫌㪺㫀㫊㪺㫌㫊 㪧㪼㫋㫉㫆㫃㪼㫌㪺㫀㫊㪺㫌㫊 㪧㪿㫆㫏㫀㫅㪼㫃㫃㫌㫊 㪧㪿㫆㫏㫀㫅㫌㫊 㪧㪿㫆㫏㫀㫅㫌㫊 㪧㪿㫆㫏㫀㫅㫌㫊 㪧㪿㫆㫏㫀㫅㫌㫊 㪧㪿㫆㫏㫀㫅㫌㫊 㪧㪿㫆㫏㫀㫅㫌㫊 㪧㪿㫆㫏㫀㫅㫌㫊 㪧㪿㫆㫏㫀㫅㫌㫊 㪧㪿㫆㫏㫀㫅㫌㫊 㪧㪿㫆㫏㫀㫅㫌㫊 㪧㪿㫆㫏㫀㫅㫌㫊 㪧㪿㫆㫏㫀㫅㫌㫊 㪧㪿㫆㫏㫀㫅㫌㫊 㪧㪿㫆㫏㫀㫅㫌㫊 㪧㪿㫆㫏㫀㫅㫌㫊 㪧㪿㫆㫏㫀㫅㫌㫊 㪧㪿㫆㫏㫀㫅㫌㫊 㪧㫊㪼㫌㪻㪸㫊㫇㫀㫌㫊 㪧㫊㪼㫌㪻㫆㪺㪿㫆㫅㪻㫉㫆㫊㫋㫆㫄㪸 㪧㫊㪼㫌㪻㫆㪺㪿㫆㫅㪻㫉㫆㫊㫋㫆㫄㪸 㪧㫊㪼㫌㪻㫆㪺㪿㫆㫅㪻㫉㫆㫊㫋㫆㫄㪸 㪧㫊㪼㫌㪻㫆㪺㪿㫆㫅㪻㫉㫆㫊㫋㫆㫄㪸 㪩㪿㫐㫅㪺㪿㫆㪺㫐㫇㫉㫀㫊 㪩㪿㫐㫅㪺㪿㫆㪺㫐㫇㫉㫀㫊 㪩㫌㫋㫀㫃㫌㫊 㪩㫌㫋㫀㫃㫌㫊
㫎㪸㫃㪼㪺㫂㫀㫀 㫄㪸㪺㫉㫆㪺㪼㫇㪿㪸㫃㫌㫊 㪼㫃㫆㫅㪾㪸㫋㫌㫊 㫄㪸㪺㪼㪻㫆㫅㫀㪺㫌㫄 㫇㫀㪺㫋㫌㫄 㫇㫀㪺㫋㫌㫄 㪸㫉㫉㫀㪾㫆㫅㫀㫊 㫋㫆㫏㫆㫊㫋㫆㫄㪸 㫋㫆㫏㫆㫊㫋㫆㫄㪸 㪺㫌㫃㫋㫉㪸㫋㫌㫊 㪹㫆㫉㫐㫊㫋㪿㪼㫅㫀㪺㫌㫊 㫇㪼㫉㫊㫀㪻㫀㫊 㪸㫃㪼㫇㫀㪻㫆㫋㫌㫊 㫂㪼㫌㫄㫂㪸㫅㪾 㫃㪸㪾㫆㫎㫊㫂㫀㫀㩷㫊㫋㪼㫀㫅㪻㪸㪺㪿㫅㪼㫉㫀 㫃㪸㪾㫆㫎㫊㫂㫀㫀㩷㫊㫋㪼㫀㫅㪻㪸㪺㪿㫅㪼㫉㫀 㫆㫏㫐㪺㪼㫇㪿㪸㫃㫌㫊 㫆㫏㫐㪺㪼㫇㪿㪸㫃㫌㫊 㫆㫏㫐㪺㪼㫇㪿㪸㫃㫌㫊 㫆㫏㫐㪺㪼㫇㪿㪸㫃㫌㫊㩷㫁㫆㫌㫐㫀 㫆㫏㫐㪺㪼㫇㪿㪸㫃㫌㫊㩷㫁㫆㫌㫐㫀 㫆㫏㫐㪺㪼㫇㪿㪸㫃㫌㫊㩷㫁㫆㫌㫐㫀 㫆㫏㫐㪺㪼㫇㪿㪸㫃㫌㫊㩷㫁㫆㫌㫐㫀 㫆㫏㫐㪺㪼㫇㪿㪸㫃㫌㫊㩷㫁㫆㫌㫐㫀 㫇㪿㫆㫏㫀㫅㫌㫊 㫇㪿㫆㫏㫀㫅㫌㫊 㫇㪿㫆㫏㫀㫅㫌㫊 㫇㪿㫆㫏㫀㫅㫌㫊 㫇㪿㫆㫏㫀㫅㫌㫊 㫇㪿㫆㫏㫀㫅㫌㫊 㫃㪼㫇㫋㫆㪺㪼㫇㪿㪸㫃㫌㫊 㪻㫌㫉㫀㪼㫅㫊㪼 㪻㫌㫉㫀㪼㫅㫊㪼 㫇㫆㫃㫐㫃㪼㫇㫀㫊 㫎㫀㫃㫃㫂㫆㫄㫄㫀㫀 㫃㪸㪾㫆㫎㫊㫂㫀㫀 㫇㪼㫉㪺㫅㫌㫉㫌㫊 㪸㫌㫃㪸 㪸㫌㫃㪸
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㫇㪼㫉㪽㪸㫄㫀㫃㫐㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷
㪌㪇 㪌㪇
㪝
㪣㪼㫌㪺㫀㫊㪺㫌㫊
㪚㪿㫆㫅㪻㫉㫆㫊㫋㫆㫄㪸 㪤㫆㫉㫆㪺㫆 㪜㫌㫇㪸㫃㫃㪸㫊㪼㫃㫃㪸㩷㫇㪼㫉㪼㫅㫌㫉㫌㫊
㪚㪿㫆㫅㪻㫉㫆㫊㫋㫆㫄㪸
㪌㪇
㪝
㪝㪃㩷㪤
㪌㪇
㪝 㪝㪃㩷㪤
㪈㪍㪤㩷㪂㩷㪉㪍㪪㪤㩷㪂㩷㪏㩷㪪㪫㪆㪘
㪌㪇
㪈㪌㪤㩷㪂㩷㪉㪊㪪㪤㩷㪂㩷㪈㪉㩷㪪㪫㪆㪘
㪏㪤㩷㪂㩷㪊㪉㪪㪤㩷㪂㩷㪈㪇㪪㪫
㪌㪇 㪌㪇
㪈㪉㪤㩷㪂㩷㪉㪏㪪㪤㩷㪂㩷㪈㪇㩷㪪㪫㪆㪘
㪈㪋㪤㩷㪂㩷㪊㪇㪪㪤㩷㪂㩷㪍㩷㪪㪫㪆㪘 㪈㪋㪤㩷㪂㩷㪊㪇㪪㪤㩷㪂㩷㪍㩷㪪㪫㪆㪘
㪈㪋㪤㩷㪂㩷㪉㪍㪪㪤㩷㪂㩷㪈㪇㩷㪪㪫㪆㪘
㪌㪇
㪌㪇
㪌㪇 㪌㪇
㪌㪇
㪈㪋㪤㩷㪂㩷㪉㪍㩷㪪㪤㪆㪪㪫㩷㪂㩷㪈㪇㪘 㪈㪋㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪈㪍㪪㪫㩷㪂㩷㪏㪘 㪊㪉㩷㪤㪆㪪㪤㩷㪂㩷㪈㪏㩷㪪㪫㪆㪘
㪏㪤㩷㪂㩷㪊㪉㪪㪤㩷㪂㩷㪈㪇㩷㪪㪫㪆㪘
㪌㪇 㪌㪇
㪝㪃㩷㪤
㪈㪇㪤㩷㪂㩷㪊㪋㩷㪪㪤㪆㪪㪫㩷㪂㩷㪍㪘
㪈㪍㪤㩷㪂㩷㪉㪉㪪㪤㩷㪂㩷㪈㪉㩷㪪㪫㪆㪘
㪈㪉㪤㩷㪂㩷㪉㪍㪪㪤㩷㪂㩷㪈㪉㩷㪪㪫㪆㪘 㪈㪉㪤㩷㪂㩷㪊㪇㪪㪤㩷㪂㩷㪏㩷㪪㪫㪆㪘
㪈㪏㪤㩷㪂㩷㪉㪋㪪㪤㩷㪂㩷㪏㩷㪪㪫㪆㪘
㪌㪇
㪌㪇 㪌㪇
㪝㪃㩷㪤 㪝㪃㩷㪤
㪌㪇 㪌㪇
㪝㪃㩷㪤 㪝㪃㩷㪤
㪈㪋㪤㩷㪂㩷㪉㪍㪪㪤㩷㪂㩷㪈㪇㪘
㪌㪇
㪌㪇 㪝㪃㩷㪤
㪈㪍㪤㩷㪂㩷㪉㪍㪪㪤㩷㪂㩷㪏㩷㪪㪫㪆㪘 㪈㪇㪤㩷㪂㩷㪊㪋㩷㪪㪤㪆㪪㪫㩷㪂㩷㪍㪘
㪌㪇 㪌㪇
㪝 㪝㪃㩷㪤
㪈㪉㪤㩷㪂㩷㪉㪏㪪㪤㩷㪂㩷㪈㪇㩷㪪㪫㪆㪘
㪌㪇
㪤
㪈㪉㪤㩷㪂㩷㪉㪏㪪㪤㩷㪂㩷㪈㪇㩷㪪㪫㪆㪘
㪈㪋㪤㩷㪂㩷㪉㪉㪪㪤㩷㪂㩷㪏㪪㪫㩷㪂㩷㪍㪘
㪌㪇 㪌㪇
㪈㪉㪤㩷㪂㩷㪉㪏㪪㪤㩷㪂㩷㪈㪇㩷㪪㪫㪆㪘 㪈㪉㪤㩷㪂㩷㪉㪏㪪㪤㩷㪂㩷㪈㪇㩷㪪㪫㪆㪘
㪉㪍㩷㪤㪆㪪㪤㩷㪂㩷㪉㪋㩷㪪㪫㪆㪘
㪌㪇 㪌㪇
㪌㪇
㪈㪍㪤㩷㪂㩷㪉㪏㩷㪪㪤㪆㪪㪫㩷㪂㩷㪍㪘 㪉㪐㪤㩷㪂㩷㪈㪏㪪㪤㩷㪂㩷㪊㪪㪫
㪌㪇
㪈㪍㪤㩷㪂㩷㪉㪋㩷㪪㪤㪆㪪㪫㩷㪂㩷㪈㪇㪘 㪈㪍㪤㩷㪂㩷㪊㪇㩷㪪㪤㪆㪪㪫㩷㪂㩷㪋㪘
㪌㪇 㪌㪇 㪌㪇
㪈㪍㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪈㪋㪪㪫㩷㪂㩷㪍㪘
㪌㪇
㪈㪋㪤㩷㪂㩷㪊㪇㪪㪤㩷㪂㩷㪍㩷㪪㪫㪆㪘
㪏㪤㩷㪂㩷㪊㪋㪪㪤㩷㪂㩷㪏㩷㪪㪫㪆㪘 㪏㪤㩷㪂㩷㪉㪉㪪㪤㩷㪂㩷㪉㪇㪘
㪈㪇㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪉㪉㪪㪫
㪈㪉㪤㩷㪂㩷㪉㪉㪪㪤㩷㪂㩷㪈㪉㪪㪫㩷㪂㩷㪉㪘
㪈㪏㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪍㪘
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪝㪃㩷㪤
㪝㪃㩷㪤 㪝㪃㩷㪤
㪤
㪣㪼㫌㪺㫀㫊㪺㫌㫊 㪧㪸㫉㪸㫇㪿㫆㫏㫀㫅㫌㫊 㪤㫆㫉㫆㪺㫆㩷㫂㪼㫌㫄㪾㪸㫅㪾 㪤㫆㫉㫆㪺㫆㩷㫊㫋㪼㫀㫅㪻㪸㪺㪿㫅㪼㫉㫀 㪤㫆㫉㫆㪺㫆㩷㫊㫋㪼㫀㫅㪻㪸㪺㪿㫅㪼㫉㫀 㪤㫆㫉㫆㪺㫆 㪤㫆㫉㫆㪺㫆 㪤㫆㫉㫆㪺㫆 㪤㫆㫉㫆㪺㫆㩷㫁㫆㫌㫐㫀 㪤㫆㫉㫆㪺㫆㩷㫁㫆㫌㫐㫀 㪤㫆㫉㫆㪺㫆㩷㫁㫆㫌㫐㫀 㪤㫆㫉㫆㪺㫆㩷㫁㫆㫌㫐㫀 㪤㫆㫉㫆㪺㫆㩷㫁㫆㫌㫐㫀
㪝㪃㩷㪤
㪌㪇
㪌㪇
㪋㪏
㪝㪃㩷㪤
㪝㪃㩷㪤
㪌㪇 㪋㪏
㪝
㪛 㪉㫅
㪤
㪚 㪪㪼㫏
㪚㪿㫆㫅㪻㫉㫆㫊㫋㫆㫄㪸 㪚㪿㫆㫅㪻㫉㫆㫊㫋㫆㫄㪸
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪫㪸㪹㫃㪼㩷㪍㪅㪈㪈㩷㩷㪦㫉㪻㪼㫉㩷㪚㪰㪧㪩㪠㪥㪠㪝㪦㪩㪤㪜㪪㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀
㪏㪏
㪐㪉
㪐㪇
㪐㪇
㪐㪋 㪐㪋
㪐㪇
㪏㪉
㪎㪍
㪐㪇
㪏㪏
㪏㪏 㪐㪉
㪐㪉
㪐㪇
㪐㪉
㪐㪇
㪐㪇
㪏㪍
㪐㪇 㪐㪇
㪎㪍
㪐㪎
㪏㪇
㪐㪋
㪐㪉 㪏㪇
㪎㪋
㪏㪉
㪏㪏
㪈㪇㪇
㪐㪇 㪐㪉
㪐㪋
㪐㪋
㪐㪋
㪈㪇㪇
㪐㪋
㪐㪇 㪐㪍
㪐㪋
㪐㪍
㪐㪋
㪐㪋
㪉
㪋
㪉 㪉
㪋
㪉
㪉
㪉
㪝 㪞 㪟 㪥㪝㪈 㪥㪝㪉 㪘㪾㪄 㪥㪦㪩㫊
㪉㪅㪇㩷㪝㪛
㪉㪅㪎㩷㪝㪚㪤
㪉㪅㪎㩷㪝㪚㪤
㪉㪅㪊㩷㪝㪛
㪊㪅㪈㪁㩷㪝㪚㪤
㪉㪅㪌㪁㩷㪝㪚㪤
㩿㪉㪅㪉㩷㪝㪛㪀
㪉㪅㪋㪁㩷㪝㪚㪤
㪉㪅㪍㩷㪝㪛
㪈㪅㪐㪁㩷㪝㪛
㪠 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇 㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇 㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇 㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇 㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇 㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇 㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇 㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
㩿㪜㫌㫉㫆㫇㪼㪀
㪠㫋㪸㫃㫐
㪧㫆㫃㪸㫅㪻
㪢㫆㫉㪼㪸㩷㩿㪤㫋㪅㩷㪪㫆㫉㪸㫂㪀
㪠㪹㪼㫉㫀㪸
㪧㫆㫉㫋㫌㪾㪸㫃 㪧㫆㫉㫋㫌㪾㪸㫃
㪠㪹㪼㫉㫀㪸
㪤㫆㫅㪾㫆㫃㫀㪸
㪙㫆㫊㫅㫀㪸㪄㪟㪼㫉㫑㪼㪾㫆㫍㫀㫅㪸
㪝㫉㪸㫅㪺㪼 㪠㫋㪸㫃㫐
㪧㫆㫃㪸㫅㪻
㪢㫆㫉㪼㪸㩷㩿㪟㪸㫅㩷㪩㪅㪀
㪢㫆㫉㪼㪸㩷㩿㪚㪿㫆㫅㪾㫊㫆㫅㪄㪾㫌㫅㪀
㪡㪸㫇㪸㫅㩷㩿㪠㪿㪸㫉㪸㩷㪩㪅㪀㩷 㪡㪸㫇㪸㫅㩷㩿㪢㪸㫅㪸㪾㪸㫎㪸㪀㩷
㪡㪸㫇㪸㫅㩷㩿㪪㪸㪾㪸㫄㫀㩷㪩㪅㪀㩷
㪡㪸㫇㪸㫅㩷㩿㪣㪸㫂㪼㩷㪙㫀㫎㪸㪃㩷㪢㫆㪹㪼㪀
㪢㫆㫉㪼㪸㩷㩿㪫㪸㪼㫁㫆㫅㪾㩷㪩㪅㪀 㪡㪸㫇㪸㫅㩷㩿㪢㫌㫄㪸㫄㫆㫋㫆㪀
㪢㫆㫉㪼㪸㩷㩿㪠㫄㫁㫀㫅㩷㪩㪅㪀
㪢㫆㫉㪼㪸㩷㩿㪦㪺㪿㫆㫅㪄㪾㫌㫅㪀
㪡㪸㫇㪸㫅
㪢㫆㫉㪼㪸㩷㩿㪤㫌㫁㫌㪃㩷㪫㫆㪾㫌㪄㫉㫀㪀 㪢㫆㫉㪼㪸㩷㩿㪞㪸㫅㪾㫉㪼㫌㫅㪾㪀
㪙㫆㫊㫅㫀㪸㪄㪟㪼㫉㫑㪼㪾㫆㫍㫀㫅㪸
㪠㫉㪸㫅㩷㩿㪝㪸㫉㫊㪀
㪞㫉㪼㪼㪺㪼
㪝㫉㪸㫅㪺㪼 㪩㫌㫊㫊㫀㪸
㪠㫋㪸㫃㫐
㪪㫇㪸㫀㫅㩷㩿㪭㪸㫃㪼㫅㪺㫀㪸㪀
㪽㫆㫉㫄㪼㫉㩷㪰㫌㪾㫆㫊㫃㪸㫍㫀㪸
㪤㪸㪺㪼㪻㫆㫅㫀㪸 㩿㪪㪅㪜㪅㩷㪜㫌㫉㫆㫇㪼㪀
㪚㪿㫀㫅㪸㩷㩿㪟㫌㪹㪼㫀㪀
㪚㪿㫀㫅㪸㩷㩿㪟㫌㪹㪼㫀㪀
㪝㪄㪊㪇
㪙㪄㪊㪍
㪙㪄㪍㪉
㪢㪄㪋㪃㩷㪢㪄㪌㪃㩷㪣㪄㪈㪊
㪚㪄㪎㪌
㪧㪄㪎㪍 㪧㪄㪎㪍
㪚㪄㪎㪌
㪩㪄㪉㪇
㪙㪄㪉㪈
㪟㪄㪉㪃㩷㪟㪄㪋 㪚㪄㪊㪋
㪙㪄㪍㪉
㪬㪄㪊㪊
㪢㪄㪌㪌㪃㩷㪣㪄㪈㪉
㪣㪄㪈㪊 㪣㪄㪈㪊
㪣㪄㪈㪊
㪫㪄㪋㪃㩷㪦㪄㪋㪏
㪣㪄㪈㪊 㪬㪄㪊㪊
㪣㪄㪈㪊㪃㩷㪧㪄㪍㪐
㪢㪄㪋㪃㩷㪢㪄㪌㪃㩷㪢㪄㪌㪌㪃㩷㪣㪄㪈㪉
㪦㪄㪉㪉
㪢㪄㪌㪌㪃㩷㪣㪄㪈㪉 㪢㪄㪌㪌㪃㩷㪣㪄㪈㪉㪃㩷㪧㪄㪍㪐
㪙㪄㪈㪍
㪜㪄㪎
㪩㪄㪉㪊
㪟㪄㪉㪃㩷㪟㪄㪋 㪭㪄㪎㪉
㪚㪄㪊㪋
㪢㪄㪈㪈㪐
㪙㪄㪈㪐
㪩㪄㪉㪌 㪢㪄㪈㪊㪊
㪱㪄㪉㪏㪃㩷㪣㪄㪋㪉㪃㩷㪚㪄㪏㪊
㪱㪄㪉㪏㪃㩷㪣㪄㪋㪉㪃㩷㪰㪄㪈㪌
㪚㪿㫀㫅㪸㩷㩿㪥㪼㫀㩷㪤㫆㫅㪾㫆㫃㪃㩷㪞㪸㫅㫊㫌㪀 㪱㪄㪈㪎㪃㩷㪩㪄㪋㪉
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
63
㪩㫌㫋㫀㫃㫌㫊 㪩㫌㫋㫀㫃㫌㫊 㪩㫌㫋㫀㫃㫌㫊 㪩㫌㫋㫀㫃㫌㫊 㪩㫌㫋㫀㫃㫌㫊 㪩㫌㫋㫀㫃㫌㫊 㪩㫌㫋㫀㫃㫌㫊 㪩㫌㫋㫀㫃㫌㫊 㪩㫌㫋㫀㫃㫌㫊 㪩㫌㫋㫀㫃㫌㫊 㪩㫌㫋㫀㫃㫌㫊 㪩㫌㫋㫀㫃㫌㫊 㪩㫌㫋㫀㫃㫌㫊 㪩㫌㫋㫀㫃㫌㫊 㪩㫌㫋㫀㫃㫌㫊 㪪㪺㪸㫉㪻㫀㫅㫀㫌㫊 㪪㪺㪸㫉㪻㫀㫅㫀㫌㫊 㪪㪺㪸㫉㪻㫀㫅㫀㫌㫊 㪪㪺㪸㫉㪻㫀㫅㫀㫌㫊 㪪㪺㪸㫉㪻㫀㫅㫀㫌㫊 㪪㪺㪸㫉㪻㫀㫅㫀㫌㫊 㪪㪺㪸㫉㪻㫀㫅㫀㫌㫊 㪪㪺㪸㫉㪻㫀㫅㫀㫌㫊 㪪㪺㪸㫉㪻㫀㫅㫀㫌㫊 㪪㪺㪸㫉㪻㫀㫅㫀㫌㫊 㪪㪺㪸㫉㪻㫀㫅㫀㫌㫊 㪪㫈㫌㪸㫃㫀㫌㫊 㪪㫈㫌㪸㫃㫀㫌㫊 㪪㫈㫌㪸㫃㫀㫌㫊 㪪㫈㫌㪸㫃㫀㫌㫊 㪪㫈㫌㪸㫃㫀㫌㫊 㪪㫈㫌㪸㫃㫀㫌㫊 㪪㫈㫌㪸㫃㫀㫌㫊 㪪㫈㫌㪸㫃㫀㫌㫊 㪪㫈㫌㪸㫃㫀㫌㫊 㪪㫈㫌㪸㫃㫀㫌㫊 㪪㫈㫌㪸㫃㫀㫌㫊 㪪㫈㫌㪸㫃㫀㫌㫊 㪪㫈㫌㪸㫃㫀㫌㫊
㪽㫉㫀㫊㫀㫀㩷㫂㫌㫋㫌㫄 㫄㪸㪺㫉㫆㫃㪼㫇㫀㪻㫆㫋㫌㫊 㫇㫀㪾㫌㫊㩷㫍㫀㫉㪾㫆 㫇㫉㪼㫊㫇㪼㫅㫊㫀㫊 㫉㫌㪹㫀㫃㫀㫆 㫉㫌㪹㫀㫃㫀㫆 㫉㫌㫋㫀㫃㫌㫊 㫉㫌㫋㫀㫃㫌㫊 㫉㫌㫋㫀㫃㫌㫊 㫉㫌㫋㫀㫃㫌㫊 㫉㫌㫋㫀㫃㫌㫊 㫉㫌㫋㫀㫃㫌㫊 㫉㫌㫋㫀㫃㫌㫊 㫉㫌㫋㫀㫃㫌㫊㩷㪺㪸㫊㫇㫀㪺㫌㫊 㫐㫃㫀㫂㫀㪼㫅㫊㫀㫊 㪸㪺㪸㫉㫅㪸㫅㫀㪺㫌㫊 㪼㫉㫐㫋㪿㫉㫆㫇㪿㫋㪿㪸㫃㫄㫌㫊 㪼㫉㫐㫋㪿㫉㫆㫇㪿㫋㪿㪸㫃㫄㫌㫊 㪼㫉㫐㫋㪿㫉㫆㫇㪿㫋㪿㪸㫃㫄㫌㫊 㪼㫉㫐㫋㪿㫉㫆㫇㪿㫋㪿㪸㫃㫄㫌㫊 㪼㫉㫐㫋㪿㫉㫆㫇㪿㫋㪿㪸㫃㫄㫌㫊 㪼㫉㫐㫋㪿㫉㫆㫇㪿㫋㪿㪸㫃㫄㫌㫊 㪼㫉㫐㫋㪿㫉㫆㫇㪿㫋㪿㪸㫃㫄㫌㫊 㪼㫉㫐㫋㪿㫉㫆㫇㪿㫋㪿㪸㫃㫄㫌㫊 㪾㫉㪸㪼㪺㫌㫊 㫊㪺㪸㫉㪻㪸㪽㪸 㪸㫃㪹㫌㫊 㪸㫉㪸㪻㪼㫅㫊㫀㫊 㪺㪸㫉㫆㫃㫀㫋㪼㫉㫋㫀㫀 㪺㪼㫇㪿㪸㫃㫌㫊 㪺㪼㫇㪿㪸㫃㫌㫊 㪺㪼㫇㪿㪸㫃㫌㫊 㪺㪼㫇㪿㪸㫃㫌㫊 㪺㪼㫇㪿㪸㫃㫌㫊㩷㪺㪼㫇㪿㪸㫃㫌㫊 㫂㪼㪸㪻㫀㪺㫌㫊 㫇㫐㫉㪼㫅㪸㫀㪺㫌㫊 㫊㫈㫌㪸㫃㫌㫊 㫊㫈㫌㪸㫃㫌㫊 㫊㫍㪸㫃㫃㫀㫑㪼
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㫇㪼㫉㪽㪸㫄㫀㫃㫐㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷
㪣㪼㫌㪺㫀㫊㪺㫌㫊㩷㪺㪼㫇㪿㪸㫃㫌㫊㩷㪸㫃㪹㫌㫊 㪣㪼㫌㪺㫀㫊㪺㫌㫊 㪣㪼㫌㪺㫀㫊㪺㫌㫊 㪣㪼㫌㪺㫀㫊㪺㫌㫊 㪣㪼㫌㪺㫀㫊㪺㫌㫊 㪣㪼㫌㪺㫀㫊㪺㫌㫊 㪣㪼㫌㪺㫀㫊㪺㫌㫊 㪣㪼㫌㪺㫀㫊㪺㫌㫊㩷㪺㪼㫇㪿㪸㫃㫌㫊㩷 㪣㪼㫌㪺㫀㫊㪺㫌㫊 㪣㪼㫌㪺㫀㫊㪺㫌㫊 㪣㪼㫌㪺㫀㫊㪺㫌㫊㩷㪺㪼㫇㪿㪸㫃㫌㫊㩷㪺㪸㪹㪼㪻㪸 㪣㪼㫌㪺㫀㫊㪺㫌㫊㩷㪺㪼㫇㪿㪸㫃㫌㫊㩷㪺㪸㪹㪼㪻㪸 㪣㪼㫌㪺㫀㫊㪺㫌㫊㩷㫊㫍㪸㫃㫃㫀㫑㪼㩷㫊㫍㪸㫃㫃㫀㫑㪼
㪼㫉㫐㫋㪿㫉㫆㫇㪿㫋㪸㫃㫄㫌㫊
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪫㪸㪹㫃㪼㩷㪍㪅㪈㪈㩷㩷㪦㫉㪻㪼㫉㩷㪚㪰㪧㪩㪠㪥㪠㪝㪦㪩㪤㪜㪪㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀
㪈㪋㪤㩷㪂㩷㪉㪋㪪㪤㩷㪂㩷㪏㪪㪫㩷㪂㩷㪋㪘
㪌㪇
㪈㪍㪤㩷㪂㩷㪉㪍㪪㪤㩷㪂㩷㪏㩷㪪㪫㪆㪘 㪉㪏㪤㩷㪂㩷㪏㪪㪤㩷㪂㩷㪈㪋㪘
㪌㪇 㪌㪇
㪌㪇 㪌㪇
㪉㪇㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪈㪍㪪㪫㩷㪂㩷㪉㪘
㪈㪍㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪈㪉㪪㪫㩷㪂㩷㪈㪇㪘
㪈㪍㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪈㪉㪪㪫㩷㪂㩷㪈㪇㪘
㪌㪇 㪌㪇 㪝㪃㩷㪤
㪈㪋㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪈㪋㪘
㪌㪇
㪊㪋㩷㪤㪆㪪㪤㩷㪂㩷㪈㪍㩷㪪㪫㪆㪘 㪉㪉㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪈㪋㪘
㪌㪇 㪌㪇
㪈㪇㪤㩷㪂㩷㪉㪉㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪏㪘 㪈㪍㪤㩷㪂㩷㪉㪍㪪㪤㩷㪂㩷㪏㩷㪪㪫㪆㪘
㪌㪇 㪌㪇
㪏㪉
㪎㪏
㪎㪏
㪎㪍
㪏㪍
㪏㪋
㪏㪉 㪐㪉
㪐㪏
㪐㪇
㪐㪇
㪏㪍
㪐㪉
㪉 㪉
㪉㪅㪋㩷㪝㪚㪤
㪉㪅㪎㩷㪝㪛
㪌㪇
㪉㪅㪇㩷㪝㪛
㩿㪉㪅㪏㩷㪝㪚㪤㪀
㪈㪅㪐㩷㪝㪛
㩿㪉㪅㪍㩷㪝㪚㪤㪀
㪉㪅㪋㩷㪝㪚㪤 㪏㪏
㪉
㪉
㪉
㪉 㪉
㪉
㪉
㪉
㪉
㪉㪅㪏㩷㪝㪚㪤
㪉㪅㪋㩷㪝㪚㪤 㪈㪏㪤㩷㪂㩷㪉㪇㩷㪪㪤㪆㪪㪫㩷㪂㩷㪈㪉㪘
㪐㪉
㪐㪋 㪏㪋
㪐㪇
㪐㪍
㪐㪋
㪐㪌
㪐㪉 㪐㪌
㪏㪉
㪐㪋
㪐㪍
㪠 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪌㪇
㪐㪉 㪏㪍
㪐㪉
㪏㪇
㪏㪉
㪎㪇
㪍㪈
㪏㪏
㪐㪉 㪐㪉
㪐㪉
㪏㪉
㪏㪋
㪏㪉 㪏㪌
㪎㪍
㪐㪋
㪎㪏 㪐㪋
㪐㪉
㪐㪉
㪐㪇
㪏㪉
㪝 㪞 㪟 㪥㪝㪈 㪥㪝㪉 㪘㪾㪄 㪥㪦㪩㫊
㪌㪇
㪝㪃㩷㪤
㪝㪃㩷㪤
㪝㪃㩷㪤
㪈㪍㪤㩷㪂㩷㪉㪍㪪㪤㩷㪂㩷㪏㩷㪪㪫㪆㪘
㪌㪇
㪈㪍㪤㩷㪂㩷㪉㪍㩷㪪㪤㪆㪪㪫㩷㪂㩷㪏㪘 㪊㪇㩷㪤㪆㪪㪤㩷㪂㩷㪉㪇㩷㪪㪫㪆㪘
㪌㪇 㪌㪇
㪝㪃㩷㪤 㪝㪃㩷㪤
㪉㪇㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪈㪉㪪㪫㩷㪂㩷㪍㪘 㪈㪋㪤㩷㪂㩷㪉㪇㩷㪪㪤㪆㪪㪫㩷㪂㩷㪈㪍㪘
㪌㪇 㪌㪇
㪝㪃㩷㪤
㪉㪉㩷㪤㪆㪪㪤㩷㪂㩷㪉㪇㪪㪫㩷㪂㩷㪍㪘
㪈㪍㪤㩷㪂㩷㪉㪍㪪㪤㩷㪂㩷㪏㩷㪪㪫㪆㪘 㪈㪍㪤㩷㪂㩷㪉㪍㪪㪤㩷㪂㩷㪏㩷㪪㪫㪆㪘
㪌㪇 㪌㪇
㪋㪏
㪈㪍㪤㩷㪂㩷㪉㪍㪪㪤㩷㪂㩷㪏㩷㪪㪫㪆㪘
㪌㪇
㪈㪊㪤㩷㪂㩷㪊㪌㩷㪪㪫㪆㪘
㪈㪋㪤㩷㪂㩷㪈㪏㪪㪤㩷㪂㩷㪈㪉㪪㪫㩷㪂㩷㪍㪘
㪌㪇
㪋㪏
㪈㪍㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪈㪈㪪㪫㩷㪂㩷㪐㪘
㪌㪉
㪝㪃㩷㪤
㪉㪍㩷㪤㪆㪪㪤㩷㪂㩷㪉㪋㩷㪪㪫㪆㪘
㪌㪇 㪈㪍㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪏㪘 㪈㪍㪤㩷㪂㩷㪈㪏㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪎㪘
㪈㪋㪤㩷㪂㩷㪈㪏㪪㪤㪆㪪㪫㩷㪂㩷㪈㪏㪘
㪌㪇 㪌㪇 㪌㪈
㪈㪍㪤㩷㪂㩷㪉㪏㪪㪤㩷㪂㩷㪍㩷㪪㪫㪆㪘
㪌㪇
㪈㪍㪤㩷㪂㩷㪉㪍㪪㪤㩷㪂㩷㪏㩷㪪㪫㪆㪘
㪌㪇 㪈㪏㪤㩷㪂㩷㪈㪇㪪㪤㩷㪂㩷㪈㪍㪪㪫㩷㪂㩷㪍㪘 㪈㪍㪤㩷㪂㩷㪉㪏㪪㪤㩷㪂㩷㪍㩷㪪㪫㪆㪘
㪈㪍㪤㩷㪂㩷㪉㪍㪪㪤㩷㪂㩷㪏㩷㪪㪫㪆㪘
㪌㪇 㪌㪇 㪌㪇
㪈㪋㪤㩷㪂㩷㪊㪉㩷㪪㪤㪆㪪㪫㩷㪂㩷㪋㪘 㪈㪍㪤㩷㪂㩷㪉㪋㪪㪤㩷㪂㩷㪈㪇㩷㪪㪫㪆㪘
㪊㪉㩷㪤㪆㪪㪤㩷㪂㩷㪈㪏㩷㪪㪫㪆㪘
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪌㪇 㪌㪇
㪌㪇
㪛 㪉㫅
㪝㪃㩷㪤 㪝㪃㩷㪤
㪝㪃㩷㪤 㪝㪃㩷㪤
㪝㪃㩷㪤 㪝
㪚 㪪㪼㫏
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇 㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇 㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇 㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇 㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪇㪄㪈㩷㪙
㪘㪚㪥㪔㪌㪇 㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇 㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪡 㪚㫆㫄㫄㪼㫅㫋㫊 㪭㪄㪎㪉
㪥㪄㪌㪇
㪟㪄㪊㪃㩷㪟㪄㪋
㪩㪄㪈㪊
㪚㪄㪊㪋 㪩㪄㪈㪌㪃㩷㪭㪄㪏㪍
㪙㪄㪊㪍
㪙㪄㪊㪍
㪙㫆㫊㫅㫀㪸㪄㪟㪼㫉㫑㪼㪾㫆㫍㫀㫅㪸
㪠㫋㪸㫃㫐
㪠㪹㪼㫉㫀㪸 㪧㫆㫉㫋㫌㪾㪸㫃
㪞㫉㪼㪼㪺㪼
㪙㫆㫊㫅㫀㪸㪄㪟㪼㫉㫑㪼㪾㫆㫍㫀㫅㪸
㪚㫉㫆㪸㫋㫀㪸
㪧㫆㫃㪸㫅㪻 㪠㫋㪸㫃㫐
㪝㫉㪸㫅㪺㪼
㪠㪹㪼㫉㫀㪸
㪧㫆㫉㫋㫌㪾㪸㫃
㪠㫋㪸㫃㫐 㪙㫆㫊㫅㫀㪸㪄㪟㪼㫉㫑㪼㪾㫆㫍㫀㫅㪸
㪞㫉㪼㪼㪺㪼
㪙㫆㫊㫅㫀㪸
㪜㫃㪹㪼㩷㪩㪅㪃㩷㪛㪸㫅㫌㪹㪼㩷㪩㪅
㪠㫋㪸㫃㫐 㪝㫉㪸㫅㪺㪼
㪪㫎㪼㪻㪼㫅
㩿㪜㫌㫉㫆㫇㪼㪀
㩿㪜㫌㫉㫆㫇㪼㪀
㪞㫉㪼㪼㪺㪼 㪠㫋㪸㫃㫐
㪞㫉㪼㪼㪺㪼
㪪㪄㪎㪐
㪚㪄㪊㪋
㪚㪄㪎㪌 㪚㪄㪎㪈
㪫㪄㪌㪋
㪪㪄㪎㪐
㪘㪄㪉㪎㪃㩷㪘㪄㪉㪏
㪙㪄㪍㪍 㪙㪄㪊㪍
㪟㪄㪉㪃㩷㪟㪄㪋
㪚㪄㪎㪌
㪚㪄㪎㪌
㪙㪄㪊㪍 㪪㪄㪎㪐
㪙㪄㪊㪍
㪪㪄㪏㪋
㪤㪄 㪌 㪋
㪚㪄㪊㪋 㪟㪄㪉㪃㩷㪟㪄㪋
㪥㪄㪌㪇
㪝㪄㪊㪇
㪭㪄㪎㪉
㪙㪄㪊㪍 㪙㪄㪊㪍㪃㩷㪞㪄㪏㪌
㪙㪄㪊㪍
㪭㪄㪎㪉
㪞㪼㫉㫄㪸㫅㫐㩷㩿㪙㪸㫃㫋㫀㪺㩷㪪㪼㪸㩷㫊㫀㪻㪼㪀 㪢㪄㪎㪍 㩿㪚㪸㫊㫇㫀㪸㫅㩷㪪㪼㪸㩷㪹㪸㫊㫀㫅㪀
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
㪚㪄㪍㪐㪃㩷㪚㪄㪎㪌 㪩㪄㪈㪌
㪞㪼㫉㫄㪸㫅㫐㩷㩿㪙㪸㫃㫋㫀㪺㩷㪪㪼㪸㩷㫊㫀㪻㪼㪀 㪢㪄㪎㪍 㪞㪼㫉㫄㪸㫅㫐㩷㩿㪙㪸㫃㫋㫀㪺㩷㪪㪼㪸㩷㫊㫀㪻㪼㪀 㪢㪄㪎㪍
㪪㫎㪼㪻㪼㫅
㪝㫉㪸㫅㪺㪼
㪛㪸㫅㫌㪹㪼㩷㪩㪅
㪠㫋㪸㫃㫐 㪛㪸㫅㫌㪹㪼㩷㪩㪅㪃㩷㪜㫃㪹㪼㩷㪩㪅
㪠㫋㪸㫃㫐
㪞㫉㪼㪼㪺㪼
㪧㫆㫉㫋㫌㪾㪸㫃 㪛㪸㫅㫌㪹㪼㩷㪩㪅
㩿㪩㫌㫊㫊㫀㪸㪀
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
64
㫋㪼㫅㪼㫃㫃㫌㫊 㪺㫉㫆㪸㫋㫀㪺㫌㫊 㫄㪼㫋㫆㪿㫀㪼㫅㫊㫀㫊 㫄㫌㫋㫀㪺㪼㫃㫃㫌㫊 㫇㫆㫃㫐㫃㪼㫇㫀㫊 㫊㫆㫌㪽㪽㫀㪸㩷 㪼㫑㫆㪼 㪼㫑㫆㪼 㪿㪸㫂㫆㫅㪼㫅㫊㫀㫊 㪿㪸㫂㫆㫅㪼㫅㫊㫀㫊 㪿㪸㫂㫆㫅㪼㫅㫊㫀㫊 㪼㫃㫆㫅㪾㪸㫋㫌㫊 㪼㫃㫆㫅㪾㪸㫋㫌㫊 㫍㫀㫄㪹㪸 㫍㫀㫄㪹㪸㩷㫍㫀㫄㪹㪸 㫍㫀㫄㪹㪸㩷㫍㫀㫄㪹㪸
㪘㪺㫉㫆㪺㪿㪼㫀㫃㫌㫊㩷 㪚㪸㫄㫇㫆㫊㫋㫆㫄㪸 㪚㫆㫌㪼㫊㫀㫌㫊 㪚㪿㫉㫆㫊㫆㫄㫌㫊 㪚㪿㫉㫆㫊㫆㫄㫌㫊 㪚㪿㫉㫆㫊㫆㫄㫌㫊 㪚㪿㫉㫆㫊㫆㫄㫌㫊 㪚㪿㫉㫆㫊㫆㫄㫌㫊 㪚㫐㫇㫉㫀㫅㪼㫃㫃㪸 㪚㫐㫇㫉㫀㫅㪼㫃㫃㪸 㪚㫐㫇㫉㫀㫅㪼㫃㫃㪸 㪚㫐㫇㫉㫀㫅㪼㫃㫃㪸 㪚㫐㫇㫉㫀㫅㪼㫃㫃㪸 㪚㫐㫇㫉㫀㫅㪼㫃㫃㪸 㪚㫐㫇㫉㫀㫅㪼㫃㫃㪸 㪚㫐㫇㫉㫀㫅㪼㫃㫃㪸 㪚㫐㫇㫉㫀㫅㪼㫃㫃㪸 㪚㫐㫇㫉㫀㫅㪼㫃㫃㪸 㪚㫐㫇㫉㫀㫅㪼㫃㫃㪸 㪚㫐㫇㫉㫀㫅㪼㫃㫃㪸 㪚㫐㫇㫉㫀㫅㪼㫃㫃㪸 㪚㫐㫇㫉㫀㫅㪼㫃㫃㪸
㪸㫃㫌㫋㪸㪺㪼㫌㫊 㪸㫅㫆㫄㪸㫃㫌㫄 㫇㫃㫌㫄㪹㪼㫌㫊 㪺㫌㫄㪹㪼㫉㫃㪸㫅㪻㪼㫅㫊㫀㫊 㪼㫆㫊 㪼㫉㫐㫋㪿㫉㫆㪾㪸㫊㫋㪼㫉 㫅㪼㫆㪾㪸㪼㫌㫊 㫆㫉㪼㪸㫊 㪺㪸㫃㫃㫀㫊㫋㫀㪸 㪺㪸㫄㫌㫉㪸 㪺㪸㫄㫌㫉㪸 㪽㫆㫉㫄㫆㫊㪸 㪾㪸㫃㪸㪺㫋㫌㫉㪸 㪾㫀㪹㪹㫊㫀 㫃㪼㫇㫀㪻㪸 㫃㫌㫋㫉㪼㫅㫊㫀㫊 㫃㫌㫋㫉㪼㫅㫊㫀㫊 㫃㫌㫋㫉㪼㫅㫊㫀㫊 㫇㫉㫆㫊㪼㫉㫇㫀㫅㪸 㫊㫇㫀㫃㫆㫇㫋㪼㫉㪸 㫍㪼㫅㫌㫊㫋㪸 㫍㪼㫅㫌㫊㫋㪸
㩷㩷㩷㩷㪥㫆㫉㫋㪿㩷㪘㫄㪼㫉㫀㪺㪸㫅㩷㪣㪼㫌㪺㫀㫊㪺㫀㫅㪸㪼
㪪㫈㫌㪸㫃㫀㫌㫊 㪫㪼㫃㪼㫊㫋㪼㫊 㪫㪼㫃㪼㫊㫋㪼㫊 㪫㪼㫃㪼㫊㫋㪼㫊 㪫㪼㫃㪼㫊㫋㪼㫊 㪫㪼㫃㪼㫊㫋㪼㫊 㪫㫉㫀㪹㫆㫃㫆㪻㫆㫅 㪫㫉㫀㪹㫆㫃㫆㪻㫆㫅 㪫㫉㫀㪹㫆㫃㫆㪻㫆㫅 㪫㫉㫀㪹㫆㫃㫆㪻㫆㫅 㪫㫉㫀㪹㫆㫃㫆㪻㫆㫅 㪭㫀㫄㪹㪸 㪭㫀㫄㪹㪸 㪭㫀㫄㪹㪸 㪭㫀㫄㪹㪸 㪭㫀㫄㪹㪸
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㫇㪼㫉㪽㪸㫄㫀㫃㫐㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷
㪚 㪪㪼㫏
㪥㫆㫋㫉㫆㫇㫀㫊㩷㫃㫌㫋㫉㪼㫅㫊㫀㫊㩷㫃㪼㫇㫀㪻㫌㫊 㪥㫆㫋㫉㫆㫇㫀㫊 㪥㫆㫋㫉㫆㫇㫀㫊 㪥㫆㫋㫉㫆㫇㫀㫊 㪥㫆㫋㫉㫆㫇㫀㫊㩷㫇㫉㫆㫊㪼㫉㫇㫀㫅㫌㫊 㪥㫆㫋㫉㫆㫇㫀㫊㩷㫊㫇㫀㫃㫆㫇㫋㪼㫉㫌㫊 㪥㫆㫋㫉㫆㫇㫀㫊 㪥㫆㫋㫉㫆㫇㫀㫊㩷㫍㪼㫅㫌㫊㫋㫌㫊
㪥㫆㫋㫉㫆㫇㫀㫊㩷㪾㪸㫃㪸㪺㫋㫌㫉㫌㫊
㪧㪿㫆㫏㫀㫅㫌㫊 㪧㪿㫆㫏㫀㫅㫌㫊 㪥㫆㫋㫉㫆㫇㫀㫊㩷㪺㪸㫃㫃㫀㫊㫋㫀㫌㫊 㪥㫆㫋㫉㫆㫇㫀㫊㩷㪺㪸㫄㫌㫉㫌㫊 㪥㫆㫋㫉㫆㫇㫀㫊㩷㪺㪸㫄㫌㫉㫌㫊
㪟㫐㪹㫆㫇㫊㫀㫊㩷㫇㫃㫌㫄㪹㪼㪸 㪧㪿㫆㫏㫀㫅㫌㫊
㫍㫀㫄㪹㪸㩷 㫅㪸㫋㫀㫆㩷㪺㪸㫉㫀㫅㪸㫋㪸 㫍㫀㫄㪹㪸㩷 㫅㪸㫋㫀㫆㩷㪺㪸㫉㫀㫅㪸㫋㪸
㪉㪇㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪏㪪㪫㩷㪂㩷㪈㪇㪘
㪌㪇
㪤
㪌㪇
㪉㪋㪄㪉㪏㩷㪤㪆㪪㪤㩷㪂㩷㪉㪏㪄㪉㪋㩷㪪㪫㪆㪘
㪉 㪉
㪝㪃㩷㪤
㪝㪃㩷㪤
㪝㪃㩷㪤
㪉㪤㩷㪂㩷㪊㪏㪪㪤㩷㪂㩷㪈㪇㪘
㪏㪤㩷㪂㩷㪊㪏㪪㪤㩷㪂㩷㪋㩷㪪㪫㪆㪘 㪋㪏㩷㪤㪆㪪㪤㩷㪂㩷㪉㩷㪪㪫㪆㪘
㪌㪇 㪌㪇 㪌㪇
㪈㪉㪤㩷㪂㩷㪉㪋㪪㪤㩷㪂㩷㪈㪋㩷㪪㪫㪆㪘
㪐㪇
㪐㪍 㪐㪏
㪏㪍
㪐㪋
㪈㪇㪤㩷㪂㩷㪊㪋㪪㪤㩷㪂㩷㪍㪘
㪌㪇 㪌㪇
㪐㪋 㪈㪇㪇
㪌㪇㩷㪤㪆㪪㪤 㪈㪇㪤㩷㪂㩷㪊㪉㩷㪪㪤㪆㪪㪫㩷㪂㩷㪏㪘
㪌㪇 㪌㪇
㪐㪋
㪐㪏
㪏㪍 㪐㪉
㪌㪇
㪉㪇㪤㩷㪂㩷㪉㪏㪪㪤㩷㪂㩷㪉㩷㪪㪫㪆㪘 㪈㪇㪤㩷㪂㩷㪊㪋㪪㪤㩷㪂㩷㪍㪪㪫
㪌㪇 㪌㪇
㪐㪋
㪈㪇㪇 㪐㪉
㪈㪇㪇
㪉 㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪈㪇㪤㩷㪂㩷㪉㪍㪪㪤㩷㪂㩷㪈㪋㩷㪪㪫㪆㪘 㪈㪇㪤㩷㪂㩷㪊㪉㪪㪤㩷㪂㩷㪏㪪㪫
㪌㪇 㪌㪇
㪐㪍
㪈㪏㪤㩷㪂㩷㪉㪏㩷㪪㪤㪆㪪㪫㩷㪂㩷㪋㪘
㪌㪇
㪎㪋
㪉㪅㪋㩷㪝㪛
㪉㪅㪐㩷㪝㪛
㪉㪅㪋㩷㪝㪛
㪉㪅㪌㩷㪝㪛
㪉㪅㪋㩷㪝㪛
㪉㪅㪈㩷㪝㪛
㪉㪅㪌㩷㪝㪚㪤
㪉㪋㩷㪤㪆㪪㪤㩷㪂㩷㪉㪍㩷㪪㪫㪆㪘
㪌㪇
㪏㪏
㪈㪋㪤㩷㪂㩷㪉㪋㪪㪤㩷㪂㩷㪈㪉㩷㪪㪫㪆㪘
㪌㪇
㪉㪅㪊㩷㪝㪛
㪝㪃㩷㪤
㪐㪍 㪏㪍
㪏 㪍
㪉㪅㪍㩷㪝㪛 㪊㪅㪈㩷㪝㪚㪤㪃㩷㪉㪅㪏㩷㪝㪠㪘
㪈㪇㪤㩷㪂㩷㪊㪍㪪㪤㩷㪂㩷㪋㪘 㪈㪉㪤㩷㪂㩷㪉㪋㪪㪤㩷㪂㩷㪈㪋㩷㪪㪫㪆㪘
㪐㪍
㪈㪅㪏㩷㪝㪛
㪌㪇 㪌㪇
㪏㪏
㪎㪏
㪏㪊
㪏㪋
㪎㪍㪄㪏㪇
㪋
㪉㪅㪎㩷㪝㪚㪤
㪝㪃㩷㪤
㪈㪋㪤㩷㪂㩷㪉㪋㪪㪤㩷㪂㩷㪈㪉㩷㪪㪫㪆㪘
㪈㪉㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪈㪏㪪㪫㩷㪂㩷㪋㪘
㪈㪊㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪈㪎㩷㪪㪫㪆㪘㩷
㪈㪋㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪈㪍㩷㪪㪫㪆㪘㩷
㪐㪋 㪏㪋 㪏㪊
㪐㪉
㪐㪉 㪐㪋
㪐㪋
㪐㪇
㪐㪉
㪠 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪉㪅㪏㩷㪝㪚㪤
㪌㪇
㪈㪋㪤㩷㪂㩷㪊㪇㪪㪤㩷㪂㩷㪍㩷㪪㪫㪆㪘 㪈㪋㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪈㪍㩷㪪㪫㪆㪘㩷 㪈㪊㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪈㪎㩷㪪㪫㪆㪘㩷
㪐㪇
㪏㪇
㪏㪇 㪏㪍
㪐㪉
㪏㪉
㪏㪍 㪏㪉
㪏㪋
㪝 㪞 㪟 㪥㪝㪈 㪥㪝㪉 㪘㪾㪄 㪥㪦㪩㫊
㪌㪇
㪝㪃㩷㪤
㪌㪇 㪌㪇
㪌㪇
㪝
㪝㪃㩷㪤
㪌㪉 㪌㪇
㪝㪃㩷㪤
㪌㪇 㪌㪇
㪝 㪤
㪌㪇
㪈㪋㪤㩷㪂㩷㪉㪍㪪㪤㩷㪂㩷㪈㪇㪘
㪌㪇 㪤
㪈㪇㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪈㪉㪪㪫㩷㪂㩷㪏㪘
㪌㪇
㪈㪇㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪈㪉㪪㪫㩷㪂㩷㪏㪘 㪈㪋㪤㩷㪂㩷㪉㪉㪪㪤㩷㪂㩷㪏㪪㪫㩷㪂㩷㪍㪘
㪝㪃㩷㪤
㪌㪇 㪌㪇 㪌㪇
㪉㪇㪤㩷㪂㩷㪉㪉㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪍㪘
㪊㪍㩷㪤㪆㪪㪤㩷㪂㩷㪈㪋㪘 㪊㪉㩷㪤㪆㪪㪤㩷㪂㩷㪈㪏㪘
㪌㪇
㪈㪏㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪏㪪㪫㩷㪂㩷㪏㪘
㪌㪇 㪌㪇
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪌㪇
㪛 㪉㫅
㪝㪃㩷㪤
㪣㪼㫌㪺㫀㫊㪺㫌㫊㩷㫋㫌㫉㫊㫂㫐㫀㩷㫋㪼㫅㪼㫃㫃㫌㫊 㪝㪃㩷㪤 㪧㪸㫉㪸㫇㪿㫆㫏㫀㫅㫌㫊 㪝㪃㩷㪤 㪧㪸㫉㪸㫇㪿㫆㫏㫀㫅㫌㫊 㪝㪃㩷㪤 㪣㪼㫌㪺㫀㫊㪺㫌㫊㩷㫊㫆㫌㪽㪽㫀㪸㩷㫄㫌㫋㫀㪺㪼㫃㫃㫌㫊 㪤 㪚㪿㫆㫅㪻㫉㫆㫊㫋㫆㫄㪸 㪣㪼㫌㪺㫀㫊㪺㫌㫊㩷㫊㫆㫌㪽㪽㫀㪸㩷㪸㪾㪸㫊㫊㫀㫑㫀
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪫㪸㪹㫃㪼㩷㪍㪅㪈㪈㩷㩷㪦㫉㪻㪼㫉㩷㪚㪰㪧㪩㪠㪥㪠㪝㪦㪩㪤㪜㪪㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇 㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇 㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇 㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇 㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪯㪰㪃㩷㪘㪚㪥㪔㪌㪇
㪯㪯㪃㩷㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪯㪯㪃㩷㪘㪚㪥㪔㪌㪇 㪯㪰㪃㩷㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇 㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇 㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪬㪪㪘㩷㩿㪫㪯㪀
㪬㪪㪘㩷㩿㪦㪟㪀 㪬㪪㪘㩷㩿㪫㪯㪀
㪬㪪㪘㩷㩿㪫㪯㪀
㪬㪪㪘
㪬㪪㪘㩷㩿㪫㪯㪀 㪬㪪㪘㩷㩿㪫㪯㪀
㪬㪪㪘㩷㩿㪫㪯㪀
㪬㪪㪘㩷㩿㪘㪣㪀
㪬㪪㪘㩷㩿㪘㪩㪀
㪬㪪㪘㩷㩿㪣㪘㪀 㪬㪪㪘㩷㩿㪥㪤㪀
㪬㪪㪘㩷㩿㪣㪘㪀
㪬㪪㪘㩷㩿㪘㪣㪀
㪬㪪㪘㩷㩿㪭㪘㪀
㪬㪪㪘㩷㩿㪠㪣㪀 㪬㪪㪘㩷㩿㪤㪠㪃㩷㪮㪰㪀
㪚㪸㫅㪸㪻㪸㩷㩿㪨㫌㪼㪹㪼㪺㪀
㪬㪪㪘㩷㩿㪢㪰㪀
㪚㪸㫅㪸㪻㪸㩷㩿㪨㫌㪼㪹㪼㪺㪀
㪬㪪㪘㩷㩿㪦㪩㪀 㪬㪪㪘㩷㩿㪫㪯㪀
㪧㫆㫃㪸㫅㪻㩷㩿㪙㪸㫃㫋㫀㪺㩷㪪㪼㪸㩷㪹㪸㫊㫀㫅㪀
㪧㫆㫃㪸㫅㪻㩷㩿㪙㪸㫃㫋㫀㪺㩷㪪㪼㪸㩷㪹㪸㫊㫀㫅㪀
㪩㫌㫊㫊㫀㪸
㪧㫆㫃㪸㫅㪻㩷㩿㪙㪸㫃㫋㫀㪺㩷㪪㪼㪸㩷㪹㪸㫊㫀㫅㪀 㪧㫆㫃㪸㫅㪻㩷㩿㪙㪸㫃㫋㫀㪺㩷㪪㪼㪸㩷㪹㪸㫊㫀㫅㪀
㪢㫆㫉㪼㪸㩷㩿㪟㪸㪻㫆㫅㪾㪄㪾㫌㫅㪀
㪡㪸㫇㪸㫅
㪡㪸㫇㪸㫅㩷㩿㪟㫆㫂㫂㪸㫀㪻㫆㪀
㪡㪸㫇㪸㫅㩷㩿㪟㫆㫂㫂㪸㫀㪻㫆㪀 㪡㪸㫇㪸㫅
㪙㫆㫊㫅㫀㪸㪄㪟㪼㫉㫑㪼㪾㫆㫍㫀㫅㪸
㪚㫉㫆㪸㫋㫀㪸
㪠㫋㪸㫃㫐
㪚㫉㫆㪸㫋㫀㪸 㪙㫆㫊㫅㫀㪸㪄㪟㪼㫉㫑㪼㪾㫆㫍㫀㫅㪸
㪙㫆㫊㫅㫀㪸㪄㪟㪼㫉㫑㪼㪾㫆㫍㫀㫅㪸
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐 㪪㪄㪎㪐
㪚㪄㪍
㪞㪄 㪋 㪊 㪞㪄㪊㪈㪃㩷㪞㪄㪊㪌㪃㩷㪞㪄㪋㪏
㪘㪄㪋㪇㪃㩷㪞㪄㪋㪊㪃㩷㪞㪄㪏㪎
㪞㪄 㪊 㪍
㪞㪄㪊㪈㪃㩷㪞㪄㪊㪌㪃㩷㪞㪄㪋㪏 㪣㪄㪌㪇
㪘㪄㪊㪐㪃㩷㪘㪄㪋㪇㪃㩷㪞㪄㪏㪎
㪞㪄㪊㪐㩷
㪞㪄 㪋 㪊
㪞㪄㪋㪊㪃㩷㪞㪄㪏㪎 㪞㪄㪊㪐㩷
㪞㪄 㪊 㪊
㪛㪄㪍㪃㩷㪞㪄㪏㪎
㪡㪄㪈㪈㪃㩷㪞㪄㪏㪏㩷
㪞㪄㪊㪏㪃㩷㪞㪄㪍㪇 㪡㪄㪈㪈㪃㩷㪞㪄㪏㪏㪃㩷㪟㪄㪋㪈
㪣㪄㪈㪍㪃㩷㪞㪄㪏㪏
㪡㪄㪈㪈
㪣㪄㪈㪍
㪡㪄㪍 㪞㪄㪉㪏㪃㩷㪞㪄㪊㪌㪃㩷㪞㪄㪊㪍㪃㩷㪞㪄㪋㪏
㪩㪄㪐㪌
㪩㪄㪐㪌
㪪㪄㪎㪇
㪩㪄㪐㪌 㪩㪄㪐㪌
㪢㪄㪌㪌㪃㩷㪣㪄㪈㪉
㪫㪄㪋㪃㩷㪪㪄㪈㪋㪈
㪠㪄㪈㪎
㪠㪄㪈㪎 㪦㪄㪉㪉
㪪㪄㪎㪐
㪚㪄㪎㪈㪃㩷㪚㪄㪎㪌
㪚㪄㪊㪋
㪙㪄㪈㪐 㪙㪄㪈㪐
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
65
㪚㫐㫇㫉㫀㫅㪼㫃㫃㪸 㪛㫀㫆㫅㪻㪸 㪛㫀㫆㫅㪻㪸 㪛㫀㫆㫅㪻㪸 㪛㫀㫆㫅㪻㪸 㪛㫀㫆㫅㪻㪸 㪜㫏㫆㪾㫃㫆㫊㫊㫌㫄 㪞㫀㫃㪸 㪞㫀㫃㪸 㪞㫀㫃㪸 㪞㫀㫃㪸 㪞㫀㫃㪸 㪞㫀㫃㪸 㪟㪼㫄㫀㫋㫉㪼㫄㫀㪸 㪟㪼㫊㫇㪼㫉㫆㫃㪼㫌㪺㫌㫊 㪟㪼㫊㫇㪼㫉㫆㫃㪼㫌㪺㫌㫊 㪟㫐㪹㫆㪾㫅㪸㫋㪿㫌㫊 㪟㫐㪹㫆㪾㫅㪸㫋㪿㫌㫊 㪟㫐㪹㫆㪾㫅㪸㫋㪿㫌㫊 㪟㫐㪹㫆㫇㫊㫀㫊 㪣㪸㫍㫀㫅㫀㪸 㪣㪼㫇㫀㪻㫆㫄㪼㪻㪸 㪣㪼㫇㫀㪻㫆㫄㪼㪻㪸 㪣㪼㫇㫀㪻㫆㫄㪼㪻㪸 㪣㫌㫏㫀㫃㫌㫊 㪣㫌㫏㫀㫃㫌㫊 㪣㫌㫏㫀㫃㫌㫊 㪣㫌㫏㫀㫃㫌㫊 㪣㫌㫏㫀㫃㫌㫊 㪣㫌㫏㫀㫃㫌㫊 㪣㫌㫏㫀㫃㫌㫊 㪣㫌㫏㫀㫃㫌㫊 㪣㫌㫏㫀㫃㫌㫊 㪣㫌㫏㫀㫃㫌㫊 㪣㫌㫏㫀㫃㫌㫊 㪣㫌㫏㫀㫃㫌㫊 㪣㫐㫋㪿㫉㫌㫉㫌㫊 㪣㫐㫋㪿㫉㫌㫉㫌㫊 㪣㫐㫋㪿㫉㫌㫉㫌㫊 㪝㪃㩷㪤
㪍㪤㩷㪂㩷㪋㪇㪪㪤㩷㪂㩷㪋㪘 㪈㪋㪤㩷㪂㩷㪊㪋㪪㪤㩷㪂㩷㪉㩷㪪㪫㪆㪘 㪍㪤㩷㪂㩷㪊㪋㪪㪤㩷㪂㩷㪈㪇㩷㪪㪫㪆㪘 㪈㪉㪤㩷㪂㩷㪊㪇㪪㪤㩷㪂㩷㪏㩷㪪㪫㪆㪘
㪌㪇 㪌㪇 㪌㪇 㪌㪇
㪋㪏㩷㪤㪆㪪㪤㩷㪂㩷㪉㩷㪪㪫㪆㪘
㪈㪉㪤㩷㪂㩷㪊㪇㪪㪤㩷㪂㩷㪏㩷㪪㪫㪆㪘
㪌㪇
㪌㪇 㪌㪇
㪈㪇㪤㩷㪂㩷㪉㪏㪪㪤㩷㪂㩷㪈㪉㩷㪪㪫㪆㪘
㪌㪇
㪏㪤㩷㪂㩷㪊㪍㪪㪤㩷㪂㩷㪍㩷㪪㪫㪆㪘
㪈㪇㪤㩷㪂㩷㪉㪏㪪㪤㩷㪂㩷㪈㪉㩷㪪㪫㪆㪘
㪌㪇
㪌㪇
㪍㪤㩷㪂㩷㪋㪇㪪㪤㩷㪂㩷㪋㩷㪪㪫㪆㪘
㪌㪇
㪐㪍
㪈㪉㪤㩷㪂㩷㪊㪋㪪㪤㩷㪂㩷㪋㩷㪪㪫㪆㪘 㪏㪤㩷㪂㩷㪉㪏㪪㪤㩷㪂㩷㪈㪋㩷㪪㪫㪆㪘 㪋㪏㩷㪤㪆㪪㪤㩷㪂㩷㪉㩷㪪㪫㪆㪘
㪈㪋㪤㩷㪂㩷㪊㪉㩷㪪㪤㪆㪪㪫㩷㪂㩷㪋㪘 㪏㪤㩷㪂㩷㪊㪉㪪㪤㩷㪂㩷㪈㪇㩷㪪㪫㪆㪘
㪌㪇 㪌㪇 㪌㪇
㪈㪉㪤㩷㪂㩷㪊㪉㩷㪪㪤㪆㪪㪫㩷㪂㩷㪍㪘 㪈㪉㪤㩷㪂㩷㪊㪇㩷㪪㪤㪆㪪㪫㩷㪂㩷㪏㪘
㪌㪇 㪌㪇
㪌㪇 㪌㪇
㪐㪇
㪋㪉㩷㪤㪆㪪㪤㩷㪂㩷㪏㩷㪪㪫㪆㪘
㪌㪇
㪏㪏
㪐㪉 㪐㪏
㪐㪋
㪐㪉
㪐㪇
㪐㪍 㪐㪏
㪐㪉
㪏㪏
㪏㪏
㪐㪍
㪏㪍 㪐㪏
㪐㪉
㪐㪍
㪍㪤㩷㪂㩷㪊㪉㪪㪤㩷㪂㩷㪈㪉㩷㪪㪫㪆㪘 㪈㪍㪤㩷㪂㩷㪊㪇㪪㪤㩷㪂㩷㪋㪘
㪌㪇
㪐㪍
㪌㪇
㪈㪇㪤㩷㪂㩷㪊㪍㪪㪤㩷㪂㩷㪋㩷㪪㪫㪆㪘
㪌㪇 㪌㪇
㪉㪇㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪈㪇㪘
㪌㪇
㪐㪇
㪐㪋
㪌㪇
㪐㪍
㪐㪍
㪐㪋 㪐㪉
㪋
㪉
㪉
㪋 㪉
㪋
㪉
㪋
㪋
㪉 㪋
㪉
㪋
㪋
㪉
㪉
㪐㪍 㪋㪋㩷㪤㪆㪪㪤㩷㪂㩷㪍㩷㪪㪫㪆㪘
㪌㪇
㪋 㪋
㪌㪇 㪌㪇
㪋
㪏㪏
㪌㪇
㪈㪋㪤㩷㪂㩷㪉㪋㪪㪫㩷㪂㩷㪈㪉㪘
㪋 㪋
㪌㪇
㪋㪏 㪌㪇 㪌㪇
㪉
㪌㪇
㫊㫇㪅
㫄㪸㫏㫀㫃㫃㫀㫅㪾㫌㪸 㪹㫀㪺㫆㫃㫆㫉 㪼㫃㪼㪾㪸㫅㫊 㫅㫀㪾㫉㪼㫊㪺㪼㫅㫊 㫆㫉㪺㫌㫋㫋㫀 㫇㪸㫅㪻㫆㫉㪸 㫇㫌㫉㫇㫌㫉㪼㪸 㪽㫃㪸㫄㫄㪼㪸 㫊㫐㫄㫄㪼㫋㫉㫀㪺㫌㫊 㫊㫐㫄㫄㪼㫋㫉㫀㪺㫌㫊 㪿㪸㫐㫀 㫅㫌㪺㪿㪸㫃㫀㫊 㫇㫃㪸㪺㫀㫋㫌㫊 㪥㫆㫋㫉㫆㫇㫀㫊 㩷㩿㪟㫐㪹㫆㫇㫊㫀㫊 㪀 㪸㫄㪹㫃㫆㫇㫊 㪼㫏㫀㫃㫀㪺㪸㫌㪻㪸 㪸㫃㪹㫀㫍㪸㫃㫃㫀㫊 㫄㫆㫃㫃㫀㫊㫇㫀㫅㫀㫊 㫍㫀㫋㫋㪸㫋㪸 㪸㫃㪹㪼㫆㫃㫌㫊 㪺㪸㫉㪻㫀㫅㪸㫃㫀㫊 㪺㪼㫉㪸㫊㫀㫅㫌㫊 㪺㪿㫉㫐㫊㫆㪺㪼㫇㪿㪸㫃㫌㫊 㪥㫆㫋㫉㫆㫇㫀㫊 㪺㪿㫉㫐㫊㫆㪺㪼㫇㪿㪸㫃㫌㫊㩷㪺㪿㫉㫐㫊㫆㪺㪼㫇㪿㪸㫃㫌㫊 㪺㪿㫉㫐㫊㫆㪺㪼㫇㪿㪸㫃㫌㫊㩷㫀㫊㫆㫃㪼㫇㫀㫊 㪺㪿㫉㫐㫊㫆㪺㪼㫇㪿㪸㫃㫌㫊㩷㫀㫊㫆㫃㪼㫇㫀㫊 㪺㫆㪺㪺㫆㪾㪼㫅㫀㫊 㪺㫆㫉㫅㫌㫋㫌㫊 㪥㫆㫋㫉㫆㫇㫀㫊 㫇㫀㫃㫊㪹㫉㫐㫀 㪥㫆㫋㫉㫆㫇㫀㫊 㫑㫆㫅㪸㫋㫌㫊 㫑㫆㫅㫀㫊㫋㫀㫌㫊 㪸㫉㪻㪼㫅㫊 㪥㫆㫋㫉㫆㫇㫀㫊 㪹㪼㫃㫃㫌㫊 㪥㫆㫋㫉㫆㫇㫀㫊 㪽㫌㫄㪼㫌㫊 㪥㫆㫋㫉㫆㫇㫀㫊 㪐㪋
㪉
㪉
㪋㪋㩷㪤㪆㪪㪤㩷㪂㩷㪍㩷㪪㪫㪆㪘
㪐㪏
㪝 㪞 㪟 㪥㪝㪈 㪥㪝㪉 㪘㪾㪄 㪥㪦㪩㫊 㪉 㪉
㪉㪉㪤㩷㪂㩷㪉㪍㪪㪤㩷㪂㩷㪉㩷㪪㪫㪆㪘
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪌㪇 㪌㪇
㪌㪇
㪛 㪉㫅
㪉
㪝㪃㩷㪤
㪚 㪪㪼㫏
㪌㪇
㪥㫆㫋㫉㫆㫇㫀㫊
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪌㪇
㫎㪿㫀㫇㫇㫃㪼㫀 㪸㫉㪾㪼㫅㫋㫆㫊㪸 㪻㫀㪸㪹㫆㫃㫀 㪼㫇㫀㫊㪺㫆㫇㪸 㫊㪼㫉㪼㫅㪸
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㫇㪼㫉㪽㪸㫄㫀㫃㫐㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷
㪫㪸㪹㫃㪼㩷㪍㪅㪈㪈㩷㩷㪦㫉㪻㪼㫉㩷㪚㪰㪧㪩㪠㪥㪠㪝㪦㪩㪤㪜㪪㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀
㪉㪅㪍㩷㪝㪛
㪉㪅㪌㩷㪝㪛
㪉㪅㪌㩷㪝㪛
㪉㪅㪊㩷㪝㪛
㪉㪅㪌㩷㪝㪚㪤
㪉㪅㪏㩷㪝㪛
㪉㪅㪋㩷㪝㪛
㪉㪅㪇㩷㪝㪚㪤
㪉㪅㪇㩷㪝㪚㪤
㪉㪅㪈㩷㪝㪚㪤㪃㩷㪉㪅㪈㩷㪝㪛
㪉㪅㪈㩷㪝㪚㪤 㪉㪅㪇㩷㪝㪚㪤
㪉㪅㪌㩷㪝㪛
㪠 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇 㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇 㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇 㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇 㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪬㪪㪘㩷㩿㪘㪣㪀 㪬㪪㪘㩷㩿㪫㪯㪀
㪬㪪㪘㩷㩿㪘㪣㪀
㪬㪪㪘㩷㩿㪘㪣㪀
㪬㪪㪘㩷㩿㪘㪩㪀
㪬㪪㪘㩷㩿㪠㪣㪃㩷㪤㪠㪀 㪬㪪㪘㩷㩿㪤㪪㪃㩷㪘㪩㪀
㪬㪪㪘㩷㩿㪭㪘㪀
㪬㪪㪘㩷㩿㪦㪢㪀
㪬㪪㪘㩷㩿㪘㪣㪃㩷㪣㪘㪃㩷㪤㪪㪀
㪬㪪㪘㩷㩿㪘㪩㪀
㪬㪪㪘㩷㩿㪭㪘㪀 㪬㪪㪘㩷㩿㪣㪘㪀
㪬㪪㪘㩷㩿㪘㪩㪀
㪬㪪㪘㩷㩿㪭㪘㪀
㪬㪪㪘㩷㩿㪘㪱㪀
㪬㪪㪘㩷㩿㪥㪭㪀 㪬㪪㪘㩷㩿㪘㪱㪀
㪬㪪㪘㩷㩿㪚㪘㪀
㪬㪪㪘㩷㩿㪣㪘㪀
㪬㪪㪘㩷㩿㪫㪯㪀
㪬㪪㪘㩷㩿㪫㪯㪀 㪬㪪㪘㩷㩿㪣㪘㪀
㪬㪪㪘㩷㩿㪚㪘㪀
㪬㪪㪘㩷㩿㪚㪘㪀
㪬㪪㪘㩷㩿㪘㪣㪀
㪬㪪㪘㩷㩿㪥㪤㪀 㪬㪪㪘㩷㩿㪘㪱㪀
㪬㪪㪘㩷㩿㪚㪘㪀
㪬㪪㪘㩷㩿㪥㪤㪀
㪬㪪㪘㩷㩿㪥㪤㪀
㪚㪸㫅㪸㪻㪸㩷㩿㪨㫌㪼㪹㪼㪺㪀 㪬㪪㪘㩷㩿㪚㪘㪀
㪬㪪㪘㩷㩿㪫㪯㪀
㪬㪪㪘㩷㩿㪫㪯㪀
㪬㪪㪘㩷㩿㪫㪯㪃㩷㪥㪤㪀
㪬㪪㪘㩷㩿㪫㪯㪀 㪬㪪㪘㩷㩿㪫㪯㪀
㪬㪪㪘㩷㩿㪘㪩㪀
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪘㪄㪊㪐㪃㩷㪞㪄㪏㪎 㪞㪄 㪊 㪈
㪞㪄㪊㪍㪃㩷㪞㪄㪏㪎㪃㩷㪘㪄㪊㪐
㪧㪄㪋㪎
㪧㪄㪋㪎
㪞㪄㪍㪇㪃㩷㪧㪄㪋㪎 㪞㪄㪋㪊㪃㩷㪞㪄㪊㪏㪃㩷㪧㪄㪋㪎
㪧㪄㪋㪎
㪧㪄㪋㪎
㪧㪄㪋㪎
㪧㪄㪋㪎
㪧㪄㪋㪎 㪞㪄㪊㪈㪃㩷㪞㪄㪊㪏
㪧㪄㪋㪎
㪧㪄㪋㪎
㪬㪄㪍㪐
㪬㪄㪍㪐 㪬㪄㪍㪐
㪞㪄㪉㪎㪃㩷㪞㪄㪋㪋㪃㩷㪞㪄㪋㪌㪃㩷㪡㪄㪍
㪞㪄 㪊 㪊
㪞㪄㪊㪍㪃㩷㪞㪄㪏㪎㪃㩷㪘㪄㪊㪐
㪞㪄 㪉 㪏 㪞㪄㪊㪊
㪞㪄 㪍 㪈
㪞㪄 㪉 㪎
㪘㪄㪊㪐㪃㩷㪘㪄㪋㪇㪃㩷㪞㪄㪏㪎
㪡㪄㪍 㪡㪄㪍
㪞㪄㪍㪈㪃㩷㪡㪄㪍
㪡㪄㪍
㪡㪄㪍
㪣㪄㪈㪍 㪞㪄 㪉 㪎
㪞㪄 㪏 㪍
㪞㪄 㪏 㪍
㪞㪄㪊㪊㪃㩷㪞㪄㪏㪍
㪞㪄 㪏 㪍 㪞㪄 㪏 㪍
㪞㪄㪊㪏㪃㩷㪞㪄㪋㪊
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
66
㪹㫆㫆㫇㫊
㪹㫉㪸㫐㫋㫆㫅㫀 㪹㫌㪺㪺㪸㫋㫌㫊 㪹㫌㪺㪿㪸㫅㪸㫅㫀 㪺㪿㫉㫆㫊㫆㫄㫌㫊 㪻㫆㫉㫊㪸㫃㫀㫊 㫁㪼㫄㪼㫑㪸㫅㫌㫊 㫃㫆㫅㪾㫀㫉㫆㫊㫋㫉㫀㫊 㪺㪽㩷㫃㫆㫅㪾㫀㫉㫆㫊㫋㫉㫀㫊 㫄㪸㪺㫌㫃㪸㫋㫌㫊 㫅㫌㪹㫀㫃㫌㫊 㫆㫏㫐㫉㪿㫐㫅㪺㪿㫌㫊 㫇㪼㫋㪼㫉㫊㫆㫅㫀 㫇㫆㫋㫋㪼㫉㫀 㫊㪸㪹㫀㫅㪸㪼 㫊㪿㫌㫄㪸㫉㪻㫀 㫊㫋㫀㫃㪹㫀㫌㫊 㫊㫋㫉㪸㫄㫀㫅㪼㫌㫊 㫊㫋㫉㪸㫄㫀㫅㪼㫌㫊 㫋㪼㫏㪸㫅㫌㫊 㫋㪼㫏㪸㫅㫌㫊 㫍㫆㫃㫌㪺㪼㫃㫃㫌㫊 㫍㫆㫃㫌㪺㪼㫃㫃㫌㫊 㪼㫄㫀㫃㫀㪸㪼 㪼㫄㫀㫃㫀㪸㪼
㪥㫆㫋㫉㫆㫇㫀㫊 㪥㫆㫋㫉㫆㫇㫀㫊 㪥㫆㫋㫉㫆㫇㫀㫊 㪥㫆㫋㫉㫆㫇㫀㫊 㪥㫆㫋㫉㫆㫇㫀㫊 㪥㫆㫋㫉㫆㫇㫀㫊 㪥㫆㫋㫉㫆㫇㫀㫊 㪥㫆㫋㫉㫆㫇㫀㫊 㪥㫆㫋㫉㫆㫇㫀㫊 㪥㫆㫋㫉㫆㫇㫀㫊 㪥㫆㫋㫉㫆㫇㫀㫊 㪥㫆㫋㫉㫆㫇㫀㫊 㪥㫆㫋㫉㫆㫇㫀㫊 㪥㫆㫋㫉㫆㫇㫀㫊 㪥㫆㫋㫉㫆㫇㫀㫊 㪥㫆㫋㫉㫆㫇㫀㫊 㪥㫆㫋㫉㫆㫇㫀㫊 㪥㫆㫋㫉㫆㫇㫀㫊 㪥㫆㫋㫉㫆㫇㫀㫊 㪥㫆㫋㫉㫆㫇㫀㫊 㪥㫆㫋㫉㫆㫇㫀㫊 㪥㫆㫋㫉㫆㫇㫀㫊 㪦㫇㫊㫆㫇㫆㪼㫆㪻㫌㫊 㪦㫇㫊㫆㫇㫆㪼㫆㪻㫌㫊
㫉㫆㫊㪼㫀㫇㫀㫅㫅㫀㫊 㫌㫄㪹㫉㪸㫋㫀㫃㫀㫊 㪸㪼㫊㫋㫀㫍㪸㫃㫀㫊 㫄㪸㫉㪾㪸㫉㫀㫋㪸 㪽㫌㫃㪾㫀㪻㪸 㪺㫆㫅㫆㪺㪼㫇㪿㪸㫃㫌㫊 㫃㪼㫇㫋㫆㪺㪼㫇㪿㪸㫃㫌㫊 㫄㫀㪺㫉㫆㫇㫆㪾㫆㫅 㪺㫉㫐㫊㫆㫃㪼㫌㪺㫌㫊 㪺㫉㫐㫊㫆㫃㪼㫌㪺㫌㫊 㪸㫄㪸㪹㫀㫃㫀㫊 㪸㫋㪿㪼㫉㫀㫅㫆㫀㪻㪼㫊 㪸㫋㫉㫆㪺㪸㫌㪻㪸㫃㫀㫊 㪹㪸㫀㫃㪼㫐㫀
㪥㫆㫋㫉㫆㫇㫀㫊 㪥㫆㫋㫉㫆㫇㫀㫊
㪣㫐㫋㪿㫉㫌㫉㫌㫊 㪣㫐㫋㪿㫉㫌㫉㫌㫊 㪤㪸㪺㫉㪿㫐㪹㫆㫇㫊㫀㫊 㪤㪸㫉㪾㪸㫉㫀㫊㪺㫌㫊 㪤㪼㪻㪸 㪤㫐㫃㫆㫇㪿㪸㫉㫆㪻㫆㫅 㪥㫆㪺㫆㫄㫀㫊 㪥㫆㪺㫆㫄㫀㫊 㪥㫆㫋㪼㫄㫀㪾㫆㫅㫌㫊 㪥㫆㫋㪼㫄㫀㪾㫆㫅㫌㫊 㪥㫆㫋㫉㫆㫇㫀㫊 㪥㫆㫋㫉㫆㫇㫀㫊 㪥㫆㫋㫉㫆㫇㫀㫊
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㫇㪼㫉㪽㪸㫄㫀㫃㫐㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷
㪥㫆㫋㫉㫆㫇㫀㫊
㪜㫉㫀㪺㫐㫄㪹㪸㩷㪹㫌㪺㪺㪸㫋㪸
㪥㫆㫋㫉㫆㫇㫀㫊 㪥㫆㫋㫉㫆㫇㫀㫊 㪟㫐㪹㫆㫇㫊㫀㫊 㪪㪼㫄㫆㫋㫀㫃㫌㫊
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪫㪸㪹㫃㪼㩷㪍㪅㪈㪈㩷㩷㪦㫉㪻㪼㫉㩷㪚㪰㪧㪩㪠㪥㪠㪝㪦㪩㪤㪜㪪㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀
㪝㪃㩷㪤
㪝㪃㩷㪤
㪝㪃㩷㪤
㪝㪃㩷㪤
㪝㪃㩷㪤
㪚 㪪㪼㫏
㪋㪍㩷㪤㪆㪪㪤㩷㪂㩷㪋㩷㪪㪫㪆㪘 㪉㪤㩷㪂㩷㪊㪇㪪㪤㩷㪂㩷㪈㪍㪘
㪌㪇 㪋㪏
㪏㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪈㪍㪪㪫㩷㪂㩷㪍㪘
㪈㪋㪤㩷㪂㩷㪉㪏㪪㪤㩷㪂㩷㪏㩷㪪㪫㪆㪘
㪌㪇
㪌㪇
㪉㪤㩷㪂㩷㪋㪉㪪㪤㩷㪂㩷㪍㪘
㪌㪇
㪎㪏
㪐㪍 㪏㪇
㪐㪉
㪐㪋
㪐㪏
㪈㪇㪇
㪐㪋
㪐㪋
㪐㪏
㪉
㪉
㪉
㪉㪅㪈㩷㪝㪛
㪉㪅㪌㩷㪝㪛
㩿㪉㪅㪎㩷㪝㪛㪀
㪋㪏㩷㪤㪆㪪㪤㩷㪂㩷㪉㪘
㪌㪇
㪉㪅㪎㩷㪝㪛 㪉㪅㪌㩷㪝㪛
㪉
㪉
㪋
㪉㪅㪋㩷㪝㪛
㪉㪅㪈㩷㪝㪛
㪉㪅㪋㩷㪝㪛
㪉㪅㪌㩷㪝㪛 㪐㪉 㪈㪇㪇
㪈㪇㪇
㪋 㪉
㪉
㪉
㪉
㪉 㪉
㪉
㪉㪅㪌㩷㪝㪛
㪉㪅㪊㩷㪝㪛
㪉㪅㪍㩷㪝㪛
㪉㪅㪏㩷㪝㪛 㪉㪅㪉㩷㪝㪛
㪉㪅㪋㩷㪝㪛 㪉㪅㪐㩷㪝㪛
㪉㪅㪌㩷㪝㪛
㪉㪅㪊㩷㪝㪛
㪉㪅㪌㩷㪝㪛
㪏㪤㩷㪂㩷㪊㪋㪪㪤㩷㪂㩷㪏㩷㪪㪫㪆㪘 㪈㪍㪤㩷㪂㩷㪊㪋㪪㪤
㪐㪏
㪈㪇㪇
㪈㪇㪇 㪐㪏
㪐㪏
㪈㪇㪇 㪐㪉
㪐㪉
㪉
㪉
㪉
㪉 㪉
㪉
㪉
㪋
㪌㪇 㪌㪇
㪈㪋㪤㩷㪂㩷㪊㪋㪪㪤㩷㪂㩷㪉㩷㪪㪫㪆㪘
㪌㪇
㪏㪏 㪐㪍
㪐㪋
㪏㪏 㪏㪏
㪐㪉
㪈㪇㪇
㪐㪉
㪐㪋
㪈㪇㪇 㪈㪇㪇
㪐㪋
㪐㪇
㪐㪉
㪌㪇
㪌㪇㩷㪤㪆㪪㪤
㪌㪇
㪐㪏
㪋㪏㩷㪤㪆㪪㪤㩷㪂㩷㪉㪘
㪈㪍㪤㩷㪂㩷㪊㪇㪪㪤㩷㪂㩷㪋㩷㪪㪫㪆㪘
㪌㪇 㪏㪤㩷㪂㩷㪊㪇㪪㪤㩷㪂㩷㪈㪉㪪㪫 㪈㪉㪤㩷㪂㩷㪊㪋㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪉㪘
㪈㪇㪤㩷㪂㩷㪊㪋㪪㪤㩷㪂㩷㪍㩷㪪㪫㪆㪘
㪌㪇 㪌㪇
㪈㪇㪤㩷㪂㩷㪉㪏㪪㪤㩷㪂㩷㪈㪉㪪㪫 㪏㪤㩷㪂㩷㪊㪇㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪏㪘
㪌㪇 㪌㪇
㪌㪇 㪌㪇
㪐㪍
㪋㪉㩷㪤㪆㪪㪤㩷㪂㩷㪏㪘
㪌㪇
㪐㪉
㪐㪉
㪋㪉㩷㪤㪆㪪㪤㩷㪂㩷㪏㪘 㪈㪇㪤㩷㪂㩷㪊㪉㪪㪤㩷㪂㩷㪏㪪㪫
㪌㪇
㪐㪋
㪏㪋
㪏㪉 㪏㪏
㪐㪏 㪐㪍
㪐㪏
㪏㪍
㪌㪇
㪏㪤㩷㪂㩷㪊㪍㪪㪤㩷㪂㩷㪍㩷㪪㪫㪆㪘
㪈㪋㪤㩷㪂㩷㪉㪇㩷㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪍㪘
㪌㪇 㪌㪇
㪌㪇
㪋㪤㩷㪂㩷㪉㪏㪪㪤㩷㪂㩷㪈㪏㪪㪫 㪍㪤㩷㪂㩷㪊㪉㪪㪤㩷㪂㩷㪈㪉㪪㪫
㪈㪋㪤㩷㪂㩷㪊㪋㪪㪤㩷㪂㩷㪉㩷㪪㪫㪆㪘 㪈㪍㪤㩷㪂㩷㪊㪉㪪㪤㩷㪂㩷㪉㩷㪪㪫㪆㪘 㪈㪇㪤㩷㪂㩷㪊㪍㪪㪤㩷㪂㩷㪋㪘
㪌㪇 㪌㪇 㪌㪇 㪌㪇 㪌㪇
㪈㪍㪤㩷㪂㩷㪉㪋㩷㪪㪤㪆㪪㪫㩷㪂㩷㪈㪇㪘 㪈㪉㪤㩷㪂㩷㪉㪋㪪㪤㩷㪂㩷㪏㪪㪫㩷㪂㩷㪍㪘
㪌㪇 㪌㪇
㪐㪉
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇 㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇 㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇 㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇 㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇 㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇 㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪬㪪㪘㩷㩿㪣㪘㪀
㪬㪪㪘㩷㩿㪫㪯㪀 㪬㪪㪘㩷㩿㪫㪯㪀
㪬㪪㪘㩷㩿㪫㪯㪃㩷㪘㪣㪀
㪬㪪㪘㩷㩿㪫㪯㪀
㪬㪪㪘㩷㩿㪫㪯㪀
㪬㪪㪘㩷㩿㪫㪯㪃㩷㪦㪢㪀 㪬㪪㪘㩷㩿㪫㪯㪀
㪬㪪㪘㩷㩿㪘㪣㪀
㪬㪪㪘㩷㩿㪫㪯㪀
㪬㪪㪘㩷㩿㪫㪯㪀
㪬㪪㪘㩷㩿㪝㪣㪀 㪬㪪㪘㩷㩿㪫㪯㪀
㪬㪪㪘㩷㩿㪫㪯㪀
㪬㪪㪘㩷㩿㪘㪩㪀
㪬㪪㪘㩷㩿㪣㪘㪀
㪬㪪㪘㩷㩿㪣㪘㪀 㪬㪪㪘㩷㩿㪘㪣㪀
㪬㪪㪘㩷㩿㪫㪯㪀
㪬㪪㪘㩷㩿㪠㪣㪀
㪬㪪㪘㩷㩿㪘㪣㪀
㪬㪪㪘㩷㩿㪣㪘㪀 㪬㪪㪘㩷㩿㪫㪯㪀
㪬㪪㪘㩷㩿㪫㪯㪀
㪬㪪㪘㩷㩿㪤㪪㪀 㪬㪪㪘㩷㩿㪦㪢㪀
㪬㪪㪘㩷㩿㪫㪯㪀 㪬㪪㪘㩷㩿㪫㪯㪀
㪬㪪㪘㩷㩿㪫㪯㪀
㪬㪪㪘㩷㩿㪚㪘㪀
㪬㪪㪘㩷㩿㪫㪯㪀
㪬㪪㪘㩷㩿㪣㪘㪀 㪬㪪㪘㩷㩿㪮㪭㪀
㪬㪪㪘㩷㩿㪚㪘㪀
㪈㪋㪤㩷㪂㩷㪉㪏㪪㪤㩷㪂㩷㪏㪘
㪉㪅㪎㩷㪝㪚㪤
㪌㪇 㪌㪇
㪋
㪋㪋㩷㪤㪆㪪㪤㩷㪂㩷㪍㩷㪪㪫㪆㪘
㪌㪇
㪘㪚㪥㪔㪌㪇
㪬㪪㪘㩷㩿㪣㪘㪀 㪬㪪㪘㩷㩿㪫㪯㪃㩷㪦㪢㪀 㪬㪪㪘㩷㩿㪘㪣㪃㩷㪫㪯㪀 㪬㪪㪘㩷㩿㪘㪩㪀
㪐㪋
㪘㪚㪥㪔㪌㪇 㪘㪚㪥㪔㪌㪇 㪘㪚㪥㪔㪌㪇
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪚㪸㫅㪸㪻㪸㩷㩿㪨㫌㪼㪹㪼㪺㪀 㪐㪉
㪉㪅㪎㩷㪝㪛 㪉㪅㪌㩷㪝㪛
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪈㪏㪤㩷㪂㩷㪉㪋㩷㪪㪤㪆㪪㪫㩷㪂㩷㪏㪘
㪐㪋
㪋 㪋
㪠 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪌㪇
㪈㪇㪇 㪎㪉
㪐㪏
㪝 㪞 㪟 㪥㪝㪈 㪥㪝㪉 㪘㪾㪄 㪥㪦㪩㫊
㪌㪇
㪋㪏㩷㪤㪆㪪㪤㩷㪂㩷㪉㩷㪪㪫㪆㪘 㪌㪇㩷㪤㪆㪪㪤 㪍㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪉㪉㪪㪫㩷㪂㩷㪍㪘
㪌㪇 㪌㪇
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪌㪇
㪛 㪉㫅
㪞㪄㪊㪌㪃㩷㪞㪄㪊㪍㪃㩷㪘㪄㪊㪐
㪞㪄 㪊 㪈 㪚㪄㪍
㪘㪄㪋㪈㪃㩷㪞㪄㪏㪎
㪚㪄㪍
㪘㪄㪋㪇㪃㩷㪞㪄㪊㪈㪃㩷㪞㪄㪏㪎
㪘㪄㪋㪈㪃㩷㪞㪄㪊㪏 㪞㪄 㪊 㪊
㪛㪄㪍㪃㩷㪞㪄㪏㪎
㪞㪄㪊㪈㪃㩷㪞㪄㪊㪍㪃㩷㪞㪄㪊㪏
㪞㪄㪊㪈㪃㩷㪞㪄㪊㪐
㪞㪄㪊㪐 㪞㪄㪊㪊㪃㩷㪞㪄㪊㪍㪃㩷㪞㪄㪏㪎
㪘㪄㪋㪇㪃㩷㪞㪄㪊㪈㪃㩷㪞㪄㪏㪎
㪞㪄㪊㪏㪃㩷㪞㪄㪋㪊
㪘㪄㪋㪈
㪞㪄㪊㪈㪃㩷㪞㪄㪊㪍 㪞㪄㪊㪍㪃㩷㪘㪄㪊㪐
㪘㪄㪊㪐㪃㩷㪘㪄㪋㪇
㪞㪄㪊㪐
㪘㪄㪊㪐㪃㩷㪞㪄㪏㪎
㪞㪄㪊㪊㪃㩷㪞㪄㪏㪎 㪘㪄㪋㪈
㪞㪄㪊㪍㪃㩷㪞㪄㪏㪎㪃㩷㪘㪄㪊㪐
㪞㪄㪋㪊㪃㩷㪞㪄㪏㪎 㪞㪄㪊㪏㪃㩷㪞㪄㪊㪐㪃㩷㪚㪄㪎㪌
㪞㪄㪊㪊㪃㩷㪞㪄㪏㪎 㪞㪄㪊㪊㪃㩷㪞㪄㪏㪎
㪘㪄㪋㪇㪃㩷㪞㪄㪊㪊㪃㩷㪞㪄㪏㪎
㪞㪄㪉㪎㪃㩷㪞㪄㪊㪌㪃㩷㪞㪄㪊㪍㪃㩷㪞㪄㪊㪏㪃㩷㪞㪄㪋㪏
㪣㪄㪌㪇
㪘㪄㪋㪇㪃㩷㪞㪄㪊㪊㪃㩷㪞㪄㪏㪎 㪤㪄㪐㪇
㪞㪄㪉㪎㪃㩷㪞㪄㪋㪋㪃㩷㪞㪄㪋㪌㪃㩷㪡㪄㪍
㪬㪄㪍㪐
㪣㪄㪈㪍
㪘㪄㪋㪇㪃㩷㪞㪄㪊㪈㪃㩷㪞㪄㪊㪏 㪞㪄㪉㪏㪃㩷㪞㪄㪊㪍㪃㩷㪞㪄㪏㪎
㪞㪄 㪊 㪈
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
67
㫄㫀㪺㫉㫆㫃㪼㫇㫀㪻㫆㫋㫌㫊 㫄㫀㫉㪸㪹㫀㫃㫀㫊 㫅㫆㫋㪸㫋㫌㫊 㫅㫆㫋㪸㫋㫌㫊 㫇㫉㫆㫄㪼㫃㪸㫊 㫍㫀㪾㫀㫃㪸㫏 㪸㫉㪾㪼㫅㫋㫀㫊㫊㫀㫄㫌㫊 㫄㪸㪺㫉㫆㫃㪼㫇㫀㪻㫆㫋㫌㫊 㪿㫌㪹㪹㫊㫀 㫊㫀㪾㫅㫀㫇㫀㫅㫅㫀㫊 㫎㪼㫃㪸㫂㪸 㪾㫉㪸㫅㪻㫀㫊 㫃㫌㪺㫀㫌㫊 㫆㫉㪼㪾㫆㫅㪼㫅㫊㫀㫊 㫌㫄㫇㫈㫌㪸㪼 㪺㪽㪅㩷㫌㫄㫇㫈㫌㪸㪼 㪸㫋㫉㪸㫋㫌㫃㫌㫊 㪺㪸㫋㪸㫉㪸㪺㫋㪸㪼 㪺㪸㫋㪸㫉㪸㪺㫋㪸㪼 㪺㫆㪹㫀㫋㫀㫊 㪼㫍㪼㫉㫄㪸㫅㫅㫀 㫆㫊㪺㫌㫃㫌㫊 㪺㪽㪅㩷㫆㫊㪺㫌㫃㫌㫊 㪹㪸㫃㫋㪼㪸㫋㫌㫊 㪼㪾㫉㪼㪾㫀㫌㫊 㪸㫋㫉㫆㫄㪸㪺㫌㫃㪸㫋㫌㫊 㪸㫋㫉㫆㫄㪸㪺㫌㫃㪸㫋㫌㫊 㪺㫆㫉㫇㫆㫉㪸㫃㫀㫊
㪘㫄㪹㫃㫐㫇㪿㪸㫉㫐㫅㪾㫆㪻㫆㫅 㪘㫄㪹㫃㫐㫇㪿㪸㫉㫐㫅㪾㫆㪻㫆㫅 㪘㫊㫇㫀㪻㫆㫇㪸㫉㫀㪸 㪘㫊㫇㫀㪻㫆㫇㪸㫉㫀㪸 㪘㫊㫇㫀㪻㫆㫇㪸㫉㫀㪸 㪙㪸㫉㫀㫃㫀㫌㫊 㪙㪸㫉㫀㫃㫀㫌㫊 㪙㪸㫉㫀㫃㫀㫌㫊 㪙㪸㫉㫀㫃㫀㫌㫊 㪙㪸㫉㫀㫃㫀㫌㫊
㫄㫀㪺㫉㫆㫃㪼㫇㫀㫊 㫄㫆㫃㪸 㫄㫆㫉㪸㫉 㫄㫆㫉㪸㫉 㫄㫆㫉㪸㫉 㪹㪸㫂㪼㫉㫀 㪹㪸㫉㫀㫃㪸 㪹㪸㫉㫅㪸 㪹㪼㫅㪻㪼㫃㫀㫊㫀㫊 㪹㪼㫅㪻㪼㫃㫀㫊㫀㫊
㩷㩷㪩㪸㫊㪹㫆㫉㫀㫅㪸㪼㩷㩿㪔㩷㪛㪸㫅㫀㫆㫅㫀㫅㪸㪼㪀
㪦㫉㫋㪿㫆㪻㫆㫅 㪧㪿㪼㫅㪸㪺㫆㪹㫀㫌㫊 㪧㫀㫄㪼㫇㪿㪸㫃㪼㫊 㪧㫀㫄㪼㫇㪿㪸㫃㪼㫊 㪧㫀㫄㪼㫇㪿㪸㫃㪼㫊 㪧㫀㫄㪼㫇㪿㪸㫃㪼㫊 㪧㫃㪸㪾㫆㫇㫋㪼㫉㫌㫊 㪧㫆㪾㫆㫅㫀㪺㪿㫋㪿㫐㫊 㪧㫋㪼㫉㫆㫅㫆㫋㫉㫆㫇㫀㫊 㪧㫋㪼㫉㫆㫅㫆㫋㫉㫆㫇㫀㫊 㪧㫋㪼㫉㫆㫅㫆㫋㫉㫆㫇㫀㫊 㪧㫋㫐㪺㪿㫆㪺㪿㪼㫀㫃㫌㫊 㪧㫋㫐㪺㪿㫆㪺㪿㪼㫀㫃㫌㫊 㪧㫋㫐㪺㪿㫆㪺㪿㪼㫀㫃㫌㫊 㪧㫋㫐㪺㪿㫆㪺㪿㪼㫀㫃㫌㫊 㪧㫋㫐㪺㪿㫆㪺㪿㪼㫀㫃㫌㫊 㪩㪿㫀㫅㫀㪺㪿㫋㪿㫐㫊 㪩㪿㫀㫅㫀㪺㪿㫋㪿㫐㫊 㪩㪿㫀㫅㫀㪺㪿㫋㪿㫐㫊 㪩㪿㫀㫅㫀㪺㪿㫋㪿㫐㫊 㪩㪿㫀㫅㫀㪺㪿㫋㪿㫐㫊 㪩㪿㫀㫅㫀㪺㪿㫋㪿㫐㫊 㪩㪿㫀㫅㫀㪺㪿㫋㪿㫐㫊 㪩㫀㪺㪿㪸㫉㪻㫊㫆㫅㫀㫌㫊 㪩㫀㪺㪿㪸㫉㪻㫊㫆㫅㫀㫌㫊 㪪㪼㫄㫆㫋㫀㫃㫌㫊 㪪㪼㫄㫆㫋㫀㫃㫌㫊 㪪㪼㫄㫆㫋㫀㫃㫌㫊
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㫇㪼㫉㪽㪸㫄㫀㫃㫐㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷
㪺㫆㪹㫀㫋㫌㫊
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪫㪸㪹㫃㪼㩷㪍㪅㪈㪈㩷㩷㪦㫉㪻㪼㫉㩷㪚㪰㪧㪩㪠㪥㪠㪝㪦㪩㪤㪜㪪㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀
㪐㪏
㪐㪍 㪐㪍
㪘㪚㪥㪔㪌㪇
㪌㪇 㪌㪇 㪌㪇
㪝 㪝㪃㩷㪤 㪝㪃㩷㪤
㪌㪇 㪌㪇
㪉㪋㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪍㪘
㪋㪏
㪤 㪝
㪈㪋㪤㩷㪂㩷㪉㪏㪪㪤㩷㪂㩷㪍㪘
㪌㪇 㪋㪏
㪝 㪝
㪈㪉㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪈㪏㪘
㪍㪤㩷㪂㩷㪈㪏㪪㪤㩷㪂㩷㪉㪇㪪㪫㩷㪂㩷㪍㪘
㪏㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪈㪉㪪㪫㩷㪂㩷㪈㪋㪘 㪍㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪈㪇㩷㪪㪫㩷㪂㩷㪉㪏㪘㩷
㪏㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪏㪪㪫㩷㪂㩷㪈㪋㪘
㪏㪤㩷㪂㩷㪈㪏㪪㪤㩷㪂㩷㪈㪋㪪㪫㩷㪂㩷㪈㪇㪘 㪏㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪊㪋㪘
㪈㪉㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪏㪪㪫㩷㪂㩷㪈㪇㪘
㪌㪇 㪌㪇
㪝
㪎㪍
㪎㪋
㪎㪋 㪍㪉
㪎㪏
㪏㪏
㪐㪇
㪎㪍 㪍㪉
㪏㪉
㪏㪉
㪐㪋
㪏㪍 㪎㪉
㪏㪍
㪐㪋
㪐㪇
㪐㪇
㪐㪇
㪉
㪉
㪋
㪉㪉㪤㩷㪂㩷㪉㪋㪪㪤㩷㪂㩷㪋㪘
㪌㪇
㪐㪍
㪍
㪌㪉 㪌㪉
㪏 㪊㪍㩷㪤㪆㪪㪤㩷㪂㩷㪈㪋㩷㪪㪫㪆㪘㩷
㪌㪇
㪉㪅㪌㩷㪝㪠㪘
㪉㪅㪌㩷㪝㪛
㪉㪅㪎㩷㪝㪚㪤
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇 㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪠㫅㪻㫀㪸㩷㩿㪡㪸㫄㫄㫌㪀
㪠㫅㪻㫀㪸㩷㩿㪮㪙㪀 㪠㫅㪻㫀㪸㩷㩿㪙㫀㪿㪸㫉㪀
㪠㫅㪻㫀㪸㩷㩿㪙㫀㪿㪸㫉㪀
㪠㫅㪻㫀㪸㩷㩿㪮㪅㩷㪞㪿㪸㫋㫊㪀
㪠㫅㪻㫀㪸㩷㩿㪘㫊㫊㪸㫄㪀
㪠㫅㪻㫀㪸㩷㩿㪡㩷㩽㩷㪢㪀 㪠㫅㪻㫀㪸㩷㩿㪙㫀㪿㪸㫉㪀
㪠㫅㪻㫀㪸㩷㩿㪮㪙㪀
㪠㫅㪻㫀㪸㩷㩿㪮㪙㪀
㪚㪸㫅㪸㪻㪸㩷㩿㪨㫌㪼㪹㪼㪺㪀 㪚㪸㫅㪸㪻㪸㩷㩿㪨㫌㪼㪹㪼㪺㪀
㪬㪪㪘㩷㩿㪫㪯㪃㩷㪤㪪㪃㩷㪠㪣㪀
㪬㪪㪘㩷㩿㪚㪘㪀
㪬㪪㪘㩷㩿㪦㪩㪀
㪬㪪㪘㩷㩿㪘㪱㪀 㪬㪪㪘㩷㩿㪦㪩㪀
㪌㪇
㪥㪅㩷㪘㫄㪼㫉㫀㪺㪸
㪬㪪㪘㩷㩿㪘㪱㪀
㪬㪪㪘㩷㩿㪮㪭㪀
㪬㪪㪘㩷㩿㪥㪰㪃㩷㪘㪣㪀 㪬㪪㪘㩷㩿㪥㪰㪃㩷㪥㪤㪀
㪬㪪㪘㩷㩿㪦㪩㪀
㪬㪪㪘㩷㩿㪦㪩㪀
㪬㪪㪘㩷㩿㪦㪩㪀
㪬㪪㪘㩷㩿㪚㪘㪀 㪬㪪㪘㩷㩿㪥㪤㪀
㪬㪪㪘㩷㩿㪣㪘㪀
㪬㪪㪘㩷㩿㪣㪘㪀
㪬㪪㪘㩷㩿㪫㪯㪀
㪬㪪㪘㩷㩿㪚㪘㪀
㪬㪪㪘㩷㩿㪫㪯㪀 㪬㪪㪘㩷㩿㪘㪱㪃㩷㪥㪤㪀
㪍 㪍 㪉㪅㪌㩷㪝㪚㪤
㪘㪚㪥㪔㪌㪇 㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇 㪘㪚㪥㪔㪌㪇
㪌㪇 㪌㪇 㪏㪍
㪉㪅㪍㩷㪝㪛
㪉㪅㪌㪄㪉㪅㪏㩷㪝㪚㪤
㪉㪅㪏㩷㪝㪚㪤
㪉㪅㪍㩷㪝㪚㪤 㪉㪅㪌㩷㪝㪚㪤
㪉㪅㪉㩷㪝㪛
㪉㪅㪉㩷㪝㪛
㪬㪪㪘㩷㩿㪦㪢㪀
㪬㪪㪘㩷㩿㪚㪘㪀 㪬㪪㪘㩷㩿㪫㪯㪃㩷㪠㪣㪀
㪌㪇
㪌㪇
㪍
㪋
㪌㪇
㪐㪋 㪐㪋
㪌㪇 㪌㪇
㪈㪍㪤㩷㪂㩷㪉㪏㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪋㪘㩷 㪈㪍㪤㩷㪂㩷㪉㪏㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪋㪘㩷
㪋
㪋 㪋
㪌㪇
㪐㪉
㪋
㪋
㪋㪉㩷㪤㪆㪪㪤㩷㪂㩷㪏㩷㪪㪫㪆㪘
㪌㪇 㪌㪇
㪐㪋
㪋
㪉
㪋
㪉㪉㪤㩷㪂㩷㪉㪉㪪㪤㩷㪂㩷㪍㩷㪪㪫㪆㪘
㪌㪇
㪐㪋
㪈㪇㪇
㪉 㪋
㪋
㪌㪇
㪉㪉㪤㩷㪂㩷㪉㪉㪪㪤㩷㪂㩷㪍㩷㪪㪫㪆㪘
㪌㪇
㪐㪋
㪐㪋
㪐㪏 㪐㪋
㪌㪇
㪋㪋㩷㪤㪆㪪㪤㩷㪂㩷㪍㩷㪪㪫㪆㪘 㪉㪉㪤㩷㪂㩷㪉㪉㪪㪤㩷㪂㩷㪍㪪㪫
㪌㪇 㪌㪇
㪏㪉
㪐㪏
㪉㪅㪉㩷㪝㪛
㪘㪚㪥㪔㪌㪇 㪘㪚㪥㪔㪌㪇
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪬㪪㪘㩷㩿㪫㪯㪀
㪏㪤㩷㪂㩷㪉㪋㪪㪤㩷㪂㩷㪈㪍㪪㪫㩷㪂㩷㪉㪘 㪈㪏㪤㩷㪂㩷㪉㪍㩷㪪㪤㪆㪪㪫㩷㪂㩷㪍㪘
㪌㪇 㪌㪇
㪈㪋㪤㩷㪂㩷㪊㪋㪪㪤㩷㪂㩷㪉㪘
㪉
㪊㪅㪉㩷㪝㪛
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪌㪇
㪐㪍
㪋 㪍
㪠 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪚㪸㫅㪸㪻㪸㩷㩿㪨㫌㪼㪹㪼㪺㪀
㪋㪍㩷㪤㪆㪪㪤㩷㪂㩷㪋㩷㪪㪫㪆㪘
㪌㪇
㪐㪋 㪐㪍
㪝 㪞 㪟 㪥㪝㪈 㪥㪝㪉 㪘㪾㪄 㪥㪦㪩㫊
㪌㪉
㪋㪋㩷㪤㪆㪪㪤㩷㪂㩷㪍㩷㪪㪫㪆㪘 㪈㪏㪤㩷㪂㩷㪉㪏㪪㪤㩷㪂㩷㪋㩷㪪㪫㪆㪘
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪌㪇 㪌㪇
㪛 㪉㫅
㪝㪃㩷㪤
㪝㪃㩷㪤
㪚 㪪㪼㫏
㪪㪄㪌㪇
㪢㪄㪋㪌 㪢㪄㪊㪇
㪢㪄㪊㪌
㪥㪄㪎㪊
㪚㪄㪈㪇㪏
㪫㪄㪌㪉 㪢㪄㪋㪉
㪤㪄 㪉 㪎
㪢㪄㪈㪊㪍
㪣㪄㪈㪍 㪣㪄㪈㪍㪃㩷㪟㪄㪋㪈
㪞㪄㪊㪊㪃㩷㪞㪄㪊㪏㪃㩷㪞㪄㪊㪐
㪞㪄㪉㪎㪃㩷㪞㪄㪋㪌
㪞㪄㪋㪌㪃㩷㪡㪄㪍
㪡㪄㪍 㪡㪄㪍
㪤㪄㪍㪈
㪡㪄㪍
㪤㪄㪐㪇
㪟㪄㪊㪇㪃㩷㪢㪄㪎㪊㪃㩷㪞㪄㪏㪎 㪟㪄㪊㪇㪃㩷㪡㪄㪍
㪡㪄㪍
㪞㪄㪋㪋㪃㩷㪡㪄㪍
㪞㪄㪋㪋㪃㩷㪡㪄㪍
㪞㪄㪉㪎㪃㩷㪞㪄㪋㪋㪃㩷㪡㪄㪍 㪞㪄㪋㪋㪃㩷㪡㪄㪍
㪘㪄㪋㪈
㪘㪄㪋㪈
㪘㪄㪋㪈
㪞㪄 㪉 㪎
㪞㪄㪉㪏㪃㩷㪞㪄㪊㪌㪃㩷㪞㪄㪊㪍㪃㩷㪞㪄㪊㪏㪃㩷㪞㪄㪋㪏 㪬㪄㪍㪐㪃㩷㪡㪄㪍
㪞㪄㪊㪊㪃㩷㪞㪄㪊㪏㪃㩷㪣㪄㪋㪍
㪣㪄㪈㪍
㪘㪄㪊㪐㪃㩷㪘㪄㪋㪇㪃㩷㪣㪄㪋㪍㪃㩷㪞㪄㪊㪏
㪞㪄㪉㪎㪃㩷㪡㪄㪍 㪞㪄㪉㪏㪃㩷㪞㪄㪊㪐㪃㩷㪞㪄㪏㪎
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
68
㪙㪸㫉㫀㫃㫀㫌㫊 㪙㪸㫉㫀㫃㫀㫌㫊 㪙㪸㫉㫀㫃㫀㫌㫊 㪙㪸㫉㫀㫃㫀㫌㫊 㪙㪸㫉㫀㫃㫀㫌㫊 㪙㪸㫉㫀㫃㫀㫌㫊 㪙㪸㫉㫀㫃㫀㫌㫊 㪙㪸㫉㫀㫃㫀㫌㫊 㪙㪸㫉㫀㫃㫀㫌㫊 㪙㪸㫉㫀㫃㫀㫌㫊 㪚㪿㪼㫃㪸 㪚㪿㪼㫃㪸 㪚㪿㪼㫃㪸 㪚㪿㪼㫃㪸㪼㫋㪿㫀㫆㫇㫊 㪛㪸㫅㫀㫆 㪛㪸㫅㫀㫆 㪛㪸㫅㫀㫆 㪛㪸㫅㫀㫆 㪛㪸㫅㫀㫆 㪛㪼㫍㪸㫉㫀㫆 㪛㪼㫍㪸㫉㫀㫆 㪛㪼㫍㪸㫉㫀㫆 㪛㪼㫍㪸㫉㫀㫆 㪛㪼㫍㪸㫉㫀㫆 㪜㫊㫆㫄㫌㫊 㪜㫊㫆㫄㫌㫊 㪟㪼㫄㫀㪾㫉㪸㫄㫄㫆㪺㫐㫇㫉㫀㫊 㪣㪼㫇㫋㫆㪺㫐㫇㫉㫀㫊 㪦㫇㫊㪸㫉㫀㫀㪺㪿㫋㪿㫐㫊 㪦㫇㫊㪸㫉㫀㫀㪺㪿㫋㪿㫐㫊 㪦㫇㫊㪸㫉㫀㫀㪺㪿㫋㪿㫐㫊 㪦㫇㫊㪸㫉㫀㫀㪺㪿㫋㪿㫐㫊 㪦㫇㫊㪸㫉㫀㫀㪺㪿㫋㪿㫐㫊 㪦㫇㫊㪸㫉㫀㫀㪺㪿㫋㪿㫐㫊 㪩㪸㫀㪸㫄㪸㫊 㪩㪸㫀㪸㫄㪸㫊 㪩㪸㫀㪸㫄㪸㫊 㪩㪸㫀㪸㫄㪸㫊 㪩㪸㫊㪹㫆㫉㪸
㪹㪼㫅㪻㪼㫃㫀㫊㫀㫊 㪹㪼㫅㪻㪼㫃㫀㫊㫀㫊 㪾㪸㫋㪼㫅㫊㫀㫊 㫅㪸㫊㪼㪼㫉㫀 㫇㪸㫂㫀㫊㫋㪸㫅㫀㪺㫌㫊 㫊㪿㪸㪺㫉㪸 㫊㪿㪸㪺㫉㪸 㫋㫀㫃㪼㫆 㫍㪸㪾㫉㪸 㫍㪸㪾㫉㪸 㪺㪸㪺㪿㫀㫌㫊 㪺㪸㪼㫉㫌㫃㪼㫆㫊㫋㫀㪾㫄㪸㫋㪸 㫃㪸㫌㪹㫌㪺㪸 㪹㫀㪹㫀㪼 㪸㫃㪹㫆㫃㫀㫅㪼㪸㫋㫌㫊 㫉㪼㫉㫀㫆 㫉㪼㫉㫀㫆 㫉㪼㫉㫀㫆 㫉㪼㫉㫀㫆 㪸㪼㫈㫌㫀㫇㫀㫅㫅㪸㫋㫌㫊 㪸㪼㫈㫌㫀㫇㫀㫅㫅㪸㫋㫌㫊 㪻㪼㫍㪸㫉㫀㫆 㪻㪼㫍㪸㫉㫀㫆 㫄㪸㫃㪸㪹㪸㫉㫀㪺㫌㫊 㪻㪸㫅㫉㫀㪺㪸 㪻㪸㫅㫉㫀㪺㪸 㫉㪸㫊㪹㫆㫉㪼㫃㫃㪸 㫅㫀㫃㫆㫋㫀㪺㫌㫊 㪹㫀㪻㪼㫅㫊 㪹㫀㪻㪼㫅㫊 㪹㫀㪻㪼㫅㫊 㫌㫅㪺㫀㫉㫆㫊㫋㫉㫀㫊㩷㪸㫄㫌㫉㪼㫅㫊㫀㫊 㫌㫅㪺㫀㫉㫆㫊㫋㫉㫀㫊㩷㪹㫀㪻㪼㫅㫊 㫌㫅㪺㫀㫉㫆㫊㫋㫉㫀㫊 㪹㫆㫃㪸 㫅㫀㪾㪼㫉㫀㪼㫅㫊㫀㫊 㫊㪼㫅㪼㪾㪸㫃㪼㫅㫊㫀㫊 㫊㫋㪼㫀㫅㪻㪸㪺㪿㫅㪼㫉㫀 㪸㫉㪾㫐㫉㫆㫋㪸㪼㫅㫀㪸
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㫇㪼㫉㪽㪸㫄㫀㫃㫐㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷
㪙㪸㫉㫀㫃㫀㫌㫊
㪙㫉㪸㪺㪿㫐㪻㪸㫅㫀㫆㩷㪽㫉㪸㫅㫂㪼㫀 㪛㪸㫅㫀㫆 㪛㪸㫅㫀㫆 㪛㪸㫅㫀㫆 㪛㪸㫅㫀㫆 㪛㪸㫅㫀㫆 㪻㪸㫅㫉㫀㪺㫌㫊 㪻㪸㫅㫉㫀㪺㫌㫊
㪧㪼㫉㫀㫃㪸㫄㫇㫌㫊㩷㪸㫋㫇㪸㫉 㫄㫆㫌㪿㫆㫋㫀
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉 㪹㪼㫅㪻㪼㫃㫀㫊㫀㫊㩷 㫍㪸㫉㪅㩷㪺㪿㪼㪻㫉㪸 㪹㪼㫅㪻㪼㫃㫀㫊㫀㫊㩷 㫍㪸㫉㪅㩷㪺㫆㪺㫂㫊㪸
㪫㪸㪹㫃㪼㩷㪍㪅㪈㪈㩷㩷㪦㫉㪻㪼㫉㩷㪚㪰㪧㪩㪠㪥㪠㪝㪦㪩㪤㪜㪪㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀
㪌㪇 㪌㪇 㪎㪇
㪤 㪤
㪋
㪍㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪌㪏㪘
㪎㪋
㪝
㪋
㪉
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪫㪿㪸㫀㫃㪸㫅㪻
㪞㫌㫀㫅㪼㪸 㪐㪍
㪈㪇㪇
㪠㫅㪻㫀㪸㩷㩿㪙㫀㪿㪸㫉㪀
㪉㪋㪤㩷㪂㩷㪉㪉㪪㪤㩷㪂㩷㪋㩷㪪㪫㪆㪘
㪘㪚㪥㪔㪌㪇
㪡㪸㫇㪸㫅㩷㩿㪦㫊㪸㫂㪸㪃㩷㪢㫆㪹㪼㪀
㪚㪿㫀㫅㪸
㪢㫆㫉㪼㪸 㪢㫆㫉㪼㪸㩷㩿㪧㫆㫅㪾㪻㫆㫅㪾㪀
㪚㪿㫀㫅㪸㩷㩿㪪㫀㪺㪿㫌㪸㫅㪀
㪚㪿㫀㫅㪸㩷㩿㪞㫌㪸㫅㪾㪻㫆㫅㪾㪀
㪘㪽㫉㫀㪺㪸
㪈㪍㪤㩷㪂㩷㪊㪇㪪㪤㩷㪂㩷㪋㪪㪫
㪐㪍
㪘㪚㪥㪔㪎㪋 㪘㪚㪥㪔㪎㪏
㪠㫅㪻㫀㪸㩷㩿㪡㪸㫄㫄㫌㪀 㪡㪸㫇㪸㫅
㪌㪇
㪏㪇
㪉㪅㪊㪁㩷㪝㪚㪤㪃㩷㪊㪅㪊㩷㪝㪛
㪘㪚㪥㪔㪎㪍 㪘㪚㪥㪔㪎㪍
㪘㪚㪥㪔㪎㪋
㪘㪚㪥㪔㪎㪍
㪘㪚㪥㪔㪌㪇
㪌㪇
㪎㪇
㪐㪇
㪐㪇
㪐㪇
㪐㪍
㪐㪍
㩿㪘㫊㫀㪸㪀 㪠㫅㪻㫀㪸㩷㩿㪮㪙㪀
㪮㪅㩷㪘㪽㫉㫀㪺㪸 㪮㪅㩷㪘㪽㫉㫀㪺㪸
㪍㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪉㪇㪘
㪏㪍
㪏㪍
㪏㪇 㪏㪋
㪏㪍
㪏㪍
㪎㪏
㪘㪚㪥㪔㪌㪇 㪘㪚㪥㪔㪌㪇
㪌㪇 㪌㪇
㪌㪇
㪋㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪎㪇㪘
㪋㪤㩷㪂㩷㪎㪉㪘 㪋㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪍㪏㪘
㪎㪍 㪎㪍 㪎㪏
㪍㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪌㪏㪘
㪎㪋
㪋㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪍㪉㪘
㪝㪃㩷㪤
㪌㪇
㪈㪇㪤㩷㪂㩷㪊㪏㩷㪪㪤㪆㪪㪫
㪈㪅㪏㩷㪝㪛
㪈㪇㪤㩷㪂㩷㪈㪏㪪㪤㩷㪂㩷㪈㪏㪪㪫㩷㪂㩷㪋㪘
㪉㪅㪏㩷㪝㪠㪘㪃㩷㪋㪅㪋㩷㪙㪝㪘
㪋㪏
㪈㪇㪇 㪏㪏
㪤㪄 㪈 㪍 㪍
㪩㪄㪉㪍
㪞㪄㪏㪋 㪞㪄㪏㪋
㪢㪄㪊㪌
㪫㪄㪋㪃㩷㪦㪄㪈㪏㪃㩷㪦㪄㪋㪏㩷
㪰㪄㪈㪋
㪣㪄㪈㪌 㪢㪄㪌㪌㪃㩷㪣㪄㪈㪉
㪣㪄㪋㪋
㪣㪄㪋㪉
㪞㪄㪏㪋
㪪㪄㪈㪋㪈㩷
㪪㪄㪌㪍
㪝㪄㪊㪇㪃㩷㪟㪄㪈㪊㪃㩷㪟㪄㪋㪇 㪤㪄 㪉 㪎
㪝㪄㪊㪇
㪢㪄㪋㪈
㪌㪇
㪍㪇 㪎㪏
㩿㪘㫊㫀㪸㪀
㪠㫅㪻㫀㪸㩷㩿㪦㫉㫀㫊㫊㪸㪀
㪈㪇㪤㩷㪂㩷㪋㪇㪪㪫 㪈㪉㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪈㪉㪘
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪌㪇 㪌㪇
㪍㪇
㪐㪍
㪈㪇㪤㩷㪂㩷㪋㪇㩷㪪㪫㪆㪘
㪏㪍
㪈㪉㪤㩷㪂㩷㪉㪋㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪋㪘
㪌㪇
㪮㪄㪊㪉
㪧㪄㪊㪌
㪩㪄㪌㪈
㪝㪄㪊㪇㪃㩷㪭㪄㪏㪍㪃㩷㪞㪄㪏㪌
㪌㪇
㩿㪘㫊㫀㪸㪀
㩿㪠㫅㪻㫀㪸㪀
㩿㪘㫊㫀㪸㪀
㪠㫅㪻㫀㪸㩷㩿㪘㫊㫊㪸㫄㪀 㪢㪄㪋㪈 㪫㪿㪸㫀㫃㪸㫅㪻㩷㩿㪥㪸㫂㪿㫆㫅㫇㪿㪸㫅㫆㫄㪀 㪤㪄㪈㪍㪍 㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪈㪋㪤㩷㪂㩷㪊㪉㪪㪤㩷㪂㩷㪋㪘 㪏㪤㩷㪂㩷㪉㪏㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪋㪘
㪐㪍 㪐㪍
㪈㪇㪇
㩿㪊㪅㪋㪄㪊㪅㪍㪃㩷㪋㪅㪍㩷㪝㪚㪤㪀
㪌㪇 㪌㪇
㪐㪍 㪏㪍
㪏㪏
㪐㪐 㪎㪍
㪞㪄㪏㪋 㪝㪄㪊㪇㪃㩷㪪㪄㪈㪋㪈
㪣㪄㪈
㪟㪄㪈㪊
㪩㪄㪊㪈 㪫㪄㪌㪉
㪩㪄㪎㪋
㪢㪄㪋㪌
㪢㪄㪋㪌
㪩㪄㪊㪈 㪢㪄㪋㪌
㪩㪄㪊㪈
㪥㪄㪎㪉
㪪㪅㩷㪚㪿㫀㫅㪸
㪈㪉㪤㩷㪂㩷㪉㪍㪪㪤㩷㪂㩷㪈㪉㪪㪫
㪌㪇
㪐㪐
㪢㪄㪋㪈 㪢㪄㪋㪈
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
㪌㪇
㪈㪇㪤㩷㪂㩷㪈㪍㩷㪪㪤㪆㪪㪫㩷㪂㩷㪉㪋㪘
㪈㪇㪤㩷㪂㩷㪊㪐㪪㪤㩷㪂㩷㪈㪘
㪘㪚㪥㪔㪌㪇
㪌㪇 㪌㪇
㪉㪅㪏㩷㪝㪛
㩿㪘㫊㫀㪸㪀
㪧㪸㫂㫀㫊㫋㪸㫅㩷㩿㪧㫌㫅㫁㪸㪹㪀 㩷㪠㫅㪻㫀㪸㩷㩿㪡㩷㩽㩷㪢㪀
㪠㫅㪻㫀㪸㩷㩿㪬㪅㪧㪅㪀
㪠㫅㪻㫀㪸㩷㩿㪘㫊㫊㪸㫄㪀
㪠㫅㪻㫀㪸㩷㩿㪘㫊㫊㪸㫄㪀
㪧㪸㫂㫀㫊㫋㪸㫅㩷㩿㪧㫌㫅㫁㪸㪹㪀 㪠㫅㪻㫀㪸㩷㩿㪮㪙㪀
㪈㪇㪤㩷㪂㩷㪊㪐㪪㪤㩷㪂㩷㪈㪘
㪎㪍
㪝㪃㩷㪤
㪊㪅㪉㩷㪙㪝㪘
㪘㪚㪥㪔㪌㪇 㪘㪚㪥㪔㪎㪉
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪯㪰
㪘㪚㪥㪔㪌㪇
㪧㪸㫂㫀㫊㫋㪸㫅㩷㩿㪧㫌㫅㫁㪸㪹㪀
㪜㪅㩷㪘㪽㫉㫀㪺㪸 㩿㪘㫊㫀㪸㪀
㪐㪐
㪐㪋 㪈㪇㪏
㪐㪋
㪐㪎
㪐㪋 㪐㪏
㪘㪚㪥㪔㪌㪇
㪌㪇 㪌㪇 㪐㪐
㪐㪋 㪐㪉
㪐㪋
㪐㪋
㪐㪎
㪐㪋 㪐㪏
㪐㪏
㪘㪚㪥㪔㪌㪇
㪠㫅㪻㫀㪸㩷㩿㪘㫊㫊㪸㫄㪀
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪠㫅㪻㫀㪸
㪈㪉㪤㩷㪂㩷㪊㪉㪪㪤㩷㪂㩷㪍㪘
㪝㪃㩷㪤
㪝㪃㩷㪤
㪝㪃㩷㪤
㪉
㪘㪚㪥㪔㪌㪇
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪌㪇
㪋㪏
㪉㪉㪤㩷㪂㩷㪉㪉㪪㪤㩷㪂㩷㪍㪘 㪈㪍㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪈㪍㪪㪫㩷㪂㩷㪊㪉㪘
㪌㪇
㪤
㪝
㪉㪎㪤㩷㪂㩷㪈㪎㪪㪤㩷㪂㩷㪍㩷㪪㪫㪆㪘
㪌㪉
㪝 㪉㪉㪤㩷㪂㩷㪉㪊㪪㪤㩷㪂㩷㪎㪘
㪈㪉㪤㩷㪂㩷㪊㪉㪪㪤㩷㪂㩷㪍㪘 㪉㪉㪤㩷㪂㩷㪉㪋㪪㪤㩷㪂㩷㪍㪘
㪌㪇 㪌㪉
㪐㪏
㪐㪋
㪎㪏
㪠 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪠㫅㪻㫀㪸㩷㩿㪮㪅㩷㪞㪿㪸㫋㫊㪀
㪈㪏㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪍㪘 㪉㪋㪤㩷㪂㩷㪉㪋㪪㪤㩷㪂㩷㪉㪘
㪌㪇
㪏㪋
㪎㪏
㪝 㪞 㪟 㪥㪝㪈 㪥㪝㪉 㪘㪾㪄 㪥㪦㪩㫊 㪠㫅㪻㫀㪸㩷㩿㪫㪸㫄㫀㫃㩷㪥㪸㪻㫌㪀
㪉㪋㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪉㪉㪘
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪌㪇
㪌㪇
㪛 㪉㫅
㪌㪇
㪚 㪪㪼㫏
69
㪚㪿㫌㪸㫅㪺㪿㫀㪸 㪛㫀㫇㫋㫐㪺㪿㫌㫊 㪛㫀㫇㫋㫐㪺㪿㫌㫊 㪛㫀㫇㫋㫐㪺㪿㫌㫊 㪛㫀㫇㫋㫐㪺㪿㫌㫊 㪛㫀㫇㫋㫐㪺㪿㫌㫊 㪞㫐㫄㫅㫆㪺㫐㫇㫉㫀㫊 㪞㫐㫄㫅㫆㪻㫀㫇㫋㫐㪺㪿㫌㫊 㪞㫐㫄㫅㫆㪻㫀㫇㫋㫐㪺㪿㫌㫊 㪞㫐㫄㫅㫆㪻㫀㫇㫋㫐㪺㪿㫌㫊 㪦㫏㫐㪾㫐㫄㫅㫆㪺㫐㫇㫉㫀㫊 㪧㫃㪸㫋㫐㫇㪿㪸㫉㫆㪻㫆㫅 㪧㫋㫐㪺㪿㫆㪹㪸㫉㪹㫌㫊 㪪㪺㪿㫀㫑㫆㪺㫐㫇㫉㫀㫊 㪪㪺㪿㫀㫑㫆㫇㫐㪾㪼㩷 㪪㪺㪿㫀㫑㫆㫇㫐㪾㫆㫇㫊㫀㫊 㪪㪺㪿㫀㫑㫆㫇㫐㪾㫆㫇㫊㫀㫊 㪪㪺㪿㫀㫑㫆㫋㪿㫆㫉㪸㫀㪺㪿㫋㪿㫐㫊 㪪㪺㪿㫀㫑㫆㫋㪿㫆㫉㪸㫀㪺㪿㫋㪿㫐㫊 㪪㪺㪿㫀㫑㫆㫋㪿㫆㫉㪸㫀㪺㪿㫋㪿㫐㫊
㩷㩷㪪㪺㪿㫀㫑㫆㫋㪿㫆㫉㪸㪺㫀㫅㪸㪼
㪩㪸㫊㪹㫆㫉㪸 㪩㪸㫊㪹㫆㫉㪸 㪩㪸㫊㪹㫆㫉㪸 㪩㪸㫊㪹㫆㫉㪸 㪩㪸㫊㪹㫆㫉㪸 㪪㪸㫃㫄㫆㫊㫋㫆㫄㪸 㪪㪼㪺㫌㫉㫀㪺㫌㫃㪸 㪫㪸㫅㫀㪺㪿㫋㪿㫐㫊 㪫㪸㫅㫀㪺㪿㫋㪿㫐㫊 㪫㫉㫀㪾㫆㫅㫆㫊㫋㫀㪾㫄㪸 㪱㪸㪺㪺㫆 㪱㪸㪺㪺㫆 㪱㪸㪺㪺㫆 㪱㪸㪺㪺㫆 㪱㪸㪺㪺㫆 㪱㪸㪺㪺㫆 㪱㪸㪺㪺㫆 㪱㪸㪺㪺㫆 㪌㪇 㪌㪇
㪝㪃㩷㪤 㪈㪏㪤㩷㪂㩷㪉㪉㩷㪪㪤㪆㪪㪫㩷㪂㩷㪏㪘
㪐㪏 㪐㪏 㪐㪏
㪝㪃㩷㪤 㪝㪃㩷㪤
㪌㪋㩷㪤㪆㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪋㪇㪘
㪐㪉 㪐㪇 㪐㪏 㪐㪏 㪐㪏
㪝㪃㩷㪤 㪝㪃㩷㪤 㪝㩷㪤 㪝㪃㩷㪤 㪝㪃㩷㪤
㪉㪉㪤㩷㪂㩷㪉㪍㪪㪤㩷㪂㩷㪏㪪㪫㩷㪂㩷㪋㪉㪘 㪈㪍㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪈㪉㪪㪫㩷㪂㩷㪌㪇㪘
㪉㪋㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪍㪏㩷㪪㪫㪆㪘
㪉㪍㪤㩷㪂㩷㪉㪏㪪㪤㩷㪂㩷㪉㪇㪪㪫㩷㪂㩷㪈㪍㪘
㪊㪉㪤㩷㪂㩷㪉㪍㪪㪤㩷㪂㩷㪉㪇㪪㪫㩷㪂㩷㪈㪋㪘
㪈㪋㪍 㪈㪊㪋
㪈㪉㪏
㪈㪋㪋
㪈㪌㪇
㪈㪌㪋 㪈㪋㪍
㪈㪍㪋
㪈㪎㪇
㪈㪍㪏
㪈㪍㪋
㪈㪎㪇
㪈㪌㪍
㪉㪅㪎㪁㩷㪝㪛
㪋㪅㪐㩷㪝㪛
㪉㪅㪐㩷㪝㪛
㪉㪅㪊㪁㩷㪝㪚㪤
㪉㪅㪉㪁㩷㪝㪚㪤㪃㩷㪉㪅㪉㩷㪝㪛
㪉㪅㪎㪁㩷㪝㪛
㪐㪉 㪊㪇㪤㩷㪂㩷㪉㪍㪪㪤㩷㪂㩷㪉㪇㪪㪫㩷㪂㩷㪈㪍㪘 㪐㪏㪄㪈㪇㪇
㪈㪋㪏
㪈㪋㪋
㪈㪋㪏
㪈㪌㪉
㪋
㪏
㪋
㪝㪃㩷㪤
㪉㪋㪤㩷㪂㩷㪊㪇㪪㪤㩷㪂㩷㪉㪇㪪㪫㩷㪂㩷㪈㪍㪘
㪈㪎㪇 㪈㪌㪉 㪈㪌㪍㪄㪈㪌㪏
㪈㪋㪏
㪈㪎㪏 㪈㪌㪏
㪈㪍㪏
㪏㪏
㪏㪏
㪏㪉
㪐㪇
㪏㪏
㪏㪏
㪎㪇
㪏㪉
㪐㪍
㪈㪇㪇
㪏㪇
㪐㪏
㪠 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪈㪎㪅㪉㪁㩷㪝㪛
㪐㪇
㪐㪇㪄㪐㪏 㪐㪉 㪉㪍㪤㩷㪂㩷㪊㪇㪪㪤㩷㪂㩷㪉㪉㪪㪫㩷㪂㩷㪈㪋㪘
㪐㪏
㪉㪍㪤㩷㪂㩷㪉㪏㪪㪤㩷㪂㩷㪉㪉㪪㪫㩷㪂㩷㪈㪏㪘 㪌㪋㩷㪤㪆㪪㪤㩷㪂㩷㪋㪄㪍㩷㪪㪫㩷㪂㩷㪋㪇㪄㪊㪏㩷㪘
㪐㪋 㪐㪏
㪏㪇㩷㪤㪆㪪㪤㩷㪂㩷㪈㪏㩷㪪㪫㪆㪘㩷 㪉㪏㪤㩷㪂㩷㪊㪉㪪㪤㩷㪂㩷㪊㪏㩷㪪㪫㪆㪘
㪈㪍㪇
㪈㪏㪇
㪈㪎㪇
㪈㪌㪇
㪏㪏
㪏㪉
㪐㪇 㪏㪋
㪏㪍
㪏㪏
㪐㪋 㪎㪇
㪏㪏
㪎㪏
㪎㪉
㪐㪇 㪏㪏
㪐㪏
㪎㪋
㪐㪋
㪝 㪞 㪟 㪥㪝㪈 㪥㪝㪉 㪘㪾㪄 㪥㪦㪩㫊
㪝㪃㩷㪤 㪋㪈㪎㪄㪋㪎㪇
㪝㪃㩷㪤
㪝㪃㩷㪤
㪝㪃㩷㪤
㪝㪃㩷㪤
㪏㪇㩷㪤㪆㪪㪤㩷㪂㩷㪉㪇㩷㪪㪫㪆㪘
㪈㪇㪇
㪝㪃㩷㪤
㪍㪉㩷㪤㪆㪪㪤㩷㪂㩷㪊㪍㩷㪪㪫㪆㪘
㪊㪉㪤㩷㪂㩷㪉㪍㪪㪤㩷㪂㩷㪈㪏㪪㪫㩷㪂㩷㪈㪍㪘 㪎㪇㩷㪤㪆㪪㪤㩷㪂㩷㪊㪇㩷㪪㪫㪆㪘
㪐㪉
㪈㪏㪤㩷㪂㩷㪉㪉㪪㪤㩷㪂㩷㪏㪘
㪈㪇㪇
㪋㪏
㪝㪃㩷㪤
㪈㪉㪤㩷㪂㩷㪉㪉㪪㪤㩷㪂㩷㪈㪋㪘 㪈㪏㪤㩷㪂㩷㪉㪉㩷㪪㪤㪆㪪㪫㩷㪂㩷㪏㪘
㪋㪏 㪋㪏
㪝㪃㩷㪤
㪉㪉㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪍㩷㪪㪫㪆㪘 㪈㪏㪤㩷㪂㩷㪈㪏㪪㪤㩷㪂㩷㪈㪉㩷㪪㪫㪆㪘
㪋㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪍㪍㪘
㪈㪏㪤㩷㪂㩷㪉㪉㪪㪤㩷㪂㩷㪏㪘
㪋㪏 㪋㪏
㪎㪏
㪝㪃㩷㪤 㪝㪃㩷㪤 㪝㪃㩷㪤
㪋㪏 㪋㪏
㪝㪃㩷㪤 㪝㪃㩷㪤
㪉㪉㪤㩷㪂㩷㪉㪉㪪㪤㩷㪂㩷㪍㩷㪪㪫㪆㪘 㪈㪋㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪊㪇㪘
㪉㪋㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪈㪉㩷㪪㪫㪆㪘
㪉㪇㪤㩷㪂㩷㪏㪪㪤㩷㪂㩷㪉㪉㪘
㪌㪇
㫃㪸㪹㫀㫆㫑㪸 㪝㪃㩷㪤 㪾㫐㫄㫅㫆㪾㪸㫊㫋㪼㫉㩷㫄㫀㪺㫉㫆㪺㪼㫇㪿㪸㫃㫌㫊 㪝㪃㩷㪤 㪾㫐㫄㫅㫆㪾㪸㫊㫋㪼㫉㩷㫆㫊㪺㪿㪸㫅㫀㫅㫀
㪱㪸㪺㪺㫆 㩷㫊㫇㪅㩷㫋㫐㫇㪼㩷㪘 㪱㪸㪺㪺㫆 㩷㫊㫇㪅㩷㫋㫐㫇㪼㩷㪙
㪩㪸㫊㪹㫆㫉㪸
㪌㪇
㪝㪃㩷㪤
㪮㪿㫀㫋㪼㩷㪺㫃㫆㫌㪻㩷㫄㫆㫌㫅㫋㪸㫀㫅㩷㫋㫐㫇㪼 㪟㫆㫅㪾㩷㪢㫆㫅㪾㩷㫋㫐㫇㪼
㪈㪇㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪈㪏㪘
㪌㪇
㪉㪉㪤㩷㪂㩷㪈㪏㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪋㪘 㪉㪋㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪈㪉㩷㪪㪫㪆㪘㩷
㪌㪇 㪌㪇 㪝㪃㩷㪤
㪊㪇㪤㩷㪂㩷㪈㪏㪪㪤㩷㪂㩷㪉㪪㪫
㪈㪏㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪉㪇㪘
㪉㪏㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪉㪘
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪌㪇
㪚㪿㪼㫃㪸
㪌㪇
㪌㪇
㪛 㪉㫅
㪝
㪝
㪚 㪪㪼㫏
㪹㫌㪺㪿㪸㫅㪸㫅㫀
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪼㪺㫂㫃㫆㫅㫀 㪻㫐㪹㫆㫎㫊㫂㫀㫀㩷 㪛㫀㫇㫋㫐㪺㪿㫌㫊 㪻㫐㪹㫆㫎㫊㫂㫀㫀㩷㫃㪸㫅㫊㪻㪼㫃㫃㫀 㪛㫀㫇㫋㫐㪺㪿㫌㫊 㫇㪸㪺㪿㫐㪺㪿㪼㫀㫃㫌㫊 㫊㫋㪼㫎㪸㫉㫋㫀 㪼㫏㫋㫉㪼㫄㫌㫊 㪻㫀㫇㫆㪾㫆㫅 㪛㫀㫇㫋㫐㪺㪿㫌㫊 㫆㪺㫆㫅㫅㫆㫉㫀 㪪㪺㪿㫀㫑㫆㫋㪿㫆㫉㪸㫏 㪺㫌㫉㫍㫀㪽㫉㫆㫅㫊 㪪㪺㪿㫀㫑㫆㫋㪿㫆㫉㪸㫏㩷㫀㫅㫋㪼㫉㫄㪼㪻㫀㫌㫊㩷 㫇㫐㫃㫑㫆㫍㫀 㫐㫆㫌㫅㪾㪿㫌㫊㪹㪸㫅㪻㫀㩷㫐㫆㫌㫅㪾㪿㫌㫊㪹㪸㫅㪻㫀 㫂㫌㫄㪸㫆㫅㪼㫅㫊㫀㫊 㪪㪺㪿㫀㫑㫆㫋㪿㫆㫉㪸㫏 㫅㫀㪾㪼㫉 㪪㪺㪿㫀㫑㫆㫋㪿㫆㫉㪸㫏 㫇㫉㫆㪾㪸㫊㫋㫌㫊
㫊㫇㪅
㫃㪸㪹㫀㫆㫊㪸 㫄㪸㪺㫌㫃㪸㫋㫌㫊 㫄㪸㪺㫌㫃㪸㫋㫌㫊 㫄㫀㪺㫉㫆㫄㪸㪺㫌㫃㪸㫋㫌㫊 㫊㪼㫎㪼㫉㫑㫆㫎㫀
㪸㫌㫉㫆㫋㪸㪼㫅㫀㪸 㪻㪸㫅㫀㪺㫆㫅㫀㫌㫊 㫉㪸㫊㪹㫆㫉㪸 㫊㫌㫄㪸㫋㫉㪸㫅㪸 㫋㫉㫀㫃㫀㫅㪼㪸㫋㪸 㪹㪸㪺㪸㫀㫃㪸 㪾㫆㫉㪸 㪸㫃㪹㫆㫅㫌㪹㪼㫊㩷㪸㫃㪹㫆㫅㫌㪹㪼㫊 㪸㫃㪹㫆㫅㫌㪹㪼㫊㩷 㫊㫌㪹㫊㫇㪅 㪼㫊㫇㪼㫀 㫇㫃㪸㫋㫐㫇㫌㫊 㫇㫃㪸㫋㫐㫇㫌㫊 㫇㫃㪸㫋㫐㫇㫌㫊 㫊㫀㪼㪹㫆㫃㪻㫀 㫋㪼㫄㫄㫀㫅㪺㫂㫀 㫋㪼㫄㫄㫀㫅㪺㫂㫀㫀 㫋㪼㫄㫄㫀㫅㪺㫂㫀㫀 㫋㪼㫄㫄㫀㫅㪺㫂㫀㫀
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㫇㪼㫉㪽㪸㫄㫀㫃㫐㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷
㪫㪸㪹㫃㪼㩷㪍㪅㪈㪈㩷㩷㪦㫉㪻㪼㫉㩷㪚㪰㪧㪩㪠㪥㪠㪝㪦㪩㪤㪜㪪㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀
㪚㪿㫀㫅㪸㩷㩿㪟㪼㫀㪿㪼㩷㪩㪅㪀㩷
㪢㫆㫉㪼㪸㩷㩿㪰㪼㫄㪾㫐㪼㪄㪾㫌㫅㪀
㪡㪸㫇㪸㫅㩷㩿㪦㫊㪸㫂㪸㪀
㪡㪸㫇㪸㫅
㪡㪸㫇㪸㫅㩷㩿㪰㪸㫄㪸㪾㫌㪺㪿㫀㪀 㪡㪸㫇㪸㫅㩷㩿㪰㪸㫄㪸㪾㫌㪺㪿㫀㪀
㪚㪿㫀㫅㪸㩷㩿㪞㫌㪸㫅㪾㪻㫆㫅㪾㪀
㪢㫆㫉㪼㪸㩷㩿㪰㪼㫊㪸㫅㩷㪧㫆㫅㪾㪻㪼㫅㪾㪀
㪡㪸㫇㪸㫅㩷㩿㪦㫊㪸㫂㪸㪃㩷㪢㫆㪹㪼㪀
㪚㪿㫀㫅㪸 㪫㪿㪸㫀㫃㪸㫅㪻㩷㩿㪥㪸㫉㪸㫋㫀㫍㪸㫋㪀
㪚㪿㫀㫅㪸
㪠㫅㪻㫀㪸
㪠㫅㪻㫀㪸㩷㩿㪮㪙㪀
㪫㪿㪸㫀㫃㪸㫅㪻㩷㩿㪢㪿㪸㫅㪺㪿㪸㫅㪸㪹㫌㫉㫀㪀 㪫㪿㪸㫀㫃㪸㫅㪻㩷㩿㪚㪿㫀㩷㪥㪸㫋㪀
㪠㫅㪻㫀㪸㩷㩿㪮㪙㪀
㪠㫅㪻㫀㪸㩷㩿㪬㪅㪧㪅㪀
㪫㪿㪸㫀㫃㪸㫅㪻㩷㩿㪚㪿㫀㩷㪥㪸㫋㪀
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪢㫀㫉㪾㪿㫀㫑㩷㪫㪸㫅 㪚㪿㫀㫅㪸㩷㩿㪰㫌㫅㫅㪸㫅㪀
㪢㫀㫉㪾㪿㫀㫑㩷㪫㪸㫅
㪋㪯 㪋㪯
㪋㪯
㪋㪯㪃㩷㪘㪚㪥㪔㪐㪏
㪋㪯㪃㩷㪘㪚㪥㪔㪐㪏
㪘㪚㪥㪔㪐㪍 㪋㪯
㪈㪏㪯
㪋㪯
㪋㪯 㪘㪚㪥㪔㪐㪏
㪋㪯
㪋㪯
㪠㫅㪻㫀㪸㩷㩿㪢㪸㫊㪿㫄㫀㫉㪀 㪠㫅㪻㫀㪸㩷㩿㪟㪸㫉㫐㪸㫅㪸㪀
㪠㫅㪻㫀㪸㩷㩿㪬㪅㪧㪅㪀
㪚㪿㫀㫅㪸㩷㩿㪚㪼㫅㫋㫉㪸㫃㩷㪘㫊㫀㪸㪀
㪚㪿㫀㫅㪸㩷㩿㪟㪼㫀㪿㪼㩷㪩㪅㪀㩷
㪚㪿㫀㫅㪸㩷㩿㪚㪼㫅㫋㫉㪸㫃㩷㪘㫊㫀㪸㪀 㩿㪚㪅㩷㪘㫊㫀㪸㪀
㪚㪿㫀㫅㪸㩷㩿㪫㫀㪹㪼㫋㪀
㪚㪿㫀㫅㪸㩷㩿㪟㪼㫀㪿㪼㩷㪩㪅㪀㩷
㩿㪚㪿㫀㫅㪸㪀 㪚㪿㫀㫅㪸㩷㩿㪚㪼㫅㫋㫉㪸㫃㩷㪘㫊㫀㪸㪀
㪢㫀㫉㪾㪿㫀㫑㩷㪫㪸㫅
㪢㫀㫉㪾㪿㫀㫑㩷㪫㪸㫅
㪋㪯㪃㩷㪘㪚㪥㪔㪈㪇㪇 㪚㪿㫀㫅㪸㩷㩿㪟㪼㫀㪿㪼㩷㪩㪅㪀㩷
㪋㪯㪃㩷㪘㪚㪥㪔㪐㪏 㪋㪯
㪋㪯
㪋㪯㪃㩷㪘㪚㪥㪔㪈㪇㪇 㪢㫀㫉㪾㪿㫀㫑㩷㪫㪸㫅
㪋㪯㪃㩷㪘㪚㪥㪔㪈㪇㪇 㪢㫀㫉㪾㪿㫀㫑㩷㪫㪸㫅
㪋㪯
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏 㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪎㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪌㪇 㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇 㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪢㪄㪊㪎 㪩㪄㪍㪉
㪩㪄㪎㪋
㪰㪄㪈㪍
㪰㪄㪈㪍
㪰㪄㪈㪍㪃㩷㪚㪄㪏㪊 㪚㪄㪎㪋
㪰㪄㪈㪎㪃㩷㪚㪄㪏㪊
㪰㪄㪈㪍㪃㩷㪚㪄㪏㪊
㪚㪄㪎㪋 㪰㪄㪈㪍
㪤㪄 㪍 㪇
㪤㪄 㪍 㪇
㪰㪄㪈㪍㪃㩷㪩㪄㪋㪉
㪤㪄 㪍 㪇 㪱㪄㪍㪃㩷㪱㪄㪏
㪤㪄 㪍 㪇
㪤㪄 㪍 㪇
㪤㪄 㪍 㪇
㪰㪄㪈㪍
㪢㪄㪌㪌㪃㩷㪣㪄㪈㪉
㪦㪄㪈㪏
㪫㪄㪋㪃㩷㪦㪄㪋㪏
㪥㪄㪌㪋 㪥㪄㪌㪋
㪣㪄㪋㪉㪃㩷㪚㪄㪏㪌
㪢㪄㪌㪌㪃㩷㪣㪄㪈㪉
㪫㪄㪋㪃㩷㪦㪄㪈㪏㪃㩷㪦㪄㪋㪏㩷
㪘㪄㪏㪈 㪤㪄 㪈 㪍 㪍
㪘㪄㪏㪈
㪣㪄㪈
㪤㪄 㪉 㪎
㪤㪄 㪈 㪍 㪍 㪤㪄 㪈 㪍 㪍
㪤㪄 㪉 㪎
㪢㪄㪊㪇
㪤㪄 㪈 㪍 㪍
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
70
㪫㫀㫅㪺㪸 㪫㫀㫅㪺㪸 㪫㫀㫅㪺㪸 㪫㫀㫅㪺㪸 㪫㫀㫅㪺㪸 㪫㫀㫅㪺㪸
㩷㩷㪫㫀㫅㪺㫀㫅㪸㪼
㪚㫋㪼㫅㫆㫇㪿㪸㫉㫐㫅㪾㫆㪻㫆㫅 㪚㫋㪼㫅㫆㫇㪿㪸㫉㫐㫅㪾㫆㪻㫆㫅 㪚㫋㪼㫅㫆㫇㪿㪸㫉㫐㫅㪾㫆㪻㫆㫅 㪚㫋㪼㫅㫆㫇㪿㪸㫉㫐㫅㪾㫆㪻㫆㫅 㪚㫋㪼㫅㫆㫇㪿㪸㫉㫐㫅㪾㫆㪻㫆㫅 㪚㫋㪼㫅㫆㫇㪿㪸㫉㫐㫅㪾㫆㪻㫆㫅 㪚㫋㪼㫅㫆㫇㪿㪸㫉㫐㫅㪾㫆㪻㫆㫅 㪚㫋㪼㫅㫆㫇㪿㪸㫉㫐㫅㪾㫆㪻㫆㫅 㪚㫋㪼㫅㫆㫇㪿㪸㫉㫐㫅㪾㫆㪻㫆㫅 㪚㫋㪼㫅㫆㫇㪿㪸㫉㫐㫅㪾㫆㪻㫆㫅 㪚㫋㪼㫅㫆㫇㪿㪸㫉㫐㫅㪾㫆㪻㫆㫅 㪤㫐㫃㫆㫇㪿㪸㫉㫐㫅㪾㫆㪻㫆㫅 㪤㫐㫃㫆㫇㪿㪸㫉㫐㫅㪾㫆㪻㫆㫅 㪤㫐㫃㫆㫇㪿㪸㫉㫐㫅㪾㫆㪻㫆㫅 㪤㫐㫃㫆㫇㪿㪸㫉㫐㫅㪾㫆㪻㫆㫅 㪪㫈㫌㪸㫃㫀㫆㪹㪸㫉㪹㫌㫊
㩷㩷㪪㫈㫌㪸㫃㫀㫆㪹㪸㫉㪹㫀㫅㪸㪼
㪪㪺㪿㫀㫑㫆㫋㪿㫆㫉㪸㫀㪺㪿㫋㪿㫐㫊 㪪㪺㪿㫀㫑㫆㫋㪿㫆㫉㪸㫀㪺㪿㫋㪿㫐㫊 㪪㪺㪿㫀㫑㫆㫋㪿㫆㫉㪸㫀㪺㪿㫋㪿㫐㫊 㪪㪺㪿㫀㫑㫆㫋㪿㫆㫉㪸㫏 㪪㪺㪿㫀㫑㫆㫋㪿㫆㫉㪸㫏㩷 㪪㪺㪿㫀㫑㫆㫋㪿㫆㫉㪸㫏㩷 㪪㪺㪿㫀㫑㫆㫋㪿㫆㫉㪸㫏 㪪㪺㪿㫀㫑㫆㫋㪿㫆㫉㪸㫏㩷 㪪㪺㪿㫀㫑㫆㫋㪿㫆㫉㪸㫏㩷 㪪㪺㪿㫀㫑㫆㫋㪿㫆㫉㪸㫏㩷 㪪㪺㪿㫀㫑㫆㫋㪿㫆㫉㪸㫏㩷 㪪㪺㪿㫀㫑㫆㫋㪿㫆㫉㪸㫏 㪪㪺㪿㫀㫑㫆㫋㪿㫆㫉㪸㫏㩷 㪪㪺㪿㫀㫑㫆㫋㪿㫆㫉㪸㫏 㪪㪺㪿㫀㫑㫆㫋㪿㫆㫉㪸㫏
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㫋㫀㫅㪺㪸 㫋㫀㫅㪺㪸 㫋㫀㫅㪺㪸 㫋㫀㫅㪺㪸 㫋㫀㫅㪺㪸 㫋㫀㫅㪺㪸
㫀㪻㪼㫃㫃㫌㫊 㫀㪻㪼㫃㫃㫌㫊 㫀㪻㪼㫃㫃㫌㫊 㫀㪻㪼㫃㫃㫌㫊 㫀㪻㪼㫃㫃㫌㫊 㫀㪻㪼㫃㫃㫌㫊 㫀㪻㪼㫃㫃㫌㫊 㫀㪻㪼㫃㫃㫌㫊 㫀㪻㪼㫃㫃㫌㫊 㫀㪻㪼㫃㫃㫌㫊 㫀㪻㪼㫃㫃㫌㫊 㫇㫀㪺㪼㫌㫊 㫇㫀㪺㪼㫌㫊 㫇㫀㪺㪼㫌㫊 㫇㫀㪺㪼㫌㫊 㪺㫌㫉㫉㫀㪺㫌㫃㫌㫊
㫊㫇㪅㩷㪈 㫊㫇㪅㩷㪉
㫉㫀㪺㪿㪸㫉㪻㫊㫆㫅㫀㫀 㪪㪺㪿㫀㫑㫆㫋㪿㫆㫉㪸㫏 㫉㫀㪺㪿㪸㫉㪻㫊㫆㫅㫀㫀 㪪㪺㪿㫀㫑㫆㫋㪿㫆㫉㪸㫏 㫉㫀㪺㪿㪸㫉㪻㫊㫆㫅㫀㫀 㪪㪺㪿㫀㫑㫆㫋㪿㫆㫉㪸㫏 㪸㫉㪾㪼㫅㫋㪸㫋㫌㫊 㪻㪸㫍㫀㪻㫀 㪾㫉㪸㪿㪸㫄㫀 㫃㫀㫊㫊㫆㫃㪸㪹㫀㪸㫋㫌㫊 㫄㪸㪺㫉㫆㫇㫆㪾㫆㫅 㫇㫉㪼㫅㪸㫅㫋㫀 㫇㫊㪼㫌㪻㫆㪸㫂㫊㪸㫀㪼㫅㫊㫀㫊㩷㫀㫊㫊㫐㫂㫂㫌㫃㫀 㫋㪸㫃㫀㪼㫅㫊㫀㫊 㪻㪸㫃㫀㪼㫅㫊㫀㫊 㫋㪸㫃㫀㪼㫅㫊㫀㫊 㫐㫌㫅㫅㪸㫅㪼㫅㫊㫀㫊㩷㪻㪸㫃㫀㪼㫅㫊㫀㫊 㫎㪸㫃㫋㫆㫅㫀
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㫇㪼㫉㪽㪸㫄㫀㫃㫐㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷
㪫㪸㪹㫃㪼㩷㪍㪅㪈㪈㩷㩷㪦㫉㪻㪼㫉㩷㪚㪰㪧㪩㪠㪥㪠㪝㪦㪩㪤㪜㪪㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀
㪈㪋㪏
㪉㪋㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪋㪪㪫 㪈㪋㪤㩷㪂㩷㪊㪋㩷㪪㪤㪆㪪㪫 㪈㪍㪤㩷㪂㩷㪉㪏㪪㪤㩷㪂㩷㪋㪪㪫 㪈㪏㪤㩷㪂㩷㪉㪋㪪㪤㩷㪂㩷㪍㪪㪫
㪋㪏 㪋㪏 㪋㪏 㪋㪏 㪋㪏
㪤 㪝㪃㩷㪤
㪤
㪝㪃㩷㪤
㪊㪉㩷㪤㪆㪪㪤㩷㪂㩷㪈㪍㩷㪪㪫㪆㪘 㪉㪏㪤㩷㪂㩷㪉㪇㪪㪤
㪋㪏 㪋㪏
㪉㪇㩷㪤㪆㪪㪤㩷㪂㩷㪈㪍㪪㪫㩷㪂㩷㪈㪉㪘
㪋㪏
㪍㪤㩷㪂㩷㪉㪏㪪㪤㩷㪂㩷㪈㪋㩷㪪㪫㪆㪘
㪋㪏
㪏㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪈㪏㪘
㪊㪇㩷㪤㪆㪪㪤㩷㪂㩷㪈㪏㩷㪪㪫㪆㪘 㪊㪍㩷㪤㪆㪪㪤㩷㪂㩷㪈㪉㩷㪪㪫㪆㪘
㪋㪏 㪋㪏 㪋㪏
㪈㪋㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪉㪉㪪㪫
㪋㪏
㪈㪋㪤㩷㪂㩷㪊㪇㪪㪤㩷㪂㩷㪋㪪㪫
㪈㪋㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪏㪪㪫㩷㪂㩷㪍㪘
㪋㪏
㪝㪃㩷㪤
㪈㪍㪤㩷㪂㩷㪉㪇㩷㪪㪤㪆㪪㪫㩷㪂㩷㪈㪉㪘
㪋㪏
㪈㪋㪤㩷㪂㩷㪉㪋㪪㪤㩷㪂㩷㪈㪇㩷㪪㪫㪆㪘
㪋㪏
㪍㪏
㪍㪏
㪏㪉
㪎㪏 㪏㪋
㪎㪋
㪐㪉
㪐㪉 㪐㪇
㪐㪉
㪏㪇 㪐㪍
㪏㪉
㪏㪍
㪐㪍 㪏㪍
㪏㪏
㪈㪏㪤㩷㪂㩷㪉㪉㪪㪤㩷㪂㩷㪏㩷㪪㪫㪆㪘 㪈㪍㪤㩷㪂㩷㪊㪉㪪㪤 㪈㪏㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪈㪇㪪㪫
㪋㪏
㪐㪇
㪏㪏
㪏㪋
㪉㪉㪍
㪉㪉㪍
㪈㪋㪍
㪉㪉㪍 㪉㪉㪋
㪉㪈㪍
㪉㪈㪏
㪉㪊㪇
㪈㪏㪤㩷㪂㩷㪉㪋㪪㪤㩷㪂㩷㪍㪪㪫
㪋㪏 㪋㪏
㪋㪏
㪝㪃㩷㪤
㪝㪃㩷㪤
㪈㪍㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪈㪉㪪㪫 㪉㪇㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪏㪪㪫
㪋㪏 㪋㪏
㪋㪏㪤㩷㪂㩷㪊㪇㪪㪤㩷㪂㩷㪎㪇㩷㪪㪫㪆㪘
㪈㪋㪏
㪉㪍㪤㩷㪂㩷㪉㪏㪪㪤㩷㪂㩷㪉㪉㪪㪫㩷㪂㩷㪈㪍㪘 㪌㪇㪤㩷㪂㩷㪉㪏㪪㪤㩷㪂㩷㪎㪇㩷㪪㪫㪆㪘
㪐㪉
㪝㪃㩷㪤
㪋㪏㪤㩷㪂㩷㪊㪇㪪㪤㩷㪂㩷㪎㪇㩷㪪㪫㪆㪘 㪋㪏㪤㩷㪂㩷㪉㪏㪪㪤㩷㪂㩷㪎㪉㩷㪪㪫㪆㪘
㪈㪋㪏
㪈㪋㪏 㪈㪋㪏
㪐㪏㪄㪈㪇㪇
㪉㪏㪤㩷㪂㩷㪋㪇㪪㪤㩷㪂㩷㪊㪍㪪㪫㩷㪂㩷㪋㪋㪘
㪊㪏㪤㩷㪂㩷㪊㪉㪪㪤㩷㪂㩷㪎㪏㩷㪪㪫㪆㪘
㪐㪇㪄㪐㪏
㪌㪉㪤㩷㪂㩷㪊㪇㪪㪤㩷㪂㩷㪍㪍㩷㪪㪫㪆㪘
㪐㪏㪄㪈㪌㪇 㪐㪏 㪉㪇㪤㩷㪂㩷㪊㪋㪪㪤㩷㪂㩷㪉㪋㪪㪫㩷㪂㩷㪉㪇㪘 㪈㪋㪏
㪈㪌㪉
㪍㪍㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪈㪇㪘
㪐㪏
㪈㪋㪏
㪈㪏㪇
㪉㪋㪤㩷㪂㩷㪉㪏㪪㪤㩷㪂㩷㪉㪋㪪㪫㩷㪂㩷㪉㪉㪘
㪈㪌㪇
㪉㪋㪤㩷㪂㩷㪉㪏㪪㪤㩷㪂㩷㪉㪋㪪㪫㩷㪂㩷㪉㪉㪘
㪈㪌㪇
㪏㪋
㪎㪏
㪐㪍
㪐㪍
㪐㪍 㪐㪍
㪐㪍
㪐㪍
㪐㪍
㪐㪇
㪏㪋
㪐㪍 㪐㪍
㪐㪍
㪐㪍
㪐㪍
㪈㪍㪏
㪉㪌㪉
㪈㪎㪍
㪈㪏㪍
㪈㪎㪋
㪈㪎㪋
㪋
㪋
㪍
㪋
㪉
㪝 㪞 㪟 㪥㪝㪈 㪥㪝㪉 㪘㪾㪄 㪥㪦㪩㫊
㪐㪏
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪐㪏
㪛 㪉㫅
㪤
㪝㪃㩷㪤
㪝㪃㩷㪤
㪝㪃㩷㪤
㪚 㪪㪼㫏
㪉㪅㪊㩷㪝㪚㪤
㩿㪈㪅㪐㪁㩷㪝㪛㪀
㩿㪉㪅㪋㪁㩷㪝㪚㪤㪀
㪉㪅㪈㩷㪝㪛
㩿㪉㪅㪇㩷㪝㪚㪤㪀 㩿㪈㪅㪐㪁㩷㪝㪛㪀
㪉㪅㪇㩷㪝㪛
㪉㪅㪈㩷㪝㪛
㩿㪉㪅㪋㪁㩷㪝㪚㪤㪀
㪎㪅㪇㩷㪝㪛
㪍㪅㪐㩷㪝㪛
㪍㪅㪌㩷㪝㪛
㪠 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪠㫅㪻㫀㪸㩷㩿㪡㪸㫄㫄㫌㪀
㩿㪚㪅㩷㪘㫊㫀㪸㪀
㪚㪿㫀㫅㪸㩷㩿㪰㫌㫅㫅㪸㫅㪀
㪚㪿㫀㫅㪸㩷㩿㪰㫌㫅㫅㪸㫅㪀
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪍㪯
㪍㪯
㪋㪯
㪍㪯 㪍㪯
㪋㪯
㪪㫎㪼㪻㪼㫅
㪠㫋㪸㫃㫐
䋨㪜㫌㫉㫆㫇㪼㪀
㪚㫉㫆㪸㫋㫀㪸 㪙㫆㫊㫅㫀㪸㪄㪟㪼㫉㫑㪼㪾㫆㫍㫀㫅㪸
㪙㫌㫃㪾㪸㫉㫀㪸
㪚㪿㫀㫅㪸㩷㩿㪮㫌㪿㪸㫅㪀
㪚㪿㫀㫅㪸㩷㩿㪪㪿㪸㫅㪾㪿㪸㫀㪀 㪚㪿㫀㫅㪸㩷㩿㪮㫌㪿㪸㫅㪀
㪚㪿㫀㫅㪸㩷㩿㪪㪿㪸㫊㪿㫀㪀
㪚㪿㫀㫅㪸㩷㩿㪪㪿㪸㫊㪿㫀㪀
㪽㫆㫉㫄㪼㫉㩷㪰㫌㪾㫆㫊㫃㪸㫍㫀㪸 㪟㫌㫅㪾㪸㫉㫐
㪠㫅㪻㫀㪸㩷㩿㪮㪙㪀
㪡㪸㫇㪸㫅㩷㩿㪦㫊㪸㫂㪸㪀
㪡㪸㫇㪸㫅
㪚㪿㫀㫅㪸㩷㩿㪙㪼㫀㫁㫀㫅㪾㪀 㪚㪿㫀㫅㪸㩷㩿㪪㪿㪸㫊㪿㫀㪀
㪚㪿㫀㫅㪸㩷㩿㪰㫌㫅㫅㪸㫅㪀
㪚㪿㫀㫅㪸㩷㩿㪟㫌㪹㪼㫀㪀
㪚㪿㫀㫅㪸㩷㩿㪟㫌㫅㪸㫅㪀㩷
㪚㪿㫀㫅㪸㩷㩿㪙㪼㫀㫁㫀㫅㪾㪀
㪚㪿㫀㫅㪸㩷㩿㪰㫌㫅㫅㪸㫅㪀
㪚㪿㫀㫅㪸㩷㩿㪰㫌㫅㫅㪸㫅㪀
㪚㪿㫀㫅㪸㩷㩿㪚㪼㫅㫋㫉㪸㫃㩷㪘㫊㫀㪸㪀
㪚㪿㫀㫅㪸㩷㩿㪰㫌㫅㫅㪸㫅㪀 㪚㪿㫀㫅㪸㩷㩿㪰㫌㫅㫅㪸㫅㪀
㪢㪸㫑㪸㫂㪿㫊㫋㪸㫅
㪍㪯㪃㩷㪘㪚㪥㪔㪈㪌㪍 㪚㪿㫀㫅㪸㩷㩿㪪㫀㪺㪿㫌㪸㫅㪀㩷
㪋㪯
㪍㪯
㪍㪯
㪋㪯㪃㩷㪍㪯 㩿㪘㫊㫀㪸㪀 㪋㪯㪃㩷㪘㪚㪥㪔㪈㪇㪋 㪚㪿㫀㫅㪸㩷㩿㪪㫀㪺㪿㫌㪸㫅㪀㩷
㪋㪯
㪋㪯㪃㩷㪘㪚㪥㪔㪈㪇㪇 㪠㫅㪻㫀㪸㩷㩿㪢㫆㫊㫀㩷㪩㪅㪀
㪋㪯㪃㩷㪘㪚㪥㪔㪈㪇㪇 㪠㫅㪻㫀㪸㩷㩿㪙㪼㪸㫊㩷㪩㪅㪀
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪥㪄㪌㪇
㪚㪄㪊㪋
㪚㪄㪎㪌㪃㩷㪝㪄㪊㪇
㪘㪄㪉㪏 㪙㪄㪉㪊
㪧㪄㪊㪎
㪣㪄㪋㪉㪃㩷㪰㪄㪈㪌
㪣㪄㪍㪏 㪞㪄㪎㪇㪃㩷㪚㪄㪏㪊
㪱㪄㪉㪎
㪱㪄㪉㪉㪃㩷㪝㪄㪌
㪘㪄㪉㪏 㪙㪄㪌㪋
㪤㪄 㪉 㪎
㪦㪄㪈㪏
㪦㪄㪈㪍
㪣㪄㪌㪏㪃㩷㪫㪄㪎㪋 㪱㪄㪉㪉㪃㩷㪚㪄㪏㪊
㪱㪄㪈㪃㩷㪱㪄㪏
㪣㪄㪋㪉㪃㩷㪞㪄㪎㪇㪃㩷㪩㪄㪋㪉㪃㩷㪩㪄㪈㪇㪌
㪣㪄㪍㪊
㪰㪄㪈㪈㪃㩷㪝㪄㪌
㪱㪄㪏
㪱㪄㪍㪃㩷㪱㪄㪎㪃㩷㪱㪄㪏
㪰㪄㪈㪍
㪱㪄㪍㪃㩷㪱㪄㪎㪃㩷㪱㪄㪏 㪱㪄㪏
㪚㪄㪎㪋
㪣㪄㪋㪌㪃㩷㪰㪄㪈㪋
㪚㪄㪎㪋
㪱㪄㪏
㪱㪄㪍㪃㩷㪱㪄㪎㪃㩷㪱㪄㪏
㪛㪄㪉㪎 㪣㪄㪋㪌㪃㩷㪰㪄㪈㪋
㪙㪄㪌
㪙㪄㪌
㪙㪄㪌
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
71
㪹㪸㫃㫀㫋㫆㫉㪸 㫊㫌㪺㪸㫋㫀㫆
㫋㫌㫄㫀㫉㫆㫊㫋㫉㫀㫊 㫄㫀㪺㫉㫆㫃㪼㫇㫀㫊 㫊㫀㫄㫆㫅㫀 㪸㫉㪾㪼㫅㫋㪼㪸 㪻㪸㫍㫀㪻㫀 㪽㪸㫅㪾㫀 㫊㪼㪺㪿㫌㪸㫅㪼㫅㫊㫀㫊
㫋㫀㫅㪺㪸 㫋㫀㫅㪺㪸 㫋㫀㫅㪺㪸
㪚㪸㫉㫇㫀㫆㪻㪼㫊 㪚㪸㫉㫇㫀㫆㪻㪼㫊 㪚㪸㫋㫆㫊㫋㫆㫄㫌㫊 㪚㪸㫋㫆㫊㫋㫆㫄㫌㫊 㪚㪸㫋㫆㫊㫋㫆㫄㫌㫊 㪚㪸㫋㫆㫊㫋㫆㫄㫌㫊 㪚㪸㫋㫆㫊㫋㫆㫄㫌㫊 㪚㪸㫋㫆㫊㫋㫆㫄㫌㫊 㪚㪸㫋㫆㫊㫋㫆㫄㫌㫊 㪚㫐㪺㫃㪼㫇㫋㫌㫊 㪜㫉㫀㫄㫐㫑㫆㫅 㪟㫐㫇㪼㫅㫋㪼㫃㫀㫌㫄 㪠㪺㫋㫀㫆㪹㫌㫊 㪤㫀㫅㫐㫋㫉㪼㫄㪸 㪤㫆㫏㫆㫊㫋㫆㫄㪸 㪤㫆㫏㫆㫊㫋㫆㫄㪸 㪤㫆㫏㫆㫊㫋㫆㫄㪸 㪤㫐㫏㫆㪺㫐㫇㫉㫀㫅㫌㫊
㪚㪸㫋㫆㫊㫋㫆㫄㫀㪻㪸㪼
㪞㫐㫉㫀㫅㫆㪺㪿㪼㫀㫃㫌㫊
㪋㪏 㪋㪏 㪋㪏 㪋㪏
㪝㪃㩷㪤 㪝㪃㩷㪤 㪝㪃㩷㪤 㪝㪃㩷㪤
㪘㪚㪥㪔㪌㪇
㪝㪃㩷㪤
㪐㪍㪄㪈㪇㪇
㫄㪼㫃㪸㫅㫆㫇㫊 㪻㫌㫈㫌㪼㫊㫅㪼㫀 㪼㫉㫐㫋㪿㫉㫌㫉㫌㫄 㫄㪸㪺㫉㫆㫃㪼㫇㫀㪻㫆㫋㫌㫄 㪸㫊㫀㪸㫋㫀㪺㫌㫊
㫊㫇㪅
㪈㪇㪇
㪈㪈㪏
㪬㪪㪘㩷㩿㪤㪠㪀
㪋㪯㪃㩷㪘㪚㪥㪔㪈㪇㪇 㪚㪿㫀㫅㪸㩷㩿㪪㫀㪺㪿㫌㪸㫅㪀㩷
㪬㪪㪘㩷㩿㪤㪠㪀 㪬㪪㪘㩷㩿㪤㪠㪀
㪋㪯 㪋㪯 㪋㪯
㪬㪪㪘㩷㩿㪤㪦㪀
㪐㪍㪄㪈㪇㪇
㪋㪯
㪬㪪㪘㩷㩿㪤㪠㪀 㪬㪪㪘㩷㩿㪤㪠㪀
㪬㪪㪘㩷㩿㪤㪦㪀
㪬㪪㪘㩷㩿㪬㪫㪀
㪬㪪㪘㩷㩿㪚㪦㪀
㪋㪯 㪬㪪㪘㩷㩿㪤㪠㪀 㪋㪯㪃㩷㪘㪚㪥㪔㪈㪇㪇 㪬㪪㪘㩷㩿㪤㪜㪀
㪐㪍㪄㪈㪇㪇 㪐㪍㪄㪈㪇㪇
㪋㪅㪊㩷㪝㪚㪤
㩿㪌㪅㪈㩷㪝㪠㪘㪀
㪚㪸㫅㪸㪻㪸㩷㩿㪦㫅㫋㪅㪀
㪬㪪㪘㩷㩿㪤㪠㪀
㪈㪏㩷㪤㪆㪪㪤㩷㪂㩷㪏㪉㩷㪪㪫㪆㪘
㪈㪉㪋
㩿㪌㪅㪌㩷㪝㪚㪤㪀
㪬㪪㪘㩷㩿㪘㪱㪀
㪚㪸㫅㪸㪻㪸㩷㩿㪦㫅㫋㪅㪀
㪋㪯
㪓㪐㪍
㪐㪍㪄㪐㪏 㪈㪇㪇 㪉㪋㩷㪤㪆㪪㪤㩷㪂㩷㪎㪍㩷㪪㪫㪆㪘
㪈㪉㪋
㪋㪯
㪈㪉㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪎㪉㩷㪪㪫㪆㪘
㪐㪏
㪋㪯 㪋㪯
㪋㪅㪉㩷㪝㪠㪘
㪬㪪㪘㩷㩿㪢㪪㪀
㪪㪅㪜㪅㩷㪘㫊㫀㪸
㪠㫅㪻㫀㪸㩷㩿㪘㫊㫊㪸㫄㪀
㪠㫅㪻㫀㪸㩷㩿㪘㫊㫊㪸㫄㪀
㪚㪿㫀㫅㪸㩷㩿㪪㫀㪺㪿㫌㪸㫅㪀㩷
㪚㪿㫀㫅㪸㩷㩿㪪㫀㪺㪿㫌㪸㫅㪀㩷
㪚㪿㫀㫅㪸㩷㩿㪟㫌㪹㪼㫀㪀
㪚㪿㫀㫅㪸㩷㩿㪟㫌㪹㪼㫀㪀
㪚㪿㫀㫅㪸㩷㩿㪟㫌㪹㪼㫀㪀 㪚㪿㫀㫅㪸㩷㩿㪟㫌㪹㪼㫀㪀
㪚㪿㫀㫅㪸㩷㩿㪪㫀㪺㪿㫌㪸㫅㪀㩷
㪝㫉㪸㫅㪺㪼
㪜㫃㪹㪼㩷㪩㪅㪃㩷㪛㪸㫅㫌㪹㪼㩷㪩㪅 㪟㫌㫅㪾㪸㫉㫐
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪋㪯㪃㩷㪘㪚㪥㪔㪈㪇㪇 㪬㪪㪘
㪐㪍㪄㪈㪇㪇
㪐㪏
㪈㪇㪇
㪋㪯 㪋㪯
㪋㪯
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇 㪘㪚㪥㪔㪌㪇
㪐㪍㪄㪈㪇㪇 㪐㪍㪄㪈㪇㪇
㪋㪅㪌㩷㪝㪚㪤
㪈㪅㪉㪁㩷㪝㪚㪤㪃㩷㪈㪅㪇㩷㪝㪛㪃㩷㪈㪅㪊㩷㪝㪠㪘
㪉㪅㪌㪁㩷㪝㪛
㪈㪅㪏㪁㩷㪝㪛
㪘㪚㪥㪔㪌㪇
㪋㪯
㪉
㪋
㪋
㪋
㪋
㪋
㪉㪅㪈㩷㪝㪛
㪐㪍㪄㪈㪇㪇
㪍㪇
㪐㪍
㪐㪍
㪐㪍
㪐㪍
㪐㪍 㪐㪍
㪐㪍
㪉
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪋㪯
㪈㪈㪉
㪌㪍
㪐㪇
㪐㪇
㪐㪉
㪐㪉
㪐㪉
㪐㪋
㪐㪉 㪐㪉
㪐㪉
㪏㪍
㪐㪇 㪐㪇
㪠 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪋㪯
㪏㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪏㪋㩷㪪㪫㪆㪘
㪋㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪊㪍㪘
㪉㪉㪤㩷㪂㩷㪈㪏㪪㪤㩷㪂㩷㪈㪇㪘
㪉㪋㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪈㪇㪘
㪈㪏㪤㩷㪂㩷㪉㪍㪪㪤㩷㪂㩷㪋㪪㪫
㪈㪍㪤㩷㪂㩷㪉㪏㪪㪤㩷㪂㩷㪋㪪㪫
㪈㪏㪤㩷㪂㩷㪉㪍㪪㪤㩷㪂㩷㪋㪪㪫
㪉㪇㪤㩷㪂㩷㪉㪍㪪㪤㩷㪂㩷㪉㪪㪫
㪈㪏㪤㩷㪂㩷㪉㪍㪪㪤㩷㪂㩷㪋㪪㪫 㪈㪏㪤㩷㪂㩷㪉㪍㪪㪤㩷㪂㩷㪋㪪㪫
㪈㪏㪤㩷㪂㩷㪉㪍㪪㪤㩷㪂㩷㪋㪪㪫
㪏㪋
㪝 㪞 㪟 㪥㪝㪈 㪥㪝㪉 㪘㪾㪄 㪥㪦㪩㫊
㪐㪍㪄㪈㪇㪇
㪝㪃㩷㪤
㪐㪍㪄㪈㪇㪇
㪋㪏
㪌㪇
㪌㪇
㪋㪏 㪋㪏
㪤
㪋㪏
㪈㪋㪤㩷㪂㩷㪉㪋㩷㪪㪤㪆㪪㪫㩷㪂㩷㪈㪇㪘
㪋㪏
㪝㪃㩷㪤 㪝㪃㩷㪤
㪈㪍㪤㩷㪂㩷㪉㪍㩷㪪㪤㪆㪪㪫㩷㪂㩷㪍㪘 㪈㪏㪤㩷㪂㩷㪈㪏㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪍㪘㩷
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪋㪏 㪋㪏
㪛 㪉㫅
㪝㪃㩷㪤
㪝㪃㩷㪤
㪚 㪪㪼㫏
㪐㪍㪄㪈㪇㪇
㪧㫊㫐㫃㫆㫉㪿㫐㫅㪺㪿㫌㫊㩷㪹㫆㫃㫀㫋㫆㫉㪸
㪘㪺㪸㫅㫋㪿㫆㪹㫉㪸㫄㪸
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪺㪸㫉㫇㫀㫆 㪺㫐㫇㫉㫀㫅㫌㫊 㪺㪸㫋㫆㫊㫋㫆㫄㫌㫊 㪺㫃㪸㫉㫂㫀 㪺㫆㫄㫄㪼㫉㫊㫆㫅㫀 㪺㫆㫄㫄㪼㫉㫊㫆㫅㫀 㪺㫆㫄㫄㪼㫉㫊㫆㫅㫀 㪻㫀㫊㪺㫆㪹㫆㫃㫌㫊 㫃㪸㫋㫀㫇㫀㫅㫅㫀㫊 㪼㫃㫆㫅㪾㪸㫋㫌㫊 㫊㫌㪺㪼㫋㫋㪸 㫅㫀㪾㫉㫀㪺㪸㫅㫊
㪸㫐㫄㫆㫅㫀㪼㫉㫀
㪪㫌㫇㪼㫉㪽㪸㫄㫀㫃㫐㩷㪚㫆㪹㫀㫋㫆㫀㪻㪼㪸 㪞㫐㫉㫀㫅㫆㪺㪿㪼㫀㫃㫀㪻㪸㪼
㪧㫊㫀㫃㫆㫉㪿㫐㫅㪺㪿㫌㫊 㪧㫊㫀㫃㫆㫉㪿㫐㫅㪺㪿㫌㫊
㪧㫊㫀㫃㫆㫉㪿㫐㫅㪺㪿㫀㪻㪸㪼
㪛㫀㫊㫋㫆㪼㪺㪿㫆㪻㫆㫅 㪧㫃㪸㪾㫀㫆㪾㫅㪸㫋㪿㫆㫇㫊 㪧㫊㪼㫌㪻㫆㪹㫉㪸㫄㪸 㪯㪼㫅㫆㪺㫐㫇㫉㫀㫊 㪯㪼㫅㫆㪺㫐㫇㫉㫀㫊 㪯㪼㫅㫆㪺㫐㫇㫉㫀㫊 㪯㪼㫅㫆㪺㫐㫇㫉㫀㫊
㩷㩷㪯㪼㫅㫆㪺㫐㫇㫉㫀㫅㪸㪼
㪫㫀㫅㪺㪸 㪫㫀㫅㪺㪸 㪫㫀㫅㪺㪸
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㫇㪼㫉㪽㪸㫄㫀㫃㫐㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷
㪫㪸㪹㫃㪼㩷㪍㪅㪈㪈㩷㩷㪦㫉㪻㪼㫉㩷㪚㪰㪧㪩㪠㪥㪠㪝㪦㪩㪤㪜㪪㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀
㪣㪄㪊㪎
㪬㪄㪍㪍㪃㩷㪝㪄㪉㪊 㪬㪄㪍㪍
㪬㪄㪍㪍
㪬㪄㪍㪍
㪬㪄㪍㪍
㪬㪄㪍㪍 㪬㪄㪍㪍
㪬㪄㪍㪍
㪬㪄㪍㪍
㪬㪄㪍㪍
㪬㪄㪍㪍㪃㩷㪟㪄㪋㪈 㪙㪄㪍㪋
㪙㪄㪈㪈㪃㩷㪝㪄㪉㪊
㪬㪄㪍㪍
㪙㪄㪈㪈㪃㩷㪟㪄㪋㪈
㪝㪄㪉㪊
㪬㪄㪍㪍
㪘㪄㪏㪉㪃㩷㪦㪄㪋㪏㪃㩷㪟㪄㪋㪈
㪢㪄㪋㪊
㪢㪄㪋㪈
㪱㪄㪉㪌㪃㩷㪰㪄㪈㪌
㪱㪄㪉㪌㪃㩷㪰㪄㪈㪌
㪣㪄㪉㪏㪃㩷㪱㪄㪉㪌㪃㩷㪚㪄㪏㪊
㪣㪄㪉㪏㪃㩷㪰㪄㪈㪌㪃㩷㪱㪄㪉㪌
㪣㪄㪉㪏㪃㩷㪱㪄㪉㪌㪃㩷㪚㪄㪏㪊 㪣㪄㪉㪏㪃㩷㪰㪄㪈㪌
㪣㪄㪊㪉㪃㩷㪰㪄㪈㪌
㪟㪄㪉㪃㩷㪟㪄㪋
㪤㪄 㪌 㪋 㪙㪄㪌㪋
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
72
㪣㪼㫇㫋㫆㪹㫆㫋㫀㪸 㪣㪼㫇㫋㫆㪹㫆㫋㫀㪸 㪣㪼㫇㫋㫆㪹㫆㫋㫀㪸 㪣㪼㫇㫋㫆㪹㫆㫋㫀㪸 㪣㪼㫇㫋㫆㪹㫆㫋㫀㪸 㪣㪼㫇㫋㫆㪹㫆㫋㫀㪸 㪣㪼㫇㫋㫆㪹㫆㫋㫀㪸 㪧㪸㫉㪸㪹㫆㫋㫀㪸
㩷㩷㪣㪼㫇㫋㫆㪹㫆㫋㫀㫀㫅㪸㪼
㪙㫆㫋㫀㪸 㪙㫆㫋㫀㪸 㪙㫆㫋㫀㪸 㪙㫆㫋㫀㪸 㪙㫆㫋㫀㪸 㪙㫆㫋㫀㪸 㪙㫆㫋㫀㪸 㪙㫆㫋㫀㪸 㪙㫆㫋㫀㪸 㪙㫆㫋㫀㪸 㪚㪿㫉㫆㫄㫆㪹㫆㫋㫀㪸 㪚㪿㫉㫆㫄㫆㪹㫆㫋㫀㪸 㪪㫀㫅㫀㪹㫆㫋㫀㪸 㪪㫀㫅㫀㪹㫆㫋㫀㪸 㪪㫐㫅㪺㫉㫆㫊㫊㫌㫊 㪪㫐㫅㪺㫉㫆㫊㫊㫌㫊 㪪㫐㫅㪺㫉㫆㫊㫊㫌㫊 㪪㫐㫅㪺㫉㫆㫊㫊㫌㫊 㪪㫐㫅㪺㫉㫆㫊㫊㫌㫊 㪰㪸㫊㫌㪿㫀㫂㫆㫋㪸㫂㫀㪸 㪰㪸㫊㫌㪿㫀㫂㫆㫋㪸㫂㫀㪸 㪰㪸㫊㫌㪿㫀㫂㫆㫋㪸㫂㫀㪸 㪰㪸㫊㫌㪿㫀㫂㫆㫋㪸㫂㫀㪸 㪰㪸㫊㫌㪿㫀㫂㫆㫋㪸㫂㫀㪸 㪰㪸㫊㫌㪿㫀㫂㫆㫋㪸㫂㫀㪸
㪚㫆㪹㫀㫋㫀㪻㪸㪼 㩷㩷㪙㫆㫋㫀㫀㫅㪸㪼
㪤㫐㫏㫆㪺㫐㫇㫉㫀㫅㫌㫊 㪤㫐㫏㫆㪺㫐㫇㫉㫀㫅㫌㫊
㪺㫌㫉㫋㪸 㪼㫃㫆㫅㪾㪸㫋㪸 㪾㫌㫀㫃㫀㫅㪼㫅㫊㫀㫊 㫇㪼㫃㫃㪼㪾㫉㫀㫅㫀 㫇㪼㫃㫃㪼㪾㫉㫀㫅㫀 㫋㪸㪼㫅㫀㫆㫇㫊 㫑㪼㪹㫉㪸 㪹㪸㫅㪸㫉㪼㫊㪺㫌㫀
㪸㫃㫄㫆㫉㪿㪸㪼 㪹㫀㫉㪻㫀 㪻㪸㫉㫀㫆 㪻㪸㫉㫀㫆 㪻㪸㫐㫀 㪿㫀㫊㫋㫉㫀㫆㫅㫀㪺㪸 㫃㫆㪿㪸㪺㪿㪸㫋㪸 㫃㫆㪿㪸㪺㪿㪸㫋㪸 㫉㫆㫊㫋㫉㪸㫋㪸 㫊㫋㫉㫀㪸㫋㪸 㫄㪸㪺㫉㪸㪺㪸㫅㫋㪿㪸 㫄㪸㪺㫉㪸㪺㪸㫅㫋㪿㪸 㫇㫌㫃㪺㪿㫉㪸 㫇㫌㫃㪺㪿㫉㪸 㪹㪼㫉㪻㫄㫆㫉㪼㫀 㪿㪼㫃㫆㪻㪼㫊 㪿㫐㫄㪼㫅㫆㫇㪿㫐㫊㪸 㪿㫐㫄㪼㫅㫆㫇㪿㫐㫊㪸 㫉㪼㫍㪼㫉㫊㪸 㪼㫆㫊 㫃㪼㪺㫆㫅㫋㪼㫀 㫄㫆㪻㪼㫊㫋㪸 㫄㫆㫉㫃㪼㫋㫀㩷 㫅㫀㪾㫉㫆㫃㫀㫅㪼㪸㫋㪸 㫊㫀㪻㫋㪿㫀㫄㫌㫅㫂㫀
㪸㫊㫀㪸㫋㫀㪺㫌㫊 㪸㫊㫀㪸㫋㫀㪺㫌㫊
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㫇㪼㫉㪽㪸㫄㫀㫃㫐㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷
㪙㫆㫋㫀㪸
㪙㫆㫋㫀㪸 㪙㫆㫋㫀㪸 㪙㫆㫋㫀㪸
㪙㫆㫋㫀㪸 㪙㫆㫋㫀㪸 㪙㫆㫋㫀㪸 㪙㫆㫋㫀㪸 㪙㫆㫋㫀㪸 㪙㫆㫋㫀㪸 㪙㫆㫋㫀㪸 㪙㫆㫋㫀㪸
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪫㪸㪹㫃㪼㩷㪍㪅㪈㪈㩷㩷㪦㫉㪻㪼㫉㩷㪚㪰㪧㪩㪠㪥㪠㪝㪦㪩㪤㪜㪪㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀
㪋㪤㩷㪂㩷㪈㪋㩷㪪㪤㪆㪪㪫㩷㪂㩷㪏㪉㪘
㪈㪉㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪎㪍㪘
㪐㪇 㪐㪏
㪏㪤㩷㪂㩷㪏㪪㪤㩷㪂㩷㪈㪉㪪㪫㩷㪂㩷㪉㪉㪘 㪍㪤㩷㪂㩷㪉㪉㩷㪪㪤㪆㪪㪫㩷㪂㩷㪉㪉㪘 㪍㪤㩷㪂㩷㪈㪇㪪㪤㩷㪂㩷㪈㪉㪪㪫㩷㪂㩷㪉㪉㪘 㪍㪤㩷㪂㩷㪈㪇㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪉㪋㪘 㪍㪤㩷㪂㩷㪈㪋㩷㪪㪤㪆㪪㪫㩷㪂㩷㪊㪇㪘
㪌㪇 㪌㪇 㪌㪇 㪌㪇 㪌㪇
㪝㪃㩷㪤 㪝 㪝㪃㩷㪤
㪍㪤㩷㪂㩷㪏㪪㪤㩷㪂㩷㪏㪪㪫㩷㪂㩷㪉㪏㪘
㪌㪇
㪝㪃㩷㪤
㪍㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪈㪏㪪㪫㩷㪂㩷㪈㪋㪘
㪏㪤㩷㪂㩷㪈㪇㪪㪤㩷㪂㩷㪊㪉㩷㪪㪫㪆㪘
㪌㪇
㪌㪇
㪈㪇㪇
㪈㪉㪤㩷㪂㩷㪈㪉㩷㪪㪤㪆㪪㪫㩷㪂㩷㪎㪍㪘
㪈㪋㪤㩷㪂㩷㪈㪉㩷㪪㪤㪆㪪㪫㩷㪂㩷㪎㪋㪘
㪈㪇㪇 㪈㪇㪇
㪈㪇㪤㩷㪂㩷㪉㪇㩷㪪㪤㪆㪪㪫㩷㪂㩷㪎㪇㪘 㪈㪋㪤㩷㪂㩷㪈㪋㩷㪪㪤㪆㪪㪫㩷㪂㩷㪎㪉㪘
㪈㪇㪇 㪈㪇㪇
㪍㪍
㪍㪍
㪍㪍
㪍㪋
㪍㪏
㪍㪏
㪎㪉
㪎㪍
㪎㪏 㪎㪏
㪎㪏
㪎㪉
㪏㪍
㪈㪉㪋
㪈㪉㪍
㪉
㪈㪅㪈㩷㪝㪛
㪈㪅㪈㩷㪝㪛
㪈㪅㪌㩷㪝㪛
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㩿㪘㫊㫀㪸㪀
㪠㫅㪻㫀㪸㩷㩿㪘㫊㫊㪸㫄㪀 㪠㫅㪻㫀㪸㩷㩿㪬㪅㪧㪅㪀
㪠㫅㪻㫀㪸㩷㩿㪘㫊㫊㪸㫄㪀
㪠㫅㪻㫀㪸㩷㩿㪢㪸㫊㪿㫄㫀㫉㪀
㪠㫅㪻㫀㪸㩷㩿㪬㪅㪧㪅㪀
㪋㪯
㩿㪚㪿㫀㫅㪸㪃㩷㪰㫌㫅㫅㪸㫅㪀
㪉㪙㪃㩷㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇 㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㩿㪚㪿㫀㫅㪸㪀
㪚㪿㫀㫅㪸㩷㩿㪞㫌㫀㫃㫀㫅㪀
㩿㪚㪿㫀㫅㪸㪀 㪚㪿㫀㫅㪸㩷㩿㪥㪸㫅㪺㪿㫆㫅㪾㪀
㪚㪿㫀㫅㪸㩷㩿㪞㫌㫀㫃㫀㫅㪀
㪚㪿㫀㫅㪸㩷㩿㪞㫌㫀㫃㫀㫅㪀
㪚㪿㫀㫅㪸㩷㩿㪣㪼㫊㪿㪸㫅㪀㩷
㪡㪸㫇㪸㫅㩷㩿㪦㫂㪸㫐㪸㫄㪸㪀
㪋㪯㪃㩷㪘㪚㪥㪔㪈㪇㪇 㩿㪫㪿㪸㫀㫃㪸㫅㪻㪀
㪋㪯
㪋㪯㪃㩷㪘㪚㪥㪔㪈㪇㪇 㩿㪚㪸㫄㪹㫆㪻㫀㪸㪃㩷㪫㪿㪸㫀㫃㪸㫅㪻㪀
㪋㪯㪃㩷㪘㪚㪥㪔㪈㪇㪇 㩿㪫㪿㪸㫀㫃㪸㫅㪻㪀 㪋㪯㪃㩷㪘㪚㪥㪔㪈㪇㪇 㩿㪫㪿㪸㫀㫃㪸㫅㪻㪀
㩿㪣㪸㫆㫊㪀
㩿㪠㫅㪻㫆㫅㪼㫊㫀㪸㪀
㪠㫅㪻㫀㪸㩷㩿㪤㪸㫅㫀㫇㫌㫉㪀
㪋㪯㪃㩷㪘㪚㪥㪔㪈㪇㪇 㩿㪚㪸㫄㪹㫆㪻㫀㪸㪀 㪋㪯㪃㩷㪘㪚㪥㪔㪈㪇㪇 㩿㪘㫊㫀㪸㪀
㪋㪯㪃㩷㪘㪚㪥㪔㪈㪇㪇 㩿㪤㫐㪸㫅㫄㪸㫉㪀
㪋㪯㪃㩷㪘㪚㪥㪔㪈㪇㪇 㪚㪿㫀㫅㪸㩷㩿㪞㫌㫀㫃㫀㫅㪀
㪋㪯㪃㩷㪘㪚㪥㪔㪈㪇㪇 㩿㪘㫊㫀㪸㪀
㪋㪯㪃㩷㪘㪚㪥㪔㪈㪇㪇 㩿㪪㫌㫄㪸㫋㫉㪸㪃㩷㪙㫆㫉㫅㪼㫆㪀 㪋㪯 㩿㪘㫊㫀㪸㪀
㪋㪯 㪠㫅㪻㫀㪸㩷㩿㪮㪙㪀 㪋㪯㪃㩷㪘㪚㪥㪔㪈㪇㪇 㩿㪘㫊㫀㪸㪀
㪋㪯
㪋㪯㪃㩷㪘㪚㪥㪔㪈㪇㪇 㩿㪘㫊㫀㪸㪀
㪋㪯
㪋㪯 㪋㪯
㪋㪯
㪋㪯
㪋㪯㪃㩷㪘㪚㪥㪔㪈㪇㪇 㩿㪘㫊㫀㪸㪀
㪋㪯㪃㩷㪘㪚㪥㪔㪈㪇㪇 㩿㪚㪿㫀㫅㪸㪀
㪋㪯㪃㩷㪘㪚㪥㪔㪈㪇㪇 㩿㪚㪿㫀㫅㪸㪀
㪋㪯 㪈㪅㪍㪁㩷㪝㪚㪤㪃㩷㪈㪅㪉㩷㪝㪛
㪈㪅㪎㩷㪝㪛
㪉㪅㪇㩷㪝㪛
㪈㪅㪐㩷㪝㪛 㪈㪅㪐㩷㪝㪛
㪈㪅㪐㩷㪝㪛
㪋㪅㪇㩷㪝㪛
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪈㪇㪇 㪈㪊㪇 㪈㪉㪏
㪈㪉㪇 㪈㪉㪇
㪈㪉㪉
㪈㪊㪍
㪈㪌㪉
㪈㪊㪍
㪈㪊㪇 㪈㪋㪍
㪈㪌㪋
㪈㪊㪍
㪈㪊㪋
㪈㪈㪏
㪠 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪋㪯
㪐㪋
㪈㪉㪉
㪈㪉㪍
㪈㪉㪏
㪈㪊㪋
㪈㪇㪋
㪈㪊㪍
㪈㪊㪇
㪈㪈㪋
㪝 㪞 㪟 㪥㪝㪈 㪥㪝㪉 㪘㪾㪄 㪥㪦㪩㫊
㪈㪇㪇
㪋㪤㩷㪂㩷㪏㪍㪘
㪏㪤㩷㪂㩷㪈㪉㩷㪪㪤㪆㪪㪫㩷㪂㩷㪏㪇㪘 㪏㪤㩷㪂㩷㪈㪉㩷㪪㪤㪆㪪㪫㩷㪂㩷㪏㪇㪘
㪈㪇㪇 㪈㪇㪇 㪐㪇
㪏㪤㩷㪂㩷㪈㪋㩷㪪㪤㪆㪪㪫㩷㪂㩷㪎㪏㪘
㪈㪇㪇
㪈㪉㪤㩷㪂㩷㪋㪇㩷㪪㪤㪆㪪㪫㩷㪂㩷㪋㪏㪘 㪈㪇㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪈㪋㪪㪫㩷㪂㩷㪍㪋㪘
㪈㪇㪇 㪈㪇㪇
㪈㪍㪤㩷㪂㩷㪉㪇㩷㪪㪤㪆㪪㪫㩷㪂㩷㪍㪋㪘 㪉㪏㩷㪤㪆㪪㪤㩷㪂㩷㪎㪇㪘
㪉㪉㪤㩷㪂㩷㪏㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪍㪍㪘 㪉㪇㪤㩷㪂㩷㪉㪍㩷㪪㪤㪆㪪㪫㩷㪂㩷㪌㪋㪘
㪐㪏 㪈㪇㪇 㪈㪇㪇 㪐㪏
㪈㪍㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪍㪉㩷㪪㪫㪆㪘
㪐㪏
㪈㪇㪇
㪉㪏㪤㩷㪂㩷㪉㪍㩷㪪㪤㪆㪪㪫㩷㪂㩷㪋㪍㪘
㪊㪉㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪍㪇㪘
㪐㪏
㪈㪇㪇
㪈㪋㪤㩷㪂㩷㪈㪏㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪍㪉㪘
㪐㪏
㪈㪇㪇
㪍㪤㩷㪂㩷㪏㪪㪤㩷㪂㩷㪏㪍㩷㪪㪫㪆㪘
㪈㪇㪇
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪈㪇㪇
㪛 㪉㫅
㪝㪃㩷㪤
㪝
㪝
㪝㪃㩷㪤
㪝㪃㩷㪤
㪤
㪚 㪪㪼㫏 㪬㪄㪊㪎
㪪㪄㪈㪊㪎
㪰㪄㪈㪌
㪪㪄㪈㪋㪋 㪰㪄㪈㪌
㪰㪄㪈㪌
㪰㪄㪈㪌
㪰㪄㪈㪌
㪪㪄㪈㪎㪃㩷㪪㪄㪈㪋㪋
㪪㪄㪈㪋㪋
㪪㪄㪈㪌㪎
㪪㪄㪈㪋㪋
㪪㪄㪈㪋㪋 㪪㪄㪈㪋㪋㪃㩷㪦㪄㪋㪏
㪪㪄㪈㪌㪎
㪪㪄㪈㪌㪎
㪩㪄㪍㪌
㪪㪄㪈㪋㪋㩷 㪪㪄㪈㪋㪋㩷
㪪㪄㪈㪋㪋㩷
㪰㪄㪈㪌
㪪㪄㪈㪋㪋㩷
㪪㪄㪈㪋㪋㩷 㪤㪄 㪐 㪈
㪢㪄㪋㪍 㪪㪄㪈㪋㪋㩷
㪩㪄㪎㪋
㪪㪄㪈㪋㪋㩷
㪪㪄㪈㪌㪎
㪩㪄㪍㪌 㪩㪄㪎㪋
㪢㪄㪋㪈
㪢㪄㪊㪎
㪪㪄㪈㪌㪎
㪪㪄㪈㪊㪏
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
73
㪘㪺㪸㫅㫋㪿㫆㫇㫊㫀㫊 㪘㪺㪸㫅㫋㪿㫆㫇㫊㫀㫊 㪚㪸㫅㫋㪿㫆㫇㪿㫉㫐㫊 㪚㫆㪹㫀㫋㫀㫊 㪚㫆㪹㫀㫋㫀㫊 㪚㫆㪹㫀㫋㫀㫊 㪚㫆㪹㫀㫋㫀㫊 㪚㫆㪹㫀㫋㫀㫊 㪚㫆㪹㫀㫋㫀㫊 㪚㫆㪹㫀㫋㫀㫊 㪚㫆㪹㫀㫋㫀㫊 㪚㫆㪹㫀㫋㫀㫊 㪚㫆㪹㫀㫋㫀㫊 㪚㫆㪹㫀㫋㫀㫊 㪚㫆㪹㫀㫋㫀㫊 㪚㫆㪹㫀㫋㫀㫊 㪚㫆㪹㫀㫋㫀㫊 㪚㫆㪹㫀㫋㫀㫊 㪚㫆㪹㫀㫋㫀㫊 㪚㫆㪹㫀㫋㫀㫊 㪚㫆㪹㫀㫋㫀㫊 㪚㫆㪹㫀㫋㫀㫊 㪚㫆㪹㫀㫋㫀㫊 㪚㫆㪹㫀㫋㫀㫊 㪚㫆㪹㫀㫋㫀㫊 㪚㫆㪹㫀㫋㫀㫊 㪚㫆㪹㫀㫋㫀㫊 㪚㫆㪹㫀㫋㫀㫊 㪚㫆㪹㫀㫋㫀㫊 㪚㫆㪹㫀㫋㫀㫊 㪚㫆㪹㫀㫋㫀㫊 㪚㫆㪹㫀㫋㫀㫊 㪚㫆㪹㫀㫋㫀㫊 㪚㫆㪹㫀㫋㫀㫊
㩷㩷㪚㫆㪹㫀㫋㫀㫅㪸㪼
㪧㪸㫉㪸㪹㫆㫋㫀㪸 㪧㪸㫉㪸㪹㫆㫋㫀㪸 㪧㪸㫉㪸㪹㫆㫋㫀㪸 㪧㪸㫉㪸㪹㫆㫋㫀㪸 㪌㪇 㪌㪇
㪝㪃㩷㪤 㪝㪃㩷㪤
㫋㪸㪼㫅㫀㪸㩷㪾㫉㪸㫅㫆㪼㫀 㪾㫉㪸㫅㫆㪼㫀
㪾㫉㪸㫅㫆㪼㫀
㫋㪸㪼㫅㫀㪸㩷㫃㫌㫋㪿㪼㫉㫀 㫋㪸㪼㫅㫀㪸㩷㫃㫌㫋㪿㪼㫉㫀 㫋㪸㪼㫅㫀㪸㩷㫃㫌㫋㪿㪼㫉㫀 㫋㪸㪼㫅㫀㪸㩷㫃㫌㫋㪿㪼㫉㫀
㫋㪸㪼㫅㫀㪸㩷㫋㪸㪼㫅㫀㪸 㫊㫀㫅㪼㫅㫊㫀㫊
㪝
㪝㪃㩷㪤
㪝㪃㩷㪤
㪋㪇
㪉㪇㪤㩷㪂㩷㪏㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪏㪘
㪍㪤㩷㪂㩷㪉㪋㪪㪤㩷㪂㩷㪉㪇㪪㪫
㪍㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪉㪏㩷㪪㪫㪆㪘
㪌㪇
㪌㪇
㪏㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪉㪍㩷㪪㪫㪆㪘
㪌㪇
㪏㪤㩷㪂㩷㪈㪏㪪㪤㩷㪂㩷㪉㪋㩷㪪㪫㪆㪘
㪈㪉㪤㩷㪂㩷㪏㪪㪤㩷㪂㩷㪊㪇㩷㪪㪫㪆㪘 㪍㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪊㪉㪘
㪌㪇 㪌㪇
㪏㪤㩷㪂㩷㪈㪏㪪㪤㩷㪂㩷㪉㪋㩷㪪㪫㪆㪘 㪉㪋㩷㪤㪆㪪㪤㩷㪂㩷㪉㪍㩷㪪㪫㪆㪘
㪈㪉㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪊㪋㪘
㪌㪇
㪌㪇
㪐㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪊㪍㪘
㪌㪈
㪌㪇 㪌㪇
㪈㪈㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪊㪉㪘
㪋㪐
㪍㪏
㪏㪇
㪎㪍 㪎㪋
㪎㪍
㪎㪉
㪎㪋
㪎㪇 㪍㪏
㪍㪍
㪍㪍
㪍㪍
㪍㪍 㪍㪍
㪎㪉
㪈㪇㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪉㪏㪘 㪈㪋㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪊㪇㩷㪪㪫㪆㪘 㪈㪇㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪊㪋㩷㪪㪫㪆㪘
㪌㪇 㪋㪏 㪌㪇
㪍㪍
㪈㪋㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪊㪇㩷㪪㪫㪆㪘 㪈㪋㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪊㪇㩷㪪㪫㪆㪘
㪍㪍
㪎㪇 㪍㪏
㪋㪏
㪍㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪊㪇㪘 㪍㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪊㪉㩷㪪㪫㪆㪘
㪈㪌㪋
㪈㪏㪋
㪏㪏 㪐㪇
㪐㪉
㪐㪍
㪍㪉
㪐㪇
㪍㪍
㪍㪍
㪍㪍
㪍㪏
㪎㪉
㪈㪇㪇
㪍㪏
㪈㪏㪇
㪈㪐㪉
㪏㪍 㪈㪏㪉
㪏㪏
㪐㪇
㪐㪉
㪏㪏
㪐㪉
㪐㪍
㪍㪋
㪐㪍 㪐㪋
㪏㪇
㪎㪍
㪎㪇
㪏㪉
㪉
㪉
㪝 㪞 㪟 㪥㪝㪈 㪥㪝㪉 㪘㪾㪄 㪥㪦㪩㫊
㪋㪏
㪌㪇 㪌㪇
㪊㪋㪤㩷㪂㩷㪌㪇㩷㪪㪤㪆㪪㪫㩷㪂㩷㪈㪉㪘
㪐㪍
㪊㪍㪤㩷㪂㩷㪌㪉㪪㪤㩷㪂㩷㪏㪪㪫 㪌㪏㩷㪤㪆㪪㪤㩷㪂㩷㪊㪏㩷㪪㪫㪆㪘
㪐㪍
㪈㪍㪤㩷㪂㩷㪉㪉㩷㪪㪤㪆㪪㪫㩷㪂㩷㪈㪇㪘 㪊㪉㪤㩷㪂㩷㪌㪋㩷㪪㪤㪆㪪㪫㩷㪂㩷㪈㪇㪘
㪋㪏 㪐㪍 㪐㪍
㪈㪍㪤㩷㪂㩷㪉㪋㩷㪪㪤㪆㪪㪫㩷㪂㩷㪏㪘
㪋㪏
㪝㪃㩷㪤
㪈㪏㪤㩷㪂㩷㪉㪍㩷㪪㪤㪆㪪㪫㩷㪂㩷㪋㪘 㪉㪇㪤㩷㪂㩷㪉㪉㩷㪪㪤㪆㪪㪫㩷㪂㩷㪍㪘
㪋㪏
㪉㪇㪤㩷㪂㩷㪉㪉㪪㪤㩷㪂㩷㪋㪘 㪋㪉㩷㪤㪆㪪㪤㩷㪂㩷㪍㩷㪪㪫㪆㪘
㪋㪍 㪋㪏 㪋㪏
㪉㪇㪤㩷㪂㩷㪉㪋㪪㪤㩷㪂㩷㪋㪘
㪋㪏
㪝㪃㩷㪤
㪝㪃㩷㪤
㪈㪏㪤㩷㪂㩷㪊㪇㪪㪤
㪏㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪊㪍㪘
㪈㪍㪤㩷㪂㩷㪊㪇㩷㪪㪤㪆㪪㪫㩷㪂㩷㪋㪘 㪉㪉㪤㩷㪂㩷㪈㪏㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪍㪘
㪏㪤㩷㪂㩷㪏㪪㪤㩷㪂㩷㪈㪋㪪㪫㩷㪂㩷㪉㪇㪘
㪏㪤㩷㪂㩷㪏㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪉㪋㪘
㪈㪇㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪊㪇㪘
㪈㪇㪤㩷㪂㩷㪏㪪㪤㩷㪂㩷㪈㪋㪪㪫㩷㪂㩷㪈㪏㪘
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪋㪏
㪌㪇
㫊㫇㪅㩷㪉
㪾㫆㫅㪾㫆㫋㪸 㪹㫀㫎㪸㪼 㪹㫀㫎㪸㪼 㪹㫀㫎㪸㪼 㪹㫀㫎㪸㪼 㪹㫀㫎㪸㪼 㪹㫀㫎㪸㪼 㪹㫀㫎㪸㪼 㪹㫀㫎㪸㪼 㪹㫀㫎㪸㪼 㪹㫀㫎㪸㪼 㪹㫀㫎㪸㪼 㪹㫀㫎㪸㪼 㪺㪸㫃㪻㪼㫉㫆㫅㫀 㪺㪸㫃㪻㪼㫉㫆㫅㫀 㪿㪸㫅㫂㫌㪾㪼㫅㫊㫀㫊 㪿㪸㫅㫂㫌㪾㪼㫅㫊㫀㫊 㫂㫆㫉㪼㪼㫅㫊㫀㫊㩷㫇㫌㫄㫀㫃㫌㫊 㪺㪽㪅㩷㫃㪸㫆㫊㪼㫅㫊㫀㫊 㫃㫌㫋㪿㪼㫉㫀 㫃㫌㫋㪿㪼㫉㫀 㫃㫌㫋㪿㪼㫉㫀 㫃㫌㫋㪿㪼㫉㫀 㫃㫌㫋㪿㪼㫉㫀 㫄㪸㫉㫆㪺㪺㪸㫅㪸 㫄㪼㫃㪸㫅㫆㫃㪼㫌㪺㪸 㫄㪼㫃㪸㫅㫆㫃㪼㫌㪺㪸 㫄㪼㫃㪸㫅㫆㫃㪼㫌㪺㪸㩷㪾㫃㪸㪻㫂㫆㫍㫀 㫄㪼㫃㪸㫅㫆㫃㪼㫌㪺㪸㩷㪾㫃㪸㪻㫂㫆㫍㫀 㫇㪸㪺㫀㪽㫀㪺㪸 㫇㪸㪺㫀㪽㫀㪺㪸 㫊㫀㫅㪼㫅㫊㫀㫊 㪝㪃㩷㪤
㪌㪇
㪌㪇
㪛 㪉㫅
㪝㪃㩷㪤
㪝㪃㩷㪤
㪚 㪪㪼㫏
㪌㪇 㪌㪇
㪪㫆㫄㫀㫃㪼㫇㫋㪼㫊
㪙㫆㫋㫀㪸
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪺㪿㫆㫀㫉㫀㫆㫉㪿㫐㫅㪺㪿㫆㫊
㪽㪸㫊㪺㫀㪸㫋㪸 㫂㫎㪸㫅㪾㫊㫀㪼㫅㫊㫀㫊 㫃㫀㫁㫀㪸㫅㪾㪼㫅㫊㫀㫊 㫄㪸㪺㫌㫃㫆㫊㪸
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㫇㪼㫉㪽㪸㫄㫀㫃㫐㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷
㪫㪸㪹㫃㪼㩷㪍㪅㪈㪈㩷㩷㪦㫉㪻㪼㫉㩷㪚㪰㪧㪩㪠㪥㪠㪝㪦㪩㪤㪜㪪㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀
㩿㪊㪅㪈㩷㪝㪚㪤㪀
㪊㪅㪌㪃㩷㪊㪅㪐㩷㪝㪚㪤
㩿㪉㪅㪏㩷㪝㪚㪤㪀
㪎㪅㪉㩷㪝㪛
㩿㪍㪅㪎㪁㩷㪝㪚㪤㪀
㪋㪅㪊㩷㪝㪛
㪠 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪉㪯
㪉㪯㪃㩷㪘㪚㪥㪔㪌㪇
㪉㪯㪃㩷㪘㪚㪥㪔㪌㪇 㪉㪯㪃㩷㪘㪚㪥㪔㪌㪇
㪉㪯㪃㩷㪘㪚㪥㪔㪌㪇
㪉㪯㪃㩷㪘㪚㪥㪔㪌㪇
㪉㪯㪃㩷㪘㪚㪥㪔㪌㪇
㪉㪯㪃㩷㪘㪚㪥㪔㪌㪇 㪘㪚㪥㪔㪌㪇
㪉㪯㪃㩷㪘㪚㪥㪔㪌㪇
㪉㪯
㪉㪯
㪉㪯 㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪉㪯
㪉㪯
㪘㪚㪥㪔㪌㪇 㪘㪚㪥㪔㪌㪇
㪋㪯
㪋㪯
㪋㪯
㪉㪯 㪋㪯
㪉㪯
㪉㪯
㪉㪯
㪉㪯 㪉㪯
㪉㪯
㪉㪯
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇 㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪚㪿㫀㫅㪸㩷㩿㪞㫌㫀㫃㫀㫅㪀
㪢㫆㫉㪼㪸
㪩㫌㫊㫊㫀㪸㩷㩿㪛㫆㫅㩷㪹㪸㫊㫀㫅㪀 㪢㫆㫉㪼㪸
㪩㫌㫊㫊㫀㪸
㪩㫌㫊㫊㫀㪸㩷㩿㪘㫄㫌㫉㩷㪹㪸㫊㫀㫅㪀
㪤㫆㫅㪾㫆㫃㫀㪸
㪩㫌㫊㫊㫀㪸㩷㩿㪘㫄㫌㫉㩷㪹㪸㫊㫀㫅㪀 㪧㫆㫉㫋㫌㪾㪸㫃㪃㩷㪪㫇㪸㫀㫅
㪢㫆㫉㪼㪸㩷㩿㪟㪸㫅㩷㪩㪅㪀
㪢㫆㫉㪼㪸㩷㩿㪫㪸㫄㫁㫀㫅㩷㪩㪅㪀
㪢㫆㫉㪼㪸㩷㩿㪫㪸㫄㫁㫀㫅㩷㪩㪅㪀
㪢㫆㫉㪼㪸 㪢㫆㫉㪼㪸㩷㩿㪰㫆㫅㪾㫁㫀㫅㪀
㪢㫆㫉㪼㪸
㪢㫆㫉㪼㪸㩷㩿㪥㪸㪾㪻㫆㫅㪾㩷㪩㪅㪀
㪢㫆㫉㪼㪸
㪧㫆㫉㫋㫌㪾㪸㫃㪃㩷㪪㫇㪸㫀㫅 㪧㫆㫉㫋㫌㪾㪸㫃
㪡㪸㫇㪸㫅㩷㩿㪦㫂㪸㫐㪸㫄㪸㪀
㪡㪸㫇㪸㫅㩷㩿㪟㫐㫆㪾㫆㪀
㪮㪅㩷㪡㪸㫇㪸㫅
㪡㪸㫇㪸㫅㩷㩿㪪㪿㫀㫄㪸㫅㪼㪀 㪮㪅㩷㪡㪸㫇㪸㫅
㪡㪸㫇㪸㫅㩷㩿㪢㫆㪺㪿㫀㪀
㪡㪸㫇㪸㫅㩷㩿㪪㪿㫀㪾㪸㪀
㪡㪸㫇㪸㫅㩷㩿㪦㫂㪸㫐㪸㫄㪸㪀
㪡㪸㫇㪸㫅㩷㩿㪫㫆㫐㪸㫄㪸㪀 㪡㪸㫇㪸㫅㩷㩿㪪㪿㫀㪾㪸㪀
㪡㪸㫇㪸㫅㩷㩿㪫㫆㪺㪿㫀㪾㫀㪀
㪡㪸㫇㪸㫅
㪠㫅㪻㫀㪸㩷㩿㪮㪙㪀
㩿㪘㫊㫀㪸㪀 㪫㪿㪸㫀㫃㪸㫅㪻
㪚㪿㫀㫅㪸㩷㩿㪞㫌㫀㫃㫀㫅㪀
㪚㪿㫀㫅㪸㩷㩿㪞㫌㫀㫃㫀㫅㪀
㪚㪿㫀㫅㪸㩷㩿㪞㫌㫀㫃㫀㫅㪀
㪚㪿㫀㫅㪸㩷㩿㪞㫌㪸㫅㪾㪻㫆㫅㪾㪀
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪰㪄㪈㪌
㪣㪄㪈㪌
㪭㪄㪐㪏 㪢㪄㪈㪉㪏
㪭㪄㪉㪋㪃㩷㪭㪄㪐㪏
㪭㪄㪏㪍㪃㩷㪭㪄㪐㪏㩷
㪭㪄㪐㪏
㪭㪄㪏㪍㪃㩷㪭㪄㪐㪏㪃㩷㪭㪄㪈㪇㪉 㪤㪄㪋㪃㩷㪭㪄㪎㪊
㪬㪄㪊㪌
㪢㪄㪈㪉㪐
㪢㪄㪈㪉㪐
㪢㪄㪈㪉㪐 㪢㪄㪌㪍
㪢㪄㪌㪍
㪢㪄㪈㪈㪍㪃㩷㪭㪄㪈㪇㪉
㪢㪄㪌㪍
㪤㪄 㪋 㪭㪄㪉㪌
㪪㪄㪈㪊㪎
㪟㪄㪈㪍㪃㩷㪦㪄㪈㪋
㪢㪄㪍㪈㪃㩷㪢㪄㪐㪈
㪬㪄㪉㪐 㪬㪄㪉㪎㪃㩷㪬㪄㪉㪐㪃㩷㪦㪄㪋㪏
㪬㪄㪉㪐
㪬㪄㪉㪎㪃㩷㪬㪄㪉㪐
㪪㪄㪈㪊㪎
㪬㪄㪊㪇 㪫㪄㪈
㪬㪄㪊㪇
㪢㪄㪍㪈㪃㩷㪢㪄㪐㪈
㪢㪄㪋㪍
㪪㪄㪈㪊㪎 㪛㪄㪉㪏
㪰㪄㪈㪌
㪰㪄㪈㪌
㪰㪄㪈㪌
㪰㪄㪈㪌
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
74
㪚㫆㪹㫀㫋㫀㫊 㪚㫆㪹㫀㫋㫀㫊 㪚㫆㪹㫀㫋㫀㫊 㪚㫆㪹㫀㫋㫀㫊 㪚㫆㪹㫀㫋㫀㫊 㪚㫆㪹㫀㫋㫀㫊 㪚㫆㪹㫀㫋㫀㫊 㪚㫆㪹㫀㫋㫀㫊 㪚㫆㪹㫀㫋㫀㫊 㪚㫆㪹㫀㫋㫀㫊 㪚㫆㪹㫀㫋㫀㫊 㪚㫆㪹㫀㫋㫀㫊 㪚㫆㪹㫀㫋㫀㫊 㪚㫆㪹㫀㫋㫀㫊 㪚㫆㪹㫀㫋㫀㫊 㪚㫆㪹㫀㫋㫀㫊 㪚㫆㪹㫀㫋㫀㫊 㪚㫆㪹㫀㫋㫀㫊 㪚㫆㪹㫀㫋㫀㫊 㪚㫆㪹㫀㫋㫀㫊 㪚㫆㪹㫀㫋㫀㫊 㪚㫆㪹㫀㫋㫀㫊 㪚㫆㪹㫀㫋㫀㫊 㪚㫆㪹㫀㫋㫀㫊 㪚㫆㪹㫀㫋㫀㫊 㪚㫆㪹㫀㫋㫀㫊 㪚㫆㪹㫀㫋㫀㫊 㪚㫆㪹㫀㫋㫀㫊 㪚㫆㪹㫀㫋㫀㫊 㪚㫆㪹㫀㫋㫀㫊 㪠㫂㫊㫆㫆㫂㫀㫄㫀㪸 㪠㫂㫊㫆㫆㫂㫀㫄㫀㪸 㪠㫂㫊㫆㫆㫂㫀㫄㫀㪸 㪠㫂㫊㫆㫆㫂㫀㫄㫀㪸 㪠㫂㫊㫆㫆㫂㫀㫄㫀㪸 㪠㫂㫊㫆㫆㫂㫀㫄㫀㪸 㪠㫂㫊㫆㫆㫂㫀㫄㫀㪸 㪠㫂㫊㫆㫆㫂㫀㫄㫀㪸 㪠㫂㫊㫆㫆㫂㫀㫄㫀㪸
㫋㪸㪼㫅㫀㪸㩷㫊㪸㫋㫌㫅㫀㫅㫀 㫋㪸㪼㫅㫀㪸㩷㫊㫋㫉㫀㪸㫋㪸 㫋㪸㪼㫅㫀㪸㩷㫊㫋㫉㫀㪸㫋㪸 㫋㪸㪼㫅㫀㪸㩷㫊㫋㫉㫀㪸㫋㪸 㫋㪸㪼㫅㫀㪸㩷㫊㫋㫉㫀㪸㫋㪸 㫋㪸㪼㫅㫀㪸㩷㫊㫋㫉㫀㪸㫋㪸 㫋㪸㪼㫅㫀㪸㩷㫊㫋㫉㫀㪸㫋㪸 㫋㪸㪼㫅㫀㪸㩷㫊㫋㫉㫀㪸㫋㪸 㫋㪸㪼㫅㫀㪸㩷㫋㪸㪼㫅㫀㪸 㫋㪸㪼㫅㫀㪸㩷㫋㪸㪼㫅㫀㪸 㫋㪸㪼㫅㫀㪸㩷㫋㪸㪼㫅㫀㪸 㫋㪸㪼㫅㫀㪸㩷㫋㪸㪼㫅㫀㪸 㫋㪸㪼㫅㫀㪸㩷㫋㪸㪼㫅㫀㪸 㫋㪸㪼㫅㫀㪸㩷㫋㪸㪼㫅㫀㪸 㫋㪸㫂㪸㫋㫊㫌㪼㫅㫊㫀㫊 㫋㪸㫂㪸㫋㫊㫌㪼㫅㫊㫀㫊 㫋㪼㫋㫉㪸㫃㫀㫅㪼㪸㫋㪸 㫍㪸㫉㪻㪸㫉㪼㫅㫊㫀㫊 㪺㪿㫆㫀㫀 㪺㪿㫆㫀㫀 㪿㫌㪾㫆㫎㫆㫃㪽㪼㫃㪻㫀 㫂㫆㫉㪼㪼㫅㫊㫀㫊 㫂㫆㫉㪼㪼㫅㫊㫀㫊 㫃㫆㫅㪾㫀㪺㫆㫉㫇㪸 㫃㫆㫅㪾㫀㪺㫆㫉㫇㪸 㫇㫌㫄㫀㫃㪸 㫐㫆㫅㪾㪻㫆㫂㪼㫅㫊㫀㫊
㫊㫇㪅 㫊㫇㪅 㫊㫇㪅 㫊㫇㪅
㫊㫀㫅㪼㫅㫊㫀㫊 㫋㪸㪼㫅㫀㪸 㫋㪸㪼㫅㫀㪸 㫋㪸㪼㫅㫀㪸 㫋㪸㪼㫅㫀㪸 㫋㪸㪼㫅㫀㪸 㫋㪸㪼㫅㫀㪸 㫋㪸㪼㫅㫀㪸
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㫇㪼㫉㪽㪸㫄㫀㫃㫐㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷
㪚㫆㪹㫀㫋㫀㫊 㪚㫆㪹㫀㫋㫀㫊 㪚㫆㪹㫀㫋㫀㫊㩷㫃㫆㫅㪾㫀㪺㫆㫉㫇㫌㫊 㪚㫆㪹㫀㫋㫀㫊㩷㫃㫆㫅㪾㫀㪺㫆㫉㫇㫌㫊
㪚㫆㪹㫀㫋㫀㫊
㫋㪸㪼㫅㫀㪸㩷㫊㫋㫉㫀㪸㫋㪸
㫊㫄㪸㫃㫃㩷㫉㪸㪺㪼 㫊㫄㪸㫃㫃㩷㫉㪸㪺㪼 㫄㫀㪻㪻㫃㪼㩷㫉㪸㪺㪼 㫃㪸㫉㪾㪼㩷㫉㪸㪺㪼
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪫㪸㪹㫃㪼㩷㪍㪅㪈㪈㩷㩷㪦㫉㪻㪼㫉㩷㪚㪰㪧㪩㪠㪥㪠㪝㪦㪩㪤㪜㪪㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀
㪈㪉㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪈㪋㪘 㪈㪇㪤㩷㪂㩷㪈㪏㪪㪤㩷㪂㩷㪉㪇㩷㪪㪫㪆㪘 㪈㪉㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪈㪍㪪㪫㩷㪂㩷㪈㪍㪘
㪎㪋 㪌㪇 㪋㪏 㪋㪏 㪌㪇
㪝
㪈㪉㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪊㪋㩷㪪㪫㪆㪘 㪊㪉㪤㩷㪂㩷㪊㪉㩷㪪㪤㪆㪪㪫㩷㪂㩷㪉㪉㪘 㪉㪍㪤㩷㪂㩷㪊㪉㩷㪪㪤㪆㪪㪫㩷㪂㩷㪊㪍㪘
㪌㪇 㪐㪏 㪌㪇 㪏㪍 㪐㪋
㪌㪇 㪌㪇 㪈㪇㪇
㪝
㪉㪉㩷㪤㪆㪪㪤㩷㪂㩷㪉㪏㩷㪪㪫㪆㪘 㪋㪋㩷㪤㪆㪪㪤㩷㪂㩷㪌㪍㩷㪪㪫㪆㪘
㪈㪉㪤㩷㪂㩷㪏㪪㪤㩷㪂㩷㪊㪇㩷㪪㪫㪆㪘
㪈㪇㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪉㪏㪘 㪈㪋㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪊㪇㩷㪪㪫㪆㪘
㪌㪇 㪌㪇 㪝㪃㩷㪤
㪉㪋㩷㪤㪆㪪㪤㩷㪂㩷㪉㪍㩷㪪㪫㪆㪘 㪈㪉㪤㩷㪂㩷㪏㪪㪤㩷㪂㩷㪊㪇㩷㪪㪫㪆㪘
㪌㪇 㪌㪇
㪈㪏㩷㪤㪆㪪㪤㩷㪂㩷㪊㪉㩷㪪㪫㪆㪘
㪌㪇
㪏㪤㩷㪂㩷㪈㪇㪪㪤㩷㪂㩷㪏㪪㪫㩷㪂㩷㪉㪋㪘
㪉㪍㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪋㪪㪫
㪌㪇 㪌㪇
㪈㪉㪤㩷㪂㩷㪈㪏㩷㪪㪤㪆㪪㪫㩷㪂㩷㪈㪏㪘 㪈㪉㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪉㪋㪘 㪈㪇㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪊㪋㩷㪪㪫㪆㪘
㪋㪏
㪍㪋㩷㪤㪆㪪㪤㩷㪂㩷㪉㪉㩷㪪㪫㪆㪘
㪌㪎㩷㪤㪆㪪㪤㩷㪂㩷㪈㪏㩷㪪㪫㪆㪘
㪊㪏㩷㪤㪆㪪㪤㩷㪂㩷㪈㪉㩷㪪㪫㪆㪘
㪈㪍㩷㪤㪆㪪㪤㩷㪂㩷㪊㪋㪘
㪋㪏 㪌㪇
㪏㪍
㪉㪇㪤㩷㪂㩷㪉㪉㩷㪪㪤㪆㪪㪫㩷㪂㩷㪌㪍㪘
㪐㪏 㪌㪇
㪝㪃㩷㪤 㪝
㪝㪃㩷㪤
㪈㪉㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪊㪋㪘
㪌㪇
㪝㪃㩷㪤
㪌㪇
㪋㪉㩷㪤㪆㪪㪤㩷㪂㩷㪌㪍㪘 㪈㪍㩷㪤㪆㪪㪤㩷㪂㩷㪊㪋㩷㪪㪫㪆㪘
㪋㪐
㪝 㪤
㪎㪌
㪈㪍㩷㪤㪆㪪㪤㩷㪂㩷㪊㪋㩷㪪㪫㪆㪘
㪐㪏 㪌㪇 㪌㪇
㪝
㪉㪊㪤㩷㪂㩷㪉㪌㪪㪤㩷㪂㩷㪉㪍㩷㪪㪫㪆㪘
㪎㪋
㪤
㪏㪤㩷㪂㩷㪉㪋㪪㪤㩷㪂㩷㪈㪏㩷㪪㪫㪆㪘
㪌㪇
㪈㪎㩷㪤㪆㪪㪤㩷㪂㩷㪊㪉㩷㪪㪫㪆㪘
㪐㪤㩷㪂㩷㪉㪋㪪㪤㩷㪂㩷㪈㪍㩷㪪㪫㪆㪘
㪋㪐
㪝㪃㩷㪤
㪉㪈㪤㩷㪂㩷㪊㪇㪪㪤㩷㪂㩷㪉㪊㩷㪪㪫㪆㪘 㪏㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪉㪇㪘
㪋㪏
㪈㪉㪤㩷㪂㩷㪈㪏㪪㪤㩷㪂㩷㪈㪏㩷㪪㪫㪆㪘
㪐㪇
㪉㪍㪤㩷㪂㩷㪈㪏㪪㪤㩷㪂㩷㪈㪍㪪㪫㩷㪂㩷㪊㪇㪘
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪝
㪛 㪉㫅
㪝㪃㩷㪤
㪚 㪪㪼㫏
㪎㪉 㪈㪋㪋
㪎㪇
㪎㪇
㪎㪉
㪎㪋 㪎㪇
㪍㪏
㪍㪏
㪐㪍
㪎㪉 㪍㪍
㪈㪌㪇
㪈㪊㪉
㪏㪏
㪍㪍
㪍㪍
㪈㪋㪇 㪍㪍
㪍㪍
㪍㪍
㪍㪍
㪈㪉㪉
㪏㪉
㪏㪉
㪎㪍 㪍㪏
㪎㪉
㪈㪉㪌 㪎㪋
㪎㪏
㪈㪊㪋
㪎㪍
㪈㪇㪇
㪎㪏
㪈㪌㪇 㪈㪌㪉
㪈㪋㪇
㪍㪍
㪏㪋
㪏㪉
㪏㪇
㪈㪌㪇
㪉 㪉
㪉
㪝 㪞 㪟 㪥㪝㪈 㪥㪝㪉 㪘㪾㪄 㪥㪦㪩㫊
㩿㪊㪅㪐㪁㩷㪝㪚㪤㪀
㪎㪅㪍㩷㪝㪚㪤
㪍㪅㪇㩷㪝㪚㪤
㩿㪊㪅㪌㩷㪝㪚㪤㪀
㪠 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪉㪯
㪉㪯㪃㩷㪘㪚㪥㪔㪌㪇 㪋㪯
㪉㪯㪃㩷㪘㪚㪥㪔㪌㪇
㪉㪯㪃㩷㪘㪚㪥㪔㪌㪇
㪉㪯㪃㩷㪘㪚㪥㪔㪌㪇
㪉㪯㪃㩷㪘㪚㪥㪔㪌㪇 㪉㪯㪃㩷㪘㪚㪥㪔㪌㪇
㪉㪯㪃㩷㪘㪚㪥㪔㪌㪇
㪉㪯㪃㩷㪘㪚㪥㪔㪌㪇
㪉㪯㪃㩷㪘㪚㪥㪔㪌㪇
㪉㪯 㪉㪯㪃㩷㪘㪚㪥㪔㪌㪇
㪉㪯
㪊㪯
㪉㪯㪃㩷㪘㪚㪥㪔㪌㪇
㪋㪯
㪉㪯㪃㩷㪘㪚㪥㪔㪌㪇
㪋㪯
㪉㪯㪃㩷㪘㪚㪥㪔㪌㪇
㪋㪯 㪉㪯㪃㩷㪘㪚㪥㪔㪌㪇
㪬㪄㪉㪐
㪬㪄㪉㪎㪃㩷㪬㪄㪉㪐
㪬㪄㪉㪎㪃㩷㪬㪄㪉㪐㪃㩷㪦㪄㪋㪏
㪪㪄㪊 㪫㪄㪈
㪪㪄㪊
㪢㪄㪌㪍㪃㩷㪬㪄㪊㪌
㪢㪄㪈㪈㪍
㪢㪄㪌㪍
㪢㪄㪈㪉㪏 㪬㪄㪊㪌
㪭㪄㪐㪏
㪢㪄㪈㪉㪎
㪩㪄㪈㪇㪋
㪢㪄㪈㪈㪎 㪢㪄㪌㪍
㪢㪄㪍㪇
㪫㪄㪈
㪪㪄㪏㪈
㪪㪄㪏㪈
㪢㫆㫉㪼㪸 㪭㪄㪐㪏 㪢㫆㫉㪼㪸㩷㩿㪢㫐㫆㫅㪾㫊㪸㫅㪾㪹㫌㫂㪄㪻㫆㪀 㪢㪄㪈㪉㪎
㪢㫆㫉㪼㪸㩷㩿㪥㪸㫂㫋㫆㫅㩷㪩㪅㪀
㪢㫆㫉㪼㪸㩷㩿㪥㪸㫂㫋㫆㫅㩷㪩㪅㪀
㪢㫆㫉㪼㪸㩷㩿㪤㪸㫅㫂㫐㫆㫅㪾㩷㪩㪅㪀
㪢㫆㫉㪼㪸 㪢㫆㫉㪼㪸㩷㩿㪟㪸㫅㩷㪩㪅㪃㩷㪞㪼㫌㫄㩷㪩㪅㪀
㪘㫄㫌㫉㩷㪹㪸㫊㫀㫅
㪢㫆㫉㪼㪸
㪤㪸㪺㪼㪻㫆㫅㫀㪸
㪡㪸㫇㪸㫅 㪢㫆㫉㪼㪸
㪮㪅㩷㪡㪸㫇㪸㫅
㪡㪸㫇㪸㫅㩷㩿㪪㪸㪾㪸㪀
㪙㫆㫊㫅㫀㪸
㪙㫆㫊㫅㫀㪸
㪡㪸㫇㪸㫅㩷㩿㪝㫌㫂㫌㫆㫂㪸㪃㩷㪥㪸㪾㪸㫊㪸㫂㫀㪀 㪬㪄㪉㪐 㪡㪸㫇㪸㫅㩷㩿㪝㫌㫂㫌㫆㫂㪸㪃㩷㪦㫀㫋㪸㪀 㪬㪄㪉㪐
㪡㪸㫇㪸㫅㩷㩿㪝㫌㫂㫌㫆㫂㪸㪀
㪡㪸㫇㪸㫅㩷㩿㪪㪿㫀㪾㪸㪀
㪮㪅㩷㪡㪸㫇㪸㫅㩷
㪡㪸㫇㪸㫅㩷㩿㪣㪸㫂㪼㩷㪙㫀㫎㪸㪀 㪡㪸㫇㪸㫅㩷㩿㪰㫆㪻㫆㩷㪩㪅㪀㩷
㪡㪸㫇㪸㫅㩷㩿㪦㫂㪸㫐㪸㫄㪸㪀
㪪㪄㪊㪃㩷㪪㪄㪋 㪉㪯㪃㩷㪘㪚㪥㪔㪌㪇
㪯㪈㪯㪉㪰㪃㩷㪘㪚㪥㪔㪌㪇 㪡㪸㫇㪸㫅㩷㩿㪦㫂㪸㫐㪸㫄㪸㪀
㪭㪄㪈㪐㪃㩷㪭㪄㪈㪇㪉
㪭㪄㪈㪐
㪭㪄㪈㪐
㪭㪄㪈㪇㪉 㪭㪄㪎㪉 㪪㪄㪊㪃㩷㪪㪄㪋
㪩㫌㫊㫊㫀㪸㩷㩿㪛㫅㪼㫇㫉㩷㪩㪅㪀㩷
㪩㫌㫊㫊㫀㪸㩷㩿㪛㫅㪼㫇㫉㩷㪩㪅㪀㩷
㪩㫌㫊㫊㫀㪸㩷㩿㪛㫅㪼㫇㫉㩷㪩㪅㪀㩷
㪭㪄㪉㪋㪃㩷㪭㪄㪈㪇㪉 㪚㪄㪊㪋
㪭㪄㪈㪌
㪭㪄㪈㪌
㪙㪄㪋㪏㪃㩷㪙㪄㪌㪉 㪭㪄㪈㪌
㪙㪄㪋㪏㪃㩷㪙㪄㪌㪉
㪰㪄㪈㪌
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
㪩㫌㫊㫊㫀㪸 㩿㪘㫊㫀㪸㪀 㪡㪸㫇㪸㫅㩷㩿㪦㫂㪸㫐㪸㫄㪸㪀
㪋㪯 㪉㪯 㪯㪈㪯㪈㪯㪉㪯㪉
㪊㪯
㪉㪯㪃㩷㪘㪚㪥㪔㪌㪇
㪩㫌㫊㫊㫀㪸 㪠㫋㪸㫃㫐
㪩㫌㫊㫊㫀㪸㩷㩿㪭㫆㫃㪾㪸㩷㪩㪅㪀
㪘㪚㪥㪔㪌㪇 㪉㪯㪃㩷㪘㪚㪥㪔㪌㪇
㪩㫌㫊㫊㫀㪸㩷㩿㪭㫆㫃㪾㪸㩷㪩㪅㪀
㪉㪯
㪧㫆㫃㪸㫅㪻 㪩㫌㫊㫊㫀㪸㩷㩿㪭㫆㫃㪾㪸㩷㪩㪅㪀
㪧㫆㫃㪸㫅㪻
㪚㪿㫀㫅㪸㩷㩿㪞㫌㫀㫃㫀㫅㪀
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪊㪯㪃㩷㪋㪯㪃㩷㪌㪯
㪊㪯 㪉㪯㪃㩷㪘㪚㪥㪔㪌㪇
㪉㪯
㪋㪯
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
75
㪢㫀㪺㪿㫌㫃㪺㪿㫆㫀㪸 㪢㫆㫉㪼㫆㪺㫆㪹㫀㫋㫀㫊 㪣㪼㫇㫀㪻㫆㪺㪼㫇㪿㪸㫃㫀㪺㪿㫋㪿㫐㫊 㪣㪼㫇㫀㪻㫆㪺㪼㫇㪿㪸㫃㫀㪺㪿㫋㪿㫐㫊 㪣㪼㫇㫀㪻㫆㪺㪼㫇㪿㪸㫃㫀㪺㪿㫋㪿㫐㫊 㪣㪼㫇㫀㪻㫆㪺㪼㫇㪿㪸㫃㫀㪺㪿㫋㪿㫐㫊 㪤㫀㫊㪾㫌㫉㫅㫌㫊 㪤㫀㫊㪾㫌㫉㫅㫌㫊 㪤㫀㫊㪾㫌㫉㫅㫌㫊 㪤㫀㫊㪾㫌㫉㫅㫌㫊 㪤㫀㫊㪾㫌㫉㫅㫌㫊 㪤㫀㫊㪾㫌㫉㫅㫌㫊 㪤㫀㫊㪾㫌㫉㫅㫌㫊 㪤㫀㫊㪾㫌㫉㫅㫌㫊 㪤㫀㫊㪾㫌㫉㫅㫌㫊 㪤㫀㫊㪾㫌㫉㫅㫌㫊 㪤㫀㫊㪾㫌㫉㫅㫌㫊 㪤㫀㫊㪾㫌㫉㫅㫌㫊 㪤㫀㫊㪾㫌㫉㫅㫌㫊 㪤㫀㫊㪾㫌㫉㫅㫌㫊 㪤㫀㫊㪾㫌㫉㫅㫌㫊 㪥㫀㫎㪸㪼㫃㫃㪸 㪥㫀㫎㪸㪼㫃㫃㪸 㪥㫀㫎㪸㪼㫃㫃㪸 㪧㪸㫅㪾㫀㫆 㪧㪸㫅㪾㫀㫆 㪧㪸㫅㪾㫀㫆 㪧㪸㫅㪾㫀㫆 㪧㪸㫉㪸㫄㫀㫊㪾㫌㫉㫅㫌㫊 㪧㪸㫉㪸㫄㫀㫊㪾㫌㫉㫅㫌㫊 㪪㪸㪹㪸㫅㪼㫁㪼㫎㫀㪸 㪪㪸㪹㪸㫅㪼㫁㪼㫎㫀㪸 㪪㪸㪹㪸㫅㪼㫁㪼㫎㫀㪸 㪪㪸㪹㪸㫅㪼㫁㪼㫎㫀㪸 㪪㪸㪹㪸㫅㪼㫁㪼㫎㫀㪸 㪪㪸㪹㪸㫅㪼㫁㪼㫎㫀㪸
㪹㫉㪼㫍㫀㪽㪸㫊㪺㫀㪸㫋㪸 㫉㫆㫋㫌㫅㪻㫀㪺㪸㫌㪻㪸㫋㪸 㪹㪼㫉㪻㫄㫆㫉㫀 㪾㫌㫅㫋㪼㪸 㪾㫌㫅㫋㪼㪸 㪾㫌㫅㫋㪼㪸㩷 㫍㪸㫉㪅㩷㪹㪸㫃㪾㪸㫉㪸 㪸㫅㪾㫌㫀㫃㫃㫀㪺㪸㫌㪻㪸㫋㫌㫊 㪸㫅㪾㫌㫀㫃㫃㫀㪺㪸㫌㪻㪸㫋㫌㫊 㪸㫅㪾㫌㫀㫃㫃㫀㪺㪸㫌㪻㪸㫋㫌㫊 㪸㫅㪾㫌㫀㫃㫃㫀㪺㪸㫌㪻㪸㫋㫌㫊 㪸㫅㪾㫌㫀㫃㫃㫀㪺㪸㫌㪻㪸㫋㫌㫊 㪸㫅㪾㫌㫀㫃㫃㫀㪺㪸㫌㪻㪸㫋㫌㫊 㪸㫅㪾㫌㫀㫃㫃㫀㪺㪸㫌㪻㪸㫋㫌㫊 㪸㫅㪾㫌㫀㫃㫃㫀㪺㪸㫌㪻㪸㫋㫌㫊 㪸㫅㪾㫌㫀㫃㫃㫀㪺㪸㫌㪻㪸㫋㫌㫊 㪸㫅㪾㫌㫀㫃㫃㫀㪺㪸㫌㪻㪸㫋㫌㫊 㪹㫌㪽㫆㪼㫅㫊㫀㫊 㪽㫆㫊㫊㫀㫃㫀㫊 㫄㫆㪿㫆㫀㫋㫐 㫅㫀㫂㫆㫃㫊㫂㫐㫀 㫅㫀㫂㫆㫃㫊㫂㫐㫀 㪻㪼㫃㫀㪺㪸㫋㪸 㪻㪼㫃㫀㪺㪸㫋㪸 㫄㫌㫃㫋㫀㪽㪸㫊㪺㫀㪸㫋㪸 㪹㫆㫉㫅㪼㪼㫅㫊㫀㫊 㫂㪿㫌㫃㫀㫀 㫂㪿㫌㫃㫀㫀 㫇㪸㫅㪾㫀㪸 㪻㪸㪹㫉㫐㪸㫅㫌㫊 㪻㪸㪹㫉㫐㪸㫅㫌㫊 㪹㪸㫃㪺㪸㫅㫀㪺㪸 㪺㪸㫊㫇㫀㪸 㪺㪸㫊㫇㫀㪸 㫂㫌㪹㪸㫅㫀㪺㪸 㫂㫌㪹㪸㫅㫀㪺㪸 㪖 㫃㪸㫉㫍㪸㫋㪸
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㫇㪼㫉㪽㪸㫄㫀㫃㫐㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷
㪸㫌㫉㪸㫋㪸㩷㫂㫌㪹㪸㫅㫀㪺㪸 㪸㫌㫉㪸㫋㪸
㪤㫀㫊㪾㫌㫉㫅㫌㫊㩷㫄㫀㫑㫆㫃㪼㫇㫀㫊 㪸㫌㫉㪸㫋㪸㩷㪹㪸㫃㪺㪸㫅㫀㪺㪸
㪘㪺㪸㫅㫋㪿㫆㫇㪿㫋㪿㪸㫃㫄㫌㫊 㪘㪺㪸㫅㫋㪿㫆㫇㪿㫋㪿㪸㫃㫄㫌㫊 㪘㪺㪸㫅㫋㪿㫆㫇㪿㫋㪿㪸㫃㫄㫌㫊 㪘㪺㪸㫅㫋㪿㫆㫇㪿㫋㪿㪸㫃㫄㫌㫊
㪚㫆㪹㫀㫋㫀㫊
㪚㫆㪹㫀㫋㫀㫊
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪫㪸㪹㫃㪼㩷㪍㪅㪈㪈㩷㩷㪦㫉㪻㪼㫉㩷㪚㪰㪧㪩㪠㪥㪠㪝㪦㪩㪤㪜㪪㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀
㪈㪉㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪊㪉㩷㪪㪫㪆㪘
㪋㪏
㪊㪍㩷㪤㪆㪪㪤㪆㪪㪫㩷㪂㩷㪍㪋㪘
㪝㪃㩷㪤
㪌㪇
㪋㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪉㪉㪪㪫㩷㪂㩷㪈㪏㪘
㪍㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪊㪇㩷㪪㪫㪆㪘 㪍㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪊㪇㩷㪪㪫㪆㪘
㪋㪤㩷㪂㩷㪈㪏㪪㪤㩷㪂㩷㪉㪏㩷㪪㪫㪆㪘
㪌㪇 㪌㪇 㪌㪇
㪋㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪊㪋㩷㪪㪫㪆㪘 㪋㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪉㪉㪪㪫㩷㪂㩷㪈㪏㪘
㪌㪇
㪝㪃㩷㪤
㪈㪉㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪊㪉㪘 㪈㪉㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪊㪉㩷㪪㪫㪆㪘
㪌㪇
㪋㪏 㪋㪏
㪈㪋㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪊㪉㪘 㪈㪍㪤㩷㪂㩷㪈㪇㪪㪤㩷㪂㩷㪉㪋㪘
㪌㪇 㪌㪇 㪝㪃㩷㪤
㪈㪇㪤㩷㪂㩷㪈㪏㩷㪪㪤㪆㪪㪫㩷㪂㩷㪉㪉㪘 㪈㪋㩷㪤㪆㪪㪤㩷㪂㩷㪈㪉㪪㪫㩷㪂㩷㪉㪋㪘
㪊㪏㩷㪤㪆㪪㪤㩷㪂㩷㪈㪉㩷㪪㪫㪆㪘
㪌㪇 㪌㪇 㪌㪇
㪍㪤㩷㪂㩷㪈㪋㩷㪪㪤㪆㪪㪫㩷㪂㩷㪊㪇㪘㩷㩷
㪌㪇
㪈㪏㩷㪤㪆㪪㪤㩷㪂㩷㪊㪉㩷㪪㪫㪆㪘
㪌㪇
㪍㪇
㪎㪇 㪎㪇
㪎㪉
㪍㪇
㪍㪍
㪍㪋 㪍㪋
㪎㪍
㪍㪋
㪍㪋
㪏㪏
㪍㪏
㪏㪉
㪏㪉
㪎㪍
㪍㪏
㪎㪏 㪎㪍
㪉
㪉㪅㪇㩷㪝㪛 㪉㪅㪇㩷㪝㪛
㪉㪅㪉㪃㩷㪉㪅㪇㪁㩷㪝㪛
㩿㪉㪅㪋㩷㪙㪝㪘㪀
㪩㫌㫄㪸㫅㫀㪸
㪥㪅㩷㪢㫆㫉㪼㪸
㪚㪿㫀㫅㪸㩷㩿㪪㫀㪺㪿㫌㪸㫅㪀㩷 㪚㪿㫀㫅㪸㩷㩿㪟㫌㪹㪼㫀㪀
㪥㪅㩷㪢㫆㫉㪼㪸
㪪㪅㩷㪢㫆㫉㪼㪸
㪡㪸㫇㪸㫅
㪡㪸㫇㪸㫅㩷㩿㪪㪿㫀㪾㪸㪀 㪡㪸㫇㪸㫅㩷㩿㪪㪿㫀㪾㪸㪀
㪡㪸㫇㪸㫅㩷㩿㪪㪿㫀㪾㪸㪀
㪡㪸㫇㪸㫅
㪡㪸㫇㪸㫅㩷㩿㪟㫆㫂㫂㪸㫀㪻㫆㪀
㪠㫅㪻㫀㪸
㪫㪿㪸㫀㫃㪸㫅㪻
㩿㪘㫊㫀㪸㪀 㩿㪘㫊㫀㪸㪀
㪢㫆㫉㪼㪸
㪮㪅㩷㪡㪸㫇㪸㫅
㪡㪸㫇㪸㫅㩷㩿㪪㪿㫀㪾㪸㪃㩷㪞㫀㪽㫌㪀
㪉㪯㪃㩷㪘㪚㪥㪔㪌㪇
㪉㪯㪃㩷㪘㪚㪥㪔㪌㪇 㪉㪯㪃㩷㪘㪚㪥㪔㪌㪇
㪉㪯
㪉㪯
㪉㪯㪃㩷㪘㪚㪥㪔㪌㪇
㪠㫋㪸㫃㫐㩷㩿㫅㪼㪸㫉㩷㪫㫆㫉㫀㫅㫆㪀
㪩㫌㫊㫊㫀㪸㩷㩿㪢㫌㪹㪸㫅㩷㪩㪀㪅
㩿㪚㪸㫊㫇㫀㪸㫅㩷㪪㪼㪸㩷㪹㪸㫊㫀㫅㪀
㪪㫃㫆㫍㪸㫂㫀㪸
㪇㪄㪈㩷㪙㪃㩷㪘㪚㪥㪔㪌㪇 㪚㪿㫀㫅㪸㩷㩿㪟㫌㪹㪼㫀㪀 㪉㪯㪃㩷㪘㪚㪥㪔㪌㪇 㪢㫆㫉㪼㪸㩷㩿㪞㪼㫌㫄㩷㪩㪅㪀
㪉㪯㪃㩷㪘㪚㪥㪔㪌㪇
㪉㪯㪃㩷㪘㪚㪥㪔㪌㪇 㪉㪯㪃㩷㪘㪚㪥㪔㪌㪇
㪉㪯㪃㩷㪘㪚㪥㪔㪌㪇
㪉㪯㪃㩷㪘㪚㪥㪔㪌㪇
㪉㪯㪃㩷㪘㪚㪥㪔㪌㪇
㪉㪯㪃㩷㪘㪚㪥㪔㪌㪇 㪘㪚㪥㪔㪌㪇
㪋㪯
㪉㪯㪃㩷㪘㪚㪥㪔㪌㪇 㪋㪯
㪉㪯㪃㩷㪘㪚㪥㪔㪌㪇
㪉㪯
㪉㪯㪃㩷㪘㪚㪥㪔㪌㪇
㪊㪯 㪋㪯
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪉㪯㪃㩷㪘㪚㪥㪔㪌㪇
㪩㫌㫊㫊㫀㪸㩷㩿㪘㫄㫌㫉㩷㪹㪸㫊㫀㫅㪀
㪝㪃㩷㪤
㪝
㪋㪅㪍㪃㩷㪋㪅㪇㪁㩷㪝㪛
㪉㪅㪋㩷㪝㪚㪤
㪊㪅㪎㩷㪝㪛
㩷㩿㪉㪅㪏㩷㪙㪝㪘㪀㩷
㪉㪙㪃㩷㪉㪯㪃㩷㪘㪚㪥㪔㪌㪇 㪠㫅㪻㫀㪸㩷㩿㪡㪸㫄㫄㫌㪀 㪉㪯㪃㩷㪘㪚㪥㪔㪌㪇 㪠㫅㪻㫀㪸㩷㩿㪮㪙㪀
㪈㪙㪃㩷㪉㪯㪃㩷㪘㪚㪥㪄㪌㪇 㪠㫅㪻㫀㪸㩷㩿㪡㪸㫄㫄㫌㪀
㪠㫅㪻㫀㪸㩷㩿㪧㫆㫉㫋㫆㫅㫆㫍㫆㪀
㪢㫆㫉㪼㪸㩷㩿㪟㪸㫅㩷㪩㪅㪀
㪢㫆㫉㪼㪸㩷㩿㪡㪼㫆㫃㫃㪸㫅㪸㫄㪄㪻㫆㪀
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪩㫌㫊㫊㫀㪸㩷㩿㪝㪸㫉㩷㪜㪸㫊㫋㪀 㪩㫌㫊㫊㫀㪸㩷㩿㪘㫄㫌㫉㩷㪹㪸㫊㫀㫅㪀
㪎㪇
㪉
㪉
㪉㪯㪃㩷㪘㪚㪥㪔㪌㪇
㪉㪯㪃㩷㪘㪚㪥㪔㪋㪏
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪌㪇
㪈㪊㪍
㪍㪋 㪈㪉㪏
㪍㪋
㪐㪍 㪏㪏
㪐㪍
㪠 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪌㪇 㪌㪇
㪍㪋 㪍㪋
㪍㪇
㪈㪇㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪊㪍㩷㪪㪫㪆㪘
㪋㪏 㪈㪇㪇 㪏㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪊㪍㩷㪪㪫㪆㪘 㪈㪇㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪊㪍㩷㪪㪫㪆㪘
㪍㪋 㪈㪉㪏
㪍㪋
㪐㪍 㪈㪉㪏
㪍㪋
㪍㪋
㪍㪋
㪏㪍 㪏㪍
㪏㪍
㪏㪍
㪍㪋
㪍㪋
㪝 㪞 㪟 㪥㪝㪈 㪥㪝㪉 㪘㪾㪄 㪥㪦㪩㫊
㪏㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪊㪍㪘 㪈㪍㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪎㪉㪘
㪌㪇 㪈㪇㪇
㪌㪇
㪈㪇㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪊㪍㩷㪪㪫㪆㪘
㪏㪤㩷㪂㩷㪍㩷㪪㪤㪆㪪㪫㩷㪂㩷㪊㪍㪘
㪌㪇 㪌㪇
㪈㪌㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪌㪋㩷㪪㪫㪆㪘 㪉㪇㪤㩷㪂㩷㪏㪪㪤㩷㪂㩷㪎㪉㩷㪪㪫㪆㪘
㪎㪌 㪈㪇㪇
㪈㪋㩷㪤㪆㪪㪤㩷㪂㩷㪊㪍㩷㪪㪫㪆㪘
㪝㪃㩷㪤
㪝 㪝㪃㩷㪤
㪝 㪝㪃㩷㪤
㪈㪇㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪊㪍㩷㪪㪫㪆㪘
㪌㪇 㪌㪇
㪝㪃㩷㪤 㪝㪃㩷㪤
㪈㪏㪤㩷㪂㩷㪈㪏㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪋㪘 㪈㪏㪤㩷㪂㩷㪈㪏㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪋㪘 㪉㪉㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪈㪉㪘
㪌㪇 㪌㪇 㪌㪇
㪝
㪉㪋㩷㪤㪆㪪㪤㩷㪂㩷㪊㪏㪘
㪈㪇㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪊㪍㩷㪪㪫㪆㪘
㪍㪤㩷㪂㩷㪈㪇㪪㪤㩷㪂㩷㪊㪉㩷㪪㪫㪆㪘
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪍㪉
㪌㪇
㪋㪏
㪛 㪉㫅
㪤 㪝㪃㩷㪤
㪤
㪝㪃㩷㪤
㪚 㪪㪼㫏
㪣㪄㪍㪌
㪭㪄㪉㪌 㪭㪄㪎㪉
㪭㪄㪈㪇㪏
㪭㪄㪎㪉
㪩㪄㪈㪐㪃㩷㪭㪄㪉㪍
㪣㪄㪉㪎㪃㩷㪣㪄㪋㪈㪃㩷㪰㪄㪈㪌㪃㩷㪚㪄㪏㪊 㪬㪄㪊㪌
㪣㪄㪈
㪛㪄㪉㪇㪃㩷㪟㪄㪈㪊
㪪㪄㪈㪊㪎 㪤㪄㪐㪈
㪢㪄㪈㪉㪏
㪢㪄㪍㪇
㪦㪄㪈㪋㪃㩷㪫㪄㪈㪃㩷㪟㪄㪈㪍
㪭㪄㪉㪏 㪭㪄㪐㪏
㪭㪄㪐㪏
㪩㪄㪊㪉
㪭㪄㪐㪏
㪣㪄㪋㪋㪃㩷㪰㪄㪈㪌 㪣㪄㪉㪎㪃㩷㪣㪄㪋㪈㪃㩷㪰㪄㪈㪌㪃㩷㪚㪄㪏㪊
㪭㪄㪉㪏
㪣㪄㪈㪌㪃㩷㪧㪄㪎㪇
㪪㪄㪈㪊㪎
㪦㪄㪉㪏 㪦㪄㪉㪏
㪦㪄㪉㪏
㪦㪄㪉㪏㪃㩷㪠㪄㪈㪌
㪟㪄㪈㪊㪃㩷㪟㪄㪈㪌㪃㩷㪟㪄㪈㪍㪃㩷㪦㪄㪈㪋
㪪㪄㪌㪎㪃㩷㪢㪄㪈㪊㪍 㪙㪄㪋
㪪㪄㪌㪎㪃㩷㪢㪄㪈㪊㪍
㪥㪄㪈㪊
㪬㪄㪊㪌
㪢㪄㪈㪉㪏
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
76
㪭㪸㫀㫃㫃㪸㫅㫋㪼㫃㫃㫀㪻㪸㪼
㪭㪸㫀㫃㫃㪸㫅㫋㪼㫃㫃㪸
㫄㪸㪸㫊㫊㫀
㫂㫎㪼㫀㪺㪿㫆㫎㪼㫅㫊㫀㫊㩷㫂㫎㪼㫀㪺㪿㫆㫎㪼㫅㫊㫀㫊 㪸㪹㪹㫉㪼㫍㫀㪸㫋㪸 㪟㪼㫄㫀㫄㫐㫑㫆㫅㩷㪸㪹㪹㫉㪼㫍㫀㪸㫋㪸 㫄㫐㪼㫉㫊㫀 㫂㫎㪸㫅㪾㫊㫀㪼㫅㫊㫀㫊 㪟㫆㫄㪸㫃㫆㫇㫋㪼㫉㪸㩷㪿㫆㪽㪽㫄㪸㫅㫅㫀 㫇㫀㫅㪾㪺㪿㫆㫎㪼㫅㫊㫀㫊
㩷㩷㪙㪸㫃㫀㫋㫆㫉㫀㫅㪸㪼
㪙㪼㪸㫌㪽㫆㫉㫋㫀㪸 㪡㫀㫅㫊㪿㪸㫀㪸 㪧㫊㪼㫌㪻㫆㪾㪸㫊㫋㫉㫆㫄㫐㫑㫆㫅 㪪㫀㫅㫆㪿㫆㫄㪸㫃㫆㫇㫋㪼㫉㪸 㪭㪸㫅㫄㪸㫅㪼㫅㫀㪸
㪈㪉㪤㩷㪂㩷㪊㪇㩷㪪㪤㪆㪪㪫㩷㪂㩷㪊㪊㪘 㪍㪤㩷㪂㩷㪈㪉㩷㪪㪤㪆㪪㪫㩷㪂㩷㪊㪉㪘
㪎㪌 㪌㪇
㪥㪼㫄㪸㪺㪿㪼㫀㫃㫌㫊 㪥㪼㫄㪸㪺㪿㪼㫀㫃㫌㫊
㪉㪇㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪏㪘 㪈㪍㩷㪤㪆㪪㪤㩷㪂㩷㪊㪋㩷㪪㪫㪆㪘
㪊㪍 㪌㪇
㪝㪃㩷㪤 㪝㪃㩷㪤
㪝㪃㩷㪤
㪈㪇㪤㩷㪂㩷㪈㪇㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪉㪍㪘 㪉㪇㪤㩷㪂㩷㪏㪪㪤㩷㪂㩷㪉㪉㩷㪪㪫㪆㪘
㪌㪇 㪌㪇
㪌㪇
㪉㪍㩷㪤㪆㪪㪤㩷㪂㩷㪉㪋㪪㪫
㪎㪍
㪈㪇㪇
㪎㪋 㪎㪇
㪉
㪢㫆㫉㪼㪸
㪚㪿㫀㫅㪸
㪚㪼㫅㫋㫉㪸㫃㩷㪘㫊㫀㪸 㪚㪼㫅㫋㫉㪸㫃㩷㪘㫊㫀㪸
㪫㫀㪹㪼㫋
㪚㪼㫅㫋㫉㪸㫃㩷㪘㫊㫀㪸
㪠㫅㪻㫀㪸㩷㩿㪙㫀㪿㪸㫉㪀
㪠㫅㪻㫀㪸 㪠㫅㪻㫀㪸㩷㩿㪬㪅㪧㪅㪀
㪚㪿㫀㫅㪸㩷㩿㪞㫌㫀㫃㫀㫅㪀
㪚㪿㫀㫅㪸㩷㩿㪞㫌㫀㫃㫀㫅㪀
㪚㪿㫀㫅㪸㩷㩿㪞㫌㫀㫃㫀㫅㪀
㩿㪘㫊㫀㪸㪀 㪚㪿㫀㫅㪸㩷㩿㪰㪸㩾㪸㫅㪃㩷㪪㫀㪺㪿㫌㪸㫅㪀
㪠㫅㪻㫀㪸㩷㩿㪘㫊㫊㪸㫄㪀
㩿㪚㪿㫀㫅㪸㪀
㪚㪿㫀㫅㪸㩷㩿㪞㫌㫀㫃㫀㫅㪀
㪡㪸㫇㪸㫅㩷㩿㪟㫆㫂㫂㪸㫀㪻㫆㪀 㪡㪸㫇㪸㫅㩷㩿㪟㫆㫂㫂㪸㫀㪻㫆㪀
㩿㪡㪸㫇㪸㫅㪀
㪡㪸㫇㪸㫅㩷㩿㪢㪸㫅㪸㪾㪸㫎㪸㪀
㪇㪅㪐㩷㪝㪛
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇 㪘㪚㪥㪔㪌㪇
㪫㪿㪸㫀㫃㪸㫅㪻
㩿㪘㫊㫀㪸㪀 㪚㪿㫀㫅㪸㩷㩿㪞㫌㫀㫃㫀㫅㪀
㪍㪤㩷㪂㩷㪈㪏㩷㪪㪤㪆㪪㪫㩷㪂㩷㪉㪍㪘 㪏㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪊㪇㪘
㪘㪚㪥㪔㪌㪇
㪪㪄㪈㪊㪎
㪟㪄㪈㪍
㪭㪄㪎㪉
㪚㪄㪎㪊
㪪㪄㪏㪊 㪚㪄㪎㪊
㪙㪄㪌㪈
㪤㪄 㪋
㪢㪄㪋㪈
㪩㪄㪌㪈
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
㪙㪄㪎㪉
㪪㪄㪈㪊㪐 㪰㪄㪈㪌
㪪㪄㪈㪊㪐
㪰㪄㪈㪌
㪪㪄㪈㪋㪌
㪤㪄 㪌 㪎 㪤㪄 㪌 㪎
㪚㪄㪏㪊
㪤㪄 㪌 㪎
㪢㪄㪋㪈
㪣㪄㪈 㪩㪄㪎㪋
㪰㪄㪈㪌
㪰㪄㪈㪌
㪰㪄㪈㪌
㪪㪄㪈㪊㪎 㪰㪄㪈㪌
㪢㪄㪋㪍
㪪㪄㪈㪋㪌
㪰㪄㪈㪌
㪟㪄㪈㪍 㪪㪄㪈㪋㪌
㪬㪄㪊㪇
㪪㪄㪈㪉㪋㪃㩷㪪㪄㪈㪊㪎
㪢㪄㪌㪏
㪢㫆㫉㪼㪸㩷㩿㪟㪸㫅㩷㪩㪅㪃㩷㪥㪸㫂㫋㫆㫅㩷㪩㪅㪀 㪢㪄㪌㪏 㪢㫆㫉㪼㪸㩷㩿㪤㪸㪼㫌㪹㪺㪿㫆㫅㩷㪩㪅㪀 㪢㪄㪌㪏
㪡㪸㫇㪸㫅㩷㩿㪟㫆㫂㫂㪸㫀㪻㫆㪀
㪌㪇 㪌㪇
㪇㪅㪐㩷㪝㪛
㪘㪚㪥㪔㪌㪇 㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇 㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪉 㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇 㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇 㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪡㪸㫇㪸㫅㩷㩿㪟㫆㫂㫂㪸㫀㪻㫆㪀
㪪㫃㫆㫍㪸㫂㫀㪸
㪙㫆㫊㫅㫀㪸㪄㪟㪼㫉㫑㪼㪾㫆㫍㫀㫅㪸 㪪㫃㫆㫍㪸㫂㫀㪸
㪧㫆㫃㪸㫅㪻
㪪㫎㫀㫊㫊㪃㩷㪪㫇㪸㫀㫅
㩿㪘㫊㫀㪸㪀
㪎㪉
㪉
㪉㪅㪇㪁㩷㪝㪛
㪇㪅㪐㩷㪝㪛
㪈㪅㪇㩷㪝㪛
㪈㪅㪈㩷㪝㪛
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪊㪯
㪘㪚㪥㪔㪌㪇 㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪠㫅㪻㫀㪸㩷㩿㪦㫉㫀㫊㫊㪸㪀
㩿㪠㫅㪻㫀㪸㪀
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪍㪤㩷㪂㩷㪈㪍㩷㪪㪤㪆㪪㪫㩷㪂㩷㪉㪏㪘
㪏㪋
㪉
㪉
㪉
㪉
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪌㪇
㪍㪋
㪍㪉 㪍㪏
㪍㪋
㪎㪋
㪎㪇
㪐㪇
㪎㪉
㪋㪏 㪐㪋
㪐㪍
㪏㪏
㪏㪋
㪎㪏
㪍㪉
㪏㪇
㪍㪏
㪈㪈㪎
㪎㪏
㪎㪏
㪏㪉
㪏㪍
㪠 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪚㪿㫀㫅㪸
㪈㪇㪤㩷㪂㩷㪉㪍㩷㪪㪤㪆㪪㪫㩷㪂㩷㪈㪉㪘
㪈㪉㩷㪤㪆㪪㪤㩷㪂㩷㪊㪏㩷㪪㪫㪆㪘 㪈㪏㩷㪤㪆㪪㪤㩷㪂㩷㪊㪉㩷㪪㪫㪆㪘
㪍㪍
㪍㪉
㪎㪇 㪎㪏
㪍㪍
㪎㪍
㪍㪉
㪋㪏 㪏㪏
㪐㪍
㪎㪉
㪍㪉
㪍㪉
㪍㪇
㪎㪇 㪍㪋
㪍㪍
㪎㪇
㪎㪏
㪎㪏
㪏㪉
㪝 㪞 㪟 㪥㪝㪈 㪥㪝㪉 㪘㪾㪄 㪥㪦㪩㫊
㪌㪇
㪋㪏
㪌㪇 㪌㪇
㪋㪏
㪏㪤㩷㪂㩷㪏㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪊㪇㪘
㪌㪇
㪝㪃㩷㪤
㪈㪇㪤㩷㪂㩷㪏㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪈㪍㪘 㪈㪉㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪈㪋㪪㪫㩷㪂㩷㪈㪇㪘
㪋㪋 㪌㪇
㪤
㪍㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪊㪉㪘 㪈㪋㪤㩷㪂㩷㪉㪍㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪉㪘
㪋㪇 㪋㪏
㪝㪃㩷㪤
㪝㪃㩷㪤
㪥㪼㫄㪸㪺㪿㪼㫀㫃㫌㫊 㪥㪼㫄㪸㪺㪿㪼㫀㫃㫌㫊㩷㪽㪸㫊㪺㫀㫆㫃㪸㫋㫌㫊 㪥㪼㫄㪸㪺㪿㪼㫀㫃㫌㫊㩷㪽㪸㫊㪺㫀㫆㫃㪸㫋㫌㫊 㪥㪼㫄㪸㪺㪿㪼㫀㫃㫌㫊㩷㫀㫅㪺㪼㫉㫋㫌㫊 㪥㪼㫄㪸㪺㪿㪼㫀㫃㫌㫊 㪥㪼㫄㪸㪺㪿㪼㫀㫃㫌㫊㩷㫉㫌㫇㫀㪺㫆㫃㪸 㪥㪼㫄㪸㪺㪿㪼㫀㫃㫌㫊 㪥㪼㫄㪸㪺㪿㪼㫀㫃㫌㫊㩷㪻㫆㫉㫊㪸㫃㫀㫊
㪉㪋㪤㩷㪂㩷㪉㪉㪪㪤㩷㪂㩷㪋㪘
㪌㪇
㪏㪤㩷㪂㩷㪊㪇㩷㪪㪤㪆㪪㪫㩷㪂㩷㪈㪉㪘
㪌㪇 㪤
㪈㪇㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪈㪉㪪㪫㩷㪂㩷㪈㪍㪘
㪌㪇
㪝㪃㩷㪤
㪋㪤㩷㪂㩷㪏㪪㪤㩷㪂㩷㪊㪏㩷㪪㪫㪆㪘 㪈㪉㩷㪤㪆㪪㪤㩷㪂㩷㪊㪏㩷㪪㪫㪆㪘 㪋㪤㩷㪂㩷㪉㪋㩷㪪㪤㪆㪪㪫㩷㪂㩷㪉㪉㪘
㪌㪇 㪌㪇 㪌㪇
㪝㪃㩷㪤
㪍㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪋㪇㩷㪪㪫㪆㪘 㪋㪤㩷㪂㩷㪏㩷㪪㪤㪆㪪㪫㩷㪂㩷㪊㪏㪘
㪌㪇 㪌㪇
㪤
㪏㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪊㪇㩷㪪㪫㪆㪘 㪏㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪊㪍㩷㪪㪫㪆㪘
㪍㪤㩷㪂㩷㪉㪋㩷㪪㪤㪆㪪㪫㩷㪂㩷㪉㪇㪘
㪌㪇 㪌㪇 㪌㪇
㪈㪍㩷㪤㪆㪪㪤㩷㪂㩷㪊㪋㩷㪪㪫㪆㪘
㪌㪇
㪤 㪝
㪝㪃㩷㪤
㪉㪇㩷㪤㪆㪪㪤㩷㪂㩷㪊㪇㩷㪪㪫㪆㪘 㪏㪤㩷㪂㩷㪉㪇㩷㪪㪤㪆㪪㪫㩷㪂㩷㪉㪉㪘
㪌㪇 㪌㪇
㪝㪃㩷㪤
㪏㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪉㪉㩷㪪㪫㪆㪘
㪌㪇
㪝㪃㩷㪤
㪏㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪉㪉㪘
㪉㪏㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪈㪏㪘
㪌㪇
㪉㪇㪤㩷㪂㩷㪈㪍㩷㪪㪤㪆㪪㪫㩷㪂㩷㪈㪋㪘
㪌㪇
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪌㪇
㪛 㪉㫅
㪝㪃㩷㪤
㪝㪃㩷㪤
㪚 㪪㪼㫏
㫊㫀㫅㫌㪸㫋㫌㫊
㪥㪼㫄㪸㪺㪿㪼㫀㫃㫌㫊 㪥㪼㫄㪸㪺㪿㪼㫀㫃㫌㫊
㪥㪼㫄㪸㪺㪿㪼㫀㫃㫌㫊 㪥㪼㫄㪸㪺㪿㪼㫀㫃㫌㫊㩷㪸㫌㫉㪼㫌㫊 㪥㪼㫄㪸㪺㪿㪼㫀㫃㫌㫊㩷㪹㪸㫉㪹㪸㫋㫌㫃㫌㫊 㪥㪼㫄㪸㪺㪿㪼㫀㫃㫌㫊㩷㪹㪸㫉㪹㪸㫋㫌㫃㫌㫊 㪥㪼㫄㪸㪺㪿㪼㫀㫃㫌㫊㩷㪹㪸㫉㪹㪸㫋㫌㫃㫌㫊 㪥㪼㫄㪸㪺㪿㪼㫀㫃㫌㫊㩷㪹㪸㫉㪹㪸㫋㫌㫃㫌㫊 㪥㪼㫄㪸㪺㪿㪼㫀㫃㫌㫊㩷㪹㪸㫉㪹㪸㫋㫌㫃㫌㫊 㪥㪼㫄㪸㪺㪿㫀㫃㫌㫊㩷㪹㪸㫉㪹㪸㫋㫌㫃㫌㫊
㪹㫆㫋㫀㪸 㪹㫆㫋㫀㪸 㪹㪸㫉㪹㪸㫋㫌㫃㪸 㪹㪸㫉㪹㪸㫋㫌㫃㪸 㪹㪸㫉㪹㪸㫋㫌㫃㪸 㪹㪸㫉㪹㪸㫋㫌㫃㪸 㪹㪸㫉㪹㪸㫋㫌㫃㪸 㪹㪸㫉㪹㪸㫋㫌㫃㪸 㫋㫆㫅㫀 㫋㫆㫅㫀 㫋㫆㫅㫀 㫋㫆㫅㫀 㪺㫆㫊㫋㪸㫋㪸 㪼㪺㪿㫀㪾㫆㫅㫀㪸 㪼㪺㪿㫀㪾㫆㫅㫀㪸 㫅㫀㫂㫂㫆㫅㫀㫊 㫅㫀㫂㫂㫆㫅㫀㫊 㫇㫌㫃㪺㪿㪼㫉 㫇㫌㫃㪺㪿㪼㫉 㫄㫆㫆㫉㪼㪿 㫊㪼㫃㪸㫅㪾㫆㫉㫀㪺㫌㫊 㫇㫆㫋㪸㫅㫀㫅㫀 㪽㪸㫊㪺㫀㫆㫃㪸㫋㪸 㪽㪸㫊㪺㫀㫆㫃㪸㫋㪸 㫀㫅㪺㪼㫉㫋㪸 㫇㫉㪸㫊㪿㪸㪻㫀 㫉㫌㫇㪼㪺㫌㫃㪸 㫊㪸㫍㫆㫅㪸 㫂㫌㫅㪾㪼㫊㫊㪸㫅㪸 㫊㫀㫃㫌㫉㫆㫀㪻㪼㫊 㫊㫋㫆㫃㫀㪺㫑㫂㪸㫀 㫊㫋㫉㪸㫌㪺㪿㫀㫀
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪘㪺㪸㫅㫋㪿㫆㪺㫆㪹㫀㫋㫀㫊 㪘㪺㪸㫅㫋㪿㫆㪺㫆㪹㫀㫋㫀㫊 㪙㪸㫉㪹㪸㫋㫌㫃㪸 㪙㪸㫉㪹㪸㫋㫌㫃㪸 㪙㪸㫉㪹㪸㫋㫌㫃㪸 㪙㪸㫉㪹㪸㫋㫌㫃㪸 㪙㪸㫉㪹㪸㫋㫌㫃㪸 㪙㪸㫉㪹㪸㫋㫌㫃㪸 㪙㪸㫉㪹㪸㫋㫌㫃㪸 㪙㪸㫉㪹㪸㫋㫌㫃㪸 㪙㪸㫉㪹㪸㫋㫌㫃㪸 㪙㪸㫉㪹㪸㫋㫌㫃㪸 㪣㪼㪽㫌㪸 㪣㪼㪽㫌㪸 㪣㪼㪽㫌㪸 㪣㪼㪽㫌㪸 㪣㪼㪽㫌㪸 㪤㫀㪺㫉㫆㫅㪼㫄㪸㪺㪿㪼㫀㫃㫌㫊 㪤㫀㪺㫉㫆㫅㪼㫄㪸㪺㪿㪼㫀㫃㫌㫊 㪥㪼㫄㪸㪺㪿㪼㫀㫃㫌㫊 㪥㪼㫄㪸㪺㪿㪼㫀㫃㫌㫊 㪧㪸㫉㪸㪺㫆㪹㫀㫋㫀㫊 㪪㪺㪿㫀㫊㫋㫌㫉㪸 㪪㪺㪿㫀㫊㫋㫌㫉㪸 㪪㪺㪿㫀㫊㫋㫌㫉㪸 㪪㪺㪿㫀㫊㫋㫌㫉㪸 㪪㪺㪿㫀㫊㫋㫌㫉㪸 㪪㪺㪿㫀㫊㫋㫌㫉㪸 㪫㫉㫀㫇㫃㫆㫇㪿㫐㫊㪸 㪫㫉㫀㫇㫃㫆㫇㪿㫐㫊㪸 㪫㫉㫀㫇㫃㫆㫇㪿㫐㫊㪸 㪫㫉㫀㫇㫃㫆㫇㪿㫐㫊㪸
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㫇㪼㫉㪽㪸㫄㫀㫃㫐㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷 㪙㪸㫃㫀㫋㫆㫉㫀㪻㪸㪼㩷㩿㪔㩷㪟㫆㫄㪸㫃㫆㫇㫋㪼㫉㫀㪻㪸㪼㪀 㩷㩷㪥㪼㫄㪸㪺㪿㪼㫀㫃㫀㫅㪸㪼
㪫㪸㪹㫃㪼㩷㪍㪅㪈㪈㩷㩷㪦㫉㪻㪼㫉㩷㪚㪰㪧㪩㪠㪥㪠㪝㪦㪩㪤㪜㪪㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀
77
R. Arai, Fish Karyotypes © Springer 2011
㪘㪹㫉㪸㫄㫀㫋㪼㫊 㪘㪹㫉㪸㫄㫀㫋㪼㫊 㪘㫅㫆㫊㫋㫆㫄㫌㫊 㪘㫅㫆㫊㫋㫆㫄㫌㫊 㪣㪼㫇㫆㫉㪼㫃㫃㫌㫊 㪣㪼㫇㫆㫉㫀㫅㫌㫊 㪣㪼㫇㫆㫉㫀㫅㫌㫊 㪣㪼㫇㫆㫉㫀㫅㫌㫊 㪣㪼㫇㫆㫉㫀㫅㫌㫊 㪣㪼㫇㫆㫉㫀㫅㫌㫊 㪣㪼㫇㫆㫉㫀㫅㫌㫊 㪣㪼㫇㫆㫉㫀㫅㫌㫊 㪣㪼㫇㫆㫉㫀㫅㫌㫊 㪣㪼㫇㫆㫉㫀㫅㫌㫊
㪘㫅㫆㫊㫋㫆㫄㫀㪻㪸㪼
㪘㫉㫅㫆㫃㪻㫀㪺㪿㫋㪿㫐㫊
㪘㫃㪼㫊㫋㫀㫀㪻㪸㪼
㪘㪺㪼㫊㫋㫉㫆㫉㪿㫐㫅㪺㪿㫌㫊 㪘㪺㪼㫊㫋㫉㫆㫉㪿㫐㫅㪺㪿㫌㫊 㪘㪺㪼㫊㫋㫉㫆㫉㪿㫐㫅㪺㪿㫌㫊
㪿㫐㫇㫊㪼㫃㫆㫅㫆㫋㫌㫊 㪿㫐㫇㫊㪼㫃㫆㫅㫆㫋㫌㫊 㪸㫅㫆㫊㫋㫆㫄㫌㫊 㪖 㫋㪼㫉㫅㪼㫋㫑㫀 㫍㫀㫋㫋㪸㫋㫌㫊 㪸㪺㫌㫋㫀㪻㪼㫅㫊 㪸㪽㪽㫀㫅㫀㫊 㪸㫄㪹㫃㫐㫉㪿㫐㫅㪺㪿㫌㫊 㪹㫉㫌㫅㫅㪼㫌㫊 㪺㫆㫅㫀㫉㫆㫊㫋㫉㫀㫊 㪺㫆㫅㫀㫉㫆㫊㫋㫉㫀㫊 㪺㫆㫇㪼㫃㪸㫅㪻㫀㫀 㪺㫐㫃㫀㫅㪻㫉㫀㪽㫆㫉㫄㫀㫊 㪻㪼㫊㫄㫆㫋㪼㫊
㫊㫇㫀㫃㫆㫇㫋㪼㫉㫌㫊
㪸㫃㫋㫌㫊 㫃㪸㪺㫌㫊㫋㫉㫀㫊 㫇㪸㫅㫋㪸㫅㪼㫀㫉㫆
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㪹㫆㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷 㪪㫌㪹㫆㫉㪻㪼㫉㩷㪚㪿㪸㫉㪸㪺㫆㫀㪻㪼㫀 㪘㪺㪼㫊㫋㫉㫆㫉㪿㫐㫅㪺㪿㫀㪻㪸㪼
㪫㪸㪹㫃㪼㩷㪍㪅㪈㪉㩷㩷㪦㫉㪻㪼㫉㩷㪚㪟㪘㪩㪘㪚㪠㪝㪦㪩㪤㪜㪪㩷
㫊㫆㫃㪸㫉㫀㫀 㪸㫅㫆㫊㫋㫆㫄㫌㫊
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪌㪋㩷㪤㪆㪪㪤
㪉㪍㪤㩷㪂㩷㪉㪏㪪㪤
㪌㪋 㪌㪋
㪉㪍㪤㩷㪂㩷㪉㪏㪪㪤
㪌㪋 㪝
㪌㪉㩷㪤㪆㪪㪤㩷㪂㩷㪉㪪㪤㩷
㪌㪋
㪤
㪌㪋㩷㪤㪆㪪㪤
㪌㪋
㪌㪉㩷㪤㪆㪪㪤㩷㪂㩷㪈㪪㪤㩷㪂㩷㪈㪪㪫
㪌㪋㩷㪤㪆㪪㪤
㪌㪋 㪌㪋
㪌㪋㩷㪤㪆㪪㪤
㪌㪋
㪝
㪉㪏㪤㩷㪂㩷㪉㪍㪪㪤
㪌㪋
㪌㪋㩷㪤㪆㪪㪤 㪊㪇㪤㩷㪂㩷㪉㪋㪪㪤
㪌㪋 㪌㪋
㪌㪋㩷㪤㪆㪪㪤
㪌㪋 㪝㪃㩷㪤
㪌㪋㩷㪤㪆㪪㪤
㪊㪇㪤㩷㪂㩷㪉㪉㪪㪤㩷㪂㩷㪉㪪㪫
㪌㪋
㪌㪋
㪝㪃㩷㪤
㪝㪃㩷㪤
㪊㪍㩷㪤㪆㪪㪤㩷㪂㩷㪈㪋㩷㪪㪫㪆㪘
㪌㪇
㪌㪍
㪈㪉㪤㩷㪂㩷㪊㪉㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪉㪘
㪌㪇 㪌㪇
㪏㪤㩷㪂㩷㪉㪉㪪㪤㩷㪂㩷㪈㪋㪪㪫㩷㪂㩷㪍㪘
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪝
㪛 㪉㫅
㪝㪃㩷㪤
㪚 㪪㪼㫏
㪈㪇㪏
㪈㪇㪏
㪈 㪇㪏
㪈㪇㪏
㪈㪇㪎
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇 㪏
㪈㪇㪍
㪏㪍
㪐㪋
㪏㪇
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪐㪏
㪐㪋
㪉
㪉
㪉
㪉
㪉
㪉 㪉㪅㪏㩷㪙㪝㪘
㪉㪅㪋㩷㪙㪝㪘
㪈㪅㪎㩷㪝㪛
㪝 㪞 㪟 㪠 㪥㪝㪈 㪥㪝㪉 㪘㪾㪄 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㪥㪦㪩㫊 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪘㪚㪥㪔㪌㪍
㪱㪱㪃㩷㪘㪚㪥㪔㪌㪋
㪱㪮㪃㩷㪘㪚㪥㪔㪌㪋
㪘㪚㪥㪔㪌㪍
㪘㪚㪥㪔㪌㪍
㪘㪚㪥㪔㪌㪍
㪘㪚㪥㪔㪌㪉
㪘㪚㪥㪔㪌㪉
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪙㫉㪸㫑㫀㫃㩷㩿㪫㪦㪀
㩿㪙㫉㪸㫑㫀㫃㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㩿㪙㫉㪸㫑㫀㫃㪃㩷㪭㪼㫅㪼㫑㫌㪼㫃㪸㪀
㩿㪪㪅㩷㪘㫄㪼㫉㫀㪺㪸㪀
㩿㪙㫉㪸㫑㫀㫃㪀
㪘㫉㪾㪼㫅㫋㫀㫅㪸
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪘㪤㪀
㩿㪪㪅㩷㪘㫄㪼㫉㫀㪺㪸㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪘㪤㪀
㪘㫉㪾㪼㫅㫋㫀㫅㪸
㩿㪘㪽㫉㫀㪺㪸㪀
㪘㫉㪾㪼㫅㫋㫀㫅㪸
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪪㪀
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪤㪄㪈㪌㪌
㪘㪄㪐㪉
㪙㪄㪊㪉
㪞㪄㪈㪇
㪞㪄㪈㪇
㪘㪄㪐㪉
㪘㪄㪐㪉
㪧㪄㪏㪏
㪝㪄㪉㪇
㪞㪄㪉㪃㩷㪞㪄㪋
㪤㪄㪋㪋㪃㩷㪦㪄㪌㪇
㪦㪄㪉㪉㪃㩷㪟㪄㪈㪊
㪤㪄㪋㪋
㪝㪄㪉㪇㪃㩷㪦㪄㪌㪇
㪟㪄㪈㪊
㪝㪄㪉㪇㪃㩷㪚㪄㪐㪋
㪝㪄㪉
㪝㪄㪉
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
78
㪣㪼㫇㫆㫉㫀㫅㫌㫊 㪣㪼㫇㫆㫉㫀㫅㫌㫊 㪣㪼㫇㫆㫉㫀㫅㫌㫊 㪣㪼㫇㫆㫉㫀㫅㫌㫊 㪣㪼㫇㫆㫉㫀㫅㫌㫊 㪣㪼㫇㫆㫉㫀㫅㫌㫊 㪣㪼㫇㫆㫉㫀㫅㫌㫊 㪣㪼㫇㫆㫉㫀㫅㫌㫊 㪣㪼㫇㫆㫉㫀㫅㫌㫊 㪣㪼㫇㫆㫉㫀㫅㫌㫊 㪣㪼㫇㫆㫉㫀㫅㫌㫊 㪣㪼㫇㫆㫉㫀㫅㫌㫊 㪣㪼㫇㫆㫉㫀㫅㫌㫊 㪣㪼㫇㫆㫉㫀㫅㫌㫊 㪣㪼㫇㫆㫉㫀㫅㫌㫊 㪣㪼㫇㫆㫉㫀㫅㫌㫊 㪣㪼㫇㫆㫉㫀㫅㫌㫊 㪣㪼㫇㫆㫉㫀㫅㫌㫊 㪣㪼㫇㫆㫉㫀㫅㫌㫊 㪣㪼㫇㫆㫉㫀㫅㫌㫊 㪣㪼㫇㫆㫉㫀㫅㫌㫊 㪣㪼㫇㫆㫉㫀㫅㫌㫊 㪣㪼㫇㫆㫉㫀㫅㫌㫊 㪣㪼㫇㫆㫉㫀㫅㫌㫊 㪣㪼㫇㫆㫉㫀㫅㫌㫊 㪣㪼㫇㫆㫉㫀㫅㫌㫊 㪣㪼㫇㫆㫉㫀㫅㫌㫊 㪣㪼㫇㫆㫉㫀㫅㫌㫊 㪣㪼㫇㫆㫉㫀㫅㫌㫊 㪣㪼㫇㫆㫉㫀㫅㫌㫊 㪣㪼㫇㫆㫉㫀㫅㫌㫊 㪣㪼㫇㫆㫉㫀㫅㫌㫊 㪣㪼㫇㫆㫉㫀㫅㫌㫊 㪣㪼㫇㫆㫉㫀㫅㫌㫊 㪣㪼㫇㫆㫉㫀㫅㫌㫊
㫊㫇㩷㪉 㫊㫇㩷㪉
㪼㫃㫆㫅㪾㪸㫋㫌㫊 㪼㫃㫆㫅㪾㪸㫋㫌㫊 㪼㫃㫆㫅㪾㪸㫋㫌㫊 㪼㫃㫆㫅㪾㪸㫋㫌㫊 㪺㪽㪅㩷㪼㫃㫆㫅㪾㪸㫋㫌㫊 㪺㪽㪅㩷㪼㫃㫆㫅㪾㪸㫋㫌㫊 㪺㪽㪅㩷㪼㫃㫆㫅㪾㪸㫋㫌㫊 㪽㪸㫊㪺㫀㪸㫋㫌㫊 㪽㫉㫀㪻㪼㫉㫀㪺㫀 㪽㫉㫀㪻㪼㫉㫀㪺㫀 㪸㪽㪽㪅㩷㪿㫆㫃㫆㫊㫋㫀㪺㫋㫌㫊 㫃㪸㪺㫌㫊㫋㫉㫀㫊 㫃㪸㪺㫌㫊㫋㫉㫀㫊 㫄㪸㪺㫉㫆㪺㪼㫇㪿㪸㫃㫌㫊 㫄㪸㪺㫉㫆㪺㪼㫇㪿㪸㫃㫌㫊 㪸㪽㪽㪅㩷㫄㪸㪺㫌㫃㪸㫋㫌㫊 㫆㪹㫋㫌㫊㫀㪻㪼㫅㫊 㫆㪹㫋㫌㫊㫀㪻㪼㫅㫊 㫆㪹㫋㫌㫊㫀㪻㪼㫅㫊 㫆㪹㫋㫌㫊㫀㪻㪼㫅㫊 㫆㪺㫋㫆㪽㪸㫊㪺㫀㪸㫋㫌㫊 㫆㫉㫋㫆㫄㪸㪺㫌㫃㪸㫋㫌㫊 㫇㫀㪸㫌 㫉㪼㫀㫅㪿㪸㫉㪻㫋㫀 㫉㪼㫀㫅㪿㪸㫉㪻㫋㫀 㫊㫋㫉㫀㪸㫋㫌㫊 㫊㫋㫉㫀㪸㫋㫌㫊 㫋㪸㪼㫅㫀㪸㫋㫌㫊 㫋㫀㪾㫉㫀㫅㫌㫊 㫋㫉㫀㪽㪸㫊㪺㫀㪸㫋㫌㫊 㫋㫉㫀㪽㪸㫊㪺㫀㪸㫋㫌㫊 㫋㫉㫀㪽㪸㫊㪺㫀㪸㫋㫌㫊 㫋㫉㫀㪽㪸㫊㪺㫀㪸㫋㫌㫊
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㪹㫆㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷
㫊㫀㫃㫍㪼㫊㫋㫉㫀㫀 㫊㫀㫃㫍㪼㫊㫋㫉㫀㫀
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪫㪸㪹㫃㪼㩷㪍㪅㪈㪉㩷㩷㪦㫉㪻㪼㫉㩷㪚㪟㪘㪩㪘㪚㪠㪝㪦㪩㪤㪜㪪㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀
㪌㪋 㪏㪈
㪤
㪌㪋㩷㪤㪆㪪㪤 㪊㪉㪤㩷㪂㩷㪉㪉㪪㪤 㪌㪋㩷㪤㪆㪪㪤 㪊㪉㪤㩷㪂㩷㪉㪉㪪㪤 㪊㪉㪤㩷㪂㩷㪉㪈㪪㪤㩷㪂㩷㪈㪪㪫 㪊㪉㪤㩷㪂㩷㪉㪉㪪㪤 㪉㪏㪤㩷㪂㩷㪉㪍㪪㪤
㪌㪋 㪌㪋 㪌㪋 㪌㪋 㪌㪋 㪌㪋 㪌㪋
㪤 㪝㪃㩷㪤
㪝 㪤
㪌㪋 㪌㪋
㪝
㪌㪋 㪌㪋
㪝 㪤 㪤
㪉㪉㪤㩷㪂㩷㪊㪈㪪㪤㩷㪂㩷㪈㪪㪫
㪌㪋
㪤
㪉㪍㪤㩷㪂㩷㪉㪏㪪㪤
㪉㪍㪤㩷㪂㩷㪉㪏㪪㪤
㪉㪉㪤㩷㪂㩷㪊㪉㪪㪤㩷
㪌㪋㩷㪤㪆㪪㪤
㪌㪋
㪌㪊㩷㪤㪆㪪㪤㩷㪂㩷㪈㪪㪫
㪊㪋㪤㩷㪂㩷㪉㪇㪪㪤㩷
㪌㪋 㪌㪋
㪉㪏㪤㩷㪂㩷㪉㪍㪪㪤
㪌㪋
㪝
㪝㪃㩷㪤
㪌㪊㩷㪤㪆㪪㪤㩷㪂㩷㪈㪪㪫
㪌㪋
㪝
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪎
㪈㪇㪏
㪈㪇㪎
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪎
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪎
㪈㪇㪏
㪈㪇㪎
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪈㪄㪌
㪉
㪊
㪉
㪉
㪉
㪉
㪉
㪉
㩿㪉㪅㪏㩷㪝㪛㪀
㩿㪉㪅㪍㩷㪝㪛㪀
㩿㪉㪅㪐㩷㪝㪛㪀
㩿㪉㪅㪐㩷㪝㪛㪀
㪪㪅㩷㪘㫄㪼㫉㫀㪺㪸
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㩿㪪㪅㩷㪘㫄㪼㫉㫀㪺㪸㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪞㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪞㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪞㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪊㪅㪈㩷㪝㪛㪃㩷㪊㪅㪋㩷㪙㪝㪘
㪉㪅㪐㪃㩷㪊㪅㪈㩷㪝㪛
㪉㪅㪐㩷㪝㪛
㪊㪅㪌㩷㪝㪛
㪱㪱㪃㩷㪘㪚㪥㪔㪌㪍
㪱㪮㪃㩷㪘㪚㪥㪔㪌㪍
㪱㪱㪃㩷㪘㪚㪥㪔㪌㪍
㪱㪮㪃㩷㪘㪚㪥㪔㪌㪍
㪱㪱
㪱㪮
㪘㪚㪥㪔㪌㪍
㪱㪱㪃㩷㪘㪚㪥㪔㪌㪍
㪱㪮㪃㩷㪘㪚㪥㪔㪌㪍
㪘㪚㪥㪔㪌㪍
㪱㪱㪃㩷㪘㪚㪥㪔㪌㪍
㪱㪮㪃㩷㪘㪚㪥㪔㪌㪍
㪱㪱
㪱㪮
㪱㪱
㪱㪮
㪙㫉㪸㫑㫀㫃
㪙㫉㪸㫑㫀㫃
㪘㫉㪾㪼㫅㫋㫀㫅㪸
㪯㪯㪆㪯㪰㪃㩷㪘㪚㪥㪔㪌㪍 㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪘㪚㪥㪔㪌㪍
㪇㪄㪈㩷㪙㪃㩷㪘㪚㪥㪔㪌㪍
㪊㪯㪃㩷㪱㪱㪱
㪱㪱
㪱㪮
㪱㪱㪃㩷㪘㪚㪥㪔㪌㪍
㪱㪮
㪱㪱㪃㩷㪘㪚㪥㪔㪌㪍
㪱㪮㪃㩷㪘㪚㪥㪔㪌㪍
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪙㫉㪸㫑㫀㫃㩷㩿㪘㫄㪸㫑㫆㫅㩷㪹㪸㫊㫀㫅㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪘㫄㪸㫑㫆㫅㩷㪹㪸㫊㫀㫅㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪘㫄㪸㫑㫆㫅㩷㪹㪸㫊㫀㫅㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪘㫄㪸㫑㫆㫅㩷㪹㪸㫊㫀㫅㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪩㪦㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪩㪦㪀
㩿㪙㫉㪸㫑㫀㫃㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪞㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪘㫉㪾㪼㫅㫋㫀㫅㪸
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪞㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪞㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪞㪀
㩿㪙㫉㪸㫑㫀㫃㪃㩷㪭㪼㫅㪼㫑㫌㪼㫃㪸㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀㪃㩷㪘㫉㪾㪼㫅㫋㫀㫅㪸
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀㪃㩷㪘㫉㪾㪼㫅㫋㫀㫅㪸
㪉㪍㪤㩷㪂㩷㪉㪏㪪㪤
㪌㪋 㪌㪋
㪝 㪤
㪉㪍㪤㩷㪂㩷㪉㪎㪪㪤㩷㪂㩷㪈㪪㪫
㪊㪉㪤㩷㪂㩷㪉㪉㪪㪤
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪪㪅㩷㪘㫄㪼㫉㫀㪺㪸
㪌㪋
㪈㪇㪎
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪎
㪈㪇㪏
㪈㪇㪎
㪈㪇㪏
㪈㪇㪎
㪝 㪞 㪟 㪠 㪥㪝㪈 㪥㪝㪉 㪘㪾㪄 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㪥㪦㪩㫊 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪌㪋
㪤
㪊㪉㪤㩷㪂㩷㪉㪈㪪㪤㩷㪂㩷㪈㪪㪫
㪊㪇㪤㩷㪂㩷㪉㪋㪪㪤
㪌㪋
㪌㪋㩷㪤㪆㪪㪤
㪌㪋
㪌㪋㩷㪤㪆㪪㪤
㪊㪉㪤㩷㪂㩷㪉㪉㪪㪤
㪌㪋㩷㪤㪆㪪㪤
㪌㪋
㪝
㪝㪃㩷㪤
㪌㪋
㪌㪋 㪌㪋
㪝㪃㩷㪤 㪝㪃㩷㪤
㪌㪋
㪉㪍㪤㩷㪂㩷㪉㪎㪪㪤㩷㪂㩷㪈㪪㪫
㪌㪋
㪝 㪤
㪉㪍㪤㩷㪂㩷㪉㪏㪪㪤
㪉㪍㪤㩷㪂㩷㪉㪏㪪㪤
㪌㪋
㪤
㪉㪌㪤㩷㪂㩷㪉㪏㪪㪤㩷㪂㩷㪈㪪㪫
㪌㪋㩷㪤㪆㪪㪤
㪌㪊㩷㪤㪆㪪㪤㩷㪂㩷㪈㪪㪫
㪌㪋
㪌㪋
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪝
㪌㪋
㪝
㪛 㪉㫅
㪤
㪚 㪪㪼㫏
㪭㪄㪈㪇㪐㩷
㪭㪄㪈㪇㪐㩷
㪭㪄㪈㪇㪐㩷
㪭㪄㪈㪇㪐㪃㩷㪢㪄㪈㪊㪌
㪞㪄㪈㪇
㪞㪄㪈㪇
㪧㪄㪏㪏
㪙㪄㪊㪉
㪞㪄㪉㪃㩷㪞㪄㪋㪃㩷㪚㪄㪐㪊㪃㩷㪟㪄㪈㪊
㪝㪄㪉㪇
㪙㪄㪊㪉㪃㩷㪞㪄㪐㪈㪃㩷㪚㪄㪐㪋㪃㩷㪤㪄㪎㪎
㪙㪄㪊㪉㪃㩷㪞㪄㪌㪃㩷㪞㪄㪐㪈㪃㩷㪤㪄㪎㪎
㪙㪄㪊㪉㪃㩷㪚㪄㪐㪋
㪘㪄㪐㪉
㪞㪄㪉㪃㩷㪞㪄㪋㪃㩷㪚㪄㪐㪊
㪢㪄㪈㪊㪌㪃㩷㪤㪄㪎㪎
㪢㪄㪈㪊㪌㪃㩷㪤㪄㪎㪎
㪞㪄㪊㪃㩷㪝㪄㪉㪇
㪞㪄㪊㪃㩷㪞㪄㪋㪃㩷㪞㪄㪌㪃㩷㪝㪄㪉㪇㪃㩷㪚㪄㪐㪊
㪦㪄㪌㪇
㪞㪄㪐㪈
㪞㪄㪐㪈㪃㩷㪟㪄㪋㪉
㪝㪄㪉㪇
㪞㪄㪊㪃㩷㪞㪄㪋㪃㩷㪤㪄㪈㪌㪉
㪦㪄㪌㪇
㪞㪄㪐㪋㪃㩷㪢㪄㪈㪊㪌㩷
㪞㪄㪉㪃㩷㪞㪄㪋㪃㩷㪚㪄㪐㪊㪃㩷㪭㪄㪐㪋
㪦㪄㪉㪉
㪤㪄㪈㪌㪊
㪤㪄㪎㪎㪃㩷㪚㪄㪐㪋
㪤㪄㪎㪎㪃㩷㪚㪄㪐㪋
㪞㪄㪊㪃㩷㪞㪄㪋㩷
㪞㪄㪊㪃㩷㪞㪄㪋㪃㩷㪞㪄㪌
㪢㪄㪈㪊㪌㪃㩷㪤㪄㪎㪎
㪢㪄㪈㪊㪌㪃㩷㪤㪄㪎㪎
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
79
㪙㫉㫐㪺㫆㫅 㪙㫉㫐㪺㫆㫅 㪙㫉㫐㪺㫆㫅 㪙㫉㫐㪺㫆㫅 㪙㫉㫐㪺㫆㫅 㪙㫉㫐㪺㫆㫅 㪙㫉㫐㪺㫆㫅 㪙㫉㫐㪺㫆㫅 㪙㫉㫐㪺㫆㫅 㪙㫉㫐㪺㫆㫅
㩷㩷㪙㫉㫐㪺㫆㫅㫀㫅㪸㪼
㪘㫇㪿㫐㫆㪺㪿㪸㫉㪸㫏 㪘㫇㪿㫐㫆㪺㪿㪸㫉㪸㫏 㪘㫇㪿㫐㫆㪺㪿㪸㫉㪸㫏 㪠㫅㫇㪸㫀㪺㪿㫋㪿㫐㫊
㪚㪿㪸㫉㪸㪺㫀㪻㪸㪼 㩷㩷㪘㫇㪿㫐㫆㪺㪿㪸㫉㪸㪺㫀㫅㪸㪼
㪧㫊㪼㫌㪻㪸㫅㫆㫊 㪩㪿㫐㫋㫀㫆㪻㫌㫊 㪪㪺㪿㫀㫑㫆㪻㫆㫅 㪪㪺㪿㫀㫑㫆㪻㫆㫅 㪪㪺㪿㫀㫑㫆㪻㫆㫅 㪪㪺㪿㫀㫑㫆㪻㫆㫅 㪪㪺㪿㫀㫑㫆㪻㫆㫅 㪪㪺㪿㫀㫑㫆㪻㫆㫅 㪪㪺㪿㫀㫑㫆㪻㫆㫅 㪪㪺㪿㫀㫑㫆㪻㫆㫅 㪪㪺㪿㫀㫑㫆㪻㫆㫅 㪪㪺㪿㫀㫑㫆㪻㫆㫅 㪪㪺㪿㫀㫑㫆㪻㫆㫅 㪪㪺㪿㫀㫑㫆㪻㫆㫅 㪪㪺㪿㫀㫑㫆㪻㫆㫅
㪺㪼㫇㪿㪸㫃㫌㫊 㪺㪽㪅㩷㪺㪼㫇㪿㪸㫃㫌㫊 㪺㪽㪅㩷㪺㪼㫇㪿㪸㫃㫌㫊 㪺㪽㪅㩷㪺㪼㫇㪿㪸㫃㫌㫊 㪽㪸㫃㪺㪸㫋㫌㫊 㪿㫀㫃㪸㫉㫀㫀 㫀㫅㫊㫀㪾㫅㫀㫊 㫀㫅㫊㫀㪾㫅㫀㫊 㪺㪽㪅㩷㫅㪸㫋㫋㪼㫉㪼㫉㫀 㫆㫉㪹㫀㪾㫅㫐㪸㫅㫌㫊
㪸㫃㪹㫌㫉㫅㫌㫊 㪸㫅㫀㫊㫀㫋㫊㫀 㪻㪼㫅㫋㪸㫋㫌㫊 㫂㪼㫉㫉㫀
㫋㫉㫀㫄㪸㪺㫌㫃㪸㫋㫌㫊 㫄㫀㪺㫉㫆㫃㪼㫇㫀㫊 㪸㫃㫋㫆㫇㪸㫉㪸㫅㪸㪼 㪹㫆㫉㪼㫃㫃㫀㫀 㪹㫆㫉㪼㫃㫃㫀㫀 㪹㫆㫉㪼㫃㫃㫀㫀 㪽㪸㫊㪺㫀㪸㫋㫌㫊 㪽㪸㫊㪺㫀㪸㫋㫌㫊 㫀㫅㫋㪼㫉㫄㪼㪻㫀㫌㫊 㫀㫊㫆㪾㫅㪸㫋㪿㫌㫊 㫂㫅㪼㫉㫀㫀 㫅㪸㫊㫌㫋㫌㫊 㫅㪸㫊㫌㫋㫌㫊 㫇㫃㪸㫋㪸㪼 㫍㫀㫋㫋㪸㫋㫌㫊
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㪹㫆㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷 㪣㪼㫇㫆㫉㫀㫅㫌㫊 㫊㫇 㪣㪼㫇㫆㫉㫀㫅㫌㫊 㫊㫇
㪉㪏㪤㩷㪂㩷㪉㪍㪪㪤
㪌㪋
㪌㪋㩷㪤㪆㪪㪤 㪌㪋㩷㪤㪆㪪㪤
㪌㪋 㪌㪋
㪺㪽㪅㩷㫉㪼㫀㫅㪿㪸㫉㪻㫋㫀㫀
㪌㪇 㪌㪇
㪤
㪌㪇
㪝㪃㩷㪤 㪝㪃㩷㪤
㪌㪇 㪌㪇
㪝㪃㩷㪤 㪝㪃㩷㪤
㪌㪇
㪝㪃㩷㪤
㪹㫉㪼㫍㫀㪺㪸㫌㪻㪸 㫄㫀㪺㫉㫆㫃㪼㫇㫀㫊
㪉㪇㪤㩷㪂㩷㪉㪉㪪㪤㩷㪂㩷㪏㪪㪫
㪌㪇
㪉㪋㪤㩷㪂㩷㪉㪉㪪㪤㩷㪂㩷㪋㪪㪫
㪉㪉㪤㩷㪂㩷㪉㪏㩷㪪㪤㪆㪪㪫
㪉㪍㪤㩷㪂㩷㪉㪋㩷㪪㪤㪆㪪㪫
㪉㪉㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪏㪪㪫
㪉㪇㪤㩷㪂㩷㪉㪋㪪㪤㩷㪂㩷㪍㪪㪫
㪉㪇㪤㩷㪂㩷㪉㪋㪪㪤㩷㪂㩷㪍㪪㪫
㪉㪇㪤㩷㪂㩷㪉㪉㪪㪤㩷㪂㩷㪏㪪㪫
㪌㪇 㪌㪇
㪉㪋㪤㩷㪂㩷㪉㪍㩷㪪㪤㪆㪪㪫
㪌㪇
㪉㪋㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪍㪪㪫
㪈㪉㪤㩷㪂㩷㪉㪍㪪㪤㩷㪂㩷㪈㪋㪪㪫
㪝㪃㩷㪤
㪌㪉
㪤 㪝㪃㩷㪤
㪌㪇
㪌㪇㪁 㪉㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪋㪋㪘
㪊㪉㪤㩷㪂㩷㪉㪉㪪㪤
㪌㪋
㪌㪇㪁
㪊㪉㪤㩷㪂㩷㪉㪉㪪㪤
㪌㪋㩷㪤㪆㪪㪤
㪌㪋 㪌㪋
㪌㪋㩷㪤㪆㪪㪤
㪌㪋
㪌㪋㩷㪤㪆㪪㪤
㪌㪋㩷㪤㪆㪪㪤
㪌㪋 㪌㪋
㪌㪋㩷㪤㪆㪪㪤
㪌㪋
㪝㪃㩷㪤
㪝㪃㩷㪤
㪝㪃㩷㪤
㪝㪃㩷㪤
㪐㪍
㪐㪉
㪐㪋
㪐㪋
㪐㪉
㪐㪉
㪐㪋
㪐㪇
㪌㪋
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪇
㪈㪇㪇
㪈㪇㪇
㪈㪇㪇
㪈㪇㪇
㪈㪇㪇
㪈㪇㪇
㪈㪇㪇
㪈㪇㪇
㪈㪇㪇
㪈㪇㪋
㪌㪍
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏 㩿㪊㪅㪇㩷㪝㪛㪀
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪋
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉㪅㪋㩷㪝㪛
㩿㪉㪅㪌㩷㪝㪛㪀
㪉㪅㪎㩷㪝㪛㪃㩷㪊㪅㪋㩷㪙㪝㪘
㪊㪅㪈㩷㪝㪛
㪉㪅㪐㩷㪝㪛
㪘㪚㪥㪔㪌㪉
㪘㪚㪥㪔㪌㪉
㪘㪚㪥㪔㪌㪉
㪘㪚㪥㪔㪌㪉
㪘㪚㪥㪔㪌㪉
㪘㪚㪥㪔㪌㪉
㪘㪚㪥㪔㪌㪉
㪘㪚㪥㪔㪌㪉
㪘㪚㪥㪔㪌㪋
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪍
㪇㪄㪈㩷㪙
㪘㪚㪥㪔㪌㪍
㪘㪚㪥㪔㪌㪍
㪘㪚㪥㪔㪌㪍
㪘㪚㪥㪔㪌㪍
㪘㪚㪥㪔㪌㪍
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪩㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪫㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪫㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪘㪤㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪘㪤㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪘㪤㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪘㪤㪀
㩿㪙㫉㪸㫑㫀㫃㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪸㫉㪸㫅㪸㩷㪩㪅㪀
㩿㪪㪅㩷㪘㫄㪼㫉㫀㪺㪸㪀
㩿㪪㪅㩷㪘㫄㪼㫉㫀㪺㪸㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪫㪀
㪘㫉㪾㪼㫅㫋㫀㫅㪸
㪘㫉㪾㪼㫅㫋㫀㫅㪸
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪞㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪸㫉㪸㪾㫌㪸㫐㩷㪩㪅㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃
㪙㫉㪸㫑㫀㫃
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪸㫉㪸㪾㫌㪸㫐㩷㪩㪅㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪘㫉㪾㪼㫅㫋㫀㫅㪸
㪊㪉㪤㩷㪂㩷㪉㪉㪪㪤
㪈㪇㪏
㪌㪋㩷㪤㪆㪪㪤
㪘㪚㪥㪔㪌㪍
㪌㪋
㪉
㪙㫉㪸㫑㫀㫃㩷㩿㪘㪤㪀
㪌㪋
㪈㪇㪏
㪘㪚㪥㪔㪌㪍
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪪㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪪㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪈㪇㪏
㪉
㪱㪱㪃㩷㪘㪚㪥㪔㪌㪍
㪱㪮㪃㩷㪘㪚㪥㪔㪌㪍
㪌㪋㩷㪤㪆㪪㪤
㪈㪇㪏
㪉
㪉
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪌㪋
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪙㫉㪸㫑㫀㫃㩷㩿㪘㪤㪀
㪌㪋㩷㪤㪆㪪㪤
㪈㪇㪏
㪈㪇㪎
㪝 㪞 㪟 㪠 㪥㪝㪈 㪥㪝㪉 㪘㪾㪄 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㪥㪦㪩㫊 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪌㪋
㪌㪋
㪌㪋
㪝㪃㩷㪤
㪊㪉㪤㩷㪂㩷㪉㪈㪪㪤㩷㪂㩷㪈㪪㪫
㪌㪋
㪝 㪤
㪊㪉㪤㩷㪂㩷㪉㪉㪪㪤
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪛 㪉㫅
㪚 㪪㪼㫏
㪺㪽㪅㩷㪼㫉㫐㫋㪿㫉㫆㫇㫋㪼㫉㫌㫄
㫉㫌㪹㫉㫆㫇㫀㫅㫅㫀㫊 㪻㫀㪽㪽㫀㪺㫀㫃㫀㫊
㫀㫊㫆㪾㫅㪸㫋㪿㫌㫄
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪫㪸㪹㫃㪼㩷㪍㪅㪈㪉㩷㩷㪦㫉㪻㪼㫉㩷㪚㪟㪘㪩㪘㪚㪠㪝㪦㪩㪤㪜㪪㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷
㪤㪄㪊㪎
㪘㪄㪉㪉
㪘㪄㪉㪉
㪤㪄㪊㪎
㪤㪄㪊㪎㪃㩷㪤㪄㪈㪌㪈㪃㩷㪚㪄㪐㪋
㪤㪄㪊㪎
㪧㪄㪏㪏
㪧㪄㪏㪏
㪘㪄㪉㪉
㪤㪄㪊㪎
㪘㪄㪐㪈
㪪㪄㪐㪏㪃㩷㪚㪄㪐㪋
㪪㪄㪉㪐㪃㩷㪚㪄㪐㪋㪃㩷㪟㪄㪈㪊
㪪㪄㪉㪐
㪤㪄㪋㪊
㪝㪄㪉㪇
㪧㪄㪏㪈㪃㩷㪤㪄㪋㪊㪃㩷㪝㪄㪉㪇㪃㩷㪚㪄㪐㪏
㪞㪄㪉㪃㩷㪞㪄㪋㪃㩷㪤㪄㪋㪊㪃㩷㪚㪄㪐㪊
㪤㪄㪋㪊
㪤㪄㪈㪌㪋
㪤㪄㪋㪊㪃㩷㪚㪄㪐㪊
㪧㪄㪏㪏
㪦㪄㪌㪇
㪤㪄㪈㪌㪋
㪙㪄㪊㪉㪃㩷㪚㪄㪐㪋
㪝㪄㪉㪇
㪤㪄㪋㪊
㪙㪄㪊㪉
㪤㪄㪋㪋
㪞㪄㪐㪈
㪞㪄㪐㪈㪃㩷㪢㪄㪈㪊㪌
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
80
㪚㪿㪼㫀㫉㫆㪻㫆㫅 㪞㫉㫌㫅㪻㫌㫃㫌㫊 㪤㫀㪺㫉㫆㫊㪺㪿㪼㫄㫆㪹㫉㫐㪺㫆㫅 㪥㪼㫄㪸㫋㫆㪹㫉㫐㪺㫆㫅 㪥㪼㫄㪸㫋㫆㪹㫉㫐㪺㫆㫅 㪦㪻㫆㫅㫋㫆㫊㫋㫀㫃㪹㪼 㪦㪻㫆㫅㫋㫆㫊㫋㫀㫃㪹㪼 㪦㪻㫆㫅㫋㫆㫊㫋㫀㫃㪹㪼
㩷㩷㪚㪿㪼㫀㫉㫆㪻㫆㫅㫋㫀㫅㪸㪼
㪚㪿㪸㫉㪸㫏 㪚㪿㪸㫉㪸㫏 㪚㫐㫅㫆㫇㫆㫋㪸㫄㫌㫊 㪜㫏㫆㪻㫆㫅 㪜㫏㫆㪻㫆㫅 㪞㪸㫃㪼㫆㪺㪿㪸㫉㪸㫏 㪞㪸㫃㪼㫆㪺㪿㪸㫉㪸㫏 㪞㪸㫃㪼㫆㪺㪿㪸㫉㪸㫏 㪧㪿㪼㫅㪸㪺㫆㪾㪸㫊㫋㪼㫉 㪧㪿㪼㫅㪸㪺㫆㪾㪸㫊㫋㪼㫉 㪧㪿㪼㫅㪸㪺㫆㪾㪸㫊㫋㪼㫉 㪩㫆㪼㪹㫆㫀㪻㪼㫊 㪩㫆㪼㪹㫆㫀㪻㪼㫊 㪩㫆㪼㪹㫆㫀㪻㪼㫊 㪩㫆㪼㪹㫆㫀㪻㪼㫊
㩷㩷㪚㪿㪸㫉㪸㪺㫀㫅㪸㪼
㪚㪿㪸㫃㪺㪼㫌㫊 㪚㪿㪸㫃㪺㪼㫌㫊
㩷㩷㪚㪿㪸㫃㪺㪼㫀㫅㪸㪼
㪙㫉㫐㪺㫆㫅 㪙㫉㫐㪺㫆㫅 㪙㫉㫐㪺㫆㫅 㪙㫉㫐㪺㫆㫅 㪪㪸㫃㫄㫀㫅㫌㫊 㪪㪸㫃㫄㫀㫅㫌㫊 㪪㪸㫃㫄㫀㫅㫌㫊
㪝㪃㩷㪤 㪝㪃㩷㪤
㫊㫇㪅
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪃㩷㪤㪞㪀
㪘㫉㪾㪼㫅㫋㫀㫅㪸
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪫㪀
㩿㪪㪅㩷㪘㫄㪼㫉㫀㪺㪸㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪫㪀
㪘㫉㪾㪼㫅㫋㫀㫅㪸
㪙㫉㪸㫑㫀㫃㩷㩿㪘㪺㫉㪼㪀
㩿㪪㪅㩷㪘㫄㪼㫉㫀㪺㪸㪀
㩿㪪㪅㩷㪘㫄㪼㫉㫀㪺㪸㪀
㩿㪪㪅㩷㪘㫄㪼㫉㫀㪺㪸㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪌㪉 㪌㪉
㪤
㪌㪉
㪌㪇
㪊㪍㩷㪤㪆㪪㪤㩷㪂㩷㪈㪉㪪㪫㩷㪂㩷㪋㪘
㪊㪍㩷㪤㪆㪪㪤㩷㪂㩷㪈㪊㪪㪫㩷㪂㩷㪊㪘㩷
㪏㩷㪤㪆㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪊㪉㪘
㪏㪏
㪏㪏
㪌㪏
㪈㪇㪇
㪈㪇㪈
㪍㪏
㪈㪇㪇
㪐㪇
㪈㪇㪇
㪉
㪉
㪉
㪱㪱㪃㩷㪘㪚㪥㪔㪌㪉
㪱㪮㪃㩷㪘㪚㪥㪔㪌㪉
㪘㪚㪥㪔㪌㪉
㪘㪚㪥㪔㪌㪉
㪘㪚㪥㪔㪌㪉
㪘㪚㪥㪔㪌㪉
㪧㪸㫉㪸㫅㪸㩷㪩㪅
㪚㫆㫃㫆㫄㪹㫀㪸
㩿㪙㫉㪸㫑㫀㫃㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪫㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪞㪀
㪘㫉㪾㪼㫅㫋㫀㫅㪸
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪧㪸㫉㪸㫅㪸
㩿㪚㫆㫃㫆㫄㪹㫀㪸㪀
㩿㪪㪅㩷㪘㫄㪼㫉㫀㪺㪸㪀
㪏㪏
㪎㪏
㪏㪋
㪏㪋
㩿㪚㫆㫃㫆㫄㪹㫀㪸㪀
㪈㪇㪤㩷㪂㩷㪉㪏㪪㪤㩷㪂㩷㪈㪉㪪㪫
㪍㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪈㪉㪪㪫㩷㪂㩷㪈㪋㪘
㪋㪤㩷㪂㩷㪉㪏㪪㪤㩷㪂㩷㪈㪍㪪㪫㩷㪂㩷㪋㪘
㪎㪍 㪏㪍
㪙㫉㪸㫑㫀㫃㩷㩿㪘㪺㫉㪼㪀
㪌㪇
㪝
㪝㪃㩷㪤
㪘㪚㪥㪔㪌㪉
㪘㪚㪥㪔㪌㪉
㪘㪚㪥㪔㪌㪉
㪘㪚㪥㪔㪌㪉
㪘㪚㪥㪔㪌㪉
㪘㪚㪥㪔㪌㪍
㪘㪚㪥㪔㪌㪉
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪘㪤㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪫㪀
㩿㪙㫉㪸㫑㫀㫃㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪞㪀
㪋㪉㪁
㪌㪉 㪌㪇
㪌㪉
㪌㪉
㪋㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪏㪪㪫㩷㪂㩷㪉㪇㪘 㪊㪋㩷㪤㪆㪪㪤㩷㪂㩷㪈㪏㩷㪪㪫㪆㪘
㪌㪉 㪌㪉
㪋㪍
㫊㫇㪅 㪝㪃㩷㪤
㪉㪅㪉㩷㪝㪛
㪊㪅㪉㩷㪝㪛
㩿㪊㪅㪋㩷㪙㪝㪘㪀
㪉㪅㪐㩷㪝㪛
㩿㪉㪅㪉㩷㪙㪝㪘㪀
㪉㪅㪈㩷㪝㪛
㩿㪉㪅㪍㩷㪝㪛㪀
㪘㪚㪥㪔㪌㪉
㪘㪚㪥㪔㪌㪉
㩿㪪㪅㩷㪘㫄㪼㫉㫀㪺㪸㪀 㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪌㪇㪁 㪍㪇
㪈㪇㪋
㪈㪇㪋
㩿㪎㪋㪀
㪍㪏
㪈㪇㪋
㪈㪇㪏
㪈㪇㪇
㪈㪇㪇
㪈㪇㪇
㪈㪇㪇
㪈㪇㪇
㪈㪇㪇
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㩿㪪㪅㩷㪘㫄㪼㫉㫀㪺㪸㪀 㪌㪏
㪏㪋
㪏㪏
㪏㪉
㪌㪏
㪏㪉
㪎㪋
㪐㪍
㪏㪍
㪏㪇
㪐㪋
㪐㪋
㪐㪉
㪐㪉
㪐㪍
㪝 㪞 㪟 㪠 㪥㪝㪈 㪥㪝㪉 㪘㪾㪄 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㪥㪦㪩㫊 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㩷㪌㪉㪁 㪈㪉㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪊㪉㪘
㪍㪤㩷㪂㩷㪉㪍㪪㪤㩷㪂㩷㪉㪇㪪㪫
㪊㪍㩷㪤㪆㪪㪤㩷㪂㩷㪈㪍㩷㪪㪫㪆㪘
㪌㪉 㪌㪉
㪍㪤㩷㪂㩷㪉㪋㪪㪤㩷㪂㩷㪉㪉㪪㪫
㪌㪉
㪌㪉㪁
㪹㫆㪾㫆㫋㪼㫅㫊㫀㫊 㪺㪸㫊㫀㫈㫌㫀㪸㫉㪼 㫇㪸㫃㫄㪼㫉㫀 㫇㪸㫃㫄㪼㫉㫀 㪺㫃㪸㫌㪻㫀㪸㪼 㫇㪸㫉㪸㫅㪼㫅㫊㫀㫊 㫇㪸㫉㪸㫅㪼㫅㫊㫀㫊
㫇㪸㫉㪸㫅㪼㫅㫊㫀㫊 㪹㫆㫅㪸㫉㫀㪼㫅㫊㫀㫊
㪤
㪝㪃㩷㪤
㪝㪃㩷㪤
㪉㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪊㪍㪘
㪊㪇㩷㪤㪆㪪㪤㩷㪂㩷㪉㪉㩷㪪㪫㪆㪘
㪌㪉 㪝
㫇㪸㫉㪸㪻㫆㫏㫌㫊 㫇㪸㫉㪸㪻㫆㫏㫌㫊 㪾㫌㫃㫆 㪿㫌㫄㪼㫉㪸㫃㫀㫊 㫂㫅㪼㫉㫀㫀 㪸㪽㪽㪅㩷㫄㫀㪺㫉㫆㫊㫋㫀㪺㫋㫌㫊 㪸㪽㪽㪅㩷㫄㫀㪺㫉㫆㫊㫋㫀㪺㫋㫌㫊 㪺㪽㪅㩷㫇㪼㪺㫋㫀㫅㪸㫋㫌㫊 㪻㪼㫊㪺㪸㫃㫍㪸㪻㪼㫅㫊㫀㫊 㫄㫀㪺㫉㫆㫃㪼㫇㫀㫊 㫏㪼㫅㫆㪻㫆㫅 㪌㪉
㪉㪉㩷㪤㪆㪪㪤㩷㪂㩷㪊㪇㩷㪪㪫㪆㪘
㪌㪉 㪌㪉
㪝
㪊㪉㩷㪤㪆㪪㪤㩷㪂㩷㪉㪉㪪㪫
㪈㪉㪤㩷㪂㩷㪈㪏㪪㪤㩷㪂㩷㪉㪇㪪㪫
㪋㪋㩷㪤㪆㪪㪤㩷㪂㩷㪏㪪㪫
㪌㪇
㪝㪃㩷㪤
㪈㪋㪤㩷㪂㩷㪊㪇㪪㪤㩷㪂㩷㪍㪪㪫
㪌㪋
㪌㪇
㪝㪃㩷㪤
㪈㪋㪤㩷㪂㩷㪊㪇㪪㪤㩷㪂㩷㪍㪪㪫
㪌㪉
㪌㪇
㪌㪇
㪉㪇㪤㩷㪂㩷㪉㪉㪪㪤㩷㪂㩷㪏㪪㪫
㪉㪇㪤㩷㪂㩷㪉㪉㪪㪤㩷㪂㩷㪏㪪㪫
㪌㪇
㪉㪉㪤㩷㪂㩷㪉㪋㪪㪤㩷㪂㩷㪋㪪㪫
㪌㪇
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪌㪇
㪛 㪉㫅
㪝㪃㩷㪤
㪝
㪝㪃㩷㪤
㪚 㪪㪼㫏
㫊㫇㪅 㪺㪽㪅㩷㫂㫀㫅㪺㪸㫀㪻㫀
㪺㫐㫋㫆㫋㫐㫇㪼㩷㪘 㪺㫐㫋㫆㫋㫐㫇㪼㩷㪙
㪚㪿㪸㫉㪸㪺㫀㫅㫀㪻㪸㪼
㫄㪸㫏㫀㫃㫃㫆㫊㫌㫊
㫃㫌㫅㪻㫀㫀
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㫃㪼㫋㫀㪺㫀㪸㪼
㫄㪸㪺㫉㫆㫃㪼㫇㫀㪻㫆㫋㫌㫊 㫄㪸㪺㫉㫆㫃㪼㫇㫀㪻㫆㫋㫌㫊
㪹㫉㪸㫊㫀㫃㫀㪼㫅㫊㫀㫊 㪿㫀㫃㪸㫉㫀㫀 㪿㫀㫃㪸㫉㫀㫀
㫊㫇㪅 㫊㫇㪅
㫆㫉㫋㪿㫆㫋㪸㪼㫅㫀㪸 㪺㪽㪅㩷㫇㪼㫊㫌
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㪹㫆㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷
㪫㪸㪹㫃㪼㩷㪍㪅㪈㪉㩷㩷㪦㫉㪻㪼㫉㩷㪚㪟㪘㪩㪘㪚㪠㪝㪦㪩㪤㪜㪪㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷
㪮㪄㪈㪐
㪮㪄㪈㪐
㪮㪄㪈㪐
㪘㪄㪐㪊
㪪㪄㪈㪌㪉
㪪㪄㪊㪇
㪞㪄㪌㪊
㪮㪄㪈㪐
㪭㪄㪊㪉
㪭㪄㪊㪉
㪝㪄㪉㪇㪃㩷㪚㪄㪐㪋
㪭㪄㪊㪉
㪚㪄㪉㪍
㪪㪄㪊㪇
㪪㪄㪊㪇
㪝㪄㪉㪃㩷㪚㪄㪐㪊
㪝㪄㪉㪇
㪭㪄㪊㪉
㪪㪄㪈㪌㪉
㪭㪄㪊㪉㪃㩷㪟㪄㪈㪊
㪝㪄㪉㪇
㪚㪄㪉㪌
㪚㪄㪉㪌㪃㩷㪚㪄㪐㪋
㪦㪄㪉㪉㪃㩷㪟㪄㪈㪊
㪤㪄㪐㪈
㪤㪄㪈㪌㪈
㪦㪄㪏㪈㪃㩷㪚㪄㪐㪊
㪦㪄㪏㪈
㪦㪄㪌㪇
㪤㪄㪊㪎
㪧㪄㪏㪏
㪤㪄㪊㪎㪃㩷㪤㪄㪈㪌㪈
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
81
㪚㪸㫋㫆㫇㫉㫀㫆㫅 㪚㫆㫃㫆㫊㫊㫆㫄㪸 㪚㫆㫃㫆㫊㫊㫆㫄㪸 㪚㫆㫃㫆㫊㫊㫆㫄㪸 㪤㪼㫋㫐㫅㫅㫀㫊
㩷㩷㪪㪼㫉㫉㪸㫊㪸㫃㫄㫀㫅㪸㪼
㪧㫉㫀㫆㫅㫆㪹㫉㪸㫄㪸
㩷㩷㪧㪸㫉㪸㪾㫆㫅㫀㪸㫋㫀㫅㪸㪼
㪠㪾㫌㪸㫅㫆㪻㪼㪺㫋㪼㫊
㩷㩷㪠㪾㫌㪸㫅㫆㪻㪼㪺㫋㫀㫅㪸㪼
㪞㪼㫇㪿㫐㫉㫆㪺㪿㪸㫉㪸㫏 㪞㪼㫇㪿㫐㫉㫆㪺㪿㪸㫉㪸㫏 㪞㫃㪸㫅㪻㫌㫃㫆㪺㪸㫌㪻㪸 㪞㫃㪸㫅㪻㫌㫃㫆㪺㪸㫌㪻㪸 㪤㫀㫄㪸㪾㫆㫅㫀㪸㫋㪼㫊 㪤㫀㫄㪸㪾㫆㫅㫀㪸㫋㪼㫊 㪤㫀㫄㪸㪾㫆㫅㫀㪸㫋㪼㫊
㩷㩷㪞㫃㪸㫅㪻㫌㫃㫆㪺㪸㫌㪻㫀㫅㪸㪼
㪦㪻㫆㫅㫋㫆㫊㫋㫀㫃㪹㪼 㪧㪸㫉㪸㪺㪿㪼㫀㫉㫆㪻㫆㫅 㪧㪸㫉㪸㪺㪿㪼㫀㫉㫆㪻㫆㫅 㪧㪸㫉㪸㪺㪿㪼㫀㫉㫆㪻㫆㫅 㪧㪸㫉㪸㪺㪿㪼㫀㫉㫆㪻㫆㫅 㪧㫉㫀㫊㫋㪼㫃㫃㪸 㪧㫉㫆㪹㫆㫃㫆㪻㫌㫊 㪪㪼㫉㫉㪸㫇㫀㫅㫅㫌㫊 㪪㪼㫉㫉㪸㫇㫀㫅㫅㫌㫊 㪪㪼㫉㫉㪸㫇㫀㫅㫅㫌㫊 㪪㪼㫉㫉㪸㫇㫀㫅㫅㫌㫊 㪪㪼㫉㫉㪸㫇㫀㫅㫅㫌㫊 㪪㪼㫉㫉㪸㫇㫀㫅㫅㫌㫊 㪪㪼㫉㫉㪸㫇㫀㫅㫅㫌㫊 㪪㪼㫉㫉㪸㫇㫀㫅㫅㫌㫊 㪪㪼㫉㫉㪸㫇㫀㫅㫅㫌㫊 㪪㪼㫉㫉㪸㫇㫀㫅㫅㫌㫊
㫄㪼㫅㫋㫆 㫄㪸㪺㫉㫆㫇㫆㫄㫌㫄 㫄㪸㪺㫉㫆㫇㫆㫄㫌㫄 㫄㪸㪺㫉㫆㫇㫆㫄㫌㫄 㪸㫉㪾㪼㫅㫋㪼㫌㫊
㪽㫀㫃㫀㪾㪼㫉㪸
㫊㫇㫀㫃㫌㫉㫌㫊
㪺㪸㫌㪺㪸㫅㫌㫊 㫍㪸㫃㪼㫅㪺㫀㪸 㫄㪼㫃㪸㫅㫆㪾㪼㫅㫐㫊 㫄㪼㫃㪸㫅㫆㫇㫃㪼㫌㫉㪸 㫃㪸㫋㪼㫉㪸㫃㫀㫊 㫄㫀㪺㫉㫆㫃㪼㫇㫀㫊 㫄㫀㪺㫉㫆㫃㪼㫇㫀㫊
㫊㫇㪅㩷㪈 㫊㫇㪅㩷㪈
㫊㫋㪼㫅㫆㪻㫆㫅 㪸㫏㪼㫃㫉㫆㪻㫀 㫀㫅㫅㪼㫊㫀 㫀㫅㫅㪼㫊㫀 㫊㫀㫄㫌㫃㪸㫅㫊 㫄㪸㫏㫀㫃㫃㪸㫉㫀㫊 㪿㪼㫋㪼㫉㫆㫊㫋㫆㫄㫌㫊 㪿㪼㫋㪼㫉㫆㪻㫆㫅 㪿㪼㫋㪼㫉㫆㪻㫆㫅 㪿㪼㫋㪼㫉㫆㪻㫆㫅 㪿㪼㫋㪼㫉㫆㪻㫆㫅 㫅㫆㫋㫆㫄㪼㫃㪸㫊 㫅㫆㫋㫆㫄㪼㫃㪸㫊 㫅㫆㫋㫆㫄㪼㫃㪸㫊 㫇㫀㪸㪹㪸
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㪹㫆㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷
㪈㪍㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪈㪋㪪㪫㩷㪂㩷㪉㪘 㪈㪌㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪈㪋㪪㪫㩷㪂㩷㪊㪘 㪈㪎㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪈㪋㪪㪫㩷㪂㩷㪈㪘
㪌㪉 㪌㪉 㪌㪉
㪏㪐 㪉
㪝㪃㩷㪤
㪝㪃㩷㪤
㪊㪅㪈㩷㪝㪛
㪧㪸㫉㪸㫅㬗㩷㪩㪅
㪈㪏㪤㩷㪂㩷㪊㪍㪪㪤 㪉㪏㪤㩷㪂㩷㪉㪍㪪㪤
㪌㪋 㪌㪋 㪍㪉㪁
㪉㪇㪤㩷㪂㩷㪊㪋㪪㪤
㪈㪉㩷㪤㪆㪪㪤㩷㪂㩷㪋㪇㩷㪪㪫㪆㪘
㪌㪋
㪍㪇
㪌㪉
㪌㪇㪁
㪈㪉㪤㩷㪂㩷㪈㪏㪪㪤㩷㪂㩷㪈㪋㪪㪫㩷㪂㩷㪏㪘
㪍㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪈㪏㪪㪫㩷㪂㩷㪏㪘
㪌㪉 㪌㪉
㪏㪤㩷㪂㩷㪈㪏㪪㪤㩷㪂㩷㪈㪋㪪㪫㩷㪂㩷㪈㪋㪘 㪍㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪈㪍㪪㪫㩷㪂㩷㪈㪇㪘
㪌㪋 㪌㪉
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪍㪋
㪏㪉
㪎㪏
㪎㪏
㪏㪇
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪐㪍
㪐㪍
㪐㪋
㪐㪋
㪋
㩿㪊㪅㪇㩷㪝㪠㪘㪀
㪘㪚㪥㪔㪌㪋
㪘㪚㪥㪔㪌㪋
㪘㪚㪥㪔㪌㪋
㩿㪙㫉㪸㫑㫀㫃㪀
㪭㪼㫅㪼㫑㫌㪼㫃㪸
㪪㪅㩷㪘㫄㪼㫉㫀㪺㪸
㪙㫉㪸㫑㫀㫃
㩿㪙㫉㪸㫑㫀㫃㪀
㩿㪪㪅㩷㪘㫄㪼㫉㫀㪺㪸㪀
㩿㪪㪅㩷㪘㫄㪼㫉㫀㪺㪸㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪩㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪩㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪘㪚㪥㪔㪌㪉
㪱㪱㪃㩷㪘㪚㪥㪔㪌㪉
㪋㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪉㪉㪪㪫㩷㪂㩷㪈㪋㪘
㪉
㪊
㪧㪸㫉㪸㫅㬗㩷㪩㪅
㪌㪉
㪐㪇
㪏㪇
㪱㪮
㩿㪭㪼㫅㪼㫑㫌㪼㫃㪸㪀 㪍㪏
㪎㪍
㪎㪐
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪸㫆㩷㪝㫉㪸㫅㪺㫀㫊㪺㫆㩷㪩㪅㪀
㩿㪚㫆㫃㫆㫄㪹㫀㪸㪀
㪏㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪉㪋㪘
㪎㪌
㪊
㪌㪉㪁
㪌㪉
㪤
㪏㪤㩷㪂㩷㪈㪌㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪉㪌㪘
㪈㪇㪉
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㩿㪙㫉㪸㫑㫀㫃㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪸㫆㩷㪝㫉㪸㫅㪺㫀㫊㪺㫆㩷㪩㪅㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪸㫆㩷㪝㫉㪸㫅㪺㫀㫊㪺㫆㩷㪩㪅㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪸㫆㩷㪝㫉㪸㫅㪺㫀㫊㪺㫆㩷㪩㪅㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㩿㪪㪅㩷㪘㫄㪼㫉㫀㪺㪸㪀
㪌㪉㪁
㪌㪉
㪝
㪏㪏
㪱㪱㪃㩷㪘㪚㪥㪔㪌㪉
㪈㪍㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪈㪋㪪㪫㩷㪂㩷㪉㪘
㪉
㪌㪉
㪉
㪱㪮㪃㩷㪘㪚㪥㪔㪌㪉
㪈㪇㪇
㪌㪉
㪐㪇
㪈㪍㪤㩷㪂㩷㪉㪉㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪋㪘
㪌㪉
㪝
㪈㪇㪈
㪈㪇㪊
㪈㪇㪈
㪈㪇㪉
㪱㪮㪃㩷㪘㪚㪥㪔㪌㪉
㪤
㪐㪈
㪏㪐
㪏㪎
㪏㪏
㪈㪇㪈
㪱㪮㪆㪱㪱 㪈㪍㪤㩷㪂㩷㪉㪊㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪊㪘
㪊㪎㩷㪤㪆㪪㪤㩷㪂㩷㪈㪉㪪㪫㩷㪂㩷㪊㪘
㪌㪉
㪘㪚㪥㪔㪌㪉
㩿㪎㪋㪀
㪌㪉㪁 㪌㪇
㩿㪘㫄㪸㫑㫆㫅㩷㪩㪅㪃㩷㪦㫉㫀㫅㫆㪺㫆㩷㪩㪅㪀
㩿㪐㪍㪀
㩿㪪㪅㩷㪘㫄㪼㫉㫀㪺㪸㪀
㪌㪇
㪘㪚㪥㪔㪌㪉
㪘㪚㪥㪔㪌㪉
㩿㪪㪅㩷㪘㫄㪼㫉㫀㪺㪸㪀
㩿㪙㫉㪸㫑㫀㫃㪃㩷㪧㪩㪀
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪙㫉㪸㫑㫀㫃㪃㩷㪚㫆㫃㫆㫄㪹㫀㪸㪃㩷㪧㪼㫉㫌
㩿㪍㪋㪀
㪘㪚㪥㪔㪌㪉
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪊㪍
㪊㪉
㪊㪅㪎㩷㪝㪛
㪝 㪞 㪟 㪠 㪥㪝㪈 㪥㪝㪉 㪘㪾㪄 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㪥㪦㪩㫊 㩿㫇㪾㪆㪺㪼㫃㫃㪀 㩿㪌㪋㪀
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪌㪉
㪌㪉
㪛 㪉㫅
㪌㪉
㪝
㪟㫆㫃㫆㫊㪿㪼㫊㫋㪼㫊
㪚㪿㪼㫀㫉㫆㪻㫆㫅
㪤
㪚 㪪㪼㫏
㪟㫐㫇㪿㪼㫊㫊㫆㪹㫉㫐㪺㫆㫅 㪟㫐㫇㪿㪼㫊㫊㫆㪹㫉㫐㪺㫆㫅 㫉㫀㪻㪻㫃㪼㫀
㪚㪿㪼㫀㫉㫆㪻㫆㫅㩷㫊㫋㪼㫅㫆㪻㫆㫅 㪚㪿㪼㫀㫉㫆㪻㫆㫅
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪫㪸㪹㫃㪼㩷㪍㪅㪈㪉㩷㩷㪦㫉㪻㪼㫉㩷㪚㪟㪘㪩㪘㪚㪠㪝㪦㪩㪤㪜㪪㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷
㪚㪄㪐㪊
㪪㪄㪊㪇
㪥㪄㪉㪌
㪢㪄㪈㪈㪊
㪘㪄㪈㪉㪐㪃㩷㪟㪄㪋㪈
㪧㪄㪏㪏
㪘㪄㪐㪊
㪪㪄㪊㪇
㪫㪄㪎㪈
㪫㪄㪎㪈㪃㩷㪚㪄㪐㪋
㪫㪄㪎㪈
㪫㪄㪎㪈
㪫㪄㪎㪈
㪪㪄㪊㪇
㪪㪄㪊㪇
㪪㪄㪉㪇㪈
㪪㪄㪉㪇㪈
㪧㪄㪎㪎
㪪㪄㪉㪇㪈
㪪㪄㪉㪇㪈
㪮㪄㪈㪐
㪧㪄㪎㪎
㪧㪄㪎㪎
㪧㪄㪎㪎
㪮㪄㪈㪐
㪦㪄㪌㪇
㪪㪄㪈㪌㪉
㪪㪄㪈㪌㪉
㪣㪄㪎㪌
㪪㪄㪈㪌㪊
㪪㪄㪈㪌㪊
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
82
㪚㪿㪸㫉㪸㪺㫀㫅㫀㪻㪸㪼
㪧㫉㫀㫊㫋㫆㪹㫉㫐㪺㫆㫅
㪪㪼㫉㫉㪸㫊㪸㫃㫄㫌㫊
㪚㫆㫃㫆㫊㫊㫆㫄㪸㩷㫄㫀㫋㫉㪼㫀
㪻㫌㫉㫀㫍㪼㫅㫋㫉㫀㫊 㪻㫌㫉㫀㫍㪼㫅㫋㫉㫀㫊 㪻㫌㫉㫀㫍㪼㫅㫋㫉㫀㫊 㪻㫌㫉㫀㫍㪼㫅㫋㫉㫀㫊 㫇㪸㫉㪸㪾㫌㪸㫐㪼㫅㫊㫀㫊
㪤㫐㫃㪼㫌㫊 㪤㫐㫃㫆㫇㫃㫌㫊
㪺㪽㪅㩷㫉㫆㫆㫊㪼㫍㪼㫃㫋㫀
㫊㪺㪿㫉㪼㫀㫋㫄㫌㪼㫃㫃㪼㫉㫀
㪤㪼㫋㫐㫅㫅㫀㫊 㪤㪼㫋㫐㫅㫅㫀㫊 㪤㪼㫋㫐㫅㫅㫀㫊 㪤㪼㫋㫐㫅㫅㫀㫊 㪤㪼㫋㫐㫅㫅㫀㫊 㪤㪼㫋㫐㫅㫅㫀㫊 㪤㫐㫃㪼㫊㫀㫅㫌㫊 㪤㫐㫃㪼㫊㫀㫅㫌㫊 㪤㫐㫃㪼㫌㫊 㪤㫐㫃㪼㫌㫊 㪤㫐㫃㪼㫌㫊 㪤㫐㫃㪼㫌㫊 㪤㫐㫃㫆㫇㫃㫌㫊 㪤㫐㫃㫆㫊㫊㫆㫄㪸 㪤㫐㫃㫆㫊㫊㫆㫄㪸 㪤㫐㫃㫆㫊㫊㫆㫄㪸 㪤㫐㫃㫆㫊㫊㫆㫄㪸 㪤㫐㫃㫆㫊㫊㫆㫄㪸 㪤㫐㫃㫆㫊㫊㫆㫄㪸 㪧㫀㪸㫉㪸㪺㫋㫌㫊 㪧㫀㪸㫉㪸㪺㫋㫌㫊 㪧㫀㪸㫉㪸㪺㫋㫌㫊 㪧㫉㫀㫊㫋㫆㪹㫉㫐㪺㫆㫅 㪧㫐㪾㫆㪺㪼㫅㫋㫉㫌㫊 㪧㫐㪾㫆㪺㪼㫅㫋㫉㫌㫊 㪧㫐㪾㫆㪺㪼㫅㫋㫉㫌㫊 㪪㪼㫉㫉㪸㫊㪸㫃㫄㫌㫊 㪪㪼㫉㫉㪸㫊㪸㫃㫄㫌㫊 㪪㪼㫉㫉㪸㫊㪸㫃㫄㫌㫊 㪪㪼㫉㫉㪸㫊㪸㫃㫄㫌㫊 㪪㪼㫉㫉㪸㫊㪸㫃㫄㫌㫊 㪪㪼㫉㫉㪸㫊㪸㫃㫄㫌㫊 㪪㪼㫉㫉㪸㫊㪸㫃㫄㫌㫊 㪪㪼㫉㫉㪸㫊㪸㫃㫄㫌㫊 㪪㪼㫉㫉㪸㫊㪸㫃㫄㫌㫊
㪿㫐㫇㫊㪸㫌㪺㪿㪼㫅 㫃㫀㫇㫇㫀㫅㪺㫆㫋㫋㫀㪸㫅㫌㫊 㫃㫀㫇㫇㫀㫅㪺㫆㫋㫋㫀㪸㫅㫌㫊 㫃㫀㫇㫇㫀㫅㪺㫆㫋㫋㫀㪸㫅㫌㫊 㫄㪸㪺㫌㫃㪸㫋㫌㫊 㫄㫆㫃㪸 㫇㪸㫉㪸㫊㪺㪿㫆㫄㪹㫌㫉㪾㫂㫀㫀 㫊㪺㪿㫆㫄㪹㫌㫉㪾㫂㫀㫀 㪸㫉㫅㫆㫃㪻㫀 㫄㫀㪺㪸㫅㫊 㫇㪸㪺㫌 㫋㫀㪼㫋㪼 㫉㫌㪹㫉㫀㫇㫀㫅㫅㫀㫊 㪸㫌㫉㪼㫌㫄 㪻㫌㫉㫀㫍㪼㫅㫋㫉㪼 㪻㫌㫉㫀㫍㪼㫅㫋㫉㪼 㪻㫌㫉㫀㫍㪼㫅㫋㫉㪼 㪻㫌㫉㫀㫍㪼㫅㫋㫉㪼 㪻㫌㫉㫀㫍㪼㫅㫋㫉㪼 㪹㫉㪸㪺㪿㫐㫇㫆㫄㫌㫊 㫄㪼㫊㫆㫇㫆㫋㪸㫄㫀㪺㫌㫊 㫄㪼㫊㫆㫇㫆㫋㪸㫄㫀㪺㫌㫊 㫊㫋㫉㫀㫆㫃㪸㫋㫌㫊 㫅㪸㫋㫋㪼㫉㪼㫉㫀 㫅㪸㫋㫋㪼㫉㪼㫉㫀 㫇㫀㫉㪸㫐㪸 㪸㫃㫋㫀㫊㫇㫀㫅㫀㫊 㪸㫃㫋㫀㫊㫇㫀㫅㫀㫊 㪸㫃㫋㫌㫍㪼㫀 㪹㫉㪸㫅㪻㫋㫀㫀 㪺㫆㫄㫇㫉㪼㫊㫊㫌㫊 㪼㫀㪾㪼㫅㫄㪸㫅㫅㫀 㪼㫃㫆㫅㪾㪸㫋㫌㫊 㪾㫆㫌㫃㪻㫀㫅㪾㫀 㪿㫆㫃㫃㪸㫅㪻㫀
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㪹㫆㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷
㪫㪸㪹㫃㪼㩷㪍㪅㪈㪉㩷㩷㪦㫉㪻㪼㫉㩷㪚㪟㪘㪩㪘㪚㪠㪝㪦㪩㪤㪜㪪㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷
㪊㪉㪤㩷㪂㩷㪉㪉㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪋㪘 㪍㪇㩷㪤㪆㪪㪤㩷㪂㩷㪉㪘
㪍㪉
㪌㪋
㪘㪚㪥㪔㪌㪋
㪊㪇㩷㪤㪆㪪㪤㩷㪂㩷㪈㪍㪪㪫㩷㪂㩷㪈㪏㪘
㪉㪉㪤㩷㪂㩷㪉㪉㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪈㪇㪘
㪍㪇 㪍㪋
㪉㪉㪤㩷㪂㩷㪉㪉㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪈㪉㪘
㪋㪋㩷㪤㪆㪪㪤㩷㪂㩷㪈㪍㩷㪪㪫㪆㪘
㪈㪏㪤㩷㪂㩷㪊㪇㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪈㪇㪘
㪍㪇
㪍㪇
㪍㪇
㪋㪍㩷㪤㪆㪪㪤㩷㪂㩷㪈㪋㩷㪪㪫㪆㪘
㪍㪇
㪈㪏㪤㩷㪂㩷㪉㪋㪪㪤㩷㪂㩷㪏㪪㪫㩷㪂㩷㪈㪇㪘
㪉㪇㪤㩷㪂㩷㪉㪏㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪈㪇㪘㩷
㪍㪇
㪐㪋
㪈㪇㪋
㪈㪇㪋
㪈㪇㪋
㪈㪇㪏
㪈㪇㪉
㪈㪇㪍
㪈㪇㪏
㪈㪇㪋
㪐
㪈㪇
㪈㪈㪇
㪈㪈㪇
㪏
㪈㪇㪏 㪌㪄㪈㪉
㪈㪈㪇 㪌㪄㪈㪉
㪈㪈㪇
㪈㪈㪇 㪌㪄㪈㪉
㪈㪈㪇
㩿㪊㪅㪊㩷㪝㪛㪀
㪘㪚㪥㪔㪍㪇
㪊㪅㪋㩷㪝㪛
㪘㪚㪥㪔㪍㪇
㪘㪚㪥㪔㪍㪇
㪘㪚㪥㪔㪍㪇
㩿㪙㫉㪸㫑㫀㫃㪃㩷㪞㫌㫐㪸㫅㪸㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪘㫄㪸㫑㫆㫅㩷㪹㪸㫊㫀㫅㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪘㫄㪸㫑㫆㫅㩷㪹㪸㫊㫀㫅㪀
㩿㪪㪅㩷㪘㫄㪼㫉㫀㪺㪸㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪘㫄㪸㫑㫆㫅㩷㪹㪸㫊㫀㫅㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪞㪀
㩿㪭㪼㫅㪼㫑㫌㪼㫃㪸㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪘㫄㪸㫑㫆㫅㩷㪹㪸㫊㫀㫅㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪘㫄㪸㫑㫆㫅㩷㪹㪸㫊㫀㫅㪀
㪤㪄㪐㪈
㪥㪄㪏
㪥㪄㪎㪈
㪧㪄㪏㪏
㪥㪄㪎㪈
㪚㪄㪏㪎㪃㩷㪚㪄㪐㪋
㪧㪄㪏㪏
㪥㪄㪎㪈
㪥㪄㪏
㪉㪋㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪈㪇㪘
㪝㪄㪉㪇
㪧㪄㪏㪋
㪧㪄㪏㪏
㪘㪄㪈㪉㪐
㪍㪇
㩿㪪㪅㩷㪘㫄㪼㫉㫀㪺㪸㪀
㩿㪪㪅㩷㪘㫄㪼㫉㫀㪺㪸㪀
㪙㫉㪸㫑㫀㫃
㪥㪄㪉㪌 㪝㪄㪉㪇
㩿㪙㫉㪸㫑㫀㫃㪃㩷㪪㪸㫆㩷㪝㫉㪸㫅㪺㫀㫊㪺㫆㩷㪩㪅㪀 㪧㪄㪏㪋
㪈㪇㪏
㪘㪚㪥㪔㪌㪋
㪭㪼㫅㪼㫑㫌㪼㫃㪸 㪘㫉㪾㪼㫅㫋㫀㫅㪸
㪋㪏㩷㪤㪆㪪㪤㩷㪂㩷㪈㪉㪘
㪝㪃㩷㪤
㪤
㪉
㪚㪄㪐㪋
㪝㪄㪉㪇
㪦㪄㪉㪉
㪢㪄㪈㪈㪊
㪧㪄㪏㪏
㪧㪄㪏㪏
㪧㪄㪏㪏
㪝㪄㪉㪇
㪧㪄㪏㪏
㪘㪄㪈㪉㪏
㪦㪄㪉㪉
㪧㪄㪏㪏
㪧㪄㪏㪏
㪡㪄㪈㪐
㪚㪄㪐㪏
㪤㪄㪈㪍㪎
㪍㪇
㪈㪇 㪏
㪈㪈㪇
㪈㪇㪏
㪈㪇㪏
㪘㪄㪐㪈㪃㩷㪘㪄㩷㪐㪉㪃㩷㪟㪄㪈㪊 㪚㪄㪐㪏
㪘㫉㪾㪼㫅㫋㫀㫅㪸
㪌㪇㩷㪤㪆㪪㪤㩷㪂㩷㪈㪇㪘
㪍㪇
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼 㪦㪄㪉㪉㪃㩷㪟㪄㪈㪊
㪍㪇
㪉㪇㪤㩷㪂㩷㪊㪋㪪㪤 㪋㪍㩷㪤㪆㪪㪤㩷㪂㩷㪈㪍㩷㪪㪫㪆㪘
㪌㪋
㪉㪏㪤㩷㪂㩷㪉㪍㪪㪤
㪍㪉
㪌㪋
㪍㪇
㪝㪃㩷㪤
㪉㪅㪐㩷㪝㪛
㩿㪪㪅㩷㪘㫄㪼㫉㫀㪺㪸㪀 㪘㫉㪾㪼㫅㫋㫀㫅㪸
㪈㪇㪋
㩿㪪㪅㩷㪘㫄㪼㫉㫀㪺㪸㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪤㫀㫉㪸㫅㪻㪸㩷㪩㪅㪃㩷㪤㪞㪀
㪈㪇㪋
㪈㪇㪍
㩿㪙㫉㪸㫑㫀㫃㪀 㩿㪪㪅㩷㪘㫄㪼㫉㫀㪺㪸㪀
㪌㪋
㪌㪇㩷㪤㪆㪪㪤㩷㪂㩷㪋㪘
㪌㪋
㪈㪇㪍
㪈㪇㪏 㪍㪄㪈㪋
㪌㪋
㪈㪏㪤㩷㪂㩷㪊㪋㪪㪤㩷㪂㩷㪉㪘
㪌㪋
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏 㪍㪄㪈㪋
㪌㪋㩷㪤㪆㪪㪤
㪌㪋
㪌㪋
㩿㪞㫌㫐㪸㫅㪸㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㬙㫆㩷㪝㫉㪸㫅㪺㫀㫊㪺㫆㩷㪩㪅㪀
㩿㪙㫉㪸㫑㫀㫃㪀
㩿㪞㫌㫐㪸㫅㪸㪃㩷㪭㪼㫅㪼㫑㫌㪼㫃㪸㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪘㫄㪸㫑㫆㫅㩷㪩㪅㪀
㪙㫉㪸㫑㫀㫃
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃
㪙㫉㪸㫑㫀㫃㩷㩿㪘㪤㪀
㪘㫉㪾㪼㫅㫋㫀㫅㪸 㪌㪋㩷㪤㪆㪪㪤
㪈㪙
㪇㪄㪉㩷㪙
㩿㪙㫉㪸㫑㫀㫃㪃㩷㪝㫉㪼㫅㪺㪿㩷㪞㫌㫀㪸㫅㪸㪀
㩿㪪㪅㩷㪘㫄㪼㫉㫀㪺㪸㪀
㩿㪞㫌㫐㪸㫅㪸㪀
㪌㪄㪐
㪋
㪌㪄㪏
㪍㪄㪈㪉
㪊㪅㪋㩷㪙㪝㪘 㩿㪊㪅㪋㩷㪙㪝㪘㪀
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪌㪄㪏
㪈㪈㪇
㪈㪉㪉
㪈㪉㪇
㪈㪉㪉
㪈㪉㪉
㪈㪉㪉
㪈㪉㪉
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪌㪏
㪐㪏
㪈㪇㪉
㪐㪉
㪈㪇㪇
㪈㪉㪉
㪈㪈㪍
㪈㪇㪏
㪈㪈㪍
㪈㪉㪉
㪝 㪞 㪟 㪠 㪥㪝㪈 㪥㪝㪉 㪘㪾㪄 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㪥㪦㪩㫊 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪌㪏
㪉㪍㪤㩷㪂㩷㪈㪏㪪㪤㩷㪂㩷㪏㪪㪫㩷㪂㩷㪍㪘 㪋㪇㩷㪤㪆㪪㪤㩷㪂㩷㪈㪏㩷㪪㪫㪆㪘
㪌㪏
㪊㪋㩷㪤㪆㪪㪤㩷㪂㩷㪉㪋㩷㪪㪫㪆㪘
㪌㪏 㪌㪏
㪋㪉㩷㪤㪆㪪㪤㩷㪂㩷㪈㪍㩷㪪㪫㪆㪘
㪌㪏
㪌㪏
㪉㪍㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪈㪋㪪㪫㩷㪂㩷㪉㪘
㪍㪉
㪊㪇㪤㩷㪂㩷㪉㪋㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪱㪮
㪍㪉 㪍㪉
㪊㪇㪤㩷㪂㩷㪊㪇㩷㪪㪤㪆㪪㪫㩷㪂㩷㪉㪘
㪍㪇㩷㪤㪆㪪㪤㩷㪂㩷㪉㪘
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪍㪉
㪍㪉
㪛 㪉㫅
㪝㪃㩷㪤
㪝㪃㩷㪤
㪝㪃㩷㪤
㪝㪃㩷㪤
㪝㪃㩷㪤
㪚 㪪㪼㫏
83
㪘㫊㫋㫐㪸㫅㪸㫏 㪘㫊㫋㫐㪸㫅㪸㫏 㪘㫊㫋㫐㪸㫅㪸㫏 㪘㫊㫋㫐㪸㫅㪸㫏 㪘㫊㫋㫐㪸㫅㪸㫏 㪘㫊㫋㫐㪸㫅㪸㫏 㪘㫊㫋㫐㪸㫅㪸㫏 㪘㫊㫋㫐㪸㫅㪸㫏 㪘㫊㫋㫐㪸㫅㪸㫏 㪘㫊㫋㫐㪸㫅㪸㫏 㪘㫊㫋㫐㪸㫅㪸㫏
㩷㩷㪫㪼㫋㫉㪸㪾㫆㫅㫆㫇㫋㪼㫉㫀㫅㪸㪼
㪙㫉㪸㪺㪿㫐㪺㪿㪸㫃㪺㫀㫅㫌㫊 㪦㫉㫋㪿㫆㫊㫇㫀㫅㫌㫊 㪦㫉㫋㪿㫆㫊㫇㫀㫅㫌㫊 㪧㫆㫇㫋㪼㫃㫃㪸 㪧㫆㫇㫋㪼㫃㫃㪸
㩷㩷㪪㫋㪼㫋㪿㪸㫇㫉㫀㫆㫅㫀㫅㪸㪼
㪪㪼㫉㫉㪸㫊㪸㫃㫄㫌㫊 㪪㪼㫉㫉㪸㫊㪸㫃㫄㫌㫊 㪪㪼㫉㫉㪸㫊㪸㫃㫄㫌㫊 㪪㪼㫉㫉㪸㫊㪸㫃㫄㫌㫊 㪪㪼㫉㫉㪸㫊㪸㫃㫄㫌㫊 㪪㪼㫉㫉㪸㫊㪸㫃㫄㫌㫊 㪪㪼㫉㫉㪸㫊㪸㫃㫄㫌㫊 㪪㪼㫉㫉㪸㫊㪸㫃㫄㫌㫊 㪪㪼㫉㫉㪸㫊㪸㫃㫄㫌㫊 㪪㪼㫉㫉㪸㫊㪸㫃㫄㫌㫊 㪪㪼㫉㫉㪸㫊㪸㫃㫄㫌㫊 㪪㪼㫉㫉㪸㫊㪸㫃㫄㫌㫊 㪪㪼㫉㫉㪸㫊㪸㫃㫄㫌㫊 㪪㪼㫉㫉㪸㫊㪸㫃㫄㫌㫊 㪪㪼㫉㫉㪸㫊㪸㫃㫄㫌㫊 㪪㪼㫉㫉㪸㫊㪸㫃㫄㫌㫊
㪸㪹㫉㪸㫄㫀㫊 㪸㫃㫋㫀㫇㪸㫉㪸㫅㪸㪼 㪸㫃㫋㫀㫇㪸㫉㪸㫅㪸㪼 㪸㫃㫋㫀㫇㪸㫉㪸㫅㪸㪼 㪸㫃㫋㫀㫇㪸㫉㪸㫅㪸㪼 㪸㫃㫋㫀㫇㪸㫉㪸㫅㪸㪼 㪸㫃㫋㫀㫇㪸㫉㪸㫅㪸㪼 㪸㫊㫌㫅㪺㫀㫆㫅㪼㫅㫊㫀㫊 㪹㫀㫄㪸㪺㫌㫃㪸㫋㫌㫊 㪹㫀㫄㪸㪺㫌㫃㪸㫋㫌㫊 㪹㫀㫄㪸㪺㫌㫃㪸㫋㫌㫊
㪺㫆㫇㪼㫀 㪽㫉㪸㫅㪺㫀㫊㪺㪼㫅㫊㫀㫊 㪽㫉㪸㫅㪺㫀㫊㪺㪼㫅㫊㫀㫊 㪺㫆㫄㫇㫉㪼㫊㫊㪸 㫇㪸㫉㪸㪾㫌㪸㫐㪼㫅㫊㫀㫊
㪿㫌㫄㪼㫉㪸㫃㫀㫊 㫄㪸㫅㫌㪼㫃㫀 㫄㪸㫉㪾㫀㫅㪸㫋㫌㫊 㫄㪸㫉㪾㫀㫅㪸㫋㫌㫊 㫉㪿㫆㫄㪹㪼㫌㫊 㫉㪿㫆㫄㪹㪼㫌㫊 㫉㪿㫆㫄㪹㪼㫌㫊 㫊㪼㫉㫉㫌㫃㪸㫋㫌㫊 㫊㪼㫉㫉㫌㫃㪸㫋㫌㫊 㫊㫇㫀㫃㫆㫇㫃㪼㫌㫉㪸 㫊㫇㫀㫃㫆㫇㫃㪼㫌㫉㪸 㫊㫇㫀㫃㫆㫇㫃㪼㫌㫉㪸 㫊㫇㫀㫃㫆㫇㫃㪼㫌㫉㪸 㫊㫇㫀㫃㫆㫇㫃㪼㫌㫉㪸 㫊㫇㫀㫃㫆㫇㫃㪼㫌㫉㪸 㫊㫇㫀㫃㫆㫇㫃㪼㫌㫉㪸
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㪹㫆㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷
㪺㫐㫋㫆㫋㫐㫇㪼㩷㪈 㪺㫐㫋㫆㫋㫐㫇㪼㩷㪉 㪺㫐㫋㫆㫋㫐㫇㪼㩷㪊
㪺㫐㫋㫆㫋㫐㫇㪼㩷㪘 㪺㫐㫋㫆㫋㫐㫇㪼㩷㪚 㪺㫐㫋㫆㫋㫐㫇㪼㩷㪛 㪺㫐㫋㫆㫋㫐㫇㪼㩷㪸 㪺㫐㫋㫆㫋㫐㫇㪼㩷㪹 㪺㫐㫋㫆㫋㫐㫇㪼㩷㪺
㪧㫉㫀㫊㫋㫆㪹㫉㫐㪺㫆㫅
㪺㫐㫋㫆㫋㫐㫇㪼㩷㪈 㪺㫐㫋㫆㫋㫐㫇㪼㩷㪉
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪫㪸㪹㫃㪼㩷㪍㪅㪈㪉㩷㩷㪦㫉㪻㪼㫉㩷㪚㪟㪘㪩㪘㪚㪠㪝㪦㪩㪤㪜㪪㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷
㪈㪏㪤㩷㪂㩷㪉㪍㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪈㪉㪘
㪈㪇㪤㩷㪂㩷㪉㪉㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪈㪋㪘 㪍㪤㩷㪂㩷㪉㪏㪪㪤㩷㪂㩷㪏㪪㪫㩷㪂㩷㪏㪘 㪍㪤㩷㪂㩷㪊㪇㪪㪤㩷㪂㩷㪏㪪㪫㩷㪂㩷㪍㪘
㪌㪇 㪌㪇 㪌㪇
㪈㪇㪤㩷㪂㩷㪈㪏㪪㪤㩷㪂㩷㪈㪉㪪㪫㩷㪂㩷㪈㪇㪘 㪉㪏㩷㪤㪆㪪㪤㩷㪂㩷㪉㪉㩷㪪㪫㪆㪘
㪌㪇 㪌㪇 㪌㪇
㪝㪃㩷㪤
㪌㪇 㪍㪤㩷㪂㩷㪉㪉㪪㪤㩷㪂㩷㪈㪉㪪㪫㩷㪂㩷㪈㪇㪘
㪈㪇㪤㩷㪂㩷㪉㪋㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪈㪉㪘
㪌㪇
㪌㪇
㪈㪇㪤㩷㪂㩷㪉㪍㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪈㪇㪘
㪌㪇
㪌㪇
㪌㪇
㪈㪇㪤㩷㪂㩷㪉㪍㪪㪤㩷㪂㩷㪏㪪㪫㩷㪂㩷㪍㪘
㪉㪉㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪍㪘
㪌㪇 㪌㪇㪁
㪋㪉㩷㪤㪆㪪㪤㩷㪂㩷㪏㪘 㪈㪇㪤㩷㪂㩷㪊㪉㪪㪤㩷㪂㩷㪏㪘
㪌㪇 㪌㪇
㪈㪐㪤㩷㪂㩷㪉㪍㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪈㪈㪘
㪝㪃㩷㪤
㪝㪃㩷㪤
㪝㪃㩷㪤
㪍㪇 㪍㪇
㪝㪃㩷㪤 㪝㪃㩷㪤
㪉㪋㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪈㪉㪘
㪍㪇 㪉㪇㪤㩷㪂㩷㪉㪍㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪈㪇㪘
㪉㪊㪤㩷㪂㩷㪉㪈㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪈㪉㪘
㪍㪇 㪍㪇
㪉㪋㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪈㪉㪘
㪌㪇㩷㪤㪆㪪㪤㩷㪂㩷㪈㪇㪘
㪍㪇
㪍㪇
㪋㪋㩷㪤㪆㪪㪤㩷㪂㩷㪈㪍㩷㪪㪫㪆㪘
㪉㪇㪤㩷㪂㩷㪉㪉㪪㪤㩷㪂㩷㪏㪪㪫㩷㪂㩷㪈㪇㪘
㪍㪇 㪍㪇
㪉㪉㪤㩷㪂㩷㪉㪋㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪈㪇㪘
㪌㪏
㪊㪇㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪈㪇㪘 㪉㪇㪤㩷㪂㩷㪉㪋㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪈㪇㪘
㪍㪇
㪝㪃㩷㪤
㪝㪃㩷㪤
㪝㪃㩷㪤
㪝㪃㩷㪤
㪍㪇
㪈㪏㪤㩷㪂㩷㪉㪍㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪈㪉㪘
㪍㪇 㪝㪃㩷㪤
㪈㪍㪤㩷㪂㩷㪉㪍㪪㪤㩷㪂㩷㪏㪪㪫㩷㪂㩷㪈㪇㪘
㪍㪇
㪝㪃㩷㪤
㪉㪉㪤㩷㪂㩷㪉㪋㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪏㪘
㪈㪍㪤㩷㪂㩷㪉㪍㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪈㪉㪘
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪍㪇
㪍㪇
㪛 㪉㫅
㪝㪃㩷㪤
㪚 㪪㪼㫏
㪎㪏
㪎㪏
㪎㪏
㪏㪍
㪏㪋
㪏㪉
㪏㪋
㪏㪍
㪏㪍
㪐㪉
㪐㪉
㪐㪉
㪈㪇㪌
㪈㪇㪋
㪈㪇㪍
㪈㪇㪋
㪈㪇㪋
㪈㪇㪋
㪈㪈㪇
㪈㪇㪋
㪈㪇㪉
㪈㪇㪋
㪈㪇㪋
㪈㪇㪍
㪈㪇㪋
㪈㪇㪉
㪈㪇㪍
㪈㪇㪉
㪏
㪏
㪍㪄㪈㪇
㪈㪉
㪐㪇
㪐㪇
㪐㪋
㪐㪉
㪏㪍
㪏㪏
㪐㪇
㪐㪋
㪐㪋
㪐㪉
㪐㪉
㪈㪇㪐
㪈㪇㪏
㪈㪈㪇
㪈㪇㪏
㪈㪇㪏
㪉
㪍
㪉
㪋
㪈㪄㪋
㪈㪄㪋
㪈㪄㪋
㪉
㪉
㪉
㪉
㪈㪈
㪈㪉
㪈㪇
㪈㪇㪏 㪌㪄㪈㪉
㪈㪈㪇 㪌㪄㪈㪇
㪈㪈㪇
㪈㪇㪍 㪌㪄㪈㪉
㪈㪈㪇 㪌㪄㪈㪉
㪈㪈㪇
㪈㪇㪏
㪈㪈㪇
㪈㪈㪉 㪌㪄㪈㪉
㪈㪇㪏
㩿㪉㪅㪈㩷㪝㪛㪀
㪉㪅㪋㩷㪝㪛
㪊㪅㪉㩷㪝㪛
㪊㪅㪌㩷㪝㪛
㪊㪅㪌㩷㪝㪛
㩿㪊㪅㪉㩷㪝㪛㪀
㩿㪉㪅㪐㩷㪝㪛㪀
㪝 㪞 㪟 㪠 㪥㪝㪈 㪥㪝㪉 㪘㪾㪄 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㪥㪦㪩㫊 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪘㪚㪥㪔㪌㪉
㪘㪚㪥㪔㪌㪉
㪈㪙
㪘㪚㪥㪔㪌㪉
㪘㪚㪥㪔㪌㪉
㪘㪚㪥㪔㪌㪉
㪘㪚㪥㪔㪌㪉
㪘㪚㪥㪔㪌㪉
㪘㪚㪥㪔㪌㪉
㪘㪚㪥㪔㪌㪉
㪘㪚㪥㪔㪌㪉
㪘㪚㪥㪔㪌㪉
㪘㪚㪥㪔㪍㪇
㪘㪚㪥㪔㪍㪇
㪘㪚㪥㪔㪍㪇
㪘㪚㪥㪔㪍㪇
㪘㪚㪥㪔㪍㪇
㪘㪚㪥㪔㪍㪇
㪘㪚㪥㪔㪍㪇
㪘㪚㪥㪔㪍㪇
㪘㪚㪥㪔㪍㪇
㪘㪚㪥㪔㪍㪇
㪘㪚㪥㪔㪍㪇
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪩㪀
㪘㫉㪾㪼㫅㫋㫀㫅㪸
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪤㫀㫉㪸㫅㪻㪸㩷㪩㪅㪃㩷㪤㪞㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪠㪾㫌㪸㪺㫌㪃㩷㪧㪩㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪫㫀㪹㪸㪾㫀㪃㩷㪧㪩㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪩㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪩㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪩㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪤㫀㫉㪸㫅㪻㪸㩷㪩㪅㪃㩷㪤㪞㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪪㪃㩷㪤㪫㪀
㩿㪘㫉㪾㪼㫅㫋㫀㫅㪸㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪸㫆㩷㪝㫉㪸㫅㪺㫀㫊㪺㫆㩷㪩㪅㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪞㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪘㪺㫉㪼㪀
㪣㫆㫎㪼㫉㩷㪧㪸㫉㪸㫅㪸㪃㩷㪘㫉㪾㪼㫅㫋㫀㫅㪸
㪧㪸㫉㪸㪾㫌㪸㫐
㪬㫇㫇㪼㫉㩷㪧㪸㫉㪸㫅㪸
㪙㫉㪸㫑㫀㫃㩷㩿㪚㪼㫅㫋㫉㪸㫃㩷㪘㫄㪸㫑㫆㫅㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪚㪼㫅㫋㫉㪸㫃㩷㪘㫄㪸㫑㫆㫅㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪘㫄㪸㫑㫆㫅㩷㪹㪸㫊㫀㫅㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㩿㪪㪅㩷㪘㫄㪼㫉㫀㪺㪸㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪘㫄㪸㫑㫆㫅㩷㪹㪸㫊㫀㫅㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪘㫄㪸㫑㫆㫅㩷㪹㪸㫊㫀㫅㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪘㫄㪸㫑㫆㫅㩷㪹㪸㫊㫀㫅㪀
㪭㪼㫅㪼㫑㫌㪼㫃㪸㩷㩿㪙㫆㫃㫀㫍㪸㫉㪀
㪘㫉㪾㪼㫅㫋㫀㫅㪸
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪸㫉㪸㪾㫌㪸㫐㩷㪩㪅㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪘㫄㪸㫑㫆㫅㩷㪹㪸㫊㫀㫅㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪘㫄㪸㫑㫆㫅㩷㪹㪸㫊㫀㫅㪀
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪫㪄㪏㪇
㪘㪄㪈㪋㪃㩷㪝㪄㪉㪇
㪤㪄㪏㪍㪃㩷㪚㪄㪐㪊
㪚㪄㪐㪋
㪚㪄㪐㪏
㪛㪄㪉㪐
㪛㪄㪉㪐
㪧㪄㪈
㪧㪄㪈
㪧㪄㪈
㪚㪄㪐㪋
㪝㪄㪊㪐㪃㩷㪚㪄㪐㪋
㪝㪄㪉㪇㪃㩷㪪㪄㪊㪇
㪘㪄㪈㪉㪉
㪧㪄㪉㪌
㪚㪄㪉㪌㪃㩷㪚㪄㪐㪋
㪚㪄㪋㪈㪃㩷㪝㪄㪉㪇
㪚㪄㪋㪈㪃㩷㪝㪄㪉㪇
㪚㪄㪋㪈
㪚㪄㪈㪇㪊
㪚㪄㪈㪇㪊
㪚㪄㪐㪋㪃㩷㪚㪄㪈㪇㪊㪃㩷㪥㪄㪎㪈
㪞㪄㪐㪇㪃㩷㪚㪄㪐㪊
㪧㪄㪏㪏
㪥㪄㪏
㪥㪄㪐
㪥㪄㪐
㪥㪄㪍㪇
㪝㪄㪉㪇
㪚㪄㪏㪎
㪥㪄㪎㪈
㪥㪄㪎㪈
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
84
㪘㫊㫋㫐㪸㫅㪸㫏 㪘㫊㫋㫐㪸㫅㪸㫏 㪘㫊㫋㫐㪸㫅㪸㫏 㪘㫊㫋㫐㪸㫅㪸㫏 㪘㫊㫋㫐㪸㫅㪸㫏 㪘㫊㫋㫐㪸㫅㪸㫏 㪘㫊㫋㫐㪸㫅㪸㫏 㪘㫊㫋㫐㪸㫅㪸㫏 㪘㫊㫋㫐㪸㫅㪸㫏 㪘㫊㫋㫐㪸㫅㪸㫏 㪘㫊㫋㫐㪸㫅㪸㫏 㪘㫊㫋㫐㪸㫅㪸㫏 㪘㫊㫋㫐㪸㫅㪸㫏 㪘㫊㫋㫐㪸㫅㪸㫏 㪘㫊㫋㫐㪸㫅㪸㫏 㪘㫊㫋㫐㪸㫅㪸㫏 㪘㫊㫋㫐㪸㫅㪸㫏 㪘㫊㫋㫐㪸㫅㪸㫏 㪘㫊㫋㫐㪸㫅㪸㫏 㪘㫊㫋㫐㪸㫅㪸㫏 㪘㫊㫋㫐㪸㫅㪸㫏 㪘㫊㫋㫐㪸㫅㪸㫏 㪘㫊㫋㫐㪸㫅㪸㫏 㪘㫊㫋㫐㪸㫅㪸㫏 㪘㫊㫋㫐㪸㫅㪸㫏 㪘㫊㫋㫐㪸㫅㪸㫏 㪘㫊㫋㫐㪸㫅㪸㫏 㪘㫊㫋㫐㪸㫅㪸㫏 㪘㫊㫋㫐㪸㫅㪸㫏 㪘㫊㫋㫐㪸㫅㪸㫏 㪘㫊㫋㫐㪸㫅㪸㫏 㪘㫊㫋㫐㪸㫅㪸㫏 㪘㫊㫋㫐㪸㫅㪸㫏 㪘㫊㫋㫐㪸㫅㪸㫏 㪘㫊㫋㫐㪸㫅㪸㫏
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪹㫀㫄㪸㪺㫌㫃㪸㫋㫌㫊 㪹㫀㫄㪸㪺㫌㫃㪸㫋㫌㫊 㪹㫀㫄㪸㪺㫌㫃㪸㫋㫌㫊 㪹㫀㫄㪸㪺㫌㫃㪸㫋㫌㫊㩷㫃㪸㪺㫌㫊㫋㫉㫀㫊 㪹㫆㪺㫂㫄㪸㫅㫅㫀 㪼㫀㪾㪼㫅㫄㪸㫅㫅㫀㫆㫉㫌㫄 㪼㫀㪾㪼㫅㫄㪸㫅㫅㫀㫆㫉㫌㫄 㪼㫀㪾㪼㫅㫄㪸㫅㫅㫀㫆㫉㫌㫄 㪽㪸㫊㪺㫀㪸㫋㫌㫊 㪽㪸㫊㪺㫀㪸㫋㫌㫊 㪽㪸㫊㪺㫀㪸㫋㫌㫊 㪽㪸㫊㪺㫀㪸㫋㫌㫊 㪽㪸㫊㪺㫀㪸㫋㫌㫊 㪽㪸㫊㪺㫀㪸㫋㫌㫊 㪽㪸㫊㪺㫀㪸㫋㫌㫊 㪽㪸㫊㪺㫀㪸㫋㫌㫊 㪽㪸㫊㪺㫀㪸㫋㫌㫊 㪽㪸㫊㪺㫀㪸㫋㫌㫊 㪽㪸㫊㪺㫀㪸㫋㫌㫊 㪽㪸㫊㪺㫀㪸㫋㫌㫊 㪾㫀㫋㫆㫅 㪿㪸㫊㫋㪸㫋㫌㫊 㪿㪸㫊㫋㪸㫋㫌㫊 㪿㪸㫊㫋㪸㫋㫌㫊 㫀㫅㫋㪼㫉㫄㪼㪻㫀㫌㫊 㫁㪸㫅㪼㫀㫉㫆㪼㫅㫊㫀㫊 㫁㫆㫉㪻㪸㫅㫀 㪘㫅㫆㫇㫋㫀㪺㪿㫋㪿㫐㫊㩷 㫁㫆㫉㪻㪸㫅㫀 㪘㫅㫆㫇㫋㫀㪺㪿㫋㪿㫐㫊㩷 㫄㪼㫏㫀㪺㪸㫅㫌㫊 㪸㪽㪽㪅㩷㫄㪼㫏㫀㪺㪸㫅㫌㫊 㫇㪸㫉㪸㪿㫐㪹㪸㪼 㫊㪺㪸㪹㫉㫀㫇㫀㫅㫅㫀㫊 㫊㪺㪸㪹㫉㫀㫇㫀㫅㫅㫀㫊 㫊㪺㪸㪹㫉㫀㫇㫀㫅㫅㫀㫊 㫊㪺㪸㪹㫉㫀㫇㫀㫅㫅㫀㫊
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㪹㫆㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷
㪫㪸㪹㫃㪼㩷㪍㪅㪈㪉㩷㩷㪦㫉㪻㪼㫉㩷㪚㪟㪘㪩㪘㪚㪠㪝㪦㪩㪤㪜㪪㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷
㪏㪤㩷㪂㩷㪉㪉㪪㪤㩷㪂㩷㪈㪉㪪㪫㩷㪂㩷㪍㪘 㪏㪤㩷㪂㩷㪉㪉㪪㪤㩷㪂㩷㪈㪉㪪㪫㩷㪂㩷㪍㪘 㪈㪉㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪋㪘 㪈㪉㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪊㪘 㪈㪉㪤㩷㪂㩷㪈㪐㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪍㪘 㪈㪉㪤㩷㪂㩷㪉㪈㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪋㪘 㪈㪉㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪌㪘
㪌㪇 㪎㪌 㪋㪏 㪋㪍 㪋㪏 㪋㪏 㪋㪍 㪋㪌 㪋㪎 㪋㪎 㪋㪎
㪝㪃㩷㪤 㪝㪃㩷㪤 㪝㪃㩷㪤 㪝㪃㩷㪤 㪝㪃㩷㪤
㪌㪇
㪝㪃㩷㪤
㪍㪤㩷㪂㩷㪉㪋㪪㪤㩷㪂㩷㪏㪪㪫㩷㪂㩷㪈㪉㪘
㪍㪤㩷㪂㩷㪉㪏㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪈㪇㪘
㪏㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪈㪍㪘
㪌㪇 㪌㪇
㪝 㪝㪃㩷㪤
㪏㪤㩷㪂㩷㪈㪏㪪㪤㩷㪂㩷㪈㪉㪪㪫㩷㪂㩷㪈㪇㪘 㪍㪤㩷㪂㩷㪏㪪㪤㩷㪂㩷㪊㪍㪘
㪋㪏 㪌㪇
㪏㪤㩷㪂㩷㪈㪏㪪㪤㩷㪂㩷㪈㪉㪪㪫㩷㪂㩷㪈㪉㪘
㪌㪇 㪝㪃㩷㪤
㪋㪇㩷㪤㪆㪪㪤㩷㪂㩷㪈㪇㪪㪫
㪌㪇
㪌㪇㪁
㪋㪇㩷㪤㪆㪪㪤㩷㪂㩷㪈㪇㪪㪫
㪍㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪈㪋㪪㪫㩷㪂㩷㪈㪍㪘
㪍㪤㩷㪂㩷㪏㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪊㪉㪘
㪏㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪈㪍㪪㪫㩷㪂㩷㪋㪘
㪏㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪈㪍㪪㪫㩷㪂㩷㪋㪘
㪝㪃㩷㪤
㪝㪃㩷㪤
㪌㪇
㪌㪇
㪌㪇
㪌㪇
㪝㪃㩷㪤
㪍㪤㩷㪂㩷㪏㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪊㪉㪘
㪌㪇
㪝㪃㩷㪤
㪏㪤㩷㪂㩷㪈㪇㪪㪤㩷㪂㩷㪈㪋㪪㪫㩷㪂㩷㪈㪏㪘
㪌㪇
㪝㪃㩷㪤
㪌㪇
㪋㪤㩷㪂㩷㪏㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪉㪏㪘
㪋㪏
㪝㪃㩷㪤
㪝㪃㩷㪤
㪍㪤㩷㪂㩷㪏㪪㪤㩷㪂㩷㪏㪪㪫㩷㪂㩷㪉㪏㪘
㪋㪏
㪝㪃㩷㪤
㪏㪤㩷㪂㩷㪉㪋㪪㪤㩷㪂㩷㪈㪋㪪㪫㩷㪂㩷㪉㪘
㪋㪏
㪝㪃㩷㪤
㪏㪤㩷㪂㩷㪉㪍㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪉㪘
㪋㪍
㪝㪃㩷㪤
㪍㪤㩷㪂㩷㪉㪋㪪㪤㩷㪂㩷㪏㪪㪫㩷㪂㩷㪏㪘
㪈㪋㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪈㪇㪘
㪐㪤㩷㪂㩷㪊㪇㪪㪤㩷㪂㩷㪈㪉㪪㪫㩷㪂㩷㪉㪋㪘
㪍㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪏㪪㪫㩷㪂㩷㪈㪍㪘
㪌㪇
㪌㪇 㪈㪇㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪈㪉㪪㪫㩷㪂㩷㪈㪍㪘
㪋㪇㩷㪤㪆㪪㪤㩷㪂㩷㪈㪇㩷㪪㪫㪆㪘
㪌㪇㪁
㪊㪋㩷㪤㪆㪪㪤㩷㪂㩷㪈㪍㩷㪪㪫㪆㪘
㪌㪇
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪌㪇
㪛 㪉㫅
㪝㪃㩷㪤
㪚 㪪㪼㫏
㪏㪇
㪏㪋
㪎㪏
㪍㪋
㪎㪋
㪎㪍
㪐㪇
㪐㪇
㪎㪇
㪍㪋
㪍㪋
㪍㪏
㪍㪉
㪍㪋
㪎㪍
㪎㪍
㪏㪇
㪏㪇
㪎㪐
㪏㪇
㪎㪏
㪎㪎
㪎㪏
㪎㪏
㪎㪏
㪎㪍
㪏㪉
㪈㪈㪋
㪎㪍
㪎㪉
㪐㪇
㪏㪋
㪏㪏
㪐㪇
㪏㪋
㪏㪍
㪏㪏
㪈㪇㪇
㩿㪐㪉㪀
㪈㪇㪇
㪏㪋
㪍㪏
㪍㪏
㪏㪉
㪎㪉
㪎㪉
㪐㪉
㪐㪉
㪐㪋
㪐㪇
㪏㪐
㪐㪇
㪏㪏
㪏㪎
㪏㪏
㪐㪇
㪐㪇
㪏㪋
㪏㪍
㪈㪉㪍
㪏㪋
㪏㪋
㩿㪐㪍㪀
㪌
㪊
㪊
㪋㪄㪈㪉
㪍
㪍
㪍
㪉
㪊
㪊
㪊
㪉㪄㪌
㪉
㪉
㪉
㪉
㪉
㪉㪃㩷㪋
㪉
㪌
㪈㪄㪋
㪉
㪉
㩿㪉㪅㪏㩷㪝㪛㪀
㩿㪊㪅㪌㩷㪝㪛㪀
㪉㪅㪐㩷㪝㪛
㪝 㪞 㪟 㪠 㪥㪝㪈 㪥㪝㪉 㪘㪾㪄 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㪥㪦㪩㫊 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪘㪚㪥㪔㪌㪉
㪘㪚㪥㪔㪌㪉
㪘㪚㪥㪔㪌㪉
㪇㪄㪋㩷㪙
㪘㪚㪥㪔㪌㪉
㪇㪄㪉㩷㪙
㪘㪚㪥㪔㪌㪉
㪘㪚㪥㪔㪌㪉
㪘㪚㪥㪔㪌㪉
㪘㪚㪥㪔㪌㪉
㪘㪚㪥㪔㪌㪉
㪘㪚㪥㪔㪌㪉
㪘㪚㪥㪔㪌㪉
㪘㪚㪥㪔㪌㪉
㪘㪚㪥㪔㪌㪉
㪘㪚㪥㪔㪌㪉
㪘㪚㪥㪔㪌㪉
㪘㪚㪥㪔㪌㪉
㪇㪄㪈㩷㪙㪃㩷㪘㪚㪥㪔㪌㪉
㪘㪚㪥㪔㪌㪉
㪘㪚㪥㪔㪌㪉
㪇㪄㪈㩷㪙
㪇㪄㪈㩷㪙㪃㩷㪘㪚㪥㪔㪌㪇
㩷㪊㪯
㪘㪚㪥㪔㪌㪉
㪘㪚㪥㪔㪌㪉
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪞㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪞㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪞㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪜㪪㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪸㫉㪸㫀㪹㪸㩷㪹㪸㫊㫀㫅㪀
㪤㪼㫏㫀㪺㫆
㪬㪪㪘㩷㩿㪫㪯㪀
㩿㪪㪅㩷㪘㫄㪼㫉㫀㪺㪸㪀
㩿㪤㪼㫏㫀㪺㫆㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪩㪡㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪩㪡㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪩㪡㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪩㪡㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪩㪡㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪧㫀㫌㫄㪿㫀㩷㪩㪅㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪞㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪡㫌㫈㫌㫀㪸㩷㪩㪅㪃㩷㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪞㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪞㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪞㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪞㪀
㪙㫉㪸㫑㫀㫃
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪞㪀
㩿㪙㫉㪸㫑㫀㫃㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪩㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪩㪀
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪙㪄㪎㪇
㪙㪄㪎㪇
㪙㪄㪎㪇
㪪㪄㪈㪇㪍
㪚㪄㪊㪐㪃㩷㪢㪄㪈㪐
㪚㪄㪐㪏
㪢㪄㪍㪊
㪪㪄㪈㪌㪉
㪢㪄㪍㪊
㪚㪄㪉㪍㪃㩷㪚㪄㪐㪋
㪢㪄㪈㪐
㪢㪄㪈㪉㪈
㪢㪄㪈㪉㪈
㪢㪄㪈㪉㪈
㪢㪄㪈㪐
㪧㪄㪐㪈
㪧㪄㪐㪈㪃㩷㪚㪄㪐㪋
㪤㪄㪏㪍
㪤㪄㪏㪍
㪧㪄㪎㪐
㪧㪄㪎㪐
㪧㪄㪎㪐
㪧㪄㪎㪐
㪧㪄㪎㪐㪃㩷㪧㪄㪏㪇㪃㩷㪚㪄㪐㪏
㪧㪄㪎㪐㩷
㪚㪄㪊㪐
㪤㪄㪏㪌㪃㩷㪚㪄㪐㪊
㪫㪄㪎㪎㪃㩷㪚㪄㪐㪏
㪝㪄㪍
㪝㪄㪍
㪢㪄㪈㪉㪍
㪚㪄㪐㪋
㪪㪄㪈㪌㪉
㪫㪄㪏㪇
㪫㪄㪏㪇
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
85
㪘㫊㫋㫐㪸㫅㪸㫏 㪘㫊㫋㫐㪸㫅㪸㫏 㪘㫊㫋㫐㪸㫅㪸㫏 㪘㫊㫋㫐㪸㫅㪸㫏 㪘㫊㫋㫐㪸㫅㪸㫏 㪘㫊㫋㫐㪸㫅㪸㫏 㪘㫊㫋㫐㪸㫅㪸㫏 㪘㫊㫋㫐㪸㫅㪸㫏 㪘㫊㫋㫐㪸㫅㪸㫏 㪘㫊㫋㫐㪸㫅㪸㫏 㪘㫊㫋㫐㪸㫅㪸㫏 㪘㫊㫋㫐㪸㫅㪸㫏 㪘㫊㫋㫐㪸㫅㪸㫏 㪘㫊㫋㫐㪸㫅㪸㫏 㪘㫊㫋㫐㪸㫅㪸㫏 㪘㫊㫋㫐㪸㫅㪸㫏 㪘㫊㫋㫐㪸㫅㪸㫏 㪘㫊㫋㫐㪸㫅㪸㫏 㪘㫊㫋㫐㪸㫅㪸㫏 㪘㫊㫋㫐㪸㫅㪸㫏 㪘㫊㫋㫐㪸㫅㪸㫏 㪘㫊㫋㫐㪸㫅㪸㫏 㪘㫊㫋㫐㪸㫅㪸㫏 㪘㫊㫋㫐㪸㫅㪸㫏 㪘㫊㫋㫐㪸㫅㪸㫏 㪘㫊㫋㫐㪸㫅㪸㫏 㪘㫊㫋㫐㪸㫅㪸㫏 㪘㫊㫋㫐㪸㫅㪸㫏 㪘㫊㫋㫐㪸㫅㪸㫏 㪘㫊㫋㫐㪸㫅㪸㫏 㪘㫊㫋㫐㪸㫅㪸㫏 㪘㫊㫋㫐㪸㫅㪸㫏 㪘㫊㫋㫐㪸㫅㪸㫏 㪙㫉㫐㪺㫆㫅㪸㫄㪼㫉㫀㪺㫌㫊 㪙㫉㫐㪺㫆㫅㪸㫄㪼㫉㫀㪺㫌㫊
㫊㫇㪅㩷㪙 㫊㫇㪅㩷㪚 㫊㫇㪅 㫊㫇㪅㩷 㪸㪽㪽㪅㩷㪼㫏㫆㪻㫆㫅 㪸㪽㪽㪅㩷㪼㫏㫆㪻㫆㫅
㫊㪺㪸㪹㫉㫀㫇㫀㫅㫅㫀㫊 㫊㪺㪸㪹㫉㫀㫇㫀㫅㫅㫀㫊 㫊㪺㪸㪹㫉㫀㫇㫀㫅㫅㫀㫊 㫊㪺㪸㪹㫉㫀㫇㫀㫅㫅㫀㫊 㫊㪺㪸㪹㫉㫀㫇㫀㫅㫅㫀㫊 㫊㪺㪸㪹㫉㫀㫇㫀㫅㫅㫀㫊 㫊㪺㪸㪹㫉㫀㫇㫀㫅㫅㫀㫊 㫊㪺㪸㪹㫉㫀㫇㫀㫅㫅㫀㫊 㫊㪺㪸㪹㫉㫀㫇㫀㫅㫅㫀㫊 㫊㪺㪸㪹㫉㫀㫇㫀㫅㫅㫀㫊 㫊㪺㪸㪹㫉㫀㫇㫀㫅㫅㫀㫊 㫊㪺㪸㪹㫉㫀㫇㫀㫅㫅㫀㫊 㫊㪺㪸㪹㫉㫀㫇㫀㫅㫅㫀㫊 㫊㪺㪸㪹㫉㫀㫇㫀㫅㫅㫀㫊 㫊㪺㪸㪹㫉㫀㫇㫀㫅㫅㫀㫊 㫊㪺㪸㪹㫉㫀㫇㫀㫅㫅㫀㫊 㫊㪺㪸㪹㫉㫀㫇㫀㫅㫅㫀㫊 㫊㪺㪸㪹㫉㫀㫇㫀㫅㫅㫀㫊 㫊㪺㪸㪹㫉㫀㫇㫀㫅㫅㫀㫊 㫊㪺㪸㪹㫉㫀㫇㫀㫅㫅㫀㫊㩷㫇㪸㫉㪸㫅㪸㪼 㫊㪺㪸㪹㫉㫀㫇㫀㫅㫅㫀㫊㩷㫇㪸㫉㪸㫅㪸㪼 㫊㪺㪸㪹㫉㫀㫇㫀㫅㫅㫀㫊㩷㫇㪸㫉㪸㫅㪸㪼 㪸㪽㪽㪅㩷㫊㪺㪸㪹㫉㫀㫇㫀㫅㫅㫀㫊 㪸㪽㪽㪅㩷㫊㪺㪸㪹㫉㫀㫇㫀㫅㫅㫀㫊 㫊㪺㪿㫌㪹㪸㫉㫋㫀 㫊㪺㪿㫌㪹㪸㫉㫋㫀 㫊㪺㪿㫌㪹㪸㫉㫋㫀 㫊㪺㪿㫌㪹㪸㫉㫋㫀 㫋㪸㪼㫅㫀㪸㫋㫌㫊
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㪹㫆㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷
㪺㫐㫋㫆㫋㫐㫇㪼㩷㪠 㪺㫐㫋㫆㫋㫐㫇㪼㩷㪠㪠
㪺㫐㫋㫆㫋㫐㫇㪼㩷㪠 㪺㫐㫋㫆㫋㫐㫇㪼㩷㪠㪠 㪺㫐㫋㫆㫋㫐㫇㪼㩷㪠㪠㪠
㪺㫐㫋㫆㫋㫐㫇㪼㩷㪠 㪺㫐㫋㫆㫋㫐㫇㪼㩷㪠㪠
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪫㪸㪹㫃㪼㩷㪍㪅㪈㪉㩷㩷㪦㫉㪻㪼㫉㩷㪚㪟㪘㪩㪘㪚㪠㪝㪦㪩㪤㪜㪪㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷
㪏㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪈㪉㪪㪫㩷㪂㩷㪈㪇㪘 㪏㪤㩷㪂㩷㪉㪉㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪈㪇㪘
㪌㪇 㪌㪇
㪋㪏
㪝㪃㩷㪤 㪌㪉 㪌㪉
㪝㪃㩷㪤 㪝㪃㩷㪤
㪌㪇
㪌㪇
㪝㪃㩷㪤
㪈㪇㪤㩷㪂㩷㪉㪋㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪈㪉㪘
㪈㪍㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪈㪏㪘
㪍㪤㩷㪂㩷㪈㪏㪪㪤㩷㪂㩷㪈㪋㪪㪫㩷㪂㩷㪈㪇㪘
㪋㪤㩷㪂㩷㪉㪉㪪㪤㩷㪂㩷㪏㪪㪫㩷㪂㩷㪈㪍㪘
㪍㪤㩷㪂㩷㪉㪋㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪈㪋㪘
㪈㪉㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪉㪋㪪㪫㩷㪂㩷㪈㪉㪘
㪌㪇
㪌㪇 㪝㪃㩷㪤
㪈㪉㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪈㪇㪪㪫 㪈㪋㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪉㪘㩷
㪊㪍 㪊㪍
㪉㪋㪤㩷㪂㩷㪉㪈㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪊㪘
㪌㪋 㪝
㪈㪍㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪉㪘
㪝㪃㩷㪤
㪐㪤㩷㪂㩷㪊㪊㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪉㪋㪘
㪎㪉 㪊㪍
㪝 㪝㪃㩷㪤
㪋㪤㩷㪂㩷㪊㪇㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪈㪉㪘 㪍㪤㩷㪂㩷㪉㪉㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪈㪍㪘
㪌㪇 㪋㪏
㪝㪃㩷㪤 㪝㪃㩷㪤
㪏㪤㩷㪂㩷㪉㪉㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪈㪇㪘
㪏㪤㩷㪂㩷㪉㪍㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪏㪘
㪝㪃㩷㪤
㪍㪤㩷㪂㩷㪉㪉㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪈㪍㪘
㪏㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪈㪋㪘
㪋㪍
㪋㪏
㪝㪃㩷㪤
㪏㪤㩷㪂㩷㪉㪋㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪈㪉㪘
㪋㪏
㪋㪏
㪝㪃㩷㪤
㪈㪇㪤㩷㪂㩷㪉㪋㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪏㪘
㪈㪇㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪏㪪㪫㩷㪂㩷㪈㪇㪘
㪝㪃㩷㪤
㪋㪏
㪝㪃㩷㪤
㪝㪃㩷㪤
㪋㪏
㪝㪃㩷㪤
㪍㪤㩷㪂㩷㪉㪏㪪㪤㩷㪂㩷㪈㪍㪘
㪍㪤㩷㪂㩷㪊㪇㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪈㪇㪘
㪌㪇
㪌㪇
㪝㪃㩷㪤
㪍㪤㩷㪂㩷㪉㪉㪪㪤㩷㪂㩷㪏㪪㪫㩷㪂㩷㪈㪉㪘
㪋㪤㩷㪂㩷㪉㪍㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪈㪍㪘
㪋㪤㩷㪂㩷㪈㪇㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪊㪇㪘
㪍㪤㩷㪂㩷㪉㪋㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪈㪋㪘
㪍㪤㩷㪂㩷㪉㪉㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪈㪉㪘
㪍㪤㩷㪂㩷㪉㪉㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪈㪉㪘
㪍㪤㩷㪂㩷㪉㪉㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪈㪉㪘
㪍㪤㩷㪂㩷㪉㪉㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪈㪉㪘
㪐㪤㩷㪂㩷㪊㪊㪪㪤㩷㪂㩷㪈㪌㪪㪫㩷㪂㩷㪈㪏㪘
㪍㪤㩷㪂㩷㪉㪉㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪈㪉㪘
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪝㪃㩷㪤
㪌㪇
㪝㪃㩷㪤
㪌㪇
㪝㪃㩷㪤 㪌㪇
㪌㪇
㪝㪃㩷㪤
㪋㪏
㪌㪇
㪝㪃㩷㪤
㪝㪃㩷㪤
㪌㪇
㪝㪃㩷㪤
㪝㪃㩷㪤
㪌㪇 㪌㪇
㪝㪃㩷㪤 㪝㪃㩷㪤
㪌㪇 㪎㪌
㪝
㪛 㪉㫅
㪝㪃㩷㪤
㪚 㪪㪼㫏
㪏㪍
㪏㪇
㪎㪉
㪎㪍
㪏㪇
㪍㪋
㪍㪋
㪍㪉
㪐㪐
㪍㪍
㪈㪈㪋
㪎㪍
㪏㪋
㪏㪇
㪎㪏
㪎㪍
㪏㪉
㪎㪏
㪎㪍
㪏㪇
㪏㪉
㪎㪏
㪏㪋
㪏㪍
㪎㪍
㪏㪇
㪍㪋
㪏㪇
㪎㪏
㪎㪏
㪎㪏
㪎㪏
㪈㪈㪎
㪎㪏
㪐㪉
㪏㪍
㪏㪍
㪏㪋
㪏㪍
㪏㪏
㪎㪇
㪎㪉
㪈㪇㪌
㪎㪇
㪈㪉㪇
㪏㪇
㪏㪏
㪐㪇
㪐㪇
㪏㪉
㪏㪏
㪏㪋
㪏㪉
㪏㪋
㪏㪏
㪏㪍
㪏㪋
㪐㪇
㪏㪋
㪏㪋
㪎㪇
㪏㪍
㪏㪏
㪏㪏
㪏㪏
㪏㪏
㪈㪊㪉
㪏㪏
㪉㪃㩷㪋
㪉㪃㩷㪋
㪉
㪋
㪋
㪍
㪏
㪎
㪊
㪈㪄㪋
㪈㪄㪊
㪈㪄㪍
㪏
㪉
㩿㪊㪅㪎㩷㪝㪛㪀
㪝 㪞 㪟 㪠 㪥㪝㪈 㪥㪝㪉 㪘㪾㪄 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㪥㪦㪩㫊 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪘㪚㪥㪔㪌㪉
㪘㪚㪥㪔㪌㪉
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪉
㪇㪄㪉㩷㪙㪃㩷㪘㪚㪥㪔㪌㪉
㪘㪚㪥㪔㪌㪉
㪇㪄㪈㩷㪙㪃㩷㪘㪚㪥㪔㪌㪉
㪊㪯
㪘㪚㪥㪔㪌㪉
㪊㪯㪃㩷㪘㪚㪥㪔㪎㪌
㪘㪚㪥㪔㪌㪇
㪇㪄㪈㩷㪙㪃㩷㪘㪚㪥㪔㪌㪉
㪇㪄㪈㩷㪙
㪘㪚㪥㪔㪌㪉
㪉㪙㪃㩷㪘㪚㪥㪔㪌㪇
㪊㪙㪃㩷㪘㪚㪥㪔㪌㪉
㪈㪙㪃㩷㪘㪚㪥㪔㪌㪉
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪇㪄㪉㩷㪙㪃㩷㪘㪚㪥㪔㪌㪉
㪇㪄㪈㩷㪙㪃㩷㪘㪚㪥㪔㪌㪉
㪘㪚㪥㪔㪌㪉
㪘㪚㪥㪔㪌㪉
㪇㩷㪙㪃㩷㪘㪚㪥㪔㪌㪉
㪇㪄㪈㩷㪙㪃㩷㪘㪚㪥㪔㪌㪉
㪇㩷㪙
㪇㪄㪈㩷㪙
㪇㪄㪉㩷㪙
㪇㪄㪉㩷㪙㪃㩷㪘㪚㪥㪔㪌㪉
㪇㪄㪉㩷㪙㪃㩷㪊㪯
㪇㪄㪉㩷㪙
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪩㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪩㪀
㪘㫉㪾㪼㫅㫋㫀㫅㪸
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪩㪃㩷㫊㫀㫅㫂㪿㫆㫃㪼㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪩㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪩㪀
㪙㫉㪸㫑㫀㫃
㪘㫉㪾㪼㫅㫋㫀㫅㪸㩷㩿㪧㪸㫉㪸㫅㬗㪀
㪘㫉㪾㪼㫅㫋㫀㫅㪸
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪩㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪩㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪩㪃㩷㪠㫍㪸㫀㩷㪹㪸㫊㫀㫅㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪩㪃㩷㪠㫍㪸㫀㩷㪹㪸㫊㫀㫅㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪩㪃㩷㪠㫍㪸㫀㩷㪹㪸㫊㫀㫅㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪩㪃㩷㪠㫍㪸㫀㩷㪹㪸㫊㫀㫅㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪩㪃㩷㪠㫍㪸㫀㩷㪹㪸㫊㫀㫅㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪩㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪩㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪩㪃㩷㪧㪸㫉㪸㫅㪸㩷㪹㪸㫊㫀㫅㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪩㪃㩷㪠㫍㪸㫀㩷㪹㪸㫊㫀㫅㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪃㩷㪎㪏㪇㫄㩷㪸㫃㫋㪅㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪃㩷㪈㪏㪇㪇㫄㩷㪸㫃㫋㪅㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪃㩷㪎㪇㪇㫄㩷㪸㫃㫋㪅㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪃㩷㪈㪏㪇㪇㫄㩷㪸㫃㫋㪅㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪃㩷㪈㪐㪉㪇㫄㩷㪸㫃㫋㪅㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪃㩷㪈㪎㪉㪇㫄㩷㪸㫃㫋㪅㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪧㪄㪉
㪧㪄㪉
㪝㪄㪉㪇
㪤㪄㪋㪎
㪢㪄㪎
㪝㪄㪎
㪪㪄㪈㪐㪉
㪘㪄㪈㪋
㪤㪄㪏㪌
㪤㪄㪏㪎
㪤㪄㪏㪍㪃㩷㪤㪄㪏㪎
㪚㪄㪎㪐
㪚㪄㪎㪐
㪤㪄㪈㪊㪌
㪧㪄㪏㪉㪃㩷㪚㪄㪐㪏
㪤㪄㪏㪍
㪝㪄㪉㪉
㪝㪄㪉㪉
㪝㪄㪉㪉
㪝㪄㪉㪈
㪝㪄㪉㪈
㪘㪄㪊㪊
㪘㪄㪊㪊
㪤㪄㪎㪌㪃㩷㪤㪄㪎㪍
㪤㪄㪎㪌㪃㩷㪤㪄㪎㪍
㪪㪄㪈㪇㪇
㪪㪄㪈㪇㪇㪃㩷㪪㪄㪈㪇㪈㪃㩷㪪㪄㪈㪎㪋
㪪㪄㪐㪐
㪪㪄㪐㪐
㪥㪄㪉㪇
㪥㪄㪉㪇
㪥㪄㪉㪇
㪭㪄㪊㪐
㪝㪄㪍
㪝㪄㪍㪃㩷㪪㪄㪏㪃㩷㪤㪄㪏㪌㪃㩷㪚㪄㪐㪊
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
86
㪙㫉㫐㪺㫆㫅㪸㫄㪼㫉㫀㪺㫌㫊 㪙㫉㫐㪺㫆㫅㪸㫄㪼㫉㫀㪺㫌㫊 㪙㫉㫐㪺㫆㫅㪸㫄㪼㫉㫀㪺㫌㫊 㪙㫉㫐㪺㫆㫅㪸㫄㪼㫉㫀㪺㫌㫊 㪙㫉㫐㪺㫆㫅㪸㫄㪼㫉㫀㪺㫌㫊 㪙㫉㫐㪺㫆㫅㪸㫄㪼㫉㫀㪺㫌㫊 㪙㫉㫐㪺㫆㫅㪼㫃㫃㪸 㪙㫉㫐㪺㫆㫅㫆㫇㫊 㪚㫋㪼㫅㫆㪹㫉㫐㪺㫆㫅 㪛㪼㫌㫋㪼㫉㫆㪻㫆㫅 㪞㫐㫄㫅㫆㪺㫆㫉㫐㫄㪹㫌㫊 㪞㫐㫄㫅㫆㪺㫆㫉㫐㫄㪹㫌㫊 㪟㪸㫊㪼㫄㪸㫅㫀㪸 㪟㪸㫊㪼㫄㪸㫅㫀㪸 㪟㪸㫊㪼㫄㪸㫅㫀㪸 㪟㪼㫄㫀㪾㫉㪸㫄㫄㫌㫊 㪟㪼㫄㫀㪾㫉㪸㫄㫄㫌㫊 㪟㪼㫄㫀㪾㫉㪸㫄㫄㫌㫊 㪟㪼㫄㫀㪾㫉㪸㫄㫄㫌㫊 㪟㪼㫄㫀㪾㫉㪸㫄㫄㫌㫊 㪟㪼㫄㫀㪾㫉㪸㫄㫄㫌㫊 㪟㪼㫄㫀㪾㫉㪸㫄㫄㫌㫊 㪟㪼㫄㫀㪾㫉㪸㫄㫄㫌㫊 㪟㪼㫄㫀㪾㫉㪸㫄㫄㫌㫊 㪟㪼㫄㫀㪾㫉㪸㫄㫄㫌㫊 㪟㪼㫄㫀㪾㫉㪸㫄㫄㫌㫊 㪟㪼㫄㫀㪾㫉㪸㫄㫄㫌㫊 㪟㪼㫄㫀㪾㫉㪸㫄㫄㫌㫊 㪟㪼㫄㫀㪾㫉㪸㫄㫄㫌㫊 㪟㪼㫄㫀㪾㫉㪸㫄㫄㫌㫊
㫇㪸㫃㫃㫀㪻㫀㪽㫉㫆㫅㫊 㪿㫌㫄㪼㫉㪸㫃㫀㫊 㪿㪸㫌㫏㫎㪼㫃㫃㫀㪸㫅㫌㫊 㫇㪼㪻㫉㫀 㫋㪼㫉㫅㪼㫋㫑㫀 㫋㪼㫉㫅㪼㫋㫑㫀 㫅㪸㫅㪸 㫅㪸㫅㪸 㫅㪸㫅㪸 㪸㫅㪸㫃㫀㫊 㪹㪼㫃㫃㫆㫋㫋㫀㫀 㪼㫉㫐㫋㪿㫉㫆㫑㫆㫅㫌㫊 㪼㫉㫐㫋㪿㫉㫆㫑㫆㫅㫌㫊 㪿㫐㪸㫅㫌㪸㫉㫐 㪿㫐㪸㫅㫌㪸㫉㫐 㫄㪸㫉㪾㫀㫅㪸㫋㫌㫊 㫄㪸㫉㪾㫀㫅㪸㫋㫌㫊 㫄㪸㫋㪼㫀 㫄㫀㪺㫉㫆㫇㫋㪼㫉㫌㫊 㫆㪺㪼㫃㫃㫀㪽㪼㫉 㫇㫌㫃㪺㪿㪼㫉 㫉㪿㫆㪻㫆㫊㫋㫆㫄㫌㫊 㫉㫆㪻㫎㪸㫐㫀 㪸㪽㪽㪅㩷㫊㪺㪿㫄㪸㫉㪻㪸㪼
㪟㫐㫇㪿㪼㫊㫊㫆㪹㫉㫐㪺㫆㫅
㫄㪸㫋㫋㪼㫀
㪟㫐㫇㪿㪼㫊㫊㫆㪹㫉㫐㪺㫆㫅
㫄㪸㫉㪾㫀㫅㪸㫋㪸 㫄㪸㫉㪾㫀㫅㪸㫋㪸
㫇㪸㫃㫀㪽㫉㫆㫅㫊 㪚㫐㫅㫆㫇㫆㫋㪸㫄㫌㫊
㪌㪉 㪌㪉 㪌㪉 㪌㪉
㪝㪃㩷㪤 㪝㪃㩷㪤 㪝㪃㩷㪤 㪝㪃㩷㪤
㪌㪇 㪌㪇
㪝㪃㩷㪤 㪝㪃㩷㪤
㪝㪃㩷㪤
㪝㪃㩷㪤
㪝
㪈㪇㪇
㪈㪇㪉
㪋
㪉
㪋
㪊㪅㪎㩷㪝㪚㪤㪃㩷㪋㪅㪉㩷㪙㪝㪘
㪊㪅㪊㩷㪝㪛
㪘㪚㪥㪔㪌㪋
㪘㪚㪥㪔㪌㪉
㪘㪚㪥㪔㪌㪋
㪘㪚㪥㪔㪌㪋
㪘㪚㪥㪔㪌㪋
㪘㪚㪥㪔㪌㪋
㪘㪚㪥㪔㪌㪋
㪘㪚㪥㪔㪌㪉
㪘㪚㪥㪔㪌㪋
㪘㪚㪥㪔㪌㪋
㪘㪚㪥㪔㪌㪋
㪘㪚㪥㪔㪌㪋
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪩㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪞㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪞㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪩㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪩㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪩㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪠㫍㪸㫀㩷㪩㪅㩷㪹㪸㫊㫀㫅㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪩㪀
㪊㪅㪇㩷㪝㪚㪤㪃㩷㪊㪅㪋㩷㪙㪝㪘
㩿㪋㪅㪇㪁㩷㪝㪚㪤㪀
㪘㪚㪥㪔㪌㪉
㪘㪚㪥㪔㪌㪉
㪘㪚㪥㪔㪌㪉
㪘㪚㪥㪔㪌㪉
㪘㪚㪥㪔㪌㪉
㪙㫉㪸㫑㫀㫃㪃㩷㪪㪸㫆㩷㪝㫉㪸㫅㪺㫀㫊㪺㫆㩷㪩㪅 㩿㪪㪅㩷㪘㫄㪼㫉㫀㪺㪸㪀
㩿㪘㫉㪾㪼㫅㫋㫀㫅㪸㪀
㩿㪪㪅㩷㪘㫄㪼㫉㫀㪺㪸㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪩㪀
㩿㪙㫉㪸㫑㫀㫃㪃㩷㪧㪼㫉㫌㪀
㩿㪙㫉㪸㫑㫀㫃㪃㩷㪧㪼㫉㫌㪀
㩿㪞㫌㫐㪸㫅㪸㪀
㩿㪞㫌㫐㪸㫅㪸㪀
㪘㪚㪥㪔㪌㪇 㪘㪚㪥㪔㪌㪉
㪌㪉
㩿㪏㪏㪀
㩿㪘㫄㪸㫑㫆㫅㩷㪩㪅㪀
㩿㪪㪅㩷㪘㫄㪼㫉㫀㪺㪸㪀
㩿㪧㪼㫉㫌㪀 㩿㪣㫆㫎㪼㫉㩷㪘㫄㪸㫑㫆㫅㩷㪩㪅㪀
㪌㪇㪁 㪌㪇㪁
㪪㪄㪈㪌㪉
㪘㪄㪈㪋㪃㩷㪭㪄㪏㪍㪃㩷㪟㪄㪈㪊
㪧㪄㪊㪏
㪚㪄㪉㪍
㪦㪄㪌㪇
㪪㪄㪊㪇
㪮㪄㪈㪎
㪮㪄㪈㪎㪃㩷㪮㪄㪈㪏
㪮㪄㪈㪎㪃㩷㪮㪄㪈㪏
㪮㪄㪈㪎㪃㩷㪮㪄㪈㪏
㪮㪄㪈㪎㪃㩷㪮㪄㪈㪏
㪧㪄㪊㪏㪃㩷㪚㪄㪐㪊
㪧㪄㪐㪇
㪧㪄㪍㪌
㪚㪄㪉㪎
㪚㪄㪉㪎㪃㩷㪧㪄㪍㪌
㪪㪄㪈㪌㪉
㪪㪄㪉㪐
㪪㪄㪈㪌㪉
㪪㪄㪊㪇
㪪㪄㪈㪌㪉㪃㩷㪭㪄㪏㪍㪃㩷㪟㪄㪈㪊
㪪㪄㪊㪇
㪪㪄㪈㪌㪉
㪪㪄㪈㪌㪉
㪧㪄㪊㪐
㪪㪄㪈㪌㪉
㪘㪄㪐㪊
㪪㪄㪈㪌㪉
㪣㪄㪎㪌㪃㩷㪦㪄㪋㪏
㪪㪄㪊㪇
㪪㪄㪈㪌㪉
㪘㪄㪈㪉㪉
㩿㪙㫉㪸㫑㫀㫃㪃㩷㪪㪸㫆㩷㪝㫉㪸㫅㪺㫀㫊㪺㫆㩷㪩㪅㪀 㪪㪄㪈㪌㪉 㩿㪪㪅㩷㪘㫄㪼㫉㫀㪺㪸㪀
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼 㪚㪄㪉㪎㪃㩷㪧㪄㪍㪌
㩿㪙㫉㪸㫑㫀㫃㪃㩷㪪㪸㫆㩷㪝㫉㪸㫅㪺㫀㫊㪺㫆㩷㪩㪅㪀 㪘㪄㪐㪊
㩿㪪㪅㩷㪘㫄㪼㫉㫀㪺㪸㪀
㪘㫉㪾㪼㫅㫋㫀㫅㪸
㪌㪇㪁
㩿㪐㪏㪀
㪉
㪉
㪘㪚㪥㪔㪌㪉
㪘㪚㪥㪔㪌㪉
㪘㪚㪥㪔㪌㪉
㪘㪚㪥㪔㪌㪉
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪘㪺㫉㪼㪀
㩿㪘㫄㪸㫑㫆㫅㩷㪩㪅㪀
㩿㪎㪇㪀
㩿㪈㪇㪇㪀
㪐㪋
㩿㪎㪇㪀
㩿㪌㪍㪀
㩿㪏㪉㪀
㪈㪇㪇
㩿㪈㪇㪇㪀
㪐㪇
㩿㪍㪇㪀
㪏㪉
㪘㪚㪥㪔㪌㪉
㪊㪏㪁
㪐㪋
㪎㪋
㪌㪇
㪈㪇㪇
㪏㪇
㪎㪍
㪍㪋
㩿㪭㪼㫅㪼㫑㫌㪼㫃㪸㪀
㪈㪇㪤㩷㪂㩷㪊㪋㪪㪤㩷㪂㩷㪍㪘
㪉㪉㩷㪤㪆㪪㪤㩷㪂㩷㪊㪇㩷㪪㪫㪆㪘
㪉㪪㪤㩷㪂㩷㪋㪍㩷㪪㪫㪆㪘
㪏㪤㩷㪂㩷㪋㪉㪪㪤
㪈㪉㪤㩷㪂㩷㪈㪏㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪈㪇㪘
㪈㪋㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪈㪏㪘
㪈㪋㩷㪤㪆㪪㪤㩷㪂㩷㪊㪍㩷㪪㪫㪆㪘
㪌㪉㪁
㪊㪍
㪌㪇㪁
㪌㪇
㪌㪋㪁
㪌㪉
㪌㪉㪁
㪋㪏
㪋㪏㪁
㪌㪋㪁
㪌㪇
㪌㪇㪁
㪌㪇
㪌㪇
㪌㪇
㪝㪃㩷㪤
㪝㪃㩷㪤
㪍㪍
㪏㪇
㪐㪇 㪐㪇
㪊
㪉㪄㪊
㪉
㪉
㪋
㪋
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪙㫉㪸㫑㫀㫃 㪈㪇㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪊㪋㪪㪫
㪈㪇㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪉㪉㪪㪫㩷㪂㩷㪍㪘
㪎㪍 㪎㪋
㪏㪏
㪐㪋
㪐㪉
㪐㪋
㪏㪏
㪐㪋
㪐㪇
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪌㪇
㪝㪃㩷㪤
㪍㪤㩷㪂㩷㪈㪏㪪㪤㩷㪂㩷㪈㪋㪪㪫㩷㪂㩷㪈㪋㪘 㪏㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪈㪍㪪㪫㩷㪂㩷㪈㪋㪘
㪍㪏
㪏㪏
㪎㪏
㪏㪉
㪏㪏
㪏㪇
㪏㪏
㪏㪉
㪝 㪞 㪟 㪠 㪥㪝㪈 㪥㪝㪉 㪘㪾㪄 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㪥㪦㪩㫊 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㩿㪙㫉㪸㫑㫀㫃㪃㩷㪧㪼㫉㫌㪀
㪌㪋
㪝
㪍㪤㩷㪂㩷㪈㪇㪪㪤㩷㪂㩷㪉㪇㪪㪫㩷㪂㩷㪈㪍㪘
㪍㪤㩷㪂㩷㪊㪇㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪈㪇㪘
㪉㪍㩷㪤㪆㪪㪤㩷㪂㩷㪉㪍㩷㪪㪫㪆㪘
㪏㪤㩷㪂㩷㪉㪉㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪈㪉㪘
㪏㪤㩷㪂㩷㪉㪏㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪈㪇㪘
㪏㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪏㪪㪫㩷㪂㩷㪈㪍㪘
㪏㪤㩷㪂㩷㪉㪏㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪈㪇㪘
㪈㪉㪤㩷㪂㩷㪈㪏㪪㪤㩷㪂㩷㪏㪪㪫㩷㪂㩷㪈㪋㪘
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪌㪇㪁
㪌㪉 㪌㪉
㪝㪃㩷㪤
㪌㪉 㪌㪉
㪝 㪝㪃㩷㪤
㫊㫇㪅㩷㪘 㫊㫇㪅㩷㪙 㫊㫇㪅㩷㪚 㫊㫇㪅㩷㪛 㫊㫇㪅㩷㪜
㪌㪉
㪝㪃㩷㪤
㪌㪉
㪛 㪉㫅
㪚 㪪㪼㫏
㪝
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉 㪺㫐㫋㫆㫋㫐㫇㪼㩷㪠 㪺㫐㫋㫆㫋㫐㫇㪼㩷㪠㪠 㪺㫐㫋㫆㫋㫐㫇㪼㩷㪠㪠㪠
㫊㫋㫉㪸㫄㫀㫅㪼㫌㫊
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㪹㫆㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷 㪸㪽㪽㪅㩷㫀㪿㪼㫉㫀㫅㪾㫀㫀 㪙㫉㫐㪺㫆㫅㪸㫄㪼㫉㫀㪺㫌㫊 㪸㪽㪽㪅㩷㫀㪿㪼㫉㫀㫅㪾㫀㫀 㪙㫉㫐㪺㫆㫅㪸㫄㪼㫉㫀㪺㫌㫊 㪸㪽㪽㪅㩷㫀㪿㪼㫉㫀㫅㪾㫀㫀 㪙㫉㫐㪺㫆㫅㪸㫄㪼㫉㫀㪺㫌㫊 㪸㪽㪽㪅㩷㫀㪿㪼㫉㫀㫅㪾㫀㫀 㪙㫉㫐㪺㫆㫅㪸㫄㪼㫉㫀㪺㫌㫊 㪸㪽㪽㪅㩷㫀㪿㪼㫉㫀㫅㪾㫀㫀 㪙㫉㫐㪺㫆㫅㪸㫄㪼㫉㫀㪺㫌㫊
㪫㪸㪹㫃㪼㩷㪍㪅㪈㪉㩷㩷㪦㫉㪻㪼㫉㩷㪚㪟㪘㪩㪘㪚㪠㪝㪦㪩㪤㪜㪪㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷
87
㪟㫐㫇㪿㪼㫊㫊㫆㪹㫉㫐㪺㫆㫅
㪟㪼㫄㫀㪾㫉㪸㫄㫄㫌㫊 㪟㪼㫄㫀㪾㫉㪸㫄㫄㫌㫊 㪟㪼㫄㫀㪾㫉㪸㫄㫄㫌㫊 㪟㪼㫄㫀㪾㫉㪸㫄㫄㫌㫊 㪟㫆㫃㫃㪸㫅㪻㫀㪺㪿㫋㪿㫐㫊 㪟㫐㫇㪿㪼㫊㫊㫆㪹㫉㫐㪺㫆㫅 㪟㫐㫇㪿㪼㫊㫊㫆㪹㫉㫐㪺㫆㫅 㪟㫐㫇㪿㪼㫊㫊㫆㪹㫉㫐㪺㫆㫅 㪟㫐㫇㪿㪼㫊㫊㫆㪹㫉㫐㪺㫆㫅 㪟㫐㫇㪿㪼㫊㫊㫆㪹㫉㫐㪺㫆㫅 㪟㫐㫇㪿㪼㫊㫊㫆㪹㫉㫐㪺㫆㫅 㪟㫐㫇㪿㪼㫊㫊㫆㪹㫉㫐㪺㫆㫅 㪟㫐㫇㪿㪼㫊㫊㫆㪹㫉㫐㪺㫆㫅 㪟㫐㫇㪿㪼㫊㫊㫆㪹㫉㫐㪺㫆㫅 㪟㫐㫇㪿㪼㫊㫊㫆㪹㫉㫐㪺㫆㫅 㪟㫐㫇㪿㪼㫊㫊㫆㪹㫉㫐㪺㫆㫅 㪟㫐㫇㪿㪼㫊㫊㫆㪹㫉㫐㪺㫆㫅 㪟㫐㫇㪿㪼㫊㫊㫆㪹㫉㫐㪺㫆㫅 㪟㫐㫇㪿㪼㫊㫊㫆㪹㫉㫐㪺㫆㫅 㪟㫐㫇㪿㪼㫊㫊㫆㪹㫉㫐㪺㫆㫅 㪟㫐㫇㪿㪼㫊㫊㫆㪹㫉㫐㪺㫆㫅 㪟㫐㫇㪿㪼㫊㫊㫆㪹㫉㫐㪺㫆㫅 㪟㫐㫇㪿㪼㫊㫊㫆㪹㫉㫐㪺㫆㫅 㪟㫐㫇㪿㪼㫊㫊㫆㪹㫉㫐㪺㫆㫅 㪟㫐㫇㪿㪼㫊㫊㫆㪹㫉㫐㪺㫆㫅 㪟㫐㫇㪿㪼㫊㫊㫆㪹㫉㫐㪺㫆㫅 㪟㫐㫇㪿㪼㫊㫊㫆㪹㫉㫐㪺㫆㫅 㪟㫐㫇㪿㪼㫊㫊㫆㪹㫉㫐㪺㫆㫅 㪟㫐㫇㪿㪼㫊㫊㫆㪹㫉㫐㪺㫆㫅 㪟㫐㫇㪿㪼㫊㫊㫆㪹㫉㫐㪺㫆㫅 㪟㫐㫇㪿㪼㫊㫊㫆㪹㫉㫐㪺㫆㫅 㪟㫐㫇㪿㪼㫊㫊㫆㪹㫉㫐㪺㫆㫅 㪟㫐㫇㪿㪼㫊㫊㫆㪹㫉㫐㪺㫆㫅 㪟㫐㫇㪿㪼㫊㫊㫆㪹㫉㫐㪺㫆㫅 㪟㫐㫇㪿㪼㫊㫊㫆㪹㫉㫐㪺㫆㫅 㪎㪉
㪝㪃㩷㪤
㫆㫉㫅㪸㫋㫌㫊 㪚㪿㪼㫀㫉㫆㪻㫆㫅㩷㫋㫉㫆㪼㫄㫅㪼㫉㫀
㩷㩾㫄㫀㫅㫆㫉㩾
㪝㪃㩷㪤
㪝㪃㩷㪤
㪎㪇
㩿㪈㪇㪇㪀
㪌㪉㪁
㪈㪏㩷㪤㪆㪪㪤㩷㪂㩷㪊㪉㪪㪫㩷㪂㩷㪉㪘
㩿㪐㪏㪀
㪌㪇㪁
㪋㪏㪁
㪌㪉㪁
㪌㪉
㪉
㩿㪊㪅㪏㩷㪝㪚㪤㪀
㪌㪇㪁
㩿㪏㪍㪀
㪏㪍 㪘㪚㪥㪔㪌㪉
㩿㪪㪅㩷㪘㫄㪼㫉㫀㪺㪸㪀
㩿㪣㫆㫎㪼㫉㩷㪘㫄㪸㫑㫆㫅㩷㪩㪅㪀
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
㪪㪄㪉㪐㪃㩷㪪㪄㪈㪌㪉㪃㩷㪪㪄㪈㪌㪊
㪪㪄㪈㪌㪉
㪚㪄㪉㪍㪃㩷㪚㪄㪐㪋
㪪㪄㪈㪌㪉㪃㩷㪭㪄㪏㪍
㪪㪄㪉㪐
㪘㪄㪐㪈
㪪㪄㪊㪇
㪪㪄㪈㪌㪉
㪪㪄㪊㪇
㪪㪄㪈㪌㪉
㪘㪄㪐㪊
㪚㪄㪐㪋
㪪㪄㪈㪌㪉
㪪㪄㪈㪌㪉
㪘㪄㪐㪊㪃㩷㪭㪄㪏㪍
㪪㪄㪈㪌㪉
㪪㪄㪈㪌㪉
㪪㪄㪈㪌㪉㪃㩷㪭㪄㪏㪍
㪪㪄㪊㪇
㪪㪄㪈㪌㪉
㪪㪄㪈㪌㪉
㪪㪄㪈㪌㪉
㪪㪄㪈㪌㪉
㪪㪄㪈㪌㪉㪃㩷㪟㪄㪈㪊
㪝㪄㪊㪇㪃㩷㪭㪄㪏㪍
㪚㪄㪋㪇
㪪㪄㪊㪇
㪚㪄㪉㪍
㪪㪄㪊㪇
㪪㪄㪊㪇
㪪㪄㪈㪌㪉
㪪㪄㪈㪌㪉
㪪㪄㪈㪌㪉
㪘㪄㪐㪊
㩿㪙㫉㪸㫑㫀㫃㪃㩷㪪㪸㫆㩷㪝㫉㪸㫅㪺㫀㫊㪺㫆㩷㪩㪅㪀 㪪㪄㪈㪌㪉
㪘㪚㪥㪔㪌㪉
㩿㪐㪇㪀
㪌㪇㪁 㪌㪇
㩿㪞㫌㫐㪸㫅㪸㪃㩷㪪㫌㫉㫀㫅㪸㫄㪼㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀 㪘㪚㪥㪔㪌㪇
㪉㪅㪊㩷㪝㪛
㪌㪇㪁 㪎㪏
㪈㪇㪇
㩿㪞㫌㫐㪸㫅㪸㪃㩷㪪㫌㫉㫀㫅㪸㫄㪼㪀
㪏㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪏㪪㪫㩷㪂㩷㪈㪋㪘
㪏㪋
㩿㪙㫉㪸㫑㫀㫃㪀
㩿㪘㫄㪸㫑㫆㫅㩷㪩㪅㪃㩷㪧㪼㫉㫌㪀
㩿㪞㫌㫐㪸㫅㪸㪀
㩿㪞㫌㫐㪸㫅㪸㪀
㩿㪙㫉㪸㫑㫀㫃㪃㩷㪙㫆㫃㫀㫍㫀㪸㪀
㩿㪙㫉㪸㫑㫀㫃㪀
㩿㪙㫉㪸㫑㫀㫃㪀
㩿㪙㫉㪸㫑㫀㫃㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㩿㪙㫉㪸㫑㫀㫃㪀
㩿㪙㫉㪸㫑㫀㫃㪀
㩿㪙㫉㪸㫑㫀㫃㪀
㩿㪪㪅㩷㪘㫄㪼㫉㫀㪺㪸㪀
㩿㪪㪅㩷㪘㫄㪼㫉㫀㪺㪸㪀
㩿㪪㪅㩷㪘㫄㪼㫉㫀㪺㪸㪀
㩿㪪㪅㩷㪘㫄㪼㫉㫀㪺㪸㪀
㩿㪙㫉㪸㫑㫀㫃㪀
㩿㪘㫉㪾㪼㫅㫋㫀㫅㪸㪃㩷㪙㫉㪸㫑㫀㫃㪀
㩿㪘㫄㪸㫑㫆㫅㩷㪩㪅㪀
㩿㪘㫄㪸㫑㫆㫅㩷㪩㪅㪀
㩿㪪㪅㩷㪘㫄㪼㫉㫀㪺㪸㪀
㩿㪪㪅㩷㪘㫄㪼㫉㫀㪺㪸㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㩿㪙㫉㪸㫑㫀㫃㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪌㪉㪁
㪌㪇
㪈㪋㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪈㪍㪪㪫㩷
㪊㪅㪎㩷㪝㪚㪤
㪘㪚㪥㪔㪌㪉
㪘㪚㪥㪔㪌㪉
㪘㪚㪥㪔㪌㪉
㪘㪚㪥㪔㪌㪉
㪘㪚㪥㪔㪌㪉
㪘㪚㪥㪔㪌㪉
㪘㪚㪥㪔㪌㪉
㪘㪚㪥㪔㪌㪉
㪘㪚㪥㪔㪌㪉
㪘㪚㪥㪔㪌㪉
㪘㪚㪥㪔㪌㪉
㩿㪏㪉㪀
㪘㪚㪥㪔㪌㪉 㪘㪚㪥㪔㪌㪉
㪘㪚㪥㪔㪌㪇
㪎㪏
㪉㪅㪍㩷㪝㪛
㩿㪉㪅㪌㩷㪝㪚㪤㪀
㪊㪅㪊㩷㪝㪚㪤
㩿㪊㪅㪋㩷㪙㪝㪘㪀
㪘㪚㪥㪔㪌㪉
㪌㪇㪁
㪈㪋㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪉㪍㩷㪪㪫㪆㪘
㩿㪐㪋㪀
㩿㪎㪍㪀
㪇㪄㪋
㪘㪚㪥㪔㪌㪉
㪌㪇㪁
㪌㪉
㪌㪉㪁
㪍㪉
㩿㪈㪇㪇㪀
㪌㪇㪁 㪋㪏
㩿㪈㪇㪇㪀
㪌㪇㪁
㪈㪇㩷㪤㪆㪪㪤㩷㪂㩷㪋㪉㩷㪪㪫㪆㪘
㩿㪎㪍㪀
㪌㪉㪁 㪈㪇㪉
㩿㪏㪉㪀
㪌㪉㪁 㪌㪉
㩿㪐㪇㪀
㪌㪉㪁
㪋㪏㪁
㩿㪌㪉㪀
㪌㪉㪁
㪤㪼㪾㪸㫃㪸㫄㫇㪿㫆㪻㫌㫊㩷㫄㪼㫃㪸㫅㫆㫇㫋㪼㫉㫌㫊 㪌㪉㪁
㪺㪸㫃㫃㫀㫊㫋㫌㫊 㫊㪼㫉㫇㪸㪼 㫉㫌㪹㫉㫆㫊㫋㫀㪾㫄㪸
㫉㫆㪹㪼㫉㫋㫊㫀
㩿㪍㪍㪀
㪏㪋
㪏㪋
㪌㪉㪁
㪉㪤㩷㪂㩷㪊㪉㪪㪤㩷㪂㩷㪈㪍㩷㪪㪫㪆㪘
㪎㪉 㩿㪐㪏㪀
㪌㪇
㪟㪼㫄㫀㪾㫉㪸㫄㫄㫌㫊㩷㪺㪸㫌㪻㫆㫍㫀㫋㫋㪸㫋㫌㫊 㪟㪼㫄㫀㪾㫉㪸㫄㫄㫌㫊㩷㪺㪸㫌㪻㫆㫍㫀㫋㫋㪸㫋㫌㫊
㪍㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪈㪉㪪㪫㩷㪂㩷㪈㪍㪘
㪈㪇㪇
㪌㪇㪁
㪌㪇
㪝㪃㩷㪤
㪌㪇㪁
㪌㪇
㩿㪙㫉㪸㫑㫀㫃㪃㩷㪥㪼㪾㫉㫆㩷㪩㪅㪀
㩿㪘㫉㪾㪼㫅㫋㫀㫅㪸㪃㩷㪙㫉㪸㫑㫀㫃㪀
㩿㪘㫄㪸㫑㫆㫅㩷㪩㪅㪃㩷㪦㫉㫀㫅㫆㪺㫆㩷㪩㪅㪀
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪋㪏㪁
㪘㪚㪥㪔㪌㪉
㪘㪚㪥㪔㪌㪉
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㩿㫅㫆㫉㫋㪿㪼㫉㫅㩷㪪㪅㩷㪘㫄㪼㫉㫀㪺㪸㪀
㩿㪎㪍㪀
㩿㪈㪇㪇㪀
㪝 㪞 㪟 㪠 㪥㪝㪈 㪥㪝㪉 㪘㪾㪄 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㪥㪦㪩㫊 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪌㪉㪁 㪈㪇㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪉㪏㪪㪫
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㫌㫅㫀㫃㫀㫅㪼㪸㫋㫌㫊 㫍㫆㫉㪻㪼㫉㫎㫀㫅㫂㫃㪼㫉㫀 㫄㫌㫃㫋㫀㪽㪸㫊㪺㫀㪸㫋㫌㫊 㪸㪽㪽㪅㩷㪸㪾㫌㫃㪿㪸 㪸㫅㫀㫊㫀㫋㫊㫀 㪸㫅㫀㫊㫀㫋㫊㫀 㪸㫅㫀㫊㫀㫋㫊㫀 㪹㪼㫅㫋㫆㫊㫀 㪹㪼㫅㫋㫆㫊㫀 㪹㫀㪽㪸㫊㪺㫀㪸㫋㫌㫊 㪺㫆㫇㪼㫃㪸㫅㪻㫀 㪸㪽㪽㪅㩷㪼㫆㫊 㪼㫈㫌㪼㫊 㪼㫈㫌㪼㫊 㪼㫉㫐㫋㪿㫉㫆㫊㫋㫀㪾㫄㪸 㪽㫃㪸㫄㫄㪼㫌㫊 㪽㫃㪸㫄㫄㪼㫌㫊 㪾㫉㫀㪼㫄㫀 㪾㫉㫀㪼㫄㫀 㪿㪼㫉㪹㪼㫉㫋㪸㫏㪼㫃㫉㫆㪻㫀 㪿㪼㫉㪹㪼㫉㫋㪸㫏㪼㫃㫉㫆㪻㫀 㪿㪼㫋㪼㫉㫆㫉㪿㪸㪹㪻㫌㫊 㫄㪼㪾㪸㫃㫆㫇㫋㪼㫉㫌㫊 㫄㫀㫅㫀㫄㫌㫊 㩷㫄㫀㫅㫆㫉 㫇㪼㫉㫌㫍㫀㪸㫅㫌㫊 㫇㫌㫃㪺㪿㫉㫀㫇㫀㫅㫅㫀㫊 㫉㪼㫋㫀㪺㫌㫃㪸㫋㫌㫊 㫉㫆㫊㪸㪺㪼㫌㫊 㫉㫆㫊㪸㪺㪼㫌㫊 㫊㪸㫅㫋㪸㪼 㫊㪺㪿㫆㫃㫑㪼㫀 㫊㪺㪿㫆㫃㫑㪼㫀
㪌㪇
㪛 㪉㫅
㪌㪉㪁
㪝㪃㩷㪤
㪚 㪪㪼㫏
㪸㪽㪽㪅㩷㫌㫃㫉㪼㫐㫀
㫊㫋㫀㪺㫋㫌㫊
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㪹㫆㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷
㪫㪸㪹㫃㪼㩷㪍㪅㪈㪉㩷㩷㪦㫉㪻㪼㫉㩷㪚㪟㪘㪩㪘㪚㪠㪝㪦㪩㪤㪜㪪㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷
88
㪟㫐㫇㪿㪼㫊㫊㫆㪹㫉㫐㪺㫆㫅 㪟㫐㫇㪿㪼㫊㫊㫆㪹㫉㫐㪺㫆㫅 㪟㫐㫇㪿㪼㫊㫊㫆㪹㫉㫐㪺㫆㫅 㪢㫅㫆㪻㫌㫊 㪤㪸㫉㫂㫀㪸㫅㪸 㪤㫆㪼㫅㫂㪿㪸㫌㫊㫀㪸 㪤㫆㪼㫅㫂㪿㪸㫌㫊㫀㪸 㪤㫆㪼㫅㫂㪿㪸㫌㫊㫀㪸 㪤㫆㪼㫅㫂㪿㪸㫌㫊㫀㪸 㪤㫆㪼㫅㫂㪿㪸㫌㫊㫀㪸 㪤㫆㪼㫅㫂㪿㪸㫌㫊㫀㪸 㪤㫆㪼㫅㫂㪿㪸㫌㫊㫀㪸 㪤㫆㪼㫅㫂㪿㪸㫌㫊㫀㪸 㪤㫆㪼㫅㫂㪿㪸㫌㫊㫀㪸 㪤㫆㪼㫅㫂㪿㪸㫌㫊㫀㪸 㪤㫆㪼㫅㫂㪿㪸㫌㫊㫀㪸 㪤㫆㪼㫅㫂㪿㪸㫌㫊㫀㪸 㪤㫆㪼㫅㫂㪿㪸㫌㫊㫀㪸 㪤㫆㪼㫅㫂㪿㪸㫌㫊㫀㪸 㪤㫆㪼㫅㫂㪿㪸㫌㫊㫀㪸 㪤㫆㪼㫅㫂㪿㪸㫌㫊㫀㪸 㪤㫆㪼㫅㫂㪿㪸㫌㫊㫀㪸 㪦㫃㫀㪾㫆㫊㪸㫉㪺㫌㫊 㪦㫃㫀㪾㫆㫊㪸㫉㪺㫌㫊 㪦㫃㫀㪾㫆㫊㪸㫉㪺㫌㫊 㪦㫃㫀㪾㫆㫊㪸㫉㪺㫌㫊 㪦㫃㫀㪾㫆㫊㪸㫉㪺㫌㫊 㪦㫃㫀㪾㫆㫊㪸㫉㪺㫌㫊 㪦㫃㫀㪾㫆㫊㪸㫉㪺㫌㫊 㪧㫀㪸㪹㫀㫅㪸 㪧㫀㪸㪹㫀㫅㪸 㪧㫀㪸㪹㫀㫅㪸 㪪㪺㪿㫌㫃㫋㫑㫀㫋㪼㫊 㪫㪼㫋㫉㪸㪾㫆㫅㫆㫇㫋㪼㫉㫌㫊 㪫㪼㫋㫉㪸㪾㫆㫅㫆㫇㫋㪼㫉㫌㫊 㪋㪏㩷㪤㪆㪪㪤㩷㪂㩷㪉㪘 㪈㪉㪤㩷㪂㩷㪊㪍㪪㪤㩷㪂㩷㪉㪪㪫 㪈㪉㪤㩷㪂㩷㪊㪍㪪㪤㩷㪂㩷㪉㪪㪫
㪌㪇 㪌㪇 㪌㪇 㪌㪇
㫊㫇㪅
㪧㪸㫉㫆㫃㫀㪾㫆㫊㪸㫉㪺㫌㫊
㪋㪏㩷㪤㪆㪪㪤㩷㪂㩷㪉㩷㪪㪫㪆㪘
㪌㪇
㪿㪼㫇㫊㪼㫋㫌㫊 㪿㪼㫇㫊㪼㫋㫌㫊 㫁㪼㫅㫐㫅㫊㫀㫀 㫄㪸㪺㫉㫆㫃㪼㫇㫀㫊 㫇㪸㫉㪸㫅㪼㫅㫊㫀㫊 㫇㫀㫅㫋㫆㫀 㫇㫀㫅㫋㫆㫀 㪸㫉㪾㪼㫅㫋㪼㪸 㪸㫉㪾㪼㫅㫋㪼㪸 㪸㫉㪾㪼㫅㫋㪼㪸 㪸㫏㪼㫉㫃㫆㪻㫀 㪸㫉㪾㪼㫅㫋㪼㫌㫊 㪺㪿㪸㫃㪺㪼㫌㫊
㪋㪤㩷㪂㩷㪊㪐㩷㪪㪤㪆㪪㪫㩷㪂㩷㪍㪘
㪋㪐
㪈㪍㪤㩷㪂㩷㪊㪋㪪㪤 㪈㪍㪤㩷㪂㩷㪊㪋㪪㪤
㪌㪇 㪌㪇
㪏㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪈㪍㪘
㪌㪇 㪌㪇
㪝㪃㩷㪤 㪝㪃㩷㪤
㪈㪏㩷㪤㪆㪪㪤㩷㪂㩷㪈㪉㪪㪫㩷㪂㩷㪉㪉㪘
㪌㪉 㪌㪉 㪌㪉 㪌㪉
㪝 㪝㪃㩷㪤
㪉㪍㩷㪤㪆㪪㪤㩷㪂㩷㪉㪍㩷㪪㪫㪆㪘
㪈㪍㩷㪤㪆㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪊㪋㪘
㪏㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㪈㪍㪪㪫㩷㪂㩷㪈㪋㪘
㪌㪉
㪝㪃㩷㪤
㪌㪉㪁
㪉㪍㩷㪤㪆㪪㪤㩷㪂㩷㪉㪍㩷㪪㪫㪆㪘
㪌㪇
㪝㪃㩷㪤
㪉㪋㩷㪤㪆㪪㪤㩷㪂㩷㪉㪍㩷㪪㪫㪆㪘㩷
㪉㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪈㪉㪪㪫㩷㪂㩷㪈㪍㪘
㪉㪤㩷㪂㩷㪉㪋㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪈㪋㪘
㪌㪇
㪍㪤㩷㪂㩷㪈㪇㪪㪤㩷㪂㩷㪈㪍㪪㪫㩷㪂㩷㪈㪏㪘
㪉㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪈㪍㪪㪫㩷㪂㩷㪈㪍㪘
㪌㪇
㪌㪇
㪌㪇㩷㪤㪆㪪㪤
㪌㪇
㪈㪍㪤㩷㪂㩷㪊㪋㪪㪤
㪈㪋㪤㩷㪂㩷㪉㪍㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪋㪘 㪋㪤㩷㪂㩷㪉㪋㪪㪤㩷㪂㩷㪈㪉㪪㪫㩷㪂㩷㪏㪘㩷
㪌㪇 㪋㪏
㪌㪇
㪝㪃㩷㪤
㪝㪃㩷㪤
㪐㪋
㪋㪤㩷㪂㩷㪋㪇㩷㪪㪤㪆㪪㪫㩷㪂㩷㪍㪘
㪌㪇
㪈㪇㪇
㪎㪏
㪍㪏
㪎㪇
㪎㪋
㪎㪏
㪎㪋
㪎㪉
㪎㪏
㪎㪍
㪍㪍
㪍㪏
㪈㪇㪇
㪐㪏
㪐㪏
㪐㪏
㪐㪏
㪈㪇㪇
㪈㪇㪇
㪈㪇㪇
㪎㪍
㪐㪇
㪐㪍
㪎㪇
㪏㪉
㪐㪇
㪏㪋
㪏㪋
㪏㪍
㪏㪉
㪏㪋
㪈㪇㪇
㪈㪇㪇
㪈㪇㪇
㪐㪏
㪐㪉
㪈㪇㪇
㪈㪇㪇
㪈㪇㪇
㪏㪏
㪐㪍
㪈㪇㪇
㪈㪄㪉
㪈㪄㪉
㪉
㪉
㪈㪄㪋
㪉
㪉
㪉
㪊
㪉
㪉
㪊
㪉
㪉
㪈㪄㪉
㪊㪅㪐㩷㪝㪛
㪊㪅㪇㩷㪝㪛
㪉㪅㪋㩷㪝㪛
㪊㪅㪊㩷㪝㪛
㪊㪅㪊㩷㪝㪛
㩿㪉㪅㪏㩷㪝㪛㪀
㩿㪉㪅㪋㩷㪝㪛㪀
㪊㪅㪉㩷㪙㪝㪘
㪉㪅㪇㩷㪝㪛
㪘㪚㪥㪔㪌㪉
㪘㪚㪥㪔㪌㪉
㪇㪄㪈㩷㪙
㪘㪚㪥㪔㪌㪉
㪘㪚㪥㪔㪌㪉
㪇㪄㪈㩷㪙㪃㩷㪘㪚㪥㪔㪌㪉㩷
㪘㪚㪥㪔㪌㪉
㪘㪚㪥㪔㪌㪉
㪘㪚㪥㪔㪌㪉
㪘㪚㪥㪔㪌㪉
㪘㪚㪥㪔㪌㪉
㪇㩷㪙㪃㩷㪘㪚㪥㪔㪌㪉
㪇㪄㪉㩷㪙㪃㩷㪘㪚㪥㪔㪌㪉
㪇㪄㪍㩷㪙㪃㩷㪘㪚㪥㪔㪌㪉
㪈㪄㪏㩷㪙㪃㩷㪘㪚㪥㪔㪌㪉㩷
㪇㪄㪊㩷㪙㪃㩷㪘㪚㪥㪔㪌㪉
㪘㪚㪥㪔㪌㪉
㪘㪚㪥㪔㪌㪉
㪇㩷㪙㪃㩷㪘㪚㪥㪔㪌㪉
㪘㪚㪥㪔㪌㪉
㪇㪄㪈㩷㪙㪃㩷㪘㪚㪥㪔㪌㪉
㪘㪚㪥㪔㪌㪉
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪞㪀
㪘㫉㪾㪼㫅㫋㫀㫅㪸㩷㩿㪧㪸㫉㪸㫅㪸㩷㪩㪅㪀
㩿㪚㫆㫃㫆㫄㪹㫀㪸㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪞㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪞㪀
㪙㫉㪸㫑㫀㫃
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪸㫉㪸㫀㪹㪸㩷㪻㫆㩷㪪㫌㫃㩷㪩㪅㪀
㪙㫉㪸㫑㫀㫃
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪫㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪩㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪘㫉㪾㪼㫅㫋㫀㫅㪸
㩿㪭㪼㫅㪼㫑㫌㪼㫃㪸㪀
㩿㪭㪼㫅㪼㫑㫌㪼㫃㪸㪀
㩿㪭㪼㫅㪼㫑㫌㪼㫃㪸㪀
㩿㪙㫉㪸㫑㫀㫃㪃㩷㪭㪼㫅㪼㫑㫌㪼㫃㪸㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪩㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪘㪤㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪘㪤㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪫㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪞㪀
㩿㪪㪅㩷㪘㫄㪼㫉㫀㪺㪸㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪤㫀㫉㪸㫅㪻㪸㩷㪩㪅㪀
㪈㪇㪇
㪌㪇㩷㪤㪆㪪㪤 㪊㪉㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪋㪪㪫
㪌㪇 㪌㪇
㪘㪚㪥㪔㪌㪉
㩿㪐㪋㪀
㪌㪇㪁
㪌㪉
㩿㪚㫆㫃㫆㫄㪹㫀㪸㪀
㩿㪈㪇㪉㪀
㩿㪚㫆㫃㫆㫄㪹㫀㪸㪀
㩿㪝㫉㪼㫅㪺㪿㩷㪞㫌㫀㪸㫅㪸㪀
㪌㪉㪁
㪘㪚㪥㪔㪌㪉
㪘㪚㪥㪔㪌㪉
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㩿㪩㫀㫆㩷㪥㪼㪾㫉㫆㪀
㩿㪐㪏㪀
㪌㪉㪁
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪋㪍㪁
㩿㪎㪋㪀
㪌㪉㪁
㪉㪅㪉㩷㪝㪛
㪝 㪞 㪟 㪠 㪥㪝㪈 㪥㪝㪉 㪘㪾㪄 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㪥㪦㪩㫊 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㩿㪐㪉㪀
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㩿㪈㪇㪇㪀
㪛 㪉㫅
㪌㪇㪁
㪚 㪪㪼㫏
㪌㪇㪁
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㫊㫀㫄㫌㫃㪸㫋㫌㫊 㪧㫊㪼㫌㪻㫆㫇㫉㫀㫊㫋㪼㫃㫃㪸㩷㫊㫀㫄㫌㫃㪸㫋㪸 㫊㫎㪼㪾㫃㪼㫊㫀 㪤㪼㪾㪸㫃㪸㫄㫇㪿㫆㪻㫌㫊 㫋㫉㫆㫇㫀㫊 㪸㪽㪽㪅㩷㪹㪼㫋㪸㩷 㫅㫀㪾㫉㫀㫇㫀㫅㫅㫀㫊 㪤 㪺㫆㫃㫃㪼㫋㫋㫀㫀 㪺㫆㫊㫋㪸㪼 㪝 㪻㫀㪺㪿㫉㫆㫌㫉㪸 㪾㫉㪸㪺㫀㫃㫀㫄㪸 㪺㫐㫋㫆㫋㫐㫇㪼㩷㪘 㪾㫉㪸㪺㫀㫃㫀㫄㪸 㪺㫐㫋㫆㫋㫐㫇㪼㩷㪙 㫀㫅㫋㪼㫉㫄㪼㪻㫀㪸 㪝㪃㩷㪤 㫀㫅㫋㪼㫉㫄㪼㪻㫀㪸 㪝㪃㩷㪤 㫀㫅㫋㪼㫉㫄㪼㪻㫀㪸 㪝㪃㩷㪤 㫆㫃㫀㪾㫆㫃㪼㫇㫀㫊 㫇㫀㫋㫋㫀㪼㫉㫀 㫇㫀㫋㫋㫀㪼㫉㫀 㫇㫀㫋㫋㫀㪼㫉㫀 㫊㪸㫅㪺㫋㪸㪼㪽㫀㫃㫆㫄㪼㫅㪸㪼 㪝㪃㩷㪤 㫊㪸㫅㪺㫋㪸㪼㪽㫀㫃㫆㫄㪼㫅㪸㪼 㪝㪃㩷㪤 㫊㪸㫅㪺㫋㪸㪼㪽㫀㫃㫆㫄㪼㫅㪸㪼 㪝㪃㩷㪤 㫊㪸㫅㪺㫋㪸㪼㪽㫀㫃㫆㫄㪼㫅㪸㪼 㪝㪃㩷㪤
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㪹㫆㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷
㪫㪸㪹㫃㪼㩷㪍㪅㪈㪉㩷㩷㪦㫉㪻㪼㫉㩷㪚㪟㪘㪩㪘㪚㪠㪝㪦㪩㪤㪜㪪㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷
㪧㪄㪊㪏㪃㩷㪚㪄㪐㪋
㪘㪄㪈㪋㪃㩷㪚㪄㪐㪋
㪪㪄㪊㪇
㪚㪄㪐㪏㪃㩷㪚㪄㪐㪊
㪘㪄㪈㪉㪉
㪧㪄㪊㪏
㪝㪄㪌㪍
㪟㪄㪊㪏
㪚㪄㪐㪊
㪝㪄㪉
㪟㪄㪊㪏
㪢㪄㪉㪈
㪟㪄㪊㪏㪃㩷㪚㪄㪐㪋
㪛㪄㪊㪈
㪧㪄㪊㪐㪃㩷㪧㪄㪎㪊
㪛㪄㪊㪈㪃㩷㪚㪄㪐㪊
㪝㪄㪊㪌㪃㩷㪚㪄㪐㪋
㪘㪄㪈㪋
㪘㪄㪐㪈
㪘㪄㪐㪈
㪪㪄㪈㪌㪉
㪪㪄㪈㪌㪉㪃㩷㪟㪄㪈㪊
㪛㪄㪊㪈
㪧㪄㪊㪐
㪧㪄㪊㪏
㪧㪄㪊㪐
㪧㪄㪊㪐
㪧㪄㪊㪐㪃㩷㪚㪄㪐㪋
㪧㪄㪊㪏
㪪㪄㪈㪌㪉
㪚㪄㪐㪋
㪪㪄㪈㪌㪉
㪪㪄㪊㪇
㪪㪄㪈㪌㪉
㪪㪄㪈㪌㪉
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
89
㪚㪿㪸㫉㪸㪺㫀㪻㫀㫌㫄 㪚㪿㪸㫉㪸㪺㫀㪻㫀㫌㫄 㪚㪿㪸㫉㪸㪺㫀㪻㫀㫌㫄 㪚㪿㪸㫉㪸㪺㫀㪻㫀㫌㫄 㪚㪿㪸㫉㪸㪺㫀㪻㫀㫌㫄 㪚㪿㪸㫉㪸㪺㫀㪻㫀㫌㫄 㪚㪿㪸㫉㪸㪺㫀㪻㫀㫌㫄 㪚㪿㪸㫉㪸㪺㫀㪻㫀㫌㫄
㪚㫉㪼㫅㫌㪺㪿㫀㪻㪸㪼
㪚㪸㪼㫅㫆㫋㫉㫆㫇㫌㫊 㪚㪿㫀㫃㫆㪻㫌㫊
㪚㪿㫀㫃㫆㪻㫆㫅㫋㫀㪻㪸㪼
㪫㫉㫀㫇㫆㫉㫋㪿㪼㫌㫊 㪫㫉㫀㫇㫆㫉㫋㪿㪼㫌㫊 㪫㫉㫀㫇㫆㫉㫋㪿㪼㫌㫊 㪫㫉㫀㫇㫆㫉㫋㪿㪼㫌㫊 㪫㫉㫀㫇㫆㫉㫋㪿㪼㫌㫊 㪫㫉㫀㫇㫆㫉㫋㪿㪼㫌㫊 㪫㫉㫀㫇㫆㫉㫋㪿㪼㫌㫊 㪫㫉㫀㫇㫆㫉㫋㪿㪼㫌㫊 㪫㫉㫀㫇㫆㫉㫋㪿㪼㫌㫊 㪫㫉㫀㫇㫆㫉㫋㪿㪼㫌㫊 㪫㫉㫀㫇㫆㫉㫋㪿㪼㫌㫊 㪫㫉㫀㫇㫆㫉㫋㪿㪼㫌㫊 㪫㫉㫀㫇㫆㫉㫋㪿㪼㫌㫊 㪫㫉㫀㫇㫆㫉㫋㪿㪼㫌㫊 㪫㫉㫀㫇㫆㫉㫋㪿㪼㫌㫊 㪫㫉㫀㫇㫆㫉㫋㪿㪼㫌㫊 㪫㫉㫀㫇㫆㫉㫋㪿㪼㫌㫊 㪫㫉㫀㫇㫆㫉㫋㪿㪼㫌㫊 㪫㫉㫀㫇㫆㫉㫋㪿㪼㫌㫊
㩷㩷㪫㫉㫀㫇㫆㫉㫋㪿㫀㫅㪸㪼
㪫㪿㪸㫐㪼㫉㫀㪸
㪉㪌㪤㩷㪂㩷㪉㪊㪪㪤㩷㪂㩷㪋㪪㪫
㪌㪇 㪌㪇 㪌㪇
㪝㪃㩷㪤 㪝㪃㩷㪤 㪝
㪊㪇㪤㩷㪂㩷㪈㪏㪪㪤㩷㪂㩷㪱㪮
㪉㪋㪤㩷㪂㩷㪉㪋㪪㪤㩷㪂㩷㪉㪪㪫
㪊㪉㪤㩷㪂㩷㪈㪏㪪㪤
㪊㪉㪤㩷㪂㩷㪈㪏㪪㪤
㪊㪈㪤㩷㪂㩷㪈㪏㪪㪤㩷㪂㩷㪈㪪㪫
㪌㪇 㪌㪇
㪝
㪊㪉㪤㩷㪂㩷㪈㪏㪪㪤
㪌㪇
㪊㪉㪤㩷㪂㩷㪈㪏㪪㪤
㪤
㪝㪃㩷㪤
㪾㫆㫄㪼㫊㫀 㪺㪽㪅㩷㪾㫆㫄㪼㫊㫀 㪺㪽㪅㩷㪾㫆㫄㪼㫊㫀 㪺㪽㪅㩷㫃㪸㪾㫆㫊㪸㫅㫋㪼㫅㫊㪼 㫃㪸㫌㫉㫆㫀 㫆㫀㫋㫀㪺㫀㪺㪸㫀
㪊㪇㪤㩷㪂㩷㪉㪇㪪㪤
㪌㪋㩷㪤㪆㪪㪤
㪌㪋㩷㪤㪆㪪㪤
㪌㪇
㪌㪋
㪝㪃㩷㪤
㪌㪇
㪌㪋
㪝㪃㩷㪤
㪐㪏
㪈㪇㪇
㪈㪇㪇
㪐㪐
㪈㪇㪇
㪈㪇㪇
㪈㪇㪇
㪈㪇㪏
㪈㪇㪏
㪈㪇㪋
㪈㪇㪇
㪈㪇㪇
㪈㪇㪇
㪈㪇㪇
㪈㪇㪇
㪈㪇㪇
㪈㪇㪇
㪈㪇㪏
㪈㪇㪏
㪈㪇㪋
㪉㪄㪊
㪉㪄㪎
㪉㪄㪎
㪉
㪉
㪉
㪉
㪉㪄㪋
㪊㪅㪉㩷㪙㪝㪘
㪉㪅㪋㩷㪝㪛
㪇㪄㪊㩷㪙㪃㩷㪱㪮
㪘㪚㪥㪔㪌㪉
㪱㪱㪃㩷㪘㪚㪥㪔㪌㪉
㪱㪮㪃㩷㪘㪚㪥㪔㪌㪉
㪈㪄㪉㩷㪙㪃㩷㪱㪮㪆㪱㪱㩷
㪇㪄㪋㩷㪙㪃㩷㪱㪮㪆㪱㪱
㪱㪮㪆㪱㪱
㪘㪚㪥㪔㪌㪍
㪱㪱㪃㩷㪘㪚㪥㪔㪌㪍
㪱㪮㪃㩷㪘㪚㪥㪔㪌㪌
㪏㪏
㪌㪉 㪌㪉
㪝 㪤
㪉㪇㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪈㪍㪪㪫
㪱㪮㪆㪱㪱
㪌㪉
㪘㪚㪥㪔㪌㪉
㪘㪚㪥㪔㪌㪉
㪱㪱㪃㩷㪘㪚㪥㪔㪌㪋
㪱㪮㪃㩷㪘㪚㪥㪔㪌㪊
㩿㪪㪅㩷㪘㫄㪼㫉㫀㪺㪸㪀
㩿㪙㫉㪸㫑㫀㫃㪃㩷㪧㪼㫉㫌㪀
㪘㫉㪾㪼㫅㫋㫀㫅㪸
㪘㫉㪾㪼㫅㫋㫀㫅㪸
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪞㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪞㪀
㪘㫄㪸㫑㫆㫅㩷㪹㪸㫊㫀㫅
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪫㪀
㪘㫄㪸㫑㫆㫅㩷㪹㪸㫊㫀㫅
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪩㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪩㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪘㪤㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪫㪀
㪭㪼㫅㪼㫑㫌㪼㫃㪸㩷㩿㪙㫆㫃㫀㫍㪸㫉㪀
㪭㪼㫅㪼㫑㫌㪼㫃㪸㩷㩿㪙㫆㫃㫀㫍㪸㫉㪀
㩿㪧㪸㫉㪸㫅㪸㪄㪧㪸㫉㪸㪾㫌㪸㫀㩷㪹㪸㫊㫀㫅㪀
㩿㪪㪅㩷㪘㫄㪼㫉㫀㪺㪸㪀
㪉㪄㪋
㪊㪅㪌㩷㪝㪛
㪉㪅㪎㩷㪝㪛
㪱㪱㪃㩷㪘㪚㪥㪔㪌㪋
㪱㪮㪃㩷㪘㪚㪥㪔㪌㪊
㪱㪱㪃㩷㪘㪚㪥㪔㪌㪋
㪱㪮㪃㩷㪘㪚㪥㪔㪌㪊
㪱㪮㪆㪱㪱
㪱㪮㪆㪱㪱
㪱㪮㪆㪱㪱
㪘㫄㪸㫑㫆㫅㩷㪹㪸㫊㫀㫅 㪘㫄㪸㫑㫆㫅㩷㪹㪸㫊㫀㫅
㪌㪇㪁
㩿㪈㪇㪇㪀
㪈㪄㪋
㪈㪄㪋
㪉
㪊
㪈㪄㪋
㪈㪄㪋
㪈㪄㪋
㪈㪄㪋
㪱㪮㪆㪱㪱
㩿㪙㫉㪸㫑㫀㫃㪀
㩿㪈㪇㪇㪀
㪈㪇㪋
㪈㪇㪋
㪈㪇㪋
㪈㪇㪋
㪈㪇 㪇
㪈㪇㪉
㪈㪄㪋
㩿㪧㪼㫉㫌㪃㩷㪙㫉㪸㫑㫀㫃㪀
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㩿㪙㫉㪸㫑㫀㫃㪀
㪏㪏
㪈㪇㪇
㪈㪇㪇
㪏㪏
㪏㪏
㪎㪉
㪎㪉
㪏㪏
㪏㪍
㪐㪏
㪈㪇㪇
㪘㪚㪥㪔㪌㪉
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪌㪉㪁
㪉㪇㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪈㪍㪪㪫
㪉㪍㪤㩷㪂㩷㪉㪉㪪㪤㩷㪂㩷㪋㪪㪫㩷
㪏㪍 㪏㪉
㩿㪈㪇㪇㪀
㪝 㪞 㪟 㪠 㪥㪝㪈 㪥㪝㪉 㪘㪾㪄 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㪥㪦㪩㫊 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪌㪉㪁
㪌㪇㪁
㪌㪉
㪌㪉
㪌㪉 㪌㪉
㪝 㪤 㪌㪉
㪌㪉 㪌㪉
㪝 㪤
㪝
㪈㪊㪤㩷㪂㩷㪉㪊㪪㪤㩷㪂㩷㪈㪍㪪㪫
㪌㪉
㪝㪃㩷㪤
㪤
㪉㪇㩷㪤㪆㪪㪤㩷㪂㩷㪈㪉㩷㪪㪫㪆㪘 㪉㪇㩷㪤㪆㪪㪤㩷㪂㩷㪈㪉㩷㪪㪫㪆㪘
㪌㪉
㪝㪃㩷㪤
㪈㪋㪤㩷㪂㩷㪉㪉㪪㪤㩷㪂㩷㪈㪍㪪㪫
㪉㪉㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪈㪉㪪㪫㩷㪂㩷㪋㪘
㪌㪉
㪉㪉㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪈㪍㪪㪫㩷㪂㩷㪉㪘
㪈㪋㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪈㪋㪪㪫㩷㪂㩷㪋㪘 㪈㪋㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪈㪍㪪㪫㩷㪂㩷㪍㪘
㪌㪉
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪌㪉
㪌㪇㪁
㪛 㪉㫅
㪝㪃㩷㪤
㪝㪃㩷㪤
㪚 㪪㪼㫏
㪝㪃㩷㪤
㫇㪸㫉㪸㫅㪼㫅㫊㫀㫊 㫇㪸㫉㪸㫅㪼㫅㫊㫀㫊
㪼㫃㫆㫅㪾㪸㫋㫌㫊 㪺㪽㪅㩷㪼㫃㫆㫅㪾㪸㫋㫌㫊 㪽㫃㪸㫍㫌㫊
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪺㪽㪅㩷㪸㫃㫀㫇㫀㫆㫀 㪺㪽㪅㩷㪽㪸㫊㪺㫀㪸㫋㫌㫄
㫃㪸㪹㫐㫉㫀㫅㫋㪿㫀㪺㫌㫊 㫇㫌㫅㪺㫋㪸㫋㫌㫊
㪸㫃㪹㫌㫊 㪺㫌㫃㫋㪼㫉 㪸㫌㫉㫀㫋㫌㫊 㪺㪽㪅㩷㪸㫌㫉㫀㫋㫌㫊 㪸㫅㪾㫌㫃㪸㫋㫌㫊 㪾㫌㪼㫅㫋㪿㪼㫉㫀 㪾㫌㪼㫅㫋㪿㪼㫉㫀 㫅㪼㫄㪸㫋㫌㫉㫌㫊 㫅㪼㫄㪸㫋㫌㫉㫌㫊 㫅㪼㫄㪸㫋㫌㫉㫌㫊 㫅㪼㫄㪸㫋㫌㫉㫌㫊 㫇㫀㪺㫋㫌㫊 㫇㫀㪺㫋㫌㫊 㫇㫀㪺㫋㫌㫊 㫉㫆㫋㫌㫅㪻㪸㫋㫌㫊 㫉㫆㫋㫌㫅㪻㪸㫋㫌㫊 㫊㫀㪾㫅㪸㫋㫌㫊 㫍㪼㫅㪼㫑㫌㪼㫃㪼㫅㫊㫀㫊 㫍㪼㫅㪼㫑㫌㪼㫃㪼㫅㫊㫀㫊
㪹㫆㪼㪿㫃㫂㪼㫀
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㪹㫆㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷
㪫㪸㪹㫃㪼㩷㪍㪅㪈㪉㩷㩷㪦㫉㪻㪼㫉㩷㪚㪟㪘㪩㪘㪚㪠㪝㪦㪩㪤㪜㪪㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷
㪚㪄㪐㪏
㪚㪄㪐㪈
㪤㪄㪎㪋
㪭㪄㪐㪈
㪭㪄㪐㪈
㪤㪄㪈㪈㪊
㪚㪄㪐㪊㪃㩷㪚㪄㪐㪏
㪚㪄㪐㪈
㪤㪄㪋㪋㪃㩷㪟㪄㪈㪊
㪤㪄㪋㪋
㪥㪄㪍㪐
㪥㪄㪍㪐
㪘㪄㪈㪈㪎
㪪㪄㪈㪌㪉
㪪㪄㪊㪇
㪪㪄㪊㪇
㪪㪄㪈㪌㪉
㪧㪄㪏㪏㪃㩷㪚㪄㪐㪋
㪪㪄㪈㪉㪃㩷㪚㪄㪐㪋
㪪㪄㪈㪉
㪛㪄㪊㪇
㪛㪄㪊㪇
㪘㪄㪈㪈㪎㪃㩷㪪㪄㪈㪉
㪘㪄㪈㪈㪎㪃㩷㪪㪄㪈㪉
㪪㪄㪈㪉
㪘㪄㪈㪈㪎
㪪㪄㪈㪉
㪪㪄㪈㪉
㪪㪄㪈㪉
㪪㪄㪈㪌㪉
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
90
㫄㫆㪻㪼㫊㫋㪸 㫄㫆㪻㪼㫊㫋㪸
㪚㫌㫉㫀㫄㪸㫋㪸㩷㫄㫆㪻㪼㫊㫋㪸 㪚㫌㫉㫀㫄㪸㫋㪸㩷㫄㫆㪻㪼㫊㫋㪸 㫄㫆㪻㪼㫊㫋㪸
㪺㫐㫋㫆㫋㫐㫇㪼㩷㪘 㪺㫐㫋㫆㫋㫐㫇㪼㩷㪙
㪋㪉㪤㩷㪂㩷㪈㪉㪪㪤 㪋㪍㪤㩷㪂㩷㪏㪪㪤
㪌㪋 㪌㪋 㪌㪍 㪌㪋 㪌㪋 㪌㪋 㪌㪋 㪌㪋 㪌㪋 㪌㪋
㪝㪃㩷㪤 㪝 㪝㪃㩷㪤 㪤 㪝㪃㩷㪤 㪝㪃㩷㪤 㪝㪃㩷㪤 㪝㪃㩷㪤 㪝㪃㩷㪤
㪌㪋 㪌㪋
㪝㪃㩷㪤 㪝㪃㩷㪤
㪌㪋㩷㪤㪆㪪㪤
㪌㪇㪤㩷㪂㩷㪋㪪㪤
㪌㪋㩷㪤㪆㪪㪤
㪌㪋
㪌㪋㩷㪤㪆㪪㪤 㪌㪋㩷㪤㪆㪪㪤
㪌㪋
㪌㪋㩷㪤㪆㪪㪤
㪌㪋
㪝㪃㩷㪤 㪝㪃㩷㪤
㪌㪋
㪝㪃㩷㪤
㪏㪉㩷㪤㪆㪪㪤
㪌㪋㪤㩷
㪏㪉
㪝㪃㩷㪤
㪋㪋㪤㩷㪂㩷㪈㪇㪪㪤 㪌㪋㩷㪤㪆㪪㪤 㪌㪋㩷㪤㪆㪪㪤
㪌㪋
㪝 㪌㪋
㪌㪋 㪌㪋
㪝㪃㩷㪤
㪋㪍
㪝
㪝㪃㩷㪤
㩿㪊㪅㪉㩷㪝㪛㪀
㪉㪅㪏㩷㪝㪛
㪊㪅㪇㩷㪝㪛
㪘㪚㪥㪔㪌㪉
㪈㩷㪙
㪘㪚㪥㪔㪌㪍
㪘㪚㪥㪔㪌㪍
㪘㪚㪥㪔㪌㪍
㪘㪚㪥㪔㪌㪍
㪘㪚㪥㪔㪌㪍
㪘㪚㪥㪔㪌㪍
㪘㪚㪥㪔㪌㪍
㪘㪚㪥㪔㪌㪍
㪘㪚㪥㪔㪌㪍
㪇㪄㪉㩷㪙
㪘㪚㪥㪔㪌㪉
㪇㪄㪈㩷㪙㪃㩷㪘㪚㪥㪔㪌㪉
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪘㪤㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪞㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪞㪦㪀
㪘㫉㪾㪼㫅㫋㫀㫅㪸
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪪㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪘㪤㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪘㪤㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪘㪤㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪘㪤㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪘㪤㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪘㪤㪀
㩿㪪㪅㩷㪘㫄㪼㫉㫀㪺㪸㪀
㩿㪪㪅㩷㪘㫄㪼㫉㫀㪺㪸㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪍㪋
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪍㪋
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪉
㪉
㪉
㪉
㪉
㪉
㪊
㪉
㪉
㪉
㪈㩷㪙
㪈㩷㪙
㪇㪄㪈㩷㪙
㪇㪄㪉㩷㪙㪃㩷㪘㪚㪥㪔㪌㪍
㪇㪄㪈㩷㪙㪃㩷㪘㪚㪥㪔㪌㪍
㪇㪄㪈㩷㪙㪃㩷㪊㪯
㪇㪄㪈㩷㪙
㪙㫉㪸㫑㫀㫃㩷㩿㪬㫇㫇㪼㫉㩷㪧㪸㫉㪸㫅㪸㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪬㫇㫇㪼㫉㩷㪧㪸㫉㪸㫅㪸㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪩㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪩㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪞㪦㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪫㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪪㪀
㩿㪪㪅㩷㪘㫄㪼㫉㫀㪺㪸㪀 㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪍
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㩿㪪㪅㩷㪘㫄㪼㫉㫀㪺㪸㪀 㪐㪉
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪈㪉
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪐㪏
㪈㪇㪇
㪈㪇㪇
㪈㪇㪇
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪋㪍㪁 㪐㪉
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪈㪉
㪈㪇㪍
㪈㪇㪏
㪈㪇㪏
㪍㪉
㪐㪏
㪈㪇㪇
㪈㪇㪇
㪐㪏
㪝 㪞 㪟 㪠 㪥㪝㪈 㪥㪝㪉 㪘㪾㪄 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㪥㪦㪩㫊 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪌㪉㪁 㪋㪉㪤㩷㪂㩷㪋㪪㪤
㪋㪍㪤㩷㪂㩷㪏㪪㪤
㪌㪋㩷㪤㪆㪪㪤
㪋㪍㪤㩷㪂㩷㪏㪪㪤
㪌㪋㩷㪤㪆㪪㪤
㪋㪍㪤㩷㪂㩷㪏㪪㪤
㪋㪇㪤㩷㪂㩷㪈㪍㪪㪤
㪋㪇㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪉㪪㪫
㪋㪇㪤㩷㪂㩷㪈㪋㪪㪤
㪌㪋
㪝㪃㩷㪤
㪋㪋㪤㩷㪂㩷㪈㪇㪪㪤
㪉㪍㩷㪤㪆㪪㪤㩷㪂㩷㪈㪇㩷㪪㪫㪆㪘
㪝㪃㩷㪤
㪺㫐㫇㫉㫀㫅㫆㫀㪻㪼㫊 㫀㫅㫆㫉㫅㪸㫋㪸 㫂㫅㪼㫉㫀㫀 㫆㪺㪼㫃㫃㪸㫋㪸 㫍㫀㫋㫋㪸㫋㪸 㪸㫃㪹㫌㫉㫅㪸 㪻㫆㫉㫊㪸㫃㫀㫊 㪻㫆㫉㫊㪸㫃㫀㫊 㫀㫄㫄㪸㪺㫌㫃㪸㫋㪸 㫃㪼㫇㫀㪻㫌㫉㪸 㫄㪼㫐㪼㫉㫀 㪸㪽㪽㪅㩷㫄㪸㪺㫉㫆㫃㪼㫇㫀㫊 㪸㪽㪽㪅㩷㫄㪸㪺㫉㫆㫃㪼㫇㫀㫊 㫄㫐㪼㫉㫊㫀 㪾㫀㫃㪹㪼㫉㫋㫀 㪺㪽㪅㩷㪾㫀㫃㫃㫀㫀 㪾㫆㫌㫃㪻㫀㫅㪾㫀 㫄㫆㪻㪼㫊㫋㫌㫊 㫄㫆㪻㪼㫊㫋㫌㫊 㫄㫆㪻㪼㫊㫋㫌㫊 㫄㫆㪻㪼㫊㫋㫌㫊 㫄㫆㪻㪼㫊㫋㫌㫊 㫄㫆㪻㪼㫊㫋㫌㫊 㫄㫆㪻㪼㫊㫋㫌㫊 㫅㪸㪾㪼㫃㫀㫀
㪚㫌㫉㫀㫄㪸㫋㪸 㪚㫌㫉㫀㫄㪸㫋㪸 㪚㫌㫉㫀㫄㪸㫋㪸 㪚㫌㫉㫀㫄㪸㫋㪸 㪚㫌㫉㫀㫄㪸㫋㪸 㪚㫌㫉㫀㫄㪸㫋㪼㫃㫃㪸 㪚㫌㫉㫀㫄㪸㫋㪼㫃㫃㪸 㪚㫌㫉㫀㫄㪸㫋㪼㫃㫃㪸 㪚㫌㫉㫀㫄㪸㫋㪼㫃㫃㪸 㪚㫌㫉㫀㫄㪸㫋㪼㫃㫃㪸 㪚㫌㫉㫀㫄㪸㫋㪼㫃㫃㪸 㪚㫌㫉㫀㫄㪸㫋㫆㫇㫊㫀㫊 㪚㫌㫉㫀㫄㪸㫋㫆㫇㫊㫀㫊 㪚㫌㫉㫀㫄㪸㫋㫆㫇㫊㫀㫊 㪚㫐㫇㪿㫆㪺㪿㪸㫉㪸㫏 㪚㫐㫇㪿㫆㪺㪿㪸㫉㪸㫏 㪚㫐㫇㪿㫆㪺㪿㪸㫉㪸㫏 㪚㫐㫇㪿㫆㪺㪿㪸㫉㪸㫏 㪚㫐㫇㪿㫆㪺㪿㪸㫉㪸㫏 㪚㫐㫇㪿㫆㪺㪿㪸㫉㪸㫏 㪚㫐㫇㪿㫆㪺㪿㪸㫉㪸㫏 㪚㫐㫇㪿㫆㪺㪿㪸㫉㪸㫏 㪚㫐㫇㪿㫆㪺㪿㪸㫉㪸㫏 㪚㫐㫇㪿㫆㪺㪿㪸㫉㪸㫏 㪚㫐㫇㪿㫆㪺㪿㪸㫉㪸㫏
㪚㫌㫉㫀㫄㪸㫋㫀㪻㪸㪼
㪊㪍 㪊㪍
㪿㫌㫁㪼㫋㪸
㪿㫌㫁㪼㫋㫀
㫊㫇㪅
㪊㪉㪤㩷㪂㩷㪈㪏㪪㪤 㪊㪉㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪉㪘
㪌㪇 㪌㪇
㪝
㪊㪉㪤㩷㪂㩷㪈㪏㪪㪤
㪊㪉㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪉㪪㪫
㪌㪇
㪌㪇
㪝㪃㩷㪤
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪝㪃㩷㪤
㪛 㪉㫅
㫇㫋㪼㫉㫆㫊㫋㫀㪺㫋㫌㫄
㪚 㪪㪼㫏
㪺㪽㪅㩷㫑㪼㪹㫉㪸 㫊㫇㪅 㫊㫇㪅
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪙㫆㫌㫃㪼㫅㪾㪼㫉㪼㫃㫃㪸 㪚㫋㪼㫅㫆㫃㫌㪺㫀㫌㫊
㪚㫋㪼㫅㫆㫃㫌㪺㫀㫀㪻㪸㪼
㪚㪿㪸㫉㪸㪺㫀㪻㫀㫌㫄 㪚㪿㪸㫉㪸㪺㫀㪻㫀㫌㫄 㪚㪿㪸㫉㪸㪺㫀㪻㫀㫌㫄 㪚㪿㪸㫉㪸㪺㫀㪻㫀㫌㫄
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㪹㫆㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷
㪫㪸㪹㫃㪼㩷㪍㪅㪈㪉㩷㩷㪦㫉㪻㪼㫉㩷㪚㪟㪘㪩㪘㪚㪠㪝㪦㪩㪤㪜㪪㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷
㪤㪄㪎㪋
㪭㪄㪐㪊㪃㩷㪚㪄㪐㪏
㪭㪄㪐㪉
㪭㪄㪐㪋
㪭㪄㪐㪊
㪞㪄㪐㪌㪃㩷㪫㪄㪏㪉
㪤㪄㪋㪉
㪭㪄㪊㪇
㪭㪄㪊㪇㪃㩷㪚㪄㪐㪊
㪭㪄㪐㪉
㪭㪄㪐㪊
㪭㪄㪐㪉
㪥㪄㪈㪋
㪪㪄㪊㪇
㪪㪄㪊㪇
㪝㪄㪈㪉
㪭㪄㪐㪊
㪭㪄㪐㪉
㪙㪄㪎㪋
㪥㪄㪈㪋㪃㩷㪚㪄㪐㪋
㪝㪄㪈㪉
㪝㪄㪈㪉㪃㩷㪭㪄㪐㪉㪃㩷㪚㪄㪐㪋
㪝㪄㪈㪉
㪝㪄㪈㪉
㪝㪄㪈㪉㪃㩷㪭㪄㪐㪉
㪝㪄㪈㪉㪃㩷㪭㪄㪐㪉
㪘㪄㪐㪉
㪧㪄㪏㪏
㪚㪄㪐㪏
㪤㪄㪎㪋
㪤㪄㪎㪋㪃㩷㪭㪄㪐㪋
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
91
㪜㫉㫐㫋㪿㫉㫀㫅㫌㫊 㪜㫉㫐㫋㪿㫉㫀㫅㫌㫊 㪜㫉㫐㫋㪿㫉㫀㫅㫌㫊 㪜㫉㫐㫋㪿㫉㫀㫅㫌㫊 㪜㫉㫐㫋㪿㫉㫀㫅㫌㫊 㪜㫉㫐㫋㪿㫉㫀㫅㫌㫊
㪜㫉㫐㫋㪿㫉㫀㫅㫀㪻㪸㪼
㪚㫐㫇㪿㫆㪺㪿㪸㫉㪸㫏 㪚㫐㫇㪿㫆㪺㪿㪸㫉㪸㫏 㪚㫐㫇㪿㫆㪺㪿㪸㫉㪸㫏 㪚㫐㫇㪿㫆㪺㪿㪸㫉㪸㫏 㪚㫐㫇㪿㫆㪺㪿㪸㫉㪸㫏 㪚㫐㫇㪿㫆㪺㪿㪸㫉㪸㫏 㪚㫐㫇㪿㫆㪺㪿㪸㫉㪸㫏 㪚㫐㫇㪿㫆㪺㪿㪸㫉㪸㫏 㪧㫆㫋㪸㫄㫆㫉㪿㫀㫅㪸 㪧㫆㫋㪸㫄㫆㫉㪿㫀㫅㪸 㪧㫆㫋㪸㫄㫆㫉㪿㫀㫅㪸 㪧㫆㫋㪸㫄㫆㫉㪿㫀㫅㪸 㪧㫊㪼㪺㫋㫉㫆㪾㪸㫊㫋㪼㫉 㪧㫊㪼㪺㫋㫉㫆㪾㪸㫊㫋㪼㫉 㪧㫊㪼㪺㫋㫉㫆㪾㪸㫊㫋㪼㫉 㪧㫊㪼㪺㫋㫉㫆㪾㪸㫊㫋㪼㫉 㪪㫋㪼㫀㫅㪻㪸㪺㪿㫅㪼㫉㫀㫅㪸 㪪㫋㪼㫀㫅㪻㪸㪺㪿㫅㪼㫉㫀㫅㪸 㪪㫋㪼㫀㫅㪻㪸㪺㪿㫅㪼㫉㫀㫅㪸 㪪㫋㪼㫀㫅㪻㪸㪺㪿㫅㪼㫉㫀㫅㪸 㪪㫋㪼㫀㫅㪻㪸㪺㪿㫅㪼㫉㫀㫅㪸 㪪㫋㪼㫀㫅㪻㪸㪺㪿㫅㪼㫉㫀㫅㪸 㪪㫋㪼㫀㫅㪻㪸㪺㪿㫅㪼㫉㫀㫅㪸 㪪㫋㪼㫀㫅㪻㪸㪺㪿㫅㪼㫉㫀㫅㪸 㪪㫋㪼㫀㫅㪻㪸㪺㪿㫅㪼㫉㫀㫅㪸 㪪㫋㪼㫀㫅㪻㪸㪺㪿㫅㪼㫉㫀㫅㪸 㪪㫋㪼㫀㫅㪻㪸㪺㪿㫅㪼㫉㫀㫅㪸
㪼㫉㫐㫋㪿㫉㫀㫅㫌㫊 㪼㫉㫐㫋㪿㫉㫀㫅㫌㫊 㪼㫉㫐㫋㪿㫉㫀㫅㫌㫊 㪼㫉㫐㫋㪿㫉㫀㫅㫌㫊 㪼㫉㫐㫋㪿㫉㫀㫅㫌㫊 㪼㫉㫐㫋㪿㫉㫀㫅㫌㫊
㫅㪸㪾㪼㫃㫀㫀 㫇㫃㪸㫋㪸㫅㫌㫊 㫇㫃㪸㫋㪸㫅㫌㫊 㫊㫇㫀㫃㫆㫋㫌㫊 㪺㪽㪅㩷㫊㫇㫀㫃㫌㫉㫌㫊 㫍㪸㫅㪻㪼㫉㫀 㫍㫆㪾㪸 㫍㫆㪾㪸 㪸㫃㫋㪸㫄㪸㫑㫆㫅㫀㪺㪸 㫃㪸㫋㫀㫆㫉 㫇㫉㫀㫊㫋㫀㪾㪸㫊㫋㪼㫉 㫊㫈㫌㪸㫄㫆㫉㪸㫃㪼㫍㫀㫊 㪸㫄㪸㫑㫆㫅㫀㪺㪸 㪺㫌㫉㫍㫀㫍㪼㫅㫋㫉㫀㫊 㪺㫌㫉㫍㫀㫍㪼㫅㫋㫉㫀㫊 㫉㫌㫋㫀㫃㫆㫀㪻㪼㫊 㪸㫄㪸㫑㫆㫅㫀㪺㪸 㪹㫉㪼㫍㫀㫇㫀㫅㫅㪸 㪹㫉㪼㫍㫀㫇㫀㫅㫅㪸 㪺㫆㫅㫊㫇㪼㫉㫊㪸 㪺㫆㫅㫊㫇㪼㫉㫊㪸 㪼㫃㪼㪾㪸㫅㫊 㪾㫉㪸㪺㫀㫃㫀㫊 㪺㪽㪅㩷㪾㫌㪼㫅㫋㪿㪼㫉㫀 㫀㫅㫊㪺㫌㫃㫇㫋㪸 㫀㫅㫊㪺㫌㫃㫇㫋㪸 㫃㪼㫌㪺㫀㫊㪺㪸
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㪹㫆㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷
㫃㪼㫌㪺㫀㫊㪺㫌㫊
㫊㫇㫀㫃㫌㫉㪸
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪫㪸㪹㫃㪼㩷㪍㪅㪈㪉㩷㩷㪦㫉㪻㪼㫉㩷㪚㪟㪘㪩㪘㪚㪠㪝㪦㪩㪤㪜㪪㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷
㪌㪋 㪌㪋 㪌㪋 㪌㪋 㪌㪋 㪌㪋 㪌㪋
㪝㪃㩷㪤 㪝㪃㩷㪤 㪝㪃㩷㪤 㪝㪃㩷㪤 㪝㪃㩷㪤 㪝㪃㩷㪤 㪝㪃㩷㪤
㪌㪊 㪌㪉 㪌㪈
㪝 㪤
㪌㪋 㪌㪋
㪝㪃㩷㪤 㪝 㪤
㪌㪋
㪝㪃㩷㪤
㪌㪋
㪌㪋
㪝㪃㩷㪤
㪝
㪌㪋
㪝㪃㩷㪤
㪌㪋
㪝㪃㩷㪤
㪌㪋
㪈㪇㪉
㪝㪃㩷㪤
㪌㪋
㪌㪋
㪝㪃㩷㪤
㪝㪃㩷㪤
㪌㪍
㪝㪃㩷㪤
㪈㪇㪉
㪝㪃㩷㪤 㪝㪃㩷㪤
㪌㪋
㪌㪋
㪝㪃㩷㪤
㪌㪋
㪌㪋
㪝㪃㩷㪤
㪝㪃㩷㪤
㪌㪋
㪝㪃㩷㪤
㪌㪋
㪌㪋
㪝㪃㩷㪤 㪝㪃㩷㪤
㪌㪏
㪝㪃㩷㪤 㪝㪃㩷㪤
㪌㪋 㪌㪏
㪝㪃㩷㪤
㪛 㪉㫅
㪝㪃㩷㪤
㪚 㪪㪼㫏
㪎㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪊㪍㪘
㪍㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪊㪏㪘
㪎㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪋㪋㪘
㪍㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪋㪍㪘 㪍㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪋㪍㪘
㪍㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪋㪍㪘
㪋㪏㪤㩷㪂㩷㪍㪪㪤
㪌㪇㪤㩷㪂㩷㪋㪪㪤
㪌㪋㩷㪤㪆㪪㪤
㪌㪋㩷㪤㪆㪪㪤
㪊㪏㪤㩷㪂㩷㪈㪍㪪㪤
㪌㪋㩷㪤㪆㪪㪤
㪌㪋㩷㪤㪆㪪㪤
㪋㪍㪤㩷㪂㩷㪏㪪㪤
㪌㪋㩷㪤㪆㪪㪤
㪋㪏㪤㩷㪂㩷㪍㪪㪤
㪋㪉㪤㩷㪂㩷㪈㪉㪪㪤
㪋㪉㪤㩷㪂㩷㪈㪉㪪㪤
㪌㪋㩷㪤㪆㪪㪤
㪋㪉㪤㩷㪂㩷㪈㪉㪪㪤
㪋㪋㪤㩷㪂㩷㪈㪇㪪㪤
㪈㪋㩷㪤㪆㪪㪤㩷㪂㩷㪏㪏㪘
㪋㪋㪤㩷㪂㩷㪈㪇㪪㪤
㪌㪉㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪉㪪㪫
㪉㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪐㪏㪘
㪌㪋㩷㪤㪆㪪㪤
㪌㪋㩷㪤㪆㪪㪤
㪌㪋㩷㪤㪆㪪㪤
㪌㪋㩷㪤㪆㪪㪤
㪌㪋㩷㪤㪆㪪㪤
㪋㪏㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪍㪪㪫
㪌㪉㩷㪤㪆㪪㪤㩷㪂㩷㪍㪪㪫
㪋㪍㪤㩷㪂㩷㪏㪪㪤
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪍㪇
㪍㪇
㪍㪇
㪍㪇 㪍㪇
㪍㪇
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪈㪍
㪈㪇㪏
㪈㪈㪇
㪈㪇㪍
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪈㪇
㪈㪈㪇
㪈㪇㪏
㪍㪍
㪍㪍
㪍㪉
㪍㪉 㪍㪉
㪍㪉
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪈㪍
㪈㪇㪏
㪈㪈㪉
㪈㪇㪍
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪈㪍
㪈㪈㪍
㪈㪇㪏
㪊㪄㪏
㪉
㪉
㪉
㪉
㪉㪄㪍
㪉
㪉
㪉
㪉
㪉
㪊
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉㪄㪐
㩿㪉㪅㪐㩷㪝㪛㪀
㪊㪅㪉㩷㪝㪛
㪊㪅㪌㩷㪝㪛
㪊㪅㪏㩷㪝㪛
㪝 㪞 㪟 㪠 㪥㪝㪈 㪥㪝㪉 㪘㪾㪄 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㪥㪦㪩㫊 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪘㪤㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪩㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪘㪺㫉㪼㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪫㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪞㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪪㪀
㪘㫉㪾㪼㫅㫋㫀㫅㪸
㪘㫉㪾㪼㫅㫋㫀㫅㪸
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪪㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪞㪦㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪘㪤㪀
㪘㫉㪾㪼㫅㫋㫀㫅㪸
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪪㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪫㪀
㪘㫉㪾㪼㫅㫋㫀㫅㪸
㪙㫉㪸㫑㫀㫃㩷㩿㪘㪤㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪘㪤㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪘㪤㪀
㪘㫉㪾㪼㫅㫋㫀㫅㪸
㪙㫉㪸㫑㫀㫃㩷㩿㪩㪪㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪩㪦㪀
㪘㫉㪾㪼㫅㫋㫀㫅㪸
㪘㫉㪾㪼㫅㫋㫀㫅㪸
㪘㫉㪾㪼㫅㫋㫀㫅㪸
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪙㫉㪸㫑㫀㫃㩷㩿㪞㫌㪸㫀㫉㪸㪃㩷㪧㪩㪀
㪯㪈㪯㪉㪰㪃㩷㪘㪚㪥㪔㪌㪋 㪯㪈㪯㪉㪰㪃㩷㪘㪚㪥㪔㪌㪋
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪸㫅㪸㫌㫊㪃㩷㪘㪤㪀
㪯㪈㪯㪈㪯㪉㪯㪉㪃㩷㪘㪚㪥㪔㪌㪋 㪙㫉㪸㫑㫀㫃㩷㩿㪤㪸㫅㪸㫌㫊㪃㩷㪘㪤㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪼㫅㪸㫇㫆㫃㫀㫊㪀 㪙㫉㪸㫑㫀㫃㩷㩿㪞㫌㪸㫀㫉㪸㪃㩷㪧㪩㪀
㪥㫆㩷㫊㪼㫏㩷㪺㪿㫉㫆㫄㪅 㪉㪙㪃㩷㪯㪈㪯㪈㪯㪉㪯㪉
㪋㪙㪃㩷㫅㫆㩷㫊㪼㫏㩷㪺㪿㫉㫆㫄㪅 㪙㫉㪸㫑㫀㫃㩷㩿㪙㫀㫉㫀㪾㫌㫀㪀
㪘㪚㪥㪔㪌㪍
㪇㪄㪉㩷㪙㪃㩷㪘㪚㪥㪔㪌㪍
㪘㪚㪥㪔㪌㪍
㪘㪚㪥㪔㪌㪍
㪘㪚㪥㪔㪌㪍
㪘㪚㪥㪔㪌㪍
㪘㪚㪥㪔㪌㪍
㪘㪚㪥㪔㪌㪍
㪘㪚㪥㪔㪌㪍
㪘㪚㪥㪔㪌㪍
㪇㪄㪈㩷㪙㪃㩷㪘㪚㪥㪔㪌㪍
㪡 㪚㫆㫄㫄㪼㫅㫋㫊 㪭㪄㪐㪉
㪙㪄㪊㪌㪃㩷㪚㪄㪈㪈㪇
㪙㪄㪊㪊㪃㩷㪙㪄㪊㪌㪃㩷㪚㪄㪈㪈㪇
㪙㪄㪊㪌㪃㩷㪚㪄㪈㪈㪇
㪙㪄㪊㪌 㪙㪄㪊㪌㪃㩷㪚㪄㪈㪈㪇
㪙㪄㪊㪌
㪝㪄㪈㪉
㪭㪄㪐㪉
㪭㪄㪐㪊㪃㩷㪚㪄㪐㪊㪃㩷㪞㪄㪐㪌
㪚㪄㪉㪌㪃㩷㪚㪄㪐㪋
㪭㪄㪐㪉
㪭㪄㪐㪊㪃㩷㪚㪄㪐㪋
㪭㪄㪐㪊
㪙㪄㪎㪋
㪙㪄㪎㪋
㪥㪄㪈㪋
㪭㪄㪐㪉
㪝㪄㪈㪉
㪙㪄㪎㪋
㪥㪄㪈㪋
㪭㪄㪐㪉
㪙㪄㪎㪋㪃㩷㪚㪄㪐㪋
㪝㪄㪈㪊
㪝㪄㪈㪊
㪝㪄㪈㪊
㪙㪄㪎㪋
㪭㪄㪐㪊
㪭㪄㪐㪊
㪭㪄㪐㪊
㪙㪄㪎㪋㪃㩷㪚㪄㪐㪏
㪭㪄㪐㪉
㪙㪄㪎㪋
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
92
㪚㪸㫉㫅㪼㪾㫀㪼㫃㫃㪸 㪚㪸㫉㫅㪼㪾㫀㪼㫃㫃㪸 㪚㪸㫉㫅㪼㪾㫀㪼㫃㫃㪸 㪚㪸㫉㫅㪼㪾㫀㪼㫃㫃㪸
㪞㪸㫊㫋㪼㫉㫆㫇㪼㫃㪼㪺㫀㪻㪸㪼
㪜㫉㫐㫋㪿㫉㫀㫅㫌㫊 㪜㫉㫐㫋㪿㫉㫀㫅㫌㫊 㪜㫉㫐㫋㪿㫉㫀㫅㫌㫊 㪟㫆㫇㫃㪼㫉㫐㫋㪿㫉㫀㫅㫌㫊 㪟㫆㫇㫃㪼㫉㫐㫋㪿㫉㫀㫅㫌㫊 㪟㫆㫇㫃㪼㫉㫐㫋㪿㫉㫀㫅㫌㫊 㪟㫆㫇㫃㪼㫉㫐㫋㪿㫉㫀㫅㫌㫊 㪟㫆㫇㫃㪼㫉㫐㫋㪿㫉㫀㫅㫌㫊 㪟㫆㫇㫃㪼㫉㫐㫋㪿㫉㫀㫅㫌㫊 㪟㫆㫇㫃㪼㫉㫐㫋㪿㫉㫀㫅㫌㫊 㪟㫆㫇㫃㪼㫉㫐㫋㪿㫉㫀㫅㫌㫊 㪟㫆㫇㫃㪼㫉㫐㫋㪿㫉㫀㫅㫌㫊 㪟㫆㫇㫃㪼㫉㫐㫋㪿㫉㫀㫅㫌㫊 㪟㫆㫇㫃㫀㪸㫊 㪟㫆㫇㫃㫀㪸㫊 㪟㫆㫇㫃㫀㪸㫊 㪟㫆㫇㫃㫀㪸㫊 㪟㫆㫇㫃㫀㪸㫊 㪟㫆㫇㫃㫀㪸㫊 㪟㫆㫇㫃㫀㪸㫊 㪟㫆㫇㫃㫀㪸㫊 㪟㫆㫇㫃㫀㪸㫊 㪟㫆㫇㫃㫀㪸㫊 㪟㫆㫇㫃㫀㪸㫊 㪟㫆㫇㫃㫀㪸㫊 㪟㫆㫇㫃㫀㪸㫊 㪟㫆㫇㫃㫀㪸㫊 㪟㫆㫇㫃㫀㪸㫊 㪟㫆㫇㫃㫀㪸㫊
㫄㪸㫉㫋㪿㪸㪼 㫄㪸㫉㫋㪿㪸㪼 㫊㫋㫉㫀㪾㪸㫋㪸 㫊㫋㫉㫀㪾㪸㫋㪸
㪼㫉㫐㫋㪿㫉㫀㫅㫌㫊 㪼㫉㫐㫋㪿㫉㫀㫅㫌㫊 㪼㫉㫐㫋㪿㫉㫀㫅㫌㫊 㫌㫅㫀㫋㪸㪼㫅㫀㪸㫋㫌㫊 㫌㫅㫀㫋㪸㪼㫅㫀㪸㫋㫌㫊 㫌㫅㫀㫋㪸㪼㫅㫀㪸㫋㫌㫊 㫌㫅㫀㫋㪸㪼㫅㫀㪸㫋㫌㫊 㫌㫅㫀㫋㪸㪼㫅㫀㪸㫋㫌㫊 㫌㫅㫀㫋㪸㪼㫅㫀㪸㫋㫌㫊 㫌㫅㫀㫋㪸㪼㫅㫀㪸㫋㫌㫊 㫌㫅㫀㫋㪸㪼㫅㫀㪸㫋㫌㫊 㫌㫅㫀㫋㪸㪼㫅㫀㪸㫋㫌㫊 㫌㫅㫀㫋㪸㪼㫅㫀㪸㫋㫌㫊 㫃㪸㪺㪼㫉㪻㪸㪼 㫃㪸㪺㪼㫉㪻㪸㪼 㫄㪸㫃㪸㪹㪸㫉㫀㪺㫌㫊 㫄㪸㫃㪸㪹㪸㫉㫀㪺㫌㫊 㫄㪸㫃㪸㪹㪸㫉㫀㪺㫌㫊 㫄㪸㫃㪸㪹㪸㫉㫀㪺㫌㫊 㫄㪸㫃㪸㪹㪸㫉㫀㪺㫌㫊 㫄㪸㫃㪸㪹㪸㫉㫀㪺㫌㫊 㫄㪸㫃㪸㪹㪸㫉㫀㪺㫌㫊 㫄㪸㫃㪸㪹㪸㫉㫀㪺㫌㫊 㫄㪸㫃㪸㪹㪸㫉㫀㪺㫌㫊 㫄㪸㫃㪸㪹㪸㫉㫀㪺㫌㫊 㫄㪸㫃㪸㪹㪸㫉㫀㪺㫌㫊 㫄㪸㫃㪸㪹㪸㫉㫀㪺㫌㫊 㫄㪸㫃㪸㪹㪸㫉㫀㪺㫌㫊 㫄㪸㫃㪸㪹㪸㫉㫀㪺㫌㫊
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㪹㫆㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷
㪺㫐㫋㫆㫋㫐㫇㪼㩷㪘 㪺㫐㫋㫆㫋㫐㫇㪼㩷㪘 㪺㫐㫋㫆㫋㫐㫇㪼㩷㪘 㪺㫐㫋㫆㫋㫐㫇㪼㩷㪘 㪺㫐㫋㫆㫋㫐㫇㪼㩷㪙 㪺㫐㫋㫆㫋㫐㫇㪼㩷㪙 㪺㫐㫋㫆㫋㫐㫇㪼㩷㪚 㪺㫐㫋㫆㫋㫐㫇㪼㩷㪚 㪺㫐㫋㫆㫋㫐㫇㪼㩷㪛 㪺㫐㫋㫆㫋㫐㫇㪼㩷㪛 㪺㫐㫋㫆㫋㫐㫇㪼㩷㪜 㪺㫐㫋㫆㫋㫐㫇㪼㩷㪝 㪺㫐㫋㫆㫋㫐㫇㪼㩷㪞 㪺㫐㫋㫆㫋㫐㫇㪼㩷㪞
㪺㫐㫋㫆㫋㫐㫇㪼㩷㪘 㪺㫐㫋㫆㫋㫐㫇㪼㩷㪙
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪫㪸㪹㫃㪼㩷㪍㪅㪈㪉㩷㩷㪦㫉㪻㪼㫉㩷㪚㪟㪘㪩㪘㪚㪠㪝㪦㪩㪤㪜㪪㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷
㪌㪈
㪌㪉 㪋㪏 㪌㪉 㪎㪉
㪝㪃㩷㪤 㪝㪃㩷㪤 㪝㪃㩷㪤 㪝
㪌㪇 㪌㪇 㪌㪇 㪌㪇
㪝 㪝 㪤
㪋㪇 㪋㪈
㪤
㪋㪇
㪋㪇 㪋㪇
㪝㪃㩷㪤 㪝
㪝 㪤
㪋㪇
㪝㪃㩷㪤
㪝㪃㩷㪤
㪋㪉
㪊㪐
㪋㪉
㪝 㪤
㪋㪉
㪋㪉
㪝㪃㩷㪤
㪤
㪉㪋㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪉㪪㪫
㪋㪉
㪝㪃㩷㪤
㪤
㪋㪉㩷㪤㪆㪪㪤
㪋㪉
㪋㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪋㪇㪘
㪋㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪋㪇㪘
㪉㪇㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪈㪋㪘
㪉㪇㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪈㪋㪘
㪋㪇㩷㪤㪆㪪㪤 㪋㪇㩷㪤㪆㪪㪤㩷㪂㩷㪈㪘
㪋㪇㩷㪤㪆㪪㪤
㪋㪇㩷㪤㪆㪪㪤㩷㪂㩷㪉㪘
㪊㪐㩷㪤㪆㪪㪤
㪋㪇㩷㪤㪆㪪㪤 㪋㪇㩷㪤㪆㪪㪤
㪋㪇㩷㪤㪆㪪㪤
㪉㪋㪤㩷㪂㩷㪈㪎㪪㪤㩷㪂㩷㪈㪪㪫
㪉㪇㪤㩷㪂㩷㪉㪉㪪㪤
㪉㪋㪤㩷㪂㩷㪈㪏㪪㪤
㪋㪉
㪝㪃㩷㪤
㪉㪉㪤㩷㪂㩷㪉㪇㪪㪤
㪊㪍㪤㩷㪂㩷㪈㪋㪪㪤
㪌㪇㩷㪤㪆㪪㪤
㪍㪐㩷㪤㪆㪪㪤㩷㪂㩷㪊㩷㪪㪫㪆㪘
㪋㪋㩷㪤㪆㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪋㪘
㪋㪋㩷㪤㪆㪪㪤㩷㪂㩷㪋㪪㪫
㪋㪍㩷㪤㪆㪪㪤㩷㪂㩷㪍㪘
㪋㪍㩷㪤㪆㪪㪤㩷㪂㩷㪉㪘
㪋㪏㩷㪤㪆㪪㪤
㪋㪍㩷㪤㪆㪪㪤㩷㪂㩷㪉㩷㪪㪫㪆㪘
㪋㪎㩷㪤㪆㪪㪤㩷㪂㩷㪈㩷㪪㪫㪆㪘
㪋㪏㩷㪤㪆㪪㪤
㪌㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪋㪉㪘
㪋㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪋㪋㪘
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪝㪃㩷㪤
㪌㪇 㪌㪇
㪝㪃㩷㪤 㪝㪃㩷㪤
㪋㪏
㪋㪏
㪝㪃㩷㪤
㪋㪏
㪝㪃㩷㪤 㪋㪏
㪋㪏
㪝㪃㩷㪤 㪝㪃㩷㪤
㪋㪏
㪝㪃㩷㪤
㪌㪋
㪌㪉
㪝
㪛 㪉㫅
㪤
㪚 㪪㪼㫏
㪌㪏
㪌㪏
㪏㪉
㪏㪉
㪏㪇 㪏㪈
㪏㪇
㪏㪉
㪎㪏
㪏㪇 㪏㪇
㪏㪇
㪏㪊
㪏㪉
㪏㪋
㪏㪋
㪏㪋
㪏㪋
㪈㪇㪇
㪈㪇㪇
㪈㪋㪈
㪐㪍
㪐㪉
㪐㪏
㪐㪋
㪐㪍
㪐㪋
㪐㪌
㪐㪍
㪌㪏
㪌㪏
㪍㪇
㪍㪇
㪏㪍
㪏㪍
㪏㪇 㪏㪈
㪏㪇
㪏㪉
㪎㪏
㪏㪇 㪏㪇
㪏㪇
㪏㪋
㪏㪋
㪏㪋
㪏㪋
㪏㪋
㪏㪋
㪈㪇㪇
㪈㪇㪇
㪈㪇㪇
㪐㪍
㪐㪏
㪐㪋
㪐㪍
㪐㪍
㪍㪇
㪍㪇
㪈㪄㪊
㪈㪄㪊
㪈㪄㪊
㪈㪄㪊
㪋㪄㪎
㪋㪄㪎
㪊㪄㪎
㪊㪄㪏
㪉㪄㪍
㪉
㪊
㪋㪄㪍
㪉㪄㪋
㩿㪉㪅㪏㩷㪙㪝㪘㪀
㩿㪉㪅㪊㩷㪝㪛㪀
㪝 㪞 㪟 㪠 㪥㪝㪈 㪥㪝㪉 㪘㪾㪄 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㪥㪦㪩㫊 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪙㫉㪸㫑㫀㫃㩷㩿㪪㫌㪀
㪙㫉㪸㫑㫀㫃
㪘㫉㪾㪼㫅㫋㫀㫅㪸
㪙㫉㪸㫑㫀㫃㩷㩿㪘㪤㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪞㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪃㩷㪤㪪㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪞㪀
㪥㫆㩷㫊㪼㫏㩷㪺㪿㫉㫆㫄㪅
㪙㫉㪸㫑㫀㫃㩷㩿㪩㪪㪃㩷㪤㪞㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪃㩷㪧㪩㪀
㪯㪈㪯㪉㪰㪃㩷㪘㪚㪥㪔㪋㪏
㪱㪱㪃㩷㪘㪚㪥㪔㪌㪍
㪱㪮㪃㩷㪘㪚㪥㪔㪌㪍
㪱㪱㪃㩷㪘㪚㪥㪔㪌㪍
㪱㪮㪃㩷㪘㪚㪥㪔㪌㪌
㪯㪯㪃㩷㪘㪚㪥㪔㪋㪏 㪯㪰㪈㪰㪉㪃㩷㪘㪚㪥㪔㪋㪏
㪥㫆㩷㫊㪼㫏㩷㪺㪿㫉㫆㫄㪅
㪙㫉㪸㫑㫀㫃㩷㩿㪘㪤㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪘㪤㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪘㪤㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪘㪤㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪘㪃㩷㪩㪦㪃㩷㪤㪫㪀 㪙㫉㪸㫑㫀㫃㩷㩿㪧㪘㪃㩷㪩㪦㪃㩷㪤㪫㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪘㪃㩷㪤㪘㪃㩷㪩㪥㪃㩷㪤㪞㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪘㪀
㪘㫉㪾㪼㫅㫋㫀㫅㪸 㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪃㩷㪤㪞㪃㩷㪧㪩㪀 㪘㪚㪥㪔㪌㪇
㪞㪄㪐㪍
㪞㪄㪐㪍
㪞㪄㪐㪍
㪝㪄㪉㪇
㪙㪄㪊㪌㪃㩷㪚㪄㪈㪈㪇
㪙㪄㪎㪍
㪙㪄㪍㪈㪃㩷㪙㪄㪎㪍
㪣㪄㪐㪇
㪙㪄㪍㪈㪃㩷㪙㪄㩷㪎㪎
㪙㪄㪍㪈㪃㩷㪙㪄㪎㪎㪃㩷㪧㪄㪉㪈㪃㩷㪚㪄㪐㪊
㪙㪄㪍㪈㪃㩷㪙㪄㩷㪎㪎
㪙㪄㪉㪐
㪙㪄㪎㪏
㪝㪄㪉㪇
㪞㪄㪉㪇
㪛㪄㪈㪍
㪛㪄㪈㪍
㪞㪄㪉㪈
㪞㪄㪉㪈
㪫㪄㪎㪍
㪫㪄㪎㪍
㪫㪄㪎㪍
㪫㪄㪎㪍
㪙㪄㪍㪈 㪙㪄㪍㪈
㪙㪄㪍㪈
㪙㪄㪍㪈
㪙㪄㪊㪈㪃㩷㪙㪄㪊㪋㪃㩷㪙㪄㩷㪍㪈㪃㩷㪧㪄㪉㪈
㪣㪄㪐㪇 㪙㪄㪊㪈㪃㩷㪙㪄㪊㪋㪃㩷㪙㪄㩷㪍㪈㪃㩷㪟㪄㪈㪊
㪙㫉㪸㫑㫀㫃㩷㩿㪘㪤㪃㩷㪧㪘㪃㩷㪩㪦㪃㩷㪤㪫㪃㩷㪧㪩㪀 㪙㪄㪍㪈㪃㩷㪧㪄㪉㪈
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪞㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪞㪀
㪘㫉㪾㪼㫅㫋㫀㫅㪸
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪃㩷㪤㪫㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪃㩷㪘㪤㪃㩷㪧㪩㪀
㪥㫆㩷㫊㪼㫏㩷㪺㪿㫉㫆㫄㪅 㪯㪈㪯㪈㪯㪉㪯㪉
㪥㫆㩷㫊㪼㫏㩷㪺㪿㫉㫆㫄㪅
㪯㪰㪃㩷㪘㪚㪥㪔㪌㪇
㪯㪯㪃㩷㪘㪚㪥㪔㪌㪇
㪥㫆㩷㫊㪼㫏㩷㪺㪿㫉㫆㫄㪅
㪥㫆㩷㫊㪼㫏㩷㪺㪿㫉㫆㫄㪅
㪥㫆㩷㫊㪼㫏㩷㪺㪿㫉㫆㫄㪅
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼 㪙㪄㪊㪌㪃㩷㪚㪄㪈㪈㪇
㪙㫉㪸㫑㫀㫃㩷㩿㪩㪦㪃㩷㪤㪪㪃㩷㪘㫉㪾㪼㫅㫋㫀㫅㪸㪀 㪞㪄㪉㪈
㪙㫉㪸㫑㫀㫃㩷㩿㪘㪤㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪘㪤㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪘㪤㪀
㪘㫉㪾㪼㫅㫋㫀㫅㪸
㪙㫉㪸㫑㫀㫃㩷㩿㪥㪸㫋㪸㫃㪀
㪯㪯㪆㪯㪰㪃㩷㪘㪚㪥㪔㪌㪇 㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪥㫆㩷㫊㪼㫏㩷㪺㪿㫉㫆㫄㪅
㪊㪯
㪥㫆㩷㫊㪼㫏㩷㪺㪿㫉㫆㫄㪅
㪥㫆㩷㫊㪼㫏㩷㪺㪿㫉㫆㫄㪅
㪘㪚㪥㪔㪌㪉
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪌㪇
㪯㪈㪯㪉㪰㪃㩷㪘㪚㪥㪔㪌㪋
㪯㪈㪯㪈㪯㪉㪯㪉㪃㩷㪘㪚㪥㪔㪌㪋 㪙㫉㪸㫑㫀㫃㩷㩿㪥㪸㫋㪸㫃㪀
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
93
㪚㫆㫇㪼㫀㫅㪸 㪚㫆㫇㪼㫃㫃㪸 㪚㫆㫇㪼㫃㫃㪸 㪥㪸㫅㫅㫆㫊㫋㫆㫄㫌㫊 㪥㪸㫅㫅㫆㫊㫋㫆㫄㫌㫊 㪥㪸㫅㫅㫆㫊㫋㫆㫄㫌㫊 㪥㪸㫅㫅㫆㫊㫋㫆㫄㫌㫊 㪥㪸㫅㫅㫆㫊㫋㫆㫄㫌㫊 㪥㪸㫅㫅㫆㫊㫋㫆㫄㫌㫊 㪥㪸㫅㫅㫆㫊㫋㫆㫄㫌㫊 㪥㪸㫅㫅㫆㫊㫋㫆㫄㫌㫊 㪥㪸㫅㫅㫆㫊㫋㫆㫄㫌㫊 㪥㪸㫅㫅㫆㫊㫋㫆㫄㫌㫊 㪥㪸㫅㫅㫆㫊㫋㫆㫄㫌㫊
㪣㪼㪹㫀㪸㫊㫀㫅㫀㪻㪸㪼
㪘㫅㫆㪻㫌㫊 㪘㫅㫆㪻㫌㫊 㪘㫅㫆㪻㫌㫊 㪘㫅㫆㪻㫌㫊 㪘㫉㪾㫆㫅㪼㪺㫋㪼㫊 㪟㪼㫄㫀㫆㪻㫌㫊 㪟㪼㫄㫀㫆㪻㫌㫊 㪟㪼㫄㫀㫆㪻㫌㫊 㪟㪼㫄㫀㫆㪻㫌㫊 㪟㪼㫄㫀㫆㪻㫌㫊
㪟㪼㫄㫀㫆㪻㫆㫅㫋㫀㪻㪸㪼
㪚㪸㫉㫅㪼㪾㫀㪼㫃㫃㪸 㪚㪸㫉㫅㪼㪾㫀㪼㫃㫃㪸 㪞㪸㫊㫋㪼㫉㫆㫇㪼㫃㪼㪺㫌㫊 㪫㪿㫆㫉㪸㪺㫆㪺㪿㪸㫉㪸㫏㩷 㪫㪿㫆㫉㪸㪺㫆㪺㪿㪸㫉㪸㫏㩷 㪫㪿㫆㫉㪸㪺㫆㪺㪿㪸㫉㪸㫏㩷 㪫㪿㫆㫉㪸㪺㫆㪺㪿㪸㫉㪸㫏㩷
㪾㫌㫋㫋㪸㫋㪸 㪸㫉㫅㫆㫃㪻㫀 㫅㪸㫋㫋㪼㫉㪼㫉㫀 㪹㪼㪺㫂㪽㫆㫉㪻㫀 㪹㪼㪺㫂㪽㫆㫉㪻㫀 㪹㪼㪺㫂㪽㫆㫉㪻㫀 㪼㫈㫌㪼㫊 㪼㫈㫌㪼㫊 㪿㪸㫉㫉㫀㫊㫆㫅㫀 㫄㪸㫉㪾㫀㫅㪸㫋㫌㫊 㫋㫉㫀㪽㪸㫊㪺㫀㪸㫋㫌㫊 㫋㫉㫀㪽㪸㫊㪺㫀㪸㫋㫌㫊 㫋㫉㫀㪽㪸㫊㪺㫀㪸㫋㫌㫊 㫋㫉㫀㪽㪸㫊㪺㫀㪸㫋㫌㫊
㫃㫆㫅㪾㫀㪺㪼㫇㫊 㪸㫉㪾㪼㫅㫋㪼㫌㫊 㫀㫄㫄㪸㪺㫌㫃㪸㫋㫌㫊 㫄㫀㪺㫉㫆㫃㪼㫇㫀㫊 㪺㪽㪅㩷㫄㫀㪺㫉㫆㫃㪼㫇㫀㫊 㫌㫅㫀㫄㪸㪺㫌㫃㪸㫋㫌㫊
㫊㫇㪅
㪼㫃㫆㫅㪾㪸㫋㫌㫊 㪼㫃㫆㫅㪾㪸㫋㫌㫊 㪼㫃㫆㫅㪾㪸㫋㫌㫊
㫊㫋㫉㫀㪾㪸㫋㪸 㫊㫋㫉㫀㪾㪸㫋㪸 㫊㫋㪼㫉㫅㫀㪺㫃㪸 㫊㫋㪼㫃㫃㪸㫋㫌㫊 㫊㫋㪼㫃㫃㪸㫋㫌㫊 㪺㪽㪅㩷㫊㫋㪼㫃㫃㪸㫋㫌㫊 㪺㪽㪅㩷㫊㫋㪼㫃㫃㪸㫋㫌㫊
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㪹㫆㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷
㪼㫉㫐㫋㪿㫉㫌㫉㫌㫊 㪼㫉㫐㫋㪿㫉㫌㫉㫌㫊 㪼㫉㫐㫋㪿㫉㫌㫉㫌㫊 㪼㫉㫐㫋㪿㫉㫌㫉㫌㫊
㪥㪸㫅㫅㫆㪹㫉㫐㪺㫆㫅 㪧㫆㪼㪺㫀㫃㫆㪹㫉㫐㪺㫆㫅 㪧㫆㪼㪺㫀㫃㫆㪹㫉㫐㪺㫆㫅
㪺㫐㫋㫆㫋㫐㫇㪼㩷㪘 㪺㫐㫋㫆㫋㫐㫇㪼㩷㪙
㫊㪺㪸㫇㫌㫃㪸㫉㫀㫊 㫆㪺㪼㫃㫃㪸㫋㫌㫊
㪉㪋㪤㩷㪂㩷㪉㪍㪪㪤㩷㪂㩷㪋㪪㪫
㪤
㪋
㪉㪇㪤㩷㪂㩷㪊㪇㪪㪤㩷㪂㩷㪋㪪㪫
㪙㫉㪸㫑㫀㫃㩷㩿㪘㪤㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪘㪤㪀
㩿㪙㫉㪸㫑㫀㫃㪃㩷㪭㪼㫅㪼㫑㫌㪼㫃㪸㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪘㪤㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪘㪤㪀
㩿㪪㪅㩷㪘㫄㪼㫉㫀㪺㪸㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪘㪤㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪘㪤㪀
㩿㪙㫉㪸㫑㫀㫃㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪘㪤㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪩㫀㫆㩷㪙㫉㪸㫅㪺㫆㪃㩷㪘㪺㫉㪼㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪩㫀㫆㩷㪙㫉㪸㫅㪺㫆㪃㩷㪘㪺㫉㪼㪀
㪊㪋㪘
㪊㪋
㩿㪪㪅㩷㪘㫄㪼㫉㫀㪺㪸㪀 㩿㪪㪅㩷㪘㫄㪼㫉㫀㪺㪸㪀 㩿㪪㪅㩷㪘㫄㪼㫉㫀㪺㪸㪀
㪊㪏㪁 㪊㪇㪁 㪉㪋㪁
㩿㪪㪅㩷㪘㫄㪼㫉㫀㪺㪸㪀
㪋㪉㪁
㩿㪪㪅㩷㪘㫄㪼㫉㫀㪺㪸㪀
㩿㪞㫌㫐㪸㫅㪸㪀
㪋㪇㪁 㪋㪍㪁
㩿㪪㪅㩷㪘㫄㪼㫉㫀㪺㪸㪀
㪊㪍㪁
㩿㪙㫉㪸㫑㫀㫃㪃㩷㪧㪼㫉㫌㪀
㩿㪪㪅㩷㪘㫄㪼㫉㫀㪺㪸㪀
㪊㪋
㩿㪪㪅㩷㪘㫄㪼㫉㫀㪺㪸㪀
㪊㪍㪁
㩿㪪㪅㩷㪘㫄㪼㫉㫀㪺㪸㪀
㪋㪋㪁
㪋㪉
㩿㪪㪅㩷㪘㫄㪼㫉㫀㪺㪸㪀 㪘㪚㪥㪔㪋㪋
㪘㪚㪥㪔㪌㪍
㪘㪚㪥㪔㪌㪍
㪘㪚㪥㪔㪌㪍
㪘㪚㪥㪔㪌㪍
㪘㪚㪥㪔㪌㪍
㪘㪚㪥㪔㪌㪍
㪘㪚㪥㪔㪌㪍
㪱㪱㪃㩷㪘㪚㪥㪔㪌㪋
㪱㪮㪃㩷㪘㪚㪥㪔㪌㪋
㪊㪍㪁
㪉
㪉
㪉㪅㪉㩷㪝㪛
㩿㪪㪅㩷㪘㫄㪼㫉㫀㪺㪸㪀 㪋㪋
㪈㪇㪏
㪈㪇㪏
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㩿㪪㪅㩷㪘㫄㪼㫉㫀㪺㪸㪀
㪋㪋
㪈㪇㪋
㪈㪇㪋
㪈㪇㪍
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪍
㪈㪇㪏
㪏㪇
㪏㪇
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪫㪀
㪋㪋㪁 㪉㪤㩷㪂㩷㪋㪇㪘
㪉㪍㪤㩷㪂㩷㪉㪋㪪㪤㩷㪂㩷㪋㪪㪫
㪈㪇㪍
㪈㪇㪉
㪈㪇㪋
㪈㪇㪋
㪈㪇㪉
㪈㪇㪉
㪈㪇㪍
㪈㪇㪋
㪎㪍
㪎㪍
㪉㪅㪉㩷㪝㪛
㪱㪮㪆㪱㪱
㪋㪉㪁
㪌㪋 㪌㪋
㪝㪃㩷㪤
㪌㪉㩷㪤㪆㪪㪤㩷㪂㩷㪉㪘
㪌㪋 㪝㪃㩷㪤
㪉㪉㪤㩷㪂㩷㪉㪍㪪㪤㩷㪂㩷㪍㪪㪫
㪌㪋
㪝㪃㩷㪤
㪉㪍㪤㩷㪂㩷㪉㪋㪪㪤㩷㪂㩷㪋㪪㪫
㪌㪋
㪌㪇㩷㪤㪆㪪㪤㩷㪂㩷㪋㪪㪫
㪉㪋㪤㩷㪂㩷㪉㪋㪪㪤㩷㪂㩷㪍㪪㪫
㪉㪇㪤㩷㪂㩷㪉㪏㪪㪤㩷㪂㩷㪍㪪㪫
㪌㪉㩷㪤㪆㪪㪤㩷㪂㩷㪉㪘
㪝㪃㩷㪤
㪌㪋
㪌㪋
㪌㪋
㪝㪃㩷㪤
㫄㪼㫃㪸㫅㫆㫇㫆㪾㫆㫅 㪝㪃㩷㪤
㪌㪋
㪌㪋
㪌㪉
㪏㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪉㪋㪘
㪏㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪉㪋㪘
㪌㪉
㪝 㪤
㪤
㪎㪉
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
㪪㪄㪊㪇
㪪㪄㪊㪇
㪪㪄㪊㪇
㪪㪄㪊㪇
㪪㪄㪊㪇
㪪㪄㪊㪇
㪪㪄㪊㪇
㪘㪄㪐㪉
㪪㪄㪊㪇
㪪㪄㪊㪇
㪘㪄㪐㪉
㪪㪄㪊㪇
㪪㪄㪊㪇
㪪㪄㪊㪇
㪧㪄㪋㪇
㪧㪄㪋㪇
㪘㪄㪐㪉
㪧㪄㪋㪇
㪧㪄㪋㪇
㪧㪄㪏㪏
㪧㪄㪋㪇
㪧㪄㪋㪇
㪘㪄㪐㪉㩷
㪧㪄㪋㪇
㪚㪄㪐㪋㪃㩷㪚㪄㪈㪇㪈
㪚㪄㪐㪋㪃㩷㪚㪄㪈㪇㪈
㪭㪄㪐㪇
㪚㪄㪈㪇㪈
㪧㪸㫉㪸㪾㫌㪸㫀㩷㪩㪅 㪍㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪊㪍㪘
㪌㪋
㪟㪄㪈㪊 㪪㪄㪊㪇
㩿㪪㪅㩷㪘㫄㪼㫉㫀㪺㪸㪀
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪪㪄㪊㪇
㪍㪍
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㩿㪪㪅㩷㪘㫄㪼㫉㫀㪺㪸㪀
㪉㪅㪏㩷㪙㪝㪘
㪝 㪞 㪟 㪠 㪥㪝㪈 㪥㪝㪉 㪘㪾㪄 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㪥㪦㪩㫊 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪌㪋㪁
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪋㪏㪁
㪌㪇㪄㪌㪉
㪛 㪉㫅
㪌㪋
㪝㪃㩷㪤
㪚 㪪㪼㫏
㫊㫋㪼㪸㫋㫆㫇㫊㩷㩷
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪫㪸㪹㫃㪼㩷㪍㪅㪈㪉㩷㩷㪦㫉㪻㪼㫉㩷㪚㪟㪘㪩㪘㪚㪠㪝㪦㪩㪤㪜㪪㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷
94
㪧㫉㫆㪺㪿㫀㫃㫆㪻㫌㫊 㪧㫉㫆㪺㪿㫀㫃㫆㪻㫌㫊 㪧㫉㫆㪺㪿㫀㫃㫆㪻㫌㫊 㪧㫉㫆㪺㪿㫀㫃㫆㪻㫌㫊 㪧㫉㫆㪺㪿㫀㫃㫆㪻㫌㫊 㪧㫉㫆㪺㪿㫀㫃㫆㪻㫌㫊 㪧㫉㫆㪺㪿㫀㫃㫆㪻㫌㫊 㪧㫉㫆㪺㪿㫀㫃㫆㪻㫌㫊
㪧㫉㫆㪺㪿㫀㫃㫆㪻㫆㫅㫋㫀㪻㪸㪼
㪘㫇㪸㫉㪼㫀㫆㪻㫆㫅 㪘㫇㪸㫉㪼㫀㫆㪻㫆㫅 㪘㫇㪸㫉㪼㫀㫆㪻㫆㫅 㪘㫇㪸㫉㪼㫀㫆㪻㫆㫅 㪘㫇㪸㫉㪼㫀㫆㪻㫆㫅 㪘㫇㪸㫉㪼㫀㫆㪻㫆㫅 㪘㫇㪸㫉㪼㫀㫆㪻㫆㫅 㪘㫇㪸㫉㪼㫀㫆㪻㫆㫅 㪘㫇㪸㫉㪼㫀㫆㪻㫆㫅 㪘㫇㪸㫉㪼㫀㫆㪻㫆㫅 㪘㫇㪸㫉㪼㫀㫆㪻㫆㫅 㪘㫇㪸㫉㪼㫀㫆㪻㫆㫅 㪘㫇㪸㫉㪼㫀㫆㪻㫆㫅 㪧㪸㫉㫆㪻㫆㫅 㪧㪸㫉㫆㪻㫆㫅 㪧㪸㫉㫆㪻㫆㫅 㪧㪸㫉㫆㪻㫆㫅 㪧㪸㫉㫆㪻㫆㫅 㪧㪸㫉㫆㪻㫆㫅
㪧㪸㫉㫆㪻㫆㫅㫋㫀㪻㪸㪼
㪸㫉㪾㪼㫅㫋㪼㫌㫊 㪹㫉㪼㫍㫀㫊 㪺㫆㫊㫋㪸㫋㫌㫊 㫃㫀㫅㪼㪸㫋㫌㫊 㫃㫀㫅㪼㪸㫋㫌㫊 㫃㫀㫅㪼㪸㫋㫌㫊 㫃㫀㫅㪼㪸㫋㫌㫊 㫃㫀㫅㪼㪸㫋㫌㫊
㫊㫇㪅
㪿㫀㫃㪸㫉㫀㫀 㪿㫀㫃㪸㫉㫀㫀 㫅㪸㫊㫌㫊 㫅㪸㫊㫌㫊 㫅㪸㫊㫌㫊
㫊㫇㪅㩷㪘 㫊㫇㪅㩷㪙 㫊㫇㪅㩷㪚
㪸㪽㪽㫀㫅㫀㫊 㪸㪽㪽㫀㫅㫀㫊 㪸㪽㪽㫀㫅㫀㫊 㪸㪽㪽㫀㫅㫀㫊 㪸㪽㪽㫀㫅㫀㫊 㪸㪽㪽㫀㫅㫀㫊 㪸㪽㪽㫀㫅㫀㫊 㫀㪹㫀㫋㫀㪼㫅㫊㫀㫊 㫇㫀㫉㪸㪺㫀㪺㪸㪹㪸㪼 㫍㫀㫋㫋㪸㫋㫌㫊
㫊㫇㪅
㪸㫌㫊㫋㫉㪸㫃㫀㫊
㪺㪽㪅㩷㪸㫌㫊㫋㫉㪸㫃㫀㫊
㫊㪺㫉㫆㪽㪸
㫇㫃㪸㫋㪼㫅㫊㫀㫊
㪺㪼㪸㫉㪸㪼㫅㫊㫀㫊 㪸㪽㪽㫀㫅㫀㫊
㫋㫆㫉㫋㫌㫆㫊㫌㫊 㫋㫆㫉㫋㫌㫆㫊㫌㫊
㫉㪸㪺㪿㫆㫍㫀㪸㫅㪸
㪧㫆㪼㪺㫀㫃㫆㪹㫉㫐㪺㫆㫅
㪥㪸㫅㫅㫆㫊㫋㫆㫄㫌㫊 㪧㫐㫉㫉㪿㫌㫃㫀㫅㪸 㪧㫐㫉㫉㪿㫌㫃㫀㫅㪸 㪧㫐㫉㫉㪿㫌㫃㫀㫅㪸
㫌㫅㫀㪽㪸㫊㪺㫀㪸㫋㫌㫊
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㪹㫆㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷
㪫㪸㪹㫃㪼㩷㪍㪅㪈㪉㩷㩷㪦㫉㪻㪼㫉㩷㪚㪟㪘㪩㪘㪚㪠㪝㪦㪩㪤㪜㪪㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷
㪌㪇㩷㪤㪆㪪㪤㩷㪂㩷㪋㪪㪫
㪌㪋 㪌㪋 㪌㪋
㪤 㪤
㪝㪃㩷㪤
㪌㪋
㪌㪋
㪌㪋
㪌㪋㩷㪤㪆㪪㪤
㪌㪋 㪝㪃㩷㪤
㪋㪇㪤㩷㪂㩷㪈㪋㪪㪤
㪌㪋
㪝㪃㩷㪤
㪋㪇㪤㩷㪂㩷㪈㪋㪪㪤
㪋㪇㪤㩷㪂㩷㪈㪋㪪㪤㩷
㪌㪋㩷㪤㪆㪪㪤
㪋㪇㪤㩷㪂㩷㪈㪋㪪㪤
㪌㪋
㪝㪃㩷㪤
㪋㪇㪤㩷㪂㩷㪈㪋㪪㪤
㪋㪇㪤㩷㪂㩷㪈㪋㪪㪤
㪌㪋
㪌㪋
㪌㪇㩷㪤㪆㪪㪤㩷㪂㩷㪋㪪㪫
㪋㪏㩷㪤㪆㪪㪤㩷㪂㩷㪍㪪㪫
㪋㪏㩷㪤㪆㪪㪤㩷㪂㩷㪍㪪㪫
㪝㪃㩷㪤
㪝㪃㩷㪤
㪌㪋
㪌㪋
㪝㪃㩷㪤 㪝㪃㩷㪤
㪌㪋
㪝㪃㩷㪤
㪊㪉㪤㩷㪂㩷㪉㪉㪪㪤 㪋㪏㩷㪤㪆㪪㪤㩷㪂㩷㪍㪪㪫
㪌㪋 㪌㪋
㪤
㪌㪉㩷㪤㪆㪪㪤㩷㪂㩷㪉㪪㪫
㪌㪋
㪝㪃㩷㪤
㪌㪇㩷㪤㪆㪪㪤㩷㪂㩷㪋㪪㪫 㪊㪈㪤㩷㪂㩷㪉㪉㪪㪤㩷㪂㩷㪈㪪㪫
㪌㪇㩷㪤㪆㪪㪤㩷㪂㩷㪋㪪㪫
㪌㪋
㪌㪉㩷㪤㪆㪪㪤㩷㪂㩷㪉㪪㪫
㪌㪋 㪌㪋
㪌㪉㩷㪤㪆㪪㪤㩷㪂㩷㪉㪪㪫
㪌㪋
㪋㪇㩷㪤㪆㪪㪤㩷㪂㩷㪈㪉㪪㪫㩷㪂㩷㪉㪘
㪋㪌㩷㪤㪆㪪㪤㩷㪂㩷㪏㪪㪫㩷㪂㩷㪈㪘
㪌㪋
㪝
㪝㪃㩷㪤
㪋㪉㩷㪤㪆㪪㪤㩷㪂㩷㪏㪪㪫㩷㪂㩷㪋㪘
㪌㪋
㪝
㪋㪎㩷㪤㪆㪪㪤㩷㪂㩷㪏㪪㪫 㪋㪊㩷㪤㪆㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪉㪘
㪌㪌 㪌㪌
㪌㪇㩷㪤㪆㪪㪤㩷㪂㩷㪋㪪㪫
㪌㪈㩷㪤㪆㪪㪤㩷㪂㩷㪋㪪㪫
㪝
㪌㪋
㪉㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪊㪏㩷㪪㪫㪆㪘
㪍㪪㪫㩷㪂㩷㪊㪋㪘
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪝
㪌㪌
㪝
㪋㪉
㪋㪉
㪋㪇
㪉㪉㪁
㪛 㪉㫅
㪤
㪝㪃㩷㪤
㪚 㪪㪼㫏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪋
㪈㪇㪉
㪈㪇㪉
㪈㪇㪉
㪈㪇㪏
㪈㪇㪎
㪈㪇㪍
㪈㪇㪋
㪈㪇㪋
㪈㪇㪍
㪈㪇㪍
㪈㪇㪋
㪐㪍
㪐㪋
㪐㪐
㪐㪏
㪈㪇㪉
㪈㪇㪋
㪈㪇㪍
㪋㪍
㪋㪇
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪋
㪈㪇㪍
㪈㪇㪎
㪈㪇㪏
㪈㪈㪇
㪈㪇㪏
㪈㪈㪇
㪋㪍
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪋
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪏
㩿㪊㪅㪋㩷㪝㪛㪀
㪊㪅㪈㩷㪝㪛
㪊㪅㪈㩷㪝㪛
㩿㪉㪅㪇㪃㩷㪉㪅㪌㩷㪝㪛㪀
㩿㪉㪅㪇㩷㪝㪛㪀㪃㩷㪉㪅㪋㩷㪙㪝㪘
㪝 㪞 㪟 㪠 㪥㪝㪈 㪥㪝㪉 㪘㪾㪄 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㪥㪦㪩㫊 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪇㪄㪌㩷㪙㪃㩷㪘㪚㪥㪔㪌㪍㩷
㪇㪄㪎㩷㪙㪃㩷㪘㪚㪥㪔㪌㪍
㪘㪚㪥㪔㪌㪍
㪘㪚㪥㪔㪌㪍
㪇㪄㪉㩷㪙㪃㩷㪘㪚㪥㪔㪌㪍
㪘㪚㪥㪔㪌㪍
㪘㪚㪥㪔㪌㪋
㪘㪚㪥㪔㪌㪍
㪘㪚㪥㪔㪌㪍
㪘㪚㪥㪔㪌㪍
㪱㪱㪃㩷㪘㪚㪥㪔㪌㪋
㪱㪮㪃㩷㪘㪚㪥㪔㪌㪌
㪘㪚㪥㪔㪌㪋
㪘㪚㪥㪔㪌㪍
㪘㪚㪥㪔㪌㪍
㪘㪚㪥㪔㪌㪍
㪇㪄㪈㩷㪙㪃㩷㪘㪚㪥㪔㪌㪍㩷
㪘㪚㪥㪔㪌㪍
㪘㪚㪥㪔㪌㪌
㪘㪚㪥㪔㪌㪋
㪘㪚㪥㪔㪌㪌
㪘㪚㪥㪔㪌㪌㪃㩷㪌㪍
㪘㪚㪥㪔㪌㪍
㪱㪱㪃㩷㪘㪚㪥㪔㪌㪍
㪱㪮㪈㪮㪉㪃㩷㪘㪚㪥㪔㪌㪍
㪘㪚㪥㪔㪋㪉
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪩㪃㩷㪪㪧㪀
㪘㫉㪾㪼㫅㫋㫀㫅㪸
㪘㫉㪾㪼㫅㫋㫀㫅㪸
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪪㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪞㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪚㪜㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪚㪜㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪫㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪩㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪫㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪞㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪞㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪘㫉㪸㪾㫌㪸㫀㪸㩷㪩㪅㪃㩷㪤㪫㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪞㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪞㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪫㫀㫄㪹㫆㩷㪩㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪩㪃㩷㪪㪧㪀
㪘㫉㪾㪼㫅㫋㫀㫅㪸
㪘㫉㪾㪼㫅㫋㫀㫅㪸
㪘㫉㪾㪼㫅㫋㫀㫅㪸
㪘㫉㪾㪼㫅㫋㫀㫅㪸
㪘㫉㪾㪼㫅㫋㫀㫅㪸
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪞㪃㩷㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪞㪃㩷㪪㪧㪀
㪙㫉㪸㫑㫀㫃
㩿㪪㪅㩷㪘㫄㪼㫉㫀㪺㪸㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㩿㪪㪅㩷㪘㫄㪼㫉㫀㪺㪸㪀
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐 㪪㪄㪊㪇
㪧㪄㪈㪐㪃㩷㪧㪄㪉㪇
㪛㪄㪈㪉㪃㩷㪘㪄㪈㪈㪐㪃㩷㪭㪄㪈㪇㪎
㪝㪄㪉㪇
㪝㪄㪉㪇
㪧㪄㪉㪇㪃㩷㪚㪄㪐㪊
㪧㪄㪉㪇㪃㩷㪚㪄㪐㪋
㪧㪄㪉㪇
㪧㪄㪉㪇㪃㩷㪚㪄㪐㪋
㪡㪄㪎
㪡㪄㪎
㪙㪄㪏㪈
㪙㪄㪏㪈
㪤㪄㪏㪋㪃㩷㪡㪄㪎
㪤㪄㪏㪋㪃㩷㪡㪄㪎
㪡㪄㪏
㪡㪄㪏
㪡㪄㪏
㪡㪄㪏
㪡㪄㪏㪃㩷㪝㪄㪌㪍
㪤㪄㪏㪊㪃㩷㪡㪄㪏
㪚㪄㪐㪍
㪚㪄㪐㪍
㪚㪄㪐㪍
㪚㪄㪐㪍
㪚㪄㪐㪍
㪤㪄㪏㪉㪃㩷㪤㪄㪏㪊㪃㩷㪣㪄㪏㪌㪃㩷㪚㪄㪐㪊㪃㩷㪚㪄㪐㪋
㪤㪄㪏㪉㪃㩷㪤㪄㪏㪊㪃㩷㪣㪄㪏㪌
㪦㪄㪏㪉
㪚㪄㪐㪊㪃㩷㪟㪄㪈㪊
㪦㪄㪌㪊
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
95
㫄㪸㫉㪾㪾㫉㪸㫍㫀㫀 㫄㪸㫉㫀㪸㪼 㫅㫀㪾㫉㫀㪺㪸㫅㫊 㫍㫀㫄㪹㫆㫀㪻㪼㫊 㫀㫅㫊㫀㪾㫅㫀㫊 㫂㫅㪼㫉㫀 㫃㪸㫋㫀㪺㪼㫇㫊 㫋㪸㪼㫅㫀㫌㫉㫌㫊 㫋㪸㪼㫅㫀㫌㫉㫌㫊
㪘㫄㪹㫃㫐㪺㪼㫇㫊 㪣㫀㫆㪹㪸㪾㫉㫌㫊 㪣㫀㫆㪹㪸㪾㫉㫌㫊 㪣㫀㫆㪹㪸㪾㫉㫌㫊 㪣㫀㫆㪹㪸㪾㫉㫌㫊 㪣㫀㫆㪹㪸㪾㫉㫌㫊 㪣㫀㫆㪹㪸㪾㫉㫌㫊 㪣㫀㫆㪹㪸㪾㫉㫌㫊 㪣㫀㫆㪹㪸㪾㫉㫌㫊 㪣㫀㫆㪹㪸㪾㫉㫌㫊 㪣㫀㫆㪹㪸㪾㫉㫌㫊 㪣㫀㫆㪹㪸㪾㫉㫌㫊 㪣㫀㫆㪹㪸㪾㫉㫌㫊 㪣㫀㫆㪹㪸㪾㫉㫌㫊 㪣㫀㫆㪹㪸㪾㫉㫌㫊 㪣㫀㫆㪹㪸㪾㫉㫌㫊 㪣㫀㫆㪹㪸㪾㫉㫌㫊
㫄㪸㫅㪾㫆㫀㫊 㪸㫅㪻㪼㫉㫊㫆㫅㫀 㪸㫅㪻㪼㫉㫊㫆㫅㫀 㪸㫅㪾㫌㫀㫃㫃㫀㪺㪸㫌㪻㪸 㫄㪸㫉㪾㫀㫅㪸㫋㫆㫀㪻㪼㫊 㫄㪸㫉㪾㫀㫅㪸㫋㫆㫀㪻㪼㫊 㫄㪸㫉㪾㫀㫅㪸㫋㫌㫊 㫄㪸㫉㪾㫀㫅㪸㫋㫌㫊 㫄㪸㫉㪾㫀㫅㪸㫋㫌㫊 㫄㪼㪻㫀㪸㪻㫀㫇㫆㫊㪸㫃㫀㫊 㫄㪼㪻㫀㪸㪻㫀㫇㫆㫊㪸㫃㫀㫊 㫄㪼㪻㫀㪸㪻㫀㫇㫆㫊㪸㫃㫀㫊 㫅㫀㪾㫉㫀㪺㪸㫌㪻㪸 㫅㫀㪾㫉㫀㪺㪸㫌㪻㪸 㫆㪹㪼㫊㫌㫊 㫉㪼㫀㫅㫀㫀 㫉㪼㫀㫅㫀㫀
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪝㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷 㪘㫄㪹㫃㫐㪺㫀㫇㫀㫋㫀㪻㪸㪼
㪫㪸㪹㫃㪼㩷㪍㪅㪈㪊㩷㩷㪦㫉㪻㪼㫉㩷㪪㪠㪣㪬㪩㪠㪝㪦㪩㪤㪜㪪
㪧㫉㫆㪺㪿㫀㫃㫆㪻㫌㫊 㪧㫉㫆㪺㪿㫀㫃㫆㪻㫌㫊 㪧㫉㫆㪺㪿㫀㫃㫆㪻㫌㫊 㪧㫉㫆㪺㪿㫀㫃㫆㪻㫌㫊 㪪㪼㫄㪸㫇㫉㫆㪺㪿㫀㫃㫆㪻㫌㫊 㪪㪼㫄㪸㫇㫉㫆㪺㪿㫀㫃㫆㪻㫌㫊 㪪㪼㫄㪸㫇㫉㫆㪺㪿㫀㫃㫆㪻㫌㫊 㪪㪼㫄㪸㫇㫉㫆㪺㪿㫀㫃㫆㪻㫌㫊 㪪㪼㫄㪸㫇㫉㫆㪺㪿㫀㫃㫆㪻㫌㫊
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㪹㫆㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷
㪣㪼㫀㫆㪹㪸㪾㫉㫌㫊 㪣㪼㫀㫆㪹㪸㪾㫉㫌㫊
㪣㪼㫀㫆㪹㪸㪾㫉㫌㫊 㪣㪼㫀㫆㪹㪸㪾㫉㫌㫊
㪣㪼㫀㫆㪹㪸㪾㫉㫌㫊 㪣㪼㫀㫆㪹㪸㪾㫉㫌㫊
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪫㪸㪹㫃㪼㩷㪍㪅㪈㪉㩷㩷㪦㫉㪻㪼㫉㩷㪚㪟㪘㪩㪘㪚㪠㪝㪦㪩㪤㪜㪪㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷
㪉㪇㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪉㪪㪫
㪉㪏 㪊㪋
㪝㪃㩷㪤
㪉㪋
㪉㪍㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪋㩷㪪㪫㪆㪘 㪈㪏㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪋㪪㪫
㪋㪉 㪋㪉 㪉㪏
㪝㪃㩷㪤
㪈㪍㪤㩷㪂㩷㪌㪪㪤㩷㪂㩷㪎㪪㪫㩷㪂㩷㪉㪘
㪊㪇 㪉㪇 㪊㪏 㪊㪏
㪤 㪝㪃㩷㪤 㪝㪃㩷㪤
㪉㪍㪤㩷㪂㩷㪏㪪㪤㩷㪂㩷㪋㪪㪫 㪉㪏㪤㩷㪂㩷㪈㪇㪪㪤
㪉㪇㪤
㪈㪍㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪉㪘
㪊㪇
㪝
㪈㪐㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪈㪘
㪉㪋
㪤 㪝㪃㩷㪤
㪉㪍㪤㩷㪂㩷㪈㪍㪪㪤
㪉㪇㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪉㪪㪫
㪉㪋
㪝
㪈㪍㪤㩷㪂㩷㪌㪪㪤㩷㪂㩷㪎㪪㪫㩷㪂㩷㪉㪘
㪊㪇
㪤 㪝㪃㩷㪤
㪉㪇㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪉㪪㪫
㪈㪍㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪉㪘
㪊㪇
㪝
㪈㪋㪤㩷㪂㩷㪈㪋㪪㪤
㪉㪏
㪈㪏㪤㩷㪂㩷㪈㪇㪪㪤
㪊㪍
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪎㪉 㪎㪍
㪋㪇
㪌㪈
㪌㪉
㪌㪉
㪏㪇
㪏㪋
㪋㪌
㪋㪍
㪋㪍
㪌㪈
㪌㪉
㪍㪍
㪌㪍
㪌㪍
㪌㪉
㪝 㪥㪝㪈
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪎㪍 㪎㪍
㪋㪇
㪌㪏
㪌㪏
㪌㪍
㪏㪋
㪋㪎
㪋㪏
㪋㪏
㪌㪏
㪌㪏
㪍㪏
㪌㪍
㪌㪍
㪍㪏
㪞 㪥㪝㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪘㪚㪥㪔㪋㪍
㪯㪰㪃㩷㪘㪚㪥㪔㪊㪌
㪯㪯㪃㩷㪘㪚㪥㪔㪊㪍
㪘㪚㪥㪔㪊㪇
㪘㪚㪥㪔㪋㪉
㪘㪚㪥㪔㪋㪉
㪯㪰㪃㩷㪘㪚㪥㪔㪊㪇
㪯㪯㪃㩷㪘㪚㪥㪔㪊㪇
㪯㪰㪃㩷㪘㪚㪥㪔㪊㪌
㪯㪯㪃㩷㪘㪚㪥㪔㪊㪍
㪘㪚㪥㪔㪊㪇
㪘㪚㪥㪔㪊㪇
㪡㪸㫇㪸㫅㩷㩿㪞㫀㪽㫌㪀 㪡㪸㫇㪸㫅
㪢㫆㫉㪼㪸㩷㩿㪢㫌㫄㩷㪩㪅㪀
㪚㪿㫀㫅㪸㩷㩿㪥㪸㫅㪺㪿㫆㫅㪾㪀㩷
㪚㪿㫀㫅㪸㩷㩿㪥㪸㫅㪺㪿㫆㫅㪾㪀㩷
㪢㫆㫉㪼㪸㩷㩿㪞㫌㫄㩷㪩㪅㪀
㪢㫆㫉㪼㪸㩷㩿㪟㪸㫄㫐㪸㫅㪾㪀
㪢㫆㫉㪼㪸㩷㩿㪥㪸㫂㪻㫆㫅㪾㩷㪩㪅㪀
㪚㪿㫀㫅㪸㩷㩿㪪㫀㪺㪿㫌㪸㫅㪀㩷
㪚㪿㫀㫅㪸㩷㩿㪪㫀㪺㪿㫌㪸㫅㪀㩷
㪚㪿㫀㫅㪸㩷㩿㪪㫀㪺㪿㫌㪸㫅㪀㩷
㪚㪿㫀㫅㪸㩷㩿㪥㪸㫅㪺㪿㫆㫅㪾㪀㩷
㪚㪿㫀㫅㪸㩷㩿㪥㪸㫅㪺㪿㫆㫅㪾㪀㩷
㪚㪿㫀㫅㪸㩷㩿㪱㪿㪼㫁㫀㪸㫅㪾㪀㩷
㪢㫆㫉㪼㪸㩷㩿㪞㪸㫇㫐㪼㫆㫅㪾㪀
㪢㫆㫉㪼㪸㩷㩿㪟㪸㫅㩷㪩㪅㪀
㪠㫅㪻㫀㪸㩷㩿㪡㩷㩽㩷㪢㪀
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪙㫉㪸㫑㫀㫃㩷㩿㪘㪤㪅㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪘㪤㪅㪀
㪭㪼㫅㪼㫑㫌㪼㫃㪸㩷㩿㪙㫆㫃㫀㫍㪸㫉㪀
㪭㪼㫅㪼㫑㫌㪼㫃㪸㩷㩿㪙㫆㫃㫀㫍㪸㫉㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪘㪤㪅㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪘㪤㪅㪀
㪭㪼㫅㪼㫑㫌㪼㫃㪸㩷㩿㪙㫆㫃㫀㫍㪸㫉㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪞㪀
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪱㪱㪃㩷㪘㪚㪥㪔㪌㪋
㪱㪮㪃㩷㪘㪚㪥㪔㪌㪌
㪘㪚㪥㪔㪌㪋
㪘㪚㪥㪔㪌㪋
㪘㪚㪥㪔㪌㪍
㪘㪚㪥㪔㪌㪍
㪇㪄㪉㩷㪙㪃㩷㪘㪚㪥㪔㪌㪍
㪇㪄㪊㩷㪙㪃㩷㪘㪚㪥㪔㪌㪋
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪟 㪠 㪘㪾㪄 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㪥㪦㪩㫊 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪝 㪞 㪟 㪠 㪥㪝㪈 㪥㪝㪉 㪘㪾㪄 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㪥㪦㪩㫊 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪋㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪈㪍㪪㪫㩷㪂㩷㪋㪘
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪝㪃㩷㪤
㪛 㪉㫅
㪌㪋㩷㪤㪆㪪㪤㩷
㪌㪊㩷㪤㪆㪪㪤㩷㪂㩷㪈㫃㪸㫉㪾㪼㩷㪤㩷
㪝㪃㩷㪤
㪚 㪪㪼㫏
㪌㪋
㪤
㪋㪇㪤㩷㪂㩷㪈㪋㪪㪤
㪌㪋 㪌㪋
㪋㪇㪤㩷㪂㩷㪈㪋㪪㪤
㪌㪋 㪝
㪌㪋㩷㪤㪆㪪㪤㩷
㪌㪋
㪝㪃㩷㪤
㪋㪇㪤㩷㪂㩷㪈㪋㪪㪤
㪌㪋
㪝㪃㩷㪤
㪋㪇㪤㩷㪂㩷㪈㪋㪪㪤
㪋㪇㪤㩷㪂㩷㪈㪋㪪㪤
㪌㪋
㪋㪇㪤㩷㪂㩷㪈㪋㪪㪤
㪌㪋
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪌㪋
㪛 㪉㫅
㪝㪃㩷㪤
㪝㪃㩷㪤
㪚 㪪㪼㫏
㪝㪄㪈㪈
㪝㪄㪈㪈
㪦㪄㪎㪏
㪦㪄㪎㪏
㪝㪄㪈㪈
㪧㪄㪉㪇
㪬㪄㪊㪋 㪦㪄㪉㪉
㪪㪄㪐㪋
㪰㪄㪈㪌
㪰㪄㪈㪌
㪬㪄㪊㪋
㪢㪄㪌㪉
㪪㪄㪐㪋
㪣㪄㪊㪇㪃㩷㪰㪄㪈㪌
㪣㪄㪊㪇㪃㩷㪰㪄㪈㪌
㪣㪄㪊㪍
㪰㪄㪈㪌
㪰㪄㪈㪌
㪣㪄㪊㪏
㪢㪄㪌㪉
㪪㪄㪐㪋
㪪㪄㪋㪏
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
㪧㪄㪉㪇㪃㩷㪭㪄㪐㪋
㪚㪄㪎㪎㪃㩷㪚㪄㪐㪏
㪧㪄㪉㪇
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
96
㪈㪉㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪉㪇㪪㪫㩷㪂㩷㪋㪘
㪌㪍
㪺㪽㪅㩷㫃㪸㫉㪸㫀
㪸㫋㫉㫆㫅㪸㫊㫌㫊 㫀㫅㪼㫉㫄㫀㫊 㫅㫌㪺㪿㪸㫃㫀㫊 㫉㫀㪹㪼㫀㫉㫆㫀 㪾㪸㫃㪼㪸㫋㫌㫊 㪾㪸㫃㪼㪸㫋㫌㫊
㫄㪸㪺㫉㪸㪺㪸㫅㫋㪿㫌㫊 㪹㫉㪼㫍㫀㪺㫆㫉㫇㫌㫊 㫀㪺㪿㫀㫂㪸㫎㪸㫀 㪾㫌㫋㫋㪸㫋㫌㫊 㪾㫌㫋㫋㪸㫋㫌㫊 㫄㪸㪺㫉㫆㫇㫋㪼㫉㫌㫊
㪙㫌㫅㫆㪺㪼㫇㪿㪸㫃㫌㫊
㪘㪾㪼㫅㪼㫀㫆㫊㫌㫊 㪘㪾㪼㫅㪼㫀㫆㫊㫌㫊 㪘㫌㪺㪿㪼㫅㫀㫇㫋㪼㫉㫌㫊 㪞㫃㪸㫅㫀㪻㫀㫌㫄 㪫㫉㪸㪺㪿㪼㫃㫐㫆㫇㫋㪼㫉㫌㫊 㪫㫉㪸㪺㪿㪼㫃㫐㫆㫇㫋㪼㫉㫌㫊
㪙㪸㪾㫉㫀㪺㪿㫋㪿㫐㫊 㪚㫆㫉㪼㫆㪹㪸㪾㫉㫌㫊 㪚㫆㫉㪼㫆㪹㪸㪾㫉㫌㫊 㪟㪼㫄㫀㪹㪸㪾㫉㫌㫊 㪟㪼㫄㫀㪹㪸㪾㫉㫌㫊 㪟㪼㫄㫀㪹㪸㪾㫉㫌㫊
㪙㪸㪾㫉㫀㪻㪸㪼
㪘㫌㪺㪿㪼㫅㫀㫇㫋㪼㫉㫀㪻㪸㪼
㪘㫊㫇㫉㪼㪻㫀㫅㫀㪻㪸㪼
㪈㪏㪤㩷㪂㩷㪈㪏㪪㪤㩷㪂㩷㪈㪏㪪㪫㩷㪂㩷㪉㪘
㪤㫐㫊㫋㫌㫊 㪤㫐㫊㫋㫌㫊㩷㪼㫃㫆㫅㪾㪸㫋㫌㫊 㪤㫐㫊㫋㫌㫊
㪙㪸㪾㫉㫆㫀㪻㪼㫊
㪧㪸㫉㪸㫌㪺㪿㪼㫅㫀㫇㫋㪼㫉㫌㫊
㪸㫋㫉㫆㫅㪸㫊㪼㫊 㪹㫉㪼㫍㫀㪽㫀㫃㫀㫊
㪘㫉㫀㫌㫊㩷㪺㪸㪼㫃㪸㫋㫌㫊 㪘㫉㫀㫌㫊 㪘㫉㫀㫌㫊㩷㫊㪼㫉㫉㪸㫋㫌㫊 㪪㪺㫀㪸㪻㪼㫀㪺㪿㫋㪿㫐㫊 㪘㫉㫀㫌㫊 㪘㫉㫀㫌㫊
㪈㪉㪤㩷㪂㩷㪏㪪㪤㩷㪂㩷㪊㪋㩷㪪㪫㪆㪘
㪌㪋
㪌㪍
㪉㪋㪤㩷㪂㩷㪉㪍㪪㪤㩷㪂㩷㪍㪪㪫
㪌㪍
㪌㪏
㪝㪃㩷㪤
㪍㪇
㪍㪇 㪍㪇
㪝㪃㩷㪤 㪝㪃㩷㪤
㪌㪍
㪝㪃㩷㪤 㪝㪃㩷㪤
㪋㪋
㪝㪃㩷㪤
㪌㪇
㪌㪏 㪌㪏
㪌㪏
㪝㪃㩷㪤 㪝㪃㩷㪤
㪌㪍 㪌㪍
㪝㪃㩷㪤
㪉㪇㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪈㪍㪪㪫㩷㪂㩷㪈㪉㪘
㪉㪇㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪈㪍㪪㪫㩷㪂㩷㪈㪉㪘
㪉㪇㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪈㪍㪪㪫㩷㪂㩷㪈㪉㪘
㪈㪏㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪉㪋㩷㪪㪫㪆㪘
㪉㪉㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪏㩷㪪㪫㪆㪘
㪈㪍㪤㩷㪂㩷㪉㪍㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪍㪘
㪉㪉㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪈㪏㪘
㪉㪏㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪋㪘
㪉㪋㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪈㪇㪘
㪉㪇㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪈㪇㪘
㪈㪍㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪈㪉㪪㪫㩷㪂㩷㪈㪉㪘
㪍㪤㩷㪂㩷㪏㪪㪤㩷㪂㩷㪏㪪㪫㩷㪂㩷㪉㪏㪘
㪈㪍㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪉㪉㪪㪫㩷㪂㩷㪉㪘
㪌㪇
㪈㪉㪤㩷㪂㩷㪈㪏㪪㪤㩷㪂㩷㪈㪉㪪㪫㩷㪂㩷㪈㪉㪘
㪌㪋
㪏㪤㩷㪂㩷㪉㪋㪪㪤㩷㪂㩷㪉㪋㪪㪫
㪈㪍㪤㩷㪂㩷㪊㪍㪪㪤㩷㪂㩷㪉㪪㪫
㪍㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪉㪏㪘
㪌㪍
㪝㪃㩷㪤
㪝㪃㩷㪤
㪌㪍
㪝 㪌㪍
㪌㪋
㪝㪃㩷㪤
㪌㪋
㪐㪉
㪐㪉
㪐㪉
㪏㪏
㪏㪇
㪐㪉
㪐㪉
㪈㪇㪉
㪐㪍
㪐㪉
㪏㪏
㪍㪋
㪏㪏
㪏㪋
㪏㪏
㪈㪇㪍
㪏㪇
㪏㪏
㪐㪉
㪏㪇
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪐㪋
㪐㪏
㪈㪈㪉
㪈㪇㪍
㪈㪇㪉
㪈㪇㪇
㪎㪉
㪈㪈㪇
㪐㪍
㪈㪈㪉
㪈㪇㪏
㪏㪇
㪈㪇㪏
㪈㪈㪇
㪈㪇㪏
㪉
㪋㪅㪏㩷㪙㪝㪘
㩿㪋㪅㪌㩷㪝㪚㪤㪀
㪟 㪠 㪘㪾㪄 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㪥㪦㪩㫊 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪯㪯㪆㪯㪰
㪘㪚㪥㪔㪌㪋
㪘㪚㪥㪔㪌㪋
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪤㪼㫏㫀㪺㫆
㪬㪪㪘㩷㩿㪣㪘㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪤㪼㫏㫀㪺㫆
㪤㪼㫏㫀㪺㫆
㪬㪪㪘㩷㩿㪣㪘㪀
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪉
㪉
㪉
㪉
㪉
㪘㪚㪥㪔㪍㪉
㪘㪚㪥㪔㪍㪉
㪘㪚㪥㪔㪍㪉
㪘㪚㪥㪔㪌㪍
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪌㪏
㪘㪚㪥㪔㪌㪏
㪘㪚㪥㪔㪌㪏
㪘㪚㪥㪔㪌㪍
㪘㪚㪥㪔㪌㪋
㪩㪄㪊㪐 㪝㪄㪉㪇
㪩㪄㪊㪐
㪩㪄㪊㪐
㪝㪄㪈㪏
㪝㪄㪈㪏
㪝㪄㪉㪇
㪙㪄㪏㪍
㪩㪄㪌㪐
㪞㪄㪌㪉
㪚㪄㪍㪊
㪚㪄㪍㪊
㪢㪄㪈㪇㪈
㪙㪄㪏㪍㪃㩷㪞㪄㪌㪉
㪙㪄㪏㪍㪃㩷㪞㪄㪌㪉
㪙㪄㪏㪍
㪞㪄㪌㪉
㪞㪄㪎㪋
㪝㪄㪉㪎㪃㩷㪟㪄㪈㪊
㪞㪄㪌㪉
㪞㪄㪎㪋
㪞㪄㪎㪋
㪣㪄㪈㪐㪃㩷㪫㪄㪎㪊
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
㪚㪿㫀㫅㪸㩷㩿㪮㫌㪿㪸㫅㪀
㪚㪿㫀㫅㪸㩷㩿㪰㪸㫅㪾㫊㪿㪸㫅㪀
㪚㪿㫀㫅㪸㩷㩿㪞㫌㪸㫅㪾㪻㫆㫅㪾㪀
㪡㪸㫇㪸㫅㩷㩿㪞㫀㪽㫌㪀
㪢㫆㫉㪼㪸㩷㩿㪟㪸㫄㫐㪸㫅㪾㪀
㪟㪄㪉㪇㪃 㩷㪰㪄㪈㪌
㪰㪄㪈㪌
㪰㪄㪈㪌
㪬㪄㪊㪋
㪢㪄㪌㪉
㪫㪿㪸㫀㫃㪸㫅㪻㩷㩿㪥㪸㫂㪿㫆㫅㩷㪧㪿㪸㫅㫆㫄㪀 㪤㪄㪏
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪩㪀 㪘㫉㪾㪼㫅㫋㫀㫅㪸
㪙㫉㪸㫑㫀㫃㩷㩿㪠㪾㫌㪸㬝㫌㪃㩷㪧㪩㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪩㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪘㪤㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪘㪤㪀
㪪㪅㩷㪘㫄㪼㫉㫀㪺㪸
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪠㫅㪻㫀㪸㩷㩿㪙㫆㫄㪹㪸㫐㪀
㪙㫉㪸㫑㫀㫃
㪠㫅㪻㫀㪸㩷㩿㪦㫉㫀㫊㫊㪸㪀
㪠㫅㪻㫀㪸㩷㩿㪦㫉㫀㫊㫊㪸㪀
㪠㫅㪻㫀㪸㩷㩿㪙㫆㫄㪹㪸㫐㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪈㪊㪤㩷㪂㩷㪈㪊㪪㪤㩷㪂㩷㪉㪏㪪㪫㩷
㪈㪇㪋
㪈㪈㪉
㪈㪇㪉
㪈㪇㪉
㪞 㪥㪝㪉
㪙㫉㪸㫑㫀㫃
㪐㪏
㪎㪋
㪈㪇㪍
㪐㪉
㪏㪉
㪏㪇
㪝 㪥㪝㪈
㪌㪋
㪈㪍㪤㩷㪂㩷㪊㪇㪪㪤㩷㪂㩷㪍㪪㪫
㪈㪍㪤㩷㪂㩷㪉㪋㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪉㪘
㪌㪉
㪌㪉
㪈㪍㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪉㪇㪪㪫㩷㪂㩷㪍㪘
㪉㪍㩷㪤㪆㪪㪤㩷㪂㩷㪉㪏㩷㪪㪫㪆㪘
㪌㪋
㪌㪋
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪌㪋
㪥㪼㫋㫌㫄㪸㩷㪹㪸㫉㪹㪸
㪝㪃㩷㪤
㪛 㪉㫅
㫊㫇㪅
㪘㫉㫀㫌㫊
㪘㫉㫀㫌㫊 㪘㫉㫀㫌㫊 㪞㪸㫃㪼㫀㪺㪿㫋㪿㫐㫊㩷㪺㪸㪼㫉㫌㫃㪼㫊㪺㪼㫅㫊
㪚 㪪㪼㫏
㪹㪸㫉㪹㫌㫊 㪾㪼㫅㫀㪻㪼㫅㫊 㪺㪸㪼㫃㪸㫋㪸 㫅㪼㫅㪾㪸 㫋㪿㪸㫃㪸㫊㫊㫀㫅㪸 㫃㫌㫅㫀㫊㪺㫌㫋㫀㫊 㪻㫌㫊㫊㫌㫄㫀㪼㫉㫀 㫇㪸㫉㫂㪼㫉㫀
㪽㪼㫃㫀㫊 㪽㪼㫃㫀㫊 㪾㫌㪸㫋㪼㫄㪸㫃㪼㫅㫊㫀㫊 㪹㪸㪾㫉㪼 㫄㪸㫉㫀㫅㫌㫊 㫄㪼㫃㪸㫅㫆㫇㫌㫊 㫊㫇㫀㫏㫀㫀
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪘㫉㫀㫆㫇㫊㫀㫊 㪘㫉㫀㫆㫇㫊㫀㫊 㪘㫉㫀㫆㫇㫊㫀㫊 㪙㪸㪾㫉㪼 㪙㪸㪾㫉㪼 㪚㪸㫋㪿㫆㫉㫆㫇㫊 㪚㪸㫋㪿㫆㫉㫆㫇㫊 㪚㪸㫋㪿㫆㫉㫆㫇㫊 㪞㪼㫅㫀㪻㪼㫅㫊 㪞㪼㫅㫀㪻㪼㫅㫊 㪥㪼㫄㪸㫇㫋㪼㫉㫐㫏 㪥㪼㫄㪸㫇㫋㪼㫉㫐㫏 㪥㪼㫋㫌㫄㪸 㪥㫆㫋㪸㫉㫀㫌㫊 㪧㫃㫀㪺㫆㪽㫆㫃㫃㫀㫊 㪪㪺㫀㪸㪻㪼㫊
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪝㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷 㪘㫉㫀㫀㪻㪸㪼
㪫㪸㪹㫃㪼㩷㪍㪅㪈㪊㩷㩷㪦㫉㪻㪼㫉㩷㪪㪠㪣㪬㪩㪠㪝㪦㪩㪤㪜㪪㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀
97
㪟㪼㫄㫀㪹㪸㪾㫉㫌㫊 㪟㪼㫄㫀㪹㪸㪾㫉㫌㫊 㪟㪼㫄㫀㪹㪸㪾㫉㫌㫊 㪟㪼㫄㫀㪹㪸㪾㫉㫌㫊 㪟㪼㫄㫀㪹㪸㪾㫉㫌㫊 㪟㪼㫄㫀㪹㪸㪾㫉㫌㫊 㪟㪼㫄㫀㪹㪸㪾㫉㫌㫊 㪟㪼㫄㫀㪹㪸㪾㫉㫌㫊 㪟㫆㫉㪸㪹㪸㪾㫉㫌㫊 㪟㫆㫉㪸㪹㪸㪾㫉㫌㫊 㪤㫐㫊㫋㫌㫊 㪤㫐㫊㫋㫌㫊 㪤㫐㫊㫋㫌㫊 㪤㫐㫊㫋㫌㫊 㪤㫐㫊㫋㫌㫊 㪤㫐㫊㫋㫌㫊 㪤㫐㫊㫋㫌㫊 㪤㫐㫊㫋㫌㫊 㪤㫐㫊㫋㫌㫊 㪤㫐㫊㫋㫌㫊 㪤㫐㫊㫋㫌㫊 㪤㫐㫊㫋㫌㫊 㪤㫐㫊㫋㫌㫊 㪤㫐㫊㫋㫌㫊 㪤㫐㫊㫋㫌㫊 㪤㫐㫊㫋㫌㫊 㪧㪼㫃㫋㪼㫆㪹㪸㪾㫉㫌㫊 㪧㪼㫃㫋㪼㫆㪹㪸㪾㫉㫌㫊 㪧㪼㫃㫋㪼㫆㪹㪸㪾㫉㫌㫊 㪧㪼㫃㫋㪼㫆㪹㪸㪾㫉㫌㫊 㪧㪼㫃㫋㪼㫆㪹㪸㪾㫉㫌㫊 㪧㪼㫃㫋㪼㫆㪹㪸㪾㫉㫌㫊 㪧㪼㫃㫋㪼㫆㪹㪸㪾㫉㫌㫊 㪧㫊㪼㫌㪻㫆㪹㪸㪾㫉㫌㫊 㪧㫊㪼㫌㪻㫆㪹㪸㪾㫉㫌㫊 㪧㫊㪼㫌㪻㫆㪹㪸㪾㫉㫌㫊
㫄㪸㪺㫉㫆㫇㫋㪼㫉㫌㫊 㫄㪼㫅㫆㪻㪸 㫄㪼㫅㫆㪻㪸 㫄㪼㫅㫆㪻㪸㩷㫄㪼㫅㫆㪻㪸 㫄㪼㫅㫆㪻㪸㩷㫄㪼㫅㫆㪻㪸 㫅㪼㫄㫌㫉㫌㫊 㫅㪼㫄㫌㫉㫌㫊 㫎㫐㪺㫂㫀㫀 㪹㫉㪸㪺㪿㫐㫊㫆㫄㪸 㫅㫀㪾㫉㫀㪺㫆㫃㫃㪸㫉㫀㫊 㪺㪸㫍㪸㫊㫀㫌㫊 㪺㪸㫍㪸㫊㫀㫌㫊 㪺㪸㫍㪸㫊㫀㫌㫊 㪾㫌㫃㫀㫆 㪾㫌㫃㫀㫆 㪾㫌㫃㫀㫆 㫋㪼㫅㪾㪸㫉㪸 㫋㪼㫅㪾㪸㫉㪸 㫋㪼㫅㪾㪸㫉㪸 㫋㪼㫅㪾㪸㫉㪸 㫍㫀㫋㫋㪸㫋㫌㫊 㫍㫀㫋㫋㪸㫋㫌㫊 㫍㫀㫋㫋㪸㫋㫌㫊 㫍㫀㫋㫋㪸㫋㫌㫊 㫍㫀㫋㫋㪸㫋㫌㫊 㫍㫀㫋㫋㪸㫋㫌㫊 㪼㫌㫇㫆㪾㫆㫅 㫅㫌㪻㫀㪺㪼㫇㫊 㫅㫌㪻㫀㪺㪼㫇㫊 㫌㫊㫊㫌㫉㫀㪼㫅㫊㫀㫊 㫌㫊㫊㫌㫉㫀㪼㫅㫊㫀㫊 㫌㫊㫊㫌㫉㫀㪼㫅㫊㫀㫊 㫌㫊㫊㫌㫉㫀㪼㫅㫊㫀㫊 㪸㫌㫉㪸㫅㫋㫀㪸㪺㫌㫊 㪸㫌㫉㪸㫅㫋㫀㪸㪺㫌㫊 㪺㫉㪸㫊㫊㫀㫃㪸㪹㫉㫀㫊
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪝㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷
㪉㪏㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㩷㪏㪪㪫㪂㩷㪋㪘 㪉㪍㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪋㪘 㪈㪏㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪈㪋㪘
㪍㪇 㪍㪇 㪌㪏
㪊㪇㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪈㪋㪘
㪋㪏 㪋㪏
㪝㪃㩷㪤
㪌㪉
㪉㪇㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪈㪉㩷㪪㪫㪆㪘
㪌㪉
㪝㪃㩷㪤 㪝㪃㩷㪤
㪉㪋㪤㩷㪂㩷㪈㪇㪪㪤㩷㪂㩷㪈㪏㪪㪫
㪌㪉
㪣㪼㫀㫆㪺㪸㫊㫊㫀㫊
㪈㪏㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪈㪏㩷㪪㪫㪆㪘
㪉㪋㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪈㪋㪪㪫
㪈㪏㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪈㪍㩷㪪㪫㪆㪘
㪉㪇㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪈㪍㩷㪪㪫㪆㪘
㪉㪋㪤㩷㪂㩷㪈㪏㪪㪤㩷㪂㩷㪈㪇㪪㪫
㪋㪋㩷㪤㪆㪪㪤㩷㪂㩷㪈㪉㩷㪪㪫㪆㪘
㪌㪍 㪌㪉
㪈㪏㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪉㪍㩷㪪㪫㪆㪘
㪌㪍 㪌㪉
㪉㪇㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪈㪍㪪㪫
㪌㪇
㪤 㪝㪃㩷㪤
㪧㫊㪼㫌㪻㫆㪹㪸㪾㫉㫌㫊 㪤 㪧㫊㪼㫌㪻㫆㪹㪸㪾㫉㫌㫊 㪝㪃㩷㪤 㪧㫊㪼㫌㪻㫆㪹㪸㪾㫉㫌㫊㩷㪼㫄㪸㫉㪾㫀㫅㪸㫋㫌㫊 㪝㪃㩷㪤 㪼㫄㪸㫉㪾㫀㫅㪸㫋㫌㫊 㪝㪃㩷㪤
㪉㪏㪤㩷㪂㩷㪉㪉㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪉㪘
㪈㪍㪤㩷㪂㩷㪈㪇㪪㪤㩷㪂㩷㪉㪇㪪㪫㩷㪂㩷㪈㪉㪘
㪉㪇㪤㩷㪂㩷㪉㪋㪪㪤㩷㪂㩷㪈㪇㪪㪫
㪈㪇㪤㩷㪂㩷㪊㪇㪪㪤㩷㪂㩷㪈㪉㪪㪫㩷㪂㩷㪍㪘
㪉㪉㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪈㪉㪪㪫
㪉㪉㪤㩷㪂㩷㪉㪍㪪㪤㩷㪂㩷㪍㪪㪫
㪉㪍㪤㩷㪂㩷㪈㪏㩷㪪㪤㪆㪪㪫㩷㪂㩷㪈㪇㪘
㪉㪌㪤㩷㪂㩷㪈㪏㩷㪪㪤㪆㪪㪫㩷㪂㩷㪈㪈㪘
㪈㪇㪤㩷㪂㩷㪊㪏㩷㪪㪤㪆㪪㪫㩷㪂㩷㪍㪘
㪐㪤㩷㪂㩷㪊㪏㩷㪪㪤㪆㪪㪫㩷㪂㩷㪎㪘
㪈㪊㪤㩷㪂㩷㪊㪊㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪏㪘
㪈㪉㪤㩷㪂㩷㪊㪋㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪏㪘
㪌㪋
㪝㪃㩷㪤
㪝㪃㩷㪤
㫍㫀㫋㫋㪸㫋㫌㫊㩷㫍㫀㫋㫋㪸㫋㫌㫊
㪌㪏
㪝㪃㩷㪤
㪌㪏
㪌㪋
㪝㪃㩷㪤
㪤
㪌㪋
㪤
㪌㪋
㪌㪋
㪝
㪝㪃㩷㪤
㪌㪋 㪌㪋
㪤
㪌㪏 㪌㪋
㪝
㪝 㪤
㪌㪏 㪌㪏
㪝㪃㩷㪤
㪈㪋㪤㩷㪂㩷㪉㪍㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪈㪋㪘
㪈㪏㪤㩷㪂㩷㪉㪉㪪㪤㩷㪂㩷㪈㪏㪘
㪈㪍㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪉㪋㪘
㪌㪋
㪌㪏
㪊㪉㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪈㪇㪘
㪌㪍
㪌㪏
㪉㪇㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪈㪉㪘
㪌㪍
㪝㪃㩷㪤
㪉㪉㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪈㪍㪘
㪌㪏
㪤 㪝㪃㩷㪤
㪝㪃㩷㪤
㪊㪍㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪋㪘
㪐㪇
㪏㪇
㪏㪇
㪐㪉
㪏㪍
㪏㪍
㪐㪋
㪈㪇㪇
㪏㪍
㪏㪋
㪈㪇㪋
㪏㪋
㪐㪏
㪐㪏
㪐㪍
㪈㪇㪉
㪈㪇㪋
㪈㪇㪋
㪈㪇㪇
㪐㪏
㪐㪏
㪐㪉
㪈㪇㪍
㪈㪇㪏
㪏㪋
㪈㪇㪉
㪐㪇
㪈㪇㪇
㪈㪇㪏
㪈㪇㪇
㪈㪇㪋
㪈㪇㪋
㪈㪇㪋
㪈㪇㪇
㪈㪇㪍
㪈㪇㪋
㪈㪇㪏
㪈㪈㪇
㪈㪇㪏
㪈㪇㪏
㪐㪏
㪐㪎
㪈㪇㪉
㪈㪇㪈
㪈㪇㪏
㪈㪇㪏
㪈㪇㪉
㪈㪇㪉
㪈㪇㪉
㪈㪈㪍
㪈㪈㪍
㪈㪇㪉
㪈㪇㪇
㪈㪇㪇
㪉
㪉
㪉
㪉
㪉
㪉
㩿㪈㪅㪏㪁㩷㪝㪚㪤㪀
㪘㪚㪥㪔㪌㪍
㪘㪚㪥㪔㪌㪋
㪘㪚㪥㪔㪌㪋
㪘㪚㪥㪔㪌㪋
㪘㪚㪥㪔㪌㪋
㪘㪚㪥㪔㪌㪏
㪘㪚㪥㪔㪌㪏
㪘㪚㪥㪔㪌㪍
㪘㪚㪥㪔㪌㪉
㪘㪚㪥㪔㪌㪏
㪘㪚㪥㪔㪌㪍
㪘㪚㪥㪔㪌㪏
㪱㪱
㪱㪮
㪱㪱
㪱㪮
㪯㪰㪃㩷㪘㪚㪥㪔㪌㪏
㪯㪯㪃㩷㪘㪚㪥㪔㪌㪏
㪘㪚㪥㪔㪌㪏
㪘㪚㪥㪔㪌㪏
㪘㪚㪥㪔㪍㪇
㪘㪚㪥㪔㪌㪋
㪢㪄㪋㪍㪃㩷㪚㪄㪈㪇㪏
㪪㪄㪌㪌
㪙 㪄㪋
㪢㪄㪋㪍㪃㩷㪚㪄㪈㪇㪏
㪛㪄 㪊 㪋
㪣㪄㪈
㪚㪄㪏㪍
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
㪚㪿㫀㫅㪸㩷㩿㪮㫌㪿㪸㫅㪀
㪡㪸㫇㪸㫅㩷㩿㪢㫌㫄㪸㫄㫆㫋㫆㪀
㪡㪸㫇㪸㫅㩷㩿㪢㫐㫌㫊㪿㫌㪀
㪢㫆㫉㪼㪸㩷㩿㪟㪸㫅㩷㪩㪅㪀㩷
㪚㪿㫀㫅㪸㩷㩿㪥㪸㫅㪺㪿㫆㫅㪾㪀㩷
㪢㫆㫉㪼㪸㩷㩿㪢㪸㫅㪾㫂㫐㪼㫆㫅㪾㪀
㪚㪿㫀㫅㪸㩷㩿㪮㫌㪿㪸㫅㪀
㪡㪸㫇㪸㫅㩷㩿㪪㪿㫀㫄㪸㫅㪼㪀
㪡㪸㫇㪸㫅㩷㩿㪣㪸㫂㪼㩷㪙㫀㫎㪸㪀
㪚㪿㫀㫅㪸㩷㩿㪮㫌㪿㪸㫅㪀
㪠㫅㪻㫀㪸㩷㩿㪦㫉㫀㫊㫊㪸㪀
㪠㫅㪻㫀㪸㩷㩿㪮㪙㪀
㪠㫅㪻㫀㪸㩷㩿㪮㪙㪀
㪠㫅㪻㫀㪸㩷㩿㪦㫉㫀㫊㫊㪸㪀
㪠㫅㪻㫀㪸㩷㩿㪡㪸㫄㫄㫌㪀
㪠㫅㪻㫀㪸㩷㩿㪦㫉㫀㫊㫊㪸㪀
㪠㫅㪻㫀㪸㩷㩿㪟㪸㫉㫐㪸㫅㪸㪀
㪠㫅㪻㫀㪸㩷㩿㪟㪸㫉㫐㪸㫅㪸㪀
㪠㫅㪻㫀㪸㩷㩿㪟㪸㫉㫐㪸㫅㪸㪀
㪠㫅㪻㫀㪸㩷㩿㪟㪸㫉㫐㪸㫅㪸㪀
㪠㫅㪻㫀㪸㩷㩿㪦㫉㫀㫊㫊㪸㪀
㪠㫅㪻㫀㪸㩷㩿㪦㫉㫀㫊㫊㪸㪀
㪠㫅㪻㫀㪸㩷㩿㪮㪙㪀
㪠㫅㪻㫀㪸㩷㩿㪙㫀㪿㪸㫉㪀
㪠㫅㪻㫀㪸㩷㩿㪦㫉㫀㫊㫊㪸㪀
㪠㫅㪻㫀㪸㩷㩿㪡㪸㫄㫄㫌㪀
㪠㫅㪻㫀㪸㩷㩿㪢㪼㫉㪸㫃㪸㪀
㪠㫅㪻㫀㪸㩷㩿㪢㪼㫉㪸㫃㪸㪀
㪟㪄㪉㪇㪃 㩷㪰㪄㪈㪌
㪬㪄㪊㪋
㪬㪄㪉㪌
㪬㪄㪊㪋
㪰㪄㪈㪌
㪢㪄㪌㪉
㪟㪄㪉㪇㪃 㩷㪰㪄㪈㪌
㪝㪄㪌㪈
㪬㪄㪊㪋㪃㩷㪦㪄㪋㪏
㪟㪄㪉㪇㪃 㩷㪰㪄㪈㪌
㪢㪄㪋㪉㪃㩷㪡㪄㪐
㪤㪄 㪉 㪊
㪤㪄 㪉 㪊
㪚㪄㪍㪊
㪪㪄㪌㪌
㪫㪄㪋㪐
㪩 㪄㪎㪌
㪩 㪄㪎㪌
㪩 㪄㪋㪍
㪩 㪄㪋㪍
㪚㪄㪍㪊
㪚㪄㪍㪊
㪤㪄㪉㪏㪃㩷㪛㪄㪊㪊
㪢㪄㪊㪉
㪫㪄㪋㪐
㪪㪄㪌㪌㪃㩷㪩㪄㪈㪉㪉
㪥㪄㪌㪎
㪥㪄㪌㪍
㪫㪿㪸㫀㫃㪸㫅㪻㩷㩿㪥㪸㫂㪿㫆㫅㩷㪧㪿㪸㫅㫆㫄㪀 㪤㪄㪏
㪠㫅㪻㫀㪸㩷㩿㪘㫊㫊㪸㫄㪀
㪠㫅㪻㫀㪸㩷㩿㪡㪸㫄㫄㫌㪀
㪠㫅㪻㫀㪸㩷㩿㪮㪙㪀
㪠㫅㪻㫀㪸㩷㩿㪘㫊㫊㪸㫄㪀
㪠㫅㪻㫀㪸㩷㩿㪮㪙㪀
㪉㪉㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪈㪍㪘㩷
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪌㪏
㪘㪚㪥㪔㪌㪏
㪡 㪚㫆㫄㫄㪼㫅㫋㫊 㪚㪿㫀㫅㪸
㪉
㪟 㪠 㪘㪾㪄 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㪥㪦㪩㫊 㩿㫇㪾㪆㪺㪼㫃㫃㪀 㪠㫅㪻㫀㪸
㪎㪉
㪞 㪥㪝㪉
㪈㪉㪤㩷㪂㩷㪈㪉㪪㪫㩷㪂㩷㪉㪋㪘
㪍㪇
㪝 㪥㪝㪈
㪋㪏
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪍㪇
㪛 㪉㫅
㪌㪍
㪝
㪚 㪪㪼㫏
㫍㪸㫉㪅㩷㪘 㫍㪸㫉㪅㩷㪙
㪤㫐㫊㫋㫌㫊 㪤㫐㫊㫋㫌㫊㩷㪺㫆㫉㫊㫌㫃㪸 㪤㫐㫊㫋㫌㫊㩷㪹㫃㪼㪼㫂㪼㫉㫀 㪤㫐㫊㫋㫌㫊㩷㪹㫃㪼㪼㫂㪼㫉㫀 㪤㫐㫊㫋㫌㫊
㪤㫐㫊㫋㫌㫊 㪤㫐㫊㫋㫌㫊
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪫㪸㪹㫃㪼㩷㪍㪅㪈㪊㩷㩷㪦㫉㪻㪼㫉㩷㪪㪠㪣㪬㪩㪠㪝㪦㪩㪤㪜㪪㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀
98
㪚㪸㫃㫃㫀㪺㪿㫋㪿㫐㫊 㪚㪸㫃㫃㫀㪺㪿㫋㪿㫐㫊 㪚㪸㫃㫃㫀㪺㪿㫋㪿㫐㫊 㪚㪸㫃㫃㫀㪺㪿㫋㪿㫐㫊 㪛㫀㪸㫅㪼㫄㪸 㪛㫀㪸㫅㪼㫄㪸 㪛㫀㪸㫅㪼㫄㪸
㪚㪸㫃㫃㫀㪺㪿㫋㪿㫐㫀㪻㪸㪼 㩷㩷㩷㪚㪸㫃㫃㫀㪺㪿㫋㪿㫐㫀㫅㪸㪼
㪧㫊㪼㫌㪻㫆㪹㪸㪾㫉㫌㫊 㪧㫊㪼㫌㪻㫆㪹㪸㪾㫉㫌㫊 㪧㫊㪼㫌㪻㫆㪹㪸㪾㫉㫌㫊 㪧㫊㪼㫌㪻㫆㪹㪸㪾㫉㫌㫊 㪧㫊㪼㫌㪻㫆㪹㪸㪾㫉㫌㫊 㪧㫊㪼㫌㪻㫆㪹㪸㪾㫉㫌㫊 㪧㫊㪼㫌㪻㫆㪹㪸㪾㫉㫌㫊 㪧㫊㪼㫌㪻㫆㪹㪸㪾㫉㫌㫊 㪧㫊㪼㫌㪻㫆㪹㪸㪾㫉㫌㫊 㪧㫊㪼㫌㪻㫆㪹㪸㪾㫉㫌㫊 㪧㫊㪼㫌㪻㫆㪹㪸㪾㫉㫌㫊 㪩㫀㫋㪸 㪩㫀㫋㪸 㪩㫀㫋㪸 㪩㫀㫋㪸 㪪㫇㪼㫉㪸㫋㪸 㪪㫇㪼㫉㪸㫋㪸 㪪㫇㪼㫉㪸㫋㪸 㪫㪸㪺㪿㫐㫊㫌㫉㫌㫊 㪫㪸㪺㪿㫐㫊㫌㫉㫌㫊 㪫㪸㪺㪿㫐㫊㫌㫉㫌㫊 㪫㪸㪺㪿㫐㫊㫌㫉㫌㫊 㪫㪸㪺㪿㫐㫊㫌㫉㫌㫊 㪫㪸㪺㪿㫐㫊㫌㫉㫌㫊 㪫㪸㪺㪿㫐㫊㫌㫉㫌㫊 㪫㪸㪺㪿㫐㫊㫌㫉㫌㫊
㪺㪸㫃㫃㫀㪺㪿㫋㪿㫐㫊 㪺㪸㫃㫃㫀㪺㪿㫋㪿㫐㫊 㪺㪸㫃㫃㫀㪺㪿㫋㪿㫐㫊 㪺㪸㫃㫃㫀㪺㪿㫋㪿㫐㫊 㫃㫆㫅㪾㫀㪹㪸㫉㪹㫀㫊 㫌㫉㫆㫊㫋㫉㫀㪸㫋㫌㫄 㫌㫉㫆㫊㫋㫉㫀㪸㫋㪸
㫂㫆㫉㪼㪸㫅㫌㫊 㫂㫆㫉㪼㪸㫅㫌㫊 㫃㫆㫅㪾㫀㫉㫆㫊㫋㫉㫀㫊 㫅㫀㫋㫀㪻㫌㫊 㫅㫀㫋㫀㪻㫌㫊 㫇㫉㪸㫋㫋㫀 㫋㪼㫅㫀㫌㫊 㫋㫆㫂㫀㪼㫅㫊㫀㫊 㫋㫉㫌㫅㪺㪸㫋㫌㫊 㫍㪸㪺㪿㪼㫃㫃㫀㫀 㫍㪸㪺㪿㪼㫃㫃㫀㫀 㪺㪿㫉㫐㫊㪼㪸 㪺㪿㫉㫐㫊㪼㪸 㫉㫀㫋㪸 㫉㫀㫋㪸 㪸㫆㫉 㫊㪼㪼㫅㪾㪿㪸㫃㪸 㫊㪼㪼㫅㪾㪿㪸㫃㪸 㪸㪻㫀㫇㫆㫊㪸㫃㫀㫊 㪽㫌㫃㫍㫀㪻㫉㪸㪺㫆 㪽㫌㫃㫍㫀㪻㫉㪸㪺㫆 㪽㫌㫃㫍㫀㪻㫉㪸㪺㫆 㪽㫌㫃㫍㫀㪻㫉㪸㪺㫆 㪽㫌㫃㫍㫀㪻㫉㪸㪺㫆 㪽㫌㫃㫍㫀㪻㫉㪸㪺㫆 㪽㫌㫃㫍㫀㪻㫉㪸㪺㫆
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪝㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷
㪧㫊㪼㫌㪻㫆㪹㪸㪾㫉㫌㫊 㪧㪼㫃㫋㪼㫆㪹㪸㪾㫉㫌㫊 㪧㪼㫃㫋㪼㫆㪹㪸㪾㫉㫌㫊 㪧㪼㫃㫋㪼㫆㪹㪸㪾㫉㫌㫊 㪧㫊㪼㫌㪻㫆㪹㪸㪾㫉㫌㫊 㪧㫊㪼㫌㪻㫆㪹㪸㪾㫉㫌㫊 㪧㫊㪼㫌㪻㫆㪹㪸㪾㫉㫌㫊
㪘㫆㫉㫀㪺㪿㫋㪿㫐㫊 㪤㫐㫊㫋㫌㫊
㪧㪼㫃㫋㪼㫆㪹㪸㪾㫉㫌㫊 㪧㪼㫃㫋㪼㫆㪹㪸㪾㫉㫌㫊
㪸㫌㫉㪸㫅㫋㫀㪸㪺㫌㫊
㪣㪼㫀㫆㪺㪸㫊㫊㫀㫊 㪧㪼㫃㫋㪼㫆㪹㪸㪾㫉㫌㫊 㪧㪼㫃㫋㪼㫆㪹㪸㪾㫉㫌㫊
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉 㫊㫇㪅 㫊㫇㪅
㪫㪸㪹㫃㪼㩷㪍㪅㪈㪊㩷㩷㪦㫉㪻㪼㫉㩷㪪㪠㪣㪬㪩㪠㪝㪦㪩㪤㪜㪪㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀
㪈㪇㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪉㪇㪘
㪌㪇
㪉㪋㪤㩷㪂㩷㪉㪋㪪㪤㩷㪂㩷㪋㪘
㪍㪤㩷㪂㩷㪌㪋㪘 㪍㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪌㪇㪘
㪍㪇 㪍㪉
㪏㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪋㪍㪘
㪋㪋㩷㪤㪆㪪㪤㩷㪂㩷㪏㩷㪪㪫㪆㪘
㪌㪉
㪍㪉
㪋㪍㩷㪤㪆㪪㪤㩷㪂㩷㪏㩷㪪㪫㪆㪘
㪌㪋
㪝㪃㩷㪤
㪈㪋㪤㩷㪂㩷㪈㪇㪪㪤㩷㪂㩷㪊㪉㩷㪪㪫㪆㪘
㪌㪏 㪌㪍
㪝㪃㩷㪤 㪝㪃㩷㪤
㪉㪉㪤㩷㪂㩷㪉㪉㪪㪤㩷㪂㩷㪈㪋㪪㪫
㪈㪏㪤㩷㪂㩷㪉㪍㪪㪤㩷㪂㩷㪏㪘
㪌㪉 㪌㪉
㪉㪉㩷㪤㩷㪂㩷㪉㪋㩷㪪㪤㪆㪪㪫㩷㪂㩷㪍㪘
㪌㪉 㪝㪃㩷㪤
㪉㪏㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪈㪉㪪㪫
㪌㪉
㪝㪃㩷㪤
㪉㪉㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪈㪋㪪㪫㩷㪂㩷㪋㪘 㪈㪏㪤㩷㪂㩷㪉㪍㩷㪪㪤㪆㪪㪫㩷㪂㩷㪏㪘
㪌㪉 㪌㪉
㪌㪉
㪝㪃㩷㪤 㪝㪃㩷㪤
㪉㪋㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪋㪘
㪌㪇
㪉㪇㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪈㪋㪪㪫㩷㪂㩷㪉㪘
㪉㪏㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪏㪪㪫㩷㪂㩷㪍㪘
㪌㪋
㪉㪇㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪏㪘
㪈㪋㪤㩷㪂㩷㪉㪋㪪㪤㩷㪂㩷㪈㪉㪪㪫㩷㪂㩷㪋㪘
㪌㪉
㪌㪋
㪏㪤㩷㪂㩷㪉㪉㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪉㪇㪘 㪈㪋㪤㩷㪂㩷㪊㪋㪪㪤㩷㪂㩷㪍㪪㪫
㪌㪉 㪌㪋
㪝㪃㩷㪤
㪝
㪝㪃㩷㪤
㪈㪍㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪈㪍㩷㪪㪫㪆㪘 㪉㪏㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪍㪪㪫
㪌㪉
㪤
㪉㪉㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪈㪋㪪㪫
㪉㪍㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪈㪉㪪㪫
㪉㪋㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪉㪇㩷㪪㪫㪆㪘
㪉㪉㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪈㪋㪪㪫
㪌㪋
㪌㪉
㪌㪉
㪝㪃㩷㪤 㪝㪃㩷㪤
㪌㪍
㪝㪃㩷㪤
㪉㪇㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪏㪪㪫㩷㪂㩷㪈㪇㪘
㪌㪉 㪌㪉
㪤 㪝㪃㩷㪤
㪉㪉㪤㩷㪂㩷㪉㪇㩷㪪㪤㪆㪪㪫㩷㪂㩷㪈㪇㪘 㪉㪇㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪈㪍㪪㪫
㪌㪉 㪌㪉
㪝㪃㩷㪤 㪝㪃㩷㪤
㪉㪇㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪈㪍㪪㪫
㪉㪇㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪈㪋㩷㪪㪫㪆㪘
㪈㪏㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪈㪍㩷㪪㪫㪆㪘
㪌㪉
㪋㪏
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪝㪃㩷㪤
㪋㪏
㪝㪃㩷㪤
㪛 㪉㫅
㪝㪃㩷㪤
㪚 㪪㪼㫏
㪎㪋
㪍㪏
㪍㪍
㪐㪍
㪈㪇㪇
㪏㪇
㪈㪇㪉
㪐㪍
㪈㪇㪇
㪐㪉
㪏㪍
㪐㪇
㪏㪋
㪎㪋
㪐㪋
㪏㪍
㪐㪉
㪈㪇㪉
㪏㪉
㪈㪇㪉
㪏㪏
㪐㪇
㪐㪉
㪐㪉
㪐㪇
㪏㪍
㪏㪏
㪏㪏
㪏㪉
㪏㪇
㪝 㪥㪝㪈
㪎㪏
㪎㪋
㪍㪍
㪈㪈㪍
㪐㪍
㪈㪇㪇
㪐㪏
㪈㪇㪋
㪐㪍
㪈㪇㪇
㪈㪇㪇
㪐㪏
㪏㪇
㪈㪇㪉
㪐㪍
㪈㪇㪋
㪈㪇㪏
㪏㪋
㪈㪇㪏
㪈㪇㪋
㪈㪇㪋
㪈㪇㪋
㪐㪋
㪈㪇㪋
㪐㪋
㪈㪇㪋
㪞 㪥㪝㪉
㪉
㪉
㪉
㪊
㪉
㪉
㪋
㪉
㪉
㪉
㪉
㪘㪚㪥㪔㪌㪋
㪘㪚㪥㪔㪌㪋
㪘㪚㪥㪔㪌㪍
㪘㪚㪥㪔㪌㪋
㪘㪚㪥㪔㪌㪉
㪘㪚㪥㪔㪌㪍
㪘㪚㪥㪔㪌㪍
㪘㪚㪥㪔㪌㪏
㪘㪚㪥㪔㪌㪍
㪘㪚㪥㪔㪌㪍
㪘㪚㪥㪔㪌㪏
㪘㪚㪥㪔㪌㪍
㪘㪚㪥㪔㪌㪋
㪘㪚㪥㪔㪌㪍
㪘㪚㪥㪔㪌㪋
㪘㪚㪥㪔㪌㪋
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪈㪅㪉㩷㪝㪛
㪘㪚㪥㪔㪍㪋
㪇㪄㪉㩷 㪙
㪟㪄㪉㪇㪃 㩷㪰㪄㪈㪌
㪰㪄㪈㪌
㪟㪄㪉㪇㪃 㩷㪰㪄㪈㪌
㪢㪄㪌㪉
㪟㪄㪉㪇㪃 㩷㪰㪄㪈㪌
㪢㪄㪌㪉
㪬㪄㪊㪋
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
㪢㫆㫉㪼㪸㩷㩿㪢㫌㫄㩷㪩㪅㪀
㪢㫆㫉㪼㪸
㩿㪟㫌㪹㪼㫀㪃㩷㪚㪿㫀㫅㪸㪀㩷
㪚㪿㫀㫅㪸㩷㩿㪘㫄㫌㫉㪀
㪢㫆㫉㪼㪸㩷㩿㪢㪸㫅㪾㫂㫐㪼㫆㫅㪾㪀
㪚㪿㫀㫅㪸㩷㩿㪪㪿㪸㫊㫀㪀
㪚㪿㫀㫅㪸㩷㩿㪟㫌㪹㪼㫀㪀
㪚㪿㫀㫅㪸㩷㩿㪰㪸㫅㪾㫊㪿㪸㫅㪀
㪠㫅㪻㫀㪸
㪠㫅㪻㫀㪸㩷㩿㪡㪸㫄㫄㫌㪀
㪠㫅㪻㫀㪸
㪠㫅㪻㫀㪸
㪠㫅㪻㫀㪸㩷㩿㪮㪙㪀
㪠㫅㪻㫀㪸㩷㩿㪮㪙㪀
㪠㫅㪻㫀㪸㩷㩿㪦㫉㫀㫊㫊㪸㪀
㪢㫆㫉㪼㪸㩷㩿㪞㫌㫄㩷㪩㪅㪀㩷㩷
㪚㪿㫀㫅㪸㩷㩿㪮㫌㪿㪸㫅㪀
㪚㪿㫀㫅㪸㩷㩿㪥㪸㫅㪺㪿㫆㫅㪾㪀㩷
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪚㪼㫅㫋㫉㪸㫃㩷㪘㫄㪸㫑㫆㫅㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪚㪼㫅㫋㫉㪸㫃㩷㪘㫄㪸㫑㫆㫅㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪚㪼㫅㫋㫉㪸㫃㩷㪘㫄㪸㫑㫆㫅㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪚㪼㫅㫋㫉㪸㫃㩷㪘㫄㪸㫑㫆㫅㪀
㪘㫉㪾㪼㫅㫋㫀㫅㪸
㪦㪄㪌㪍
㪤㪄 㪈 㪋 㪏
㪤㪄 㪈 㪋 㪏
㪧㪄㪏㪐
㪧㪄㪏㪐
㪪㪄㪈㪈
㪦㪄㪌㪍㪃㩷㪟㪄㪈㪊
㪧㪄㪍㪏
㪣㪄㪈㪌
㪣㪄㪌㪊
㪪㪄㪍㪊
㪢㪄㪌㪉
㪱㪄㪉㪈
㪟㪄㪉㪇㪃㩷㪣㪄㪋㪈㪃㩷㪚㪄㪏㪊
㪰㪄㪈㪌
㪛㪄 㪊 㪋
㪪㪄㪌㪌㪃㩷㪩㪄㪈㪉㪉
㪣㪄㪈
㪤㪄 㪉 㪇
㪢㪄㪋㪉㪃㩷㪛㪄㪊㪊
㪢㪄㪈㪊㪐
㪛㪄 㪉
㪬㪄㪊㪋
㪟㪄㪉㪇㪃 㩷㪰㪄㪈㪌
㪰㪄㪈㪌
㪡㪸㫇㪸㫅㩷㩿㪫㫆㫂㫐㫆㪃㩷㪚㪿㫀㪹㪸㪃㩷㪠㫎㪸㫋㪼㪀 㪬㪄㪉㪌
㪚㪿㫀㫅㪸㩷㩿㪮㫌㪿㪸㫅㪀
㪚㪿㫀㫅㪸㩷㩿㪞㫌㫀㫃㫀㫅㪀㩷
㪚㪿㫀㫅㪸㩷㩿㪮㫌㪿㪸㫅㪀
㪢㫆㫉㪼㪸㩷㩿㪢㪸㫅㪾㫂㫐㪼㫆㫅㪾㪀
㪚㪿㫀㫅㪸㩷㩿㪮㫌㪿㪸㫅㪀
㪢㫆㫉㪼㪸㩷㩿㪞㪸㫇㫐㪼㫆㫅㪾㪀
㪢㫆㫉㪼㪸㩷㩿㪟㪸㫅㩷㪩㪅㪀㩷
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪈㪅㪐㩷㪝㪛㪃㩷㩿㪊㪅㪋㩷㪙㪝㪘㪀 㪇㪄㪌㩷㪙㪃㩷㪘㪚㪥㪔㪌㪏 㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪈㪅㪐㪁㪃㩷㪉㪅㪇㩷㪝㪛
㪟 㪠 㪘㪾㪄 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㪥㪦㪩㫊 㩿㫇㪾㪆㪺㪼㫃㫃㪀
99
㪘㫊㫇㫀㪻㫆㫉㪸㫊 㪘㫊㫇㫀㪻㫆㫉㪸㫊 㪘㫊㫇㫀㪻㫆㫉㪸㫊 㪘㫊㫇㫀㪻㫆㫉㪸㫊 㪙㫉㫆㪺㪿㫀㫊 㪙㫉㫆㪺㪿㫀㫊 㪙㫉㫆㪺㪿㫀㫊 㪚㫆㫉㫐㪻㫆㫉㪸㫊 㪚㫆㫉㫐㪻㫆㫉㪸㫊 㪚㫆㫉㫐㪻㫆㫉㪸㫊 㪚㫆㫉㫐㪻㫆㫉㪸㫊 㪚㫆㫉㫐㪻㫆㫉㪸㫊 㪚㫆㫉㫐㪻㫆㫉㪸㫊 㪚㫆㫉㫐㪻㫆㫉㪸㫊 㪚㫆㫉㫐㪻㫆㫉㪸㫊 㪚㫆㫉㫐㪻㫆㫉㪸㫊 㪚㫆㫉㫐㪻㫆㫉㪸㫊 㪚㫆㫉㫐㪻㫆㫉㪸㫊 㪚㫆㫉㫐㪻㫆㫉㪸㫊 㪚㫆㫉㫐㪻㫆㫉㪸㫊 㪚㫆㫉㫐㪻㫆㫉㪸㫊 㪚㫆㫉㫐㪻㫆㫉㪸㫊 㪚㫆㫉㫐㪻㫆㫉㪸㫊 㪚㫆㫉㫐㪻㫆㫉㪸㫊 㪚㫆㫉㫐㪻㫆㫉㪸㫊 㪚㫆㫉㫐㪻㫆㫉㪸㫊 㪚㫆㫉㫐㪻㫆㫉㪸㫊 㪚㫆㫉㫐㪻㫆㫉㪸㫊 㪚㫆㫉㫐㪻㫆㫉㪸㫊 㪚㫆㫉㫐㪻㫆㫉㪸㫊 㪚㫆㫉㫐㪻㫆㫉㪸㫊
㩷㩷㩷㪚㫆㫉㫐㪻㫆㫉㪸㪻㫀㫅㪸㪼
㪟㫆㫇㫃㫆㫊㫋㪼㫉㫅㫌㫄
㪟㫆㫇㫃㫆㫊㫋㪼㫉㫅㫌㫄 㪟㫆㫇㫃㫆㫊㫋㪼㫉㫅㫌㫄 㪟㫆㫇㫃㫆㫊㫋㪼㫉㫅㫌㫄 㪤㪼㪾㪸㫃㪼㪺㪿㫀㫊
㪚㫆㫉㫐㪻㫆㫉㪸㫊
㫊㪺㪿㫌㫃㫋㫑㪼㫀
㪐㪇
㪝
㪌㪍 㪌㪍
㪤
㪉㪍㪤㩷㪂㩷㪈㪏㪪㪤㩷㪂㩷㪈㪍㪪㪫
㪍㪇
㪝㪃㩷㪤
㪌㪇㩷㫅㫆㫅㪄㪘
㪌㪇
㪈㪏㪤㩷㪂㩷㪉㪍㪪㪤㩷㪂㩷㪈㪋㪪㪫 㪊㪉㪤㩷㪂㩷㪈㪋㪪㪤
㪌㪏 㪋㪍
㪌㪇
㪈㪏㪤㩷㪂㩷㪉㪍㪪㪤
㪋㪋
㪝㪃㩷㪤
㪉㪉㪤㩷㪂㩷㪉㪉㪪㪤
㪋㪋
㪍㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪉㪇㪪㪫㩷㪂㩷㪌㪇㪘
㪎㪏
㪈㪉㪤㩷㪂㩷㪉㪉㪪㪤㩷㪂㩷㪌㪇㩷㪪㪫㪆㪘
㪏㪋 㪝㪃㩷㪤
㪋㪍㩷㫅㫆㫅㪄㪘
㪋㪍 㪝㪃㩷㪤
㪋㪍㩷㫅㫆㫅㪄㪘 㪋㪍㩷㫅㫆㫅㪄㪘
㪋㪍 㪋㪍
㪉㪏㪤㩷㪂㩷㪈㪏㪪㪤
㪋㪍
㪤
㪋㪍㪤㩷㪂㩷㪋㪇㪪㪤㩷㪂㩷㪏㪪㪫
㪏㪉㩷㫅㫆㫅㪄㪘㩷㪂㩷㪈㪍㪘
㪐㪋
㪝㪃㩷㪤
㪐㪏
㪈㪉㪇
㪺㪸㪅㩷㪈㪊㪉 㪐㪇㩷㫅㫆㫅㪄㪘㩷㪂㩷㪋㪉㪘
㪈㪊㪋
㪉㪌㪤㩷㪂㩷㪉㪍㩷㪪㪤㩷㪂㩷㪏㪪㪫㩷㪂㩷㪉㪘
㪍㪈
㪝
㪉㪇㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪉㪇㩷㪪㪫㪆㪘 㪉㪍㪤㩷㪂㩷㪉㪍㪪㪤㩷㪂㩷㪏㪪㪫
㪍㪇 㪍㪇
㪝㪃㩷㪤
㪺㪸㪅㩷㪌㪏 㪋㪏㩷㫅㫆㫅㪄㪘㩷㪂㩷㪈㪇㪘
㪊㪊㩷㪤㪆㪪㪤㩷㪂㩷㪉㪊㩷㪪㪫㪆㪘
㪊㪉㩷㪤㪆㪪㪤㩷㪂㩷㪉㪋㩷㪪㪫㪆㪘
㪈㪇㪇 㪈㪏㪤㩷㪂㩷㪈㪏㪪㪤㩷㪂㩷㪉㪇㪪㪫㩷㪂㩷㪋㪋㪘
㪝
㪋㪤㩷㪂㩷㪈㪇㪪㪤㩷㪂㩷㪉㪉㪪㪫㩷㪂㩷㪌㪋㪘
㪋㪤㩷㪂㩷㪈㪇㪪㪤㩷㪂㩷㪉㪉㪪㪫㩷㪂㩷㪌㪋㪘
㪊㪇㪤㩷㪂㩷㪈㪇㪪㪤㩷㪂㩷㪍㪪㪫
㪊㪇㪤㩷㪂㩷㪈㪇㪪㪤㩷㪂㩷㪍㪪㪫
㪊㪉㪤㩷㪂㩷㪈㪇㪪㪤㩷㪂㩷㪋㪪㪫
㪉㪏㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪋㪪㪫
㪤
㪐㪇
㪋㪍
㪝㪃㩷㪤 㪝㪃㩷㪤
㪋㪍
㪋㪍
㪝
㪝㪃㩷㪤
㫇㫆㪼㪺㫀㫃㫌㫊 㫋㪸㫌㫉㫌㫊 㪹㫉㫀㫋㫊㫂㫀㫀 㪹㫉㫀㫋㫊㫂㫀㫀 㫊㫇㫃㪼㫅㪻㪼㫅㫊 㪸㪼㫅㪼㫌㫊 㪸㪼㫅㪼㫌㫊 㪸㪼㫅㪼㫌㫊 㪸㪼㫅㪼㫌㫊 㪸㪼㫅㪼㫌㫊 㪸㪼㫅㪼㫌㫊 㪸㪼㫅㪼㫌㫊 㪸㪼㫅㪼㫌㫊 㪸㪼㫅㪼㫌㫊 㪸㪼㫅㪼㫌㫊 㪸㪾㪸㫊㫊㫀㫑㫀㫀 㪸㫉㪸㪾㫌㪸㫀㪸㪼㫅㫊㫀㫊 㪸㫉㪺㫌㪸㫋㫌㫊 㪸㫉㪺㫌㪸㫋㫌㫊 㪸㫏㪼㫃㫉㫆㪻㫀 㪹㫆㫅㪻㫀 㪻㪼㫃㫇㪿㪸㫏 㪻㫀㪽㫃㫌㫍㫀㪸㫋㫀㫃㫀㫊 㪼㪿㫉㪿㪸㫉㪻㫋㫀 㪼㪿㫉㪿㪸㫉㪻㫋㫀 㪼㫃㪼㪾㪸㫅㫊 㪼㫃㪼㪾㪸㫅㫊 㪽㫃㪸㫍㪼㫆㫃㫌㫊 㫁㫌㫃㫀㫀
㪝㪃㩷㪤
㪽㫌㫊㪺㫆㪾㫌㫋㫋㪸㫋㫌㫊
㪺㪽㪅㩷㪽㫌㫊㪺㫆㪾㫌㫋㫋㪸㫋㫌㫊
㪋㪋
㪏㩷㪤㪆㪪㪤㩷㪂㩷㪌㪋㪪㪫 㪏㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪋㪋㩷㪪㪫㪆㪘
㪍㪉 㪍㪋
㪝㪃㩷㪤
㫋㪿㫆㫉㪸㪺㪸㫋㪸
㪋㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪌㪉㪘
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪍㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪌㪉㪘
㪍㪇
㪛 㪉㫅
㪍㪇
㪝㪃㩷㪤
㪚 㪪㪼㫏
㫊㫇㪅 㫊㫇㪅
㫃㫀㫋㫋㫆㫉㪸㫃㪼
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪝㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷
㪫㪸㪹㫃㪼㩷㪍㪅㪈㪊㩷㩷㪦㫉㪻㪼㫉㩷㪪㪠㪣㪬㪩㪠㪝㪦㪩㪤㪜㪪㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀
㪐㪉
㪈㪇㪉
㪏㪏
㪏㪏
㪏㪍
㪈㪈㪏
㪐㪉
㪈㪏㪇
㪈㪇㪋
㪈㪈㪉
㪈㪇㪇 㪈㪈㪉
㪏㪐
㪏㪏
㪈㪊㪍
㪈㪇㪋
㪈㪇㪋
㪏㪍
㪏㪍
㪏㪏
㪏㪋
㪏㪋
㪎㪇
㪍㪏
㪍㪏
㪝 㪥㪝㪈
㪐㪉
㪈㪈㪍
㩿㪈㪇㪇㪀
㪏㪏
㪏㪏
㪈㪇㪍
㩿㪐㪉㪀
㩿㪐㪉㪀
㩿㪐㪉㪀
㪐㪉
㪈㪏㪏
㩿㪈㪏㪇㪀
㩿㪉㪉㪉㪀
㪈㪉㪇
㪈㪉㪇
㪈㪉㪇
㩿㪈㪇㪍㪀
㪈㪌㪍
㪈㪉㪍
㪈㪉㪍
㪐㪉
㪐㪉
㪐㪉
㪏㪏
㪈㪉㪋
㪍㪏
㪍㪏
㪞 㪥㪝㪉
㪋
㪋
㪉
㪉
㪉
㪍
㪏
㪋
㪋
㪉
㪈
㪉
㪉
㪉
㪉
㪋
㪉
㪉
㪊㪅㪇㩷㪝㪛
㪍㪅㪇㩷㪙㪝㪘
㩿㪋㪅㪌㩷㪝㪛㪀
㪏㪅㪏㩷㪙㪝㪘
㩿㪏㪅㪋㪁㩷㪝㪚㪤㪀
㪍㪅㪊㩷㪝㪛
㪉㪅㪏㩷㪝㪛
㩿㪊㪅㪉㩷㪝㪠㪘㪀
㪊㪅㪍㩷㪝㪛
㪉㪅㪊㩷㪝㪛
㪈㪅㪌㩷㪝㪛
㪊㪅㪉㩷㪝㪚㪤
㪈㪅㪋㩷㪝㪛
㪟 㪠 㪘㪾㪄 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㪥㪦㪩㫊 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㩿㪪㪅㩷㪘㫄㪼㫉㫀㪺㪸㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪙㪼㫃㪼㫄㪃㩷㪧㪘㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪙㪼㫃㪼㫄㪃㩷㪧㪘㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪞㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪞㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪞㪀
㩿㪙㫉㪸㫑㫀㫃㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪘㫄㪸㫑㫆㫅㩷㪩㪅㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪘㫄㪸㫑㫆㫅㩷㪩㪅㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪘㫄㪸㫑㫆㫅㩷㪩㪅㪀
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪘㪚㪥㪔㪌㪏
㪘㪚㪥㪔㪌㪏
㪋㪯
㪋㪯
㪉㪙
㩿㪙㫉㪸㫑㫀㫃㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㩿㪪㪅㩷㪘㫄㪼㫉㫀㪺㪸㪀
㩿㪙㫉㪸㫑㫀㫃㪃㩷㪚㫆㫃㫆㫄㪹㫀㪸㪃㩷㪧㪼㫉㫌㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪚㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪚㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㩿㪚㫆㫃㫆㫄㪹㫀㪸㪀
㩿㫅㫆㫉㫋㪿㪼㫉㫅㩷㪪㪅㩷㪘㫄㪼㫉㫀㪺㪸㪀
㩿㪚㫆㫃㫆㫄㪹㫀㪸㪀
㩿㪪㪅㩷㪘㫄㪼㫉㫀㪺㪸㪀
㪙㫉㪸㫑㫀㫃㪃㩷㪧㪼㫉㫌
㩿㪙㫉㪸㫑㫀㫃㪀
㩿㪪㪅㩷㪘㫄㪼㫉㫀㪺㪸㪀
㩿㪪㪅㩷㪘㫄㪼㫉㫀㪺㪸㪀
㩿㪪㪅㩷㪘㫄㪼㫉㫀㪺㪸㪀
㪧㪼㫉㫌㪃㩷㪞㫌㫐㪸㫅㪸
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪇㪄㪈㪙㪃㩷㪘㪚㪥㪔㪍㪋 㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㩿㪙㫉㪸㫑㫀㫃㪀 㪇㪄㪊㩷㪙㪃㩷㪘㪚㪥㪔㪍㪋 㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪯㪰
㪯㪯
㪋㪯㪃㩷㪘㪚㪥㪔㪈㪇㪇
㪘㪚㪥㪔㪐㪇
㪘㪚㪥㪔㪍㪇
㪘㪚㪥㪔㪍㪇
㪘㪚㪥㪔㪌㪏
㪘㪚㪥㪔㪍㪉
㪘㪚㪥㪔㪍㪍
㪘㪚㪥㪔㪍㪉
㪘㪚㪥㪔㪍㪉
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪢㪄㪈㪍
㪦㪄㪌㪋
㪟㪄㪈㪊
㪪㪄㪉㪎
㪦㪄 㪌 㪌
㪪㪄㪍㪐
㪪㪄㪍㪐
㪢㪄㪈㪍
㪪㪄㪉㪎
㪪㪄㪉㪎
㪪㪄㪉㪎
㪦㪄㪌㪋
㪪㪄㪍㪐
㪪㪄㪉㪎
㪟㪄㪈㪊
㪪㪄㪉㪎㪃㩷㪦㪄㪋㪏
㪫㪄㪌㪏
㪚㪄㪐㪏
㪦㪄 㪌 㪈
㪢㪄㪈㪎 㪦㪄㪌㪈㪃㩷㪦㪄㪌㪍
㪪㪄㪉㪎㪃㩷㪟㪄㪋㪇
㪫㪄㪌㪏
㪫㪄㪌㪏
㪦㪄㪌㪍
㪪㪄㪈㪐㪇
㪦㪄 㪌 㪍
㪪㪄㪈㪐㪇
㪪㪄㪈㪐㪇
㪪㪄㪈㪐㪇
㪦㪄㪌㪍
㪧㪄㪏㪌㪃㩷㪭㪄㪏㪍
㪧㪄㪏㪏
㪦㪄㪌㪍
㪦㪄㪌㪍㪃㩷㪧㪄㪏㪌
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
100
㪚㫆㫉㫐㪻㫆㫉㪸㫊 㪚㫆㫉㫐㪻㫆㫉㪸㫊 㪚㫆㫉㫐㪻㫆㫉㪸㫊 㪚㫆㫉㫐㪻㫆㫉㪸㫊 㪚㫆㫉㫐㪻㫆㫉㪸㫊 㪚㫆㫉㫐㪻㫆㫉㪸㫊 㪚㫆㫉㫐㪻㫆㫉㪸㫊 㪚㫆㫉㫐㪻㫆㫉㪸㫊 㪚㫆㫉㫐㪻㫆㫉㪸㫊 㪚㫆㫉㫐㪻㫆㫉㪸㫊 㪚㫆㫉㫐㪻㫆㫉㪸㫊 㪚㫆㫉㫐㪻㫆㫉㪸㫊 㪚㫆㫉㫐㪻㫆㫉㪸㫊 㪚㫆㫉㫐㪻㫆㫉㪸㫊 㪚㫆㫉㫐㪻㫆㫉㪸㫊 㪚㫆㫉㫐㪻㫆㫉㪸㫊 㪚㫆㫉㫐㪻㫆㫉㪸㫊 㪚㫆㫉㫐㪻㫆㫉㪸㫊 㪚㫆㫉㫐㪻㫆㫉㪸㫊 㪚㫆㫉㫐㪻㫆㫉㪸㫊 㪚㫆㫉㫐㪻㫆㫉㪸㫊 㪚㫆㫉㫐㪻㫆㫉㪸㫊 㪚㫆㫉㫐㪻㫆㫉㪸㫊 㪚㫆㫉㫐㪻㫆㫉㪸㫊 㪚㫆㫉㫐㪻㫆㫉㪸㫊 㪚㫆㫉㫐㪻㫆㫉㪸㫊 㪚㫆㫉㫐㪻㫆㫉㪸㫊 㪚㫆㫉㫐㪻㫆㫉㪸㫊 㪚㫆㫉㫐㪻㫆㫉㪸㫊 㪚㫆㫉㫐㪻㫆㫉㪸㫊 㪚㫆㫉㫐㪻㫆㫉㪸㫊 㪚㫆㫉㫐㪻㫆㫉㪸㫊 㪚㫆㫉㫐㪻㫆㫉㪸㫊 㪚㫆㫉㫐㪻㫆㫉㪸㫊 㪚㫆㫉㫐㪻㫆㫉㪸㫊 㪚㫆㫉㫐㪻㫆㫉㪸㫊
㫊㫇㪅 㫊㫇㪅 㫊㫇㪅
㫁㫌㫃㫀㫀 㫄㪼㫃㪸㫅㫀㫊㫋㫀㫌㫊 㫄㪼㫃㪸㫅㫀㫊㫋㫀㫌㫊 㫄㪼㫃㪸㫅㫀㫊㫋㫀㫌㫊 㫄㪼㫋㪸㪼 㫄㪼㫋㪸㪼 㫅㪸㫋㫋㪼㫉㪼㫉㫀 㫅㪸㫋㫋㪼㫉㪼㫉㫀 㫅㪸㫋㫋㪼㫉㪼㫉㫀 㫅㪸㫋㫋㪼㫉㪼㫉㫀 㫅㪸㫋㫋㪼㫉㪼㫉㫀 㪺㪽㪅㩷㫅㫀㫁㫊㫊㪼㫅㫀 㪸㪽㪽㪅㩷㫆㫊㫋㪼㫆㪺㪸㫉㫌㫊 㫇㪸㫃㪼㪸㫋㫌㫊 㫇㪸㫃㪼㪸㫋㫌㫊 㫇㪸㫃㪼㪸㫋㫌㫊 㫇㪸㫅㪻㪸 㫇㫌㫃㪺㪿㪼㫉 㫇㫌㫅㪺㫋㪸㫋㫌㫊 㪸㪽㪽㪅㩷㫇㫌㫅㪺㫋㪸㫋㫌㫊 㫉㪸㪹㪸㫌㫋㫀 㫉㪸㪹㪸㫌㫋㫀 㫉㪼㫋㫀㪺㫌㫃㪸㫋㫌㫊 㫉㪼㫋㫀㪺㫌㫃㪸㫋㫌㫊 㫉㫆㪹㫀㫅㪼㪸㪼 㫊㪺㪿㫎㪸㫉㫋㫑㫀 㫊㫀㫄㫌㫃㪸㫋㫌㫊 㪺㪽㪅㩷㫊㫀㫄㫌㫃㪸㫋㫌㫊 㫊㫆㪻㪸㫃㫀㫊 㫋㫉㫀㫃㫀㫅㪼㪸㫋㫌㫊 㫌㫅㪻㫌㫃㪸㫋㫌㫊 㫌㫅㪻㫌㫃㪸㫋㫌㫊 㫑㫐㪾㪸㫋㫌㫊
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪝㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷
㫄㫐㪼㫉㫊㫀
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪫㪸㪹㫃㪼㩷㪍㪅㪈㪊㩷㩷㪦㫉㪻㪼㫉㩷㪪㪠㪣㪬㪩㪠㪝㪦㪩㪤㪜㪪㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀
㪋㪍㩷㫅㫆㫅㪄㪘
㪋㪍
㪋㪍
㪝㪃㩷㪤
㪝
㪍㪉 㪍㪉 㪎㪋 㪋㪍 㪌㪉
㪤 㪤 㪝㪃㩷㪤 㪤 㪝㪃㩷㪤
㪍㪉
㪏㪋
㪝㪃㩷㪤
㪌㪍 㪍㪇
㪤
㪝㪃㩷㪤
㪋㪍
㪝㪃㩷㪤
㪌㪇
㪏㪋
㪋㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪈㪏㪪㪫㩷㪂㩷㪍㪇㪘
㪊㪏㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪍㪪㪫
㪈㪏㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪏㪘
㪉㪋㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪈㪉㪪㪫㩷㪂㩷㪉㪘
㪉㪏㪤㩷㪂㩷㪈㪏㪪㪤
㪈㪍㪤㩷㪂㩷㪈㪏㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪊㪇㪘
㪊㪋㪤㩷㪂㩷㪉㪉㪪㪤㩷㪂㩷㪍㪪㪫
㪊㪉㪤㩷㪂㩷㪈㪏㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪍㪘
㪊㪉㪤㩷㪂㩷㪈㪋㪪㪤
㪏㪤㩷㪂㩷㪈㪏㪪㪤㩷㪂㩷㪈㪍㪪㪫㩷㪂㩷㪋㪉㪘
㪈㪍㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪈㪉㪪㪫㩷㪂㩷㪉㪍㪘 㪉㪇㪤㩷㪂㩷㪈㪇㪪㪤㩷㪂㩷㪋㪋㩷㪪㪫㪆㪘
㪎㪋
㪉㪇㪤㩷㪂㩷㪉㪉㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪍㪘
㪎㪋
㪌㪍
㪌㪏
㪈㪇㪉 㪈㪇㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪉㪇㪪㪫㩷㪂㩷㪌㪏㪘
㪋㪋㪄㪋㪍
㪝㪃㩷㪤
㪝㪃㩷㪤
㪝㪃㩷㪤
㪉㪋㪤㩷㪂㩷㪉㪉㪪㪤
㪉㪉㪤㩷㪂㩷㪉㪉㪪㪤
㪉㪇㪤㩷㪂㩷㪉㪋㪪㪤
㪉㪇㪤㩷㪂㩷㪉㪋㪪㪤
㪈㪏㪤㩷㪂㩷㪉㪋㪪㪤
㪈㪇㪉 㪈㪇㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪋㪉㪪㪫㩷㪂㩷㪊㪍㪘
㪋㪋
㪝㪃㩷㪤 㪤
㪋㪋
㪝㪃㩷㪤
㪎㪍 㪋㪋
㪌㪇㩷㫅㫆㫅㪄㪘㩷㪂㩷㪉㪍㪘
㪌㪉
㪝㪃㩷㪤 㪝㪃㩷㪤
㪊㪉㪤㩷㪂㩷㪉㪇㪪㪤
㪋㪉
㪝㪃㩷㪤
㪉㪇㪤㩷㪂㩷㪉㪋㪪㪤 㪉㪇㪤㩷㪂㩷㪉㪇㪪㪤㩷
㪋㪋 㪋㪇
㪝㪃㩷㪤
㪈㪏㪤㩷㪂㩷㪉㪍㪪㪤
㪝㪃㩷㪤
㪋㪋
㪝㪃㩷㪤
㪈㪏㪤㩷㪂㩷㪉㪍㪪㪤
㪏㪏㩷㫅㫆㫅㪄㪘㩷㪂㩷㪋㪘
㪐㪉 㪋㪋
㪋㪇㪤㩷㪂㩷㪊㪍㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪈㪇㪘
㪐㪉
㪋㪏
㪐㪉㩷㫅㫆㫅㪄㪘 㪊㪉㪤㩷㪂㩷㪈㪋㪪㪤
㪐㪉
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪋㪍
㪛 㪉㫅
㪤
㪝㪃㩷㪤
㪚 㪪㪼㫏
㪐㪇
㪈㪈㪋
㪐㪋
㪐㪇
㪐㪉
㪈㪇㪏
㪈㪈㪏
㪈㪈㪉
㪐㪉
㪈㪈㪇
㪈㪇㪋
㪈㪈㪇
㪈㪇㪇
㪈㪉㪍
㪈㪉㪍
㪐㪉
㪏㪏
㪏㪏
㪏㪏
㪈㪇㪋
㪏㪋
㪏㪇
㪏㪏
㪏㪏
㪏㪏
㪈㪍㪏
㪐㪉
㪝 㪥㪝㪈
㪈㪇㪏
㪈㪉㪇
㪈㪇㪋
㪈㪇㪉
㪐㪉
㪈㪈㪏
㪈㪉㪋
㪈㪈㪏
㪐㪉
㪈㪉㪍
㪈㪉㪉
㪈㪈㪇
㪈㪋㪍
㪈㪍㪏
㪐㪉
㪏㪏
㪏㪏
㪏㪏
㩿㪈㪉㪍㪀
㪈㪇㪋
㪏㪋
㪏㪇
㪏㪏
㪏㪏
㪏㪏
㩿㪈㪏㪇㪀
㪈㪎㪋
㩿㪐㪉㪀
㪐㪉
㩿㪈㪏㪋㪀
㪞 㪥㪝㪉
㪈㪇
㪉
㪉
㪈㪇
㪉
㪉
㪉
㪋
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪋
㪋㪄㪍
㪋
㪉
㪋
㪉
㪉
㪉
㪉
㪍
㪉㪅㪋㩷㪝㪛
㪈㪅㪊㩷㪝㪛
㪍㪅㪇㩷㪙㪝㪘
㪋㪅㪐㩷㪝㪛
㪈㪅㪇㩷㪝㪛
㪈㪅㪊㩷㪝㪛
㪋㪅㪏㩷㪝㪛
㩿㪉㪅㪇㩷㪝㪛㪀
㪋㪅㪍㩷㪙㪝㪘
㪌㪅㪏㩷㪙㪝㪘
㩿㪊㪅㪍㩷㪝㪛㪀
㩿㪏㪅㪏㩷㪝㪛㪃㩷㪍㪅㪋㩷㪝㪠㪘㪀
㪍㪅㪇㩷㪙㪝㪘
㩿㪏㪅㪋㩷㪙㪝㪘㪀
㪟 㪠 㪘㪾㪄 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㪥㪦㪩㫊 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪘㪚㪥㪔㪏㪏
㪘㪚㪥㪔㪍㪉
㪘㪚㪥㪔㪌㪏
㪘㪚㪥㪔㪏㪋
㪘㪚㪥㪔㪍㪉
㪘㪚㪥㪔㪍㪉
㪘㪚㪥㪔㪍㪉
㪘㪚㪥㪔㪎㪍
㪘㪚㪥㪔㪍㪇
㪋㪯㪃㩷㪘㪚㪥㪔㪈㪇㪍
㪋㪯
㪘㪚㪥㪔㪌㪏
㪘㪚㪥㪔㪌㪏
㪘㪚㪥㪔㪌㪏
㪘㪚㪥㪔㪌㪏
㪘㪚㪥㪔㪌㪏
㪘㪚㪥㪔㪌㪏
㪋㪯㪃㩷㪘㪚㪥㪔㪈㪇㪍
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪘㫉㪾㪼㫅㫋㫀㫅㪸
㪙㫉㪸㫑㫀㫃㩷㩿㪞㪸㫃㪿㪼㫀㫉㫆㩷㪩㪅㪃㩷㪤㪞㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪚㪸㫉㫀㫇㫀㩷㪩㪅㪃㩷㪧㪘㪀
㩿㪙㫉㪸㫑㫀㫃㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪩㪪㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪘㪀
㩿㪙㫉㪸㫑㫀㫃㪀
㪚㫆㫃㫆㫄㪹㫀㪸
㪚㫆㫃㫆㫄㪹㫀㪸
㪙㫉㪸㫑㫀㫃㩷㩿㪘㪤㪀
㩿㪙㫉㪸㫑㫀㫃㪀
㩿㪙㫉㪸㫑㫀㫃㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪘㪤㪀
㪪㪅㩷㪘㫄㪼㫉㫀㪺㪸
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪘㪤㪀
㩿㪪㪅㩷㪘㫄㪼㫉㫀㪺㪸㪀
㩿㪙㫉㪸㫑㫀㫃㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪩㪪㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪩㪃㩷㪩㪪㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪩㪪㪀
㩿㪭㪼㫅㪼㫑㫌㪼㫃㪸㪃㩷㪪㫌㫉㫀㫅㪸㫄㪼㪀
㩿㪙㫉㪸㫑㫀㫃㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪙㫀㪾㫌㪸㩷㪩㪅㪃㩷㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪙㫆㫅㫀㫋㫆㩷㪩㪅㪃㩷㪩㪡㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪩㪡㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪩㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪩㪀
㩿㪪㪅㩷㪘㫄㪼㫉㫀㪺㪸㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪘㪀
㩿㪪㪅㩷㪘㫄㪼㫉㫀㪺㪸㪀
㩿㪪㪅㩷㪘㫄㪼㫉㫀㪺㪸㪀
㩿㫅㫆㫉㫋㪿㪼㫉㫅㩷㪪㪅㩷㪘㫄㪼㫉㫀㪺㪸㪀
㩿㪪㪅㩷㪘㫄㪼㫉㫀㪺㪸㪀
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪝㪄㪉㪇
㪦㪄㪌㪋
㪦㪄㪌㪋
㪪㪄㪍㪐
㪟㪄㪈㪊
㪪㪄㪍㪐
㪦㪄㪌㪋
㪪㪄㪈㪐㪇
㪦㪄㪌㪋
㪦㪄㪌㪋
㪦㪄㪌㪋
㪪㪄㪍㪐
㪢㪄㪈㪍
㪦㪄㪌㪋
㪦㪄 㪌 㪋 㪃 㩷 㪟 㪄 㪈 㪊
㪦㪄 㪌 㪍
㪦㪄㪌㪋
㪟㪄㪈㪊
㪪㪄㪍㪐
㪦㪄 㪌 㪍
㪦㪄 㪌 㪌
㪦㪄 㪌 㪌
㪪㪄㪍㪐
㪪㪄㪉㪎
㪪㪄㪍㪐
㪦㪄 㪌 㪉
㪦㪄㪌㪉㪃㩷㪦㪄㪌㪌
㪦㪄㪌㪉㪃㩷㪦㪄㪌㪌
㪦㪄 㪌 㪌
㪪㪄㪍㪐
㪪㪄㪉㪎
㪦㪄㪌㪋㪃㩷㪟㪄㪋㪈
㪟㪄㪈㪊
㪪㪄㪉㪎
㪢㪄㪈㪍
㪪㪄㪉㪎㪃㩷㪟㪄㪈㪊
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
101
㪚㫉㪸㫅㫆㪾㫃㪸㫅㫀㪻㫀㪻㪸㪼
㪚㫉㪸㫅㫆㪾㫃㪸㫅㫀㫊
㪹㫆㫌㪻㪼㫉㫀㫌㫊
㪹㪸㫋㫉㪸㪺㪿㫌㫊 㪹㪸㫋㫉㪸㪺㪿㫌㫊 㪹㪸㫋㫉㪸㪺㪿㫌㫊 㪹㪸㫋㫉㪸㪺㪿㫌㫊 㪹㪸㫋㫉㪸㪺㪿㫌㫊 㪹㪸㫋㫉㪸㪺㪿㫌㫊 㪹㪸㫋㫉㪸㪺㪿㫌㫊 㪺㪸㫄㪼㫉㫌㫅㪼㫅㫊㫀㫊 㪼㪹㫉㫀㪼㫅㫊㫀㫊 㪽㫌㫊㪺㫌㫊 㪽㫌㫊㪺㫌㫊 㪽㫌㫊㪺㫌㫊 㪽㫌㫊㪺㫌㫊 㪽㫌㫊㪺㫌㫊 㪽㫌㫊㪺㫌㫊 㪾㪸㫉㫀㪼㫇㫀㫅㫌㫊 㪾㪸㫉㫀㪼㫇㫀㫅㫌㫊 㪾㪸㫉㫀㪼㫇㫀㫅㫌㫊 㪾㪸㫉㫀㪼㫇㫀㫅㫌㫊 㪾㪸㫉㫀㪼㫇㫀㫅㫌㫊 㫄㪸㪺㫉㫆㪺㪼㫇㪿㪸㫃㫌㫊 㫇㫃㪸㫋㫐㪺㪼㫇㪿㪸㫃㫌㫊 㫃㫆㫅㪾㫀㪽㫀㫃㫀㫊 㫃㫆㫅㪾㫀㪽㫀㫃㫀㫊
㪚㫃㪸㫉㫀㪸㫊 㪚㫃㪸㫉㫀㪸㫊 㪚㫃㪸㫉㫀㪸㫊 㪚㫃㪸㫉㫀㪸㫊 㪚㫃㪸㫉㫀㪸㫊 㪚㫃㪸㫉㫀㪸㫊 㪚㫃㪸㫉㫀㪸㫊 㪚㫃㪸㫉㫀㪸㫊 㪚㫃㪸㫉㫀㪸㫊 㪚㫃㪸㫉㫀㪸㫊 㪚㫃㪸㫉㫀㪸㫊 㪚㫃㪸㫉㫀㪸㫊 㪚㫃㪸㫉㫀㪸㫊 㪚㫃㪸㫉㫀㪸㫊 㪚㫃㪸㫉㫀㪸㫊 㪚㫃㪸㫉㫀㪸㫊 㪚㫃㪸㫉㫀㪸㫊 㪚㫃㪸㫉㫀㪸㫊 㪚㫃㪸㫉㫀㪸㫊 㪚㫃㪸㫉㫀㪸㫊 㪚㫃㪸㫉㫀㪸㫊 㪚㫃㪸㫉㫀㪸㫊 㪟㪼㫋㪼㫉㫆㪹㫉㪸㫅㪺㪿㫌㫊 㪟㪼㫋㪼㫉㫆㪹㫉㪸㫅㪺㪿㫌㫊
㪚㫃㪸㫉㫀㫀㪻㪸㪼
㪹㪸㫉㪹㪸㫋㫌㫊 㪹㪸㫉㪹㪸㫋㫌㫊 㪹㪸㫉㪹㪸㫋㫌㫊 㪹㪸㫉㪹㪸㫋㫌㫊 㫄㪸㪺㫉㫆㫇㫋㪼㫉㫌㫊 㫇㫉㫀㫆㫅㫆㫋㫆㫊 㫇㫉㫀㫆㫅㫆㫋㫆㫊
㪪㪺㫃㪼㫉㫆㫄㫐㫊㫋㪸㫏 㪪㪺㫃㪼㫉㫆㫄㫐㫊㫋㪸㫏 㪪㪺㫃㪼㫉㫆㫄㫐㫊㫋㪸㫏 㪪㪺㫃㪼㫉㫆㫄㫐㫊㫋㪸㫏 㪪㪺㫃㪼㫉㫆㫄㫐㫊㫋㪸㫏 㪪㪺㫃㪼㫉㫆㫄㫐㫊㫋㪸㫏 㪪㪺㫃㪼㫉㫆㫄㫐㫊㫋㪸㫏
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪝㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷
㫊㫀㫅㪼㫅㫊㫀㫊
㪚㫃㪸㫉㫀㫌㫊
㪚㫆㫉㫐㪻㫆㫉㪸㫊 㪚㫆㫉㫐㪻㫆㫉㪸㫊 㪚㫆㫉㫐㪻㫆㫉㪸㫊 㪚㫆㫉㫐㪻㫆㫉㪸㫊 㪚㫆㫉㫐㪻㫆㫉㪸㫊 㪚㫆㫉㫐㪻㫆㫉㪸㫊 㪚㫆㫉㫐㪻㫆㫉㪸㫊
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪫㪸㪹㫃㪼㩷㪍㪅㪈㪊㩷㩷㪦㫉㪻㪼㫉㩷㪪㪠㪣㪬㪩㪠㪝㪦㪩㪤㪜㪪㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀
㪈㪏㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪏㪪㪫㩷㪂㩷㪋㪘
㪌㪇
㪉㪇㪤㩷㪂㩷㪉㪉㪪㪤㩷㪂㩷㪏㪪㪫㩷㪂㩷㪍㪘 㪈㪏㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪈㪋㪪㪫㩷㪂㩷㪈㪇㪘 㪊㪉㩷㪤㪆㪪㪤㩷㪂㩷㪉㪋㩷㪪㪫㪆㪘 㪏㪤㩷㪂㩷㪉㪌㪪㪤㩷㪂㩷㪉㪊㪘 㪏㪤㩷㪂㩷㪉㪋㪪㪤㩷㪂㩷㪉㪋㪘 㪈㪋㪤㩷㪂㩷㪈㪎㪪㪤㩷㪂㩷㪉㪌㪘 㪈㪋㪤㩷㪂㩷㪈㪏㪪㪤㩷㪂㩷㪉㪋㪘 㪉㪇㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪈㪇㪘
㪌㪍 㪌㪍 㪌㪍 㪌㪍 㪌㪍 㪌㪍 㪌㪍 㪌㪍
㪤 㪝㪃㩷㪤 㪝 㪤 㪝 㪤
㪝㪃㩷㪤
㪎㪋
㪏㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪈㪏㪪㪫㩷㪂㩷㪊㪉㪘
㪐㪏
㪏㪉
㪏㪊
㪈㪈㪍
㪉
㪉 㪍㪤㩷㪂㩷㪉㪋㪪㪤㩷㪂㩷㪉㪉㪘
㪌㪉
㪍㪤㩷㪂㩷㪉㪌㪪㪤㩷㪂㩷㪉㪈㪘
㪌㪉
㪝
㪈㪇㪋
㪉 㪉
㪤
㪐㪏
㪈㪇㪉
㪈㪇㪉
㪈㪇㪍
㪈㪇㪍
㪈㪇㪍
㪉
㪉㪋㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪋㪘
㪐㪉
㪏㪏
㪏㪎
㪏㪏
㪏㪐
㪏㪏
㪏㪏
㪐㪏
㪐㪏
㪐㪏
㪌㪋
㪌㪋
㪉㪇㪤㩷㪂㩷㪉㪉㪪㪤㩷㪂㩷㪏㪪㪫㩷㪂㩷㪍㪘
㪌㪍
㪝
㪈㪐㪤㩷㪂㩷㪉㪊㪪㪤㩷㪂㩷㪏㪪㪫㩷㪂㩷㪍㪘
㪌㪍 㪌㪍
㪝 㪤
㪝㪃㩷㪤
㪈㪇㪍
㪉
㪋
㪋
㪍
㪏
㪏
㪍
㪍
㩿㪉㪅㪋㩷㪙㪝㪘㪀
㪉㪅㪋㩷㪙㪝㪘
㪈㪅㪍㪁㩷㪝㪛
㪈㪅㪍㩷㪝㪛
㪈㪅㪉㩷㪝㪛
㪈㪅㪋㩷㪝㪛
㪈㪅㪎㪃㩷㪈㪅㪐㩷㪝㪛
㪟 㪠 㪘㪾㪄 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㪥㪦㪩㫊 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪯㪯㪃㩷㪘㪚㪥㪔㪌㪍
㪯㪰㪃㩷㪋㪯
㪯㪯㪃㩷㪋㪯
㪘㪚㪥㪔㪏㪍
㪘㪚㪥㪔㪍㪏
㪘㪚㪥㪔㪍㪍
㪘㪚㪥㪔㪍㪍
㪘㪚㪥㪔㪍㪋
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㩿㪮㪅㩷㪸㫅㪻㩷㪮㪅㪚㪅㩷㪘㪽㫉㫀㪺㪸㪀
㪠㫅㪻㫀㪸㩷㩿㪮㪙㪀
㪠㫅㪻㫀㪸
㪠㫅㪻㫀㪸㩷㩿㪬㪅㪧㪅㪀
㪚㪿㫀㫅㪸
㪫㪿㪸㫀㫃㪸㫅㪻
㪫㪿㪸㫀㫃㪸㫅㪻
㪙㫉㪸㫑㫀㫃㩷㩿㪩㪡㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪩㪃㩷㪪㪚㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪩㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪘㪚㪥㪔㪎㪋
㪱㪱
㪱㪮
㪯㪯㪆㪯㪰
㪱㪱
㪱㪮
㪱㪱㪃㩷㪘㪚㪥㪔㪌㪍
㪱㪮㪃㩷㪘㪚㪥㪔㪌㪍
㪘㪚㪥㪔㪌㪍
㪯㪰㪃㩷㪘㪚㪥㪔㪌㪍
㪯㪯㪃㩷㪘㪚㪥㪔㪌㪍
㪯㪰㪃㩷㪘㪚㪥㪔㪌㪍
㪚㪿㫀㫅㪸
㪠㫍㫆㫉㫐㩷㪚㫆㪸㫊㫋
㪠㫍㫆㫉㫐㩷㪚㫆㪸㫊㫋
㩿㪮㪅㩷㪸㫅㪻㩷㪮㪅㪚㪅㩷㪘㪽㫉㫀㪺㪸㪀
㪫㪿㪸㫀㫃㪸㫅㪻
㪠㫅㪻㫀㪸㩷㩿㫀㫅㫋㫉㫆㪻㫌㪺㪼㪻㪀
㪜㪾㫐㫇㫋
㪜㪾㫐㫇㫋
㪘㪽㫉㫀㪺㪸㪃㩷㪠㫊㫉㪸㪼㫃
㪘㪽㫉㫀㪺㪸㪃㩷㪠㫊㫉㪸㪼㫃
㪡㪸㫇㪸㫅㩷㩿㪠㫊㪿㫀㪾㪸㫂㫀㪀
㪚㪿㫀㫅㪸㩷㩿㪞㫌㪸㫅㪾㪻㫆㫅㪾㪀
㪚㪿㫀㫅㪸㩷㩿㪞㫌㪸㫅㪾㪻㫆㫅㪾㪀
㪚㪿㫀㫅㪸㩷㩿㪞㫌㪸㫅㪾㪻㫆㫅㪾㪀
㪚㪿㫀㫅㪸㩷㩿㪞㫌㪸㫅㪾㪻㫆㫅㪾㪀
㪚㪿㫀㫅㪸㩷㩿㪞㫌㪸㫅㪾㪻㫆㫅㪾㪀
㪐㪏
㪐㪍
㪏㪏
㪈㪌㪋
㪈㪇㪏
㪈㪉㪋
㪈㪊㪇
㪈㪉㪍
㪈㪊㪉
㪈㪊㪇
㪞 㪥㪝㪉
㩿㪮㪅㩷㪘㪽㫉㫀㪺㪸㪀
㪌㪋
㪏㪏
㪎㪋
㪌㪏
㪈㪈㪈
㪈㪈㪇
㪈㪊㪋
㪐㪋
㪈㪇㪏
㪈㪉㪍
㪈㪉㪉
㪈㪉㪍
㪈㪉㪍
㪝 㪥㪝㪈
㪌㪇 㪈㪏㪤㩷㪂㩷㪉㪋㪪㪤㩷㪂㩷㪏㪪㪫㩷㪂㩷㪍㪘
㪈㪍㪤㩷㪂㩷㪏㪪㪤㩷㪂㩷㪈㪋㪪㪫㩷㪂㩷㪈㪉㪘
㪌㪇 㪌㪋
㪍㩷㪤㪆㪪㪤㩷㪂㩷㪋㪍㩷㪪㪫㪆㪘
㪌㪉
㪌㪍
㪈㪇㪇 㪋㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪎㪏㪘㩷㪂㩷㪈㪉㩷㪤㪚
㪉㪇㪤㩷㪂㩷㪉㪏㪪㪤㩷㪂㩷㪉㪇㪪㪫㩷㪂㩷㪈㪏㪘
㪈㪋㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪈㪋㪪㪫㩷㪂㩷㪉㪏㪘
㪈㪇㪇 㪋㪤㩷㪂㩷㪎㪪㪤㩷㪂㩷㪎㪎㪘㩷㪂㩷㪈㪉㩷㪤㪚
㪏㪍
㪝
㪝
㪍㪏
㪝㪃㩷㪤
㪉㪏㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪈㪍㪪㪫㩷㪂㩷㪏㪘
㪊㪏㪤㩷㪂㩷㪉㪉㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪉㪘㩷
㪊㪏㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪉㪘
㪊㪏㪤㩷㪂㩷㪉㪉㪪㪤㩷㪂㩷㪍㪪㪫
㪊㪏㪤㩷㪂㩷㪉㪉㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪉㪘
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪤
㪍㪍 㪍㪍
㪍㪋
㪝㪃㩷㪤 㪝㪃㩷㪤
㪍㪍
㪝㪃㩷㪤
㪍㪍
㪝㪃㩷㪤
㪛 㪉㫅
㪝㪃㩷㪤
㪚 㪪㪼㫏
㪰㪄㪈㪌
㪫㪄㪉㪐
㪫㪄㪉㪐
㪦㪄 㪏 㪊
㪮㪄 㪊 㪇
㪥㪄㪊
㪥㪄㪊
㪥㪄㪊
㪫㪄㪉㪐㪃㩷㪦㪄㪍㪐㪃㩷㪟㪄㪈㪊
㪫㪄㪉㪐㪃㩷㪦㪄㪍㪐㩷
㪘 㪄㪌㪍
㪰㪄㪈㪌
㪣㪄㪎㪍
㪣㪄㪎㪍
㪮㪄 㪊 㪇
㪮㪄 㪊 㪇
㪦㪄㪏㪊
㪦㪄 㪏 㪊
㪟㪄㪈㪊
㪧㪄㪐㪉
㪩 㪄㪌㪉
㪪㪄㪈㪇㪋
㪚㪄㪏㪊㪃㩷㪚㪄㪏㪌
㪮㪄 㪊 㪇
㪮㪄 㪊 㪇
㪦㪄㪌㪌
㪦㪄㪌㪌
㪦㪄㪌㪌
㪦㪄 㪌 㪌
㪦㪄㪌㪌
㪪㪄㪍㪐
㪪㪄㪍㪐
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
102
㪊㪉㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪋㪪㪫 㪉㪋㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪏㪪㪫㩷㪂㩷㪈㪉㪘
㪌㪏 㪌㪍 㪌㪏
㫉㫀㪹㪼㫀㫉㫆㫀
㫀㪿㪼㫉㫀㫅㪾㫀 㫀㪿㪼㫉㫀㫅㪾㫀
㪧㫊㪼㫌㪻㫆㫃㪸㪾㫌㫍㫀㪸
㪚㪼㫋㫆㫇㫊㫆㫉㪿㪸㫄㪻㫀㪸 㪚㪼㫋㫆㫇㫊㫆㫉㪿㪸㫄㪻㫀㪸 㪚㪼㫋㫆㫇㫊㫆㫉㪿㪸㫄㪻㫀㪸 㪠㫄㫇㪸㫉㪽㫀㫅㫀㫊 㪠㫄㫇㪸㫉㪽㫀㫅㫀㫊 㪠㫄㫇㪸㫉㪽㫀㫅㫀㫊 㪠㫄㫇㪸㫉㪽㫀㫅㫀㫊
㪟㪼㫇㫋㪸㫇㫋㪼㫉㫀㪻㪸㪼
㪜㫉㪼㫋㪿㫀㫊㫋㫀㪻㪸㪼
㪌㪏
㪋㪉 㪌㪏
㪉㪊㪤㩷㪂㩷㪊㪌㪪㪤㩷
㪉㪉㪤㩷㪂㩷㪈㪇㪪㪤㩷㪂㩷㪈㪇㪪㪫
㪉㪉㪤㩷㪂㩷㪈㪇㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪍㪘
㪝
㪉㪉㪤㩷㪂㩷㪉㪍㪪㪤㩷㪂㩷㪋㪪㪫 㪋㪉
㪉㪉㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪈㪇㪘
㪉㪏㪤㩷㪂㩷㪉㪋㪪㪤㩷㪂㩷㪍㪪㪫
㪉㪉㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪈㪇㪘
㪍㪤㩷㪂㩷㪉㪏㪪㪤㩷㪂㩷㪈㪍㪘
㪈㪏㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪈㪉㪪㪫㩷㪂㩷㪈㪉㪘
㪉㪇㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪈㪋㪘
㪉㪇㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪏㪪㪫㩷㪂㩷㪈㪋㪘
㪉㪍㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪈㪉㪘
㪉㪇㪤㩷㪂㩷㪈㪏㪪㪤㩷㪂㩷㪈㪉㪪㪫㩷㪂㩷㪏㪘
㪉㪈㪤㩷㪂㩷㪈㪏㪪㪤㩷㪂㩷㪈㪉㪪㪫㩷㪂㩷㪎㪘
㪋㪋㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪉㪘
㪉㪋㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪈㪋㪪㪫㩷㪂㩷㪋㪘
㪊㪉㪤㩷㪂㩷㪈㪏㪪㪤㩷㪂㩷㪏㪪㪫
㪊㪉㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪈㪇㪪㪫
㪊㪉㪤㩷㪂㩷㪈㪏㪪㪤㩷㪂㩷㪏㪪㪫
㪊㪉㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪍㪪㪫
㪌㪉
㪝㪃㩷㪤
㪝㪃㩷㪤
㪟㪼㫇㫋㪸㫇㫋㪼㫉㫌㫊㩷㫃㫆㫅㪾㫀㪺㪸㫌㪻㪸 㪧㪸㫉㫀㫆㫃㫀㫌㫊
㪹㫆㫉㫆㪻㫀㫅㫀 㪿㫆㫃㫃㪸㫅㪻㫀 㪿㫆㫃㫃㪸㫅㪻㫀 㫄㫀㫉㫀㫅㫀
㪌㪏
㪌㪏
㪝㪃㩷㪤
㪌㪏
㪌㪇
㪌㪏
㫀㪿㪼㫉㫀㫅㪾㪿㫀 㪝㪃㩷㪤
㪝㪃㩷㪤
㪝㪃㩷㪤
㪧㫀㫄㪼㫃㫆㪻㫀㪻㪸㪼
㪣㪸㪾㫌㫍㫀㪸㩷㫉㪼㪹㪼㫀㫉㫆㫀
㫇㪸㫉㪸㪾㫌㪸㫀㪼㫅㫊㫀㫊
㪌㪏
㪝 㪌㪏
㪌㪏
㪝㪃㩷㪤
㪌㪏
㪝
㪌㪏
㪌㪏
㪌㪏
㪌㪏
㪤
㫊㫇㪅
㫅㫀㪾㪼㫉 㪾㫉㪸㫅㫌㫃㫆㫊㫌㫊 㪻㫆㫉㪹㫀㪾㫅㫐㫀
㫊㫇㪅 㫊㫇㪅 㪺㪽㪅㩷㪺㫆㫊㫋㪸㫋㫌㫊
㪧㫊㪼㫌㪻㫆㪻㫆㫉㪸㫊
㪝
㫊㫇㪅
㪝㪃㩷㪤
㪌㪏
㪝
㪦㫇㫊㫆㪻㫆㫉㪸㫊
㪌㪏
㪝㪃㩷㪤
㪸㪺㫀㫇㪼㫅㫊㪼㫉㫀㫅㫌㫊 㪿㫌㫄㪼㫉㪸㫃㫀㫊 㫋㪼㫉㫅㪼㫋㫑㫀
㪌㪏
㪝㪃㩷㪤
㪉
㪊㪅㪌㩷㪝㪛
㪉㪅㪍㩷㪝㪛
㪘㪚㪥㪔㪌㪏
㪘㪚㪥㪔㪌㪍
㪘㪚㪥㪔㪌㪏
㪘㪚㪥㪔㪌㪏
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪘㫉㪾㪼㫅㫋㫀㫅㪸㩷㩿㪚㪿㫌㪹㫌㫋㪀
㪚㪿㫀㫃㪼
㪚㪿㫀㫃㪼
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪈㪈㪍
㪎㪋
㪎㪋
㪈㪇㪇
㪐㪍
㪈㪈㪇
㪐㪍
㪏㪋
㪐㪍
㪈㪇㪏
㪐㪉
㪐㪏
㪐㪋
㪈㪇㪇
㪐㪍
㪐㪎
㪈㪈㪋
㪐㪏
㪈㪇㪏
㪈㪇㪍
㪈㪇㪏
㪈㪈㪇
㪈㪈㪍
㪏㪋
㪎㪏
㪈㪇㪋
㪈㪇㪍
㪈㪈㪍
㪈㪇㪍
㪈㪇㪋
㪈㪈㪉
㪈㪇㪋
㪈㪇㪉
㪈㪇㪉
㪈㪇㪋
㪈㪇㪏
㪈㪇㪐
㪈㪈㪋
㪈㪈㪉
㪈㪈㪍
㪈㪈㪍
㪈㪈㪍
㪈㪈㪍
㪉
㪉
㪋
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪈㪅㪐㪄㪉㪅㪋㩷㪝㪛
㪉㪅㪉㩷㪝㪛
㩿㪈㪅㪏㩷㪝㪛㪀
㪱㪮
㪘㪚㪥㪔㪌㪏
㪘㪚㪥㪔㪌㪏
㪘㪚㪥㪔㪌㪏
㪘㪚㪥㪔㪌㪍
㪘㪚㪥㪔㪌㪏
㪘㪚㪥㪔㪌㪏
㪘㪚㪥㪔㪌㪏
㪘㪚㪥㪔㪌㪏
㪘㪚㪥㪔㪌㪏
㪘㪚㪥㪔㪌㪏
㪘㪚㪥㪔㪌㪏
㪘㪚㪥㪔㪌㪏
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪩㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪩㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪞㪃㩷㪧㪩㪀
㪠㫅㪻㫀㪸㩷㩿㪘㫊㫊㪸㫄㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪞㪀
㪘㫉㪾㪼㫅㫋㫀㫅㪸
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪫㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪸㫉㪸㫅㪸㩷㪩㪅㪃㩷㪧㪩㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪘㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪯㫀㫅㪾㬰㩷㪩㪅㪃㩷㪧㪘㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪫㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪫㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪯㫀㫅㪾㬰㩷㪩㪅㪃㩷㪧㪘㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪘㫄㪸㫑㫆㫅㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪫㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪡㪸㫉㫀㩷㪩㪅㪃㩷㪧㪘㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪘㫉㪸㪾㫌㪸㫀㪸㩷㪩㪅㪃㩷㪤㪫㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪡㪸㫉㫀㩷㪩㪅㪃㩷㪧㪘㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪯㫀㫅㪾㬰㩷㪩㪅㪃㩷㪧㪘㪀
㩿㪪㪅㩷㪘㫄㪼㫉㫀㪺㪸㪀 㪈㪈㪋
㪉
㪉
㪉
㪟 㪠 㪘㪾㪄 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㪥㪦㪩㫊 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪫㪀
㪈㪈㪋
㪈㪇㪏
㪈㪇㪋
㪈㪇㪋
㪞 㪥㪝㪉
㪍㪍 㪋㪉㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪉㪘
㪈㪇㪉
㪐㪍
㪐㪍
㪝 㪥㪝㪈
㪌㪏
㪼㫀㪾㪼㫅㫄㪸㫅㫅㫀 㫆㫉㪼㫊㫋㫀㫊 㫆㫉㪼㫊㫋㫀㫊 㪺㪽㪅㩷㫆㫉㪼㫊㫋㫀㫊 㫎㫀㫃㪻㪼㫉㫀
㪉㪉㪤㩷㪂㩷㪉㪋㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪋㪘
㪈㪋㪤㩷㪂㩷㪉㪍㪪㪤㩷㪂㩷㪏㪪㪫㩷㪂㩷㪏㪘
㫇㪸㫉㪸㪾㫌㪸㫐㪼㫅㫊㫀㫊 㫄㪸㪺㫌㫃㪸㫋㪸
㪛㫆㫉㪸㪻㫀㪻㪸㪼
㪌㪍
㪌㪍
㪤 㪝㪃㩷㪤
㪌㪍
㪝㪃㩷㪤
㪈㪍㪤㩷㪂㩷㪉㪋㪪㪤㩷㪂㩷㪏㪪㪫㩷㪂㩷㪏㪘
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㫊㫇㪅
㪛 㪉㫅
㪛㫆㫉㪸㫊 㪟㪸㫊㫊㪸㫉 㪟㪸㫊㫊㪸㫉 㪟㪸㫊㫊㪸㫉 㪟㪸㫊㫊㪸㫉 㪟㪸㫊㫊㪸㫉 㪣㪼㫇㫋㫆㪻㫆㫉㪸㫊 㪥㪼㫄㪸㪻㫆㫉㪸㫊 㪦㫇㫊㫆㪻㫆㫉㪸㫊 㪦㫇㫊㫆㪻㫆㫉㪸㫊 㪦㫇㫊㫆㪻㫆㫉㪸㫊 㪧㫃㪸㫋㫐㪻㫆㫉㪸㫊 㪦㫏㫐㪻㫆㫉㪸㫊 㪧㫋㪼㫉㫆㪻㫆㫉㪸㫊 㪩㪿㫀㫅㫆㪻㫆㫉㪸㫊 㪩㪿㫀㫅㫆㪻㫆㫉㪸㫊 㪫㫉㪸㪺㪿㫐㪻㫆㫉㪸㫊 㪮㪼㫉㫋㪿㪼㫀㫄㪼㫉㫀㪸
㪛㫀㫇㫃㫆㫄㫐㫊㫋㪼㫊
㪚 㪪㪼㫏
㪺㪸㫄㫇㫆㫊㪼㫅㫊㫀㫊 㫅㪸㪿㫌㪼㫃㪹㫌㫋㪸㪼㫅㫊㫀㫊 㫄㪼㫊㪼㫄㪹㫉㫀㫅㫌㫊
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪛㫀㫇㫃㫆㫄㫐㫊㫋㪼㫊 㪛㫀㫇㫃㫆㫄㫐㫊㫋㪼㫊 㪦㫃㫀㫍㪸㫀㪺㪿㫋㪿㫐㫊
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪝㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷 㪛㫀㫇㫃㫆㫄㫐㫊㫋㫀㪻㪸㪼
㪫㪸㪹㫃㪼㩷㪍㪅㪈㪊㩷㩷㪦㫉㪻㪼㫉㩷㪪㪠㪣㪬㪩㪠㪝㪦㪩㪤㪜㪪㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀
㪭㪄㪋㪌㪃㩷㪝㪄㪍㪋
㪤㪄 㪈 㪉 㪐
㪪㪄㪈㪏㪇
㪭㪄㪋㪍㪃㩷㪝㪄㪍㪋
㪝㪄㪈㪐
㪭 㪄㪋㪍
㪝㪄㪈㪐㪃㩷㪝㪄㪍㪋
㪢㪄㪋㪍㪃㩷㪚㪄㪈㪇㪏
㪜㪄㪈㪈
㪝㪄㪈㪍
㪤㪄 㪈 㪋 㪋
㪝㪄㪈㪍㪃㩷㪝㪄㪍㪋
㪡㪄㪉㪇
㪝㪄㪈㪍
㪤㪄㪈㪋㪋
㪤㪄 㪈 㪋 㪋
㪤㪄 㪈 㪋 㪋
㪤㪄 㪈 㪋 㪋
㪛㪄㪊㪉
㪤㪄 㪈 㪋 㪋
㪤㪄 㪈 㪋 㪋
㪜㪄㪈㪈
㪤㪄 㪈 㪋 㪋
㪤㪄 㪈 㪋 㪋
㪤㪄 㪈 㪋 㪋
㪜㪄㪈㪈
㪦㪄㪍㪇
㪚㪄㪎
㪚㪄㪎
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
103
㪠㫄㫇㪸㫉㪽㫀㫅㫀㫊 㪠㫄㫇㪸㫉㪽㫀㫅㫀㫊 㪠㫄㫇㪸㫉㪽㫀㫅㫀㫊 㪠㫄㫇㪸㫉㪽㫀㫅㫀㫊 㪠㫄㫇㪸㫉㪽㫀㫅㫀㫊 㪠㫄㫇㪸㫉㪽㫀㫅㫀㫊 㪠㫄㫇㪸㫉㪽㫀㫅㫀㫊 㪧㪸㫉㫀㫆㫃㫀㫌㫊 㪧㫀㫄㪼㫃㫆㪻㪼㫃㫃㪸 㪧㫀㫄㪼㫃㫆㪻㪼㫃㫃㪸 㪧㫀㫄㪼㫃㫆㪻㪼㫃㫃㪸 㪧㫀㫄㪼㫃㫆㪻㪼㫃㫃㪸 㪧㫀㫄㪼㫃㫆㪻㪼㫃㫃㪸 㪧㫀㫄㪼㫃㫆㪻㪼㫃㫃㪸 㪧㫀㫄㪼㫃㫆㪻㪼㫃㫃㪸 㪧㫀㫄㪼㫃㫆㪻㪼㫃㫃㪸 㪧㫀㫄㪼㫃㫆㪻㪼㫃㫃㪸 㪧㫀㫄㪼㫃㫆㪻㪼㫃㫃㪸 㪧㫀㫄㪼㫃㫆㪻㪼㫃㫃㪸 㪧㫀㫄㪼㫃㫆㪻㪼㫃㫃㪸 㪧㫀㫄㪼㫃㫆㪻㪼㫃㫃㪸 㪧㫀㫄㪼㫃㫆㪻㪼㫃㫃㪸 㪧㫀㫄㪼㫃㫆㪻㪼㫃㫃㪸 㪩㪿㪸㫄㪻㪼㫃㫃㪸 㪩㪿㪸㫄㪻㪼㫃㫃㪸 㪩㪿㪸㫄㪻㫀㪸 㪩㪿㪸㫄㪻㫀㪸 㪩㪿㪸㫄㪻㫀㪸 㪩㪿㪸㫄㪻㫀㪸 㪩㪿㪸㫄㪻㫀㪸 㪩㪿㪸㫄㪻㫀㪸 㪩㪿㪸㫄㪻㫀㪸 㪩㪿㪸㫄㪻㫀㪸 㪩㪿㪸㫄㪻㫀㪸 㪩㪿㪸㫄㪻㫀㪸 㪩㪿㪸㫄㪻㫀㪸
㫃㪸㫋㫀㪺㪸㫌㪻㪸 㫈㫌㪼㫃㪼㫅 㫈㫌㪼㫃㪼㫅 㫈㫌㪼㫃㪼㫅 㫈㫌㪼㫃㪼㫅 㫈㫌㪼㫃㪼㫅 㫈㫌㪼㫃㪼㫅 㪺㪽㪅㩷㫈㫌㪼㫃㪼㫅 㫈㫌㪼㫃㪼㫅 㫈㫌㪼㫃㪼㫅 㫈㫌㪼㫃㪼㫅
㫊㫇㪅
㫄㫀㪺㫉㫆㪺㪼㫇㪿㪸㫃㪸
㫊㫇㪅 㫊㫇㪅 㫊㫇㪅 㫊㫇㪅㩷㪈 㫊㫇㪅㩷㪉 㫊㫇㪅 㫊㫇㪅 㫊㫇㪅
㫄㫀㫉㫀㫅㫀 㫇㫀㫇㪼㫉㪸㫋㫌㫊 㫇㫀㫇㪼㫉㪸㫋㫌㫊 㪺㪽㪅㩷㫇㫀㫇㪼㫉㪸㫋㫌㫊 㪺㪽㪅㩷㫇㫀㫇㪼㫉㪸㫋㫌㫊 㪸㪽㪽㪅㩷㫄㫀㫉㫀㫅㫀 㪸㪽㪽㪅㩷㫄㫀㫉㫀㫅㫀 㪺㪽㪅㩷㫃㫆㫅㪾㫀㪺㪸㫌㪻㫌㫊 㪸㫍㪸㫅㪿㪸㫅㪻㪸㫍㪸㪼 㪸㪽㪽㪅㩷㪸㫍㪸㫅㪿㪸㫅㪻㪸㫍㪸㪼 㪺㫉㫀㫊㫋㪸㫋㪸 㪾㫉㪸㪺㫀㫃㫀㫊 㫂㫉㫆㫅㪼㫀 㫄㪼㪼㫂㫀 㫋㫉㪸㫅㫊㫀㫋㫆㫉㫀㪸
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪝㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷
㪌㪉
㪹㫉㪸㫅㫅㪼㫉㫀 㪹㫉㪸㫅㫅㪼㫉㫀 㪹㫉㪸㫅㫅㪼㫉㫀 㪿㫀㫃㪸㫉㫀㫀 㪿㫀㫃㪸㫉㫀㫀 㪿㫀㫃㪸㫉㫀㫀 㪺㪽㪅㩷㪿㫀㫃㪸㫉㫀㫀
㪩㪿㪸㫄㪻㫀㫀㪻㪸㪼
㪩㪿㪸㫄㪻㫀㫀㪻㪸㪼
㪇㪄㪈㩷 㪙
㪉
㪈㪅㪈㩷㪝㪛
㪯㪯
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪪㪅㩷㪘㫄㪼㫉㫀㪺㪸
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪫㫀㪹㪸㪾㫀㩷㪩㪅㪃㩷㪧㪩㪀
㪋㪍
㪉㪍㪤㩷㪂㩷㪉㪉㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪋㪘 㪉㪍㪤㩷㪂㩷㪉㪋㪪㪤㩷㪂㩷㪏㪪㪫
㪌㪏 㪌㪏
㪝㪃㩷㪤
㪉㪍㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪍㪘
㪊㪇㪤㩷㪂㩷㪈㪏㪪㪤㩷㪂㩷㪈㪇㪪㪫
㪉㪍㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪏㪪㪫㩷㪂㩷㪏㪘
㪌㪏
㪌㪏 㪌㪏
㪌㪏㪄㪍㪊
㪝㪃㩷㪤 㪝㪃㩷㪤
㪌㪏㩷㪤㪆㪪㪤
㪝㪃㩷㪤
㪌㪏
㪝㪃㩷㪤
㪊㪍㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪋㪘
㪝㪃㩷㪤
㪌㪏
㪝㪃㩷㪤
㪊㪍㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪋㪘 㪊㪇㪤㩷㪂㩷㪈㪇㪪㪤㩷㪂㩷㪈㪋㪪㪫㩷㪂㩷㪋㪘
㪌㪏
㪉㪍㩷㪤㪆㪪㪤㩷㪂㩷㪊㪇㩷㪪㪫㪆㪘
㪈㪏㪤㩷㪂㩷㪊㪇㪪㪤㩷㪂㩷㪏㪪㪫
㪌㪏
㪌㪏
㪌㪍
㪌㪍
㪋㪇㩷㪤㪆㪪㪤㩷㪂㩷㪍㩷㪪㪫㪆㪘
㪋㪍
㪝 㪤
㪋㪇㩷㪤㪆㪪㪤㩷㪂㩷㪍㩷㪪㪫㪆㪘㩷
㪊㪋㪤㩷㪂㩷㪈㪉㪪㪤
㪉㪉㪤㩷㪂㩷㪉㪉㪪㪤㩷㪂㩷㪏㪪㪫
㪌㪉
㪈㪇㪏
㪈㪇㪍
㪈㪇㪋
㪈㪇㪍
㪈㪇㪇
㪕㪈㪇㪇
㪈㪈㪍
㪈㪇㪏
㪐㪏
㪈㪇㪏
㪏㪉
㪈㪇㪋
㪏㪍
㪏㪍
㪐㪉
㪐㪍
㪈㪈㪍
㪈㪈㪉
㪈㪈㪇
㪈㪈㪍
㪈㪇㪏
㪈㪈㪍
㪈㪈㪉
㪈㪈㪉
㪈㪈㪉
㪈㪈㪉
㪐㪉
㪈㪇㪋
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪏
㩿㪉㪅㪇㪄㪉㪅㪊㩷㪝㪛㪀
㪉㪅㪇㩷㪝㪛
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪚㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪩㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪩㪀
㪚㪅㩷㪘㫄㪼㫉㫀㪺㪸
㪙㫉㪸㫑㫀㫃㩷㩿㪙㪘㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪞㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪞㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪞㪀
㪇㩷 㪙
㪇㩷 㪙
㪇㪄 㪋㩷 㪙
㪇㪄㪊㩷 㪙
㪇㩷㪙㪃㩷㪘㪚㪥㪔㪌㪏
㪇㪄㪌㩷 㪙
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪩㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪩㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪘㫉㪾㪼㫅㫋㫀㫅㪸
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪇㪄㪉㩷㪙㪃㩷㪘㪚㪥㪔㪌㪏 㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪇㪄㪋㩷 㪙
㪇㪄㪋㩷 㪙
㪇㪄㪉㩷 㪙
㪯㪰
㪙㫉㪸㫑㫀㫃㩷㩿㪫㫀㪹㪸㪾㫀㩷㪩㪅㪃㩷㪧㪩㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪩㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪩㪀
㪘㫉㪾㪼㫅㫋㫀㫅㪸 㪉㪇㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪍㪪㪫
㪋㪍
㪐㪉
㪉
㪉
㪋㪍
㪏㪋
㪈㪈㪍
㪐㪉
㪘㫉㪾㪼㫅㫋㫀㫅㪸 㪏㪍
㪈㪈㪉
㪏㪏
㪉
㪈㪅㪏㩷㪙㪝㪘
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪩㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪩㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪃㩷㪧㪩㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪩㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪌㪍
㪌㪋㩷㪤㪆㪪㪤㩷㪂㩷㪋㪪㪫
㪊㪇㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪋㪪㪫
㪋㪍
㪝㪃㩷㪤
㪌㪏
㪝㪃㩷㪤 㪋㪍
㪋㪍
㪌㪏
㪈㪈㪍
㪉 㪉
㪘㪚㪥㪔㪌㪏
㪘㪚㪥㪔㪌㪏
㪘㪚㪥㪔㪌㪏
㪱㪱
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪫㪀 㪈㪈㪉
㪐㪉 㪈㪇㪋
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪟 㪠 㪘㪾㪄 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㪥㪦㪩㫊 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪪㪀
㪌㪋㩷㪤㪆㪪㪤㩷㪂㩷㪋㪪㪫
㪏㪍 㪈㪇㪋
㪐㪋
㪈㪇㪏
㪈㪈㪍
㪈㪈㪉
㪈㪇㪏
㪈㪈㪋
㪈㪈㪍
㪈㪈㪍
㪞 㪥㪝㪉
㪌㪉
㪊㪇㪤㩷㪂㩷㪉㪉㪪㪤
㪐㪇
㪐㪏
㪈㪈㪋
㪐㪉
㪈㪇㪋
㪈㪇㪍
㪈㪈㪍
㪈㪈㪍
㪝 㪥㪝㪈
㪌㪉 㪝㪃㩷㪤
㪝㪃㩷㪤
㪋㪍
㪤 㪝㪃㩷㪤
㪧㫀㫄㪼㫃㫆㪻㫀㪻㪸㪼
㪧㫀㫄㪼㫃㫆㪻㫀㪻㪸㪼
㪉㪉㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪈㪇㪘
㪌㪉 㪉㪇㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪍㪪㪫
㪉㪉㪤㩷㪂㩷㪈㪏㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪏㪘
㪌㪏
㪉㪏㪤㩷㪂㩷㪉㪏㪪㪤㩷㪂㩷㪉㪪㪫
㪉㪋㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪉㪇㪪㪫
㪝㪃㩷㪤
㪝㪃㩷㪤
㪉㪍㪤㩷㪂㩷㪉㪉㪪㪤㩷㪂㩷㪏㪪㪫㩷㪂㩷㪉㪘 㪉㪉㪤㩷㪂㩷㪉㪍㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪋㪘
㪌㪏
㪌㪍
㪤
㪊㪉㪤㩷㪂㩷㪉㪍㪪㪤
㪉㪋㪤㩷㪂㩷㪊㪋㪪㪤㩷
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪝㪃㩷㪤
㪌㪏 㪌㪍
㪝㪃㩷㪤
㪌㪏
㪌㪏
㪛 㪉㫅
㪝㪃㩷㪤
㪤
㪚 㪪㪼㫏
㪸㪽㪽㪅㩷㫊㪺㪿㫌㪹㪸㫉㫋㫀 㪸㪽㪽㪅㩷㫊㪺㪿㫌㪹㪸㫉㫋㫀
㪺㫐㫋㫆㫋㫐㫇㪼㩷㪘 㪺㫐㫋㫆㫋㫐㫇㪼㩷㪙
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪫㪸㪹㫃㪼㩷㪍㪅㪈㪊㩷㩷㪦㫉㪻㪼㫉㩷㪪㪠㪣㪬㪩㪠㪝㪦㪩㪤㪜㪪㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀
㪪㪄㪈㪌㪋
㪪㪄㪈㪌㪋
㪪㪄㪈㪌㪋
㪭 㪄㪋㪎
㪝㪄㪈㪐
㪝㪄㪈㪌
㪪㪄㪈㪍㪍㪃㩷㪤㪄㪈㪊㪃㩷㪝㪄㪍㪋
㪘 㪄㪌
㪚㪄㪐㪏
㪪㪄㪈㪍㪍㩷
㪣㪄㪉㪈
㪪㪄㪈㪍㪍㩷
㪝㪄㪉㪐㪃㩷㪪㪄㪈㪏㪇
㪛㪄 㪈 㪈
㪛㪄 㪈 㪈
㪪㪄㪈㪍㪍㩷
㪭㪄㪏㪋㪃㩷㪝㪄㪍㪋
㪭㪄㪏㪋㪃㩷㪝㪄㪍㪋
㪝㪄㪉㪇
㪝㪄㪉㪇
㪣㪄㪉㪈
㪘㪄㪉㪇㪃㩷㪝㪄㪌㪎
㪭 㪄㪐㪌
㪘 㪄㪉㪇
㪪㪄㪈㪏㪇㪃 㩷㪟㪄㪈㪊
㪪㪄㪈㪏㪇
㪪㪄㪈㪋㪐
㪭 㪄㪋㪍
㪪㪄㪈㪏㪇
㪝㪄㪈㪐
㪪㪄㪈㪏㪇㪃㩷㪪㪄㪈㪐㪏
㪝㪄㪈㪐
㪭㪄㪋㪏
㪭㪄㪋㪏
㪭㪄㪋㪏
㪭 㪄㪋㪌
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
104
㪘㫄㪼㫀㫌㫉㫌㫊 㪘㫄㪼㫀㫌㫉㫌㫊 㪘㫄㪼㫀㫌㫉㫌㫊 㪘㫄㪼㫀㫌㫉㫌㫊 㪘㫄㪼㫀㫌㫉㫌㫊 㪘㫄㪼㫀㫌㫉㫌㫊 㪘㫄㪼㫀㫌㫉㫌㫊 㪘㫄㪼㫀㫌㫉㫌㫊 㪘㫄㪼㫀㫌㫉㫌㫊 㪘㫄㪼㫀㫌㫉㫌㫊 㪘㫄㪼㫀㫌㫉㫌㫊 㪠㪺㫋㪸㫃㫌㫉㫌㫊 㪠㪺㫋㪸㫃㫌㫉㫌㫊 㪠㪺㫋㪸㫃㫌㫉㫌㫊 㪥㫆㫋㫌㫉㫌㫊 㪥㫆㫋㫌㫉㫌㫊 㪥㫆㫋㫌㫉㫌㫊 㪥㫆㫋㫌㫉㫌㫊
㪠㪺㫋㪸㫃㫌㫉㫀㪻㪸㪼
㪟㪼㫋㪼㫉㫆㫇㫅㪼㫌㫊㫋㪼㫊 㪟㪼㫋㪼㫉㫆㫇㫅㪼㫌㫊㫋㪼㫊 㪟㪼㫋㪼㫉㫆㫇㫅㪼㫌㫊㫋㪼㫊 㪟㪼㫋㪼㫉㫆㫇㫅㪼㫌㫊㫋㪼㫊 㪟㪼㫋㪼㫉㫆㫇㫅㪼㫌㫊㫋㪼㫊
㪟㪼㫋㪼㫉㫆㫇㫅㪼㫌㫊㫋㫀㪻㪸㪼
㪩㪿㪸㫄㪻㫀㪸 㪩㪿㪸㫄㪻㫀㪸 㪩㪿㪸㫄㪻㫀㪸 㪩㪿㪸㫄㪻㫀㪸 㪩㪿㪸㫄㪻㫀㪸 㪩㪿㪸㫄㪻㫀㪸 㪩㪿㪸㫄㪻㫀㪸 㪩㪿㪸㫄㪻㫀㪸 㪩㪿㪸㫄㪻㫀㪸
㪹㫉㫌㫅㫅㪼㫌㫊 㪺㪸㫋㫌㫊 㫄㪼㫃㪸㫊 㫄㪼㫃㪸㫊 㫅㪸㫋㪸㫃㫀㫊 㫅㪸㫋㪸㫃㫀㫊 㫅㪼㪹㫌㫃㫆㫊㫌㫊 㫅㪼㪹㫌㫃㫆㫊㫌㫊 㫅㪼㪹㫌㫃㫆㫊㫌㫊㩷㫄㪸㫉㫄㫆㫉㪸㫋㫌㫊 㫇㫃㪸㫋㫐㪺㪼㫇㪿㪸㫃㫌㫊 㫊㪼㫉㫉㪸㪺㪸㫅㫋㪿㫌㫊 㪽㫌㫉㪺㪸㫋㫌㫊 㫇㫌㫅㪺㫋㪸㫋㫌㫊 㫇㫌㫅㪺㫋㪸㫋㫌㫊 㪸㫃㪹㪸㫋㪼㫉 㪼㫃㪼㪾㪸㫅㫊 㪼㫃㪼㫌㫋㪿㪼㫉㫌㫊 㪼㫏㫀㫃㫀㫊
㪽㫆㫊㫊㫀㫃㫀㫊 㪽㫆㫊㫊㫀㫃㫀㫊 㪽㫆㫊㫊㫀㫃㫀㫊 㪽㫆㫊㫊㫀㫃㫀㫊 㪽㫆㫊㫊㫀㫃㫀㫊
㫊㫇㪅 㫊㫇㪅
㫈㫌㪼㫃㪼㫅 㫈㫌㪼㫃㪼㫅 㫈㫌㪼㫃㪼㫅 㫈㫌㪼㫃㪼㫅 㫈㫌㪼㫃㪼㫅 㫈㫌㪼㫃㪼㫅 㫈㫌㪼㫃㪼㫅
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪝㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷
㪠㪺㫋㪸㫃㫌㫉㫌㫊 㪠㪺㫋㪸㫃㫌㫉㫌㫊 㪠㪺㫋㪸㫃㫌㫉㫌㫊 㪠㪺㫋㪸㫃㫌㫉㫌㫊 㪠㪺㫋㪸㫃㫌㫉㫌㫊 㪠㪺㫋㪸㫃㫌㫉㫌㫊 㪠㪺㫋㪸㫃㫌㫉㫌㫊 㪠㪺㫋㪸㫃㫌㫉㫌㫊 㪠㪺㫋㪸㫃㫌㫉㫌㫊 㪠㪺㫋㪸㫃㫌㫉㫌㫊 㪠㪺㫋㪸㫃㫌㫉㫌㫊
㫊㪸㫇㫆 㫊㪸㫇㫆 㫍㫆㫌㫃㪼㫑㫀
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪫㪸㪹㫃㪼㩷㪍㪅㪈㪊㩷㩷㪦㫉㪻㪼㫉㩷㪪㪠㪣㪬㪩㪠㪝㪦㪩㪤㪜㪪㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀
㪈㪏㪤㩷㪂㩷㪈㪏㩷㪪㪤㪆㪪㪫㩷㪂㩷㪉㪇㪘 㪈㪋㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪊㪇㪘
㪌㪍 㪌㪍
㪍㪇 㪍㪉 㪍㪉 㪍㪇 㪍㪇 㪍㪇
㪤 㪝㪃㩷㪤 㪤 㪝㪃㩷㪤 㪝㪃㩷㪤 㪝㪃㩷㪤
㪋㪍 㪋㪉 㪌㪋
㪝㪃㩷㪤 㪝
㪍㪍㪄㪎㪉
㪈㪋㩷㪤㪆㪪㪤㩷㪂㩷㪋㪇㩷㪪㪫㪆㪘
㪉㪋㩷㪤㪆㪪㪤㩷㪂㩷㪈㪏㩷㪪㪫㪆㪘
㪊㪍㩷㪤㪆㪪㪤㩷㪂㩷㪈㪇㩷㪪㪫㪆㪘
㪈㪏㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪉㪍㪪㪫
㪊㪋㩷㪤㪆㪪㪤㩷㪂㩷㪉㪋㩷㪪㪫㪆㪘
㪌㪏 㪌㪏
㪊㪏㩷㪤㪆㪪㪤㩷㪂㩷㪈㪋㩷㪪㪫㪆㪘 㪈㪏㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪉㪍㪪㪫
㪌㪉
㪈㪍㩷㪤㪆㪪㪤㩷㪂㩷㪋㪋㩷㪪㪫㪆㪘㩷
㪉㪇㩷㪤㪆㪪㪤㩷㪂㩷㪋㪇㩷㪪㪫㪆㪘
㪈㪍㩷㪤㪆㪪㪤㩷㪂㩷㪋㪋㩷㪪㪫㪆㪘
㪉㪉㩷㪤㪆㪪㪤㩷㪂㩷㪋㪇㩷㪪㪫㪆㪘
㪈㪉㪤㩷㪂㩷㪈㪇㪪㪤㩷㪂㩷㪈㪋㪪㪫㩷㪂㩷㪉㪍㪘
㪈㪍㩷㪤㪆㪪㪤㩷㪂㩷㪋㪋㩷㪪㪫㪆㪘
㪈㪉㪤㩷㪂㩷㪈㪇㪪㪤㩷㪂㩷㪈㪉㪪㪫㩷㪂㩷㪉㪍㪘
㪌㪏
㪝㪃㩷㪤
㪝㪃㩷㪤
㪝
㪍㪇
㪝㪃㩷㪤
㪌㪋
㪋㪏
㪝㪃㩷㪤
㪈㪍㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪈㪉㪪㪫
㪉㪉㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪈㪉㪘
㪌㪍
㪍㪉
㪈㪏㪤㩷㪂㩷㪈㪇㪪㪤㩷㪂㩷㪈㪉㪪㪫㩷㪂㩷㪈㪍㪘
㪌㪍 㪌㪍
㪈㪋㪤㩷㪂㩷㪉㪍㪪㪤㩷㪂㩷㪈㪍㪪㪫
㪍㪐㩷㪤㪆㪪㪤㩷㪂㩷㪈㪏㪪㪫㩷㩿㪊㫅㪀
㪝㪃㩷㪤
㪏㪎
㪝
㪋㪍㩷㪤㪆㪪㪤㩷㪂㩷㪈㪉㪪㪫
㪊㪍㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪋㪘
㪋㪋㩷㪤㪆㪪㪤㩷㪂㩷㪈㪋㩷㪪㪫㪆㪘
㪝㪃㩷㪤
㪌㪏
㪌㪏
㪌㪍
㪌㪏
㪝㪃㩷㪤
㪝㪃㩷㪤
㪝㪃㩷㪤
㪊㪍㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪍㪪㪫 㪊㪍㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪍㪪㪫
㪌㪏 㪌㪏
㪝㪃㩷㪤
㪊㪍㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪍㪪㪫
㪌㪏 㪌㪏
㪉㪍㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪏㪪㪫㩷㪂㩷㪏㪘
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪝
㪛 㪉㫅
㪝㪃㩷㪤
㪚 㪪㪼㫏
㪍㪏
㪍㪍
㪏㪉
㪏㪉
㪐㪇
㪐㪉
㪐㪇
㪐㪇
㪎㪍
㪏㪇
㪎㪍
㪏㪋
㪏㪋
㪎㪍
㪏㪉
㪏㪋
㪏㪉
㪐㪋
㪏㪋
㪐㪍
㪈㪌㪍
㪈㪇㪋
㪈㪇㪏
㪈㪇㪉
㪈㪈㪇
㪈㪈㪇
㪈㪈㪇
㪈㪇㪇
㪝 㪥㪝㪈
㪈㪈㪍
㪈㪈㪍
㪐㪏
㪐㪋
㪐㪍
㪐㪉
㪈㪇㪇
㪐㪍
㪈㪈㪉
㪈㪎㪋
㪈㪈㪍
㪈㪈㪉
㪈㪈㪍
㪈㪈㪍
㪈㪈㪍
㪈㪇㪏
㪞 㪥㪝㪉
㪉
㪊
㪉
㪉
㪉
㩿㪉㪅㪇㩷㪝㪚㪤㪃㩷㪉㪅㪈㩷㪝㪛㪀
㪈㪅㪐㩷㪝㪛㪃㩷㪉㪅㪋㩷㪙㪝㪘
㪟 㪠 㪘㪾㪄 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㪥㪦㪩㫊 㩿㫇㪾㪆㪺㪼㫃㫃㪀 㪘㫉㪾㪼㫅㫋㫀㫅㪸
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪩㪀
㪬㫉㫌㪾㫌㪸㫀
㪘㫉㪾㪼㫅㫋㫀㫅㪸
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪚㪀
㪘㪚㪥㪔㪌㪍
㪘㪚㪥㪔㪌㪏
㪘㪚㪥㪔㪌㪋
㪘㪚㪥㪔㪌㪏
㪘㪚㪥㪔㪌㪏
㪘㪚㪥㪔㪌㪏
㪘㪚㪥㪔㪌㪏
㪘㪚㪥㪔㪍㪇
㪘㪚㪥㪔㪍㪋
㪘㪚㪥㪔㪍㪇
㪘㪚㪥㪔㪌㪏
㪊㪯㪃㩷㪘㪚㪥㪔㪏㪎
㪬㪪㪘㩷㩿㪤㪦㪀
㪬㪪㪘㩷㩿㪘㪩㪃㩷㪭㪘㪀
㪬㪪㪘㩷㩿㪢㪰㪀
㪬㪪㪘
㪬㪪㪘
㪬㪪㪘㩷㩿㪣㪘㪀
㪬㪪㪘㩷㩿㪘㪣㪀
㪬㪪㪘㩷㩿㪝㪣㪀
㩿㪪㪅㪜㪅㩷㪬㪪㪘㪀
㪠㫋㪸㫃㫐
㪙㫆㫊㫅㫀㪸
㪬㪪㪘㩷㩿㪦㪟㪀
㪬㪪㪘㩷㩿㪦㪟㪃㩷㪤㪦㪀
㪬㪪㪘㩷㩿㪫㪥㪀
㪬㪪㪘㩷㩿㪦㪟㪀
㪬㪪㪘㩷㩿㪫㪥㪀
㪬㪪㪘㩷㩿㪘㪣㪀
㩿㪪㪅㪜㪅㩷㪬㪪㪘㪀
㪫㪿㪸㫀㫃㪸㫅㪻
㪠㫅㪻㫀㪸
㪠㫅㪻㫀㪸
㪠㫅㪻㫀㪸㩷㩿㪡㪸㫄㫄㫌㪀
㪠㫅㪻㫀㪸
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪇㪄㪋㩷㪙㪃㩷㪘㪚㪥㪔㪌㪏 㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪇㪄㪉㩷 㪙
㪇㪄㪈㩷 㪙
㪇㪄㪉㩷 㪙
㪇㪄㪉㩷㪙㪃㩷㪘㪚㪥㪔㪌㪏 㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪃㩷㪧㪩㪀
㪇㪄㪊㩷㪙㪃㩷㪘㪚㪥㪔㪌㪏 㪙㫉㪸㫑㫀㫃㩷㩿㪤㪪㪀
㪇㩷㪙㪃㩷㪘㪚㪥㪔㪌㪏
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪣㪄㪉㪈
㪣㪄㪉㪈
㪣㪄㪉㪈
㪣㪄㪉㪈
㪣㪄㪉㪉㪃㩷㪤㪄㪐㪈㪃㩷㪫㪄㪎㪊
㪣㪄㪉㪈
㪣㪄㪉㪉
㪣㪄㪉㪈
㪟㪄㪋㪌
㪙 㪄㪈㪇
㪙 㪄㪉㪉
㪣㪄㪉㪈㪃㩷㪟㪄㪈㪊
㪣㪄㪉㪈
㪚㪄㪍㪌
㪣㪄㪉㪈
㪚㪄㪍㪌
㪣㪄㪉㪉
㪟㪄㪋㪌
㪛㪄 㪉 㪏
㪩 㪄㪌㪉
㪩 㪄㪍㪐
㪫㪄㪌㪈
㪧㪄㪋㪏
㪞 㪄㪈㪊
㪞㪄㪈㪊
㪘 㪄㪌
㪪㪄㪈㪍㪍㩷
㪭㪄㪎㪏
㪤㪄 㪈 㪌 㪏
㪤㪄 㪈 㪌 㪏
㪤㪄㪈㪌㪎
㪝㪄㪈㪐
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
105
㪘㫅㪺㫀㫊㫋㫉㫌㫊 㪘㫅㪺㫀㫊㫋㫉㫌㫊 㪘㫅㪺㫀㫊㫋㫉㫌㫊 㪘㫅㪺㫀㫊㫋㫉㫌㫊 㪘㫅㪺㫀㫊㫋㫉㫌㫊 㪘㫅㪺㫀㫊㫋㫉㫌㫊 㪘㫅㪺㫀㫊㫋㫉㫌㫊 㪘㫅㪺㫀㫊㫋㫉㫌㫊 㪘㫅㪺㫀㫊㫋㫉㫌㫊 㪘㫅㪺㫀㫊㫋㫉㫌㫊 㪘㫅㪺㫀㫊㫋㫉㫌㫊 㪘㫅㪺㫀㫊㫋㫉㫌㫊
㪣㫆㫉㫀㪺㪸㫉㫀㫀㪻㪸㪼 㩷㩷㩷㪘㫅㪺㫀㫊㫋㫉㫀㫅㪸㪼
㪥㫆㫋㫌㫉㫌㫊 㪥㫆㫋㫌㫉㫌㫊 㪥㫆㫋㫌㫉㫌㫊 㪥㫆㫋㫌㫉㫌㫊 㪥㫆㫋㫌㫉㫌㫊 㪥㫆㫋㫌㫉㫌㫊 㪥㫆㫋㫌㫉㫌㫊 㪥㫆㫋㫌㫉㫌㫊 㪥㫆㫋㫌㫉㫌㫊 㪥㫆㫋㫌㫉㫌㫊 㪥㫆㫋㫌㫉㫌㫊 㪥㫆㫋㫌㫉㫌㫊 㪥㫆㫋㫌㫉㫌㫊 㪥㫆㫋㫌㫉㫌㫊 㪥㫆㫋㫌㫉㫌㫊 㪥㫆㫋㫌㫉㫌㫊 㪥㫆㫋㫌㫉㫌㫊 㪥㫆㫋㫌㫉㫌㫊 㪥㫆㫋㫌㫉㫌㫊 㪧㫉㫀㪼㫋㪼㫃㫃㪸 㪧㫐㫃㫆㪻㫀㪺㫋㫀㫊
㫊㫇㪅㩷 㫊㫇㪅㩷 㫊㫇㪅㩷 㫊㫇㪅㩷 㫊㫇㪅㩷 㫊㫇㪅㩷
㫄㫌㫃㫋㫀㫊㫇㫀㫅㫀㫊 㫉㪸㫅㫌㫅㪺㫌㫃㫌㫊 㫉㪸㫅㫌㫅㪺㫌㫃㫌㫊
㪺㪽㪅㩷㪻㫌㪹㫀㫌㫊 㪺㪽㪅㩷㪻㫌㪹㫀㫌㫊 㪺㪽㪅㩷㪻㫌㪹㫀㫌㫊
㪽㫃㪸㫍㪸㫋㪼㫉 㪽㫃㪸㫍㫀㫇㫀㫅㫅㫀㫊 㪽㫃㪸㫍㫌㫊 㪽㫃㪸㫍㫌㫊 㪽㫃㪸㫍㫌㫊 㪽㫌㫅㪼㪹㫉㫀㫊 㪾㫀㫃㪹㪼㫉㫋㫀 㪾㫐㫉㫀㫅㫌㫊 㪿㫀㫃㪻㪼㪹㫉㪸㫅㪻㫀㩷㪿㫀㫃㪻㪼㪹㫉㪸㫅㪻㫀 㪿㫀㫃㪻㪼㪹㫉㪸㫅㪻㫀㩷㫃㪸㫌㫋㫌㫊 㫀㫅㫊㫀㪾㫅㫀㫊 㫃㪸㪺㪿㫅㪼㫉㫀 㫃㪼㫇㫋㪸㪺㪸㫅㫋㪿㫌㫊 㫄㫀㫌㫉㫌㫊 㫄㫌㫅㫀㫋㫌㫊 㫅㫆㪺㫋㫌㫉㫅㫌㫊 㫇㪿㪸㪼㫌㫊 㫊㫋㫀㪾㫄㫆㫊㫌㫊 㫋㪸㫐㫃㫆㫉㫀 㫇㪿㫉㪼㪸㫋㫆㫇㪿㫀㫃㪸 㫆㫃㫀㫍㪸㫉㫀㫊
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪝㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷
㪧㫌㫉㫌㫊 㪧㫌㫉㫌㫊 㪫㫉㫆㫄㪹㪼㫋㪸㫊 㪭㪼㫉㫄㪼㫃㪿㫆 㪤㪸㪺㫆㪸㫉㫀 㪤㪸㪺㫆㪸㫉㫀
㪟㫐㫇㫆㫊㫋㫆㫄㫀㫅㪸㪼㪃㩷㪘㫅㪺㫀㫊㫋㫉㫀㫅㫀
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪫㪸㪹㫃㪼㩷㪍㪅㪈㪊㩷㩷㪦㫉㪻㪼㫉㩷㪪㪠㪣㪬㪩㪠㪝㪦㪩㪤㪜㪪㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀
㪋㪍 㪌㪇
㪝㪃㩷㪤
㪋㪇
㪝㪃㩷㪤
㪋㪉
㪝㪃㩷㪤
㪊㪋 㪊㪋 㪊㪏 㪋㪉 㪋㪍 㪋㪍
㪤 㪤 㪤 㪝 㪤
㪋㪏
㪤 㪝
㪋㪏
㪝
㪌㪉
㪋㪋 㪋㪉
㪝㪃㩷㪤 㪝㪃㩷㪤
㪌㪍
㪌㪇
㪋㪉
㪈㪏㪤㩷㪂㩷㪈㪈㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪈㪈㪘
㪈㪏㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪈㪇㪘
㪉㪍㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪍㪘
㪉㪉㪤㩷㪂㩷㪏㪪㪤㩷㪂㩷㪌㪪㪫㩷㪂㩷㪊㪘
㪉㪈㪤㩷㪂㩷㪈㪈㪪㪤㩷㪂㩷㪉㪪㪫
㪉㪇㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪉㪪㪫
㪉㪇㪤㩷㪂㩷㪏㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪈㪋㪘
㪈㪐㪤㩷㪂㩷㪐㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪈㪋㪘
㪉㪏㩷㪤㪆㪪㪤㩷㪂㩷㪉㪋㩷㪪㪫㪆㪘
㪉㪋㪤㩷㪂㩷㪈㪇㪪㪤㩷㪂㩷㪏㪪㪫
㪉㪋㪤㩷㪂㩷㪈㪇㪪㪤㩷㪂㩷㪏㪪㪫
㪈㪏㪤㩷㪂㩷㪈㪇㪪㪤㩷㪂㩷㪏㪪㪫㩷㪂㩷㪏㪘
㪉㪍㩷㪤㪆㪪㪤㩷㪂㩷㪊㪇㩷㪪㪫㪆㪘
㪉㪋㩷㪤㪆㪪㪤㩷㪂㩷㪈㪍㩷㪪㪫㪆㪘
㪉㪇㩷㪤㪆㪪㪤㩷㪂㩷㪉㪉㩷㪪㪫㪆㪘
㪉㪍㩷㪤㪆㪪㪤㩷㪂㩷㪈㪍㩷㪪㪫㪆㪘
㪋㪉 㪝
㪉㪋㩷㪤㪆㪪㪤㩷㪂㩷㪉㪋㩷㪪㪫㪆㪘
㪋㪏
㪝㪃㩷㪤
㪉㪇㩷㪤㪆㪪㪤㩷㪂㩷㪉㪉㩷㪪㪫㪆㪘
㪋㪉
㪝
㪊㪇㩷㪤㪆㪪㪤㩷㪂㩷㪈㪉㩷㪪㪫㪆㪘
㪎㪌
㪎㪍
㪎㪋
㪍㪏
㪍㪍
㪍㪍
㪎㪍
㪎㪍
㪏㪇
㪎㪍
㪎㪍
㪎㪉
㪏㪉
㪍㪋
㪍㪉
㪍㪏
㪎㪉
㪍㪉
㪎㪋
㪎㪉
㪎㪉
㪎㪋
㪏㪇
㪏㪇
㪏㪈
㪏㪉
㪎㪏
㪎㪊
㪍㪏
㪍㪏
㪏㪉
㪏㪉
㪏㪋
㪏㪋
㪉
㪉
㪉
㪉
㪉
㪉
㪋
㪋
㪉
㪉
㪉
㪋㪉
㪝㪃㩷㪤
㪉㪇㩷㪤㪆㪪㪤㩷㪂㩷㪊㪋㩷㪪㪫㪆㪘
㪊㪋㩷㪤㪆㪪㪤㩷㪂㩷㪈㪉㩷㪪㪫㪆㪘
㪊㪋㩷㪤㪆㪪㪤㩷㪂㩷㪈㪉㩷㪪㪫㪆㪘
㪎㪉
㪏㪇
㪌㪋
㪝㪃㩷㪤
㪉
㪉㪋㩷㪤㪆㪪㪤㩷㪂㩷㪉㪍㩷㪪㪫㪆㪘
㪋㪍
㪝㪃㩷㪤
㪺㪸㪅㩷㪏㪇
㪉㪍㩷㪤㪆㪪㪤㩷㪂㩷㪉㪇㩷㪪㪫㪆㪘
㪋㪍
㪝㪃㩷㪤
㪊㪇㩷㪤㪆㪪㪤㩷㪂㩷㪈㪉㩷㪪㪫㪆㪘
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪸㫅㫋㪸㫅㪸㫃㪃㩷㪤㪫㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪫㪀
㪬㪪㪘㩷㩿㪦㪟㪀
㪤㪼㫏㫀㪺㫆
㪬㪪㪘㩷㩿㪘㪩㪀
㪬㪪㪘㩷㩿㪦㪟㪀
㪬㪪㪘㩷㩿㪤㪪㪃㩷㪫㪥㪀
㪬㪪㪘㩷㩿㪣㪘㪃㩷㪤㪪㪃㩷㪤㪦㪀
㪬㪪㪘㩷㩿㪣㪘㪀
㪬㪪㪘㩷㩿㪣㪘㪃㩷㪤㪦㪃㩷㪦㪟㪀
㪬㪪㪘㩷㩿㪣㪘㪀
㪬㪪㪘㩷㩿㪘㪩㪀
㪬㪪㪘㩷㩿㪧㪘㪃㩷㪥㪚㪀
㪬㪪㪘㩷㩿㪫㪥㪀
㪬㪪㪘㩷㩿㪤㪪㪀
㪬㪪㪘㩷㩿㪣㪘㪃㩷㪤㪦㪃㩷㪦㪟㪀
㪯㪰㪃㩷㪘㪚㪥㪔㪋㪏
㪯㪯㪃㩷㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪉
㪘㪚㪥㪔㪋㪏
㪯㪰㪃㩷㪘㪚㪥㪔㪋㪉
㪯㪯㪃㩷㪘㪚㪥㪔㪋㪉
㪱㪱㪃㩷㪘㪚㪥㪔㪌㪉
㪱㪮㪃㩷㪘㪚㪥㪔㪌㪈
㪘㪚㪥㪔㪌㪉
㪙㫉㪸㫑㫀㫃㩷㩿㪙㫉㪸㫅㪺㫆㪃㩷㪩㪩㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪙㫉㪸㫅㪺㫆㪃㩷㪩㪩㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪛㪼㫄㫀㫅㫀㪃㩷㪘㪤㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪫㫉㫆㫄㪹㪼㫋㪸㫊㪃㩷㪧㪘㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪧㫌㫉㫌㫊㪃㩷㪘㪤㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪧㫌㫉㫌㫊㪃㩷㪘㪤㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪘㫄㪸㫑㫆㫅㩷㪩㪅㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪘㫄㪸㫑㫆㫅㩷㪩㪅㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪚㪀
㫅㫆㩷㫊㪼㫏㩷㪺㪿㫉㫆㫄㪅 㪙㫉㪸㫑㫀㫃㩷㩿㪧㪸㫅㫋㪸㫅㪸㫃㪃㩷㪤㪫㪀
㪯㪯㪆㪯㪰
㪱㪮㪆㪱㪱
㪘㪚㪥㪔㪍㪇
㪘㪚㪥㪔㪌㪉㪖
㪘㪚㪥㪔㪌㪍
㪥 㪘 㪥 㪔㪌㪋
㪘㪚㪥㪔㪌㪍
㪘㪚㪥㪔㪌㪏
㪘㪚㪥㪔㪌㪏
㪘㪚㪥㪔㪌㪏
㪘㪚㪥㪔㪌㪍
㪘㪚㪥㪔㪌㪋
㪘㪚㪥㪔㪌㪏
㪘㪚㪥㪔㪌㪏
㪘㪚㪥㪔㪌㪏
㪘㪚㪥㪔㪌㪍
㪬㪪㪘㩷㩿㪭㪘㪀
㪋㪉
㪘㪚㪥㪔㪌㪏
㪘㪚㪥㪔㪌㪏
㪝㪃㩷㪤
㪏㪉
㪍㪏
㪬㪪㪘㩷㩿㪣㪘㪀
㪉㪏㩷㪤㪆㪪㪤㩷㪂㩷㪉㪍㩷㪪㪫㪆㪘
㪉㪋㩷㪤㪆㪪㪤㩷㪂㩷㪉㪇㩷㪪㪫㪆㪘
㪬㪪㪘㩷㩿㪭㪘㪀
㪬㪪㪘㩷㩿㪦㪟㪃㩷㪧㪘㪀
㪬㪪㪘㩷㩿㪭㪘㪀
㪬㪪㪘㩷㩿㪤㪦㪀
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪌㪋
㪘㪚㪥㪔㪌㪍
㪘㪚㪥㪔㪌㪍
㪘㪚㪥㪔㪌㪍
㪘㪚㪥㪔㪌㪏
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪋㪋
㪎㪇
㪟 㪠 㪘㪾㪄 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㪥㪦㪩㫊 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪝
㪉㪇㩷㪤㪆㪪㪤㩷㪂㩷㪊㪇㩷㪪㪫㪆㪘
㪎㪇
㪞 㪥㪝㪉
㪤
㪌㪇
㪝
㪉㪉㩷㪤㪆㪪㪤㩷㪂㩷㪉㪍㩷㪪㪫㪆㪘
㪏㪉
㪍㪋
㪝 㪥㪝㪈
㪬㪪㪘㩷㩿㪠㪥㪀
㪋㪏
㪝㪃㩷㪤
㪊㪇㩷㪤㪆㪪㪤㩷㪂㩷㪉㪉㩷㪪㪫㪆㪘
㪉㪇㩷㪤㪆㪪㪤㩷㪂㩷㪉㪋㩷㪪㪫㪆㪘
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪋㪏
㪋㪋 㪌㪉
㪝
㪛 㪉㫅
㪤
㪚 㪪㪼㫏
㪦㪄 㪏 㪌
㪦㪄 㪏 㪌
㪦㪄 㪏 㪌
㪦㪄 㪏 㪌
㪦㪄 㪏 㪌
㪦㪄 㪏 㪌
㪦㪄 㪏 㪇
㪦㪄 㪏 㪇
㪘 㪄㪊㪋
㪤㪄㪈㪍㪌
㪤㪄 㪈 㪍 㪌
㪤㪄 㪈 㪍 㪋
㪣㪄㪉㪈
㪘 㪄㪊㪎
㪣㪄㪉㪈
㪣㪄㪉㪈
㪣㪄㪉㪈
㪣㪄㪉㪈
㪣㪄㪉㪈
㪣㪄㪉㪈
㪣㪄㪉㪈
㪣㪄㪉㪈
㪣㪄㪉㪈
㪣㪄㪉㪈
㪣㪄㪉㪈
㪣㪄㪉㪈
㪣㪄㪉㪈
㪣㪄㪉㪈
㪟㪄㪈㪎
㪣㪄㪉㪇㪃㩷㪣㪄㪉㪈
㪣㪄㪉㪇㪃㩷㪣㪄㪉㪈
㪣㪄㪉㪈
㪣㪄㪉㪈
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
106
㫇㪸㫉㪸㫅㪸㫅㫌㫊 㪺㪽㪅㩷㫅㫀㪾㫉㫆㫃㫀㫅㪼㪸㫋㫌㫊
㫊㫇㪅
㫊㫇㫀㫃㫆㫄㫄㪸 㫊㫇㫀㫃㫆㫄㫄㪸 㫊㫇㫀㫅㫆㫊㫀㫊㫊㫀㫄㫌㫊
㪚㫆㫉㫌㫄㪹㪸㫋㪸㫀㪸 㪟㫀㫊㫆㫅㫆㫋㫌㫊 㪟㫀㫊㫆㫅㫆㫋㫌㫊 㪟㫀㫊㫆㫅㫆㫋㫌㫊 㪟㫀㫊㫆㫅㫆㫋㫌㫊 㪟㫀㫊㫆㫅㫆㫋㫌㫊 㪟㫀㫊㫆㫅㫆㫋㫌㫊 㪟㫀㫊㫆㫅㫆㫋㫌㫊 㪟㫀㫊㫆㫅㫆㫋㫌㫊 㪟㫀㫊㫆㫅㫆㫋㫌㫊 㪟㫀㫊㫆㫅㫆㫋㫌㫊 㪟㫀㫊㫆㫅㫆㫋㫌㫊 㪣㪸㫄㫇㫀㪼㫃㫃㪸 㪤㪸㪺㫉㫆㫋㫆㪺㫀㫅㪺㫃㫌㫊 㪤㪸㪺㫉㫆㫋㫆㪺㫀㫅㪺㫃㫌㫊 㪦㫋㫆㪺㫀㫅㪺㫃㫌㫊
㪾㫀㪹㪹㫆㫊㪸 㪸㪽㪽㫀㫅㫀㫊 㪸㪽㪽㫀㫅㫀㫊 㪸㪽㪽㪅㩷㫍㪼㫊㫋㫀㫋㫌㫊
㫊㫇㪅㩷㪈 㫊㫇㪅㩷㪉 㫊㫇㪅㩷㪘 㫊㫇㪅㩷㪘 㫊㫇㪅㩷㪙 㫊㫇㪅㩷㪛
㪺㫌㪼㫊㫋㪸㪼 㪻㪼㫇㫉㪼㫊㫊㫀㪺㪸㫌㪻㪸 㫃㪼㫌㪺㫆㪽㫉㪼㫅㪸㫋㫌㫊 㫃㪼㫌㪺㫆㪽㫉㪼㫅㪸㫋㫌㫊 㫃㪼㫌㪺㫆㪽㫉㪼㫅㪸㫋㫌㫊 㫅㫀㪾㫉㫀㪺㪸㫌㪻㪸
㩷㩷㩷㪟㫐㫇㫆㫇㫋㫆㫇㫆㫄㪸㫋㫀㫅㪸㪼
㪟㪼㫄㫀㪸㫅㪺㫀㫊㫋㫉㫌㫊 㪟㪼㫄㫀㪸㫅㪺㫀㫊㫋㫉㫌㫊 㪟㪼㫄㫀㪸㫅㪺㫀㫊㫋㫉㫌㫊 㪟㪼㫄㫀㪸㫅㪺㫀㫊㫋㫉㫌㫊 㪤㪼㪾㪸㫃㪸㫅㪺㫀㫊㫋㫉㫌㫊 㪧㪸㫅㪸㫈㫌㪼
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪝㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷 㪘㫅㪺㫀㫊㫋㫉㫌㫊 㫊㫇㪅㩷 㪘㫅㪺㫀㫊㫋㫉㫌㫊 㫊㫇㪅㩷㪈㩷 㪘㫅㪺㫀㫊㫋㫉㫌㫊 㫊㫇㪅㩷㪈㩷 㪘㫅㪺㫀㫊㫋㫉㫌㫊 㫊㫇㪅㩷㪉㩷 㪘㫅㪺㫀㫊㫋㫉㫌㫊 㫊㫇㪅㩷㪉㩷 㪘㫅㪺㫀㫊㫋㫉㫌㫊 㫊㫇㪅㩷 㪘㫅㪺㫀㫊㫋㫉㫌㫊 㫊㫇㪅㩷 㪘㫅㪺㫀㫊㫋㫉㫌㫊 㫊㫇㪅㩷㪈 㪘㫅㪺㫀㫊㫋㫉㫌㫊 㫊㫇㪅㩷㪉 㪘㫅㪺㫀㫊㫋㫉㫌㫊 㫅㪅㩷㫊㫇㪅㩷㪈 㪘㫅㪺㫀㫊㫋㫉㫌㫊 㫅㪅㩷㫊㫇㪅㩷㪈 㪘㫅㪺㫀㫊㫋㫉㫌㫊 㫅㪅㩷㫊㫇㪅㩷㪉 㪸㪽㪽㪅㩷㫅㫀㫍㪼㪸㫋㫌㫊 㪙㪸㫉㫐㪸㫅㪺㫀㫊㫋㫉㫌㫊
㪉㪍㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪏㪪㪫
㪌㪋 㪌㪋 㪎㪉
㪝㪃㩷㪤 㪝
㪌㪏
㪉㪉㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪊㪋㪘
㪋㪇㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪉㪪㪫
㪋㪍㪤㩷㪂㩷㪏㪪㪤
㪉㪉㪤㩷㪂㩷㪉㪏㪪㪤㩷㪂㩷㪋㪪㪫 㪉㪍㪤㩷㪂㩷㪉㪍㪪㪤㩷㪂㩷㪉㪪㪫
㪌㪋
㪉㪍㪤㩷㪂㩷㪉㪍㪪㪤㩷㪂㩷㪉㪪㪫
㪌㪋 㪌㪋
㪊㪇㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪋㪪㪫
㪌㪋
㪝㪃㩷㪤
㪝
㪤㫀㪺㫉㫆㫃㪼㫇㫀㪻㫆㪾㪸㫊㫋㪼㫉 㪟㫀㫊㫆㫅㫆㫋㫌㫊㩷㪾㫀㪹㪹㫆㫊㫆㫊 㪦㫋㫆㪺㫀㫅㪺㫃㫌㫊 㪦㫋㫆㪺㫀㫅㪺㫃㫌㫊
㪝
㪌㪋
㪝
㪉㪉㪤㩷㪂㪉㪋㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪉㪘
㪈㪇㪋
㪈㪇㪇
㪈㪇㪇
㪈㪇㪉
㪈㪇㪏
㪈㪇㪏
㪈㪇㪍
㪈㪇㪍
㪈㪇㪍
㪐㪏
㪈㪇㪋
㪈㪇㪋
㪈㪇㪋
㪋
㪉
㪉
㪈㪄㪉
㪈㪄㪉
㪉
㪉
㪉
㪉
㪍
㪍
㪈㪇㪍
㪈㪇㪍
㪈㪇㪏
㪈㪇㪍
㪈㪇㪋
㪈㪇㪍
㪈㪈㪇
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪉
㪉
㪉
㪉
㪉
㪉
㩿㪋㪅㪉㩷㪙㪝㪘㪀
㪈㪅㪏㩷㪝㪛㩷
㪌㪋
㪝
㪉㪉㪤㩷㪂㩷㪉㪍㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪉㪘
㪈㪇㪋
㪐㪍
㪈㪇㪉
㪐㪏
㪈㪇㪋
㪐㪉
㪈㪇㪇
㪈㪇㪋
㪈㪇㪋
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉 㪉
㪉
㪟 㪠 㪘㪾㪄 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㪥㪦㪩㫊 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪌㪋
㪌㪋
㪝
㪉㪋㪤㩷㪂㩷㪉㪍㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪉㪘
㪈㪋㪤㩷㪂㩷㪉㪏㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪈㪇㪘
㪉㪏㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪍㩷㪪㪫㪆㪘
㪉㪍㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪍㪪㪫
㪉㪍㪤㩷㪂㩷㪉㪍㪪㪤
㪉㪇㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪈㪉㩷㪪㪫㪆㪘
㪉㪍㪤㩷㪂㩷㪉㪉㪪㪤㩷㪂㩷㪋㪪㪫
㪐㪏
㪐㪏
㪈㪇㪇
㪐㪇
㪎㪏
㪏㪇
㪎㪍
㪎㪏
㪎㪐
㪏㪇
㪎㪐
㪎㪍 㪎㪏
㪎㪏
㪞 㪥㪝㪉
㪉㪅㪎㩷㪝㪛
㪌㪋
㪝㪃㩷㪤
㪉㪌㪤㩷㪂㩷㪉㪈㪪㪤㩷㪂㩷㪍㪪㪫㩷 㪉㪋㪤㩷㪂㩷㪉㪉㪪㪤㩷㪂㩷㪍㪪㪫
㪈㪇㪇
㪎㪏
㪎㪏
㪏㪇
㪏㪋
㪍㪏
㪎㪍
㪎㪎
㪎㪍
㪎㪌
㪎㪋 㪎㪍
㪎㪍
㪝 㪥㪝㪈
㪌㪋
㪌㪋
㪌㪋
㪌㪉
㪝
㪝㪃㩷㪤
㪝㪃㩷㪤
㪌㪉
㪌㪉
㪌㪉
㪝㪃㩷㪤 㪝
㪌㪉 㪌㪉
㪝
㪈㪍㪤㩷㪂㩷㪊㪉㪪㪤㩷㪂㩷㪋㪘
㪌㪉 㪤
㪈㪇㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪈㪉㪪㪫㩷㪂㩷㪈㪋㪘
㪌㪉
㪝㪃㩷㪤
㪊㪊㪤㩷㪂㩷㪍㪪㪤
㪊㪐
㪤
㪊㪋㪤㩷㪂㩷㪍㪪㪤
㪋㪇
㪊㪉㩷㪤㪆㪪㪤㩷㪂㩷㪉㪇㩷㪪㪫㪆㪘
㪌㪉 㪝
㪈㪍㪤㩷㪂㩷㪏㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪉㪍㪘 㪊㪇㩷㪤㪆㪪㪤㩷㪂㩷㪏㪪㪫
㪌㪉
㪤
㪈㪍㪤㩷㪂㩷㪐㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪉㪌㪘
㪈㪉㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪉㪋㪘
㪊㪏
㪌㪉
㪝
㪈㪈㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪉㪌㪘
㪌㪉 㪌㪉
㪝 㪤
㪉㪍㪤㩷㪂㩷㪈㪇㪪㪤㩷㪂㩷㪉㪪㪫 㪉㪎㪤㩷㪂㩷㪈㪇㪪㪤㩷㪂㩷㪉㪪㪫
㪊㪏 㪊㪐
㪝 㪤
㪈㪍㪤㩷㪂㩷㪏㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪉㪍㪘
㪌㪉
㪝㪃㩷㪤
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪛 㪉㫅
㪚 㪪㪼㫏
㪤㫀㪺㫉㫆㫃㪼㫇㫀㪻㫆㪾㪸㫊㫋㪼㫉
㪤㫀㪺㫉㫆㫃㪼㫇㫀㪻㫆㪾㪸㫊㫋㪼㫉 㪤㫀㪺㫉㫆㫃㪼㫇㫀㪻㫆㪾㪸㫊㫋㪼㫉 㪤㫀㪺㫉㫆㫃㪼㫇㫀㪻㫆㪾㪸㫊㫋㪼㫉
㪸㪺㫌㫃㪼㪸㫋㫌㫊
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉 㪛㫀㫄㫆㫅㪸 㪙㪸㫃㪹㫀㫅㪸 㪙㪸㫃㪹㫀㫅㪸 㪙㪸㫉㪺㪼㫃㫆㫊 㪙㪸㫉㪺㪼㫃㫆㫊 㪧㫀㪸㪾㪸㬝㫌 㪧㫀㪸㪾㪸㬝㫌
㪫㪸㪹㫃㪼㩷㪍㪅㪈㪊㩷㩷㪦㫉㪻㪼㫉㩷㪪㪠㪣㪬㪩㪠㪝㪦㪩㪤㪜㪪㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪛㫀㫄㫆㫅㪸㪃㩷㪘㪤㪀
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪱㪮
㪘㪚㪥㪔㪌㪏
㪘㪚㪥㪔㪌㪏
㪱㪮
㪱㪮
㪘㪚㪥㪔㪌㪏
㪘㪚㪥㪔㪌㪏
㪱㪮㪃㩷㪇㪄㪉㩷㪙
㪱㪮㪃㩷㪇㪄㪉㩷㪙
㪱㪮
㪘㪚㪥㪔㪌㪍
㪱㪱㪃㩷㪘㪚㪥㪔㪌㪏
㪱㪮㪃㩷㪘㪚㪥㪔㪌㪎
㪯㪦
㪯㪯
㪘㪚㪥㪔㪌㪉
㪱㪱㪃㩷㪘㪚㪥㪔㪌㪉
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪘㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪩㪡㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪩㪪㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪚㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪩㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪫㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪩㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪫㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪫㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪫㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪫㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪘㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪚㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪞㪦㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪞㪦㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪘㪺㫉㪼㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪧㫌㫉㫌㫊㪃㩷㪘㪤㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪧㫌㫉㫌㫊㪃㩷㪘㪤㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪛㪼㫄㪼㫅㫀㪃㩷㪘㪤㪀
㪱㪈㪱㪈㪱㪉㪱㪉 㪱㪮㪃㩷㪘㪚㪥㪔㪌㪉
㪙㫉㪸㫑㫀㫃㩷㩿㪛㪼㫄㪼㫅㫀㪃㩷㪘㪤㪀
㪱㪈㪱㪉㪮㪈㪮㪉
㪯㪯㪃㩷㪘㪚㪥㪔㪋㪏 㪙㫉㪸㫑㫀㫃㩷㩿㪙㪸㫉㫉㪼㫋㫀㫅㪿㫆㪃㩷㪘㪤㪀 㪯㪰㪈㪰㪉㪃㩷㪘㪚㪥㪔㪋㪏 㪙㫉㪸㫑㫀㫃㩷㩿㪙㪸㫉㫉㪼㫋㫀㫅㪿㫆㪃㩷㪘㪤㪀
㪘㪚㪥㪔㪌㪍
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪘 㪄㪋㪐
㪘 㪄㪋㪐
㪘㪄㪋㪐㪃㩷㪟㪄㪈㪊
㪢㪄㪉㪇
㪘㪄㪈㪇㪏
㪘 㪄㪋㪐
㪘㪄㪈㪇㪏
㪘 㪄㪋㪐
㪝㪄㪍㪋
㪝㪄㪍㪋
㪘㪄㪈㪇㪏
㪘㪄㪈㪇㪏
㪘 㪄㪋㪏
㪘 㪄㪋㪏
㪘 㪄㪋㪐
㪚㪄㪊
㪘㪄㪈㪇㪐
㪘 㪄㪊㪋
㪘㪄㪈㪇㪐
㪦㪄㪎㪐
㪦㪄㪎㪐
㪦㪄㪎㪐
㪦㪄㪎㪐
㪘 㪄㪈㪈㪉
㪘 㪄㪈㪈㪉
㪘 㪄㪈㪈㪉
㪘 㪄㪊㪋
㪘 㪄㪊㪋
㪦㪄 㪏 㪇
㪦㪄 㪏 㪇
㪦㪄㪏㪋
㪦㪄㪏㪋
㪦㪄 㪏 㪋 㪦㪄㪏㪋
㪦㪄 㪏 㪌
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
107
㪚㫆㫉㫐㫄㪹㫆㫇㪿㪸㫅㪼㫊 㪟㫐㫇㫆㫊㫋㫆㫄㫌㫊 㪟㫐㫇㫆㫊㫋㫆㫄㫌㫊 㪟㫐㫇㫆㫊㫋㫆㫄㫌㫊 㪟㫐㫇㫆㫊㫋㫆㫄㫌㫊 㪟㫐㫇㫆㫊㫋㫆㫄㫌㫊 㪟㫐㫇㫆㫊㫋㫆㫄㫌㫊 㪟㫐㫇㫆㫊㫋㫆㫄㫌㫊 㪟㫐㫇㫆㫊㫋㫆㫄㫌㫊 㪟㫐㫇㫆㫊㫋㫆㫄㫌㫊 㪟㫐㫇㫆㫊㫋㫆㫄㫌㫊 㪟㫐㫇㫆㫊㫋㫆㫄㫌㫊 㪟㫐㫇㫆㫊㫋㫆㫄㫌㫊 㪟㫐㫇㫆㫊㫋㫆㫄㫌㫊 㪟㫐㫇㫆㫊㫋㫆㫄㫌㫊 㪟㫐㫇㫆㫊㫋㫆㫄㫌㫊 㪟㫐㫇㫆㫊㫋㫆㫄㫌㫊 㪟㫐㫇㫆㫊㫋㫆㫄㫌㫊 㪟㫐㫇㫆㫊㫋㫆㫄㫌㫊 㪟㫐㫇㫆㫊㫋㫆㫄㫌㫊 㪟㫐㫇㫆㫊㫋㫆㫄㫌㫊 㪟㫐㫇㫆㫊㫋㫆㫄㫌㫊 㪟㫐㫇㫆㫊㫋㫆㫄㫌㫊 㪟㫐㫇㫆㫊㫋㫆㫄㫌㫊 㪟㫐㫇㫆㫊㫋㫆㫄㫌㫊 㪟㫐㫇㫆㫊㫋㫆㫄㫌㫊 㪟㫐㫇㫆㫊㫋㫆㫄㫌㫊 㪟㫐㫇㫆㫊㫋㫆㫄㫌㫊 㪟㫐㫇㫆㫊㫋㫆㫄㫌㫊 㪟㫐㫇㫆㫊㫋㫆㫄㫌㫊 㪟㫐㫇㫆㫊㫋㫆㫄㫌㫊
㩷㩷㩷㪟㫐㫇㫆㫊㫋㫆㫄㫀㫅㪸㪼
㪧㪸㫉㫆㫋㫆㪺㫀㫅㪺㫃㫌㫊 㪧㫊㪼㫌㪻㫆㫋㫆㪺㫀㫅㪺㫃㫌㫊 㪧㫊㪼㫌㪻㫆㫋㫆㪺㫀㫅㪺㫃㫌㫊 㪧㫊㪼㫌㪻㫆㫋㫆㫋㪿㫐㫉㫀㫊
㫊㫇㪅 㫊㫇㪅㩷㪘 㫊㫇㪅㩷㪙 㫊㫇㪅㩷㪚 㫊㫇㪅㩷㪛㪈 㫊㫇㪅㩷㪛㪉 㫊㫇㪅㩷㪜 㫊㫇㪅㩷㪊 㫊㫇㪅㩷㪉 㫊㫇㪅㩷㪊 㫊㫇㪅㩷㪊
㪸㪽㪽㫀㫅㫀㫊 㪸㫃㪹㫆㫇㫌㫅㪺㫋㪸㫋㫌㫊 㪸㫅㪺㫀㫊㫋㫉㫆㫀㪻㪼㫊 㪸㫅㪺㫀㫊㫋㫉㫆㫀㪻㪼㫊 㪸㫅㪺㫀㫊㫋㫉㫆㫀㪻㪼㫊 㪸㫅㪺㫀㫊㫋㫉㫆㫀㪻㪼㫊 㪸㪽㪽㪅㩷㪸㫌㫉㫆㪾㫌㫋㫋㪸㫋㫌㫊 㪺㫆㫄㫄㪼㫉㫊㫆㫅㫀 㪾㫆㫐㪸㫑㪼㫅㫊㫀㫊 㫄㪸㪺㫉㫆㫇㫊 㫅㫀㪾㫉㫆㫄㪸㪺㫌㫃㪸㫋㫌㫊 㫅㫀㪾㫉㫆㫄㪸㪺㫌㫃㪸㫋㫌㫊 㫇㪸㫌㫃㫀㫅㫌㫊 㫇㫃㪼㪺㫆㫊㫋㫆㫄㫌㫊 㫇㫃㪼㪺㫆㫊㫋㫆㫄㫌㫊 㪖 㫉㪼㪾㪸㫅㫀 㫉㪼㪾㪸㫅㫀 㫊㫋㫉㫀㪾㪸㫋㫀㪺㪼㫇㫊 㫋㫀㪼㫋㪼㫅㫊㫀㫊
㫊㫇㪅
㫄㪸㪺㫌㫃㫀㪺㪸㫌㪻㪸 㫋㫀㪼㫋㪼㫅㫊㫀㫊 㫋㫀㪼㫋㪼㫅㫊㫀㫊 㫆㪹㫋㫌㫊㪸
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪝㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷 㪌㪋 㪌㪋 㪌㪋
㪤 㪤
㪩㫀㫆㩷㪧㪼㫉㪻㫀㪻㫆 㪚㬩㫉㫉㪼㪾㫆㩷㪪㪸㫃㫆㪹㫉㫀㫅㪿㪸 㪚㬩㫉㫉㪼㪾㫆㩷㪪㪸㫃㫆㪹㫉㫀㫅㪿㪸
㪧㫃㪼㪺㫆㫊㫋㫆㫄㫌㫊
㪍㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪌㪇㩷㪪㪫㪆㪘
㪎㪍
㪏㪉 㪏㪋
㪝㪃㩷㪤 㪝㪃㩷㪤
㪍㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪍㪉㩷㪪㪫㪆㪘
㪏㪉 㪏㪋
㪈㪋㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪊㪏㩷㪪㪫㪆㪘 㪏㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪌㪍㩷㪪㪫㪆㪘
㪎㪉 㪏㪇
㪤 㪝㪃㩷㪤 㪝㪃㩷㪤
㪈㪇㪤㩷㪂㩷㪈㪏㪪㪤㩷㪂㩷㪋㪋㩷㪪㪫㪆㪘㩷 㪈㪇㪤㩷㪂㩷㪉㪍㪪㪤㩷㪂㩷㪊㪍㩷㪪㪫㪆㪘
㪎㪉 㪎㪉
㪝㪃㩷㪤 㪤
㪍㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪍㪍㩷㪪㪫㪆㪘
㪍㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪍㪋㩷㪪㪫㪆㪘
㪍㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪍㪉㩷㪪㪫㪆㪘
㪈㪉㪤㩷㪂㩷㪈㪏㪪㪤㩷㪂㩷㪋㪉㩷㪪㪫㪆㪘
㪎㪉
㪝㪃㩷㪤
㪈㪌㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪈㪋㪪㪫㩷㪂㩷㪉㪍㪘 㪈㪏㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪊㪏㩷㪪㪫㪆㪘
㪎㪇
㪍㪎
㪏㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪍㪉㩷㪪㪫㪆㪘 㪈㪋㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪋㪉㩷㪪㪫㪆㪘
㪎㪋 㪍㪏
㪈㪉㪤㩷㪂㩷㪈㪏㪪㪤㩷㪂㩷㪉㪍㪪㪫㩷㪂㩷㪈㪍㪘
㪈㪇㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪋㪉㩷㪪㪫㪆㪘
㪉㪋㩷㪤㪆㪪㪤㩷㪂㩷㪈㪉㪪㪫㩷㪂㩷㪈㪏㪘
㪝㪃㩷㪤
㪝㪃㩷㪤
㪎㪉 㪎㪉
㪝㪃㩷㪤
㪌㪋
㪍㪏
㪈㪇㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪋㪋㩷㪪㪫㪆㪘
㪏㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪋㪏㩷㪪㪫㪆㪘
㪎㪍 㪎㪋
㪈㪇㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪋㪋㩷㪪㪫㪆㪘
㪈㪇㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪊㪍㪘
㪍㪏
㪝㪃㩷㪤
㪤
㪧㫃㪼㪺㫆㫊㫋㫆㫄㫌㫊 㫇㫃㪼㪺㫆㫊㫋㫆㫄㫌㫊
㪤
㪎㪉
㪈㪋㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪏㪪㪫㩷㪂㩷㪊㪉㪘
㪍㪏 㪝㪃㩷㪤
㪏㪤㩷㪂㩷㪊㪇㪪㪤㩷㪂㩷㪊㪏㩷㪪㪫㪆㪘
㪎㪍
㪝
㪈㪇㪤㩷㪂㩷㪉㪎㪪㪤㩷㪂㩷㪊㪈㩷㪪㪫㪆㪘
㪍㪏
㪈㪇㪤㩷㪂㩷㪉㪏㪪㪤㩷㪂㩷㪊㪇㩷㪪㪫㪆㪘
㪈㪏㪤㩷㪂㩷㪈㪇㪪㪤㩷㪂㩷㪈㪉㪪㪫㩷㪂㩷㪉㪏㪘
㪍㪏
㪍㪏
㪝㪃㩷㪤
㪈㪍㪤㩷㪂㩷㪈㪏㪪㪤㩷㪂㩷㪊㪋㩷㪪㪫㪆㪘
㪈㪇㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪋㪋㩷㪪㪫㪆㪘
㪝
㪍㪏
㪝㪃㩷㪤
㪈㪋㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪈㪉㪪㪫㩷㪂㩷㪉㪍㪘
㪉㪇㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪈㪋㪪㪫
㪉㪍㪤㩷㪂㩷㪈㪏㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪍㪘
㪉㪎㪤㩷㪂㩷㪉㪈㪪㪤㩷㪂㩷㪍㪪㪫
㪉㪍㪤㩷㪂㩷㪉㪉㪪㪤㩷㪂㩷㪍㪪㪫
㪉㪇㪤㩷㪂㩷㪊㪉㪪㪤㩷㪂㩷㪉㪪㪫
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪤
㪎㪋
㪝㪃㩷㪤
㪍㪍
㪌㪋
㪌㪋
㪝
㪛 㪉㫅
㪤
㪚 㪪㪼㫏
㪧㫃㪼㪺㫆㫊㫋㫆㫄㫌㫊
㪧㫃㪼㪺㫆㫊㫋㫆㫄㫌㫊 㪧㫃㪼㪺㫆㫊㫋㫆㫄㫌㫊
㪧㪸㫉㪼㫀㫆㫉㪿㫀㫅㪸
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪫㪸㪹㫃㪼㩷㪍㪅㪈㪊㩷㩷㪦㫉㪻㪼㫉㩷㪪㪠㪣㪬㪩㪠㪝㪦㪩㪤㪜㪪㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀
㪈㪇㪉
㪈㪇㪇
㪈㪇㪍
㪈㪇㪉
㪈㪇㪋
㪈㪇㪍
㪈㪇㪇 㪈㪇㪏
㪈㪇㪉
㪈㪇㪉
㪐㪋
㪐㪋
㪏㪍
㪈㪇㪉
㪈㪇㪉
㪎㪏
㪈㪇㪋
㪈㪇㪉
㪈㪇㪋
㪐㪉
㪐㪏
㪐㪍
㪈㪈㪋
㪈㪇㪌
㪈㪇㪍
㪐㪍
㪈㪇㪉
㪈㪇㪋
㪐㪋
㪐㪋
㪐㪏
㪈㪇㪉
㪈㪇㪉
㪈㪇㪍
㪝 㪥㪝㪈
㪈㪇㪏
㪈㪉㪏
㪐㪇
㪈㪇㪏
㪈㪇㪋
㪈㪇㪏
㪈㪇㪍
㪈㪇㪏
㪈㪇㪉
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪞 㪥㪝㪉
㪉
㪋
㪉
㪋 㪉
㪉
㪍
㪋
㪊
㪊
㪉
㪉
㪍
㪍
㪍
㪌
㪉
㪉
㪉
㪉
㩿㪊㪅㪎㩷㪝㪛㪀
㩿㪋㪅㪊㩷㪝㪛㪀 㩿㪋㪅㪎㩷㪝㪛㪀
㪊㪅㪍㩷㪝㪛
㩿㪊㪅㪉㩷㪝㪠㪘㪃㩷㪋㪅㪉㩷㪙㪝㪘㪀
㪟 㪠 㪘㪾㪄 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㪥㪦㪩㫊 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪘㪚㪥㪔㪏㪋
㪘㪚㪥㪔㪏㪉
㪘㪚㪥㪔㪏㪋
㪇㪄㪉㩷 㪙
㪘㪚㪥㪔㪏㪇
㪘㪚㪥㪔㪎㪏
㪘㪚㪥㪔㪎㪋 㪘㪚㪥㪔㪎㪋
㪘㪚㪥㪔㪎㪍
㪘㪚㪥㪔㪎㪍
㪈㪙
㪘㪚㪥㪔㪎㪋
㪘㪚㪥㪔㪎㪍
㪘㪚㪥㪔㪎㪍
㪘㪚㪥㪔㪎㪍
㪯㪰
㪯㪯
㪘㪚㪥㪔㪎㪍
㪘㪚㪥㪔㪎㪍
㪘㪚㪥㪔㪌㪋
㪯㪰
㪯㪯
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪘 㪄㪊㪌
㪘 㪄㪋㪐
㪘 㪄㪋㪎
㪘 㪄㪋㪎
㪘 㪄㪋㪐
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪪㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪪㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪪㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪪㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀 㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㩿㪪㪅㩷㪘㫄㪼㫉㫀㪺㪸㪀
㩿㪪㪅㩷㪘㫄㪼㫉㫀㪺㪸㪀
㪙㫉㪸㫑㫀㫃
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪩㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃
㪙㫉㪸㫑㫀㫃㩷㩿㪞㪦㪀
㪘㫉㪾㪼㫅㫋㫀㫅㪸
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃
㪙㫉㪸㫑㫀㫃
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪚㪄㪈㪇㪎
㪚㪄㪈㪇㪎
㪚㪄㪈㪇㪎
㪚㪄㪐㪏
㪘㪄㪐㪏㪃㩷㪘㪄㪈㪊㪉
㪘㪄㪐㪏㪃㩷㪝㪄㪍㪋
㪘㪄㪐㪏㪃㩷㪝㪄㪍㪋 㪘㪄㪐㪏㪃㩷㪝㪄㪍㪋
㪘㪄㪐㪏㪃㩷㪘㪄㪈㪊㪉
㪘㪄㪐㪏
㪚㪄㪐㪏
㪘 㪄㪊㪌
㪤㪄 㪍 㪍
㪘 㪄㪈㪈㪉
㪘㪄㪐㪏
㪤㪄㪐㪈
㪟㪄㪈㪊㪃㩷㪟㪄㪋㪈
㪤㪄 㪍 㪍
㪩 㪄㪈㪈㪐
㪩 㪄㪈㪈㪐
㪤㪄 㪍 㪍
㪘 㪄㪈㪈㪉
㪝㪄㪉㪇
㪘㪄㪐㪏
㪤㪄 㪍 㪍
㪤㪄 㪍 㪍
㪘 㪄㪈㪈㪉
㪘㪄㪐㪏
㪘㪄㪐㪏
㪙㫉㪸㫑㫀㫃㩷㩿㪡㪸㪺㫌㫀㩷㪪㫋㫉㪼㪸㫄㪃㩷㪪㪧㪀 㪢㪄㪉㪇
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪞㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
108
㪙㫉㫆㪺㪿㫀㫃㫆㫉㫀㪺㪸㫉㫀㪸 㪟㪸㫉㫋㫋㫀㪸 㪟㪸㫉㫋㫋㫀㪸 㪟㪸㫉㫋㫋㫀㪸 㪟㪸㫉㫋㫋㫀㪸 㪣㫆㫉㫀㪺㪸㫉㫀㪸 㪣㫆㫉㫀㪺㪸㫉㫀㪸 㪣㫆㫉㫀㪺㪸㫉㫀㪸 㪣㫆㫉㫀㪺㪸㫉㫀㪸 㪣㫆㫉㫀㪺㪸㫉㫀㫀㪺㪿㫋㪿㫐㫊 㪣㫆㫉㫀㪺㪸㫉㫀㫀㪺㪿㫋㪿㫐㫊 㪣㫆㫉㫀㪺㪸㫉㫀㫀㪺㪿㫋㪿㫐㫊 㪣㫆㫉㫀㪺㪸㫉㫀㫀㪺㪿㫋㪿㫐㫊 㪣㫆㫉㫀㪺㪸㫉㫀㫀㪺㪿㫋㪿㫐㫊 㪣㫆㫉㫀㪺㪸㫉㫀㫀㪺㪿㫋㪿㫐㫊 㪧㫉㫆㫃㫆㫉㫀㪺㪸㫉㫀㪸 㪩㫀㫅㪼㫃㫆㫉㫀㪺㪸㫉㫀㪸 㪩㫀㫅㪼㫃㫆㫉㫀㪺㪸㫉㫀㪸 㪩㫀㫅㪼㫃㫆㫉㫀㪺㪸㫉㫀㪸 㪩㫀㫅㪼㫃㫆㫉㫀㪺㪸㫉㫀㪸
㩷㩷㩷㪣㫆㫉㫀㪺㪸㫉㫀㫀㫅㪸㪼
㪧㫋㪼㫉㫐㪾㫆㫇㫃㫀㪺㪿㫋㪿㫐㫊 㪧㫋㪼㫉㫐㪾㫆㫇㫃㫀㪺㪿㫋㪿㫐㫊 㪧㫋㪼㫉㫐㪾㫆㫇㫃㫀㪺㪿㫋㪿㫐㫊 㪧㫋㪼㫉㫐㪾㫆㫇㫃㫀㪺㪿㫋㪿㫐㫊 㪧㫋㪼㫉㫐㪾㫆㫇㫃㫀㪺㪿㫋㪿㫐㫊 㪧㫋㪼㫉㫐㪾㫆㫇㫃㫀㪺㪿㫋㪿㫐㫊 㪧㫆㪾㫆㫅㫆㫇㫆㫄㪸 㪩㪿㫀㫅㪼㫃㪼㫇㫀㫊 㪪㫈㫌㪸㫃㫀㪽㫆㫉㫄㪸
㪈㪌㪤㩷㪂㩷㪉㪋㪪㪤㩷㪂㩷㪉㪌㩷㪪㪫㪆㪘 㪈㪋㪤㩷㪂㩷㪉㪋㪪㪤㩷㪂㩷㪉㪍㩷㪪㪫㪆㪘 㪊㪍㩷㪤㪆㪪㪤㩷㪂㩷㪈㪏㩷㪪㪫㪆㪘 㪉㪏㩷㪤㪆㪪㪤㩷㪂㩷㪋㪋㩷㪪㪫㪆㪘
㪍㪋 㪍㪋 㪌㪋 㪎㪉
㪝 㪤
㪌㪉 㪌㪉 㪌㪉
㪝㪃㩷㪤 㪝㪃㩷㪤 㪝㪃㩷㪤
㪍㪋
㪺㪸㫋㪸㫇㪿㫉㪸㪺㫋㪸
㫇㫉㫆㫃㫀㫏㪸 㪺㪸㪻㪼㪸㪼 㪺㪸㪻㪼㪸㪼 㫂㫉㫆㫅㪼㫀 㫃㪸㫋㫀㫉㫆㫊㫋㫉㫀㫊
㫊㫇㪅 㫊㫇㪅
㫄㪸㪺㫌㫃㪸㫋㫌㫊 㫇㫃㪸㫋㫐㫄㪼㫋㫆㫇㫆㫅 㫇㫃㪸㫋㫐㫄㪼㫋㫆㫇㫆㫅 㫇㫃㪸㫋㫐㫄㪼㫋㫆㫇㫆㫅
㪣㫆㫉㫀㪺㪸㫉㫀㪸 㪺㪸㪻㪼㪼
㪺㪸㫉㫀㫅㪸㫋㪸
㪌㪍
㫊㫇㪅
㫊㫇㪅 㫊㫇㪅㩷 㫊㫇㪅
㪈㪍㪤㩷㪂㩷㪉㪉㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪏㪘
㪝㪃㩷㪤
㪉㩷㪤㪆㪪㪤㩷㪂㩷㪍㪉㩷㪪㪫㪆㪘 㪍㩷㪤㪆㪪㪤㩷㪂㩷㪌㪏㩷㪪㪫㪆㪘 㪈㪉㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪉㪏㪘
㪍㪋 㪋㪋
㪉㪤㩷㪂㩷㪍㪋㩷㪪㪫㪆㪘
㪍㪍 㪍㪋
㪉㪇㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪊㪏㪘
㪉㪏㪤㩷㪂㩷㪉㪍㪘
㪌㪋 㪍㪉
㪍㪤㩷㪂㩷㪉㪍㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪈㪏㪘
㪍㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪉㪋㪘
㪌㪋
㪌㪋
㪤
㪎㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪉㪊㪘
㪎㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪉㪊㪘
㪌㪋
㪌㪋 㪝
㪍㪇
㪎㪇
㪍㪍
㪍㪏
㪏㪍
㪏㪉
㪏㪍
㪏㪇
㪏㪈
㪏㪈
㪍㪇
㪏㪍
㪐㪇
㪏㪋
㪏㪌
㪏㪌 㪉
㩿㪋㪅㪇㩷㪝㪛㪀
㪊㪅㪐㩷㪝㪛
㪊㪅㪐㩷㪝㪛
㩿㪋㪅㪉㪃㩷㪋㪅㪐㩷㪝㪛㪀
㪉
㪉
㪉
㪘㪚㪥㪔㪍㪋
㪘㪚㪥㪔㪍㪋
㪘㪚㪥㪔㪍㪍
㪇㪄㪌㩷 㪙
㪱㪱
㪱㪮
㪈㪄㪊㩷 㪙
㪘㪚㪥㪔㪌㪋
㪘㪚㪥㪔㪌㪏
㪘㪚㪥㪔㪌㪍
㪘㪚㪥㪔㪌㪏
㪘㪚㪥㪔㪌㪏
㪱㪱㪃㩷㪘㪚㪥㪔㪏㪉
㪱㪮
㪱㪮
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪩㪀
㪘㫉㪾㪼㫅㫋㫀㫅㪸
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪞㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪸㫉㪸㫀㫋㫀㫅㪾㪸㩷㪩㪅㪃㩷㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪫㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪩㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪙㪸㪿㫀㪸㪀
㪭㪼㫅㪼㫑㫌㪼㫃㪸㩷㩿㪦㫉㫀㫅㫆㪺㫆㩷㪩㪅㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪞㪀
㪭㪼㫅㪼㫑㫌㪼㫃㪸㩷㩿㪦㫉㫀㫅㫆㪺㫆㩷㪩㪅㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪪㪀㪅
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪘㫉㪾㪼㫅㫋㫀㫅㪸
㪘㫉㪾㪼㫅㫋㫀㫅㪸
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪫㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪫㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪫㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪞㪀
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪘 㪄㪊㪋
㪤㪄 㪈 㪍 㪏
㪘 㪄㪊㪋
㪘㪄㪊㪋㪃㩷㪚㪄㪐㪏
㪘 㪄㪊㪋
㪘 㪄㪊㪋
㪪㪄㪈㪏㪍
㪪㪄㪈㪏㪍
㪝㪄㪉㪇
㪝㪄㪉㪇
㪘㪄㪊㪋
㪘㪄㪊㪋
㪘㪄㪊㪋㪃㩷㪚㪄㪐㪏
㪝㪄㪉㪇
㪘 㪄㪊㪋
㪢㪄㪉㪇
㪘 㪄㪊㪋
㪘 㪄㪊㪋
㪤㪄 㪍 㪍
㪘㪄㪈㪇㪐
㪘㪄㪈㪇㪐
㪘㪄㪈㪇㪐
㪘 㪄㪈㪈㪉
㪦㪄㪎㪐
㪘 㪄㪈㪈㪉
㪘 㪄㪈㪈㪉
㪘 㪄㪈㪈㪉
㪘㪄㪈㪊㪊㪃㩷㪝㪄㪍㪋
㪝㪄㪉㪇
㪝㪄㪉㪇
㪘㪄㪐㪐㪃㩷㪝㪄㪍㪋
㪘㪄㪐㪐㪃㩷㪝㪄㪍㪋
㪘㪄㪈㪇㪐
㪘㪄㪈㪊㪉㪃㩷㪝㪄㪍㪋
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪸㫊㫊㪸㩷㪚㫀㫅㪺㫆㩷㪩㪅㪃㩷㪪㪧㪀 㪢㪄㪉㪇
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪚㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪩㪪㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪩㪪㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪩㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪞㪀
㪘㫉㪾㪼㫅㫋㫀㫅㪸
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪸㫉㪸㫅㬗㩷㪩㪅㪃㩷㪧㪩㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪸㫉㪸㫅㬗㩷㪩㪅㪃㩷㪧㪩㪀
㪘㫉㪾㪼㫅㫋㫀㫅㪸
㪘㫉㪾㪼㫅㫋㫀㫅㪸
㪙㫉㪸㫑㫀㫃㩷㩿㪘㪤㪀 㪉㪉㩷㪤㪆㪪㪤㩷㪂㩷㪊㪋㩷㪪㪫㪆㪘
㪌㪍
㪎㪏
㪏㪋
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪟 㪠 㪘㪾㪄 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㪥㪦㪩㫊 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪍㪉
㪏㪇
㪎㪍
㪈㪇㪋
㪈㪈㪍
㪈㪇㪋
㪈㪇㪏
㪈㪇㪏
㪈㪇㪋
㪈㪇㪋
㪏㪏
㪈㪇㪇
㪈㪇㪇
㪞 㪥㪝㪉
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪘㪀
㪈㪇㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪋㪋㪘
㪈㪉㩷㪤㪆㪪㪤㩷㪂㩷㪌㪉㩷㪪㪫㪆㪘
㪎㪇
㪐㪋
㪏㪋
㪐㪏
㪎㪏
㪐㪏
㪈㪇㪇
㪈㪇㪋
㪐㪉
㪐㪍
㪐㪍
㪎㪋
㪐㪉
㪐㪉
㪈㪇㪇
㪐㪇
㪈㪇㪉
㪈㪇㪊
㪈㪇㪉
㪈㪇㪉
㪝 㪥㪝㪈
㪌㪉
㪍㪋
㪈㪋㪪㪤㩷㪂㩷㪋㪉㪘
㪈㪏㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪊㪏㩷㪪㪫㪆㪘 㪋㪇㩷㪤㪆㪪㪤㩷㪂㩷㪈㪏㪪㪫
㪌㪏 㪌㪏 㪊㪉㩷㪤㪆㪪㪤㩷㪂㩷㪉㪇㩷㪪㪫㪆㪘
㪈㪍㪤㩷㪂㩷㪊㪇㪪㪤㩷㪂㩷㪍㪪㪫
㪌㪍
㪤
㪌㪉
㪌㪋
㪝㪃㩷㪤
㪉㪇㪤㩷㪂㩷㪊㪇㪪㪤㩷㪂㩷㪋㪪㪫
㪌㪋
㪝 㪝㪃㩷㪤
㪉㪇㪤㩷㪂㩷㪉㪍㪪㪤㩷㪂㩷㪏㪪㪫
㪉㪉㪤㩷㪂㩷㪈㪏㪪㪤㩷㪂㩷㪈㪉㪪㪫
㪉㪏㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪏㩷㪪㪫㪆㪘
㪌㪉
㪝㪃㩷㪤
㪏㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪈㪋㪪㪫㩷㪂㩷㪈㪍㪘
㪌㪉
㪝㪃㩷㪤 㪉㪇㪤㩷㪂㩷㪉㪋㪪㪤㩷㪂㩷㪏㪪㪫
㪉㪏㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪏㪪㪫㩷㪂㩷㪋㪘
㪌㪉
㪝㪃㩷㪤
㪈㪍㪤㩷㪂㩷㪉㪋㪪㪤㩷㪂㩷㪏㪪㪫㩷㪂㩷㪋㪘
㪈㪇㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪌㪇㩷㪪㪫㪆㪘 㪈㪋㪤㩷㪂㩷㪉㪋㪪㪤㩷㪂㩷㪉㪍㩷㪪㪫㪆㪘
㪎㪍
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪛 㪉㫅
㪍㪋
㪚 㪪㪼㫏
㪌㪉
㪣㫆㫉㫀㪺㪸㫉㫀㪸
㪟㫐㫇㫆㫊㫋㫆㫄㫌㫊㩷㪼㫄㪸㫉㪾㫀㫅㪸㫋㫌㫊
㪣㫀㫇㫆㫊㪸㫉㪺㫌㫊
㪣㫀㫇㫆㫊㪸㫉㪺㫌㫊㩷㪸㫅㫀㫊㫀㫋㫊㫀 㪣㫀㫇㫆㫊㪸㫉㪺㫌㫊㩷㪸㫅㫀㫊㫀㫋㫊㫀 㪣㫀㫇㫆㫊㪸㫉㪺㫌㫊㩷㪸㫅㫀㫊㫀㫋㫊㫀 㪞㫃㫐㫇㫋㫆㫇㪼㫉㫀㪺㪿㫋㪿㫐㫊
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㫄㪸㪺㫉㫆㪻㫆㫅 㫂㫉㫆㫅㪼㫀 㫃㫆㫉㫀㪺㪸㫉㫀㪽㫆㫉㫄㫀㫊 㫃㫆㫉㫀㪺㪸㫉㫀㪽㫆㫉㫄㫀㫊
㪸㫄㪹㫉㫆㫊㪼㫋㫋㫀㫀 㪸㫄㪹㫉㫆㫊㪼㫋㫋㫀㫀 㪸㫄㪹㫉㫆㫊㪼㫋㫋㫀㫀 㪾㫀㪹㪹㫀㪺㪼㫇㫊 㫁㫆㫊㪼㫃㫀㫄㪸㫀㪸㫅㫌㫊 㫄㫌㫃㫋㫀㫉㪸㪻㫀㪸㫋㫌㫊 㫎㪼㫉㫋㪿㪼㫀㫄㪼㫉㫀 㪸㫊㫇㪼㫉㪸 㪼㫄㪸㫉㪾㫀㫅㪸㫋㪸
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪝㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷 㪟㫐㫇㫆㫊㫋㫆㫄㫌㫊 㫊㫇㪅㩷㪝 㪟㫐㫇㫆㫊㫋㫆㫄㫌㫊 㫊㫇㪅㩷㪞 㪟㫐㫇㫆㫊㫋㫆㫄㫌㫊 㫊㫇㪅 㪟㫐㫇㫆㫊㫋㫆㫄㫌㫊 㫊㫇㪅 㪟㫐㫇㫆㫊㫋㫆㫄㫌㫊 㫊㫇㪅㩷㪈㪖 㪟㫐㫇㫆㫊㫋㫆㫄㫌㫊 㫊㫇㪅㩷㪉
㪫㪸㪹㫃㪼㩷㪍㪅㪈㪊㩷㩷㪦㫉㪻㪼㫉㩷㪪㪠㪣㪬㪩㪠㪝㪦㪩㪤㪜㪪㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀
109
㪠㫊㪹㫉㫌㪼㪺㫂㪼㫉㫀㪺㪿㫋㪿㫐㫊 㪢㫉㫆㫅㫀㪺㪿㫋㪿㫐㫊 㪢㫉㫆㫅㫀㪺㪿㫋㪿㫐㫊 㪥㪼㫆㫇㫃㪼㪺㫆㫊㫋㫆㫄㫌㫊 㪥㪼㫆㫇㫃㪼㪺㫆㫊㫋㫆㫄㫌㫊 㪥㪼㫆㫇㫃㪼㪺㫆㫊㫋㫆㫄㫌㫊 㪥㪼㫆㫇㫃㪼㪺㫆㫊㫋㫆㫄㫌㫊 㪧㪸㫉㪼㫀㫆㫉㪿㪸㫇㪿㫀㫊 㪧㪸㫉㪼㫀㫆㫉㪿㪸㫇㪿㫀㫊 㪧㪸㫉㪼㫀㫆㫉㪿㪸㫇㪿㫀㫊 㪧㪸㫉㪼㫀㫆㫉㪿㪸㫇㪿㫀㫊
㩷㩷㪥㪼㫆㫇㫃㪼㪺㫆㫊㫋㫆㫄㫀㫅㪸㪼
㪩㫀㫅㪼㫃㫆㫉㫀㪺㪸㫉㫀㪸 㪩㫀㫅㪼㫃㫆㫉㫀㪺㪸㫉㫀㪸 㪩㫀㫅㪼㫃㫆㫉㫀㪺㪸㫉㫀㪸 㪩㫀㫅㪼㫃㫆㫉㫀㪺㪸㫉㫀㪸 㪩㫀㫅㪼㫃㫆㫉㫀㪺㪸㫉㫀㪸 㪩㫀㫅㪼㫃㫆㫉㫀㪺㪸㫉㫀㪸 㪩㫀㫅㪼㫃㫆㫉㫀㪺㪸㫉㫀㪸 㪩㫀㫅㪼㫃㫆㫉㫀㪺㪸㫉㫀㪸 㪩㫀㫅㪼㫃㫆㫉㫀㪺㪸㫉㫀㪸 㪩㫀㫅㪼㫃㫆㫉㫀㪺㪸㫉㫀㪸 㪩㫀㫅㪼㫃㫆㫉㫀㪺㪸㫉㫀㪸 㪩㫀㫅㪼㫃㫆㫉㫀㪺㪸㫉㫀㪸 㪩㫀㫅㪼㫃㫆㫉㫀㪺㪸㫉㫀㪸 㪩㫀㫅㪼㫃㫆㫉㫀㪺㪸㫉㫀㪸 㪩㫀㫅㪼㫃㫆㫉㫀㪺㪸㫉㫀㪸 㪩㫀㫅㪼㫃㫆㫉㫀㪺㪸㫉㫀㪸 㪩㫀㫅㪼㫃㫆㫉㫀㪺㪸㫉㫀㪸 㪩㫀㫅㪼㫃㫆㫉㫀㪺㪸㫉㫀㪸 㪩㫀㫅㪼㫃㫆㫉㫀㪺㪸㫉㫀㪸 㪩㫀㫅㪼㫃㫆㫉㫀㪺㪸㫉㫀㪸 㪩㫀㫅㪼㫃㫆㫉㫀㪺㪸㫉㫀㪸 㪩㫀㫅㪼㫃㫆㫉㫀㪺㪸㫉㫀㪸 㪩㫀㫅㪼㫃㫆㫉㫀㪺㪸㫉㫀㪸 㪪㫋㫌㫉㫀㫊㫆㫄㪸
㫊㫇㪅
㪻㫌㫊㪼㫅㫀 㫃㪸㪺㪼㫉㫋㪸 㫊㫌㪹㫋㪼㫉㪼㫊 㫄㫀㪺㫉㫆㫇㫊 㫄㫀㪺㫉㫆㫇㫊 㫇㪸㫉㪸㫅㪼㫅㫊㫀㫊 㫇㪸㫉㪸㫅㪼㫅㫊㫀㫊 㫊㫇㫃㪼㫅㪻㪼㫅㫊 㫊㫋㪼㫀㫅㪻㪸㪺㪿㫅㪼㫉㫀 㫍㪼㫊㫋㫀㪾㫀㫇㫀㫅㫅㫀㫊 㪟㪼㫄㫀㫇㫊㫀㫃㫀㪺㪿㫋㪿㫐㫊 㪟㪼㫄㫀㫇㫊㫀㫃㫀㪺㪿㫋㪿㫐㫊 㪟㪼㫄㫀㫇㫊㫀㫃㫀㪺㪿㫋㪿㫐㫊 㪟㪼㫄㫀㫇㫊㫀㫃㫀㪺㪿㫋㪿㫐㫊
㪈㪌㩷㪤㪆㪪㪤㩷㪂㩷㪊㪇㩷㪪㪫㪆㪘 㪈㪇㪤㩷㪂㩷㪊㪪㪤㩷㪂㩷㪊㪊㪘 㪈㪋㩷㪤㪆㪪㪤㩷㪂㩷㪊㪉㩷㪪㪫㪆㪘 㪈㪊㩷㪤㪆㪪㪤㩷㪂㩷㪊㪋㩷㪪㪫㪆㪘 㪉㪋㩷㪤㪆㪪㪤㩷㪂㩷㪈㪉㩷㪪㪫㪆㪘 㪉㪊㩷㪤㪆㪪㪤㩷㪂㩷㪈㪋㩷㪪㪫㪆㪘 㪉㪉㩷㪤㪆㪪㪤㩷㪂㩷㪈㪍㩷㪪㪫㪆㪘 㪉㪈㩷㪤㪆㪪㪤㩷㪂㩷㪈㪏㩷㪪㪫㪆㪘 㪉㪇㩷㪤㪆㪪㪤㩷㪂㩷㪉㪇㩷㪪㪫㪆㪘 㪈㪎㩷㪤㪆㪪㪤㩷㪂㩷㪉㪍㩷㪪㪫㪆㪘 㪈㪍㩷㪤㪆㪪㪤㩷㪂㩷㪉㪏㩷㪪㪫㪆㪘 㪈㪋㩷㪤㪆㪪㪤㩷㪂㩷㪊㪉㩷㪪㪫㪆㪘 㪈㪊㩷㪤㪆㪪㪤㩷㪂㩷㪊㪋㩷㪪㪫㪆㪘 㪈㪉㩷㪤㪆㪪㪤㩷㪂㩷㪊㪍㩷㪪㪫㪆㪘
㪋㪌 㪋㪍 㪋㪍 㪋㪎 㪊㪍 㪊㪎 㪊㪏 㪊㪐 㪋㪇 㪋㪊 㪋㪋 㪋㪍 㪋㪎 㪋㪏
㪝㪃㩷㪤
㪈㪇㪤㩷㪂㩷㪊㪪㪤㩷㪂㩷㪊㪈㪘
㪋㪋
㫊㫇㪅 㪺㪽㪅㩷㫅㫀㪾㫉㫀㫉㫆㫊㫋㫉㫌㫄
㪈㪊㪤㩷㪂㩷㪈㪪㪤㩷㪂㩷㪊㪇㪘
㪋㪋
㪉㪇㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪈㪋㪪㪫
㪌㪋
㪌㪋
㪉㪇㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪈㪋㪪㪫
㪉㪇㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪈㪋㪪㪫
㪉㪇㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪈㪋㪪㪫
㪌㪋
㪌㪋
㪉㪋㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪈㪇㪪㪫
㪌㪋
㪉㪇㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪈㪋㪪㪫
㪉㪇㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪈㪋㪪㪫
㪌㪋
㪌㪋
㪉㪇㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪈㪋㪪㪫
㪌㪋
㪉㪇㪤㩷㪂㩷㪊㪇㪪㪤㩷㪂㩷㪋㪪㪫
㪉㪇㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪈㪋㪪㪫
㪌㪋
㪉㪇㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪈㪋㪪㪫
㪌㪋
㪉㪇㪤㩷㪂㩷㪈㪏㪪㪤㩷㪂㩷㪊㪍㩷㪪㪫㪆㪘
㪉㪪㪤㩷㪂㩷㪍㪏㪘
㪌㪋
㪎㪋
㪎㪇
㪍㩷㪤㪆㪪㪤㩷㪂㩷㪍㪉㩷㪪㪫㪆㪘
㪏㩷㪤㪆㪪㪤㩷㪂㩷㪋㪏㩷㪪㪫㪆㪘
㪈㪊㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪉㪎㪘
㪋㪋
㪍㪏
㪈㪊㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪉㪐㪘
㪋㪏
㪈㪇㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪊㪇㪘
㪋㪋
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪋㪋
㪌㪍
㪛 㪉㫅
㪝㪃㩷㪤
㪚 㪪㪼㫏
㪝㪃㩷㪤
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㫃㪸㫋㫀㫉㫆㫊㫋㫉㫀㫊 㫃㪸㫋㫀㫉㫆㫊㫋㫉㫀㫊 㫃㪸㫋㫀㫉㫆㫊㫋㫉㫀㫊 㫃㪸㫋㫀㫉㫆㫊㫋㫉㫀㫊 㫃㪸㫋㫀㫉㫆㫊㫋㫉㫀㫊 㫃㪸㫋㫀㫉㫆㫊㫋㫉㫀㫊 㫃㪸㫋㫀㫉㫆㫊㫋㫉㫀㫊 㫃㪸㫋㫀㫉㫆㫊㫋㫉㫀㫊 㫃㪸㫋㫀㫉㫆㫊㫋㫉㫀㫊 㫃㪸㫋㫀㫉㫆㫊㫋㫉㫀㫊 㫃㪸㫋㫀㫉㫆㫊㫋㫉㫀㫊 㫃㪸㫋㫀㫉㫆㫊㫋㫉㫀㫊 㫃㪸㫋㫀㫉㫆㫊㫋㫉㫀㫊 㫃㪸㫋㫀㫉㫆㫊㫋㫉㫀㫊 㫃㪸㫋㫀㫉㫆㫊㫋㫉㫀㫊 㫃㪸㫋㫀㫉㫆㫊㫋㫉㫀㫊 㫃㪸㫋㫀㫉㫆㫊㫋㫉㫀㫊 㫃㪸㫋㫀㫉㫆㫊㫋㫉㫀㫊 㫃㪸㫋㫀㫉㫆㫊㫋㫉㫀㫊 㫇㪸㫉㫍㪸 㫇㪼㫅㫋㪸㫄㪸㪺㫌㫃㪸㫋㪸 㫊㫋㫉㫀㪾㫀㫃㪸㫋㪸
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪝㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷
㪫㪸㪹㫃㪼㩷㪍㪅㪈㪊㩷㩷㪦㫉㪻㪼㫉㩷㪪㪠㪣㪬㪩㪠㪝㪦㪩㪤㪜㪪㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀
㪐㪋
㪐㪋
㪐㪋
㪈㪇㪋
㪐㪋
㪐㪋
㪐㪏
㪐㪋
㪐㪋
㪐㪋
㪐㪋
㪈㪈㪉
㪎㪉
㪎㪋
㪍㪋
㪍㪇
㪍㪇
㪍㪇
㪍㪇
㪍㪇
㪍㪇
㪍㪇
㪍㪇
㪍㪇
㪍㪇
㪍㪇
㪍㪇
㪌㪐
㪍㪇
㪌㪎
㪌㪏
㪍㪈
㪌㪐
㪌㪏
㪝 㪥㪝㪈
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪌㪐
㪌㪎
㪌㪏
㪍㪈
㪌㪐
㪌㪏
㪞 㪥㪝㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉㪅㪊㩷㪝㪛
㪊㪅㪉㩷㪙㪝㪘
㪟 㪠 㪘㪾㪄 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㪥㪦㪩㫊 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪘㪚㪥㪔㪌㪋
㪘㪚㪥㪔㪌㪍
㪘㪚㪥㪔㪌㪍
㪘㪚㪥㪔㪌㪋
㪘㪚㪥㪔㪌㪋
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪸㫉㪸㫀㫋㫀㫅㪾㪸㩷㪩㪅㪃㩷㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪩㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪫㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪩㪪㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪩㪀
㩿㪪㪅㩷㪘㫄㪼㫉㫀㪺㪸㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪫㫉㪼㫊㩷㪙㫆㪺㪸㫊㩷㪩㪅㪃㩷㪧㪩㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪫㫉㪼㫊㩷㪙㫆㪺㪸㫊㩷㪩㪅㪃㩷㪧㪩㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪫㫉㪼㫊㩷㪙㫆㪺㪸㫊㩷㪩㪅㪃㩷㪧㪩㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪫㫉㪼㫊㩷㪙㫆㪺㪸㫊㩷㪩㪅㪃㩷㪧㪩㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪫㫉㪼㫊㩷㪙㫆㪺㪸㫊㩷㪩㪅㪃㩷㪧㪩㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪩㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪚㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪚㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪚㪃㩷㪧㪘㪀
㪘 㪄㪊㪌
㪘 㪄㪊㪌
㪘 㪄㪊㪌
㪘 㪄㪊㪌
㪘 㪄㪊㪌
㪘㪄㪊㪌㪃㩷㪝㪄㪍㪋㪃㩷㪚㪄㪐㪏
㪢㪄㪉㪇
㪘 㪄㪊㪌
㪘 㪄㪊㪌
㪘 㪄㪊㪌
㪘 㪄㪊㪌
㪘㪄㪈㪇㪐
㪘 㪄㪊㪋
㪤㪄 㪈 㪍 㪏
㪘㪄㪊㪋㪃㩷㪤㪄㪈㪍㪏
㪞 㪄㪎㪊㪃 㩷㪟㪄㪈㪊
㪢㪄㪉㪇
㪢㪄㪉㪇
㪢㪄㪉㪇
㪢㪄㪉㪇
㪢㪄㪉㪇
㪙㫉㪸㫑㫀㫃㩷㩿㪤㫆㪾㫀㪄㪞㫌㪸㪺㫌㩷㪩㪅㪃㩷㪪㪧㪀 㪢㪄㪉㪇
㪙㫉㪸㫑㫀㫃㩷㩿㪤㫆㪾㫀㪄㪞㫌㪸㪺㫌㩷㪩㪅㪃㩷㪪㪧㪀 㪢㪄㪉㪇
㪙㫉㪸㫑㫀㫃㩷㩿㪤㫆㪾㫀㪄㪞㫌㪸㪺㫌㩷㪩㪅㪃㩷㪪㪧㪀 㪢㪄㪉㪇
㪙㫉㪸㫑㫀㫃㩷㩿㪤㫆㪾㫀㪄㪞㫌㪸㪺㫌㩷㪩㪅㪃㩷㪪㪧㪀 㪢㪄㪉㪇
㪙㫉㪸㫑㫀㫃㩷㩿㪤㫆㪾㫀㪄㪞㫌㪸㪺㫌㩷㪩㪅㪃㩷㪪㪧㪀 㪢㪄㪉㪇
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪸㫊㫊㪸㩷㪚㫀㫅㪺㫆㩷㪩㪅㪃㩷㪪㪧㪀 㪢㪄㪉㪇
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪸㫊㫊㪸㩷㪚㫀㫅㪺㫆㩷㪩㪅㪃㩷㪪㪧㪀 㪢㪄㪉㪇
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪸㫊㫊㪸㩷㪚㫀㫅㪺㫆㩷㪩㪅㪃㩷㪪㪧㪀 㪢㪄㪉㪇
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪸㫊㫊㪸㩷㪚㫀㫅㪺㫆㩷㪩㪅㪃㩷㪪㪧㪀 㪢㪄㪉㪇
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪸㫊㫊㪸㩷㪚㫀㫅㪺㫆㩷㪩㪅㪃㩷㪪㪧㪀 㪢㪄㪉㪇
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪸㫊㫊㪸㩷㪚㫀㫅㪺㫆㩷㪩㪅㪃㩷㪪㪧㪀 㪢㪄㪉㪇
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪸㫊㫊㪸㩷㪚㫀㫅㪺㫆㩷㪩㪅㪃㩷㪪㪧㪀 㪢㪄㪉㪇
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪸㫊㫊㪸㩷㪚㫀㫅㪺㫆㩷㪩㪅㪃㩷㪪㪧㪀 㪢㪄㪉㪇
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪸㫊㫊㪸㩷㪚㫀㫅㪺㫆㩷㪩㪅㪃㩷㪪㪧㪀 㪢㪄㪉㪇
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪇㪄㪉㩷㪙㪃㩷㪘㪚㪥㪔㪌㪋 㪙㫉㪸㫑㫀㫃㩷㩿㪤㪞㪀
㪘㪚㪥㪔㪌㪋
㪘㪚㪥㪔㪌㪋
㪘㪚㪥㪔㪌㪋
㪘㪚㪥㪔㪌㪍
㪘㪚㪥㪔㪎㪇
㪘㪚㪥㪔㪍㪏
㪘㪚㪥㪔㪍㪇
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
110
㫄㪼㫄㪹㫉㪸㫅㪸㪺㪼㫌㫊 㫄㪼㫄㪹㫉㪸㫅㪸㪺㪼㫌㫊 㪹㪸㫊㫋㫀㪸㫅㫀 㪹㫌㪻㪾㪼㫋㫋㫀 㪺㫆㫌㫉㫋㪼㫋㫀 㪽㫀㫃㪸㫄㪼㫅㫋㫆㫊㪸 㫆㪺㪼㫃㫃㫀㪽㪼㫉 㫊㪺㪿㪸㫃㫃 㫊㫆㫉㪼㫏 㫊㫆㫉㪼㫏 㫍㫀㫆㫃㪸㪺㪼㪸
㪾㫀㪾㪸㫊 㪾㫀㪾㪸㫊 㪿㫐㫇㫆㫇㪿㫋㪿㪸㫃㫄㫌㫊 㪿㫐㫇㫆㫇㪿㫋㪿㪸㫃㫄㫌㫊 㪿㫐㫇㫆㫇㪿㫋㪿㪸㫃㫄㫌㫊 㫃㪸㫉㫅㪸㫌㪻㫀㫀 㫇㪸㫅㪾㪸㫊㫀㫌㫊 㫇㪸㫅㪾㪸㫊㫀㫌㫊 㫊㪸㫅㫀㫋㫎㫆㫅㪾㫊㪼㫀
㫎㪼㫊㫋㪼㫉㫄㪸㫅㫅㫀 㫄㪸㪺㫉㫆㫇㫋㪼㫉㫌㫊 㫇㫃㪸㫋㫐㫉㪿㫐㫅㪺㪿㫆㫊 㫃㪸㪹㫉㫆㫊㫌㫊 㫃㪸㪹㫉㫆㫊㫌㫊 㫃㪸㪹㫉㫆㫊㫌㫊 㫃㪸㪹㫉㫆㫊㫌㫊
㪟㪼㫄㫀㫊㫐㫅㫆㪻㫆㫅㫋㫀㫊 㪟㪼㫄㫀㫊㫐㫅㫆㪻㫆㫅㫋㫀㫊 㪪㫐㫅㫆㪻㫆㫅㫋㫀㫊 㪪㫐㫅㫆㪻㫆㫅㫋㫀㫊 㪪㫐㫅㫆㪻㫆㫅㫋㫀㫊 㪪㫐㫅㫆㪻㫆㫅㫋㫀㫊 㪪㫐㫅㫆㪻㫆㫅㫋㫀㫊 㪪㫐㫅㫆㪻㫆㫅㫋㫀㫊 㪪㫐㫅㫆㪻㫆㫅㫋㫀㫊 㪪㫐㫅㫆㪻㫆㫅㫋㫀㫊 㪪㫐㫅㫆㪻㫆㫅㫋㫀㫊
㪧㪸㫅㪾㪸㫊㫀㪸㫅㫆㪻㫆㫅 㪧㪸㫅㪾㪸㫊㫀㪸㫅㫆㪻㫆㫅 㪧㪸㫅㪾㪸㫊㫀㪸㫅㫆㪻㫆㫅 㪧㪸㫅㪾㪸㫊㫀㪸㫅㫆㪻㫆㫅 㪧㪸㫅㪾㪸㫊㫀㪸㫅㫆㪻㫆㫅 㪧㪸㫅㪾㪸㫊㫀㫌㫊 㪧㪸㫅㪾㪸㫊㫀㫌㫊 㪧㪸㫅㪾㪸㫊㫀㫌㫊 㪧㪸㫅㪾㪸㫊㫀㫌㫊
㪙㪼㫉㪾㫀㪸㫉㫀㪸 㪚㪸㫃㫆㫇㪿㫐㫊㫌㫊 㪟㪼㫄㫀㫊㫆㫉㫌㪹㫀㫄 㪠㪿㪼㫉㫀㫅㪾㫀㪺㪿㫋㪿㫐㫊 㪠㪿㪼㫉㫀㫅㪾㫀㪺㪿㫋㪿㫐㫊 㪠㪿㪼㫉㫀㫅㪾㫀㪺㪿㫋㪿㫐㫊 㪠㪿㪼㫉㫀㫅㪾㫀㪺㪿㫋㪿㫐㫊
㪧㫀㫄㪼㫃㫆㪻㫀㪻㪸㪼
㪧㪸㫅㪾㪸㫊㫀㫀㪻㪸㪼
㪤㫆㪺㪿㫆㫂㫀㪻㪸㪼
㫊㫇㪅
㫉㫌㪻㫆㫃㫇㪿㫀
㪬㫇㫊㫀㫃㫆㪻㫌㫊
㩷㩷㪬㫇㫊㫀㫃㫆㪻㫀㫅㪸㪼
㪧㪸㫉㪼㫀㫆㫉㪿㫀㫅㪸
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪝㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷
㪧㪸㫅㪾㪸㫊㫀㫌㫊 㪧㪸㫅㪾㪸㫊㫀㫌㫊 㪧㪸㫅㪾㪸㫊㫀㫌㫊㩷㫊㫌㫋㪺㪿㫀
㫍㫀㫆㫃㪸㪺㪼㫌㫊
㪽㫀㫃㪸㫄㪼㫅㫋㫆㫊㫌㫊
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪫㪸㪹㫃㪼㩷㪍㪅㪈㪊㩷㩷㪦㫉㪻㪼㫉㩷㪪㪠㪣㪬㪩㪠㪝㪦㪩㪤㪜㪪㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀
㪌㪋 㪌㪋
㪤 㪝
㪌㪍 㪌㪍 㪌㪍 㪌㪍 㪌㪍
䌆 㪝㪃㩷㪤 㪝㪃㩷㪤 㪝㪃㩷㪤
㪉㪍㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪈㪉㪘
㪈㪋㪤㩷㪂㩷㪊㪉㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪍㪘
㪊㪉㪤㩷㪂㩷㪏㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪈㪇㪘
㪉㪉㪤㩷㪂㩷㪈㪏㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪍㪘
㪉㪉㪤㩷㪂㩷㪈㪏㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪈㪇㪘
㪋㪉㩷㪤㪆㪪㪤㩷㪂㩷㪈㪋㩷㪪㪫㪆㪘 㪉㪉㪤㩷㪂㩷㪈㪏㪪㪤㩷㪂㩷㪈㪇㪘
㪌㪍
㪈㪋㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪈㪏㪪㪫㩷㪂㩷㪉㪋㪘 㪉㪇㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪈㪏㪪㪫㩷㪂㩷㪈㪍㪘
㪍㪉 㪍㪇
㪌㪇
㪈㪋㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪉㪉㪘
㪉㪇㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪉㪋㪘 㪉㪋㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪈㪉㪘
㪍㪇 㪍㪇 㪌㪏
㪈㪉㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪊㪇㪘
㪍㪇
㪉㪇㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪉㪋㪘
㪊㪉㪤㩷㪂㩷㪏㪪㪤㩷㪂㩷㪈㪉㪪㪫㩷㪂㩷㪏㪘
㪍㪇
㪈㪇㪤㩷㪂㩷㪉㪍㪪㪤㩷㪂㩷㪈㪋㪪㪫㩷㪂㩷㪈㪇㪘
㪍㪇
㪊㪉㩷㪤㪆㪪㪤㩷㪂㩷㪈㪋㪪㪫㩷㪂㩷㪏㪘
㪉㪎㩷㪤㪆㪪㪤㩷㪂㩷㪈㪌㪪㪫㩷㪂㩷㪈㪉㪘
㪉㪍㩷㪤㪆㪪㪤㩷㪂㩷㪈㪍㪪㪫㩷㪂㩷㪈㪉㪘
㪉㪋㩷㪤㪆㪪㪤㩷㪂㩷㪈㪎㪪㪫㩷㪂㩷㪈㪊㪘㩷
㪉㪉㩷㪤㪆㪪㪤㩷㪂㩷㪉㪇㪪㪫㩷㪂㩷㪈㪉㪘㩷
㪉㪋㩷㪤㪆㪪㪤㩷㪂㩷㪉㪉㪪㪫㩷㪂㩷㪈㪇㪘
㪉㪏㩷㪤㪆㪪㪤㩷㪂㩷㪈㪐㪪㪫㩷㪂㩷㪎㪘㩷
㪊㪇㩷㪤㪆㪪㪤㩷㪂㩷㪈㪏㪪㪫㩷㪂㩷㪍㪘
㪉㪊㩷㪤㪆㪪㪤㩷㪂㩷㪈㪏㪪㪫㩷㪂㩷㪈㪊㪘㩷
㪊㪈㩷㪤㪆㪪㪤㩷㪂㩷㪈㪊㪪㪫㩷㪂㩷㪈㪇㪘
㪊㪇㩷㪤㪆㪪㪤㩷㪂㩷㪈㪋㪪㪫㩷㪂㩷㪈㪇㪘㩷
㪈㪍㪤㩷㪂㩷㪏㪪㪤㩷㪂㩷㪎㪉㪘
㪉㪍㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪈㪉㪪㪫
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪍㪇
㪝㪃㩷㪤
㪝㪃㩷㪤
㪝
㪤
㪝㪃㩷㪤
㪌㪋
㪌㪋
㪤
㪌㪋
㪌㪋
㪝
㪝
㪌㪋
㪤
㪝
㪌㪋
㪝
㪌㪍
㪌㪋
㪝
㪌㪋
㪝
㪐㪍
㪌㪋
㪛 㪉㫅
㪤
㪚 㪪㪼㫏
㪐㪋
㪈㪇㪉
㪐㪍
㪐㪍
㪐㪍
㪐㪇
㪐㪏
㪏㪍
㪏㪉
㪐㪉
㪈㪇㪋
㪐㪉
㪏㪋
㪐㪉
㪈㪇㪇
㪐㪍
㪏㪍
㪏㪈
㪏㪇
㪎㪏
㪎㪍
㪏㪇
㪏㪉
㪏㪋
㪎㪎
㪏㪌
㪏㪋
㪈㪉㪇
㪐㪍
㪝 㪥㪝㪈
㪈㪇㪇
㪈㪇㪍
㪈㪇㪉
㪈㪇㪍
㪈㪇㪉
㪈㪇㪋
㪈㪇㪇
㪐㪋
㪈㪇㪏
㪐㪍
㪐㪇
㪐㪍
㪈㪈㪉
㪈㪈㪇
㪈㪇㪇
㪐㪍
㪐㪍
㪐㪌
㪐㪍
㪈㪇㪉
㪈㪇㪈
㪈㪇㪉
㪐㪌
㪐㪏
㪐㪏
㪈㪇㪏
㪞 㪥㪝㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉㪅㪉㩷㪙㪝㪘
㪟 㪠 㪘㪾㪄 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㪥㪦㪩㫊 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪭 㪄㪋㪎
㪤㪄㪋㪍
㪪㪄㪈㪍㪍㩷
㪛㪄 㪈 㪈
㪛㪄 㪉 㪈
㪤㪄 㪉 㪇
㪢㪄㪋㪉
㪤㪄 㪎
㪤㪄 㪎
㪢㪄㪈㪊㪍
㪛㪄 㪉 㪈
㪛㪄 㪉 㪈
㪤㪄㪊㪇
㪘㪄㪈㪇㪃㩷㪦㪄㪈
㪚㪄㪈㪇㪋㪃㩷㪚㪄㪈㪇㪌
㪙㫉㪸㫑㫀㫃㩷㩿㪬㫇㫇㪼㫉㩷㪫㫀㪹㪸㪾㫀㩷㪩㪅㪃㩷㪧㪩㪀 㪩㪄㪈㪉㪋
㪙㫉㪸㫑㫀㫃㩷㩿㪣㫆㫎㪼㫉㩷㪫㫀㪹㪸㪾㫀㩷㪩㪅㪃㩷㪧㪩㪀 㪚㪄㪐㪎
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪸㫉㪸㫅㪸㩷㪹㪸㫊㫀㫅㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪩㪅㩷㪥㪼㪾㫉㫆㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪞㪀
㪫㪿㪸㫀㫃㪸㫅㪻
㪠㫅㪻㫀㪸
㪠㫅㪻㫀㪸㩷㩿㪮㪙㪀
㪫㪿㪸㫀㫃㪸㫅㪻㩷㩿㪥㪸㫂㪿㫆㫅㫊㪸㫎㪸㫅㪀
㪫㪿㪸㫀㫃㪸㫅㪻㩷㩿㪥㪸㫂㪿㫆㫅㫊㪸㫎㪸㫅㪀
㩿㪫㪿㪸㫀㫃㪸㫅㪻㪀
㪫㪿㪸㫀㫃㪸㫅㪻
㪫㪿㪸㫀㫃㪸㫅㪻
㪫㪿㪸㫀㫃㪸㫅㪻㩷㩿㪚㪿㫀㪸㫅㪾㩷㪤㪸㫀㪀
㪤㪸㫃㫀
㪘㪄㪈㪇㪃㩷㪦㪄㪈
㪘㪄㪈㪇㪃㩷㪦㪄㪈
㪤㪸㫃㫀 㪤㪸㫃㫀
㪘 㪄㪈㪇 㪘㪄㪈㪇㪃㩷㪦㪄㪈㪃㩷㪟㪄㪈㪊
㪤㪸㫃㫀
㪘㪄㪈㪇㪃㩷㪦㪄㪈
㪘 㪄㪈㪇
㪘㪄㪈㪇㪃㩷㪦㪄㪈
㪘 㪄㪈㪇
㪘㪄㪈㪇㪃㩷㪦㪄㪈
㪘㪄㪈㪇㪃㩷㪦㪄㪈
㪢㪄㪉㪇
㪘 㪄㪊㪌
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
㪤㪸㫃㫀
㪤㪸㫃㫀
㪤㪸㫃㫀
㪤㪸㫃㫀
㪠㫍㫆㫉㫐㩷㪚㫆㪸㫊㫋
㪘㪽㫉㫀㪺㪸
㪘㪽㫉㫀㪺㪸
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪸㫉㪸㫀㫋㫀㫅㪾㪸㩷㪩㪅㪃㩷㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪇㪄㪈㩷㪙㪃㩷㪘㪚㪥㪔㪌㪍 㪙㫉㪸㫑㫀㫃㩷㩿㪧㪩㪀
㪇㩷㪙㪃㩷㪘㪚㪥㪔㪌㪍
㪇㪄㪊㩷 㪙
㪘㪚㪥㪔㪌㪍
㪇㪄㪌㩷 㪙
㪘㪚㪥㪔㪍㪇
㪘㪚㪥㪔㪍㪇
㪯㪯㪆㪯㪰
㪘㪚㪥㪔㪌㪍
㪱㪮㪃㩷㪘㪚㪥㪔㪌㪍
㪱㪱㪃㩷㪘㪚㪥㪔㪌㪍
㪘㪚㪥㪔㪌㪍
㪘㪚㪥㪔㪌㪍
㪘㪚㪥㪔㪌㪍
㪘㪚㪥㪔㪌㪍
㪘㪚㪥㪔㪌㪍
㪱㪮㪃㩷㪘㪚㪥㪔㪌㪍
㪱㪮㪃㩷㪘㪚㪥㪔㪌㪍
㪱㪱㪃㩷㪘㪚㪥㪔㪌㪍
㪘㪚㪥㪔㪌㪋
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
111
㪠㪿㪼㫉㫀㫅㪾㫀㪺㪿㫋㪿㫐㫊 㪣㫌㪺㫀㫆㫇㫀㫄㪼㫃㫆㪻㫌㫊 㪤㪼㪾㪸㫃㫆㫅㪼㫄㪸 㪤㪼㪾㪸㫃㫆㫅㪼㫄㪸 㪧㪸㫉㪸㫇㫀㫄㪼㫃㫆㪻㫌㫊 㪧㪸㫉㪸㫇㫀㫄㪼㫃㫆㪻㫌㫊 㪧㫀㫄㪼㫃㫆㪻㫌㫊 㪧㫀㫄㪼㫃㫆㪻㫌㫊 㪧㫀㫄㪼㫃㫆㪻㫌㫊 㪧㫀㫄㪼㫃㫆㪻㫌㫊 㪧㫀㫄㪼㫃㫆㪻㫌㫊 㪧㫀㫄㪼㫃㫆㪻㫌㫊 㪧㫀㫄㪼㫃㫆㪻㫌㫊 㪧㫀㫄㪼㫃㫆㪻㫌㫊 㪧㫀㫄㪼㫃㫆㪻㫌㫊 㪧㫀㫄㪼㫃㫆㪻㫌㫊 㪧㫀㫄㪼㫃㫆㪻㫌㫊 㪧㫀㫄㪼㫃㫆㪻㫌㫊 㪧㫀㫄㪼㫃㫆㪻㫌㫊 㪧㫀㫄㪼㫃㫆㪻㫌㫊 㪧㫀㫄㪼㫃㫆㪻㫌㫊 㪧㫀㫄㪼㫃㫆㪻㫌㫊 㪧㫀㫄㪼㫃㫆㪻㫌㫊 㪧㫀㫄㪼㫃㫆㪻㫌㫊 㪧㫀㫄㪼㫃㫆㪻㫌㫊 㪧㫀㫄㪼㫃㫆㪻㫌㫊 㪧㫀㫄㪼㫃㫆㪻㫌㫊 㪧㫀㫄㪼㫃㫆㪻㫌㫊 㪧㫀㫄㪼㫃㫆㪻㫌㫊 㪧㫀㫄㪼㫃㫆㪻㫌㫊 㪧㫀㫅㫀㫉㪸㫄㫇㫌㫊 㪧㫀㫅㫀㫉㪸㫄㫇㫌㫊 㪧㫊㪼㫌㪻㫆㫇㫃㪸㫋㫐㫊㫋㫆㫄㪸 㪧㫊㪼㫌㪻㫆㫇㫃㪸㫋㫐㫊㫋㫆㫄㪸 㪧㫊㪼㫌㪻㫆㫇㫃㪸㫋㫐㫊㫋㫆㫄㪸 㪧㫊㪼㫌㪻㫆㫇㫃㪸㫋㫐㫊㫋㫆㫄㪸
㫇㫀㫉㫀㫅㪸㫄㫇㫌 㫇㫀㫉㫀㫅㪸㫄㫇㫌 㪺㫆㫉㫉㫌㫊㪺㪸㫅㫊 㪺㫆㫉㫉㫌㫊㪺㪸㫅㫊 㪺㫆㫉㫉㫌㫊㪺㪸㫅㫊 㪺㫆㫉㫉㫌㫊㪺㪸㫅㫊
㫊㫇㪅 㫊㫇㪅 㫊㫇㪅
㫃㪸㪹㫉㫆㫊㫌㫊 㫇㪸㫋㫀 㫇㫃㪸㫋㪸㫅㫌㫄 㫇㫃㪸㫋㪸㫅㫌㫄 㫅㫀㪾㫉㫀㪹㪸㫉㪹㫀㫊 㫍㪸㫃㪼㫅㪺㫀㪼㫅㫅㫀㫊 㪸㪹㫊㪺㫆㫅㪻㫀㫋㫌㫊 㪸㫃㪹㫀㪺㪸㫅㫊 㪸㫉㪾㪼㫅㫋㪼㫌㫊 㪹㫃㫆㪺㪿㫀㫀 㪺㫃㪸㫉㫀㪸㫊 㪽㫌㫉 㪽㫌㫉 㪿㪼㫉㪸㫃㪻㫆㫀 㪿㪼㫉㪸㫃㪻㫆㫀 㫄㪸㪺㫌㫃㪸㫋㫌㫊 㫄㪸㪺㫌㫃㪸㫋㫌㫊 㫄㪸㪺㫌㫃㪸㫋㫌㫊 㫄㪸㪺㫌㫃㪸㫋㫌㫊 㫄㪸㪺㫌㫃㪸㫋㫌㫊 㫄㪸㪺㫌㫃㪸㫋㫌㫊 㫄㫐㫊㫋㪼㫉㫀㫆㫊㫌㫊 㫆㫉㫅㪸㫋㫌㫊 㫆㫉㫅㪸㫋㫌㫊 㫆㫉㫋㫄㪸㫅㫅㫀 㫆㫉㫋㫄㪸㫅㫅㫀 㫇㪸㫉㪸㫅㪸㪼㫅㫊㫀㫊
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪝㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷
㪺㫆㫉㫌㫊㪺㪸㫅㫊 㪺㫆㫉㫌㫊㪺㪸㫅㫊 㪺㫆㫉㫌㫊㪺㪸㫅㫊 㪺㫆㫉㫌㫊㪺㪸㫅㫊
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪫㪸㪹㫃㪼㩷㪍㪅㪈㪊㩷㩷㪦㫉㪻㪼㫉㩷㪪㪠㪣㪬㪩㪠㪝㪦㪩㪤㪜㪪㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀
㪌㪍
㪝㪃㩷㪤
㪝㪃㩷㪤
㪈㪏㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪈㪉㪘 㪉㪋㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪏㪪㪫㩷㪂㩷㪏㪘 㪉㪇㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪏㪪㪫㩷㪂㩷㪈㪉㪘 㪉㪍㪤㩷㪂㩷㪈㪇㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪈㪋㪘
㪌㪍 㪌㪍 㪌㪍
㪉㪍㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪈㪇㪘
㪉㪉㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪈㪉㪘
㪊㪉㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪍㪘
㪊㪇㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪏㪪㪫㩷㪂㩷㪋㪘
㪋㪈㩷㪤㪆㪪㪤㩷㪂㩷㪈㪌㩷㪪㪫㪆㪘
㪉㪉㪤㩷㪂㩷㪉㪉㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪏㪘
㪌㪍
㪌㪇 㪌㪇
㪝
㪌㪍 㪌㪍
㪝㪃㩷㪤 㪝㪃㩷㪤 㪝㪃㩷㪤
㪌㪍
㪌㪍
㪉㪇㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪈㪋㪪㪫㩷㪂㩷㪈㪇㪘
㪌㪍 㪝㪃㩷㪤
㪝㪃㩷㪤
㪉㪋㪤㩷㪂㩷㪈㪏㪪㪤㩷㪂㩷㪏㪪㪫㩷㪂㩷㪍㪘
㪉㪇㪤㩷㪂㩷㪈㪏㪪㪤㩷㪂㩷㪏㪪㪫㩷㪂㩷㪈㪇㪘
㪉㪍㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪏㪘
㪉㪋㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪍㪘
㪊㪉㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪈㪉㪪㪫
㪉㪇㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪍㪘
㪋㪈㩷㪤㪆㪪㪤㩷㪂㩷㪈㪌㩷㪪㪫㪆㪘
㪋㪇㩷㪤㪆㪪㪤㩷㪂㩷㪈㪍㩷㪪㪫㪆㪘
㪉㪉㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪏㪘
㪈㪏㪤㩷㪂㩷㪉㪋㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪏㪘
㪉㪉㪤㩷㪂㩷㪉㪉㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪍㪘
㪊㪉㪤㩷㪂㩷㪏㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪏㪘
㪌㪍
㪌㪍
㪌㪍
㪝㪃㩷㪤
㪝㪃㩷㪤
㪌㪍 㪌㪍
㪝㪃㩷㪤
㪌㪍
㪝㪃㩷㪤 㪝㪃㩷㪤
㪌㪍
㪌㪍
㪝㪃㩷㪤 㪌㪍
㪌㪍
㪝㪃㩷㪤
㪤
㪌㪍
㪝㪃㩷㪤
㪝㪃㩷㪤
㪌㪋
㪌㪍
㪊㪇㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪈㪉㪘
㪊㪍㩷㪤㪆㪪㪤㩷㪂㩷㪉㪇㩷㪪㪫㪆㪘
㪌㪍
㪉㪋㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪈㪉㪪㪫㩷㪂㩷㪋㪘
㪌㪍
㪉㪋㪤㩷㪂㩷㪈㪏㪪㪤㩷㪂㩷㪏㪪㪫㩷㪂㩷㪍㪘
㪉㪇㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪈㪉㪘
㪌㪍
㪌㪍
㪌㪍
㪌㪍
㪌㪍
㪐㪉
㪐㪉
㪐㪍
㪐㪇
㪏㪏
㪏㪋
㪈㪇㪇
㪈㪇㪇
㪐㪎
㪈㪇㪇
㪏㪏
㪐㪏
㪐㪋
㪈㪇㪉
㪈㪇㪇
㪈㪇㪇
㪐㪍
㪐㪎
㪐㪍
㪐㪋
㪐㪏
㪈㪇㪇
㪐㪋
㪈㪇㪇
㪐㪉
㪐㪍
㪐㪏
㪐㪍
㪐㪇
㪐㪏
㪈㪇㪇
㪈㪇㪋
㪈㪇㪇
㪐㪇
㪏㪏
㪈㪇㪍
㪈㪇㪏
㪈㪇㪋
㪈㪇㪉
㪈㪇㪍
㪈㪇㪉
㪈㪇㪋
㪈㪇㪍
㪈㪈㪉
㪈㪇㪍
㪈㪇㪋
㪈㪇㪋
㪈㪇㪍
㪈㪇㪇
㪈㪇㪇
㪈㪇㪏
㪈㪇㪍
㪈㪇㪇
㪈㪇㪏
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㩿㪉㪅㪋㩷㪙㪝㪘㪀
㩿㪉㪅㪎㪄㪉㪅㪏㩷㪝㪛㪀
㪘㪚㪥㪔㪌㪍
㪇㪄㪋㩷 㪙
㪘㪚㪥㪔㪌㪍
㪇㪄㪋㩷 㪙
㪘㪚㪥㪔㪌㪍
㪘㪚㪥㪔㪌㪍
㪘㪚㪥㪔㪌㪍
㪘㪚㪥㪔㪌㪍
㪘㪚㪥㪔㪌㪍
㪘㪚㪥㪔㪌㪍
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪃㩷㪧㪸㫉㪸㫅㪸㩷㪩㪅㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪪㪃㩷㪧㪸㫉㪸㪾㫌㪸㫐㩷㪩㪅㪀
㪙㫉㪸㫑㫀㫃
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪸㫉㪸㫅㪸㩷㪹㪸㫊㫀㫅㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪩㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪩㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪞㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪩㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪞㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪩㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪩㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪩㪀
㪘㫉㪾㪼㫅㫋㫀㫅㪸
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪩㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪸㫉㪸㪾㫌㪸㫀㩷㪩㪅㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪧㫆㫉㫋㫆㩷㪘㫃㪼㪾㫉㪼㪃㩷㪩㪪㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪞㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪩㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪞㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪞㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪸㫉㪸㪾㫌㪸㫀㩷㪩㪅㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪩㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪩㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪞㪀
㪪㪅㩷㪘㫄㪼㫉㫀㪺㪸
㪘㫉㪾㪼㫅㫋㫀㫅㪸
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪫㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪸㫉㪸㪾㫌㪸㫀㩷㪩㪅㪀
㪘㫉㪾㪼㫅㫋㫀㫅㪸
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪩㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪩㪪㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪧㫆㫉㫋㫆㩷㪘㫃㪼㪾㫉㪼㪃㩷㪩㪪㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪩㪀
㪘㫉㪾㪼㫅㫋㫀㫅㪸
㪉㪍㪤㩷㪂㩷㪈㪇㪪㪤㩷㪂㩷㪈㪏㪪㪫
㪐㪏
㪌㪋
㪏㪍
㪈㪋㪤㩷㪂㩷㪈㪏㪪㪤㩷㪂㩷㪈㪉㪪㪫㩷㪂㩷㪈㪇㪘
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪌㪋 㪇 㪄㪈㩷 㪙
㪡 㪚㫆㫄㫄㪼㫅㫋㫊 㪘㫉㪾㪼㫅㫋㫀㫅㪸
㪉
㪟 㪠 㪘㪾㪄 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㪥㪦㪩㫊 㩿㫇㪾㪆㪺㪼㫃㫃㪀 㪘㫉㪾㪼㫅㫋㫀㫅㪸
㪏㪏
㪞 㪥㪝㪉
㪈㪍㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪏㪪㪫㩷㪂㩷㪈㪉㪘
㪏㪇
㪝 㪥㪝㪈
㪌㪍
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪌㪇
㪛 㪉㫅
㪝㪃㩷㪤
㪝㪃㩷㪤
㪝㪃㩷㪤
㪝㪃㩷㪤
㪚 㪪㪼㫏
㪪㪄㪈㪌㪇
㪪㪄㪈㪌㪇
㪧㪄㪋㪉
㪤㪄 㪋 㪍
㪪㪄㪈㪋㪍㪃㩷㪪㪄㪈㪋㪎
㪭 㪄㪏㪋
㪞 㪄㪏㪈
㪙 㪄㪋㪎
㪛㪄 㪈 㪈
㪫㪄㪏㪈
㪙 㪄㪋㪎
㪙 㪄㪋㪎
㪝㪄㪉㪇
㪙 㪄㪋㪍
㪪㪄㪈㪇㪉㪃㩷㪪㪄㪈㪐㪎㩷
㪫㪄㪎㪏
㪞 㪄㪏㪈
㪙㪄㪋㪍㪃㩷㪤㪄㪈㪍㪈㪃㩷㪭㪄㪋㪍
㪛㪄 㪈 㪈
㪛㪄 㪈 㪈
㪪㪄㪈㪇㪉㪃㩷㪪㪄㪈㪐㪎㪃㩷㪝㪄㪍㪋
㪫㪄㪏㪈
㪪㪄㪈㪏㪇㪃㩷㪪㪄㪈㪐㪎
㪞 㪄㪏㪈
㪣㪄㪉㪈
㪝㪄㪉㪇㪃 㩷㪟㪄㪈㪊
㪙 㪄㪋㪎
㪪㪄㪈㪇㪉㪃㩷㪪㪄㪈㪐㪎㩷
㪝㪄㪉㪇
㪙 㪄㪋㪍
㪪㪄㪈㪍㪍㩷
㪫㪄㪎㪏
㪚㪄㪐㪏
㪪㪄㪈㪏㪇
㪪㪄㪈㪏㪇
㪝㪄㪉㪇
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
112
㪺㫆㫀㫃㪸 㪾㪸㫉㫌㪸 㪾㪸㫉㫌㪸 㫍㪸㪺㪿㪸 㪸㫋㪿㪼㫉㫀㫅㫆㫀㪻㪼㫊 㪸㫋㪿㪼㫉㫀㫅㫆㫀㪻㪼㫊
㪘㫀㫃㫀㪸 㪚㫃㫌㫇㫀㫊㫆㫄㪸 㪚㫃㫌㫇㫀㫊㫆㫄㪸 㪜㫌㫋㫉㫆㫇㫀㫀㪺㪿㫋㪿㫐㫊 㪥㪼㫆㫋㫉㫆㫇㫀㫌㫊 㪥㪼㫆㫋㫉㫆㫇㫀㫌㫊
㪪㪺㪿㫀㫃㪹㪼㫀㪻㪸㪼
㪸㫇㫌㫉㪼㫅㫊㫀㫊 㪺㫆㫅㫀㫉㫆㫊㫋㫉㫀㫊 㪸㫃㪼㫏㪸㫅㪻㫉㫀 㪸㫃㪼㫏㪸㫅㪻㫉㫀 㪺㫆㫋㫋㫆㫀㪻㪼㫊 㪸㪽㪽㪅㩷㪺㫆㫋㫋㫆㫀㪻㪼㫊 㪹㫌㪽㫆㫅㫀㫌㫊 㪹㫌㪽㫆㫅㫀㫌㫊 㫄㪸㫅㪾㫌㫉㫌㫊
㫃㫀㫅㪼㪸㫋㫌㫊 㪺㪸㫅㫀㫌㫊 㪺㪸㫅㫀㫌㫊 㪺㪸㫅㫀㫌㫊
㪽㪸㫊㪺㫀㪸㫋㫌㫄 㪽㪸㫊㪺㫀㪸㫋㫌㫄 㫋㫀㪾㫉㫀㫅㫌㫄 㫃㫀㫄㪸 㫃㫀㫄㪸 㫃㫀㫄㪸 㫊㪺㫉㫀㫇㫋㫌㫄 㫊㪺㫉㫀㫇㫋㫌㫄 㫄㪼㫃㪸㫅㫆㪻㪼㫉㫄㪸㫋㫌㫄 㫄㪼㫃㪸㫅㫆㪻㪼㫉㫄㪸㫋㫌㫄 㫑㫌㫅㪾㪸㫉㫆 㫑㫌㫅㪾㪸㫉㫆
㪚㪼㫇㪿㪸㫃㫆㫊㫀㫃㫌㫉㫌㫊 㪚㫆㫅㫆㫉㪿㫐㫅㪺㪿㫆㫊 㪣㫆㫇㪿㫀㫆㫊㫀㫃㫌㫉㫌㫊 㪣㫆㫇㪿㫀㫆㫊㫀㫃㫌㫉㫌㫊 㪤㫀㪺㫉㫆㪾㫃㪸㫅㫀㫊 㪤㫀㪺㫉㫆㪾㫃㪸㫅㫀㫊 㪧㫊㪼㫌㪻㫆㫇㫀㫄㪼㫃㫆㪻㫌㫊 㪧㫊㪼㫌㪻㫆㫇㫀㫄㪼㫃㫆㪻㫌㫊 㪧㫊㪼㫌㪻㫆㫇㫀㫄㪼㫃㫆㪻㫌㫊
㪧㫊㪼㫌㪻㫆㫇㫀㫄㪼㫃㫆㪻㫀㪻㪸㪼
㪧㫃㫆㫋㫆㫊㫌㫊 㪧㫃㫆㫋㫆㫊㫌㫊 㪧㫃㫆㫋㫆㫊㫌㫊 㪧㫃㫆㫋㫆㫊㫌㫊
㪧㫃㫆㫋㫆㫊㫀㪻㪸㪼
㪧㫊㪼㫌㪻㫆㫇㫃㪸㫋㫐㫊㫋㫆㫄㪸 㪧㫊㪼㫌㪻㫆㫇㫃㪸㫋㫐㫊㫋㫆㫄㪸 㪧㫊㪼㫌㪻㫆㫇㫃㪸㫋㫐㫊㫋㫆㫄㪸 㪪㫆㫉㫌㪹㫀㫄 㪪㫆㫉㫌㪹㫀㫄 㪪㫆㫉㫌㪹㫀㫄 㪪㫋㪼㫀㫅㪻㪸㪺㪿㫅㪼㫉㫀㪻㫀㫆㫅 㪪㫋㪼㫀㫅㪻㪸㪺㪿㫅㪼㫉㫀㪻㫀㫆㫅 㪪㫋㪼㫀㫅㪻㪸㪺㪿㫅㪼㫉㫀㪻㫀㫆㫅 㪪㫋㪼㫀㫅㪻㪸㪺㪿㫅㪼㫉㫀㪻㫀㫆㫅 㪱㫌㫅㪾㪸㫉㫆 㪱㫌㫅㪾㪸㫉㫆
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪝㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷
㪌㪍 㪌㪍
㪝㪃㩷㪤 㪝㪃㩷㪤
㪧㫊㪼㫌㪻㪼㫌㫋㫉㫆㫇㫀㫌㫊 㪧㫊㪼㫌㪻㪼㫌㫋㫉㫆㫇㫀㫌㫊
㪚㫆㫅㫆㫉㪿㫐㫅㪺㪿㫌㫊
㪸㫅㪾㫌㫀㫃㫃㪸㫉㫀㫊
㪝㪃㩷㪤
㪧㪸㫌㫃㫀㪺㪼㪸㩷㫃㫌㪼㫋㫂㪼㫅㫀
㪊㪍
㪝㪃㩷㪤
㪝㪃㩷㪤
㪝㪃㩷㪤
㪍㪍㪘
㪍㪍
㪌㪏
㪌㪏
㪉㪏㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪈㪍㪘
㪈㪇㪤㩷㪂㩷㪊㪇㪪㪤㩷㪂㩷㪈㪏㪘
㪈㪇㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪈㪉㪪㪫㩷㪂㩷㪈㪍㪘
㪈㪏㪤㩷㪂㩷㪊㪋㪪㪤㩷㪂㩷㪋㪘
㪌㪏
㪈㪋㪤㩷㪂㩷㪊㪍㪪㪤㩷㪂㩷㪏㪘
㪍㪤㩷㪂㩷㪉㪍㪪㪤㩷㪂㩷㪈㪉㪪㪫㩷㪂㩷㪈㪇㪘
㪌㪍
㪌㪋
㪝㪃㩷㪤
㪈㪉㪤㩷㪂㩷㪊㪇㪪㪤㩷㪂㩷㪈㪉㪪㪫
㪌㪏
㪌㪋
㪝㪃㩷㪤
㪈㪇㪤㩷㪂㩷㪊㪉㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪉㪘 㪈㪏㪤㩷㪂㩷㪉㪉㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪏㪘
㪌㪋 㪌㪋
㪝㪃㩷㪤
㪈㪍㪤㩷㪂㩷㪈㪏㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪈㪇㪘 㪉㪉㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪈㪉㪪㪫
㪌㪋 㪌㪋
㪌㪋㩷㪤㪆㪪㪤㩷㪆㪪㪫㪆㪘㩷
㪌㪋 㪝㪃㩷㪤
㪉㪇㪤㩷㪂㩷㪈㪏㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪈㪉㪘
㪍㪇
㪍㪤㩷㪂㩷㪉㪏㪪㪤㩷㪂㩷㪈㪋㪪㪫㩷㪂㩷㪍㪘
㪉㪇㪤㩷㪂㩷㪏㪪㪤㩷㪂㩷㪏㩷㪪㪫㪆㪘
㪈㪋㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪏㪘
㪈㪇㪤㩷㪂㩷㪈㪇㪪㪤㩷㪂㩷㪈㪍㪘
㪈㪉㩷㪤㪆㪪㪤㩷㪂㩷㪊㪍㩷㪪㪫㪆㪘
㪝㪃㩷㪤
㪝㪃㩷㪤
㪌㪋
㪊㪍
㪝
㪤
㪊㪍
㪋㪏 㪝㪃㩷㪤
㪉㪍㪤㩷㪂㩷㪈㪇㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪈㪋㪘
㪊㪉㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪏㪪㪫㩷㪂㩷㪈㪇㪘
㪌㪍 㪌㪍
㪉㪈㪤㩷㪂㩷㪉㪊㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪈㪇㪘
㪌㪍
㪤
㪉㪇㪤㩷㪂㩷㪉㪋㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪈㪇㪘
㪉㪋㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪏㪘
㪌㪍
㪌㪍
㪌㪍
㪉㪇㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪈㪉㪘
㪈㪏㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪈㪋㪪㪫㩷㪂㩷㪈㪉㪘
㪈㪏㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪏㪪㪫㩷㪂㩷㪈㪋㪘
㪉㪇㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪈㪉㪪㪫㩷㪂㩷㪈㪉㪘
㪈㪏㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪈㪋㪘
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪝
㪝㪃㩷㪤
㪌㪍
㪝㪃㩷㪤
㪌㪍
㪌㪍 㪌㪍
㪝㪃㩷㪤
㪛 㪉㫅
㪝㪃㩷㪤
㪚 㪪㪼㫏
㫊㫇㪅 㫊㫇㪅
㫀㫅㫊㪺㫉㫀㫇㫋㪸 㫊㪺㫉㫀㫇㫋㪸
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪫㪸㪹㫃㪼㩷㪍㪅㪈㪊㩷㩷㪦㫉㪻㪼㫉㩷㪪㪠㪣㪬㪩㪠㪝㪦㪩㪤㪜㪪㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀
㪐㪏
㪐㪏
㪏㪏
㪍㪍
㪈㪇㪏
㪈㪇㪏
㪏㪍
㪐㪍
㪐㪋
㪐㪍
㪐㪍
㪏㪏
㪐㪏
㪏㪏
㪍㪋
㪍㪉
㪌㪍
㪍㪇
㪐㪉
㪐㪋
㪈㪇㪇
㪈㪇㪇
㪈㪇㪇
㪐㪇
㪏㪍
㪐㪇
㪏㪏
㪏㪏
㪝 㪥㪝㪈
㪈㪇㪇
㪐㪏
㪈㪇㪇
㪍㪍
㪈㪇㪏
㪈㪇㪏
㪐㪏
㪈㪇㪏
㪈㪇㪇
㪈㪇㪍
㪈㪇㪏
㪐㪏
㪈㪇㪏
㪈㪇㪉
㪍㪋
㪐㪏
㪈㪇㪉
㪈㪇㪉
㪈㪇㪉
㪈㪇㪋
㪈㪇㪇
㪈㪇㪇
㪐㪏
㪈㪇㪇
㪐㪏
㪞 㪥㪝㪉
㪉
㪍
㪉
㪋
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉㪅㪉㩷㪝㪛
㪉㪅㪌㩷㪝㪛
㪟 㪠 㪘㪾㪄 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㪥㪦㪩㫊 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪘㪚㪥㪔㪌㪏
㪘㪚㪥㪔㪌㪏
㪘㪚㪥㪔㪌㪍
㪘㪚㪥㪔㪌㪏
㪘㪚㪥㪔㪌㪍
㪘㪚㪥㪔㪌㪍
㪘㪚㪥㪔㪌㪍
㪘㪚㪥㪔㪌㪏
㪘㪚㪥㪔㪍㪇
㪘㪚㪥㪔㪌㪍
㪘㪚㪥㪔㪊㪍
㪘㪚㪥㪔㪊㪍
㪘㪚㪥㪔㪊㪍
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪌㪍
㪯㪰㪃㩷㪘㪚㪥㪔㪌㪍
㪯㪯㪃㩷㪘㪚㪥㪔㪌㪍
㪘㪚㪥㪔㪌㪍
㪘㪚㪥㪔㪌㪍
㪘㪚㪥㪔㪌㪍
㪘㪚㪥㪔㪌㪍
㪘㪚㪥㪔㪌㪍
㪘㪚㪥㪔㪌㪍
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪠㫅㪻㫀㪸㩷㩿㪦㫉㫀㫊㫊㪸㪀
㪠㫅㪻㫀㪸㩷㩿㪘㫊㫊㪸㫄㪀
㪠㫅㪻㫀㪸㩷㩿㪮㪙㪀
㪠㫅㪻㫀㪸
㪠㫅㪻㫀㪸㩷㩿㪘㫊㫊㪸㫄㪀
㪠㫅㪻㫀㪸㩷㩿㪘㫊㫊㪸㫄㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪘㪤㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪩㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪚㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪞㪀
㪙㫉㪸㫑㫀㫃
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪞㪀
㪭㪼㫅㪼㫑㫌㪼㫃㪸㩷㩿㪦㫉㫀㫅㫆㪺㫆㩷㪩㪅㪀
㪠㫅㪻㫀㪸㩷㩿㪦㫉㫀㫊㫊㪸㪀
㪠㫅㪻㫀㪸㩷㩿㪮㪙㪀
㪠㫅㪻㫀㪸㩷㩿㪦㫉㫀㫊㫊㪸㪀
㪡㪸㫇㪸㫅㩷㩿㪦㫂㫀㫅㪸㫎㪸㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪸㫉㪸㫅㪸㩷㪹㪸㫊㫀㫅㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪩㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪩㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪩㪀
㪘㫉㪾㪼㫅㫋㫀㫅㪸
㪘㫉㪾㪼㫅㫋㫀㫅㪸
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪸㫉㪸㫅㪸㩷㪹㪸㫊㫀㫅㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪘㪤㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪘㪤㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪪㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪘㪤㪀
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪩 㪄㪌㪏
㪢㪄㪋㪍㪃㩷㪚㪄㪈㪇㪏
㪤㪄 㪉 㪏
㪣㪄㪈
㪚㪄㪈㪇㪏
㪢㪄㪋㪍㪃㩷㪚㪄㪈㪇㪏
㪤㪄㪈㪉㪏㪃㩷㪝㪄㪍㪋
㪤㪄 㪈 㪋 㪉
㪤㪄 㪈 㪉 㪏
㪤㪄 㪈 㪋 㪉
㪭㪄㪋㪍㪃㩷㪝㪄㪍㪋
㪘 㪄㪈㪎
㪤㪄 㪈 㪉 㪏
㪘 㪄㪈㪎
㪤㪄 㪈 㪋 㪉
㪫㪄㪋㪐
㪢㪄㪈㪊㪐
㪩 㪄㪌㪏
㪘 㪄㪌㪏
㪤㪄㪋㪍
㪪㪄㪈㪋㪏
㪪㪄㪈㪍㪌㪃㩷㪪㪄㪉㪇㪇
㪪㪄㪈㪍㪌㪃㩷㪪㪄㪈㪏㪇㪃㩷㪪㪄㪉㪇㪇
㪪㪄㪈㪐㪐㪃㩷㪪㪄㪉㪇㪇
㪝㪄㪉㪇
㪝㪄㪉㪇
㪤㪄㪋㪍
㪝㪄㪈㪎
㪝㪄㪈㪎
㪧㪄㪋㪉
㪝㪄㪈㪎
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
113
㪹㫀㪺㫀㫉㫉㪿㫀㫊 㪹㫀㫄㪸㪺㫌㫃㪸㫋㫌㫊 㪹㫀㫄㪸㪺㫌㫃㪸㫋㫌㫊 㪹㫀㫄㪸㪺㫌㫃㪸㫋㫌㫊 㪹㫀㫄㪸㪺㫌㫃㪸㫋㫌㫊 㫇㪸㪹㪻㪸 㫇㪸㪹㫆 㪸㫉㫀㫊㫋㫆㫋㪼㫃㫀㫊 㪸㫉㫀㫊㫋㫆㫋㪼㫃㫀㫊 㪸㫊㫆㫋㫌㫊 㪸㫊㫆㫋㫌㫊 㪸㫊㫆㫋㫌㫊 㪸㫊㫆㫋㫌㫊 㪸㫊㫆㫋㫌㫊 㪸㫊㫆㫋㫌㫊 㪸㫊㫆㫋㫌㫊 㪹㫀㫎㪸㪼㫅㫊㫀㫊 㪾㫃㪸㫅㫀㫊 㪾㫃㪸㫅㫀㫊 㪾㫃㪸㫅㫀㫊 㪾㫃㪸㫅㫀㫊 㫃㫀㫋㪿㫆㫇㪿㫀㫃㫌㫊 㫄㪼㫉㫀㪻㫀㫆㫅㪸㫃㫀㫊 㫄㫀㪺㫉㫆㪻㫆㫉㫊㪸㫃㫀㫊 㫄㫀㪺㫉㫆㪻㫆㫉㫊㪸㫃㫀㫊 㪖㩷 㫊㫆㫃㪻㪸㫋㫆㫍㫀 㪸㫋㫋㫌 㪸㫋㫋㫌
㪢㫉㫐㫇㫋㫆㫇㫋㪼㫉㫌㫊 㪦㫄㫇㫆㫂 㪦㫄㫇㫆㫂 㪦㫄㫇㫆㫂 㪦㫄㫇㫆㫂 㪦㫄㫇㫆㫂 㪦㫄㫇㫆㫂 㪪㫀㫃㫌㫉㫌㫊 㪪㫀㫃㫌㫉㫌㫊 㪪㫀㫃㫌㫉㫌㫊 㪪㫀㫃㫌㫉㫌㫊 㪪㫀㫃㫌㫉㫌㫊 㪪㫀㫃㫌㫉㫌㫊 㪪㫀㫃㫌㫉㫌㫊 㪪㫀㫃㫌㫉㫌㫊 㪪㫀㫃㫌㫉㫌㫊 㪪㫀㫃㫌㫉㫌㫊 㪪㫀㫃㫌㫉㫌㫊 㪪㫀㫃㫌㫉㫌㫊 㪪㫀㫃㫌㫉㫌㫊 㪪㫀㫃㫌㫉㫌㫊 㪪㫀㫃㫌㫉㫌㫊 㪪㫀㫃㫌㫉㫌㫊 㪪㫀㫃㫌㫉㫌㫊 㪪㫀㫃㫌㫉㫌㫊 㪪㫀㫃㫌㫉㫌㫊 㪮㪸㫃㫃㪸㪾㫆 㪮㪸㫃㫃㪸㪾㫆
㪪㫀㫃㫌㫉㫀㪻㪸㪼
㪻㫀㫊㫋㫆㫃㫆㫋㪿㫉㫀㫏
㪪㪺㫆㫃㫆㫇㫃㪸㫏
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪝㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷 㪪㪺㫆㫃㫆㫇㫃㪸㪺㫀㪻㪸㪼
㪧㪸㫉㪸㫊㫀㫃㫌㫉㫌㫊 㫊㫆㫃㪻㪸㫋㫆㫍㫀㩷㫄㪼㫉㫀㪻㫀㫆㫅㪸㫃㫀㫊 㪧㪸㫉㪸㫊㫀㫃㫌㫉㫌㫊 㪧㪸㫉㪸㫊㫀㫃㫌㫉㫌㫊㩷㫄㫀㪺㫉㫆㪻㫆㫉㫊㪸㫃㫀㫊
㪧㪸㫉㪸㫊㫀㫃㫌㫉㫌㫊 㪧㪸㫉㪸㫊㫀㫃㫌㫉㫌㫊 㪧㪸㫉㪸㫊㫀㫃㫌㫉㫌㫊
㪧㪸㫉㪸㫊㫀㫃㫌㫉㫌㫊 㪧㪸㫉㪸㫊㫀㫃㫌㫉㫌㫊 㪧㪸㫉㪸㫊㫀㫃㫌㫉㫌㫊 㪧㪸㫉㪸㫊㫀㫃㫌㫉㫌㫊
㪧㪸㫉㪸㫊㫀㫃㫌㫉㫌㫊
㪚㪸㫃㫃㫀㪺㪿㫉㫆㫌㫊 㪚㪸㫃㫃㫀㪺㪿㫉㫆㫌㫊
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪫㪸㪹㫃㪼㩷㪍㪅㪈㪊㩷㩷㪦㫉㪻㪼㫉㩷㪪㪠㪣㪬㪩㪠㪝㪦㪩㪤㪜㪪㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀
㪈㪏㪤㩷㪂㩷㪊㪉㩷㪪㪤㪆㪪㪫㩷㪂㩷㪈㪇㪘
㪍㪇
㪏㪍 㪏㪍
㪈㪇㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪏㪪㪫㩷㪂㩷㪌㪍㪘
㪈㪉㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪍㪍㪘
㪉㪋㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪈㪋㪪㪫㩷㪂㩷㪋㪘
㪌㪏 㪝㪃㩷㪤
㪈㪉㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪉㪪㪫
㪉㪏 㪝㪃㩷㪤
㪉㪉㪤㩷㪂㩷㪉㪋㪪㪤㩷㪂㩷㪈㪋㩷㪪㪫㪆㪘
㪍㪇
㪝㪃㩷㪤
㪉㪇㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪈㪋㪪㪫㩷㪂㩷㪋㪘
㪌㪏
㪝㪃㩷㪤
㪋㪋㩷㪤㪆㪪㪤㩷㪂㩷㪈㪋㩷㪪㪫㪆㪘
㪉㪉㪤㩷㪂㩷㪊㪏㩷㪪㪤㪆㪪㪫㩷
㪍㪇 㪌㪏
㪊㪇㩷㪤㪆㪪㪤㩷㪂㩷㪈㪏㩷㪪㪫㪆㪘 㪉㪏㪤㩷㪂㩷㪉㪍㪪㪤㩷㪂㩷㪍㪪㪫
㪋㪋㩷㪤㪆㪪㪤㩷㪂㩷㪈㪋㩷㪪㪫㪆㪘
㪌㪏 㪋㪏
㪉㪇㪤㩷㪂㩷㪉㪋㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪋㪘
㪍㪇
㪉㪇㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪈㪏㪘
㪌㪏
㪉㪇㪤㩷㪂㩷㪉㪋㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪋㪘
㪉㪋㪤㩷㪂㩷㪉㪋㪪㪤㩷㪂㩷㪈㪇㩷㪪㪫㪆㪘
㪌㪏
㪌㪏
㪋㪋㩷㪤㪆㪪㪤㩷㪂㩷㪈㪋㩷㪪㪫㪆㪘
㪌㪏 㪌㪏
㪋㪍㩷㪤㪆㪪㪤㩷㪂㩷㪈㪉㩷㪪㪫㪆㪘
㪌㪏
㪝㪃㩷㪤
㪊㪏㩷㪤㪆㪪㪤㩷㪂㩷㪏㪪㪫㩷㪂㩷㪈㪉㪘
㪉㪇㪤㩷㪂㩷㪉㪋㪪㪤㩷㪂㩷㪈㪋㩷㪪㪫㪆㪘
㪊㪇㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪏㪪㪫
㪍㪤㩷㪂㩷㪉㪋㪪㪤㩷㪂㩷㪈㪉㪘
㪌㪏
㪝㪃㩷㪤
㪤
㪌㪏
㪌㪋 㪝
㪊㪍㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪍㪘
㪌㪋 㪌㪏
㪉㪏㪤㩷㪂㩷㪈㪇㪪㪤㩷㪂㩷㪏㪪㪫㩷㪂㩷㪏㪘
㪋㪈
㪤
㪝㪃㩷㪤
㪌㪤㩷㪂㩷㪉㪋㪪㪤㩷㪂㩷㪈㪉㪘
㪋㪉
㪝
㪈㪎㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪈㪉㪘
㪋㪈
㪤
㪈㪏㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪈㪉㪘
㪈㪏㪤㩷㪂㩷㪈㪏㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪋㪘
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪋㪉
㪍㪇
㪌㪇
㪛 㪉㫅
㪝
㪝㪃㩷㪤
㪚 㪪㪼㫏
㪈㪇㪏
㪈㪇㪋
㪐㪏
㪌㪋
㪈㪇㪍
㪐㪏
㪈㪇㪉
㪈㪈㪋
㪎㪏
㪈㪇㪉
㪈㪇㪉
㪐㪉
㪈㪇㪉
㪈㪇㪍
㪈㪇㪉
㪈㪇㪋
㪐㪍
㪈㪇㪉
㪈㪇㪏
㪈㪇㪉
㪐㪉
㪎㪇
㪎㪉
㪎㪇
㪎㪉
㪏㪍
㪝 㪥㪝㪈
㪈㪈㪍
㪈㪇㪍
㪈㪈㪉
㪌㪍
㪈㪈㪉
㪈㪈㪇
㪈㪉㪇
㪈㪉㪇
㪈㪈㪉
㪐㪏
㪈㪈㪉
㪈㪇㪋
㪈㪈㪍
㪈㪇㪇
㪐㪍
㪞 㪥㪝㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉㪅㪐㩷㪝㪛
㩿㪈㪅㪌㪁㩷㪝㪛㪀
㩿㪉㪅㪊㪁㩷㪝㪚㪤㪀
㪈㪅㪏㩷㪙㪝㪘
㪟 㪠 㪘㪾㪄 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㪥㪦㪩㫊 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪘㪚㪥㪔㪏㪍
㪘㪚㪥㪔㪏㪍
㪘㪚㪥㪔㪌㪏
㪘㪚㪥㪔㪍㪇
㪘㪚㪥㪔㪌㪏
㪘㪚㪥㪔㪌㪏
㪘㪚㪥㪔㪍㪇
㪘㪚㪥㪔㪍㪇
㪘㪚㪥㪔㪌㪏
㪘㪚㪥㪔㪌㪏
㪘㪚㪥㪔㪌㪏
㪘㪚㪥㪔㪌㪏
㪘㪚㪥㪔㪌㪏
㪘㪚㪥㪔㪌㪏
㪘㪚㪥㪔㪌㪋
㪯㪰
㪯㪯㪃㩷㪘㪚㪥㪔㪋㪉
㪘㪚㪥㪔㪌㪋㪖
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪠㫅㪻㫀㪸㩷㩿㪡㪸㫄㫄㫌㪀
㪠㫅㪻㫀㪸㩷㩿㪟㪸㫉㫐㪸㫅㪸㪀
㪚㪿㫀㫅㪸㩷㩿㪡㫀㫃㫀㫅㪀
㪢㫆㫉㪼㪸
㪢㫆㫉㪼㪸㩷㩿㪡㪸㫅㪾㪿㫐㪼㫆㫅㪀
㪚㪿㫀㫅㪸㩷㩿㪮㫌㪿㪸㫅㪀
㪡㪸㫇㪸㫅㩷㩿㪣㪸㫂㪼㩷㪙㫀㫎㪸㪀
㩿㪩㫌㫊㫊㫀㪸㪀
㪚㫑㪼㪺㫂
㪚㫑㪼㪺㫂
㪰㫌㪾㫆㫊㫃㪸㫍㫀㪸
㪡㪸㫇㪸㫅㩷㩿㪣㪸㫂㪼㩷㪙㫀㫎㪸㪀
㪚㪿㫀㫅㪸㩷㩿㪘㫄㫌㫉㪀
㪚㪿㫀㫅㪸㩷㩿㪪㪿㪸㫊㫀㪀
㪚㪿㫀㫅㪸㩷㩿㪮㫌㪿㪸㫅㪀
㪢㫆㫉㪼㪸㩷㩿㪡㪸㫅㪾㪿㫐㪼㫆㫅㪀
㪡㪸㫇㪸㫅㩷㩿㪫㫆㪺㪿㫀㪾㫀㪀
㪡㪸㫇㪸㫅㩷㩿㪰㪸㫄㪸㪾㫌㪺㪿㫀㪀
㪡㪸㫇㪸㫅
㪤㪸㪺㪼㪻㫆㫅㫀㪸
㪞㫉㪼㪼㪺㪼
㪠㫅㪻㫀㪸㩷㩿㪘㫊㫊㪸㫄㪀
㪠㫅㪻㫀㪸
㪠㫅㪻㫀㪸㩷㩿㪮㪙㪀
㪠㫅㪻㫀㪸㩷㩿㪮㪙㪀
㪠㫅㪻㫀㪸㩷㩿㪟㪸㫉㫐㪸㫅㪸㪀
㪠㫅㪻㫀㪸㩷㩿㪟㪸㫉㫐㪸㫅㪸㪀
㩿㪪㪜㩷㪘㫊㫀㪸㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪫㪀
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪪㪄㪉㪇㪉
㪩 㪄㪍㪈
㪟㪄㪊㪋
㪣㪄㪈㪌
㪢㪄㪌㪉
㪟㪄㪈㪏㪃㩷㪰㪄㪈㪌㪃㩷㪚㪄㪏㪊
㪘 㪄㪌㪏
㪭 㪄㪎㪉
㪩 㪄㪈㪏
㪩 㪄㪈
㪘 㪄㪉㪏
㪘 㪄㪌㪏
㪰㪄㪈㪊
㪱㪄㪉㪈㪃㩷㪣㪄㪋㪈
㪟㪄㪈㪏㪃㩷㪰㪄㪈㪌㪃㩷㪚㪄㪏㪊
㪢㪄㪌㪉
㪘㪄㪌㪏㪃㩷㪦㪄㪋㪏
㪝㪄㪌㪈
㪤㪄 㪐 㪉
㪩 㪄㪈㪉㪈
㪠 㪄㪉㪉
㪢㪄㪋㪊
㪛㪄 㪉
㪢㪄㪈㪊㪍
㪢㪄㪈㪊㪍
㪩 㪄㪋㪐
㪩 㪄㪋㪐
㪟㪄㪈㪊
㪦㪄 㪎 㪉
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
114
㪙㫌㫃㫃㫆㪺㫂㫀㪸 㪜㫉㪼㫄㫆㫇㪿㫀㫃㫌㫊 㪟㪸㫋㪺㪿㪼㫉㫀㪸 㪫㫉㫀㪺㪿㫆㪾㪼㫅㪼㫊 㪫㫉㫀㪺㪿㫆㫄㫐㪺㫋㪼㫉㫌㫊 㪫㫉㫀㪺㪿㫆㫄㫐㪺㫋㪼㫉㫌㫊 㪫㫉㫀㪺㪿㫆㫄㫐㪺㫋㪼㫉㫌㫊 㪫㫉㫀㪺㪿㫆㫄㫐㪺㫋㪼㫉㫌㫊 㪫㫉㫀㪺㪿㫆㫄㫐㪺㫋㪼㫉㫌㫊
㪫㫉㫀㪺㪿㫆㫄㫐㪺㫋㪼㫉㫀㪻㪸㪼
㪞㪸㪾㪸㫋㪸 㪞㫆㪾㪸㫅㪾㫉㪸 㪞㫆㪾㪸㫅㪾㫉㪸
㩷㩷㪪㫀㫊㫆㫉㫀㫅㪸㪼
㪜㫌㪺㪿㫀㫃㫆㪾㫃㪸㫅㫀㫊 㪜㫌㪺㪿㫀㫃㫆㪾㫃㪸㫅㫀㫊 㪞㫃㫐㫇㫋㫆㫊㫋㪼㫉㫅㫆㫅 㪞㫃㫐㫇㫋㫆㫋㪿㫆㫉㪸㫏 㪞㫃㫐㫇㫋㫆㫋㪿㫆㫉㪸㫏 㪞㫃㫐㫇㫋㫆㫋㪿㫆㫉㪸㫏 㪧㫊㪼㫌㪻㪼㪺㪿㪼㫅㪼㫀㫊
㫄㪸㫃㪻㫆㫅㪸㪻㫆㫀 㫄㫌㫋㫀㫊㫀㫀 㫄㪸㪺㫉㪸㪼㫀 㫃㫆㫅㪾㫀㫇㫀㫅㫅㫀㫊 㪸㫃㫋㪼㫉㫅㪸㫋㫌㫊 㪸㫉㪼㫆㫃㪸㫋㫌㫊 㪸㫉㪼㫆㫃㪸㫋㫌㫊 㪸㫉㪼㫆㫃㪸㫋㫌㫊 㪸㫉㪼㫆㫃㪸㫋㫌㫊
㪺㪼㫅㫀㪸 㫍㫀㫉㫀㪻㪼㫊㪺㪼㫅㫊 㫍㫀㫉㫀㪻㪼㫊㪺㪼㫅㫊
㪻㪸㫍㫀㪻㫀 㫂㫀㫊㪿㫀㫅㫆㫌㫐㪼㫀 㫉㪼㫋㫀㪺㫌㫃㪸㫋㫌㫄 㪽㫆㫂㫀㪼㫅㫊㫀㫊 㫋㪼㫃㪺㪿㫀㫋㫋㪸 㫋㫉㫀㫃㫀㫅㪼㪸㫋㫌㫊 㫊㫌㫃㪺㪸㫋㪸
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪝㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷 㪪㫀㫊㫆㫉㫀㪻㪸㪼 㩷㩷㪞㫃㫐㫇㫋㫆㫊㫋㪼㫉㫅㫀㫅㪸㪼
㪽㫃㫆㫉㪼㫅㫊㫀㫊
㪝㪃㩷㪤
㪝㪃㩷㪤
㪤
㪝㪃㩷㪤
㫊㫌㫃㪺㪸㫋㫌㫊
㪥㪸㫅㪾㫉㪸㩷㫇㫌㫅㪺㫋㪸㫋㪸 㪞㪸㪾㪸㫋㪸
㪝㪃㩷㪤
㪝㪃㩷㪤
㪝㪃㩷㪤
㪚 㪪㪼㫏
㪚㫆㫉㪸㪾㫃㪸㫅㫀㫊 㪜㫏㫆㫊㫋㫆㫄㪸㩷㫊㫋㫆㫃㫀㪺㫑㫂㪸㪼 㪽㫌㫂㫀㪼㫅㫊㫀㫊
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪫㪸㪹㫃㪼㩷㪍㪅㪈㪊㩷㩷㪦㫉㪻㪼㫉㩷㪪㪠㪣㪬㪩㪠㪝㪦㪩㪤㪜㪪㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀
㪈㪏㪤㩷㪂㩷㪉㪋㪪㪤㩷㪂㩷㪈㪇㪘
㪋㪉㪤㩷㪂㩷㪈㪇㪪㪤㩷㪂㩷㪉㪪㪫 㪌㪍㩷㪤㪆㪪㪤 㪋㪋㪤㩷㪂㩷㪏㪪㪤㩷㪂㩷㪉㪪㪫 㪋㪊㪤㩷㪂㩷㪏㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪉㪘 㪋㪉㪤㩷㪂㩷㪏㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪋㪘
㪌㪋 㪌㪍 㪌㪋 㪌㪌 㪌㪍
㪊㪍㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪍㪪㪫
㪊㪇㩷㪤㪆㪪㪤㩷㪂㩷㪉㪉㩷㪪㪫㪆㪘
㪌㪉 㪌㪋
㪊㪇㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪋㪪㪫
㪋㪍㩷㪤㪆㪪㪤㩷㪂㩷㪈㪋㩷㪪㪫㪆㪘
㪈㪉㪤㩷㪂㩷㪉㪉㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪈㪇㪘
㪈㪋㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪏㪘
㪋㪤㩷㪂㩷㪏㪪㪤㩷㪂㩷㪏㪪㪫㩷㪂㩷㪉㪍㪘
㪌㪋
㪍㪇
㪋㪏
㪋㪉
㪋㪍
㪏㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪊㪇㩷㪪㪫㪆㪘
㪌㪉 㪌㪉
㪉㪇㪤㩷㪂㩷㪈㪏㪪㪤㩷㪂㩷㪈㪋㪪㪫 㪈㪏㪤㩷㪂㩷㪉㪍㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪈㪇㪘
㪌㪉
㪈㪋㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪊㪇㩷㩷㪪㪫㪆㪘
㪏㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪉㪉㩷㪪㪫㪆㪘
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪌㪍
㪋㪉
㪌㪇
㪊㪍
㪛 㪉㫅
㪈㪇㪍
㪈㪇㪍
㪈㪇㪍
㪈㪈㪉
㪈㪇㪍
㪈㪇㪉
㪏㪉
㪈㪇㪋
㪈㪇㪍
㪏㪉
㪎㪍
㪌㪏
㪎㪋
㪐㪋
㪈㪇㪇
㪐㪇
㪎㪇
㪌㪇
㪝 㪥㪝㪈
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪈㪉
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪏㪍
㪍㪍
㪈㪇㪉
㪈㪇㪋
㪞 㪥㪝㪉
㪉
㪉
㪉
㩿㪌㪅㪇㩷㪝㪛㪀
㪟 㪠 㪘㪾㪄 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㪥㪦㪩㫊 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪘㪚㪥㪔㪌㪍
㪘㪚㪥㪔㪌㪍
㪘㪚㪥㪔㪌㪍
㪘㪚㪥㪔㪌㪍
㪘㪚㪥㪔㪌㪍
㪘㪚㪥㪔㪌㪍
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪉
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪌㪉
㪘㪚㪥㪔㪌㪉
㪘㪚㪥㪔㪌㪍
㪘㪚㪥㪔㪌㪉
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪊㪍
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪚㪿㫀㫃㪼㩷㩿㪦㫊㫆㫄㫆㪀
㪚㪿㫀㫃㪼㩷㩿㪦㫊㫆㫄㫆㪀
㪚㪿㫀㫃㪼㩷㩿㪦㫊㫆㫄㫆㪀
㩿㪚㪿㫀㫃㪼㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪞㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㩿㪚㪿㫀㫃㪼㪀
㪚㫆㫃㫆㫄㪹㫀㪸
㩿㪚㪿㫀㫃㪼㪀
㪠㫅㪻㫀㪸㩷㩿㪡㪸㫄㫄㫌㪀
㪠㫅㪻㫀㪸㩷㩿㪘㫊㫊㪸㫄㪀
㪠㫅㪻㫀㪸㩷㩿㪬㪅㪧㪅㪀
㪠㫅㪻㫀㪸㩷㩿㪬㪅㪧㪅㪀
㪠㫅㪻㫀㪸㩷㩿㪘㫊㫊㪸㫄㪀
㪠㫅㪻㫀㪸㩷㩿㪙㫀㪿㪸㫉㪀
㪚㪿㫀㫅㪸㩷㩿㪞㫌㪸㫅㪾㪻㫆㫅㪾㪀
㪠㫅㪻㫀㪸
㪚㪿㫀㫅㪸㩷㩿㪪㫀㪺㪿㫌㪸㫅㪀
㪚㪿㫀㫅㪸㩷㩿㪪㫀㪺㪿㫌㪸㫅㪀
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪚㪄㪍㪍
㪚㪄㪍㪍
㪚㪄㪍㪍
㪘 㪄㪈㪉㪎
㪪㪄㪈㪇㪐
㪣㪄㪌㪈
㪘㪄㪈㪉㪎㪃㩷㪙㪄㪏㪇
㪞 㪄㪌㪊
㪘㪄㪈㪉㪎㪃㩷㪙㪄㪏㪇
㪪㪄㪌㪉
㪢㪄㪋㪍㪃㩷㪚㪄㪈㪇㪏
㪤㪄 㪈 㪍 㪉
㪩 㪄㪎㪋
㪢㪄㪋㪍㪃㩷㪚㪄㪈㪇㪏
㪢㪄㪋㪈
㪰㪄㪈㪌
㪩㪄㪎㪋
㪣㪄㪊㪌
㪣㪄㪊㪌
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
115
㪫㫉㫀㪺㪿㫆㫄㫐㪺㫋㪼㫉㫌㫊 㪫㫉㫀㪺㪿㫆㫄㫐㪺㫋㪼㫉㫌㫊 㪫㫉㫀㪺㪿㫆㫄㫐㪺㫋㪼㫉㫌㫊 㪫㫉㫀㪺㪿㫆㫄㫐㪺㫋㪼㫉㫌㫊 㪫㫉㫀㪺㪿㫆㫄㫐㪺㫋㪼㫉㫌㫊 㪫㫉㫀㪺㪿㫆㫄㫐㪺㫋㪼㫉㫌㫊 㪫㫉㫀㪺㪿㫆㫄㫐㪺㫋㪼㫉㫌㫊 㪫㫉㫀㪺㪿㫆㫄㫐㪺㫋㪼㫉㫌㫊 㪫㫉㫀㪺㪿㫆㫄㫐㪺㫋㪼㫉㫌㫊 㪫㫉㫀㪺㪿㫆㫄㫐㪺㫋㪼㫉㫌㫊 㪫㫉㫀㪺㪿㫆㫄㫐㪺㫋㪼㫉㫌㫊 㪫㫉㫀㪺㪿㫆㫄㫐㪺㫋㪼㫉㫌㫊 㪫㫉㫀㪺㪿㫆㫄㫐㪺㫋㪼㫉㫌㫊 㪫㫉㫀㪺㪿㫆㫄㫐㪺㫋㪼㫉㫌㫊 㪫㫉㫀㪺㪿㫆㫄㫐㪺㫋㪼㫉㫌㫊 㪫㫉㫀㪺㪿㫆㫄㫐㪺㫋㪼㫉㫌㫊 㪫㫉㫀㪺㪿㫆㫄㫐㪺㫋㪼㫉㫌㫊 㪫㫉㫀㪺㪿㫆㫄㫐㪺㫋㪼㫉㫌㫊 㪫㫉㫀㪺㪿㫆㫄㫐㪺㫋㪼㫉㫌㫊 㪫㫉㫀㪺㪿㫆㫄㫐㪺㫋㪼㫉㫌㫊 㪫㫉㫀㪺㪿㫆㫄㫐㪺㫋㪼㫉㫌㫊 㪫㫉㫀㪺㪿㫆㫄㫐㪺㫋㪼㫉㫌㫊 㪫㫉㫀㪺㪿㫆㫄㫐㪺㫋㪼㫉㫌㫊 㪭㪸㫅㪻㪼㫃㫃㫀㪸 㪌㪋 㪊㪉
㪋㪉㪤㩷㪂㩷㪏㪪㪤㩷㪂㩷㪋㪪㪫
㪌㪋
㪋㪉㪤㩷㪂㩷㪏㪪㪤㩷㪂㩷㪋㪪㪫
㪋㪉㪤㩷㪂㩷㪈㪇㪪㪤㩷㪂㩷㪉㪪㪫
㪌㪋㩷㪤㪆㪪㪤
㪌㪋 㪌㪋
㪋㪉㪤㩷㪂㩷㪈㪇㪪㪤㩷㪂㩷㪉㪪㪫
㪌㪋
㪋㪍㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪋㪪㪫
㪌㪍 㪋㪇㪤㩷㪂㩷㪈㪋㪪㪤㩷
㪋㪍㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪊㪪㪫
㪌㪌 㪋㪋㪤㩷㪂㩷㪏㪪㪤㩷㪂㩷㪉㪪㪫
㪋㪍㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪉㪪㪫㩷
㪌㪋
㪌㪋
㪍㪉㩷㪤㪆㪪㪤㪆㪪㪫 㪋㪍㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪉㪪㪫
㪍㪉 㪌㪋
㪌㪋
㪋㪉㩷㪤㪆㪪㪤㩷㪂㩷㪈㪍㩷㪪㪫㪆㪘
㪌㪏
㪌㪋
㪝㪃㩷㪤
㪝㪃㩷㪤
㪋㪉㪤㩷㪂㩷㪈㪇㪪㪤㩷㪂㩷㪉㪪㪫
㪌㪋
㪌㪋
㪝㪃㩷㪤
㪋㪉㪤㩷㪂㩷㪈㪇㪪㪤㩷㪂㩷㪉㪪㪫
㪌㪋 㪍㪇㪤㩷㪂㩷㪈㪏㪪㪤㩷㪂㩷㪊㪪㪫
㪋㪇㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪉㪘
㪌㪍 㪏㪈
㪋㪇㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪉㪪㪫 㪋㪈㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪉㪪㪫
㪌㪋
㪋㪋㩷㪤㪆㪪㪤㩷㪂㩷㪏㩷㪪㪫㪆㪘
㪌㪌
㪋㪉㪤㩷㪂㩷㪈㪇㪪㪤㩷㪂㩷㪉㪪㪫
㪌㪉
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪌㪋
㪛 㪉㫅
㪤
㪝㪃㩷㪤
㪚 㪪㪼㫏
㪺㫀㫉㫉㪿㫆㫊㪸
㪺㫐㫋㫆㫋㫐㫇㪼㩷㪘 㪺㫐㫋㫆㫋㫐㫇㪼㩷㪙
㪸㪽㪽㪅㩷㫀㫋㪸㫋㫀㫐㪸㪼
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㫊㫇㪅 㫊㫇㪅 㫊㫇㪅㩷㪙
㪸㫌㫉㫆㪾㫌㫋㫋㪸㫋㫌㫊 㪺㪿㫀㫃㫋㫆㫅㫀 㪻㪸㫍㫀㫊㫀㩷 㪻㪸㫍㫀㫊㫀㩷 㪻㪸㫍㫀㫊㫀㩷 㪻㪸㫍㫀㫊㫀㩷 㪻㪸㫍㫀㫊㫀㩷 㪺㪽㪅㩷㫀㪿㪼㫉㫀㫅㪾㫀 㪸㪽㪽㪅㩷㫀㫋㪸㫋㫀㪸㫐㪸㪼 㫃㪸㫌㪺㪸㪼㫅㫊㫀㫊 㫃㪸㫌㪺㪸㪼㫅㫊㫀㫊 㫇㪸㫆㫃㪼㫅㪺㪼 㫇㪸㫆㫃㪼㫅㪺㪼 㫇㪸㫆㫃㪼㫅㪺㪼 㫇㪸㫆㫃㪼㫅㪺㪼 㫇㪸㫆㫃㪼㫅㪺㪼 㫇㪸㫆㫃㪼㫅㪺㪼 㫉㪼㫀㫅㪿㪸㫉㪻㫋㫀 㫊㫇㪼㪾㪸㫑㫑㫀㫅㫀㫀 㫊㫋㪸㫎㫀㪸㫉㫊㫂㫀
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪝㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷
㪫㪸㪹㫃㪼㩷㪍㪅㪈㪊㩷㩷㪦㫉㪻㪼㫉㩷㪪㪠㪣㪬㪩㪠㪝㪦㪩㪤㪜㪪㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀
㪈㪇㪋
㪈㪇㪍
㪈㪇㪋
㪈㪇㪏
㪈㪇㪍
㪈㪇㪏
㪈㪇㪍
㪈㪇㪏
㪈㪇㪎
㪈㪇㪍
㪈㪇㪍
㪈㪇㪇
㪈㪇㪍
㪈㪌㪐
㪈㪇㪍
㪈㪇㪏
㪈㪇㪏
㪈㪇㪍
㪐㪍
㪈㪇㪍
㪝 㪥㪝㪈
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪈㪉
㪈㪈㪇
㪈㪇㪏
㪈㪉㪋 㪈㪇㪏
㪈㪇㪏
㪈㪍㪉
㪈㪇㪏
㪈㪈㪇
㪈㪈㪇
㪈㪇㪏
㪈㪇㪏
㪞 㪥㪝㪉
㪉
㪉
㪉
㪊
㪉
㪉㪅㪍㩷㪝㪛
㪉㪅㪊㩷㪝㪛
㪟 㪠 㪘㪾㪄 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㪥㪦㪩㫊 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪇㪄㪉㩷 㪙
㪘㪚㪥㪔㪌㪏
㪘㪚㪥㪔㪌㪏
㪘㪚㪥㪔㪌㪍
㪘㪚㪥㪔㪌㪍
㪘㪚㪥㪔㪌㪍
㪈㪙
㪈㪙
㪘㪚㪥㪔㪌㪏
㪊㪯
㪘㪚㪥㪔㪌㪏
㪘㪚㪥㪔㪌㪏
㪘㪚㪥㪔㪌㪏
㪘㪚㪥㪔㪌㪏
㪘㪚㪥㪔㪌㪍
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
䋨㪪㪅㩷㪘㫄㪼㫉㫀㪺㪸㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪩㪀
㪙㫉㪸㫑㫀㫃
㪙㫉㪸㫑㫀㫃㩷㩿㪠㪾㫌㪸㬝㫌㩷㪩㪅㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪠㪾㫌㪸㬝㫌㩷㪩㪅㪀
㪘㫉㪾㪼㫅㫋㫀㫅㪸
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪞㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪙㫆㪽㪼㫋㪼㪃㩷㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪙㫆㫋㫌㪺㪸㫋㫌㪃㩷㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪠㫋㪸㫋㫀㫅㪾㪸㪃㩷㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪠㫋㪸㫋㫀㫅㪾㪸㪃㩷㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪠㫋㪸㫋㫀㫅㪾㪸㪃㩷㪪㪧㪀
㪚㪿㫀㫃㪼 㪙㫉㪸㫑㫀㫃㩷㩿㪠㫋㪸㫋㫀㫅㪾㪸㪃㩷㪪㪧㪀
㩿㪚㪿㫀㫃㪼㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪩㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪩㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪩㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪠㪾㫌㪸㬝㫌㩷㪩㪅㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪠㪾㫌㪸㬝㫌㩷㪩㪅㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪠㪾㫌㪸㬝㫌㩷㪩㪅㪀
㩿㪚㪿㫀㫃㪼㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪞㪀
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪣㪄㪌㪈
㪚㪄㪐㪏
㪣㪄㪌㪈㪃㩷㪝㪄㪍㪋
㪙 㪄㪏㪇
㪙 㪄㪏㪇
㪝㪄㪉㪇
㪪㪄㪈㪇㪐
㪫㪄㪍㪐
㪫㪄㪍㪐
㪫㪄㪋㪏
㪫㪄㪋㪏
㪫㪄㪋㪏
㪙 㪄㪏㪇 㪫㪄㪋㪏㪃㩷㪫㪄㪍㪐
㪘㪄㪈㪉㪎㪃㩷㪙㪄㪏㪇
㪪㪄㪈㪇㪐
㪝㪄㪍㪋
㪙 㪄㪍㪎
㪪㪄㪈㪇㪐
㪙 㪄㪎㪐
㪙 㪄㪎㪐
㪙㪄㪍㪎㪃㩷㪙㪄㪎㪐㪃㩷㪙㪄㪏㪇
㪘 㪄㪈㪉㪎
㪪㪄㪈㪇㪐
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
116
㪜㫃㪼㪺㫋㫉㫆㫇㪿㫆㫉㫌㫊 㪞㫐㫄㫅㫆㫋㫌㫊 㪞㫐㫄㫅㫆㫋㫌㫊 㪞㫐㫄㫅㫆㫋㫌㫊 㪞㫐㫄㫅㫆㫋㫌㫊 㪞㫐㫄㫅㫆㫋㫌㫊 㪞㫐㫄㫅㫆㫋㫌㫊 㪞㫐㫄㫅㫆㫋㫌㫊 㪞㫐㫄㫅㫆㫋㫌㫊 㪞㫐㫄㫅㫆㫋㫌㫊 㪞㫐㫄㫅㫆㫋㫌㫊 㪞㫐㫄㫅㫆㫋㫌㫊 㪞㫐㫄㫅㫆㫋㫌㫊 㪞㫐㫄㫅㫆㫋㫌㫊 㪞㫐㫄㫅㫆㫋㫌㫊 㪞㫐㫄㫅㫆㫋㫌㫊 㪞㫐㫄㫅㫆㫋㫌㫊 㪞㫐㫄㫅㫆㫋㫌㫊 㪞㫐㫄㫅㫆㫋㫌㫊 㪞㫐㫄㫅㫆㫋㫌㫊 㪞㫐㫄㫅㫆㫋㫌㫊 㪞㫐㫄㫅㫆㫋㫌㫊 㪞㫐㫄㫅㫆㫋㫌㫊 㪞㫐㫄㫅㫆㫋㫌㫊 㪞㫐㫄㫅㫆㫋㫌㫊 㪞㫐㫄㫅㫆㫋㫌㫊 㪞㫐㫄㫅㫆㫋㫌㫊 㪞㫐㫄㫅㫆㫋㫌㫊
㫊㫇㪅 㫊㫇㪅 㫊㫇㪅 㫊㫇㪅 㫊㫇㪅 㫊㫇㪅
㪼㫃㪼㪺㫋㫉㫀㪺㫌㫊 㪺㪸㫉㪸㫇㫆 㪺㪸㫉㪸㫇㫆 㪺㪸㫉㪸㫇㫆 㪺㪸㫉㪸㫇㫆 㪺㪸㫉㪸㫇㫆 㪺㪸㫉㪸㫇㫆 㪺㪸㫉㪸㫇㫆 㪺㪸㫉㪸㫇㫆 㪺㪸㫉㪸㫇㫆 㪺㪸㫉㪸㫇㫆 㪺㪸㫉㪸㫇㫆 㫀㫅㪸㪼㫈㫌㫀㫃㪸㪹㫀㪸㫋㫌㫊 㫇㪸㫅㫋㪸㫅㪸㫃 㫇㪸㫅㫋㪿㪼㫉㫀㫅㫌㫊 㫇㪸㫅㫋㪿㪼㫉㫀㫅㫌㫊 㫇㪸㫉㪸㪾㫌㪼㫅㫊㫀㫊 㫊㫐㫃㫍㫀㫌㫊 㫊㫐㫃㫍㫀㫌㫊 㫊㫐㫃㫍㫀㫌㫊 㫊㫐㫃㫍㫀㫌㫊 㫊㫐㫃㫍㫀㫌㫊
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㪹㫆㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷 㪪㫌㪹㫆㫉㪻㪼㫉㩷㪞㫐㫄㫅㫆㫋㫆㫀㪻㪼㫀 㪞㫐㫄㫅㫆㫋㫀㪻㪸㪼
㪫㪸㪹㫃㪼㩷㪍㪅㪈㪋㩷㩷㪦㫉㪻㪼㫉㩷㪞㪰㪤㪥㪦㪫㪠㪝㪦㪩㪤㪜㪪 㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪉㪏㪤㩷㪂㩷㪈㪇㪪㪤㩷㪂㩷㪉㩷㪪㪫㪆㪘
㪋㪇 㪌㪇 㪌㪉 㪋㪇 㪊㪐 㪋㪇 㪊㪐
㪝 㪝 㪤 㪝 㪤
㪈㪌㩷㪤㪆㪪㪤㩷㪂㩷㪉㪋㩷㪪㪫㪆㪘
㪈㪋㩷㪤㪆㪪㪤㩷㪂㩷㪉㪍㩷㪪㪫㪆㪘
㪈㪋㩷㪤㪆㪪㪤㩷㪂㩷㪉㪌㩷㪪㪫㪆㪘
㪌㪇㩷㪤㪆㪪㪤㩷㪂㩷㪉㩷㪪㪫㪆㪘 㪈㪋㩷㪤㪆㪪㪤㩷㪂㩷㪉㪍㩷㪪㪫㪆㪘
㪉㪍㩷㪤㪆㪪㪤㩷㪂㩷㪉㪋㩷㪪㪫㪆㪘
㪊㪍㩷㪤㪆㪪㪤㩷㪂㩷㪋㩷㪪㪫㪆㪘
㪊㪇㩷㪤㪆㪪㪤㩷㪂㩷㪈㪇㩷㪪㪫㪆㪘
㪋㪇 㪋㪇
㪊㪇㩷㪤㪆㪪㪤㩷㪂㩷㪈㪇㩷㪪㪫㪆㪘
㪋㪇
㪊㪏㪤㩷㪂㩷㪏㪪㪤㩷㪂㩷㪍㩷㪪㪫㪆㪘
㪌㪉 㪌㪇㩷㪤㪆㪪㪤㩷㪂㩷㪋㩷㪪㪫㪆㪘
㪊㪏㪤㩷㪂㩷㪏㪪㪤㩷㪂㩷㪍㩷㪪㪫㪆㪘
㪌㪉
㪊㪇㩷㪤㪆㪪㪤㩷㪂㩷㪈㪇㩷㪪㪫㪆㪘
㪈㪋㩷㪤㪆㪪㪤㩷㪂㩷㪉㪍㩷㪪㪫㪆㪘
㪋㪇
㪌㪋
㪋㪇㪤㩷㪂㩷㪈㪇㪪㪤㩷㪂㩷㪉㩷㪪㪫㪆㪘
㪌㪉
㪋㪇
㪎㪏㩷㪤㪆㪪㪤㩷㪂㩷㪊㩷㪪㪫㪆㪘
㪏㪈
㪤
㪝㪃㩷㪤
㪝㪃㩷㪤
㪌㪋㩷㪤㪆㪪㪤
㪌㪋 㪊㪏
㪊㪉㩷㪤㪆㪪㪤㩷㪂㩷㪈㪇㩷㪪㪫㪆㪘 㪊㪍㩷㪤㪆㪪㪤㩷㪂㩷㪋㩷㪪㪫㪆㪘
㪋㪉 㪋㪇
㪊㪋㩷㪤㪆㪪㪤㩷㪂㩷㪈㪋㩷㪪㪫㪆㪘
㪋㪏 㪝㪃㩷㪤
㪌㪇㩷㪤㪆㪪㪤㩷㪂㩷㪉㩷㪪㪫㪆㪘
㪌㪉
㪌㪋㩷㪤㪆㪪㪤
㪌㪋
㪋㪋㪤㩷㪂㩷㪏㪪㪤㩷㪂㩷㪉㪪㪫 㪌㪉㩷㪤㪆㪪㪤㩷㪂㩷㪉㩷㪪㪫㪆㪘
㪌㪋 㪌㪋 㪝㪃㩷㪤
㪋㪉㩷㪤㪆㪪㪤㩷㪂㩷㪈㪇㪘 㪌㪋㩷㪤㪆㪪㪤
㪌㪉
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪌㪋
㪛 㪉㫅
㪝㪃㩷㪤
㪚 㪪㪼㫏
㪌㪋
㪌㪋
㪌㪊
㪈㪇㪉 㪌㪋
㪎㪍
㪎㪍
㪎㪏
㪎㪇
㪎㪇
㪎㪇
㪈㪇㪋
㪐㪏
㪐㪏
㪌㪋
㪈㪇㪉
㪈㪌㪐
㪈㪇㪏
㪎㪍
㪎㪋
㪏㪉
㪈㪇㪉
㪈㪇㪏
㪈㪇㪍 㪈㪇㪍
㪈㪇㪏
㪐㪋
㪝 㪥㪝㪈
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪈㪇㪏
㪞 㪥㪝㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪊
㪉
㪉
㪉
㪉
㪉
㪉
㪉㪅㪇㩷㪙㪝㪘
㪟 㪠 㪘㪾㪄 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㪥㪦㪩㫊 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪩㪀 㪘㫉㪾㪼㫅㫋㫀㫅㪸 㪘㫉㪾㪼㫅㫋㫀㫅㪸
㪯㪈㪯㪉㪰 㪯㪈㪯㪈㪯㪉㪯㪉 㪯㪈㪯㪉㪰
㪯㪈㪯㪈㪯㪉㪯㪉
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪞㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪞㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪧㪸㫉㪸㫅㪸㩷㪩㫀㫍㪼㫉
㪙㫉㪸㫑㫀㫃
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪞㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪜㪸㫊㫋㩷㪹㪸㫊㫀㫅
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪸㫅㫋㪸㫅㪸㫃㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㩿㪪㪅㩷㪘㫄㪼㫉㫀㪺㪸㪀
㪘㫉㪾㪼㫅㫋㫀㫅㪸
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪩㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪘㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪘㪤㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀 㪙㫉㪸㫑㫀㫃㩷㩿㪧㪩㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪘㪤㪃㩷㪞㪦㪀
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀 㪙㫉㪸㫑㫀㫃㩷㩿㪧㪩㪀
㪘㪚㪥㪔㪌㪉
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪋
㪘㪚㪥㪔㪌㪉
㪘㪚㪥㪔㪌㪉
㪊㪯
㪘㪚㪥㪔㪌㪋
㪘㪚㪥㪔㪌㪋
㪘㪚㪥㪔㪌㪋 㪯㪈㪯㪉㪰
㪘㪚㪥㪔㪌㪋
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪪㪄㪈㪌㪌
㪪㪄㪈㪌㪌
㪘㪄㪈㪉㪌
㪝㪄㪊㪋 㪘㪄㪈㪉㪌
㪭 㪄㪏㪌
㪭 㪄㪏㪌
㪝㪄㪎㪈㪃㩷㪝㪄㪎㪉
㪘 㪄㪈㪉㪌
㪘 㪄㪈㪉㪌
㪘 㪄㪈㪌
㪭 㪄㪏㪌
㪝㪄㪎㪈㪃㩷㪝㪄㪎㪉
㪘 㪄㪈㪉㪌
㪘 㪄㪈㪉㪌
㪝㪄㪎㪈㪃㩷㪝㪄㪎㪉
㪘 㪄㪈㪉㪌
㪟㪄㪈㪊
㪝㪄㪉㪇
㪘 㪄㪈㪉㪌
㪝㪄㪊㪋
㪝㪄㪊㪋
㪝㪄㪊㪋
㪝㪄㪊㪋
㪝㪄㪎㪈㪃㩷㪝㪄㪎㪉 㪘㪄㪈㪉㪌
㪘 㪄㪈㪉㪌
㪘 㪄㪈㪉㪌
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
117
㪩㪿㪸㫄㫇㪿㫀㪺㪿㫋㪿㫐㫀㪻㪸㪼
㪜㫀㪾㪼㫅㫄㪸㫅㫅㫀㪸 㪜㫀㪾㪼㫅㫄㪸㫅㫅㫀㪸 㪜㫀㪾㪼㫅㫄㪸㫅㫅㫀㪸 㪜㫀㪾㪼㫅㫄㪸㫅㫅㫀㪸 㪜㫀㪾㪼㫅㫄㪸㫅㫅㫀㪸 㪜㫀㪾㪼㫅㫄㪸㫅㫅㫀㪸 㪜㫀㪾㪼㫅㫄㪸㫅㫅㫀㪸 㪜㫀㪾㪼㫅㫄㪸㫅㫅㫀㪸 㪜㫀㪾㪼㫅㫄㪸㫅㫅㫀㪸 㪜㫀㪾㪼㫅㫄㪸㫅㫅㫀㪸 㪜㫀㪾㪼㫅㫄㪸㫅㫅㫀㪸 㪜㫀㪾㪼㫅㫄㪸㫅㫅㫀㪸 㪜㫀㪾㪼㫅㫄㪸㫅㫅㫀㪸 㪜㫀㪾㪼㫅㫄㪸㫅㫅㫀㪸 㪜㫀㪾㪼㫅㫄㪸㫅㫅㫀㪸
㪪㫋㪼㫉㫅㫆㫇㫐㪾㫀㪻㪸㪼
㪩㪿㪸㫄㫇㪿㫀㪺㪿㫋㪿㫐㫊
㫊㫇㪅 㫊㫇㪅 㫊㫇㪅 㫊㫇㪅 㫊㫇㪅 㫊㫇㪅
㪿㫌㫄㪹㫆㫃㪻㫋㫀㫀 㫍㫀㫉㪼㫊㪺㪼㫅㫊 㫍㫀㫉㪼㫊㪺㪼㫅㫊 㫍㫀㫉㪼㫊㪺㪼㫅㫊 㫍㫀㫉㪼㫊㪺㪼㫅㫊 㫍㫀㫉㪼㫊㪺㪼㫅㫊 㫍㫀㫉㪼㫊㪺㪼㫅㫊 㫍㫀㫉㪼㫊㪺㪼㫅㫊 㫍㫀㫉㪼㫊㪺㪼㫅㫊
㪺㫐㫋㫆㫋㫐㫇㪼㩷㪘
㪹㫉㪼㫍㫀㫉㫆㫊㫋㫉㫀㫊 㫇㫀㫅㫅㫀㪺㪸㫌㪻㪸㫋㫌㫊 㫇㫀㫅㫅㫀㪺㪸㫌㪻㪸㫋㫌㫊 㪸㫉㫋㪼㪻㫀 㫃㪼㫇㫋㫌㫉㫌㫊
㪙㫉㪸㪺㪿㫐㪿㫐㫇㫆㫇㫆㫄㫌㫊 㪙㫉㪸㪺㪿㫐㪿㫐㫇㫆㫇㫆㫄㫌㫊 㪙㫉㪸㪺㪿㫐㪿㫐㫇㫆㫇㫆㫄㫌㫊 㪟㫐㫇㫆㫇㫆㫄㫌㫊 㪟㫐㫇㫆㫇㫐㪾㫌㫊
㪺㪽㪅㩷㫄㪸㫉㫄㫆㫉㪸㫋㫌㫊
㪉㪍㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪈㪇㪘
㪌㪉
㪟㫐㫇㫆㫇㫆㫄㫀㪻㪸㪼
㪊㪇㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪈㪇㪘
㪈㪍㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪋㪘
㪊㪏 㪌㪇
㪋㪇
㪈㪊㩷㪤㪆㪪㪤㩷㪂㩷㪈㪏㩷㪪㪫㪆㪘
㪈㪋㩷㪤㪆㪪㪤㩷㪂㩷㪉㪋㩷㪪㪫㪆㪘
㪉㪐
㪤
㪊㪍
㪊㪇
㪝
㪈㪋㩷㪤㪆㪪㪤㩷㪂㩷㪉㪉㪪㪫㪆㪘
㪎㩷㪤㪆㪪㪤㩷㪂㩷㪉㪉㩷㪪㪫㪆㪘
㪍㪤㩷㪂㩷㪉㪋㩷㪪㪫㪆㪘
㪉㪇㩷㪤㪆㪪㪤㩷㪂㩷㪉㪍㩷㪪㪫㪆㪘
㪤
㪈㪌㩷㪤㪆㪪㪤㩷㪂㩷㪉㪊㩷㪪㪫㪆㪘
㪋㪍
㪊㪏
㪝
㪉㪉㩷㪤㪆㪪㪤㩷㪂㩷㪈㪍㩷㪪㪫㪆㪘
㪈㪉㩷㪤㪆㪪㪤㩷㪂㩷㪉㪇㩷㪪㪫㪆㪘
㪊㪏
㪤
㪉㪊㩷㪤㪆㪪㪤㩷㪂㩷㪈㪌㩷㪪㪫㪆㪘
㪊㪉
㪊㪏
㪝
㪈㪍㩷㪤㪆㪪㪤㩷㪂㩷㪉㪉㩷㪪㪫㪆㪘
㪝㪃㩷㪤
㪊㪏
㪤
㪈㪍㩷㪤㪆㪪㪤㩷㪂㩷㪉㪉㩷㪪㪫㪆㪘 㪈㪍㩷㪤㪆㪪㪤㩷㪂㩷㪉㪉㩷㪪㪫㪆㪘
㪊㪈
㪊㪏
㪝
㪏㩷㪤㪆㪪㪤㩷㪂㩷㪊㪉㩷㪪㪫㪆㪘
㪝
㪊㪏 㪊㪏
㪝㪃㩷㪤
㪋㪇
㪊㪏㪤㩷㪂㩷㪈㪇㪪㪤㩷㪂㩷㪋㪪㪫
㪊㪉㩷㪤㪆㪪㪤㩷㪂㩷㪍㩷㪪㪫㪆㪘
㪋㪈
㪤
㪌㪉
㪈㪤㩷㪂㩷㪋㪇㪘
㪊㪍 㪋㪉
㪋㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪏㪪㪫㩷㪂㩷㪉㪉㪘 㪋㪉㪘
㪋㪍㩷㪤㪆㪪㪤㩷㪂㩷㪍㩷㪪㪫㪆㪘
㪝
㪉㪉
㪈㪉㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪍㪘
㪈㪋㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪍㪘
㪉㪋 㪉㪋
㪈㪋㪤㩷㪂㩷㪉㪪㪤㩷㪂㪉㪪㪫㩷㪂㩷㪍㪘
㪉㪋
㪌㪉
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪌㪉
㪘㫇㫋㪼㫉㫆㫅㫆㫋㫌㫊㩷㪸㫅㪸㫊 㪘㫇㫋㪼㫉㫆㫅㫆㫋㫌㫊
㪛 㪉㫅
㫊㫇㪅
㪝㪃㩷㪤
㪝㪃㩷㪤
㪚 㪪㪼㫏
㪹㫆㫅㪸㫇㪸㫉㫋㫀㫀 㪿㪸㫊㪼㫄㪸㫅㫀
㪸㫃㪹㫀㪽㫉㫆㫅㫊 㪸㫃㪹㫀㪽㫉㫆㫅㫊 㪸㫃㪹㫀㪽㫉㫆㫅㫊 㪸㫃㪹㫀㪽㫉㫆㫅㫊
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪘㫇㫋㪼㫉㫆㫅㫆㫋㫌㫊 㪘㫇㫋㪼㫉㫆㫅㫆㫋㫌㫊 㪘㫇㫋㪼㫉㫆㫅㫆㫋㫌㫊 㪘㫇㫋㪼㫉㫆㫅㫆㫋㫌㫊 㪘㫇㫋㪼㫉㫆㫅㫆㫋㫌㫊 㪧㪸㫉㪸㫇㫋㪼㫉㫆㫅㫆㫋㫌㫊 㪧㪸㫉㪸㫇㫋㪼㫉㫆㫅㫆㫋㫌㫊
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㪹㫆㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷 㪪㫌㪹㫆㫉㪻㪼㫉㩷㪪㫋㪼㫉㫅㫆㫇㫐㪾㫆㫀㪻㪼㫀 㪘㫇㫋㪼㫉㫆㫅㫆㫋㫀㪻㪸㪼
㪫㪸㪹㫃㪼㩷㪍㪅㪈㪋㩷㩷㪦㫉㪻㪼㫉㩷㪞㪰㪤㪥㪦㪫㪠㪝㪦㪩㪤㪜㪪㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀
㪌㪇
㪊㪍
㪊㪍
㪍㪍
㪋㪋
㪋㪋
㪌㪉
㪌㪊
㪍㪇
㪍㪈
㪌㪋
㪌㪋
㪌㪋
㪋㪏
㪈㪇㪇
㪏㪍
㪎㪇
㪋㪉
㪋㪉 㪋㪉
㪐㪋
㪐㪋
㪐㪏
㪋㪇
㪋㪇
㪋㪇
㪝 㪥㪝㪈
㪈㪇㪋
㪐㪍
㪋㪉
㪌㪇 㪋㪉
㪋㪉
㪋㪉
㪋㪉
㪞 㪥㪝㪉
㪉
㪉
㪊
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉 㪈㪅㪋㩷㪙㪝㪘
㪟 㪠 㪘㪾㪄 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㪥㪦㪩㫊 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪊㪯
㪘㪚㪥㪔㪊㪉
㪘㪚㪥㪔㪊㪉
㪱㪱㪃㩷㪘㪚㪥㪔㪋㪋
㪱㪮㪃㩷㪘㪚㪥㪔㪋㪋
㪱㪱㪃㩷㪘㪚㪥㪔㪋㪋
㪱㪮㪃㩷㪘㪚㪥㪔㪋㪋
㪯㪰㪃㩷㪘㪚㪥㪔㪋㪋
㪯㪯㪃㩷㪘㪚㪥㪔㪋㪋
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪘㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪘㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪘㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪘㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪘㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪘㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪘㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪞㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪞㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㫅㫆㩷㫊㪼㫏㩷㪺㪿㫉㫆㫄㪅 㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪘㫉㪾㪼㫅㫋㫀㫅㪸
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪩㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪘㪤㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪘㪀
㪤㪄㪈㪍㪐
㪘 㪄㪈㪉㪌
㪤㪄㪈㪍㪐
㪘 㪄㪈㪐
㪘 㪄㪈㪐
㪘 㪄㪈㪐
㪘㪄㪈㪈㪌㪃㩷㪪㪄㪉㪇㪍
㪘㪄㪈㪈㪌㪃㩷㪪㪄㪉㪇㪍
㪘 㪄㪈㪈㪌
㪘 㪄㪈㪈㪌
㪘 㪄㪈㪈㪋
㪘 㪄㪈㪈㪋
㪘㪄㪈㪈㪋
㪝㪄㪉㪇
㪘 㪄㪈㪉㪌
㪘 㪄㪈㪉㪌
㪘 㪄㪈㪉㪌
㪘 㪄㪈㪉㪌
㪘㪄㪈㪈㪊 㪙㫉㪸㫑㫀㫃㩷㩿㪘㪤㪀
㪯㪈㪯㪉㪰㪃㩷㪘㪚㪥㪔㪋㪉 㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪘 㪄㪈㪉㪌
㪘 㪄㪈㪉㪌
㪘 㪄㪈㪉㪌
㪟㪄㪈㪊
㪘 㪄㪈㪏
㪚㪄㪐㪏
㪟㪄㪉㪐
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
㪘 㪄㪈㪉㪌 㪘㪄㪈㪈㪊
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪸㫅㪸㫌㫊㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪸㫅㪸㫌㫊㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㩿㪙㫉㪸㫑㫀㫃㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪘㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪩㪀
㩿㪙㫉㪸㫑㫀㫃㪀
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪙㫉㪸㫑㫀㫃㩷㩿㪘㪤㪀 㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀 㪯㪈㪯㪈㪯㪉㪯㪉
㪇㪄㪋㩷 㪙
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
118
㫄㪸㪺㫉㫌㫉㫌㫊 㫄㪸㪺㫉㫌㫉㫌㫊 㫄㪸㪺㫉㫌㫉㫌㫊 㫄㪸㪺㫉㫌㫉㫌㫊
㫊㫀㫃㫌㫊
㪙㪸㫋㪿㫐㫃㪸㪾㫆㫀㪻㪼㫊 㪙㪸㫋㪿㫐㫃㪸㪾㫆㫀㪻㪼㫊 㪣㪼㫌㫉㫆㪾㫃㫆㫊㫊㫌㫊 㪣㫀㫇㫆㫃㪸㪾㫌㫊 㪧㫊㪼㫌㪻㫆㪹㪸㫋㪿㫐㫃㪸㪾㫌㫊 㪧㫊㪼㫌㪻㫆㪹㪸㫋㪿㫐㫃㪸㪾㫌㫊
㫎㪼㫊㪼㫋㪿㫀 㫎㪼㫊㪼㫋㪿㫀 㫊㫋㫀㫃㪹㫀㫌㫊 㫆㪺㪿㫆㫋㪼㫅㫊㫀㫊 㫄㫀㫃㫃㪼㫉㫀 㫄㫀㫃㫃㪼㫉㫀
㪤㫀㪺㫉㫆㫊㫋㫆㫄㪸㫋㫀㪻㪸㪼㩷㩿㪔㩷㪙㪸㫋㪿㫐㫃㪸㪾㫀㪻㪸㪼㪀 㩷㩷㩷㪙㪸㫋㪿㫐㫃㪸㪾㫀㫅㪸㪼
㪘㫉㪾㪼㫅㫋㫀㫅㪸
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪝㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷 㪘㫉㪾㪼㫅㫋㫀㫅㫀㪻㪸㪼
㪫㪸㪹㫃㪼㩷㪍㪅㪈㪌㩷㩷㪦㫉㪻㪼㫉㩷㪘㪩㪞㪜㪥㪫㪠㪥㪠㪝㪦㪩㪤㪜㪪㩷
㪪㫋㪼㫉㫅㫆㫇㫐㪾㫌㫊 㪪㫋㪼㫉㫅㫆㫇㫐㪾㫌㫊 㪪㫋㪼㫉㫅㫆㫇㫐㪾㫌㫊 㪪㫋㪼㫉㫅㫆㫇㫐㪾㫌㫊
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㪹㫆㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷 㪜㫀㪾㪼㫅㫄㪸㫅㫅㫀㪸 㫊㫇㪅 㪜㫀㪾㪼㫅㫄㪸㫅㫅㫀㪸 㫊㫇㪅 㪜㫀㪾㪼㫅㫄㪸㫅㫅㫀㪸 㫊㫇㪅 㪜㫀㪾㪼㫅㫄㪸㫅㫅㫀㪸 㫊㫇㪅 㪜㫀㪾㪼㫅㫄㪸㫅㫅㫀㪸 㫊㫇㪅㩷㪈 㪜㫀㪾㪼㫅㫄㪸㫅㫅㫀㪸 㫊㫇㪅㩷㪉 㪜㫀㪾㪼㫅㫄㪸㫅㫅㫀㪸 㫊㫇㪅㩷㪉
㪙㪸㫋㪿㫐㫃㪸㪾㫌㫊 㩷㩷㩷㩷㩷㩷㩷㪙㪸㫋㪿㫐㫃㪸㪾㫌㫊㩷㩷 㪙㪸㫋㪿㫐㫃㪸㪾㫌㫊 㪙㪸㫋㪿㫐㫃㪸㪾㫌㫊 㪙㪸㫋㪿㫐㫃㪸㪾㫌㫊 㪙㪸㫋㪿㫐㫃㪸㪾㫌㫊
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉 㪺㫐㫋㫆㫋㫐㫇㪼㩷㪙 㪺㫐㫋㫆㫋㫐㫇㪼㩷㪚
㪫㪸㪹㫃㪼㩷㪍㪅㪈㪋㩷㩷㪦㫉㪻㪼㫉㩷㪞㪰㪤㪥㪦㪫㪠㪝㪦㪩㪤㪜㪪㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀
㪊㪈
㪤
㪍㪉 㪌㪋 㪍㪇 㪍㪇
㪤 㪤 㪝 㪤
㪊㪍 㪊㪍
㪝 㪤
㪋㪋
㪋㪏
㪊㪉㪤㩷㪂㩷㪈㪋㪪㪤
㪋㪍 㪋㪍
㪝 㪝㪃㩷㪤
㪍㪈
㪍㪌
㪈㪈㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪉㪘㩷㪂㩷㪉㩷㫊㪸㫋㪼㫃㫃㫀㫋㪼㪻㩷㪺㪿㫉㫆㫄㩷㪂㩷㪋㪈㩷㪤㪚㩷
㪈㪉㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪉㪘㩷㪂㩷㪉㩷㫊㪸㫋㪼㫃㫃㫀㫋㪼㪻㩷㪺㪿㫉㫆㫄㪅㩷㪂㩷㪋㪇㩷㪤㪚㩷
㪐㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪋㪊㪘㩷
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉㪅㪇㩷㪙㪝㪘
㪉㪅㪇㩷㪙㪝㪘
㪟 㪠 㪘㪾㪄 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㪥㪦㪩㫊 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪍㪅㪊㩷㪝㪛
㪊㪅㪋㩷㪝㪛
㪊㪅㪌㩷㪝㪛
㪈㪅㪎㩷㪝㪛
㪞 㪟 㪠 㪥㪝㪉 㪘㪾㪄 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㪥㪦㪩㫊 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪐㪉
㪐㪉
㪐㪉
㪋㪇
㪋㪇
㪞 㪥㪝㪉
㪈㪋㪤㩷㪂㩷㪐㪪㪤㩷㪂㩷㪈㪘㩷㪂㩷㪉㩷㫊㪸㫋㪼㫃㫃㫀㫋㪼㪻㩷㪺㪿㫉㫆㫄㪅㩷㪂㩷㪊㪍㩷㪤㪚㩷
㪈㪐㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪈㪘㩷㪂㩷㪉㩷㫊㪸㫋㪼㫃㫃㫀㫋㪼㪻㩷㪺㪿㫉㫆㫄㪅
㪍㪈
㪝 㪥㪝㪈
㪐㪉
㪐㪉
㪐㪉
㪋㪇
㪋㪇
㪋㪉
㪌㪏
㪌㪉
㪋㪋
㪝 㪥㪝㪈
㪉㪇㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪉㩷㫊㪸㫋㪼㫃㫃㫀㫋㪼㪻㩷㪺㪿㫉㫆㫄㪅㩷
㪈㪎㩷㪤㪆㪪㪤㩷㪂㩷㪉㪎㪘
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪉㪏㪤㩷㪂㩷㪈㪏㪪㪤
㪊㪇㪤㩷㪂㩷㪈㪍㪪㪤
㪐㩷㪤㪆㪪㪤㩷㪂㩷㪉㪉㪘
㪏㩷㪤㪆㪪㪤㩷㪂㩷㪉㪋㪘
㪋㪍
㪤
㪉㪏 㪊㪉
㪚 㪪㪼㫏
㪤
㪉㪋㩷㪤㪆㪪㪤㩷㪂㩷㪈㪇㩷㪪㪫㪆㪘
㪊㪋
㪝
㪛 㪉㫅
㪈㪍㩷㪤㪆㪪㪤㩷㪂㩷㪉㪇㩷㪪㪫㪆㪘
㪊㪍
㪈㪋㩷㪤㪆㪪㪤㩷㪂㩷㪈㪋㩷㪪㪫㪆㪘
㪏㩷㪤㪆㪪㪤㩷㪂㩷㪉㪏㩷㪪㪫㪆㪘
㪊㪍
㪊㪋
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪛 㪉㫅
㪝㪃㩷㪤
㪚 㪪㪼㫏
㪯㪰
㪯㪯
㪯㪰㪃㩷㪘㪚㪥㪔㪍㪇
㪯㪰
㪯㪰
㪯㪯
㪘㪚㪥㪔㪋㪎
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪍
㪬㪪㪘㩷㩿㫆㪽㪽㩷㪚㪘㪀
㪬㪪㪘㩷㩿㫆㪽㪽㩷㪚㪘㪀
㪬㪪㪘㩷㩿㫆㪽㪽㩷㪚㪘㪀
㪬㪪㪘㩷㩿㫆㪽㪽㩷㪚㪘㪀
㪬㪪㪘㩷㩿㫆㪽㪽㩷㪚㪘㪀
㪬㪪㪘㩷㩿㫆㪽㪽㩷㪚㪘㪀
㩿㪥㪅㩷㪘㫋㫃㪸㫅㫋㫀㪺㪀
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㩿㪪㪅㩷㪘㫄㪼㫉㫀㪺㪸㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪞㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪘㪤㪀
㪚㪄㪋㪏
㪜㪄㪉㪃㩷㪜㪄㪍㪃㩷㪚㪄㪋㪍
㪚㪄㪋㪍㪃㩷㪚㪄㪋㪏㪃㩷㪜㪄㪉
㪚㪄㪋㪍㪃㩷㪚㪄㪋㪏㪃㩷㪜㪄㪉
㪚㪄㪋㪌㪃㩷㪚㪄㪋㪏㪃㩷㪜㪄㪉
㪚㪄㪋㪍㪃㩷㪚㪄㪋㪏
㪜㪄㪉
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
㪟㪄㪈㪊
㪘㪄㪉㪈
㪘 㪄㪉㪈
㪘 㪄㪉㪈
㪘㪄㪈㪈㪍㪃㩷㪘㪄㪈㪊㪇 㪘㪚㪥㪔㪋㪍
㪯㪈㪯㪉㪰㪃㩷㪘㪚㪥㪔㪋㪋 㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪘㪄㪈㪉㪌㪃㩷㪘㪄㪈㪊㪈
㪟㪄㪈㪊
㪤㪄㪈㪍㪐
㪤㪄㪈㪍㪐
㪤㪄㪈㪍㪐
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
㪘㪄㪈㪈㪍㪃㩷㪘㪄㪈㪊㪇
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㩿㪪㪅㩷㪘㫄㪼㫉㫀㪺㪸㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪞㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪞㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪘㪚㪥㪔㪊㪉 㪯㪈㪯㪈㪯㪉㪯㪉
㪘㪚㪥㪔㪋㪋
㪘㪚㪥㪔㪋㪋
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
119
㪥㪼㫆㫊㪸㫃㪸㫅㫏 㪪㪸㫃㪸㫅㪾㫀㪺㪿㫋㪿㫐㫊
㩷㩷㩷㪪㪸㫃㪸㫅㪾㫀㫅㪸㪼
㪧㫃㪼㪺㫆㪾㫃㫆㫊㫊㫌㫊
㩷㩷㩷㪧㫃㪼㪺㫆㪾㫃㫆㫊㫊㫀㫅㪸㪼
㪤㪸㫃㫃㫆㫋㫌㫊 㪦㫊㫄㪼㫉㫌㫊 㪦㫊㫄㪼㫉㫌㫊 㪦㫊㫄㪼㫉㫌㫊 㪪㫇㫀㫉㫀㫅㪺㪿㫌㫊
㩷㩷㩷㪦㫊㫄㪼㫉㫀㫅㪸㪼
㪟㫐㫇㫆㫄㪼㫊㫌㫊 㪟㫐㫇㫆㫄㪼㫊㫌㫊 㪟㫐㫇㫆㫄㪼㫊㫌㫊 㪟㫐㫇㫆㫄㪼㫊㫌㫊
㪦㫊㫄㪼㫉㫀㪻㪸㪼 㩷㩷㩷㪟㫐㫇㫆㫄㪼㫊㫀㫅㪸㪼
㪙㫉㪸㪺㪿㫐㪾㪸㫃㪸㫏㫀㪸㫊 㪙㫉㪸㪺㪿㫐㪾㪸㫃㪸㫏㫀㪸㫊 㪙㫉㪸㪺㪿㫐㪾㪸㫃㪸㫏㫀㪸㫊 㪞㪸㫃㪸㫏㫀㪸㫊 㪞㪸㫃㪸㫏㫀㪸㫊 㪞㪸㫃㪸㫏㫀㪸㫊 㪞㪸㫃㪸㫏㫀㪸㫊 㪞㪸㫃㪸㫏㫀㪸㫊 㪞㪸㫃㪸㫏㫀㪸㫊 㪞㪸㫃㪸㫏㫀㪸㫊 㪞㪸㫃㪸㫏㫀㪸㫊 㪞㪸㫃㪸㫏㫀㪸㫊 㪞㪸㫃㪸㫏㫀㪸㫊 㪞㪸㫃㪸㫏㫀㪸㫊
㫋㪸㫀㪿㫌㪼㫅㫊㫀㫊 㫄㫀㪺㫉㫆㪻㫆㫅
㪸㫃㫋㫀㫍㪼㫃㫀㫊
㫍㫀㫃㫃㫆㫊㫌㫊 㪼㫇㪼㫉㫃㪸㫅㫌㫊 㪼㫇㪼㫉㫃㪸㫅㫌㫊 㪼㫇㪼㫉㫃㪸㫅㫌㫊 㫊㫋㪸㫉㫂㫊㫀
㫆㫃㫀㪻㫌㫊 㫆㫃㫀㪻㫌㫊 㫇㫉㪼㫋㫀㫆㫊㫌㫊 㫋㫉㪸㫅㫊㫇㪸㪺㫀㪽㫀㪺㫌㫊㩷㫅㫀㫇㫇㫆㫅㪼㫅㫊㫀㫊㩷
㪹㫌㫃㫃㫆㪺㫂㫀 㪹㫌㫃㫃㫆㪺㫂㫀 㪾㫆㫋㪿㪼㫀 㪸㫌㫉㪸㫋㫌㫊 㪹㫉㪼㫍㫀㫇㫀㫅㫅㫀㫊 㪽㫆㫅㫋㪸㫅㫌㫊 㫁㫆㪿㫅㫊㫋㫆㫅㫀 㫄㪸㪺㫌㫃㪸㫋㫌㫊 㫄㪸㪺㫌㫃㪸㫋㫌㫊 㫄㪸㪺㫌㫃㪸㫋㫌㫊 㫇㫃㪸㫋㪼㫀 㫇㫃㪸㫋㪼㫀 㫋㪸㫅㫐㪺㪼㫇㪿㪸㫃㫌㫊 㫋㫉㫌㫋㫋㪸㪺㪼㫌㫊
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪝㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷 㪞㪸㫃㪸㫏㫀㫀㪻㪸㪼
㪫㪸㪹㫃㪼㩷㪍㪅㪈㪍㩷㩷㪦㫉㪻㪼㫉㩷㪦㪪㪤㪜㪩㪠㪝㪦㪩㪤㪜㪪 㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪈㪤㩷㪂㩷㪈㪏㪪㪤㩷㪂㩷㪈㪈㪘
㪋㪇 㪊㪉 㪋㪋 㪋㪋 㪋㪋 㪉㪉 㪉㪉 㪉㪉 㪊㪇 㪊㪇 㪊㪉 㪊㪉
㪝㪃㩷㪤 㪝㪃㩷㪤 㪝㪃㩷㪤 㪝㪃㩷㪤 㪝㪃㩷㪤 㪝㪃㩷㪤 㪝㪃㩷㪤 㪝㪃㩷㪤 㪝 㪤 㪝㪃㩷㪤 㪝㪃㩷㪤
㪝㪃㩷㪤
㪝㪃㩷㪤
㪝㪃㩷㪤
㪉㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪈㪉㪘㩷
㪋㪇
㪌㪍
㪌㪍
㪌㪍
㪌㪇㫧
㪌㪍
㪌㪍
㪌㪇㪤㩷㪂㩷㪍㪪㪤
㪈㪉㩷㪤㪆㪪㪤㪆㪪㪫㩷㪂㩷㪋㪋㪘
㪈㪇㪤㩷㪂㩷㪈㪏㪪㪤㩷㪂㩷㪉㪏㩷㪪㪫㪆㪘
㪉㪍㩷㪤㪆㪪㪤㩷㪂㩷㪉㪏㩷㪪㪫㪆㪘 㪈㪍㩷㪤㪆㪪㪤㩷㪂㩷㪊㪏㩷㪪㪫㪆㪘
㪌㪋 㪌㪋
㪌㪍
㪉㪍㪪㪤㩷㪂㩷㪊㪇㪘
㪋㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪋㪇㪘
㪌㪍 㪌㪇㫧
㪉㪉㩷㪤㪆㪪㪤㩷㪂㩷㪊㪋㩷㪪㪫㪆㪘
㪌㪍
㪈㪇㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪈㪏㪘
㪈㪇㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪈㪍㪘
㪈㪏㪤㩷㪂㩷㪋㪪㪤
㪏㪤㩷㪂㩷㪈㪇㪪㪤㩷㪂㩷㪋㪪㪫
㪏㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪉㪘
㪋㪤㩷㪂㩷㪈㪇㪪㪤㩷㪂㩷㪏㪪㪫㩷㪂㩷㪉㪉㪘
㪈㪇㪤㩷㪂㩷㪏㪪㪤㩷㪂㩷㪈㪉㪪㪫㩷㪂㩷㪈㪋㪘
㪍㪤㩷㪂㩷㪏㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪉㪏㪘
㪈㪇㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪈㪋㪘
㪈㪉㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪉㪉㩷㪪㪫㪆㪘
㪈㪏㪤㩷㪂㩷㪏㪪㪤㩷㪂㩷㪈㪋㩷㪪㪫㪆㪘
㪊㪏
㪈㪇㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪈㪉㪘
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪝㪃㩷㪤
㪛 㪉㫅
㪝㪃㩷㪤
㪚 㪪㪼㫏
㪈㪈㪉
㪍㪏
㪏㪋
㪎㪇
㪏㪇
㪏㪉
㪎㪉
㪎㪏
㪋㪋
㪋㪋
㪋㪐
㪋㪏
㪋㪋
㪋㪇
㪋㪉
㪌㪏
㪍㪉
㪌㪏
㪋㪋
㪌㪏
㪍㪍
㪍㪋
㪝 㪥㪝㪈
㪈㪈㪉
㪍㪏
㪏㪉
㪎㪉
㪋㪍
㪋㪏
㪋㪐
㪋㪏
㪋㪋
㪋㪋
㪋㪉
㪍㪍
㪎㪋
㪍㪇
㪌㪇
㪍㪋
㪉
㪉
㪋
㪈㪅㪎㩷㪝㪛
㩿㪈㪅㪉㩷㪝㪚㪤㪀
㪈㪅㪌㩷㪝㪛
㩿㪈㪅㪏㪁㩷㪝㪛㪀
㩿㪉㪅㪈㪁㩷㪝㪛㪀
㪞 㪟 㪠 㪥㪝㪉 㪘㪾㪄 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㩿㫇㪾㪆㪺㪼㫃㫃㪀 㪥㪦㪩㫊
㪚㪿㫀㫃㪼
㪫㪸㫊㫄㪸㫅㫀㪸
㪥㪼㫎㩷㪱㪼㪸㫃㪸㫅㪻
㪚㪿㫀㫃㪼㪃㩷㪘㫌㫊㫋㫉㪸㫃㫀㪸
㪫㪸㫊㫄㪸㫅㫀㪸
㪫㪸㫊㫄㪸㫅㫀㪸
㪫㪸㫊㫄㪸㫅㫀㪸
㪫㪸㫊㫄㪸㫅㫀㪸
㪚㪿㫀㫃㪼
㪚㪿㫀㫃㪼
㪚㪿㫀㫃㪼
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪘㪚㪥㪔㪌㪍
㪘㪚㪥㪔㪌㪍
㪝㫀㪾㫌㫉㪼㩷㪸㪹㫊㪼㫅㫋
㪘㪚㪥㪔㪌㪍
㪘㪚㪥㪔㪌㪍
㪘㪚㪥㪔㪌㪍
㪘㪚㪥㪔㪌㪍
㪝㫀㪾㫌㫉㪼㩷㪸㪹㫊㪼㫅㫋
㪘㪚㪥㪔㪋㪋
㪘㪚㪥㪔㪋㪋
㪡㪸㫇㪸㫅
㪚㪿㫀㫅㪸㩷㩿㪣㪸㫂㪼㩷㪫㪸㫀㪿㫌㪀
㪡㪸㫇㪸㫅㩷㩿㪣㪸㫂㪼㩷㪙㫀㫎㪸㪀
㪬㪪㪘
㪩㫌㫊㫊㫀㪸㩷㩿㪮㪿㫀㫋㪼㩷㪪㪼㪸㪀
㪧㫆㫃㪸㫅㪻㩷㩿㪣㪸㫂㪼㩷㪞㪸㫃㪸㪻㫌㫊㪀
㪪㫎㪼㪻㪼㫅
㪙㪸㫉㪼㫅㫋㫊㩷㪪㪼㪸
㪡㪸㫇㪸㫅㩷㩿㪪㪿㫀㫄㪸㫅㪼㪀
㪬㪪㪘
㪚㪿㫀㫅㪸
㪩㫌㫊㫊㫀㪸
㪫㪸㫊㫄㪸㫅㫀㪸
㪫㪸㫊㫄㪸㫅㫀㪸
㪰㩷㪺㪿㫉㫆㫄㪅㪃㩷㪘㪚㪥㪔㪋㪉 㪚㪿㫀㫃㪼
㪪㪼㫏㩷㪺㪿㫉㫆㫄㪅
㪘㪚㪥㪔㪋㪋
㪘㪚㪥㪔㪋㪋
㪘㪚㪥㪔㪋㪉
㪘㪚㪥㪔㪋㪋
㪘㪚㪥㪔㪋㪋
㪘㪚㪥㪔㪋㪋
㪘㪚㪥㪔㪋㪋
㪘㪚㪥㪔㪋㪋
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪥㪄㪊㪎
㪪㪄㪈㪉㪈
㪰㪄㪏
㪦㪄㪏㪃㩷㪦㪄㪈㪈
㪣㪄㪏㪏
㪦㪄㪎㪎
㪥㪄㪋㪉㪃㩷㪭㪄㪏㪍
㪞㪄㪏㪐
㪢㪄㪍㪐
㪦㪄㪏㪃㩷㪦㪄㪈㪈
㪱㪄㪉㪊
㪭㪄㪎㪉
㪡㪄㪈㪋
㪡㪄㪈㪋
㪚㪄㪌㪃㩷㪡㪄㪈㪏
㪚㪄㪌
㪡㪄㪈㪋㪃㩷㪡㪄㪈㪎
㪤㪄㪍㪉
㪚㪄㪌
㪡㪄㪈㪋
㪡㪄㪈㪋
㪡㪄㪈㪋
㪡㪄㪈㪋
㪚㪄㪏㪉
㪚㪄㪏㪉
㪚㪄㪌
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
120
㪚㫆㫉㪼㪾㫆㫅㫌㫊 㪚㫆㫉㪼㪾㫆㫅㫌㫊 㪚㫆㫉㪼㪾㫆㫅㫌㫊 㪚㫆㫉㪼㪾㫆㫅㫌㫊 㪚㫆㫉㪼㪾㫆㫅㫌㫊 㪚㫆㫉㪼㪾㫆㫅㫌㫊 㪚㫆㫉㪼㪾㫆㫅㫌㫊 㪚㫆㫉㪼㪾㫆㫅㫌㫊 㪚㫆㫉㪼㪾㫆㫅㫌㫊 㪚㫆㫉㪼㪾㫆㫅㫌㫊 㪚㫆㫉㪼㪾㫆㫅㫌㫊 㪚㫆㫉㪼㪾㫆㫅㫌㫊 㪚㫆㫉㪼㪾㫆㫅㫌㫊 㪚㫆㫉㪼㪾㫆㫅㫌㫊 㪚㫆㫉㪼㪾㫆㫅㫌㫊 㪚㫆㫉㪼㪾㫆㫅㫌㫊 㪚㫆㫉㪼㪾㫆㫅㫌㫊 㪚㫆㫉㪼㪾㫆㫅㫌㫊 㪚㫆㫉㪼㪾㫆㫅㫌㫊 㪚㫆㫉㪼㪾㫆㫅㫌㫊 㪚㫆㫉㪼㪾㫆㫅㫌㫊 㪚㫆㫉㪼㪾㫆㫅㫌㫊 㪚㫆㫉㪼㪾㫆㫅㫌㫊 㪚㫆㫉㪼㪾㫆㫅㫌㫊 㪚㫆㫉㪼㪾㫆㫅㫌㫊 㪚㫆㫉㪼㪾㫆㫅㫌㫊 㪚㫆㫉㪼㪾㫆㫅㫌㫊 㪚㫆㫉㪼㪾㫆㫅㫌㫊 㪚㫆㫉㪼㪾㫆㫅㫌㫊 㪚㫆㫉㪼㪾㫆㫅㫌㫊 㪚㫆㫉㪼㪾㫆㫅㫌㫊 㪚㫆㫉㪼㪾㫆㫅㫌㫊 㪚㫆㫉㪼㪾㫆㫅㫌㫊
㪸㫃㪹㫌㫃㪸 㪸㫃㪹㫌㫃㪸 㪸㫃㪹㫌㫃㪸 㪸㫉㫋㪼㪻㫀 㪸㫉㫋㪼㪻㫀㫀 㪸㫌㫋㫌㫄㫅㪸㫃㫀㫊 㪺㪿㪸㪻㪸㫉㫐 㪺㫃㫌㫇㪼㪸㪽㫆㫉㫄㫀㫊 㪺㫃㫌㫇㪼㪸㪽㫆㫉㫄㫀㫊 㪿㫆㫐㫀 㪿㫆㫐㫀 㫃㪸㫍㪸㫉㪼㫋㫌㫊 㫃㪸㫍㪸㫉㪼㫋㫌㫊 㫃㪸㫍㪸㫉㪼㫋㫌㫊㩷㫃㫌㪻㫆㪾㪸 㫃㪸㫍㪸㫉㪼㫋㫌㫊㩷㫄㪸㫉㪸㪼㫅㫆㫀㪻㪼㫊 㫄㫌㫂㫊㫌㫅 㫅㪸㫊㫌㫊 㫅㪸㫊㫌㫊 㫅㪸㫊㫌㫊 㫅㫀㪾㫉㫀㫇㫀㫅㫅㫀㫊 㫇㪼㫃㪼㪻 㫇㪼㫃㪼㪻 㫇㪼㫃㪼㪻 㫇㪼㫃㪼㪻 㫇㫀㪻㫊㪺㪿㫀㪸㫅 㫇㫀㪻㫊㪺㪿㫀㪸㫅 㫇㫀㪻㫊㪺㪿㫀㪸㫅 㫉㪼㫀㪾㪿㪸㫉㪻㫀 㫊㪸㫉㪻㫀㫅㪼㫃㫃㪸 㫊㪸㫉㪻㫀㫅㪼㫃㫃㪸 㫋㫌㪾㫌㫅 㫌㫊㫊㫌㫉㫀㪼㫅㫊㫀㫊 㫌㫊㫊㫌㫉㫀㪼㫅㫊㫀㫊
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪝㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷 㪪㪸㫃㫄㫆㫅㫀㪻㪸㪼 㩷㩷㩷㪚㫆㫉㪼㪾㫆㫅㫀㫅㪸㪼
㪫㪸㪹㫃㪼㩷㪍㪅㪈㪎㩷㩷㪦㫉㪻㪼㫉㩷㪪㪘㪣㪤㪦㪥㪠㪝㪦㪩㪤㪜㪪
㫃㪸㫍㪸㫉㪼㫋㫌㫊㩷㫇㫀㪻㫊㪺㪿㫀㪸㫅 㫃㪸㫍㪸㫉㪼㫋㫌㫊㩷㫇㫀㪻㫊㪺㪿㫀㪸㫅
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪝 㪤
㪤
㪤
㪤
㪚 㪪㪼㫏
㪈㪇㪍
㪈㪍㪤㩷㪂㩷㪈㪇㪪㪤㩷㪂㩷㪌㪋㪘
㪉㪉㩷㪪㪆㪪㪤㩷㪂㩷㪌㪉㩷㪪㪫㪆㪘
㪎㪋
㪉㪉㪤㩷㪂㩷㪌㪏㩷㪪㪫㪆㪘
㪈㪇㪇 㪈㪇㪇
㪉㪇㩷㪤㪆㪪㪤㩷㪂㩷㪍㪇㩷㪪㪫㪆㪘
㪏㪇
㪏㪇㪄㪏㪉 㪈㪇㪄㪈㪉㩷㪤㩷㪂㩷㪏㪪㪤㩷㪂㩷㪍㪋㪄㪍㪇㩷㪘
㪈㪇㪍
㪈㪉㪤㩷㪂㩷㪏㪪㪤㩷㪂㩷㪍㪍㪘
㪏㪍
㪐㪏 㪈㪇㪇
㪈㪇㪋
㪈㪇㪉
㪏㪤㩷㪂㩷㪈㪇㪪㪤㩷㪂㩷㪍㪉㩷㪪㪫㪆㪘 㪐㪤㩷㪂㩷㪈㪇㪪㪤㩷㪂㩷㪍㪉㩷㪪㪫㪆㪘
㪈㪉㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪌㪍㪘
㪈㪇㪉
㪐㪏
㪐㪍
㪐㪉
㪏㪇 㪏㪈
㪏㪇
㪏㪇㪄㪏㪉 㪈㪉㪄㪈㪋㩷㪤㩷㪂㩷㪏㪪㪤㩷㪂㩷㪍㪉㪄㪌㪏㩷㪪㪫㪆㪘
㪏㪇
㪏㪇
㪈㪏㩷㪤㪆㪪㪤㩷㪂㩷㪍㪉㩷㪪㪫㪆㪘
㪈㪏㩷㪤㪆㪪㪤㪆㪪㪫㩷㪂㩷㪍㪉㪘
㪏㪇 㪎㪍
㪈㪉㩷㪤㪆㪪㪤㩷㪂㩷㪍㪏㩷㪪㪫㪆㪘
㪏㪇
㪐㪉 㪐㪍
㪌㪏㪄㪍㪇 㪉㪉㪄㪉㪋㩷㪤㩷㪂㩷㪈㪇㪪㪤㩷㪂㩷㪉㪋㪄㪉㪏㩷㪪㪫㪆㪘 㪈㪋㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪍㪇㪘
㪐㪏
㪊㪇㪤㩷㪂㩷㪏㪪㪤㩷㪂㩷㪉㪉㩷㪪㪫㪆㪘
㪍㪇 㪏㪇
㪐㪇
㪈㪇㩷㪤㪆㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪍㪏㪘
㪈㪇㪉
㪏㪇
㪉㪉㪤㩷㪂㩷㪌㪏㩷㪪㪫㪆㪘
㪏㪇
㪈㪇㪉
㪐㪏
㪐㪉
㪈㪇㪇
㪉㪉㪤㩷㪂㩷㪌㪏㩷㪪㪫㪆㪘
㪏㪇
㪐㪏 㪐㪍
㪎㪏
㪈㪏㩷㪤㪆㪪㪤㩷㪂㩷㪍㪉㩷㪪㪫㪆㪘
㪈㪉㩷㪤㪆㪪㪤㩷㪂㩷㪍㪏㩷㪪㪫㪆㪘
㪏㪇 㪏㪇
㪈㪇㪤㩷㪂㩷㪏㪪㪤㩷㪂㩷㪍㪉㪘 㪈㪋㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪍㪇㪘
㪏㪇
㪉㪇㩷㪤㪆㪪㪤㩷㪂㩷㪍㪇㪘
㪏㪇 㪏㪇
㪈㪇㪏
㪏㪇 㪈㪇㪇
㪐㪏㪄㪈㪇㪇 㪉㪇㪤㩷㪂㩷㪏㪪㪤㩷㪂㩷㪌㪉㪘
㪏㪇㪄㪏㪋
㪐㪍㪄㪐㪏
㪐㪍
㪎㪏㪄㪏㪇
㪏㪇
㪐㪍
㪈㪋㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪍㪇㪘 㪈㪋㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪍㪇㪘
㪏㪇 㪏㪇
㪐㪎
㪈㪋㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪍㪋㩷㪪㪫㪆㪘 㪈㪋㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪍㪈㪘
㪐㪍
㪝 㪥㪝㪈
㪏㪇
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪏㪈
㪛 㪉㫅
㪈㪇㪍
㪈㪇㪋
㪐㪏
㪈㪇㪇
㪐㪉
㪈㪇㪇
㪐㪏
㪈㪇㪇
㪈㪇㪏
㪈㪇㪍
㪈㪇㪇
㪈㪇㪇
㪈㪇㪈
㪉
㪋
㪍㪅㪇㩷㪝㪛
㩿㪎㪅㪈㩷㪝㪚㪤㪀
㪌㪅㪌㩷㪝㪛
㩿㪋㪅㪐㩷㪝㪠㪘㪀
㪍㪅㪐㩷㪝㪛
㪍㪅㪇㪃㩷㪍㪅㪋㩷㪝㪚㪤
㪍㪅㪌㩷㪝㪛
㪞 㪟 㪠 㪥㪝㪉 㪘㪾㪄 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㩿㫇㪾㪆㪺㪼㫃㫃㪀 㪥㪦㪩㫊
㪘㪚㪥㪔㪈㪇㪇
㪘㪚㪥㪔㪈㪇㪇
㪯㪯㪃㩷㪈㪄㪍㩷㪙 㪯㪰㪈㪰㪉㪃㩷㪈㪄㪍㩷㪙
㪘㪚㪥㪔㪈㪇㪇
㪘㪚㪥㪔㪈㪇㪇
㪘㪚㪥㪔㪐㪏
㪊㪙㪃㩷㪘㪚㪥㪔㪈㪇㪇
㪘㪚㪥㪔㪈㪇㪇
㪘㪚㪥㪔㪈㪇㪇㪖
㪘㪚㪥㪔㪈㪇㪇
㪘㪚㪥㪔㪈㪇㪇
㪘㪚㪥㪔㪈㪇㪇
㪘㪚㪥㪔㪈㪇㪇
㪇㪄㪉㩷㪙
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪝㪄㪋㪈㪃㩷㪣㪄㪊㪋
㪥㪄㪋㪌
㪧㪄㪊㪋
㪭㪄㪋㪊
㪭㪄㪋㪊
㪥㪄㪋㪌
㪥㪄㪋㪌
㪧㪄㪊㪊
㪙㪄㪋㪊
㪧㪄㪊㪈㪃㩷㪧㪄㪊㪊㪃㩷㪟㪄㪋㪈
㪙㪄㪋㪊
㪧㪄㪊㪋
㪧㪄㪊㪋
㪙㪄㪋㪊
㪧㪄㪊㪊
㪡㪄㪊
㪡㪄㪊
㪥㪄㪋㪈㪃㩷㪭㪄㪋㪈
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
㪭㪄㪋㪊
㪥㪄㪋㪌
㪡㪄㪋
㪭㪄㪋㪊
㪥㪄㪋㪌
㪥㪄㪋㪌
㪧㪄㪊㪊
㪩㫌㫊㫊㫀㪸㩷㩿㪝㪸㫉㩷㪜㪸㫊㫋㪀
㪩㫌㫊㫊㫀㪸
㪩㫌㫊㫊㫀㪸㩷㩿㪪㫀㪹㪼㫉㫀㪸㪀
㪩㫌㫊㫊㫀㪸㩷㩿㪘㫅㪸㪻㫐㫉㩷㪩㫀㫍㪼㫉㪀 㪩㫌㫊㫊㫀㪸㩷㩿㪘㫅㪸㪻㫐㫉㩷㪩㫀㫍㪼㫉㪀
㪬㪪㪘㩷㩿㪣㪸㫂㪼㩷㪟㫌㫉㫆㫅㪀
㪭㪄㪋㪈
㪭㪄㪋㪊
㪭㪄㪋㪊
㪝㪄㪋㪌 㪝㪄㪋㪉㪃㩷㪝㪄㪋㪌
㪙㪄㪋㪊
㪩㫌㫊㫊㫀㪸㩷㩿㪜㪅㩷㪪㫀㪹㪼㫉㫀㪸㩷㪪㪼㪸㪀 㪭㪄㪋㪉
㪩㫌㫊㫊㫀㪸㩷㩿㪪㫀㪹㪼㫉㫀㪸㪀
㪪㫎㪼㪻㪼㫅
㩿㪜㫌㫉㫆㫇㪼㪀
㪩㫌㫊㫊㫀㪸
㪪㫎㪼㪻㪼㫅
㪪㫎㪼㪻㪼㫅
㪚㪸㫅㪸㪻㪸㩷㩿㪣㪸㫂㪼㩷㪥㫀㫇㫀㪾㫆㫅㪀
㪩㫌㫊㫊㫀㪸㩷㩿㪜㪅㩷㪪㫀㪹㪼㫉㫀㪸㩷㪪㪼㪸㪀 㪭㪄㪋㪉
㪩㫌㫊㫊㫀㪸㩷㩿㪘㫅㪸㪻㫐㫉㩷㪩㫀㫍㪼㫉㪀
㪪㫎㪼㪻㪼㫅
㪩㫌㫊㫊㫀㪸
㪩㫌㫊㫊㫀㪸㩷㩿㪪㫀㪹㪼㫉㫀㪸㪀
㪩㫌㫊㫊㫀㪸㩷㩿㪪㫀㪹㪼㫉㫀㪸㪀
㪪㫎㪼㪻㪼㫅
㪪㫎㪼㪻㪼㫅
㪬㪪㪘㩷㩿㪣㪸㫂㪼㩷㪤㫀㪺㪿㫀㪾㪸㫅㪀
㪬㪪㪘㩷㩿㪣㪸㫂㪼㩷㪪㫌㫇㪼㫉㫀㫆㫉㪀
㪚㪸㫅㪸㪻㪸㩷㩿㪦㫅㫋㪸㫉㫀㫆㪀
㪬㪪㪘㩷㩿㪣㪸㫂㪼㩷㪪㫌㫇㪼㫉㫀㫆㫉㪀
㪩㫌㫊㫊㫀㪸
㪜㫌㫉㫆㫇㪼㪃㩷㪥㪅㩷㪘㫄㪼㫉㫀㪺㪸
㪬㪪㪘㩷㩿㪣㪸㫂㪼㩷㪪㫌㫇㪼㫉㫀㫆㫉㪀
㪬㪪㪘㩷㩿㪣㪸㫂㪼㩷㪟㫌㫉㫆㫅㪀
㪝㫀㫅㫃㪸㫅㪻
㪝㫀㫅㫃㪸㫅㪻
㪪㫎㪼㪻㪼㫅
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
121
㩷㩷㩷㪫㪿㫐㫄㪸㫃㫃㫀㫅㪸㪼
㪙㫉㪸㪺㪿㫐㫄㫐㫊㫋㪸㫏 㪙㫉㪸㪺㪿㫐㫄㫐㫊㫋㪸㫏 㪟㫌㪺㪿㫆 㪟㫌㪺㪿㫆 㪟㫌㪺㪿㫆 㪟㫌㪺㪿㫆
㩷㩷㩷㪪㪸㫃㫄㫆㫅㫀㫅㪸㪼
㪫㪿㫐㫄㪸㫃㫃㫌㫊 㪫㪿㫐㫄㪸㫃㫃㫌㫊 㪫㪿㫐㫄㪸㫃㫃㫌㫊 㪫㪿㫐㫄㪸㫃㫃㫌㫊 㪫㪿㫐㫄㪸㫃㫃㫌㫊 㪫㪿㫐㫄㪸㫃㫃㫌㫊 㪫㪿㫐㫄㪸㫃㫃㫌㫊 㪫㪿㫐㫄㪸㫃㫃㫌㫊 㪫㪿㫐㫄㪸㫃㫃㫌㫊 㪫㪿㫐㫄㪸㫃㫃㫌㫊 㪫㪿㫐㫄㪸㫃㫃㫌㫊 㪫㪿㫐㫄㪸㫃㫃㫌㫊 㪫㪿㫐㫄㪸㫃㫃㫌㫊
㫃㪼㫅㫆㫂 㫃㪼㫅㫆㫂 㪿㫌㪺㪿㫆 㪿㫌㪺㪿㫆 㫋㪸㫀㫄㪼㫅 㫋㪸㫀㫄㪼㫅
㪸㫉㪺㫋㫀㪺㫌㫊 㪸㫉㪺㫋㫀㪺㫌㫊 㪸㫉㪺㫋㫀㪺㫌㫊 㪾㫉㫌㪹㪼㫀 㪾㫉㫌㪹㪼㫀 㫋㪿㫐㫄㪸㫃㫃㫌㫊 㫋㪿㫐㫄㪸㫃㫃㫌㫊 㫋㪿㫐㫄㪸㫃㫃㫌㫊 㫋㪿㫐㫄㪸㫃㫃㫌㫊 㫋㪿㫐㫄㪸㫃㫃㫌㫊 㫋㪿㫐㫄㪸㫃㫃㫌㫊 㫋㪿㫐㫄㪸㫃㫃㫌㫊 㫋㪿㫐㫄㪸㫃㫃㫌㫊
㪸㪹㫐㫊㫊㫀㪺㫆㫃㪸 㪺㫆㫌㫃㫋㪼㫉㫀 㪺㫐㫃㫀㫅㪻㫉㪸㪺㪼㫌㫄 㪾㪼㫄㫄㫀㪽㪼㫉 㫊㫇㫀㫃㫆㫅㫆㫋㫌㫊 㫎㫀㫃㫃㫀㪸㫄㫊㫆㫅㫀 㫃㪼㫌㪺㫀㪺㪿㫋㪿㫐㫊 㫃㪼㫌㪺㫀㪺㪿㫋㪿㫐㫊㩷㫅㪼㫃㫄㪸
㫊㫇㪅 㫊㫇㪅 㫊㫇㪅
㪾㪼㫄㫄㫀㪽㪼㫉㫌㫄
㫃㪸㫍㪸㫉㪼㫋㫌㫊㩷㪹㪸㪼㫉㫀
㪚㫆㫉㪼㪾㫆㫅㫌㫊 㪚㫆㫉㪼㪾㫆㫅㫌㫊 㪚㫆㫉㪼㪾㫆㫅㫌㫊 㪚㫆㫉㪼㪾㫆㫅㫌㫊 㪚㫆㫉㪼㪾㫆㫅㫌㫊 㪚㫆㫉㪼㪾㫆㫅㫌㫊 㪧㫉㫆㫊㫆㫇㫀㫌㫄 㪧㫉㫆㫊㫆㫇㫀㫌㫄 㪧㫉㫆㫊㫆㫇㫀㫌㫄 㪧㫉㫆㫊㫆㫇㫀㫌㫄 㪧㫉㫆㫊㫆㫇㫀㫌㫄 㪧㫉㫆㫊㫆㫇㫀㫌㫄 㪪㫋㪼㫅㫆㪻㫌㫊 㪪㫋㪼㫅㫆㪻㫌㫊
㫎㫀㪻㪼㪾㫉㪼㫅㫀 㫑㪼㫅㫀㫋㪿㫀㪺㫌㫊 㫑㪼㫅㫀㫋㪿㫀㪺㫌㫊
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪝㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷
㪫㪸㪹㫃㪼㩷㪍㪅㪈㪎㩷㩷㪦㫉㪻㪼㫉㩷㪪㪘㪣㪤㪦㪥㪠㪝㪦㪩㪤㪜㪪㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀
㪈㪋㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪍㪇㪘
㪏㪇
㪝㪃㩷㪤
㪤
㪌㪉㩷㪤㪆㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪊㪍㪘
㪐㪏
㪈㪌㪇
㪈㪌㪏
㪈㪌㪏
㪈㪇㪏
㪈㪇㪇
㪈㪇㪇
㪈㪇㪇
㪈㪇㪇
㪈㪇㪇
㪈㪇㪇
㪍㪍㩷㪤㪆㪪㪤㩷㪂㩷㪊㪏㪘 㪌㪏㩷㪤㪆㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪊㪋㪘 㪌㪏㩷㪤㪆㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪊㪋㪘 㪌㪍㩷㪤㪆㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪊㪏㪘
㪈㪇㪋 㪈㪇㪉 㪈㪇㪉 㪈㪇㪋
㪉㪍㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪈㪉㪪㪫㩷㪂㩷㪊㪏㪘 㪉㪍㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪈㪉㪪㪫㩷㪂㩷㪋㪇㪘 㪉㪇㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪌㪉㩷㪪㪫㪆㪘 㪉㪉㪤㩷㪂㩷㪏㪪㪤㩷㪂㩷㪈㪉㪪㪫㩷㪂㩷㪋㪇㪘
㪏㪉 㪏㪉 㪏㪋 㪏㪉
㪈㪍㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪍㪋㩷㪪㪫㪆㪘 㪉㪍㩷㪤㪆㪪㪤㩷㪂㩷㪍㪋㩷㪪㪫㪆㪘
㪐㪇
㪐㪉
㪍㪏㩷㪤㪆㪪㪤㪆㪪㪫㩷㪂㩷㪊㪋㪘
㪍㪏㩷㪤㪆㪪㪤㩷㪂㩷㪊㪋㪘
㪈㪇㪉
㪈㪇㪉
㪊㪉㪤㩷㪂㩷㪈㪏㪪㪤㩷㪂㩷㪈㪋㪪㪫㩷㪂㩷㪊㪋㪘
㪐㪏
㪐㪏
㪐㪍
㪐㪏
㪐㪍
㪝 㪥㪝㪈
㪈㪈㪉
㪈㪈㪍
㪈㪈㪉
㪈㪈㪋
㪈㪈㪍
㪈㪉㪇
㪈㪍㪇
㪈㪍㪇
㪈㪍㪇
㪈㪎㪇
㪈㪎㪇
㪈㪋㪏
㪐㪏㪄㪈㪇㪇 㪋㪍㪄㪌㪇㩷㪤㪆㪪㪤㩷㪂㩷㪈㪇㪄㪈㪏㩷㪪㪫㩷㪂㩷㪊㪋㪄㪋㪋㪘
㪌㪍㩷㪪㪤㪆㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪊㪍㪘
㪉㪇㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪋㪇㪘 㪉㪉㩷㪤㪆㪪㪤㪆㪪㪫㩷㪂㩷㪌㪋㪘
㪎㪋 㪎㪍 㪌㪏㩷㪪㪤㪆㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪊㪉㪘
㪏㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪌㪍㪘
㪎㪏
㪈㪇㪉
㪈㪉㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪋㪏㪘
㪎㪋
㪈㪇㪇
㪉㪋㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪉㪏㪘
㪈㪉㪤㩷㪂㩷㪈㪇㪪㪤㩷㪂㩷㪌㪍㪘
㪎㪏 㪍㪋
㪈㪇㪤㩷㪂㩷㪏㪪㪤㩷㪂㩷㪍㪋㪘
㪏㪉
㪈㪋㪤㩷㪂㩷㪈㪌㩷㪪㪤㪆㪪㪫㩷㪂㩷㪌㪈㪘 㪈㪉㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪋㪋㪘
㪏㪇
㪝㪃㩷㪤
㪈㪋㪤㩷㪂㩷㪈㪍㩷㪪㪤㪆㪪㪫㩷㪂㩷㪌㪇㪘
㪎㪉
㪏㪇
㪈㪉㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪍㪉㪘
㪈㪇㪤㩷㪂㩷㪏㪪㪤㩷㪂㩷㪍㪉㪘
㪏㪇
㪈㪉㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪍㪋㩷㪪㪫㪆㪘
㪏㪇
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪏㪇
㪛 㪉㫅
㪝㪃㩷㪤
㪚 㪪㪼㫏
㪈㪉㪋
㪈㪉㪋
㪈㪉㪍
㪈㪎㪇
㪈㪎㪇
㪈㪎㪇
㪈㪎㪇
㪈㪎㪇
㪈㪎㪇
㪈㪍㪉
㪈㪍㪇
㪈㪍㪏
㪈㪍㪏
㪐㪏
㪈㪇㪏
㪈㪇㪇
㪈㪇㪇
㪈㪇㪇
㪈㪇㪇
㪈㪇㪇
㪈㪇㪇
㪈㪇㪐
㪈㪈㪇
㪐㪏
㪈㪇㪇
㪐㪏
㪩㫌㫊㫊㫀㪸㩷㩿㪪㫐㫃㫍㪸㩷㪩㪅㪀
㪩㫌㫊㫊㫀㪸㩷㩿㪪㫐㫃㫍㪸㩷㪩㪅㪀
㪩㫌㫊㫊㫀㪸㩷㩿㪝㪸㫉㩷㪜㪸㫊㫋㪀
㪩㫌㫊㫊㫀㪸㩷㩿㪝㪸㫉㩷㪜㪸㫊㫋㪀
㪩㫌㫊㫊㫀㪸㩷㩿㫃㫆㫎㪼㫉㩷㪦㪹㩷㪩㪅㪀
㪩㫌㫊㫊㫀㪸㩷㩿㫌㫇㫇㪼㫉㩷㪦㪹㩷㪩㪅㪀
㪩㫌㫊㫊㫀㪸㩷㩿㫌㫇㫇㪼㫉㩷㪦㪹㩷㪩㪅㪀
㪩㫌㫊㫊㫀㪸㩷㩿㪘㫅㪸㪻㫐㫉㩷㪩㪅㪀
㪬㪪㪘㩷㩿㪘㪢㪀
㪬㪪㪘
㪬㪪㪘㩷㩿㪙㪼㪸㫉㩷㪣㪸㫂㪼㪀
㪬㪪㪘㩷㩿㪙㪼㪸㫉㩷㪣㪸㫂㪼㪀
㪬㪪㪘㩷㩿㪣㪸㫂㪼㩷㪪㫌㫇㪼㫉㫀㫆㫉㪀
㪬㪪㪘㩷㩿㪣㪸㫂㪼㩷㪪㫌㫇㪼㫉㫀㫆㫉㪀
㪘㪚㪥㪔㪈㪇㪇
㪘㪚㪥㪔㪈㪇㪇
㪘㪚㪥㪔㪈㪇㪇
㪘㪚㪥㪔㪈㪇㪇
㪘㪚㪥㪔㪈㪇㪇
㪩㫌㫊㫊㫀㪸㩷㩿㪘㫄㫌㫉㩷㪩㪅㪀
㪩㫌㫊㫊㫀㪸
㪪㫃㫆㫍㪸㫂㫀㪸
㪽㫆㫉㫄㪼㫉㩷㪰㫌㪾㫆㫊㫃㪸㫍㫀㪸
㪢㫆㫉㪼㪸
㪩㫌㫊㫊㫀㪸
㪧㫆㫃㪸㫅㪻
㪈㪄㪋
㪪㫎㪼㪻㪼㫅
㫃㫆㫅㪾㪄㪺㫐㪺㫃㪼㩷㫋㫐㫇㪼 㩷㪩㫌㫊㫊㫀㪸㩷㩿㪢㪸㫄㪸㩷㪹㪸㫊㫀㫅㪀
㫄㫀㪻㪻㫃㪼㪄㪺㫐㪺㫃㪼㩷㫋㫐㫇㪼 㩷㪩㫌㫊㫊㫀㪸㩷㩿㪢㪸㫄㪸㩷㪹㪸㫊㫀㫅㪀
㫊㪿㫆㫉㫋㪄㪺㫐㪺㫃㪼㩷㫋㫐㫇㪼 㩷㪩㫌㫊㫊㫀㪸㩷㩿㪢㪸㫄㪸㩷㪹㪸㫊㫀㫅㪀
㪘㪚㪥㪔㪈㪇㪉
㪘㪚㪥㪔㪈㪇㪇㪖
㪘㪚㪥㪔㪈㪇㪉
㪘㪚㪥㪔㪈㪇㪉
㪘㪚㪥㪔㪈㪇㪇
㪘㪚㪥㪔㪈㪇㪇㪖
㪬㪪㪘㩷㩿㪙㪼㪸㫉㩷㪣㪸㫂㪼㪀
㪠㫋㪸㫃㫐㩷㩿㪙㫉㪸㪺㪺㫀㪸㫅㫆㪀
㪠㫋㪸㫃㫐㩷㩿㪙㫆㫃㫊㪼㫅㪸㪀
㪩㫌㫊㫊㫀㪸㩷㩿㪘㫅㪸㪻㫐㫉㩷㪩㪅㪀
㪚㪸㫅㪸㪻㪸㩷㩿㪣㪸㫂㪼㩷㪥㫀㫇㫀㪾㫆㫅㪀
㪬㪪㪘㩷㩿㪣㪸㫂㪼㩷㪪㫌㫇㪼㫉㫀㫆㫉㪀
㪩㫌㫊㫊㫀㪸
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪜㫌㫉㫆㫇㪼
㩿㪋㪅㪊㩷㪝㪚㪤㪀
㩿㪊㪅㪐㪄㪋㪅㪇㩷㪝㪠㪘㪀
㩿㪍㪅㪌㩷㪝㪛㪀
㪌㪅㪇㩷㪝㪛㪃㩷㪋㪅㪇㩷㪝㪠㪘
㪌㪅㪈㩷㪝㪛
㪘㪚㪥㪔㪐㪐
㪘㪚㪥㪔㪐㪐
㪘㪚㪥㪔㪐㪏
㪘㪚㪥㪔㪐㪏
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪉
㪊
㪌
㪉
㪌㪅㪊㩷㪝㪛
㪞 㪟 㪠 㪥㪝㪉 㪘㪾㪄 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㪥㪦㪩㫊 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪝㪄㪌㪇
㪭㪄㪋㪋
㪩㪄㪌
㪩㪄㪌
㪢㪄㪊
㪭㪄㪋㪋
㪡㪄㪌
㪢㪄㪉
㪥㪄㪋㪈
㪪㪄㪋㪌
㪪㪄㪋㪌
㪪㪄㪋㪌
㪪㪄㪋㪊
㪪㪄㪋㪊㪃㩷㪭㪄㪏㪍
㪤㪄㪈㪍
㪤㪄㪈㪍
㪪㪄㪋㪋㩷
㪪㪄㪋㪋㩷
㪪㪄㪋㪋㪃㩷㪟㪄㪋㪇
㪝㪄㪋㪍
㪙㪄㪋㪌㪃㩷㪙㪄㪋㪊
㪙㪄㪋㪋
㪙㪄㪋㪋
㪙㪄㪋㪋
㪙㪄㪋㪊㪃㩷㪟㪄㪋㪈
㪙㪄㪋㪊
㪙㪄㪋㪋
㪪㪄㪏㪐
㪪㪄㪏㪐
㪭㪄㪋㪊
㪧㪄㪊㪊
㪙㪄㪋㪊
㪭㪄㪋㪈
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
122
㪟㫌㪺㪿㫆 㪧㪸㫉㪸㪿㫌㪺㪿㫆 㪧㪸㫉㪸㪿㫌㪺㪿㫆 㪦㫅㪺㫆㫉㪿㫐㫅㪺㪿㫌㫊 㪦㫅㪺㫆㫉㪿㫐㫅㪺㪿㫌㫊 㪦㫅㪺㫆㫉㪿㫐㫅㪺㪿㫌㫊 㪦㫅㪺㫆㫉㪿㫐㫅㪺㪿㫌㫊 㪦㫅㪺㫆㫉㪿㫐㫅㪺㪿㫌㫊 㪦㫅㪺㫆㫉㪿㫐㫅㪺㪿㫌㫊 㪦㫅㪺㫆㫉㪿㫐㫅㪺㪿㫌㫊 㪦㫅㪺㫆㫉㪿㫐㫅㪺㪿㫌㫊 㪦㫅㪺㫆㫉㪿㫐㫅㪺㪿㫌㫊 㪦㫅㪺㫆㫉㪿㫐㫅㪺㪿㫌㫊 㪦㫅㪺㫆㫉㪿㫐㫅㪺㪿㫌㫊 㪦㫅㪺㫆㫉㪿㫐㫅㪺㪿㫌㫊 㪦㫅㪺㫆㫉㪿㫐㫅㪺㪿㫌㫊 㪦㫅㪺㫆㫉㪿㫐㫅㪺㪿㫌㫊 㪦㫅㪺㫆㫉㪿㫐㫅㪺㪿㫌㫊 㪦㫅㪺㫆㫉㪿㫐㫅㪺㪿㫌㫊 㪦㫅㪺㫆㫉㪿㫐㫅㪺㪿㫌㫊 㪦㫅㪺㫆㫉㪿㫐㫅㪺㪿㫌㫊 㪦㫅㪺㫆㫉㪿㫐㫅㪺㪿㫌㫊 㪦㫅㪺㫆㫉㪿㫐㫅㪺㪿㫌㫊 㪦㫅㪺㫆㫉㪿㫐㫅㪺㪿㫌㫊 㪦㫅㪺㫆㫉㪿㫐㫅㪺㪿㫌㫊 㪦㫅㪺㫆㫉㪿㫐㫅㪺㪿㫌㫊 㪦㫅㪺㫆㫉㪿㫐㫅㪺㪿㫌㫊 㪦㫅㪺㫆㫉㪿㫐㫅㪺㪿㫌㫊 㪦㫅㪺㫆㫉㪿㫐㫅㪺㪿㫌㫊 㪦㫅㪺㫆㫉㪿㫐㫅㪺㪿㫌㫊 㪦㫅㪺㫆㫉㪿㫐㫅㪺㪿㫌㫊 㪦㫅㪺㫆㫉㪿㫐㫅㪺㪿㫌㫊 㪦㫅㪺㫆㫉㪿㫐㫅㪺㪿㫌㫊 㪦㫅㪺㫆㫉㪿㫐㫅㪺㪿㫌㫊 㪦㫅㪺㫆㫉㪿㫐㫅㪺㪿㫌㫊
㫋㪸㫀㫄㪼㫅 㫇㪼㫉㫉㫐㫀 㫇㪼㫉㫉㫐㫀 㪸㪾㫌㪸㪹㫆㫅㫀㫋㪸 㪸㫇㪸㪺㪿㪼 㪺㪿㫉㫐㫊㫆㪾㪸㫊㫋㪼㫉 㪺㫃㪸㫉㫂㫀㫀㩷㪸㫃㫍㫆㫉㪻㪼㫅㫊㫀 㪺㫃㪸㫉㫂㫀㫀㩷㪹㫆㫌㫍㫀㪼㫉㫀 㪺㫃㪸㫉㫂㫀㩷㪺㫃㪸㫉㫂㫀 㪺㫃㪸㫉㫂㫀㩷㪺㫃㪸㫉㫂㫀 㪺㫃㪸㫉㫂㫀㩷㪿㪼㫅㫊㪿㪸㫎㫀 㪺㫃㪸㫉㫂㫀㩷㪿㪼㫅㫊㪿㪸㫎㫀 㪺㫃㪸㫉㫂㫀㩷㫃㪼㫎㫀㫊㫀 㪺㫃㪸㫉㫂㫀㩷㫃㪼㫎㫀㫊㫀 㪺㫃㪸㫉㫂㫀㩷 㫊㫌㪹㫊㫇㪅 㪾㫀㫃㪸㪼 㪾㫀㫃㪸㪼 㪾㫆㫉㪹㫌㫊㪺㪿㪸 㪾㫆㫉㪹㫌㫊㪺㪿㪸 㪾㫆㫉㪹㫌㫊㪺㪿㪸 㫂㪼㫋㪸 㫂㪼㫋㪸 㫂㪼㫋㪸 㫂㪼㫋㪸 㫂㪼㫋㪸 㫂㫀㫊㫌㫋㪺㪿 㫂㫀㫊㫌㫋㪺㪿 㫂㫀㫊㫌㫋㪺㪿 㫂㫀㫊㫌㫋㪺㪿 㫂㫀㫊㫌㫋㪺㪿 㫂㫀㫊㫌㫋㪺㪿 㫄㪸㫊㫆㫌 㫄㪸㫊㫆㫌 㫄㪸㫊㫆㫌 㫄㪸㫊㫆㫌㩷㫀㫊㪿㫀㫂㪸㫎㪸㪼
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪝㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷
㪝㪃㩷㪤
㪝㪃㩷㪤
㪚 㪪㪼㫏
㫉㪿㫆㪻㫌㫉㫌㫊 㩷㫍㪸㫉㪅㩷㫄㪸㪺㫉㫆㫊㫋㫆㫄㫌㫊
㩷㪪㪸㫂㫌㫉㪸㫄㪸㫊㫌
㪪㪸㫃㫄㫆 㪪㪸㫃㫄㫆 㪪㪸㫃㫄㫆 㪪㪸㫃㫄㫆 㪪㪸㫃㫄㫆 㪪㪸㫃㫄㫆 㪪㪸㫃㫄㫆 㪪㪸㫃㫄㫆 㪪㪸㫃㫄㫆 㪪㪸㫃㫄㫆 㪪㪸㫃㫄㫆 㪪㪸㫃㫄㫆 㪪㪸㫃㫄㫆 㪪㪸㫃㫄㫆
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪫㪸㪹㫃㪼㩷㪍㪅㪈㪎㩷㩷㪦㫉㪻㪼㫉㩷㪪㪘㪣㪤㪦㪥㪠㪝㪦㪩㪤㪜㪪㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀
㪋㪉㩷㪤㪆㪪㪤㩷㪂㩷㪉㪉㩷㪪㪫㪆㪘
㪍㪋
㪈㪇㪋
㪊㪋㩷㪤㪆㪪㪤㩷㪂㩷㪊㪉㩷㪪㪫㪆㪘
㪍㪍
㪊㪋㩷㪤㪆㪪㪤㩷㪂㩷㪉㪋㪪㪫㩷㪂㩷㪏㪘
㪊㪍㩷㪤㪆㪪㪤㩷㪂㩷㪉㪉㪪㪫㩷㪂㩷㪏㪘
㪍㪍 㪍㪍
㪊㪏㩷㪤㪆㪪㪤㩷㪂㩷㪉㪏㩷㪪㪫㪆㪘
㪍㪍
㪌㪉㩷㪤㪆㪪㪤㩷㪂㩷㪏㩷㪪㪫㪆㪘
㪋㪋㪤㩷㪂㩷㪈㪋㪄㪈㪍㩷㪪㪫㩷㪂㩷㪉㪄㪇㩷㪘
㪍㪇
㪍㪇
㪊㪏㪤㩷㪂㩷㪏㪪㪤㩷㪂㩷㪈㪋㩷㪪㪫㪆㪘
㪍㪇
㪊㪋㪤㩷㪂㩷㪏㪪㪤㩷㪂㩷㪈㪋㪪㪫㩷㪂㩷㪋㪘
㪋㪏㩷㪤㪆㪪㪤㩷㪂㩷㪈㪉㪪㪫
㪍㪇
㪊㪏㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪈㪇㩷㪪㪫㪆㪘
㪉㪍㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪋㪉㪘
㪎㪋
㪍㪇
㪉㪏㩷㪤㪆㪪㪤㩷㪂㩷㪋㪍㩷㪪㪫㪆㪘
㪎㪋
㪍㪇
㪊㪉㩷㪤㪆㪪㪤㪆㪪㪫㩷㪂㩷㩷㪋㪉㪘
㪎㪋
㪈㪇㪇
㪈㪇㪇
㪈㪇㪉
㪈㪇㪋
㪈㪈㪉
㪈㪈㪇
㪈㪇㪉
㪈㪇㪋
㪈㪇㪍
㪈㪇㪏
㪈㪇㪍
㪈㪇㪉
㪈㪇㪉 㪉
㪉
㪉
㪉
㪈㪉㪋
㪈㪉㪋
㪈㪈㪍
㪉
㪉
㪉
㪈㪈㪏㪄㪈㪉㪇
㪈㪉㪇
㪈㪇㪍
㪈㪇㪍
㪈㪇㪍
㪉㪍㩷㪤㪆㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪋㪉㪘 㪉㪏㩷㪤㪆㪪㪤㩷㪂㩷㪋㪍㩷㪪㪫㪆㪘
㪎㪋 㪎㪋
㪈㪇㪇
㪈㪇㪋
㪈㪇㪋
㪈㪇㪋
㪈㪇㪌
㪈㪈㪍
㪈㪇㪋
㪈㪇㪋
㪌㪉㩷㪤㪆㪪㪤
㪌㪉
㪈㪇㪇
㪈㪇㪋
㪈㪇㪌
㪈㪇㪍
㪈㪇㪍
㪈㪇㪋
㪈㪇㪍
㪈㪇㪋
㪈㪇㪍
㪈㪇㪋
㪈㪇㪋
㪈㪇㪍
㪈㪇㪏
㪈㪇㪏
㪈㪉㪋
㪌㪅㪐㪁㩷㪝㪚㪤
㩿㪌㪅㪈㪁㩷㪝㪚㪤㪃㩷㪋㪅㪈㩷㪝㪛㪀
㩿㪌㪅㪉㪁㩷㪝㪚㪤㪃㩷㪍㪅㪈㩷㪝㪛㪀
㩿㪌㪅㪇㩷㪝㪠㪘㪀
㩿㪌㪅㪊㪁㩷㪝㪚㪤㪃㩷㪌㪅㪌㩷㪝㪛㪀
㩿㪌㪅㪈㪁㩷㪝㪚㪤㪃㩷㪋㪅㪌㩷㪝㪛㪀
㩿㪌㪅㪉㪁㩷㪝㪚㪤㪀
㪌㪅㪇㪁㩷㪝㪚㪤
㪌㪅㪇㪁㩷㪝㪚㪤
㪞 㪟 㪠 㪥㪝㪉 㪘㪾㪄 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㪥㪦㪩㫊 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪌㪉
㪋㪏㩷㪤㪆㪪㪤㩷㪂㩷㪋㪪㪫
㪌㪉
㪋㪏㩷㪤㪆㪪㪤㩷㪂㩷㪏㪘
㪊㪋㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪈㪉㪪㪫㩷㪂㩷㪈㪍㪘
㪍㪍
㪌㪍
㪋㪉㩷㪤㪆㪪㪤㩷㪂㩷㪉㪉㩷㪪㪫㪆㪘
㪍㪋
㪋㪉㩷㪤㪆㪪㪤㩷㪂㩷㪉㪉㩷㪪㪫㪆㪘
㪋㪇㩷㪤㪆㪪㪤㩷㪂㩷㪉㪋㩷㪪㪫㪆㪘
㪍㪋
㪋㪐㩷㪤㪆㪪㪤㩷㪂㩷㪎㪘
㪊㪍㩷㪤㪆㪪㪤㩷㪂㩷㪊㪋㩷㪪㪫㪆㪘
㪎㪇
㪍㪋
㪊㪍㩷㪤㪆㪪㪤㩷㪂㩷㪊㪉㩷㪪㪫㪆㪘
㪍㪏
㪌㪍
㪋㪇㩷㪤㪆㪪㪤㩷㪂㩷㪉㪋㩷㪪㪫㪆㪘 㪊㪏㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪉㪋㪘
㪍㪋 㪍㪋
㪈㪇㪋
㪈㪇㪍 㪈㪇㪉
㪌㪇㩷㪤㪆㪪㪤㩷㪂㩷㪍㩷㪪㪫㪆㪘
㪈㪇㪋
㪈㪇㪇
㪈㪇㪋
㪈㪈㪉
㪝 㪥㪝㪈
㪍㪇
㪌㪍
㪊㪏㩷㪤㪆㪪㪤㩷㪂㩷㪏㪪㪫㩷㪂㩷㪈㪍㪘
㪍㪉 㪋㪋㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪈㪇㪘
㪋㪉㩷㪤㪆㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪈㪍㪘
㪌㪏
㪉㪉㪤㩷㪂㩷㪎㪪㪤㩷㪂㩷㪈㪉㪪㪫㩷㪂㩷㪋㪉㪘
㪍㪉
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪏㪊
㪛 㪉㫅
㪘㪚㪥㪔㪈㪇㪇
㪘㪚㪥㪔㪈㪇㪇
㪘㪚㪥㪔㪈㪇㪉
㪘㪚㪥㪔㪈㪇㪉
㪯㪯㪆㪯㪰
㪘㪚㪥㪔㪈㪇㪇
㪘㪚㪥㪔㪈㪇㪇
㪯㪯㪆㪯㪰
㪘㪚㪥㪔㪈㪇㪇
㪘㪚㪥㪔㪈㪇㪇
㪘㪚㪥㪔㪈㪇㪇
㪘㪚㪥㪔㪈㪇㪇
㪘㪚㪥㪔㪈㪇㪇
㪘㪚㪥㪔㪈㪇㪉
㪘㪚㪥㪔㪈㪇㪉
㪘㪚㪥㪔㪈㪇㪉
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪡㪸㫇㪸㫅
㪩㫌㫊㫊㫀㪸
㪡㪸㫇㪸㫅㩷㩿㪟㫆㫂㫂㪸㫀㪻㫆㪀
㪡㪸㫇㪸㫅
㪬㪪㪘㩷㩿㪮㪘㪀
㪬㪪㪘
㪩㫌㫊㫊㫀㪸㩷㩿㪧㪸㪺㫀㪽㫀㪺㪀
㪩㫌㫊㫊㫀㪸㩷㩿㪢㪸㫄㪺㪿㪸㫋㫂㪸㪀
㪢㫆㫉㪼㪸㪖
㪡㪸㫇㪸㫅
㪩㫌㫊㫊㫀㪸㩷㩿㪢㪸㫄㪺㪿㪸㫋㫂㪸㪀
㪬㪪㪘㩷㩿㪮㪘㪀
㪡㪸㫇㪸㫅㩷㩿㪟㫆㫂㫂㪸㫀㪻㫆㪀
㪡㪸㫇㪸㫅
㪡㪸㫇㪸㫅㩷㩿㪟㫆㫂㫂㪸㫀㪻㫆㪀
㪩㫌㫊㫊㫀㪸㩷㩿㪢㪸㫄㪺㪿㪸㫋㫂㪸㪀
㪬㪪㪘㩷㩿㪘㪢㪀
㪡㪸㫇㪸㫅㩷㩿㪟㫆㫂㫂㪸㫀㪻㫆㪀
㪬㪪㪘㩷㩿㪥㪤㪀
㪬㪪㪘㩷㩿㪥㪤㪀
㪬㪪㪘㩷㩿㪥㪭㪀
㪬㪪㪘㩷㩿㪤㪫㪃㩷㪮㪰㪀
㪬㪪㪘㩷㩿㪤㪫㪀
㪬㪪㪘㩷㩿㪥㪭㪀
㪬㪪㪘㩷㩿㪚㪘㪀
㪬㪪㪘㩷㩿㪮㪘㪀
㪬㪪㪘㩷㩿㪚㪘㪀
㪬㪪㪘㩷㩿㪮㪰㪀
㪬㪪㪘㩷㩿㪦㪩㪀
㪤㪼㫏㫀㪺㫆
㪬㪪㪘㩷㩿㪘㪱㪀
㪬㪪㪘㩷㩿㪚㪘㪀
㪩㫌㫊㫊㫀㪸
㪡㪸㫇㪸㫅㩷㩿㪟㫆㫂㫂㪸㫀㪻㫆㪀
㪩㫌㫊㫊㫀㪸㩷㩿㪘㫄㫌㫉㩷㪩㪅㪀
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪤㪄㪐㪌㪃㩷㪦㪄㪋㪏
㪭㪄㪎㪉
㪚㪄㪊㪏
㪬㪄㪎㪉㪃㩷㪡㪄㪈㪌㪃㩷㪦㪄㪏
㪪㪄㪎㪈㪃㩷㪧㪄㪊㪈
㪬㪄㪍㪎㪃㩷㪧㪄㪐㪊
㪪㪄㪍㪈
㪞㪄㪌㪌
㪢㪄㪈㪈㪏
㪬㪄㪎㪉㪃㩷㪡㪄㪈㪌㪃㩷㪦㪄㪏
㪞㪄㪌㪌
㪪㪄㪎㪈㪃㩷㪧㪄㪊㪈㪃㩷㪧㪄㪍㪉
㪠㪄㪈㪈
㪬㪄㪎㪉㪃㩷㪟㪄㪋㪈
㪪㪄㪈㪋㪃㩷㪡㪄㪈㪌㪃㩷㪦㪄㪊㪊
㪞㪄㪌㪍
㪪㪄㪎㪈㪃㩷㪧㪄㪍㪉
㪤㪄㪐㪌㪃㩷㪡㪄㪈㪌㪃㩷㪧㪄㪐㪊
㪙㪄㪈㪊
㪙㪄㪈㪊
㪞㪄㪉㪍㪃㩷㪤㪄㪎㪈
㪞㪄㪉㪍
㪣㪄㪎㪇
㪞㪄㪉㪍
㪞㪄㪉㪍㪃㩷㪞㪄㪐㪎
㪞㪄㪉㪍㪃㩷㪧㪄㪊㪈
㪞㪄㪉㪍㪃㩷㪞㪄㪐㪎㪃㩷㪡㪄㪈㪌
㪣㪄㪎㪇㪃㩷㪡㪄㪈㪌
㪞㪄㪉㪍
㪧㪄㪊㪋
㪤㪄㪎㪈㪃㩷㪞㪄㪉㪍
㪤㪄㪎㪈㪃㩷㪞㪄㪉㪌㪃㩷㪡㪄㪈㪌
㪭㪄㪎㪉
㪚㪄㪊㪏㪃㩷㪬㪄㪎㪉
㪝㪄㪌㪇
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
123
㪦㫅㪺㫆㫉㪿㫐㫅㪺㪿㫌㫊 㪦㫅㪺㫆㫉㪿㫐㫅㪺㪿㫌㫊 㪦㫅㪺㫆㫉㪿㫐㫅㪺㪿㫌㫊 㪦㫅㪺㫆㫉㪿㫐㫅㪺㪿㫌㫊 㪦㫅㪺㫆㫉㪿㫐㫅㪺㪿㫌㫊 㪦㫅㪺㫆㫉㪿㫐㫅㪺㪿㫌㫊 㪦㫅㪺㫆㫉㪿㫐㫅㪺㪿㫌㫊 㪦㫅㪺㫆㫉㪿㫐㫅㪺㪿㫌㫊 㪦㫅㪺㫆㫉㪿㫐㫅㪺㪿㫌㫊 㪦㫅㪺㫆㫉㪿㫐㫅㪺㪿㫌㫊 㪦㫅㪺㫆㫉㪿㫐㫅㪺㪿㫌㫊 㪦㫅㪺㫆㫉㪿㫐㫅㪺㪿㫌㫊 㪦㫅㪺㫆㫉㪿㫐㫅㪺㪿㫌㫊 㪦㫅㪺㫆㫉㪿㫐㫅㪺㪿㫌㫊 㪦㫅㪺㫆㫉㪿㫐㫅㪺㪿㫌㫊 㪦㫅㪺㫆㫉㪿㫐㫅㪺㪿㫌㫊 㪦㫅㪺㫆㫉㪿㫐㫅㪺㪿㫌㫊 㪦㫅㪺㫆㫉㪿㫐㫅㪺㪿㫌㫊 㪦㫅㪺㫆㫉㪿㫐㫅㪺㪿㫌㫊 㪦㫅㪺㫆㫉㪿㫐㫅㪺㪿㫌㫊 㪦㫅㪺㫆㫉㪿㫐㫅㪺㪿㫌㫊 㪦㫅㪺㫆㫉㪿㫐㫅㪺㪿㫌㫊 㪦㫅㪺㫆㫉㪿㫐㫅㪺㪿㫌㫊 㪦㫅㪺㫆㫉㪿㫐㫅㪺㪿㫌㫊 㪦㫅㪺㫆㫉㪿㫐㫅㪺㪿㫌㫊 㪦㫅㪺㫆㫉㪿㫐㫅㪺㪿㫌㫊 㪦㫅㪺㫆㫉㪿㫐㫅㪺㪿㫌㫊 㪦㫅㪺㫆㫉㪿㫐㫅㪺㪿㫌㫊 㪦㫅㪺㫆㫉㪿㫐㫅㪺㪿㫌㫊 㪦㫅㪺㫆㫉㪿㫐㫅㪺㪿㫌㫊 㪦㫅㪺㫆㫉㪿㫐㫅㪺㪿㫌㫊 㪦㫅㪺㫆㫉㪿㫐㫅㪺㪿㫌㫊 㪦㫅㪺㫆㫉㪿㫐㫅㪺㪿㫌㫊 㪦㫅㪺㫆㫉㪿㫐㫅㪺㪿㫌㫊 㪦㫅㪺㫆㫉㪿㫐㫅㪺㪿㫌㫊
㫄㪸㫊㫆㫌㩷㫀㫊㪿㫀㫂㪸㫎㪸㪼 㫄㪸㫊㫆㫌㩷㫀㫊㪿㫀㫂㪸㫎㪸㪼 㫄㪸㫊㫆㫌㩷㫄㪸㫊㫆㫌 㫄㪸㫊㫆㫌㩷 㫊㫌㪹㫊㫇㪅 㫄㪸㫊㫆㫌㩷 㫊㫌㪹㫊㫇㪅 㫄㫐㫂㫀㫊㫊 㫄㫐㫂㫀㫊㫊 㫄㫐㫂㫀㫊㫊 㫄㫐㫂㫀㫊㫊 㫄㫐㫂㫀㫊㫊 㫄㫐㫂㫀㫊㫊 㫄㫐㫂㫀㫊㫊 㫄㫐㫂㫀㫊㫊 㫄㫐㫂㫀㫊㫊 㫄㫐㫂㫀㫊㫊 㫄㫐㫂㫀㫊㫊 㫄㫐㫂㫀㫊㫊 㫄㫐㫂㫀㫊㫊 㫄㫐㫂㫀㫊㫊 㫄㫐㫂㫀㫊㫊 㫄㫐㫂㫀㫊㫊 㫄㫐㫂㫀㫊㫊 㫄㫐㫂㫀㫊㫊 㫄㫐㫂㫀㫊㫊 㫄㫐㫂㫀㫊㫊 㫄㫐㫂㫀㫊㫊 㫄㫐㫂㫀㫊㫊 㫄㫐㫂㫀㫊㫊 㫄㫐㫂㫀㫊㫊 㫄㫐㫂㫀㫊㫊㩷㫀㫉㫀㪻㪼㫌㫊 㫄㫐㫂㫀㫊㫊㩷㫀㫉㫀㪻㪼㫌㫊 㫄㫐㫂㫀㫊㫊㩷㫀㫉㫀㪻㪼㫌㫊 㫄㫐㫂㫀㫊㫊㩷㫀㫉㫀㪻㪼㫌㫊 㫄㫐㫂㫀㫊㫊 㫄㫐㫂㫀㫊㫊
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪝㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷
㪧㪻㪛㩷㪍㪍
㪧㪸㫉㪸㫊㪸㫃㫄㫆 㪪㪸㫃㫄㫆 㪪㪸㫃㫄㫆 㪪㪸㫃㫄㫆 㪪㪸㫃㫄㫆 㪪㪸㫃㫄㫆 㪪㪸㫃㫄㫆㪃㩷 㪥㫀㫁㫀㫄㪸㫊㫌 㪪㪸㫃㫄㫆㩷㪾㪸㫀㫉㪻㫅㪼㫉㫀㫀㩷 㪪㪸㫃㫄㫆㩷㪾㪸㫀㫉㪻㫅㪼㫉㫀㫀㩷 㪪㪸㫃㫄㫆㩷㪾㪸㫀㫉㪻㫅㪼㫉㫀㫀㩷 㪪㪸㫃㫄㫆㩷㪾㪸㫀㫉㪻㫅㪼㫉㫀㫀㩷 㪪㪸㫃㫄㫆㩷㪾㪸㫀㫉㪻㫅㪼㫉㫀㫀㩷 㪪㪸㫃㫄㫆㩷㪾㪸㫀㫉㪻㫅㪼㫉㫀㫀㩷 㪪㪸㫃㫄㫆㩷㪾㪸㫀㫉㪻㫅㪼㫉㫀㫀㩷 㪝㪃㩷㪤 㪪㪸㫃㫄㫆㩷㪾㪸㫀㫉㪻㫅㪼㫉㫀㫀㩷 㪪㪸㫃㫄㫆㩷㪾㪸㫀㫉㪻㫅㪼㫉㫀㫀㩷 㪪㪸㫃㫄㫆㩷㪾㪸㫀㫉㪻㫅㪼㫉㫀㫀㩷 㪝㪃㩷㪤 㪪㪸㫃㫄㫆㩷㪾㪸㫀㫉㪻㫅㪼㫉㫀㫀㩷 㪝㪃㩷㪤 㪪㪸㫃㫄㫆㩷㪾㪸㫀㫉㪻㫅㪼㫉㫀㫀㩷 㪝㪃㩷㪤 㪪㪸㫃㫄㫆㩷㪾㪸㫀㫉㪻㫅㪼㫉㫀㫀㩷 㪝㪃㩷㪤 㪪㪸㫃㫄㫆㩷㪾㪸㫀㫉㪻㫅㪼㫉㫀㫀㩷 㪪㪸㫃㫄㫆㩷㪾㪸㫀㫉㪻㫅㪼㫉㫀㫀㩷 㪪㪸㫃㫄㫆㩷㪾㪸㫀㫉㪻㫅㪼㫉㫀㫀㩷 㪪㪸㫃㫄㫆㩷㪾㪸㫀㫉㪻㫅㪼㫉㫀㩷㪸㫈㫌㫀㫃㪸㫉㫌㫄㩷 㪪㪸㫃㫄㫆㩷㫀㫉㫀㪻㪼㫌㫊 㪪㪸㫃㫄㫆㩷㫀㫉㫀㪻㪼㫌㫊 㪪㪸㫃㫄㫆㩷㫀㫉㫀㪻㪼㫌㫊 㪪㪸㫃㫄㫆㩷㫀㫉㫀㪻㪼㫌㫊
㪙 㪚 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㪪㪼㫏 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉 㫄㪸㫊㫆㫌㪃 㩷㪘㫄㪸㪾㫆 㫄㪸㫊㫆㫌 㩷㫍㪸㫉㪅㩷㫀㫊㪿㫀㫂㪸㫎㪸㪼 㫄㪸㫊㫆㫌㩷 㫍㪸㫉㪅㩷㫄㪸㫊㫆㫌 㪝㪃㩷㪤 㫉㪿㫆㪻㫌㫉㫌㫊㩷 㫍㪸㫉㪅㩷㫉㪿㫆㪻㫌㫉㫌 㪝㪃㩷㪤 㪙㫀㫎㪸㫄㪸㫊㫌
㪫㪸㪹㫃㪼㩷㪍㪅㪈㪎㩷㩷㪦㫉㪻㪼㫉㩷㪪㪘㪣㪤㪦㪥㪠㪝㪦㪩㪤㪜㪪 㪪㩷㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀
㪋㪋㩷㪤㪆㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪈㪋㪘 㪍㪍㩷㪤㪆㪪㪤㩷㪂㩷㪊㪪㪫㩷㪂㩷㪉㪈㪘 㪋㪋㩷㪤㪆㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪈㪋㪘 㪋㪋㩷㪤㪆㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪈㪋㪘 㪋㪉㩷㪤㪆㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪈㪏㪘 㪋㪊㩷㪤㪆㪪㪤㩷㪂㩷㪈㪪㪫㩷㪂㩷㪈㪎㪘 㪋㪋㩷㪤㪆㪪㪤㩷㪂㩷㪈㪍㩷㪪㪫㪆㪘 㪋㪋㩷㪤㪆㪪㪤㩷㪂㩷㪈㪍㩷㪪㪫㪆㪘
㪍㪇 㪐㪇 㪍㪇 㪍㪇 㪍㪉 㪍㪈 㪍㪇 㪍㪇
㪋㪉㩷㪤㪆㪪㪤㩷㪂㩷㪈㪍㪘
㪍㪈 㪌㪏 㪌㪏
㪋㪍㩷㪤㪆㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪈㪇㪘
㪋㪉㩷㪤㪆㪪㪤㩷㪂㩷㪈㪐㪘
㪍㪉
㪌㪏㪃㩷㪍㪇
㪋㪋㩷㪤㪆㪪㪤㩷㪂㩷㪈㪏㪘
㪍㪇
㪈㪇㪋
㪈㪇㪇
㪈㪇㪊
㪈㪇㪍
㪈㪇㪋
㪈㪇㪋
㪋㪍㩷㪤㪆㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪈㪇㪘 㪋㪋㩷㪤㪆㪪㪤㩷㪂㩷㪈㪍㪘
㪌㪏
㪈㪇㪋
㪍㪉
㪈㪇㪋
㪈㪇㪋
㪈㪇㪋
㪈㪇㪋
㪈㪇㪋
㪈㪇㪋
㪈㪌㪍
㪈㪇㪋
㪈㪇㪋
㪋㪍㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪈㪇㪘
㪌㪏
㪈㪇㪋 㪈㪇㪋
㪍㪇 㪌㪏㪄㪍㪇
㪈㪇㪍
㪈㪇㪇
㪈㪇㪊
㪈㪇㪍
㪈㪇㪋
㪈㪇㪍
㪈㪇㪌
㪈㪇㪍
㪈㪇㪍
㪈㪇㪍
㪈㪌㪐
㪈㪇㪍
㪉
㪉
㪉
㪉
㩿㪋㪅㪏㩷㪝㪠㪘㪀 㪯㪯㪆㪯㪰
㪡㪸㫇㪸㫅
㪬㪪㪘㩷㩿㪤㪠㪀
㪬㪪㪘㩷㩿㪤㪠㪀
㪬㪪㪘㩷㩿㪮㪘㪀
㪘㪚㪥㪔㪈㪇㪈
㪘㪚㪥㪔㪈㪇㪉
㪘㪚㪥㪔㪈㪇㪇
㪘㪚㪥㪔㪈㪇㪇
㪤㪄㪎㪈㪃㩷㪞㪄㪉㪍㪃㩷㪟㪄㪋㪈
㪙㪄㪍㪇
㪭㪄㪉
㪘㪄㪉㪍
㪬㪄㪎㪏
㪬㪄㪍
㪬㪄㪍
㪬㪄㪍
㪤㪄㪐㪌㪃㩷㪬㪄㪍
㪚㪄㪏㪈
㪚㪄㪏㪈
㪫㪄㪋㪌
㪫㪄㪋㪋
㪧㪄㪎㪏 㪽㫆㫉㫄㪼㫉㩷㪚㫑㪼㪺㪿㫆㫊㫃㫆㫍㪸㫂㫀㪸 㪝㪄㪉㪏
㪬㪪㪘㩷㩿㪚㪘㪃㩷㪠㪛㪀
㪩㫌㫄㪸㫅㫀㪸㩷㩿㪚㪸㫉㫇㪸㫋㪿㫀㪸㫅㫊㪀 㪩㪄㪊㪌
㪩㫌㫄㪸㫅㫀㪸㩷㩿㪚㪸㫉㫇㪸㫋㪿㫀㪸㫅㫊㪀 㪩㪄㪊㪌
㪩㫌㫄㪸㫅㫀㪸㩷㩿㪚㪸㫉㫇㪸㫋㪿㫀㪸㫅㫊㪀 㪩㪄㪊㪌
㪩㫌㫄㪸㫅㫀㪸㩷㩿㪚㪸㫉㫇㪸㫋㪿㫀㪸㫅㫊㪀 㪩㪄㪊㪌
㪬㪪㪘㩷㩿㪚㪘㪀㩷
㪩㫌㫊㫊㫀㪸
㪚㫉㫆㪸㫋㫀㪸
㪡㪸㫇㪸㫅
㪯㪯㪆㪯㪰㪃㩷㪘㪚㪥㪔㪈㪇㪇 㪡㪸㫇㪸㫅㩷㩿㪫㫆㪺㪿㫀㪾㫀㪀
㪯㪯㪆㪯㪰㪃㩷㪘㪚㪥㪔㪈㪇㪇 㪡㪸㫇㪸㫅㩷㩿㪫㫆㪺㪿㫀㪾㫀㪀
㪯㪯㪆㪯㪰㪃㩷㪘㪚㪥㪔㪈㪇㪇 㪡㪸㫇㪸㫅
㪘㪚㪥㪔㪈㪇㪇
㪊㪯
㪬㪪㪘㩷㩿㪤㪠㪀 㪬㪪㪘㩷㩿㪮㪘㪀
㪟㪄㪍
㪫㪄㪋㪎㪃㩷㪧㪄㪎㪏
㪥㪄㪉㪈
㪤㪼㫏㫀㪺㫆 㪬㪪㪘㩷㩿㪘㪢㪃㩷㪠㪛㪀
㪝㪄㪌㪉
㪦㪄㪍㪋
㪦㪄㪍㪋
㪭㪄㪉
㪭㪄㪉
㪞㪄㪌㪏㪃㩷㪭㪄㪏㪍
㪝㪄㪋㪇㪃㩷㪝㪄㪋㪊㪃㩷㪞㪄㪏㪌
㪝㪄㪌㪉
㪤㪄㪐㪌㪃㩷㪦㪄㪊㪊
㪬㪢㩷㩿㪪㪺㫆㫋㫃㪸㫅㪻㪀
㪈㪇㪍
㪤㪄㪐㪌 㪤㪄㪐㪌㪃㩷㪦㪄㪊㪊
㪺㫌㫃㫋㫌㫉㪼㩷㫇㫆㫅㪻㪃㩷㪡㪸㫇㪸㫅
㪬㪪㪘㩷㩿㪮㪘㪀㪃㩷㪚㪸㫅㪸㪻㪸
㪬㪪㪘㪃㩷㪚㪸㫅㪸㪻㪸㪃㩷㪩㫌㫊㫊㫀㪸㩷
㪩㫌㫊㫊㫀㪸㩷㩿㪢㪸㫄㪺㪿㪸㫋㫂㪸㪀
㪩㫌㫊㫊㫀㪸㩷㩿㪢㪸㫄㪺㪿㪸㫋㫂㪸㪀
㪩㫌㫊㫊㫀㪸㩷㩿㪢㪸㫄㪺㪿㪸㫋㫂㪸㪀
㪩㫌㫊㫊㫀㪸㩷㩿㪢㪸㫄㪺㪿㪸㫋㫂㪸㪀
㪡㪸㫇㪸㫅
㪡㪸㫇㪸㫅
㪡㪸㫇㪸㫅
㪬㪄㪎㪉㪃㩷㪝㪄㪌㪉
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
㪌㪏
㩿㪋㪅㪐㪁㩷㪝㪚㪤㪀
㫃㪸㪺㫌㫊㫋㫉㫀㫅㪼
㪻㫀㪸㪻㫉㫆㫄㫆㫌㫊
㪘㪚㪥㪔㪈㪇㪇
㪯㪰㪃㩷㪘㪚㪥㪔㪈㪇㪇
㪘㪚㪥㪔㪈㪇㪇
㪘㪚㪥㪔㪈㪇㪇
㪡㪸㫇㪸㫅
㪡㪸㫇㪸㫅
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪌㪏㪄㪍㪊
㪉
㩿㪌㪅㪉㪃㩷㪌㪅㪋㩷㪝㪚㪤㪀
㩿㪌㪅㪉㩷㪝㪛㪀
㪋㪅㪊㩷㪝㪛
㪍㪅㪍㩷㪝㪛
㪘㪚㪥㪔㪈㪇㪇
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪧㪄㪌㪋㪃㩷㪧㪄㪐㪊㪃㩷㪫㪄㪋㪎㪃㩷㪡㪄㪈㪌
㪈㪇㪋
㪈㪇㪏
㪈㪇㪍
㪈㪇㪍
㪈㪇㪍
㪈㪉㪋
㪈㪉㪋
㪈㪉㪋
㪞 㪟 㪠 㪥㪝㪉 㪘㪾㪄 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㪥㪦㪩㫊 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪬㪪㪘㩷㩿㪘㪢㪄㪚㪘㪀
㪈㪇㪋
㪍㪋 㪌㪏㪄㪍㪇
㪋㪋㩷㪤㪆㪪㪤㩷㪂㩷㪈㪍㩷㪪㪫㪆㪘
㪋㪋㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪈㪉㪘
㪍㪇
㪈㪇㪋
㪈㪇㪋
㪋㪍㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪈㪇㪘
㪌㪏 㪍㪇
㪈㪇㪋
㪌㪏㪄㪍㪇
㪈㪇㪋 㪈㪇㪍㪄㪈㪇㪏
㪍㪇㪄㪍㪉
㪌㪏
㪌㪏
㪈㪇㪇
㪋㪍㩷㪤㪆㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪈㪇㪘
㪊㪋㩷㪤㪆㪪㪤㩷㪂㩷㪉㪋㪪㪫㩷㪂㩷㪏㪘
㪍㪍
㪈㪇㪇
㪈㪇㪋
㪊㪋㩷㪤㪆㪪㪤㩷㪂㩷㪉㪋㪪㪫㩷㪂㩷㪏㪘
㪍㪍
㪈㪇㪇
㪈㪇㪋
㪝 㪥㪝㪈
㪋㪍㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪈㪇㪘
㪊㪋㩷㪤㪆㪪㪤㩷㪂㩷㪉㪋㪪㪫㩷㪂㩷㪏㪘
㪍㪍
㪊㪏㩷㪤㪆㪪㪤㩷㪂㩷㪉㪏㩷㪪㪫㪆㪘
㪍㪍
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪍㪍
㪛 㪉㫅
124
㪦㫅㪺㫆㫉㪿㫐㫅㪺㪿㫌㫊 㪦㫅㪺㫆㫉㪿㫐㫅㪺㪿㫌㫊 㪦㫅㪺㫆㫉㪿㫐㫅㪺㪿㫌㫊 㪦㫅㪺㫆㫉㪿㫐㫅㪺㪿㫌㫊 㪦㫅㪺㫆㫉㪿㫐㫅㪺㪿㫌㫊 㪦㫅㪺㫆㫉㪿㫐㫅㪺㪿㫌㫊 㪦㫅㪺㫆㫉㪿㫐㫅㪺㪿㫌㫊 㪦㫅㪺㫆㫉㪿㫐㫅㪺㪿㫌㫊 㪦㫅㪺㫆㫉㪿㫐㫅㪺㪿㫌㫊 㪦㫅㪺㫆㫉㪿㫐㫅㪺㪿㫌㫊 㪦㫅㪺㫆㫉㪿㫐㫅㪺㪿㫌㫊 㪦㫅㪺㫆㫉㪿㫐㫅㪺㪿㫌㫊 㪦㫅㪺㫆㫉㪿㫐㫅㪺㪿㫌㫊 㪦㫅㪺㫆㫉㪿㫐㫅㪺㪿㫌㫊 㪦㫅㪺㫆㫉㪿㫐㫅㪺㪿㫌㫊 㪦㫅㪺㫆㫉㪿㫐㫅㪺㪿㫌㫊 㪦㫅㪺㫆㫉㪿㫐㫅㪺㪿㫌㫊 㪦㫅㪺㫆㫉㪿㫐㫅㪺㪿㫌㫊 㪪㪸㫃㫄㫆 㪪㪸㫃㫄㫆 㪪㪸㫃㫄㫆 㪪㪸㫃㫄㫆 㪪㪸㫃㫄㫆 㪪㪸㫃㫄㫆 㪪㪸㫃㫄㫆 㪪㪸㫃㫄㫆 㪪㪸㫃㫄㫆 㪪㪸㫃㫄㫆 㪪㪸㫃㫄㫆 㪪㪸㫃㫄㫆 㪪㪸㫃㫄㫆 㪪㪸㫃㫄㫆 㪪㪸㫃㫄㫆 㪪㪸㫃㫄㫆 㪪㪸㫃㫄㫆
㪺㪸㫉㫇㫀㫆 㫀㫊㪺㪿㪺㪿㪸㫅㩷㪸㪼㫊㫋㫀㫍㪸㫃㫀㫊 㫀㫊㪺㪿㪺㪿㪸㫅㩷㪻㪸㫅㫀㫃㪼㫎㫊㫂㫀㫀 㫀㫊㪺㪿㪺㪿㪸㫅㩷㪾㪼㪾㪸㫉㫂㫌㫅㫀 㫀㫊㪺㪿㪺㪿㪸㫅㩷㫀㫊㪺㪿㪺㪿㪸㫅 㫃㪼㫋㫅㫀㪺㪸 㫄㪸㫉㫄㫆㫉㪸㫋㫌㫊 㫆㪹㫋㫌㫊㫀㫉㫆㫊㫋㫉㫀㫊 㫊㪸㫃㪸㫉 㫊㪸㫃㪸㫉 㫊㪸㫃㪸㫉 㫊㪸㫃㪸㫉 㫊㪸㫃㪸㫉 㫊㪸㫃㪸㫉 㫊㪸㫃㪸㫉 㫊㪸㫃㪸㫉 㫊㪸㫃㪸㫉
㫊㫇㪅
㫄㫐㫂㫀㫊㫊 㫅㪼㫉㫂㪸 㫅㪼㫉㫂㪸 㫅㪼㫉㫂㪸 㫅㪼㫉㫂㪸 㫅㪼㫉㫂㪸 㫅㪼㫉㫂㪸 㫅㪼㫉㫂㪸 㫅㪼㫉㫂㪸 㫅㪼㫉㫂㪸 㫅㪼㫉㫂㪸 㫅㪼㫉㫂㪸 㫇㪼㫅㫊㪿㫀㫅㪼㫅㫊㫀㫊 㫋㫊㪿㪸㫎㫐㫋㫊㪺㪿㪸 㫋㫊㪿㪸㫎㫐㫋㫊㪺㪿㪸 㫋㫊㪿㪸㫎㫐㫋㫊㪺㪿㪸 㫋㫊㪿㪸㫎㫐㫋㫊㪺㪿㪸
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪝㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷
㪤
㪍㪏
㪈㪍㪤㩷㪂㩷㪍㪋㪘
㪏㪇
㪈㪍㩷㪤㪆㪪㪤㩷㪂㩷㪋㪉㪘 㪈㪋㩷㪤㪆㪪㪤㩷㪂㩷㪋㪉㪘 㪈㪏㩷㪤㪆㪪㪤㩷㪂㩷㪊㪏㪘 㪈㪍㩷㪤㪆㪪㪤㩷㪂㩷㪋㪈㪘 㪈㪋㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪋㪉㪘 㪈㪋㩷㪤㪆㪪㪤㩷㪂㩷㪋㪋㪘 㪈㪍㩷㪤㪆㪪㪤㩷㪂㩷㪋㪉㪘 㪈㪍㩷㪤㪆㪪㪤㩷㪂㩷㪋㪉㪘
㪌㪍 㪌㪍 㪌㪎 㪌㪏 㪌㪏 㪌㪏 㪌㪏
㪈㪏㩷㪤㪆㪪㪤㩷㪂㩷㪊㪍㪘
㪌㪋 㪌㪏
㪈㪉㩷㪤㪆㪪㪤㩷㪂㩷㪎㪇㪘
㪝㪃㩷㪤
㪉㪉㩷㪤㪆㪪㪤㩷㪂㩷㪌㪏㪘
㪏㪇
㪏㪇
㪈㪏㪤㩷㪂㩷㪍㪉㪘
㪏㪇
㪎㪋
㪎㪋
㪎㪉
㪎㪋
㪎㪊
㪎㪋
㪎㪇
㪎㪋
㪎㪉
㪐㪋
㪈㪇㪉
㪈㪇㪋
㪐㪍
㪐㪏
㪐㪏
㪈㪇㪇
㪈㪏㪤㩷㪂㩷㪍㪋㪘 㪈㪍㪤㩷㪂㩷㪍㪍㪘
㪏㪉 㪏㪉
㪐㪏
㪈㪇㪋
㪈㪇㪇
㪈㪇㪋
㪈㪇㪋
㪈㪇㪋
㪈㪇㪉
㪈㪇㪋
㪈㪇㪋
㪏㪇
㪌㪏
㪪㪸㫃㫄㫆㫋㪿㫐㫄㫌㫊㩷㫆㪅㩷㫆㫏㫐㫉㪿㫐㫅㪺㪿㫌㫊 㪏㪉
㪪㪸㫃㫄㫆
㪊㪍㩷㪤㪆㪪㪤㩷㪂㩷㪊㪉㪘
㪍㪏 㪊㪉㩷㪤㪆㪪㪤㩷㪂㩷㪉㪏㪪㪫㩷㪂㩷㪏㪘
㪊㪉㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪊㪉㪘
㪍㪏 㪍㪏
㪋㪍㩷㪤㪆㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪈㪇㪘
㪌㪏
㪝㪃㩷㪤
㪪㪸㫃㫄㫆
㪤
㪋㪎㩷㪤㪆㪪㪤㩷㪂㩷㪈㪇㪘 㪋㪋㩷㪤㪆㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪈㪉㪘
㪌㪎 㪌㪏
㪤
㪋㪍㩷㪤㪆㪪㪤㩷㪂㩷㪈㪉㪘
㪌㪏
㪝
㪈㪇㪉
㪌㪎
㪝 㪋㪌㩷㪤㪆㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪈㪇㪘
㪈㪇㪋 㪈㪇㪉 㪈㪇㪋
㪋㪍㩷㪤㪆㪪㪤㩷㪂㩷㪈㪇㪘 㪋㪋㩷㪤㪆㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪈㪉㪘
㪈㪇㪋
㪈㪇㪉
㪌㪎
㪌㪏
㪝
㪋㪌㩷㪤㪆㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪈㪇㪘
㪈㪇㪉
㪌㪍 㪌㪏
㪌㪎
㪤
㪋㪋㩷㪤㪆㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪈㪉㪘
㪈㪇㪋
㪈㪇㪋
㪝 㪥㪝㪈
㪤
㪌㪏
㪋㪋㩷㪤㪆㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪈㪋㪘 㪋㪋㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪈㪉㪘
㪍㪇
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪌㪏
㪛 㪉㫅
㪝
㪚 㪪㪼㫏
㩷㪟㫀㫄㪼㫄㪸㫊㫌 㩷㪟㫀㫄㪼㫄㪸㫊㫌 㩷㪟㫀㫄㪼㫄㪸㫊㫌
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉 㪧㪻㪛㩷㪍㪍
㪫㪸㪹㫃㪼㩷㪍㪅㪈㪎㩷㩷㪦㫉㪻㪼㫉㩷㪪㪘㪣㪤㪦㪥㪠㪝㪦㪩㪤㪜㪪㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀
㪎㪋
㪎㪋
㪎㪉
㪎㪋
㪎㪊
㪎㪋
㪎㪇
㪎㪋
㪎㪉
㪐㪋
㪈㪇㪉
㪐㪍
㪐㪏
㪐㪏
㪈㪇㪇
㪈㪉㪇
㪈㪉㪏
㪈㪇㪋
㪈㪇㪋
㪈㪇㪍
㪈㪇㪋
㪈㪇㪋
㪈㪇㪋
㪈㪇㪋
㪈㪇㪉 㪈㪇㪋
㪈㪇㪋
㪈㪇㪋
㪈㪇㪋
㪈㪇㪍
㪉
㪉
㪉
㩿㪍㪅㪉㩷㪝㪚㪤㪀
㩿㪌㪅㪉㪁㩷㪝㪚㪤㪃㩷㪋㪅㪐㩷㪝㪠㪘㪀
㩿㪍㪅㪈㩷㪝㪛㪀
㩿㪌㪅㪌㪄㪌㪅㪐㪁㩷㪝㪚㪤㪀
㩿㪍㪅㪈㩷㪝㪛㪀
㪞 㪟 㪠 㪥㪝㪉 㪘㪾㪄 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㪥㪦㪩㫊 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪡㪸㫇㪸㫅㩷㩿㪫㫆㪺㪿㫀㪾㫀㪀
㪘㪚㪥㪔㪐㪏
㪘㪚㪥㪔㪐㪏
㪘㪚㪥㪔㪐㪏
㪘㪚㪥㪔㪐㪎
㪘㪚㪥㪔㪐㪏
㪘㪚㪥㪔㪐㪋
㪘㪚㪥㪔㪐㪏
㪘㪚㪥㪔㪐㪉
㪘㪚㪥㪔㪐㪏
㪘㪚㪥㪔㪈㪇㪇
㪘㪚㪥㪔㪐㪏
㪘㪚㪥㪔㪈㪇㪇
㪘㪚㪥㪔㪈㪇㪇
㪘㪚㪥㪔㪈㪇㪇
㪘㪚㪥㪔㪈㪇㪇
㪘㪚㪥㪔㪈㪇㪇
㪘㪚㪥㪔㪈㪇㪉
㪱㪄㪈㪈
㪱㪄㪈㪈㪃㩷㪭㪄㪏㪍
㪬㪄㪎㪊
㪙㪄㪈㪏
㪘㪄㪉㪍
㪧㪄㪊㪋
㪛㪄㪉㪉㪃㩷㪩㪄㪐㪏
㪛㪄㪉㪉㪃㩷㪩㪄㪐㪏
㪛㪄㪉㪉㪃㩷㪩㪄㪐㪏
㪛㪄㪉㪉㪃㩷㪩㪄㪐㪏
㪧㪄㪊㪋
㪞㪄㪉㪍
㪞㪄㪌㪍
㪤㪄㪐㪌
㪪㪄㪎㪈
㪧㪄㪉㪏㪃㩷㪧㪄㪐㪊㪃㩷㪡㪄㪈㪌㪃㩷㪟㪄㪋㪈
㪞㪄㪌㪏
㪪㪄㪈㪋㪃㩷㪤㪄㪐㪌
㪬㪄㪌㪃㩷㪬㪄㪎㪉
㪬㪄㪌㪃㩷㪬㪄㪎㪉㪃㩷㪦㪄㪊㪊
㪫㪄㪋㪍
㪪㪄㪎㪈 㪫㪄㪋㪍㪃㩷㪡㪄㪈㪌㪃㩷㪧㪄㪊㪈㪃㩷㪧㪄㪐㪊
㪝㪄㪋㪋
㪝㪄㪋㪋
㪪㪄㪍㪇㪃㩷㪪㪄㪍㪈
㪪㪄㪍㪇㪃㩷㪪㪄㪍㪈
㪞㪄㪌㪌㪃㩷㪦㪄㪊㪊
㪪㫎㪼㪻㪼㫅
㪩㫌㫊㫊㫀㪸㩷㩿㪥㪼㫍㪸㪀
㪩㫌㫊㫊㫀㪸㩷㩿㪥㪼㫍㪸㪀
㪩㫌㫊㫊㫀㪸㩷㩿㪣㪸㫂㪼㩷㪣㪸㪻㫆㪾㪸㪀
㪥㪄㪊㪐㪃㩷㪥㪄㪋㪏
㪙㪄㪎㪃㩷㪙㪄㪏
㪙㪄㪎㪃㩷㪙㪄㪏
㪱㪄㪈㪇
㪩㫌㫊㫊㫀㪸㩷㩿㪮㪿㫀㫋㪼㩷㪪㪼㪸㩷㪹㪸㫊㫀㫅㪀 㪱㪄㪊㪊
㪩㫌㫊㫊㫀㪸㩷㩿㪮㪿㫀㫋㪼㩷㪪㪼㪸㩷㪹㪸㫊㫀㫅㪀 㪱㪄㪊㪊
㪩㫌㫊㫊㫀㪸㩷㩿㪣㪸㫂㪼㩷㪦㫅㪼㪾㪸㪀
㪩㫌㫊㫊㫀㪸㩷㩿㪣㪸㫂㪼㩷㪦㫅㪼㪾㪸㪀
㪘㫋㫃㪸㫅㫋㫀㪺
㪽㫆㫉㫄㪼㫉㩷㪰㫌㪾㫆㫊㫃㪸㫍㫀㪸
㪚㫉㫆㪸㫋㫀㪸
㪤㪸㪺㪼㪻㫆㫅㫀㪸
㪘㫉㫄㪼㫅㫀㪸㩷㩿㪪㪼㫍㪸㫅㩷㪹㪸㫊㫀㫅㪀
㪘㫉㫄㪼㫅㫀㪸㩷㩿㪪㪼㫍㪸㫅㩷㪹㪸㫊㫀㫅㪀
㪘㫉㫄㪼㫅㫀㪸㩷㩿㪪㪼㫍㪸㫅㩷㪹㪸㫊㫀㫅㪀
㪘㫉㫄㪼㫅㫀㪸㩷㩿㪪㪼㫍㪸㫅㩷㪹㪸㫊㫀㫅㪀
㪠㫋㪸㫃㫐
㪬㪪㪘㩷㩿㪚㪘㪅㪃㩷㪦㪩㪀
㪩㫌㫊㫊㫀㪸㩷㩿㪢㪸㫄㪺㪿㪸㫋㫂㪸㪀
㪮㪅㩷㪧㪸㪺㫀㪽㫀㪺
㪬㪪㪘㩷㩿㪮㪘㪀
㪬㪪㪘㪃㩷㪜㪅㩷㪧㪸㪺㫀㪽㫀㪺
㪩㫌㫊㫊㫀㪸㩷㩿㪢㪸㫄㪺㪿㪸㫋㫂㪸㪀
㪡㪸㫇㪸㫅
㪯㪈㪯㪉㪰
㪬㪪㪘㩷㩿㪮㪘㪀
㪚㪸㫅㪸㪻㪸㩷㩿㪙㪅㪚㪅㪀 㪬㪪㪘㩷㩿㪮㪘㪀
㪩㫌㫊㫊㫀㪸
㪩㫌㫊㫊㫀㪸
㪩㫌㫊㫊㫀㪸㩷㩿㪢㪸㫄㪺㪿㪸㫋㫂㪸㪀
㪩㫌㫊㫊㫀㪸㩷㩿㪢㪸㫄㪺㪿㪸㫋㫂㪸㪀
㪩㫌㫊㫊㫀㪸㩷㩿㪢㪸㫄㪺㪿㪸㫋㫂㪸㪀
㪡㪸㫇㪸㫅㩷㩿㪫㫆㪺㪿㫀㪾㫀㪀
㪘㪚㪥㪔㪈㪇㪉
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
㪽㫆㫉㫄㪼㫉㩷㪚㫑㪼㪺㪿㫆㫊㫃㫆㫍㪸㫂㫀㪸 㪝㪄㪉㪏
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪯㪈㪯㪈㪯㪉㪯㪉
㪯㪈㪯㪉㪰
㪯㪈㪯㪈㪯㪉㪯㪉
㪪㪼㫏㩷㪺㪿㫉㫆㫄㪅
㪪㪼㫏㩷㪺㪿㫉㫆㫄㪅
㪘㪚㪥㪔㪈㪇㪉
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
125
㪪㪸㫃㫄㫆 㪪㪸㫃㫄㫆 㪪㪸㫃㫄㫆 㪪㪸㫃㫄㫆 㪪㪸㫃㫄㫆 㪪㪸㫃㫄㫆 㪪㪸㫃㫄㫆 㪪㪸㫃㫄㫆 㪪㪸㫃㫄㫆 㪪㪸㫃㫄㫆 㪪㪸㫃㫄㫆 㪪㪸㫃㫄㫆 㪪㪸㫃㫄㫆 㪪㪸㫃㫄㫆 㪪㪸㫃㫄㫆 㪪㪸㫃㫄㫆 㪪㪸㫃㫄㫆 㪪㪸㫃㫄㫆 㪪㪸㫃㫄㫆 㪪㪸㫃㫄㫆 㪪㪸㫃㫄㫆 㪪㪸㫃㫄㫆 㪪㪸㫃㫄㫆 㪪㪸㫃㫄㫆 㪪㪸㫃㫄㫆 㪪㪸㫃㫄㫆 㪪㪸㫃㫄㫆 㪪㪸㫃㫄㫆 㪪㪸㫃㫄㫆 㪪㪸㫃㫄㫆 㪪㪸㫃㫄㫆 㪪㪸㫃㫍㪼㫃㫀㫅㫌㫊 㪪㪸㫃㫍㪼㫃㫀㫅㫌㫊 㪪㪸㫃㫍㪼㫃㫀㫅㫌㫊 㪪㪸㫃㫍㪼㫃㫀㫅㫌㫊
㫊㪸㫃㪸㫉 㫊㪸㫃㪸㫉 㫊㪸㫃㪸㫉 㫊㪸㫃㪸㫉 㫊㪸㫃㪸㫉 㫊㪸㫃㪸㫉 㫊㪸㫃㪸㫉 㫊㪸㫃㪸㫉 㫊㪸㫃㪸㫉 㫊㪸㫃㪸㫉㩷㫊㪸㫃㪸㫉 㫊㪸㫃㪸㫉㩷㫊㪸㫃㪸㫉 㫊㪸㫃㪸㫉㩷㫊㪼㪹㪸㪾㫆 㫊㪸㫃㪸㫉㩷㫊㪼㪹㪸㪾㫆 㫋㫉㫌㫋㫋㪸 㫋㫉㫌㫋㫋㪸 㫋㫉㫌㫋㫋㪸 㫋㫉㫌㫋㫋㪸 㫋㫉㫌㫋㫋㪸 㫋㫉㫌㫋㫋㪸 㫋㫉㫌㫋㫋㪸 㫋㫉㫌㫋㫋㪸 㫋㫉㫌㫋㫋㪸 㫋㫉㫌㫋㫋㪸 㫋㫉㫌㫋㫋㪸 㫋㫉㫌㫋㫋㪸 㫋㫉㫌㫋㫋㪸 㫋㫉㫌㫋㫋㪸 㫋㫉㫌㫋㫋㪸 㫋㫉㫌㫋㫋㪸 㫋㫉㫌㫋㫋㪸 㫋㫉㫌㫋㫋㪸㩷㫆㫏㫀㪸㫅㫌㫊 㪸㫃㪹㫌㫊 㪸㫃㫇㫀㫅㫌㫊 㪸㫃㫇㫀㫅㫌㫊 㪸㫃㫇㫀㫅㫌㫊
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪝㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷
㫋㫉㫌㫋㫋㪸㩷㪽㪸㫉㫀㫆 㫋㫉㫌㫋㫋㪸㩷㪽㪸㫉㫀㫆 㫋㫉㫌㫋㫋㪸㩷㪽㪸㫉㫀㫆 㫋㫉㫌㫋㫋㪸㩷 㫄㪅㩷㪽㪸㫉㫀㫆 㫋㫉㫌㫋㫋㪸㩷 㫄㪅㩷㪽㪸㫉㫀㫆 㫋㫉㫌㫋㫋㪸㩷 㫄㪅㩷㫋㫉㫌㫋㫋㪸 㫋㫉㫌㫋㫋㪸㩷 㫄㪅㩷㫋㫉㫌㫋㫋㪸
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪫㪸㪹㫃㪼㩷㪍㪅㪈㪎㩷㩷㪦㫉㪻㪼㫉㩷㪪㪘㪣㪤㪦㪥㪠㪝㪦㪩㪤㪜㪪㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀
㪝
㪝㪃㩷㪤
㪚 㪪㪼㫏
㪈㪇㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪋㪉㪘
㪈㪎㩷㪤㪆㪪㪤㩷㪂㩷㪋㪇㪘 㪈㪏㩷㪤㪆㪪㪤㩷㪂㩷㪊㪏㪘 㪈㪍㩷㪤㪆㪪㪤㩷㪂㩷㪋㪉㪘
㪌㪎 㪌㪍 㪌㪏
㪈㪇㪉
㪈㪍㪤㩷㪂㩷㪍㪏㪘 㪈㪋㪤㩷㪂㩷㪏㪪㪤㩷㪂㩷㪌㪏㪘
㪏㪋 㪏㪇 㪎㪎㪄㪏㪉 㪉㪇㪄㪉㪌㩷㪤㪆㪪㪤㩷㪂㩷㪌㪉㪄㪍㪉㩷㪪㪫㪆㪘
㪈㪇㪉
㪈㪇㪉
㪉㪄㪊 㩷㩿㪌㪅㪐㩷㪝㪚㪤㪃㩷㪌㪅㪌㩷㪝㪛㪀
㪉
㪘㪚㪥㪔㪐㪏
㫄㫀㪾㫉㪸㫋㫆㫉㫐㩷
㪪㫇㪸㫀㫅㩷㩿㪞㪸㫃㫀㪺㫀㪸㪀
㪧㫆㫃㪸㫅㪻
㪧㫆㫃㪸㫅㪻
㪚㫉㫆㪸㫋㫀㪸
㪪㫇㪸㫀㫅
㪪㫇㪸㫀㫅
㪤㪄㪋㪇㪃㩷㪤㪄㪈㪊㪎㪃㩷㪞㪄㪏㪌
㪮㪄㪉㪐
㪮㪄㪉㪏
㪘㪄㪉㪍
㪤㪄㪏㪈
㪤㪄㪏㪈
㪈㪏㩷㪤㪆㪪㪤㩷㪂㩷㪍㪋㩷㪪㪫㪆㪘 㪉㪇㩷㪤㪆㪪㪤㩷㪂㩷㪍㪇㩷㪪㪫㪆㪘
㪏㪉 㪏㪇
㪈㪇㪇
㪈㪇㪇
㪘㪚㪥㪔㪐㪏
㪩㫌㫊㫊㫀㪸㩷㩿㪢㪸㫄㪺㪿㪸㫋㫂㪸㪀
㪩㫌㫊㫊㫀㪸㩷㩿㪢㪸㫄㪺㪿㪸㫋㫂㪸㪀
㪩㫌㫊㫊㫀㪸㩷㩿㪢㪸㫄㪺㪿㪸㫋㫂㪸㪀
㪭㪄㪎㪋
㪭㪄㪎㪋
㪭㪄㪎㪋
㪧㪄㪊㪋
㪩㫌㫊㫊㫀㪸
㪈㪏㩷㪤㪆㪪㪤㩷㪂㩷㪍㪉㩷㪪㪫㪆㪘
㪏㪇
㪈㪇㪉
㪬㪄㪎㪎
㪐㪏
㪈㪋㪤㩷㪂㩷㪏㪪㪤㩷㪂㩷㪌㪏㪘
㪏㪇
㪈㪇㪉
㪈㪇㪉
㪘㪚㪥㪔㪈㪇㪇
㪘㪚㪥㪔㪈㪇㪇
㪡㪸㫇㪸㫅㩷㩿㪫㫆㪺㪿㫀㪾㫀㪀
㪩㫌㫄㪸㫅㫀㪸㩷㩿㪚㪸㫉㫇㪸㫋㪿㫀㪸㫅㫊㪀 㪩㪄㪊㪌㪃㩷㪞㪄㪏㪌
㪈㪇㪇
㪈㪋㪤㩷㪂㩷㪏㪪㪤㩷㪂㩷㪌㪏㪘
㪘㪚㪥㪔㪈㪇㪇 㪘㪚㪥㪔㪈㪇㪇
㪟㪄㪍 㪛㪄㪉㪉
㪎㪏㪄㪏㪇
㪉㪉㩷㪤㪆㪪㪤㩷㪂㩷㪌㪏㩷㪪㪫㪆㪘
㪏㪇 㪏㪇
㪈㪇㪇
㩿㪍㪅㪊㩷㪝㪚㪤㪃㩷㪌㪅㪏㩷㪝㪛㪀
㪘㫉㫄㪼㫅㫀㪸㩷㩿㪭㪼㪻㪸㩷㪩㪅㪀
㪏㪉㪄㪏㪋 㪈㪍㪄㪈㪏㩷㪤㪆㪪㪤㩷㪂㩷㪍㪋㪄㪍㪏㩷㪪㪫㪆㪘
㪉㪇㩷㪤㪆㪪㪤㩷㪂㩷㪍㪇㩷㪪㪫㪆㪘
㪏㪇
㪈㪇㪉
㪈㪇㪉
㪈㪇㪋
㪐㪏
㪟㪄㪍㪃㩷㪡㪄㪈㪌
㪞㪄㪉㪊
㪥㪄㪋㪋㪃㩷㪥㪄㪌㪈
㪱㪄㪈㪋
㪮㪄㪉㪐
㪩㪄㪐㪐㪃㩷㪫㪄㪎㪊
㪩㪄㪐㪐㪃㩷㪭㪄㪏㪍
㪙㪄㪍㪊
㪙㪄㪍㪊
㪙㪄㪍㪊
㪙㪄㪍㪊
㪧㪄㪊㪈㪃㩷㪧㪄㪌㪋㪃㩷㪟㪄㪋㪇
㪥㪄㪋㪏
㪟㪄㪎
㪟㪄㪎
㪟㪄㪈㪇
㪟㪄㪎㪃㩷㪡㪄㪈㪌
㪞㪄㪉㪊
㪙㪄㪋㪉
㪥㪄㪊㪐
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
㪢㫐㫉㪾㫐㫑㫊㫋㪸㫅㩷㩿㪢㫐㫑㫐㫃㫊㫌㩷㪩㪅㪀 㪤㪄㪌㪐
㪉㪊㩷㪤㪆㪪㪤㪆㪪㪫㩷㪂㩷㪌㪍㪘
㪈㪇㪋
㪐㪏
㪐㪏
㪬㪢㩷㩿㪪㪺㫆㫋㫃㪸㫅㪻㪀
㪬㪢㩷㩿㪪㪺㫆㫋㫃㪸㫅㪻㪀
㪥㫆㫉㫎㪸㫐
㪪㫎㪼㪻㪼㫅㩷㩿㪤㫆㫉㫉㫌㫄㪀
㪞㪼㫉㫄㪸㫅㫐
㪧㫆㫃㪸㫅㪻
㪘㫉㫄㪼㫅㫀㪸㩷㩿㪘㫉㪾㫀㪺㪿㫀㩷㪩㪅㪀
㪘㫉㫄㪼㫅㫀㪸㩷㩿㪤㪸㫉㫄㪸㫉㫀㫂㩷㪩㪅㪀
㩿㪬㪪㪘㪃㩷㪣㪸㫂㪼㩷㪪㪼㪹㪸㪾㫆㪀
㩿㪬㪪㪘㪃㩷㪣㪸㫂㪼㩷㪪㪼㪹㪸㪾㫆㪀
㪘㫋㫃㪸㫅㫋㫀㪺
㪚㪸㫅㪸㪻㪸㩷㩿㪚㪿㪸㫃㪼㫌㫉㩷㪙㪸㫐㪀
㪬㪢㩷㩿㪪㪺㫆㫋㫃㪸㫅㪻㪀
㪬㪢㩷㩿㪪㪺㫆㫋㫃㪸㫅㪻㪀
㪬㪢㩷㩿㪪㪺㫆㫋㫃㪸㫅㪻㪀
㪬㪢㩷㩿㪪㪺㫆㫋㫃㪸㫅㪻㪀
㪥㫆㫉㫎㪸㫐
㪥㫆㫉㫎㪸㫐
㪪㫎㪼㪻㪼㫅
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪐㪏
㪉㪉㩷㪤㪆㪪㪤㪆㪪㪫㩷㪂㩷㪌㪏㪘
㪏㪇 㪎㪐
㪈㪏㩷㪤㪆㪪㪤㩷㪂㩷㪍㪉㩷㪪㪫㪆㪘 㪉㪋㩷㪤㪆㪪㪤㩷㪂㩷㪌㪍㪘
㪏㪇
㪏㪇
㪉㪇㩷㪤㪆㪪㪤㩷㪂㩷㪌㪏㪘
㩿㪌㪅㪉㪁㩷㪝㪚㪤㪀
㪎㪏
㪈㪇㪈
㪘㪚㪥㪔㪈㪇㪇
㪈㪇㪈
㪉㪈㪤㪆㪪㪤㩷㪂㩷㪌㪐㪘
㪘㪚㪥㪔㪈㪇㪇
㪘㪚㪥㪔㪈㪇㪇
㪉㪉㪤㪆㪪㪤㩷㪂㩷㪌㪏㪘
㪋
㩿㪌㪅㪐㩷㪝㪚㪤㪀
㪏㪇
㪈㪇㪉
㪉
㩿㪍㪅㪈㩷㪝㪚㪤㪀
㩿㪍㪅㪉㪄㪍㪅㪌㩷㪝㪠㪘㪀
㪘㪚㪥㪔㪐㪏
㪘㪚㪥㪔㪐㪏
㪘㪚㪥㪔㪐㪏
㪏㪇
㪈㪇㪉
㪈㪇㪉
㪈㪇㪇
㪉
㩿㪍㪅㪇㪁㩷㪝㪚㪤㪀
㪘㪚㪥㪔㪐㪏
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㫄㫀㪾㫉㪸㫋㫆㫉㫐㩷
㪈㪇㪇
㪈㪇㪇
㪐㪏
㪎㪋
㪎㪋
㪎㪋
㪎㪋
㪎㪋
㪎㪉
㪞 㪟 㪠 㪥㪝㪉 㪘㪾㪄 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㪥㪦㪩㫊 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪏㪇
㪉㪇㩷㪤㪆㪪㪤㩷㪂㩷㪍㪇㩷㪪㪫㪆㪘
㪈㪇㪉
㪈㪍㪤㩷㪂㩷㪍㪍㪘
㪏㪉
㪏㪇
㪎㪉
㪌㪍 㪐㪏
㪎㪉 㪈㪍㩷㪤㪆㪪㪤㩷㪂㩷㪋㪇㩷㪪㪫㪆㪘
㪌㪍㪄㪌㪎
㪎㪉 㪎㪉
㪌㪋
㪎㪋
㪎㪋
㪎㪋
㪎㪋
㪎㪋
㪎㪋
㪎㪉
㪝 㪥㪝㪈
㪌㪋㪄㪌㪍 㪈㪏㩷㪤㪆㪪㪤㩷㪂㩷㪊㪍㩷㪪㪫㪆㪘
㪈㪍㪤㩷㪂㩷㪋㪉㩷㪪㪫㪆㪘
㪌㪏
㪌㪍
㪈㪍㩷㪤㪆㪪㪤㩷㪂㩷㪋㪉㪘
㪌㪏
㪌㪎㪄㪌㪐
㪈㪍㩷㪤㪆㪪㪤㩷㪂㩷㪋㪇㪘
㪌㪏
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪌㪍
㪛 㪉㫅
126
㪪㪸㫃㫍㪼㫃㫀㫅㫌㫊 㪪㪸㫃㫍㪼㫃㫀㫅㫌㫊 㪪㪸㫃㫍㪼㫃㫀㫅㫌㫊 㪪㪸㫃㫍㪼㫃㫀㫅㫌㫊 㪪㪸㫃㫍㪼㫃㫀㫅㫌㫊 㪪㪸㫃㫍㪼㫃㫀㫅㫌㫊 㪪㪸㫃㫍㪼㫃㫀㫅㫌㫊 㪪㪸㫃㫍㪼㫃㫀㫅㫌㫊 㪪㪸㫃㫍㪼㫃㫀㫅㫌㫊 㪪㪸㫃㫍㪼㫃㫀㫅㫌㫊 㪪㪸㫃㫍㪼㫃㫀㫅㫌㫊 㪪㪸㫃㫍㪼㫃㫀㫅㫌㫊 㪪㪸㫃㫍㪼㫃㫀㫅㫌㫊 㪪㪸㫃㫍㪼㫃㫀㫅㫌㫊 㪪㪸㫃㫍㪼㫃㫀㫅㫌㫊 㪪㪸㫃㫍㪼㫃㫀㫅㫌㫊 㪪㪸㫃㫍㪼㫃㫀㫅㫌㫊 㪪㪸㫃㫍㪼㫃㫀㫅㫌㫊 㪪㪸㫃㫍㪼㫃㫀㫅㫌㫊 㪪㪸㫃㫍㪼㫃㫀㫅㫌㫊 㪪㪸㫃㫍㪼㫃㫀㫅㫌㫊 㪪㪸㫃㫍㪼㫃㫀㫅㫌㫊 㪪㪸㫃㫍㪼㫃㫀㫅㫌㫊 㪪㪸㫃㫍㪼㫃㫀㫅㫌㫊 㪪㪸㫃㫍㪼㫃㫀㫅㫌㫊 㪪㪸㫃㫍㪼㫃㫀㫅㫌㫊 㪪㪸㫃㫍㪼㫃㫀㫅㫌㫊 㪪㪸㫃㫍㪼㫃㫀㫅㫌㫊 㪪㪸㫃㫍㪼㫃㫀㫅㫌㫊 㪪㪸㫃㫍㪼㫃㫀㫅㫌㫊 㪪㪸㫃㫍㪼㫃㫀㫅㫌㫊 㪪㪸㫃㫍㪼㫃㫀㫅㫌㫊 㪪㪸㫃㫍㪼㫃㫀㫅㫌㫊 㪪㪸㫃㫍㪼㫋㪿㫐㫄㫌㫊
㪸㫃㫇㫀㫅㫌㫊 㪸㫃㫇㫀㫅㫌㫊 㪸㫃㫇㫀㫅㫌㫊 㪸㫃㫇㫀㫅㫌㫊 㪹㫆㪾㪸㫅㫀㪻㪸㪼 㪺㫆㫅㪽㫃㫌㪼㫅㫋㫌㫊 㪼㫃㪾㫐㫋㫀㪺㫌㫊 㪼㫃㪾㫐㫋㫀㪺㫌㫊 㪼㫃㪾㫐㫋㫀㪺㫌㫊 㪽㫆㫅㫋㫀㫅㪸㫃㫀㫊 㪽㫆㫅㫋㫀㫅㪸㫃㫀㫊 㪽㫆㫅㫋㫀㫅㪸㫃㫀㫊 㪽㫆㫅㫋㫀㫅㪸㫃㫀㫊 㫂㫉㫆㫅㫆㪺㫀㫌㫊 㫃㪼㫌㪺㫆㫄㪸㪼㫅㫀㫊 㫃㪼㫌㪺㫆㫄㪸㪼㫅㫀㫊 㫃㪼㫌㪺㫆㫄㪸㪼㫅㫀㫊㩷㫀㫄㪹㫉㫀㫌㫊 㫃㪼㫌㪺㫆㫄㪸㪼㫅㫀㫊㩷㫀㫄㪹㫉㫀㫌㫊 㫃㪼㫌㪺㫆㫄㪸㪼㫅㫀㫊㩷㫃㪼㫌㪺㫆㫄㪸㪼㫅㫀㫊 㫃㪼㫌㪺㫆㫄㪸㪼㫅㫀㫊㩷㫃㪼㫌㪺㫆㫄㪸㪼㫅㫀㫊 㫃㪼㫌㪺㫆㫄㪸㪼㫅㫀㫊㩷㫃㪼㫌㪺㫆㫄㪸㪼㫅㫀㫊 㫃㪼㫌㪺㫆㫄㪸㪼㫅㫀㫊㩷㫇㫃㫌㫍㫀㫌㫊 㫃㪼㫌㪺㫆㫄㪸㪼㫅㫀㫊㩷㫇㫃㫌㫍㫀㫌㫊 㫃㪼㫍㪸㫅㫀㪻㫆㫍㫀 㫄㪸㫃㫄㪸 㫄㪸㫃㫄㪸㩷㫂㫉㪸㫊㪺㪿㪼㫅㫀㫅㫅㫀㫂㫆㫍㫀 㫄㪸㫃㫄㪸㩷㫃㫆㫉㪻㫀 㫄㪸㫃㫄㪸㩷㫄㪸㫃㫄㪸 㫄㪸㫃㫄㪸㩷㫄㪸㫃㫄㪸 㫄㪸㫃㫄㪸㩷㫄㫀㫐㪸㪹㪼㫀 㫄㪸㫃㫄㪸㩷㫄㫀㫐㪸㪹㪼㫀 㫅㪸㫄㪸㫐㪺㫌㫊㪿 㫋㪸㫉㪸㫅㪼㫋㫑㫀 㫊㫍㪼㫋㫆㫍㫀㪻㫆㫍㫀
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪝㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷
㩷㪦㫊㪿㫆㫉㫆㫂㫆㫄㪸 㩷㪦㫊㪿㫆㫉㫆㫂㫆㫄㪸 㩷㪤㫀㫐㪸㪹㪼㫀㫎㪸㫅㪸 㩷㪤㫀㫐㪸㪹㪼㫀㫎㪸㫅㪸
㪞㫆㪾㫀 㪞㫆㪾㫀 㪘㫄㪼㫄㪸㫊㫌 㪘㫄㪼㫄㪸㫊㫌 㪘㫄㪼㫄㪸㫊㫌 㪥㫀㫂㫂㫆㫀㫎㪸㫅㪸 㪥㫀㫂㫂㫆㫀㫎㪸㫅㪸
㫂㫉㫆㫅㫀㪺㫌㫊
㪪㪸㫃㫄㫆
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪫㪸㪹㫃㪼㩷㪍㪅㪈㪎㩷㩷㪦㫉㪻㪼㫉㩷㪪㪘㪣㪤㪦㪥㪠㪝㪦㪩㪤㪜㪪㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀
㪤
㪈㪍㩷㪤㪆㪪㪤㩷㪂㩷㪍㪏㩷㪪㪫㪆㪘
㪏㪋
㪈㪍㩷㪤㪆㪪㪤㩷㪂㩷㪍㪍㩷㪪㪫㪆㪘 㪈㪍㩷㪤㪆㪪㪤㩷㪂㩷㪍㪍㩷㪪㪫㪆㪘
㪏㪉 㪏㪉
㪌㪍
㪊㪏㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪈㪋㪘
㪈㪍㩷㪤㪆㪪㪤㩷㪂㩷㪍㪏㩷㪪㪫㪆㪘
㪏㪋 㪎㪍㪄㪎㪏
㪈㪏㩷㪤㪆㪪㪤㩷㪂㩷㪍㪋㩷㪪㪫㪆㪘
㪏㪉
㪝㪃㩷㪤
㪈㪍㩷㪤㪆㪪㪤㩷㪂㩷㪍㪍㩷㪪㪫㪆㪘
㪏㪉
㪐㪏
㪐㪏㪄㪈㪇㪇
㪈㪇㪇
㪈㪇㪇
㪐㪏
㪈㪍㩷㪤㪆㪪㪤㩷㪂㩷㪉㩷㪪㪤㪆㪪㪫㩷㪂㩷㪍㪋㩷㪪㪫㪆㪘 㪐㪏㪆㪈㪇㪇
㪏㪉
㪝㪃㩷㪤
㪐㪏
㪐㪏
㪐㪏
㪈㪇㪇
㪐㪏
㪏㪉
㪈㪍㩷㪤㪆㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪍㪉㪘
㪈㪋㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪍㪋㩷㪪㪫㪆㪘
㪏㪉
㪎㪏㪄㪏㪇
㪈㪍㩷㪤㪆㪪㪤㩷㪂㩷㪍㪏㩷㪪㪫㪆㪘
㪏㪋
㪈㪇㪇
㪈㪍㩷㪤㪆㪪㪤㩷㪂㩷㪉㩷㪪㪤㪆㪪㪫㩷㪂㩷㪍㪍㩷㪪㪫㪆㪘 㩷㪈㪇㪇㪆㪈㪇㪉
㪏㪋
㪈㪇㪇
㪈㪍㩷㪤㪆㪪㪤㩷㪂㩷㪉㩷㪪㪤㪆㪪㪫㩷㪂㩷㪍㪍㩷㪪㪫㪆㪘 㩷㪈㪇㪇㪆㪈㪇㪉
㪏㪋
㪈㪇㪇
㪈㪍㩷㪤㪆㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪍㪍㪘
㪏㪋
㪈㪇㪇
㪈㪍㩷㪤㪆㪪㪤㩷㪂㩷㪍㪏㩷㪪㪫㪆㪘
㪏㪋
㪈㪇㪉
㪈㪍㩷㪤㪆㪪㪤㩷㪂㩷㪉㩷㪪㪤㪆㪪㪫㩷㪂㩷㪍㪍㩷㪪㪫㪆㪘 㩷㪈㪇㪇㪆㪈㪇㪉
㪐㪏
㪈㪇㪉
㪈㪇㪉
㪈㪇㪉
㪈㪇㪍
㪐㪏
㪏㪄㪈㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪏㪄㪈㪉
㪉
㪉
㪉
㪋㪄㪏
㪌㪅㪎㪄㪍㪅㪊㩷㪝㪠㪘
㩿㪎㪅㪌㩷㪝㪛㪀
㩿㪍㪅㪌㩷㪝㪠㪘㪃㩷㪎㪅㪇㩷㪙㪝㪘㪀
㩿㪍㪅㪌㩷㪝㪛㪀
㩿㪌㪅㪎㪁㩷㪝㪚㪤㪀
㩿㪌㪅㪏㪃㩷㪍㪅㪎㩷㪝㪠㪘㪀
㪍㪅㪐㩷㪝㪛
㪞 㪟 㪠 㪥㪝㪉 㪘㪾㪄 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㪥㪦㪩㫊 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪏㪋
㪈㪋㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪍㪍㩷㪪㪫㪆㪘
㪏㪋 㪏㪋
㪈㪇㪇 㪈㪇㪇
㪎㪏㪄㪏㪉
㪈㪇㪇
㪈㪇㪇
㪈㪇㪉
㪐㪏
㪐㪏
㪐㪏
㪝㪃㩷㪤
㪝㪃㩷㪤
㪝㪃㩷㪤
㪝㪃㩷㪤
㪝㪃㩷㪤
㪏㪋 㪏㪋
㪝㪃㩷㪤
㪈㪍㩷㪤㪆㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪍㪍㪘
㪈㪍㩷㪤㪆㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪍㪉㪘 㪈㪍㩷㪤㪆㪪㪤㩷㪂㩷㪍㪏㩷㪪㪫㪆㪘
㪏㪋
㪈㪏㩷㪤㪆㪪㪤㩷㪂㩷㪍㪍㩷㪪㪫㪆㪘
㪉㪇㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪌㪋㩷㪪㪫㪆㪘
㪈㪐㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪌㪍㩷㪪㪫㪆㪘
㪝㪃㩷㪤
㪏㪋
㪎㪎 㪎㪍
㪝㪃㩷㪤
㪉㪋㩷㪤㪆㪪㪤㩷㪂㩷㪌㪋㩷㪪㪫㪆㪘 㪈㪏㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪌㪏㩷㪪㪫㪆㪘
㪈㪇㪉
㪎㪏
㪎㪏
㪈㪇㪇
㪐㪏
㪝 㪥㪝㪈
㪐㪏
㪉㪇㩷㪤㪆㪪㪤㩷㪂㩷㪍㪇㩷㪪㪫㪆㪘
㪉㪇㩷㪤㪆㪪㪤㩷㪂㩷㪌㪏㪘
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪎㪍㪄㪎㪏
㪏㪇
㪎㪏㪄㪏㪇
㪏㪉
㪎㪏
㪛 㪉㫅
㪝㪃㩷㪤
㪤
㪚 㪪㪼㫏
㪘㪚㪥㪔㪐㪏
㪯㪯㪆㪯㪰
㪘㪚㪥㪔㪐㪏
㪘㪚㪥㪔㪐㪏
㪘㪚㪥㪔㪐㪏
㪘㪚㪥㪔㪐㪏
㪘㪚㪥㪔㪐㪏
㪘㪚㪥㪔㪐㪏
㪘㪚㪥㪔㪐㪏
㪘㪚㪥㪔㪐㪏
㪘㪚㪥㪔㪐㪏
㪘㪚㪥㪔㪐㪏
㪘㪚㪥㪔㪐㪏
㪘㪚㪥㪔㪐㪏
㪘㪚㪥㪔㪐㪏
㪘㪚㪥㪔㪐㪍
㪘㪚㪥㪔㪐㪍
㪘㪚㪥㪔㪐㪍
㪘㪚㪥㪔㪐㪏
㪘㪚㪥㪔㪐㪏
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪥㪄㪋㪋
㪞㪄㪉㪊
㪧㪄㪌㪋㪃㩷㪧㪄㪐㪊㪃㩷㪟㪄㪋㪈
㪟㪄㪐㪃㩷㪟㪄㪉㪏
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
㪚㪄㪊㪏
㪢㪄㪎㪊㪃㩷㪧㪄㪌㪋㪃㩷㪡㪄㪈㪌
㪧㪄㪊㪋
㪙㪄㪍㪊㪃㩷㪧㪄㪊㪋㪃㩷㪧㪄㪌㪋㪃㩷㪟㪄㪋㪇㩷
㪬㪄㪉㪃㩷㪬㪄㪎㪉㩷
㪚㪄㪊㪏
㪬㪄㪉㪃㩷㪬㪄㪎㪉㩷
㪘㪄㪉㪃㩷㪤㪄㪐㪌
㪚㪄㪊㪏㪃㩷㪬㪄㪈㪋
㪚㪄㪊㪏
㪝㪄㪋㪎
㪧㪄㪊㪋
㪚㪄㪊㪏
㪬㪄㪎㪉㪃㩷㪬㪄㪎㪎
㪚㪄㪊㪏
㪬㪄㪎㪉
㪘㪄㪉㪃㩷㪬㪄㪎㪉㪃㩷㪦㪄㪊㪊
㪚㪄㪊㪏
㪬㪄㪎㪉
㪝㪄㪋㪎
㪭㪄㪎㪉
㪧㪄㪊㪋
㪬㪄㪍㪎㪃㩷㪙㪄㪍㪊㪃㩷㪟㪄㪊㪐㪃㩷㪟㪄㪋㪇
㪤㪄㪐㪌
㪬㪄㪉㪃㩷㪦㪄㪊㪊
㪩㫌㫊㫊㫀㪸㩷㩿㪣㪸㫂㪼㩷㪜㫃㪾㫐㪾㫐㫋㪾㫐㫅㪀 㪝㪄㪋㪐
㪩㫌㫊㫊㫀㪸
㪥㪅㩷㪘㫄㪼㫉㫀㪺㪸
㪡㪸㫇㪸㫅㩷㩿㪟㫆㫂㫂㪸㫀㪻㫆㪀
㪡㪸㫇㪸㫅㩷㩿㪟㫆㫂㫂㪸㫀㪻㫆㪀
㪡㪸㫇㪸㫅㩷㩿㪟㫆㫂㫂㪸㫀㪻㫆㪀
㪡㪸㫇㪸㫅㩷㩿㪟㫆㫂㫂㪸㫀㪻㫆㪀
㪬㪪㪘㩷㩿㪘㪢㪀
㪡㪸㫇㪸㫅㩷㩿㪟㫆㫂㫂㪸㫀㪻㫆㪀
㪩㫌㫊㫊㫀㪸㩷㩿㪧㫉㫐㫄㫆㫉㫐㪼㪀
㪩㫌㫊㫊㫀㪸
㪡㪸㫇㪸㫅㩷㩿㪫㫆㫐㪸㫄㪸㪀
㪡㪸㫇㪸㫅㩷㩿㪫㫆㪺㪿㫀㪾㫀㪀
㪡㪸㫇㪸㫅㩷㩿㪟㫆㫂㫂㪸㫀㪻㫆㪀
㪡㪸㫇㪸㫅㩷㩿㪟㫆㫂㫂㪸㫀㪻㫆㪀
㪡㪸㫇㪸㫅㩷㩿㪟㫆㫂㫂㪸㫀㪻㫆㪀
㪡㪸㫇㪸㫅㩷㩿㪪㪿㫀㫄㪸㫅㪼㪀
㪡㪸㫇㪸㫅㩷㩿㪟㫐㫆㪾㫆㪀
㪩㫌㫊㫊㫀㪸㩷㩿㪧㫉㫐㫄㫆㫉㫐㪼㪀
㪩㫌㫊㫊㫀㪸
㪩㫌㫊㫊㫀㪸㩷㩿㪢㪸㫄㪺㪿㪸㫋㫂㪸㪀
㪥㪅㩷㪘㫄㪼㫉㫀㪺㪸
㪡㪸㫇㪸㫅
㪡㪸㫇㪸㫅
㪬㪪㪘
㪩㫌㫊㫊㫀㪸㩷㩿㪣㪸㫂㪼㩷㪜㫃㪾㫐㪾㫐㫋㪾㫐㫅㪀 㪝㪄㪋㪏
㪩㫌㫊㫊㫀㪸㩷㩿㪣㪸㫂㪼㩷㪜㫃㪾㫐㪾㫐㫋㪾㫐㫅㪀 㪝㪄㪋㪏
㪩㫌㫊㫊㫀㪸㩷㩿㪣㪸㫂㪼㩷㪜㫃㪾㫐㪾㫐㫋㪾㫐㫅㪀 㪝㪄㪋㪏
㪬㪪㪘㩷㩿㪤㪫㪀
㪩㫌㫊㫊㫀㪸㩷㩿㪣㪸㫂㪼㩷㪜㫃㪾㫐㪾㫐㫋㪾㫐㫅㪀 㪧㪄㪊㪋
㪪㫎㪼㪻㪼㫅
㪥㫆㫉㫎㪸㫐
㩿㪥㪅㩷㪜㫌㫉㫆㫇㪼㪀
㪬㪢㩷㩿㪪㪺㫆㫋㫃㪸㫅㪻㪀
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
127
R. Arai, Fish Karyotypes © Springer 2011
㫇㪼㪺㫋㫆㫉㪸㫃㫀㫊 㪿㫌㪹㪹㫊㫀 㫂㫉㪸㫄㪼㫉㫀 㫃㫀㫄㫀 㫃㫀㫄㫀 㫇㫐㪾㫄㪸㪼㪸
㪸㪅㩷㪸㫄㪼㫉㫀㪺㪸㫅㫌㫊 㪸㪅㩷㫍㪼㫉㫄㫀㪺㫌㫃㪸㫋㫌㫊 㫃㫌㪺㫀㫌㫊 㫃㫌㪺㫀㫌㫊 㫃㫌㪺㫀㫌㫊 㫄㪸㫊㫈㫌㫀㫅㫆㫅㪾㫐 㫄㪸㫊㫈㫌㫀㫅㫆㫅㪾㫐 㫅㫀㪾㪼㫉 㫅㫀㪾㪼㫉 㫅㫀㪾㪼㫉 㫉㪼㫀㪺㪿㪼㫉㫋㫀㫀
㪘㫉㪾㫐㫉㫆㫇㪼㫃㪼㪺㫌㫊 㪘㫉㪾㫐㫉㫆㫇㪼㫃㪼㪺㫌㫊 㪘㫉㪾㫐㫉㫆㫇㪼㫃㪼㪺㫌㫊 㪪㫋㪼㫉㫅㫆㫇㫋㫐㫏
㪪㫋㪼㫉㫅㫆㫇㫋㫐㪺㪿㫀㪻㪸㪼 㩷㩷㩷㪪㫋㪼㫉㫅㫆㫇㫋㫐㪺㪿㫀㫅㪸㪼
㪙㫆㫅㪸㫇㪸㫉㫋㫀㪸 㪞㫆㫅㫆㫊㫋㫆㫄㪸 㪪㫀㪾㫄㫆㫇㫊
㪸㪽㪽㫀㫅㫀㫊 㪿㪼㫄㫀㪾㫐㫄㫅㫌㫊 㫃㫐㪺㪿㫅㫌㫊 㪻㫀㪸㫇㪿㪸㫅㪸
㫇㪼㪻㪸㫃㫀㫆㫋㪸 㪼㫃㫆㫅㪾㪸㫋㫌㫄 㪹㪸㫋㪿㫐㫇㪿㫀㫃㫌㫄
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㪹㫆㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷 㪪㫌㪹㫆㫉㪻㪼㫉㩷㪞㫆㫅㫆㫊㫋㫆㫄㪸㫋㫆㫀㪻㪼㫀 㪞㫆㫅㫆㫊㫋㫆㫄㪸㫋㫀㪻㪸㪼
㪫㪸㪹㫃㪼㩷㪍㪅㪈㪐㩷㩷㪦㫉㪻㪼㫉㩷㪪㪫㪦㪤㪠㪠㪝㪦㪩㪤㪜㪪㩷
㪛㪸㫃㫃㫀㪸 㪥㫆㫍㫌㫄㪹㫉㪸 㪬㫄㪹㫉㪸 㪬㫄㪹㫉㪸 㪬㫄㪹㫉㪸 㪬㫄㪹㫉㪸
㪬㫄㪹㫉㫀㪻㪸㪼
㪜㫊㫆㫏 㪜㫊㫆㫏 㪜㫊㫆㫏 㪜㫊㫆㫏 㪜㫊㫆㫏 㪜㫊㫆㫏 㪜㫊㫆㫏 㪜㫊㫆㫏 㪜㫊㫆㫏 㪜㫊㫆㫏 㪜㫊㫆㫏
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪝㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷 㪜㫊㫆㪺㫀㪻㪸㪼
㪫㪸㪹㫃㪼㩷㪍㪅㪈㪏㩷㩷㪦㫉㪻㪼㫉㩷㪜㪪㪦㪚㪠㪝㪦㪩㪤㪜㪪
㫇㪸㪺㫀㪽㫀㪺㫌㫊 㫀㫅㫋㪼㫉㫄㪼㪻㫀㫌㫊
㪞㫆㫅㫆㫊㫋㫆㫄㪸
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪤
㪚 㪪㪼㫏
㪝㪃㩷㪤
㪤
㪚 㪪㪼㫏
㪌㪇㩷㪪㪫㪆㪘
㪌㪇
㪈㪏㪤㪆㪪㪤㩷㪂㩷㪍㪇㩷㪪㪫㪆㪘㩷
㩿㪈㪅㪏㩷㪝㪠㪘㪀
㪉㪅㪍㩷㪝㪛
㪉㪅㪎㩷㪝㪛
㩿㪉㪅㪊㩷㪝㪚㪤㪃㩷㪉㪅㪉㩷㪝㪠㪘㪀
㪐㪍
㪉
㪉
㪉
㪉㪅㪌㩷㪝㪛
㪋㪅㪏㩷㪝㪛
㩿㪌㪅㪋㩷㪙㪝㪘㪀
㩿㪌㪅㪇㩷㪝㪛㪃㩷㪌㪅㪈㩷㪝㪠㪘㪀
㪉㪅㪈㩷㪝㪛
㪬㪪㪘㩷㩿㪘㪢㪀
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪬㪪㪘㩷㩿㪥㪚㪀
㪬㪪㪘㩷㩿㪥㪰㪀
㪚㪸㫅㪸㪻㪸㩷㩿㪦㫅㫋㪸㫉㫀㫆㪀
㪪㫃㫆㫍㪸㫂㫀㪸
㪬㪪㪘㩷㩿㪮㪘㪀
㪉㪇㪤㩷㪂㩷㪈㪇㪪㪤㩷㪂㩷㪈㪉㪘㩷㪂㩷㪍㩷㫊㪸㫋㪼㫃㫃㫀㫋㪼㪻㩷㪺㪿㫉㫆㫄㪅 㪈㪍㪤㩷㪂㩷㪏㪪㪤㩷㪂㩷㪌㪘㩷㪂㩷㪍㩷㫊㪸㫋㪼㫃㫃㫀㫋㪼㪻㩷㪺㪿㫉㫆㫄㪅㩷
㪋㪏 㪊㪌
㪉㪇㩷㪤㪆㪪㪤㩷㪂㩷㪉㪏㪘㩷㪂㩷㪉㩷㫊㪸㫋㪼㫃㫃㫀㫋㪼㪻㩷㪺㪿㫉㫆㫄㪅 㪉㪍㪤㩷㪂㩷㪈㪇㪪㪤㩷㪂㩷㪈㪇㪘㩷㪂㩷㪍㩷㫊㪸㫋㪼㫃㫃㫀㫋㪼㪻㩷㪺㪿㫉㫆㫄㪅
㪌㪇 㪌㪉
㪈㪉㪁
㪯㪦
㪘㪚㪥㪔㪌㪉
㪘㪚㪥㪔㪌㪉
㪬㪪㪘㩷㩿㫆㪽㪽㩷㪚㪘㪀
㪬㪪㪘㩷㩿㫆㪽㪽㩷㪚㪘㪀
㪬㪪㪘㩷㩿㫆㪽㪽㩷㪚㪘㪀
㪬㪪㪘㩷㩿㫆㪽㪽㩷㪚㪘㪀
㪘㫋㫃㪸㫅㫋㫀㪺
㪘㫋㫃㪸㫅㫋㫀㪺
㪘㪚㪥㪔㪌㪉
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪘㪚㪥㪔㪋㪋
㪘㪚㪥㪔㪋㪋
㪘㪚㪥㪔㪋㪋
㪘㪚㪥㪔㪋㪏
㪘㫋㫃㪸㫅㫋㫀㪺
㪞 㪟 㪠 㪥㪝㪉 㪘㪾㪄 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㪥㪦㪩㫊 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪋㪋
㪋㪋
㪋㪋
㪋㪋
㪋
㪩㫌㫊㫊㫀㪸㩷㩿㪘㫄㫌㫉㩷㪩㪅㪀
㪬㪪㪘㩷㩿㪥㪚㪀
㪬㪪㪘㩷㩿㪥㪚㪀
㪥㪅㩷㪘㫄㪼㫉㫀㪺㪸
㪥㪅㩷㪬㪪㪘㪃㩷㪚㪸㫅㪸㪻㪸
㪚㪸㫅㪸㪻㪸㩷㩿㪦㫅㫋㪸㫉㫀㫆㪀
㪪㫎㪼㪻㪼㫅
㪚㪸㫅㪸㪻㪸㪃㩷㪬㪢
㪬㪪㪘
㪚㪸㫅㪸㪻㪸㩷㩿㪦㫅㫋㪸㫉㫀㫆㪀
㪚㪸㫅㪸㪻㪸㪃㩷㪬㪪㪘
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪋㪏㪁
㪝 㪥㪝㪈
㪋㪋
㪋㪋
㪋㪋
㪋㪋
㪍㪉
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪺㪸㪅㩷㪋㪏㪁
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪈㪏㪤㩷㪂㩷㪋㪪㪤 㪉㪉㪤
㪉㪉 㪉㪉
㪛 㪉㫅
㪋㪋㪘 㪉㪉㪤
㪋㪋 㪉㪉
㪋㪤㩷㪂㩷㪈㪇㪪㪤㩷㪂㩷㪈㪋㪪㪫㩷㪂㩷㪉㪇㪘
㪎㪏 㪋㪏
㪉
㪉
㪉
㪉
㪉㪅㪋㩷㪝㪛 㪉㪅㪊㩷㪝㪛㪃㩷㪉㪅㪈㩷㪝㪠㪘
㪉㪅㪍㩷㪝㪛
㪎㪍
㪉 㪉
㪉㪅㪋㩷㪝㪛 㪌㪇
㪌㪇
㪌㪇
㪌㪇
㪌㪇
㪌㪇
㪌㪇
㪌㪇
㪌㪇
㪞 㪟 㪠 㪥㪝㪉 㪘㪾㪄 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㪥㪦㪩㫊 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪌㪇
㪌㪇
㪌㪇
㪌㪇
㪌㪇
㪌㪇
㪌㪇
㪌㪇
㪌㪇
㪌㪇
㪝 㪥㪝㪈
㪌㪇 㪌㪇㩷㪪㪫㪆㪘
㪌㪇㪘
㪌㪇 㪌㪇
㪌㪇㪘
㪌㪇
㪌㪇㪘
㪌㪇 㪌㪇㪘
㪌㪇㪘
㪌㪇 㪌㪇
㪌㪇㪘 㪌㪇㪘
㪌㪇
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪌㪇
㪛 㪉㫅
㪚㪄㪋㪍㪃㩷㪚㪄㪋㪏
㪚㪄㪋㪍
㪚㪄㪋㪍
㪚㪄㪋㪍
㪧㪄㪋㪍
㪧㪄㪋㪍
㪧㪄㪋㪍
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
㪙㪄㪈㪉㪃㩷㪩㪄㪈㪈㪌
㪢㪄㪎㪉㪃㩷㪢㪄㪎㪊㪃㩷㪟㪄㪈㪊㪃㩷㪟㪄㪉㪍
㪙㪄㪈㪉㪃㩷㪟㪄㪋㪇
㪩㪄㪉㪃㩷㪩㪄㪈㪉
㪙㪄㪈㪉㪃㩷㪚㪄㪏㪇
㪙㪄㪈㪉㪃㩷㪩㪄㪈㪈㪌
㪙㪄㪈㪉㪃㩷㪙㪄㪍㪊
㪙㪄㪈㪉
㪩㪄㪈㪈㪌
㪙㪄㪍㪊㪃㩷㪟㪄㪋㪈
㪩㪄㪈㪈㪌
㪙㪄㪈㪉
㪥㪄㪋㪇
㪙㪄㪈㪉㪃㩷㪩㪄㪈㪈㪌
㪘㪄㪊㪉㪃㩷㪭㪄㪏㪍㪃㩷㪟㪄㪋㪈
㪙㪄㪈㪉㪃㩷㪩㪄㪈㪈㪌㪃㩷㪟㪄㪋㪇
㪙㪄㪈㪉㪃㩷㩷㪩㪄㪈㪈㪌
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
128
㪽㫌㫊㪺㫌㫊 㪿㫆㫊㪿㫀㫅㫆㫅㫀㫊 㪿㫆㫊㪿㫀㫅㫆㫅㫀㫊 㫃㫌㪺㫀㫆㪺㪼㫇㫊 㫌㫃㪸㪼 㫌㫃㪸㪼 㫄㫐㫆㫇㫊 㫄㫐㫆㫇㫊
㫊㫇㪅㩷㪉 㫊㫇㪅㩷㪉
㪼㫃㫆㫅㪾㪸㫋㪸 㪼㫃㫆㫅㪾㪸㫋㪸 㪼㫃㫆㫅㪾㪸㫋㪸 㪼㫃㫆㫅㪾㪸㫋㪸
㪚㪿㫃㫆㫉㫆㫇㪿㫋㪿㪸㫃㫄㫌㫊 㪚㪿㫃㫆㫉㫆㫇㪿㫋㪿㪸㫃㫄㫌㫊
㪋㪏㪘㩷
㪋㪏 㪋㪏 㪋㪏
㪤
㫌㫅㪻㫆㫊㫈㫌㪸㫄㫀㫊㪃 㩷㪤㪸㪄㪼㫊㫆 㪝 㫌㫅㪻㫆㫊㫈㫌㪸㫄㫀㫊㪃 㩷㪤㪸㪄㪼㫊㫆 㪤
㪊㪍 㪉㪋
㪉㪍
㪤
㪋㪎㪘㩷㪂㩷㪈㩷㪤㪚
㪋㪏 㪋㪏 㪉㪎
㪝 㪤 㪝
㪉㪏㩷㪤㪆㪪㪤㩷㪂㩷㪉㪇㩷㪪㪫㪆㪘
㪋㪏
㪝
㪉㪪㪫㩷㪂㩷㪋㪌㪘㩷㪂㩷㪈㩷㪤㪚
㪉㪋㪤
㪉㪋㪤㩷㪂㩷㪉㪘㩷
㪋㪏㪘 㪉㪊㪤㩷㪂㩷㪈㪪㪫㩷㪂㩷㪉㪘㩷㪂㩷㪈㩷㪤㪚
㪉㪪㪫㩷㪂㩷㪋㪍㪘
㪋㪏 㪋㪏
㪝 㪤
㪋㪏㪘
㪋㪏㪘
㪋㪎㪘㩷㪂㩷㪈㩷㪤㪚
㪋㪏
㫊㫇㪅㩷
㩷㪙㪸㫂㪼㪄㪸㫆㫄㪼㪄㪼㫊㫆
㪋㪎㪘㩷㪂㩷㪈㩷㪤㪚
㪋㪏
㪝
㪋㪏㪘
㪋㪏
㪋㪎㪘㩷㪂㩷㪈㩷㪤㪚
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪋㪏
㪛 㪉㫅
㪝
㪚 㪪㪼㫏
㪤
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪸㫃㪹㪸㫋㫉㫆㫊㫊㫀㫊
㪪㫌㪹㫆㫉㪻㪼㫉㩷㪚㪿㫃㫆㫉㫆㫇㪿㫋㪿㪸㫃㫄㫆㫀㪻㪼㫀 㪚㪿㫃㫆㫉㫆㫇㪿㫋㪿㪸㫃㫄㫀㪻㪸㪼
㪪㪸㫌㫉㫀㪻㪸 㪪㪸㫌㫉㫀㪻㪸 㪪㪸㫌㫉㫀㪻㪸 㪪㪸㫌㫉㫀㪻㪸 㪪㪸㫌㫉㫀㪻㪸 㪪㪸㫌㫉㫀㪻㪸 㪪㫐㫅㫆㪻㫌㫊 㪪㫐㫅㫆㪻㫌㫊 㪪㫐㫅㫆㪻㫌㫊 㪪㫐㫅㫆㪻㫌㫊 㪪㫐㫅㫆㪻㫌㫊 㪪㫐㫅㫆㪻㫌㫊 㪫㫉㪸㪺㪿㫀㫅㫆㪺㪼㫇㪿㪸㫃㫌㫊 㪫㫉㪸㪺㪿㫀㫅㫆㪺㪼㫇㪿㪸㫃㫌㫊
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㪹㫆㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷 㪪㫌㪹㫆㫉㪻㪼㫉㩷㪪㫐㫅㫆㪻㫆㫅㫋㫆㫀㪻㪼㫀 㪪㫐㫅㫆㪻㫆㫅㫋㫀㪻㪸㪼
㪫㪸㪹㫃㪼㩷㪍㪅㪉㪇㩷㩷㪦㫉㪻㪼㫉㩷㪘㪬㪣㪦㪧㪠㪝㪦㪩㪤㪜㪪
㪋㪏
㪌㪇
㪋㪏 㪌㪇
㪋㪏
㪎㪍
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪝 㪥㪝㪈
㪋㪏
㪌㪇
㪋㪏 㪌㪈
㪌㪇
㪌㪇
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪉
㪉
㪈
㪈
㪉㪅㪎㪁㩷㪝㪚㪤
㪉㪅㪐㪁㩷㪝㪚㪤
㪉㪅㪌㩷㪝㪛
㪉㪅㪉㪁㩷㪝㪚㪤
㪉㪅㪏㪁㩷㪝㪚㪤
㪞 㪟 㪠 㪥㪝㪉 㪘㪾㪄 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㪥㪦㪩㫊 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪘㪚㪥㪔㪋㪏
㪱㪱㪃㩷㪘㪚㪥㪔㪋㪏
㪱㪱㪃㩷㪘㪚㪥㪔㪋㪏 㪱㪮㪈㪮㪉
㪱㪮
㪘㪚㪥㪔㪋㪏
㪱㪱㪃㩷㪘㪚㪥㪔㪋㪏
㪱㪮
㪘㪚㪥㪔㪋㪏
㪱㪱㪃㩷㪘㪚㪥㪔㪋㪏
㪱㪮
㪱㪱㪃㩷㪘㪚㪥㪔㪋㪏
㪱㪮
㪱㪱㪃㩷㪘㪚㪥㪔㪋㪏
㪱㪮
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪡㪸㫇㪸㫅
㪡㪸㫇㪸㫅㩷㩿㪪㫌㫉㫌㪾㪸㩷㪙㪸㫐㪀
㪡㪸㫇㪸㫅㩷㩿㪮㪸㫂㪸㫐㪸㫄㪸㪀
㪡㪸㫇㪸㫅㩷㩿㪮㪸㫂㪸㫐㪸㫄㪸㪀 㪡㪸㫇㪸㫅㩷㩿㪮㪸㫂㪸㫐㪸㫄㪸㪀
㪡㪸㫇㪸㫅㩷㩿㪮㪸㫂㪸㫐㪸㫄㪸㪀
㪬㪪㪘㩷㩿㪚㪘㪀
㪡㪸㫇㪸㫅㩷㩿㪮㪸㫂㪸㫐㪸㫄㪸㪀
㪡㪸㫇㪸㫅㩷㩿㪮㪸㫂㪸㫐㪸㫄㪸㪀
㪡㪸㫇㪸㫅
㪡㪸㫇㪸㫅㩷㩿㪰㪸㫄㪸㪾㫌㪺㪿㫀㪀
㪡㪸㫇㪸㫅㩷㩿㪰㪸㫄㪸㪾㫌㪺㪿㫀㪀
㪡㪸㫇㪸㫅㩷㩿㪮㪸㫂㪸㫐㪸㫄㪸㪀
㪡㪸㫇㪸㫅㩷㩿㪮㪸㫂㪸㫐㪸㫄㪸㪀
㪡㪸㫇㪸㫅㩷㩿㪰㪸㫄㪸㪾㫌㪺㪿㫀㪀
㪡㪸㫇㪸㫅㩷㩿㪰㪸㫄㪸㪾㫌㪺㪿㫀㪀
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪠㪄㪉㪈
㪦㪄㪍㪌
㪬㪄㪋㪋
㪬㪄㪋㪋 㪬㪄㪋㪋
㪬㪄㪋㪋
㪚㪄㪌㪋㪃㩷㪜㪄㪉
㪬㪄㪋㪋
㪬㪄㪋㪋
㪠㪄㪉㪈
㪥㪄㪊㪌
㪥㪄㪊㪌
㪬㪄㪋㪋
㪬㪄㪋㪋
㪥㪄㪊㪌
㪥㪄㪊㪌
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
129
㪙㫆㫃㫀㫅㫀㪺㪿㫋㪿㫐㫊 㪙㫆㫃㫀㫅㫀㪺㪿㫋㪿㫐㫊 㪚㪼㫉㪸㫋㫆㫊㪺㫆㫇㪼㫃㫌㫊 㪚㪼㫉㪸㫋㫆㫊㪺㫆㫇㪼㫃㫌㫊 㪛㫀㪸㫇㪿㫌㫊 㪛㫀㪸㫇㪿㫌㫊 㪛㫀㪸㫇㪿㫌㫊 㪛㫀㪸㫇㪿㫌㫊 㪛㫀㪸㫇㪿㫌㫊 㪜㫃㪼㪺㫋㫉㫆㫅㪸 㪟㫐㪾㫆㫇㪿㫌㫄 㪣㪸㫄㫇㪸㪻㪼㫅㪸 㪣㪸㫄㫇㪸㪻㪼㫅㪸 㪣㪼㫇㫀㪻㫆㫇㪿㪸㫅㪼㫊 㪣㫆㪹㫀㪸㫅㪺㪿㫀㪸 㪤㫐㪺㫋㫆㫇㪿㫌㫄 㪤㫐㪺㫋㫆㫇㪿㫌㫄 㪥㪸㫅㫅㫆㪹㫉㪸㪺㪿㫀㫌㫄 㪥㪸㫅㫅㫆㪹㫉㪸㪺㪿㫀㫌㫄 㪥㪸㫅㫅㫆㪹㫉㪸㪺㪿㫀㫌㫄 㪥㪸㫅㫅㫆㪹㫉㪸㪺㪿㫀㫌㫄 㪥㪸㫅㫅㫆㪹㫉㪸㪺㪿㫀㫌㫄 㪥㫆㫋㫆㫊㪺㫆㫇㪼㫃㫌㫊 㪧㪸㫉㫍㫀㫃㫌㫏 㪧㪸㫉㫍㫀㫃㫌㫏 㪧㫉㫆㫋㫆㫄㫐㪺㫋㫆㫇㪿㫌㫄 㪪㫋㪼㫅㫆㪹㫉㪸㪺㪿㫀㫌㫊 㪪㫐㫄㪹㫆㫃㫆㫇㪿㫆㫉㫌㫊 㪫㫉㫀㫇㪿㫆㫋㫌㫉㫌㫊
㪤㫐㪺㫋㫆㫇㪿㫀㪻㪸㪼
㪪㪺㫆㫇㪼㫃㪼㫅㪾㫐㫊
㫇㪿㫆㫋㫆㫋㪿㫆㫉㪸㫏 㫊㫌㫇㫉㪸㫃㪸㫋㪼㫉㪸㫃㫀㫊 㫋㫆㫎㫅㫊㪼㫅㪻㫀 㫎㪸㫉㫄㫀㫅㪾㫀㫀 㪹㫉㪸㪺㪿㫐㪺㪼㫇㪿㪸㫃㫌㫊 㪻㫌㫄㪼㫉㫀㫃㫀㫀 㪽㫉㪸㪾㫀㫃㫀㫊 㫉㪸㪽㫀㫅㪼㫊㫈㫌㫀㫀 㫋㪿㪼㫋㪸 㫉㫀㫊㫊㫆 㪿㫐㪾㫆㫄㫀㫀 㪺㪿㪸㫍㪼㫊㫀 㫌㫉㫆㫇㪿㪸㫆㫊 㪾㫌㪼㫅㫋㪿㪼㫉㫀 㪾㪼㫄㪼㫃㫃㪸㫉㫀㫀 㫅㫀㫋㫀㪻㫌㫃㫌㫄 㫇㪿㪼㫅㪾㫆㪻㪼㫊 㫊㫇㪅㩷 㩹㪸㫋㪼㫉 㩹 㫅㫀㪾㫉㫌㫄 㫉㪼㪾㪸㫃㪼 㫉㫀㫋㫋㪼㫉㫀 㫉㫀㫋㫋㪼㫉㫀 㫉㪼㫊㫇㫃㪼㫅㪻㪼㫅㫊 㫀㫅㪾㪼㫅㫊 㫀㫅㪾㪼㫅㫊 㪺㫉㫆㪺㫂㪼㫉㫀 㫃㪼㫌㪺㫆㫇㫊㪸㫉㫌㫊 㪺㪸㫃㫀㪽㫆㫉㫅㫀㪼㫅㫊㫀㫊 㫄㪼㫏㫀㪺㪸㫅㫌㫊
㫋㫉㫀㫊㫋㫀㫊
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪝㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷 㪥㪼㫆㫊㪺㫆㫇㪼㫃㫀㪻㪸㪼
㪫㪸㪹㫃㪼㩷㪍㪅㪉㪈㩷㩷㪦㫉㪻㪼㫉㩷㪤㪰㪚㪫㪦㪧㪟㪠㪝㪦㪩㪤㪜㪪
㪣㪸㫄㫇㪸㫅㫐㪺㫋㫌㫊
㪚㫋㪼㫅㫆㫊㪺㫆㫇㪼㫃㫌㫊 㪣㪸㫄㫇㪸㫅㫐㪺㫋㫌㫊 㪣㪸㫄㫇㪸㫅㫐㪺㫋㫌㫊㩷㫅㫀㪾㪼㫉 㪣㪸㫄㫇㪸㫅㫐㪺㫋㫌㫊㩷㫉㪼㪾㪸㫃㫀㫊 㪣㪸㫄㫇㪸㫅㫐㪺㫋㫌㫊 㪣㪸㫄㫇㪸㫅㫐㪺㫋㫌㫊
㫉㫀㫊㫊㫆㫀 㪿㫐㪾㫆㫄㫀
㫉㪸㪽㫀㫅㪼㫊㫈㫌㪼㫀
㪻㫌㫄㪼㫉㫀㫃㫀
㫎㪸㫉㫄㫀㫅㪾㫀
㪣㪼㫇㫀㪻㫆㫇㪿㪸㫅㪼㫊 㪣㪼㫇㫀㪻㫆㫇㪿㪸㫅㪼㫊
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪋㪋
㪋㪎
㪤
㪋㪏
㪋㪏㪘
㪋㪏
㪌㪇
㪋㪏
㪌㪇
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪬㪪㪘㩷㩿㫆㪽㪽㩷㪚㪘㪀
㪬㪪㪘㩷㩿㫆㪽㪽㩷㪚㪘㪀
㪬㪪㪘㩷㩿㫆㪽㪽㩷㪚㪘㪀 㪉㪪㪤㩷㪂㩷㪋㪍㪘
㪋㪏
㪋㪏
㪋㪏
㪬㪪㪘㩷㩿㫆㪽㪽㩷㪚㪘㪀
㪬㪪㪘㩷㩿㫆㪽㪽㩷㪚㪘㪀
㪘㫋㫃㪸㫅㫋㫀㪺
㪬㪪㪘㩷㩿㫆㪽㪽㩷㪚㪘㪀
㪋㪏㪘
㪘㪚㪥㪔㪋㪏
㪯㪦㪃㩷㪘㪚㪥㪔㪋㪏
㪬㪪㪘㩷㩿㫆㪽㪽㩷㪚㪘㪀
㪋㪏㪘
㪊㪅㪏㩷㪝㪛
㩿㪊㪅㪐㩷㪝㪛㪀
㪋㪅㪇㩷㪝㪛
㪯㪯㪃㩷㪘㪚㪥㪔㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪌㪇
㪋㪏
㪋㪏
㪬㪪㪘㩷㩿㫆㪽㪽㩷㪚㪘㪀
㪈㩷㪤㪆㪪㪤㩷㪂㩷㪋㪏㩷㪪㪫㪆㪘
㪈㪪㪤㩷㪂㩷㪋㪍㪘
㪋㪏㪘
㪌㪇㪖
㪋㪐
㪋㪏
㪋㪏
㪘㫋㫃㪸㫅㫋㫀㪺
㪌㪇㪁
㪬㪪㪘㩷㩿㫆㪽㪽㩷㪚㪘㪀
㪘㫋㫃㪸㫅㫋㫀㪺
㪋㪏㪁 㪘㪚㪥㪔㪋㪏
㪘㫋㫃㪸㫅㫋㫀㪺
㪋㪏㪁
㪋㪏
㪬㪪㪘㩷㩿㫆㪽㪽㩷㪚㪘㪀
㪋㪏㪘
㪘㫋㫃㪸㫅㫋㫀㪺 㪘㪚㪥㪔㪋㪏
㪋㪏
㪬㪪㪘㩷㩿㫆㪽㪽㩷㪚㪘㪀
㪋㪋 㪋㪏㪁
㪘㫋㫃㪸㫅㫋㫀㪺
㪋㪏㪁
㪘㫋㫃㪸㫅㫋㫀㪺
㪘㫋㫃㪸㫅㫋㫀㪺
㪋㪏㪁
㪋㪏㪁
㪘㫋㫃㪸㫅㫋㫀㪺
㪋㪏㪁
㪘㪚㪥㪔㪋㪏
㪬㪪㪘㩷㩿㫆㪽㪽㩷㪚㪘㪀
㪋㪏
㪝
㪤
㪋㪋㩷㪪㪫㪆㪘
㪘㪚㪥㪔㪋㪏
㪘㫋㫃㪸㫅㫋㫀㪺
㪘㫋㫃㪸㫅㫋㫀㪺
㪋㪏㪁 㪋㪏㪁
㪘㫋㫃㪸㫅㫋㫀㪺
㪘㫋㫃㪸㫅㫋㫀㪺
㪋㪏㪁 㪋㪏㪁
㪘㫋㫃㪸㫅㫋㫀㪺
㪋㪏㪁
㪋㪏
㪤
㪬㪪㪘㩷㩿㫆㪽㪽㩷㪚㪘㪀
㪬㪪㪘㩷㩿㫆㪽㪽㩷㪚㪘㪀
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪋㪏
㪋㪅㪇㩷㪝㪛
㪉㪅㪍㩷㪝㪛
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪘㫋㫃㪸㫅㫋㫀㪺
㪋㪏
㪌㪇
㪞 㪟 㪠 㪥㪝㪉 㪘㪾㪄 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㪥㪦㪩㫊 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪘㫋㫃㪸㫅㫋㫀㪺 㪋㪏
㪌㪇
㪝 㪥㪝㪈
㪋㪏㪁 㪋㪏㩷㪪㪫㪆㪘
㪉㪪㪤㩷㪂㩷㪋㪍㪘
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪋㪏㪁
㪋㪏
㪛 㪉㫅
㪤
㪤㪃㩷㪝
㪚 㪪㪼㫏
㪚㪄㪌㪋㪃㩷㪜㪄㪉
㪚㪄㪋㪍㪃㩷㪚㪄㪌㪋
㪚㪄㪌㪋
㪚㪄㪌㪋
㪚㪄㪌㪋
㪚㪄㪋㪍㪃㩷㪚㪄㪋㪏㪃㩷㪜㪄㪉
㪧㪄㪋㪌
㪚㪄㪋㪏㪃㩷㪚㪄㪌㪋㪃㩷㪜㪄㪉
㪚㪄㪋㪏㪃㩷㪚㪄㪌㪋㪃㩷㪜㪄㪉
㪚㪄㪌㪋
㪧㪄㪋㪌
㪧㪄㪋㪌
㪧㪄㪋㪌
㪚㪄㪌㪋
㪧㪄㪋㪌
㪧㪄㪋㪌
㪚㪄㪌㪋
㪧㪄㪋㪌
㪧㪄㪋㪌
㪧㪄㪋㪌
㪚㪄㪌㪋
㪧㪄㪋㪌
㪧㪄㪋㪌
㪧㪄㪋㪌
㪧㪄㪋㪌
㪧㪄㪋㪌
㪚㪄㪌㪋
㪧㪄㪋㪌
㪧㪄㪋㪌
㩷㪚㪄㪌㪋㪃㩷㪜㪄㪉
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
130
㫊㪸㫐㪸㫅㫌㫊
㪤㫌㫉㪸㪼㫅㫆㫃㪼㫇㫀㫊
㪤㫌㫉㪸㪼㫅㫆㫃㪼㫇㫀㪻㫀㪻㪸㪼
㪩㪸㫅㫀㪺㪼㫇㫊
㩷㩷㩷㪩㪸㫅㫀㪺㫀㫇㫀㫋㫀㫅㪸㪼
㪣㫆㫋㪸
㩷㩷㩷㪣㫆㫋㫀㫅㪸㪼
㪜㫃㪼㪾㫀㫅㫌㫊 㪜㫃㪼㪾㫀㫅㫌㫊 㪜㫃㪼㪾㫀㫅㫌㫊 㪜㫃㪼㪾㫀㫅㫌㫊 㪞㪸㪻㫌㫊 㪞㪸㪻㫌㫊 㪞㪸㪻㫌㫊 㪞㪸㪻㫌㫊 㪞㪸㪻㫌㫊 㪞㪸㪻㫌㫊 㪞㪸㪻㫌㫊 㪤㫀㪺㫉㫆㫄㪼㫊㫀㫊㫋㫀㫌㫊 㪧㫆㫃㫃㪸㪺㪿㫀㫌㫊 㪧㫆㫃㫃㪸㪺㪿㫀㫌㫊 㪫㪿㪼㫉㪸㪾㫉㪸 㪫㫉㫀㫊㫆㫇㫋㪼㫉㫌㫊
㫄㪸㫉㫄㫆㫉㪸㫋㫌㫊
㫉㪸㫅㫀㫅㫌㫊
㫃㫆㫋㪸
㪾㫉㪸㪺㫀㫃㫀㫊 㫅㪸㫍㪸㪾㪸 㫅㪸㫍㪸㪾㪸 㫅㪸㫍㪸㪾㪸 㫄㪸㪺㫉㫆㪺㪼㫇㪿㪸㫃㫌㫊 㫄㫆㫉㪿㫌㪸 㫄㫆㫉㪿㫌㪸 㫄㫆㫉㪿㫌㪸 㫄㫆㫉㪿㫌㪸 㫆㪾㪸㪺 㫆㪾㪸㪺 㫇㫆㫌㫋㪸㫊㫊㫆㫌 㫇㫆㫃㫃㪸㪺㪿㫀㫌㫊 㫍㫀㫉㪼㫅㫊 㪺㪿㪸㫃㪺㫆㪾㫉㪸㫄㫄㪸 㫄㫀㫅㫌㫋㫌㫊
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪝㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷 㪞㪸㪻㫀㪻㪸㪼㩷 㩷㩷㩷㪞㪸㪻㫀㫅㪸㪼㩷
㪫㪸㪹㫃㪼㩷㪍㪅㪉㪊㩷㩷㪦㫉㪻㪼㫉㩷㪞㪘㪛㪠㪝㪦㪩㪤㪜㪪
㪘㫇㪿㫉㪼㪻㫆㪻㪼㫉㫌㫊
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪝㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷 㪘㫇㪿㫉㪼㪻㫆㪻㪼㫉㫀㪻㪸㪼
㪫㪸㪹㫃㪼㩷㪍㪅㪉㪉㩷㩷㪦㫉㪻㪼㫉㩷㪧㪜㪩㪚㪦㪧㪪㪠㪝㪦㪩㪤㪜㪪㩷㩷
㫄㫆㫉㪿㫌㪸㩷㫄㪸㫉㫀㫊㪸㫃㪹㫀 㫄㫆㫉㪿㫌㪸㩷㫄㪸㫉㫀㫊㪸㫃㪹㫀
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪤
㪝㪃㩷㪤
㪝㪃㩷㪤
㪝㪃㩷㪤
㪝
㪝㪃㩷㪤
㪝
㪚 㪪㪼㫏
㪚 㪪㪼㫏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪋
㪋㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪋㪉㩷㪪㪫㪆㪘
㪊㪇㩷㪤㪆㪪㪤㩷㪂㩷㪈㪏㩷㪪㪫㪆㪘
㪈㪉㪤㩷㪂㩷㪈㪏㪪㪤㩷㪂㩷㪈㪋㪪㪫㩷㪂㩷㪋㪘
㪈㪇㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪊㪇㪘
㪌㪋
㪎㪏
㪎㪏
㪌㪋
㪌㪇
㪐㪉
㪌㪏
㪈㪅㪏㩷㪝㪠㪘
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪍
㪘㫅㫋㪸㫉㪺㫋㫀㪺㪸
㪪㫎㪼㪻㪼㫅
㪜㫌㫉㫆㫇㪼
㪪㫎㪼㪻㪼㫅
㪡㪸㫇㪸㫅㩷㩿㪟㫆㫂㫂㪸㫀㪻㫆㪀
㪪㫎㪼㪻㪼㫅
㪪㫎㪼㪻㪼㫅
㪩㫌㫊㫊㫀㪸㩷㩿㪮㪿㫀㫋㪼㩷㪪㪼㪸㪀
㪩㫌㫊㫊㫀㪸
㪩㫌㫊㫊㫀㪸㩷㩿㪮㪿㫀㫋㪼㩷㪪㪼㪸㪀
㪬㪢
㪬㪢
㪪㫎㪼㪻㪼㫅
㪡㪸㫇㪸㫅㩷㩿㪟㫆㫂㫂㪸㫀㪻㫆㪀
㪈㪇㪤㩷㪂㩷㪊㪇㩷㪪㪫㪆㪘
㪘㪚㪥㪔㪋㪋
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪍
㪩㫌㫊㫊㫀㪸㩷㩿㪮㪿㫀㫋㪼㩷㪪㪼㪸㪀
㪩㫌㫊㫊㫀㪸㩷㩿㪮㪿㫀㫋㪼㩷㪪㪼㪸㪀
㪈㪇㪤㩷㪂㩷㪉㪏㩷㪪㪫㪆㪘
㪋㪏
㪈㪅㪎㩷㪝㪠㪘 㩿㪈㪅㪐㩷㪝㪠㪘㪀
㪘㪚㪥㪔㪋㪍
㪩㫌㫊㫊㫀㪸
㪡㪸㫇㪸㫅㩷㩿㪟㫆㫂㫂㪸㫀㪻㫆㪀
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪬㪪㪘㩷㩿㪫㪯㪀
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪋㪇
㪍㪋
㪍㪋
㪋㪏
㪋㪍
㪋㪏
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪘㪚㪥㪔㪌㪇
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪊㪏
㪌㪋
㪈㪅㪉㩷㪝㪛
㪞 㪟 㪠 㪥㪝㪉 㪘㪾㪄 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㪥㪦㪩㫊 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪍㪏
㪞 㪟 㪠 㪥㪝㪉 㪘㪾㪄 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㩿㫇㪾㪆㪺㪼㫃㫃㪀 㪥㪦㪩㫊
㪪㫎㪼㪻㪼㫅
㪍㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪉㪏㪘
㪌㪋
㪌㪉
㪌㪍
㪌㪍
㪌㪋
㪋㪐
㪋㪏
㪋㪍
㪋㪏
㪝 㪥㪝㪈
㪝 㪥㪝㪈
㪋㪋
㪋㪍
㪋㪍
㪏㩷㪤㪆㪪㪤㩷㪂㩷㪊㪏㩷㪪㪫㪆㪘
㪈㪈㩷㪤㪆㪪㪤㩷㪂㩷㪊㪋㩷㪪㪫㪆㪘
㪋㪌 㪋㪍
㪈㪇㩷㪤㪆㪪㪤㩷㪂㩷㪊㪍㩷㪪㪫㪆㪘
㪈㪇㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪉㪋㪘
㪋㪍
㪋㪍
㪋㪋
㪉㪎
㪉㪉㪤㩷㪂㩷㪋㪘
㪉㪇㪤㩷㪂㩷㪍㪘
㪉㪍
㪉㪉㪤㩷㪂㩷㪋㪘
㪉㪍
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪉㪤㩷㪂㩷㪈㪏㩷㪪㪤㪆㪪㪫㩷㪂㩷㪉㪏㪘
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪉㪍
㪛 㪉㫅
㪋㪏
㪛 㪉㫅
㪛㪄㪋
㪥㪄㪋㪐
㪩㪄㪐㪃㩷㪢㪄㪏㪊
㪥㪄㪋㪐
㪠㪄㪈㪋㪃㩷㪟㪄㪋㪇
㪥㪄㪋㪐
㪥㪄㪋㪐
㪥㪄㪋㪐
㪢㪄㪏㪊
㪭㪄㪎㪉
㪣㪄㪏㪏
㪝㪄㪋
㪝㪄㪋
㪡㪄㪈㪃㩷㪥㪄㪋㪐㪃㩷㪟㪄㪋㪈
㪠㪄㪈㪋㪃㩷㪟㪄㪋㪇
㪣㪄㪏㪏
㪢㪄㪏㪊
㪭㪄㪎㪉
㪠㪄㪈㪋
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
㪞㪄㪏㪉
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
131
㫄㪼㪻㫀㫋㪼㫉㫉㪸㫅㪼㫌㫊 㫄㪼㪻㫀㫋㪼㫉㫉㪸㫅㪼㫌㫊 㫄㪼㪻㫀㫋㪼㫉㫉㪸㫅㪼㫌㫊 㫄㪼㪻㫀㫋㪼㫉㫉㪸㫅㪼㫌㫊 㫇㪿㫐㪺㫀㫊
㪦㫇㪿㫀㪻㫀㫆㫅 㪦㫇㪿㫀㪻㫀㫆㫅 㪧㪸㫉㫆㫇㪿㫀㪻㫀㫆㫅 㪧㪸㫉㫆㫇㪿㫀㪻㫀㫆㫅
㪦㫇㪿㫀㪻㫀㫀㪻㪸㪼㩷
㪚㪸㫉㪸㫇㫌㫊
㪹㪸㫉㪹㪸㫋㫌㫄 㪹㪸㫉㪹㪸㫋㫌㫄 㫍㪸㫊㫊㪸㫃㫀 㫍㪸㫊㫊㪸㫃㫀
㪸㪺㫌㫊
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㪹㫆㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷 㪪㫌㪹㫆㫉㪻㪼㫉㩷㪦㫇㪿㫀㪻㫀㫆㫀㪻㪼㫀 㪚㪸㫉㪸㫇㫀㪻㪸㪼㩷
㪫㪸㪹㫃㪼㩷㪍㪅㪉㪋㩷㩷㪦㫉㪻㪼㫉㩷㪦㪧㪟㪠㪛㪠㪠㪝㪦㪩㪤㪜㪪
㪞㪸㫀㪻㫉㫆㫇㫊㪸㫉㫌㫊 㪞㪸㫀㪻㫉㫆㫇㫊㪸㫉㫌㫊 㪞㪸㫀㪻㫉㫆㫇㫊㪸㫉㫌㫊 㪞㪸㫀㪻㫉㫆㫇㫊㪸㫉㫌㫊 㪧㪿㫐㪺㫀㫊
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪝㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷 㪧㪿㫐㪺㫀㪻㪸㪼
㪘㪄㫋㫐㫇㪼 㪙㪄㫋㫐㫇㪼 㪘㪄㫋㫐㫇㪼 㪙㪄㫋㫐㫇㪼
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪘㩷㫂㪸㫉㫐㫆㫋㫐㫇㪼 㪙㩷㫂㪸㫉㫐㫆㫋㫐㫇㪼 㪚㩷㫂㪸㫉㫐㫆㫋㫐㫇㪼
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪫㪸㪹㫃㪼㩷㪍㪅㪉㪊㩷㩷㪦㫉㪻㪼㫉㩷㪞㪘㪛㪠㪝㪦㪩㪤㪜㪪㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀
㪉㪏 㪋㪏
㪝㪃㩷㪤 㪝
㪋㪋 㪋㪊 㪋㪋 㪋㪊
㪝㪃㩷㪤 㪝㪃㩷㪤 㪝㪃㩷㪤
㪊㪍
㪝㪃㩷㪤
㪝㪃㩷㪤
㪛 㪉㫅
㪉㪏
㪝㪃㩷㪤
㪚 㪪㪼㫏
㪉㪏
㪉㪏
㪛 㪉㫅
㪝㪃㩷㪤
㪚 㪪㪼㫏
㪈㪤㩷㪂㩷㪋㪉㪘
㪋㪋㪘
㪈㪤㩷㪂㩷㪋㪉㪘
㪋㪋㪘
㪉㪪㪤㩷㪂㩷㪊㪋㪘
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪋㪏㪘
㪉㪉㩷㪤㪆㪪㪤㩷㪂㩷㪍㪘
㪈㪏㪤㩷㪂㩷㪌㪪㪤㩷㪂㩷㪌㪘
㪉㪋㩷㪤㪆㪪㪤㩷㪂㩷㪋㪘
㪉㪋㩷㪤㪆㪪㪤㩷㪂㩷㪋㪘
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪋㪋
㪋㪋
㪋㪋
㪋㪋
㪊㪏
㪝 㪥㪝㪈
㪋㪏
㪌㪇
㪌㪈
㪌㪉
㪌㪉
㪝 㪥㪝㪈
㪉
㪋㪋
㪋㪋
㪋㪋
㪋㪋
㪊㪏
㪉
㪞 㪟 㪠 㪥㪝㪉 㪘㪾㪄 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㪥㪦㪩㫊 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪋㪏
㪌㪇
㪌㪈
㪌㪉
㪌㪉
㪞 㪟 㪠 㪥㪝㪉 㪘㪾㪄 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㩿㫇㪾㪆㪺㪼㫃㫃㪀 㪥㪦㪩㫊
㪘㪚㪥㪔㪋㪋
㪘㪚㪥㪔㪋㪋
㪘㪚㪥㪔㪋㪋
㪘㪚㪥㪔㪋㪋
㪘㪚㪥㪔㪊㪍
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪠㫋㪸㫃㫐㩷㩿㪧㪸㫃㪼㫉㫄㫆㪀
㪠㫋㪸㫃㫐㩷㩿㪧㪸㫃㪼㫉㫄㫆㪀
㪠㫋㪸㫃㫐㩷㩿㪧㪸㫃㪼㫉㫄㫆㪀
㪠㫋㪸㫃㫐㩷㩿㪧㪸㫃㪼㫉㫄㫆㪀
㪠㫋㪸㫃㫐㩷㩿㪧㪸㫃㪼㫉㫄㫆㪀
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪪㫇㪸㫀㫅
㪠㫋㪸㫃㫐㩷㩿㪧㪸㫃㪼㫉㫄㫆㪀
㪠㫋㪸㫃㫐㩷㩿㪧㪸㫃㪼㫉㫄㫆㪀
㪠㫋㪸㫃㫐㩷㩿㪧㪸㫃㪼㫉㫄㫆㪀
㪙㫃㪸㪺㫂㩷㪪㪼㪸
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪭㪄㪎㪌
㪭㪄㪎㪌
㪭㪄㪎㪌
㪭㪄㪎㪌
㪭㪄㪌㪌
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
㪘㪄㪊㪇
㪭㪄㪌㪇
㪭㪄㪌㪇
㪭㪄㪌㪇
㪭㪄㪌
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
132
㪘㪾㫆㫅㫆㫊㫋㫆㫄㫌㫊 㪚㪿㪼㫃㫆㫅 㪣㫀㫑㪸 㪣㫀㫑㪸 㪣㫀㫑㪸 㪣㫀㫑㪸 㪣㫀㫑㪸 㪤㫌㪾㫀㫃 㪤㫌㪾㫀㫃 㪤㫌㪾㫀㫃 㪤㫌㪾㫀㫃 㪤㫌㪾㫀㫃 㪤㫌㪾㫀㫃 㪤㫌㪾㫀㫃 㪤㫌㪾㫀㫃 㪤㫌㪾㫀㫃 㪤㫌㪾㫀㫃 㪤㫌㪾㫀㫃 㪤㫌㪾㫀㫃 㪤㫌㪾㫀㫃 㪤㫌㪾㫀㫃 㪤㫌㪾㫀㫃 㪦㪼㪻㪸㫃㪼㪺㪿㫀㫃㫌㫊 㪧㪸㫉㪸㫄㫌㪾㫀㫃 㪧㪸㫉㪸㫄㫌㪾㫀㫃 㪩㪿㫀㫅㫆㫄㫌㪾㫀㫃 㪭㪸㫃㪸㫄㫌㪾㫀㫃 㪭㪸㫃㪸㫄㫌㪾㫀㫃
㫄㫆㫅㫋㫀㪺㫆㫃㪸 㫃㪸㪹㫉㫆㫊㫌㫊 㪸㫌㫉㪸㫋㪸 㪿㪸㪼㫄㪸㫋㫆㪺㪿㪼㫀㫃㪸 㫇㪸㫉㫊㫀㪸 㫉㪸㫄㪸㪻㪸 㫊㪸㫃㫀㪼㫅㫊 㪺㪼㫇㪿㪸㫃㫌㫊 㪺㪼㫇㪿㪸㫃㫌㫊 㪺㪼㫇㪿㪸㫃㫌㫊 㪺㪼㫇㪿㪸㫃㫌㫊 㪺㪼㫇㪿㪸㫃㫌㫊 㪺㪼㫇㪿㪸㫃㫌㫊 㪺㫌㫉㪼㫄㪸 㪺㫌㫉㪼㫄㪸 㪺㫌㫉㪼㫄㪸 㪾㪸㫀㫄㪸㫉㪻㫀㪸㫅㫌㫊 㪾㪸㫀㫄㪸㫉㪻㫀㪸㫅㫌㫊 㫃㫀㫑㪸 㫇㫃㪸㫋㪸㫅㫌㫊 㫉㫌㪹㫉㫀㫆㪺㫌㫃㫌㫊 㫋㫉㫀㪺㪿㫆㪻㫆㫅 㫃㪸㪹㪼㫆 㫇㪸㫉㫄㪸㫋㫌㫊 㫇㪸㫉㫄㪸㫋㫌㫊 㪺㫆㫉㫊㫌㫃㪸 㫊㫇㪼㫀㪾㫃㪼㫉㫀 㫊㫇㪼㫀㪾㫃㪼㫉㫀
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪝㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷 㪤㫌㪾㫀㫃㫀㪻㪸㪼㩷
㪫㪸㪹㫃㪼㩷㪍㪅㪉㪌㩷㩷㪦㫉㪻㪼㫉㩷㪤㪬㪞㪠㪣㪠㪝㪦㪩㪤㪜㪪㩷
㪣㫀㫑㪸㩷㫄㪸㪺㫉㫆㫃㪼㫇㫀㫊 㪣㫀㫑㪸㩷㫆㫃㫀㪾㫆㫃㪼㫇㫀㫊 㪤㫌㪾㫀㫃 㪤㫌㪾㫀㫃
㪤㫌㪾㫀㫃㩷
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪉㪪㪫㩷㪂㩷㪋㪍㪘 㪋㪏㪘
㪋㪏 㪋㪏 㪋㪏
㪝㪃㩷㪤
㪋㪏㪘 㪋㪏㪘 㪋㪏㪘 㪋㪏㪘
㪋㪏 㪋㪏 㪋㪏 㪋㪏 㪋㪏 㪋㪏
㪝㪃㩷㪤 㪝㪃㩷㪤 㪝㪃㩷㪤
㪋㪏
㪤
㪋㪏㪘
㪋㪏㪘
㪋㪏 㪋㪏
㪋㪏㪘
㪋㪏
㪝㪃㩷㪤 㪝㪃㩷㪤
㪋㪏㪘
㪋㪏
㪋㪏㪘
㪉㪪㪫㩷㪂㩷㪋㪍㪘
㪝㪃㩷㪤
㪋㪏
㪝㪃㩷㪤
㪋㪏㪘
㪋㪏 㪋㪏㪘
㪋㪏㪘
㪋㪏 㪋㪏
㪋㪏㪘
㪋㪏
㪝㪃㩷㪤
㪋㪏㪘
㪋㪏
㪉㪏 㪉㪋 㪋㪏㪘
㪉㪇㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪋㪘 㪉㪉㪤㩷㪂㩷㪉㪪㪤
㪉㪏
㪋㪏
㪉㪇㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪋㪘
㪋㪏
㪝㪃㩷㪤
㪝㪃㩷㪤
㪋㪏㪘
㪋㪏
㪝㪃㩷㪤
㪉㪪㪫㩷㪂㩷㪋㪍㪘
㪉㪪㪫㩷㪂㩷㪋㪍㪘
㪋㪏
㪤
㪋㪏㪘
㪉㪪㪫㩷㪂㩷㪋㪍㪘
㪋㪏
㪉㪪㪫㩷㪂㩷㪋㪍㪘
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪝㪃㩷㪤
㪛 㪉㫅
㪝㪃㩷㪤
㪚 㪪㪼㫏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪝 㪥㪝㪈
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪌㪇
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪌㪉
㪌㪉
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪌㪇
㪌㪇
㪋㪏
㪋㪏
㪌㪇
㪌㪇
㪌㪇
㪞 㪥㪝㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪈㪄㪉
㪉
㪉
㪟 㪘㪾㪄 㪥㪦㪩㫊
㩿㪈㪅㪋㩷㪝㪛㪀
㩿㪈㪅㪍㪁㩷㪝㪚㪤㪀
㩿㪈㪅㪍㩷㪝㪠㪘㪀
㩿㪉㪅㪋㩷㪝㪛㪀
㪈㪅㪍㩷㪝㪚㪤
㪉㪅㪊㩷㪝㪛
㪠 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪚㪄㪊㪉
㪚㪄㪊㪉㪃㩷㪞㪄㪎㪌
㪚㪄㪊㪇㪃㩷㪚㪄㪊㪉㪃㩷㪞㪄㪏㪌
㪢㪄㪉㪏
㪰㪄㪉㪇㪃㩷㪱㪄㪊㪎
㪚㪄㪐㪃㩷㪚㪄㪊㪉
㪚㪄㪊㪇㪃㩷㪚㪄㪊㪉
㪥㪄㪍㪋
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
㪠㫅㪻㫀㪸㩷㩿㪮㪙㪀
㪠㫅㪻㫀㪸㩷㩿㪦㫉㫀㫊㫊㪸㪀
㪠㫅㪻㫀㪸㩷㩿㪮㪙㪀
㪠㫅㪻㫀㪸㩷㩿㪦㫉㫀㫊㫊㪸㪀
㪠㫅㪻㫀㪸㩷㩿㪦㫉㫀㫊㫊㪸㪀
㪠㫋㪸㫃㫐㩷㩿㪫㫐㫉㫉㪿㪼㫅㫀㪸㫅㩷㪪㪼㪸㪀
㪭㪼㫅㪼㫑㫌㪼㫃㪸㩷㩿㪤㪸㫉㪾㪸㫉㫀㫋㪸㩷㪠㫊㪅㪀
㪭㪼㫅㪼㫑㫌㪼㫃㪸㩷㩿㪤㪸㫉㪾㪸㫉㫀㫋㪸㩷㪠㫊㪅㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪭㪼㫅㪼㫑㫌㪼㫃㪸㩷㩿㪤㪸㫉㪾㪸㫉㫀㫋㪸㩷㪠㫊㪅㪀
㪭㪼㫅㪼㫑㫌㪼㫃㪸㩷㩿㪤㪸㫉㪾㪸㫉㫀㫋㪸㩷㪠㫊㪅㪀
㪧㪸㫅㪸㫄㪸
㪭㪼㫅㪼㫑㫌㪼㫃㪸㩷㩿㪤㪸㫉㪾㪸㫉㫀㫋㪸㩷㪠㫊㪅㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪩㪀
㪬㪪㪘㩷㩿㪣㪘㪀
㪚㪿㫀㫅㪸
㪠㫅㪻㫀㪸㩷㩿㪧㫆㫉㫋㫆㫅㫆㫍㫆㪀
㪠㫅㪻㫀㪸㩷㩿㪘㪅㪧㪅㪀
㪬㪪㪘㩷㩿㪣㪘㪀
㪢㪄㪈㪊㪍
㪩㪄㪌㪎
㪥㪄㪈㪏㪃㩷㪢㪄㪉㪍
㪚㪄㪍㪈
㪚㪄㪍㪈
㪚㪄㪊㪉㪃㩷㪩㪄㪐㪊
㪥㪄㪌㪊
㪥㪄㪍㪍
㪡㪄㪈㪊
㪩㪄㪐㪋
㪥㪄㪌㪉
㪥㪄㪌㪉
㪥㪄㪌㪉㪃㩷㪥㪄㪎㪋㪃㩷㪩㪄㪐㪋
㪥㪄㪎㪋
㪣㪄㪈㪏㪃㩷㪞㪄㪏㪌
㪣㪄㪌㪋㪃㩷㪰㪄㪉㪈㪃㩷㪦㪄㪋㪏
㪥㪄㪈㪊
㪣㪄㪊
㪣㪄㪈㪏㪃㩷㪟㪄㪋㪇
㪜㫌㫉㫆㫇㪼㪃㩷㪬㪪㪘㪃㩷㪘㫌㫊㫋㫉㪸㫃㫀㪸㪃㩷㪫㪸㫀㫎㪸㫅 㪚㪄㪐㪃㩷㪚㪄㪊㪇㪃㩷㪩㪄㪐㪉
㪠㫋㪸㫃㫐㩷㩿㪩㫆㫄㪼㪀
㪠㫋㪸㫃㫐
㪠㫋㪸㫃㫐㩷㩿㪫㫐㫉㫉㪿㪼㫅㫀㪸㫅㩷㪪㪼㪸㪀
㪠㫅㪻㫀㪸㩷㩿㪮㪙㪀
㪚㪿㫀㫅㪸㩷㩿㪪㪿㪸㫅㪻㫆㫅㪾㪀
㪤㪼㪻㫀㫋㪼㫉㫉㪸㫅㪼㪸㫅㩷
㪠㫋㪸㫃㫐㩷㩿㪫㫐㫉㫉㪿㪼㫅㫀㪸㫅㩷㪪㪼㪸㪀
㪧㪸㫅㪸㫄㪸㪃㩷㪭㪼㫅㪼㫑㫌㪼㫃㪸
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
133
㪸㫋㫋㪼㫅㫌㪸㫋㫌㫄 㪼㫊㫋㫆㫉 㪾㫉㪸㫅㪻㫆㪺㫌㫃㪼 㫁㫆㫉㪻㪸㫅㫀 㫇㪸㫋㫑㪺㫌㪸㫉㫆 㫊㫀㪺㪺㫌㫃㫌㫊 㫄㪸㫉㫋㫀㫅㫀㪺㪸 㪹㪼㫉㫐㫃㫃㫀㫅㪸 㪹㪼㫉㫐㫃㫃㫀㫅㪸 㫄㪼㫅㫀㪻㫀㪸
㪸㫌㫊㫋㫉㪸㫃㫀㫊 㫄㫀㪺㫉㫆㫃㪼㫇㫀㪻㫆㫋㫌㫊 㪹㫆㫅㪸㫉㫀㪼㫅㫊㫀㫊 㪹㫆㫅㪸㫉㫀㪼㫅㫊㫀㫊 㪹㫆㫅㪸㫉㫀㪼㫅㫊㫀㫊 㪹㫆㫅㪸㫉㫀㪼㫅㫊㫀㫊 㪹㫆㫅㪸㫉㫀㪼㫅㫊㫀㫊 㪹㫆㫅㪸㫉㫀㪼㫅㫊㫀㫊
㪙㪼㪻㫆㫋㫀㪸 㪤㪸㫉㫆㫊㪸㫋㪿㪼㫉㫀㫅㪸 㪤㪼㫃㪸㫅㫆㫋㪸㪼㫅㫀㪸 㪤㪼㫃㪸㫅㫆㫋㪸㪼㫅㫀㪸 㪤㪼㫃㪸㫅㫆㫋㪸㪼㫅㫀㪸 㪤㪼㫃㪸㫅㫆㫋㪸㪼㫅㫀㪸
㪤㪼㫃㪸㫅㫆㫋㪸㪼㫅㫀㫀㪻㪸㪼
㪘㫋㪿㪼㫉㫀㫆㫅
㪘㫋㪿㪼㫉㫀㫆㫅㫀㪻㪸㪼
㪘㫋㪿㪼㫉㫀㫅㪸 㪘㫋㪿㪼㫉㫀㫅㪸 㪟㫐㫇㫆㪸㫋㪿㪼㫉㫀㫅㪸
㪾㪼㪸㫐㫀 㫃㪸㪻㫀㪾㪼㫊㫀 㪽㫃㫌㫍㫀㪸㫋㫀㫃㫀㫊 㪾㫆㫃㪻㫀㪼㫀 㫄㪸㪺㪺㫌㫃㫃㫆㪺㪿㫀 㪺㪽㪅㩷㫊㫇㫃㪼㫅㪻㫀㪻㪸
㪼㫃㫐㫄㫌㫊
㪹㫆㫐㪼㫉㫀 㪹㫆㫐㪼㫉㫀 㫍㪸㫃㪼㫅㪺㫀㪼㫅㫅㪼㫀
㪪㫌㪹㫆㫉㪻㪼㫉㩷㪘㫋㪿㪼㫉㫀㫅㫆㫀㪻㪼㫀 㪘㫋㪿㪼㫉㫀㫅㫀㪻㪸㪼
㪚㪿㫀㫉㫆㫊㫋㫆㫄㪸 㪚㪿㫀㫉㫆㫊㫋㫆㫄㪸 㪚㪿㫀㫉㫆㫊㫋㫆㫄㪸 㪚㪿㫀㫉㫆㫊㫋㫆㫄㪸 㪚㪿㫀㫉㫆㫊㫋㫆㫄㪸 㪣㪸㪹㫀㪻㪼㫊㫋㪿㪼㫊 㪤㪼㫄㪹㫉㪸㫊 㪤㪼㫅㫀㪻㫀㪸 㪤㪼㫅㫀㪻㫀㪸 㪤㪼㫅㫀㪻㫀㪸
㩷㩷㩷㪤㪼㫅㫀㪻㫀㫀㫅㪸㪼
㪙㪸㫊㫀㫃㫀㪺㪿㫋㪿㫐㫊 㪙㪸㫊㫀㫃㫀㪺㪿㫋㪿㫐㫊 㪦㪻㫆㫅㫋㪼㫊㫋㪿㪼㫊 㪦㪻㫆㫅㫋㪼㫊㫋㪿㪼㫊 㪦㪻㫆㫅㫋㪼㫊㫋㪿㪼㫊 㪦㪻㫆㫅㫋㪼㫊㫋㪿㪼㫊 㪦㪻㫆㫅㫋㪼㫊㫋㪿㪼㫊 㪦㪻㫆㫅㫋㪼㫊㫋㪿㪼㫊
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㪹㫆㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷 㪪㫌㪹㫆㫉㪻㪼㫉㩷㪘㫋㪿㪼㫉㫀㫅㫆㫇㫊㫆㫀㪻㪼㫀 㪘㫋㪿㪼㫉㫀㫅㫆㫇㫊㫀㪻㪸㪼 㩷㩷㩷㪘㫋㪿㪼㫉㫀㫅㫆㫇㫊㫀㫅㪸㪼
㪉㪤㩷㪂㩷㪋㪍㩷㪪㪫㪆㪘
㪋㪏 㪋㪏
㪙㪸㫊㫀㫃㫀㪺㪿㫋㪿㫐㫊
㫅㫀㪾㫉㫀㪺㪸㫅㫊
㪫㪼㫃㫄㪸㫋㪼㫉㫀㫅㪸
㫄㫆㪺㪿㫆㫅㩷㪺㪸㫊㫇㫀㪸 㫄㫆㪺㪿㫆㫅㩷㫇㫆㫅㫋㫀㪺㪸㩷 㪹㫃㪼㪼㫂㪼㫉㫀
㪉㪪㪤㩷㪂㩷㪋㪍㩷㪪㪫㪆㪘
㪋㪏
㪈㪇㪤㩷㪂㩷㪉㪋㪪㪤㩷㪂㩷㪈㪋㩷㪪㪫㪆㪘 㪋㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪈㪉㪪㪫㩷㪂㩷㪈㪏㪘
㪋㪏 㪋㪏 㪋㪏
㪝㪃㩷㪤 㪝㪃㩷㪤
㪈㪉㪤㩷㪂㩷㪉㪉㪪㪤㩷㪂㩷㪈㪋㩷㪪㪫㪆㪘
㪋㪤㩷㪂㩷㪋㪋㪪㪤
㪋㪏
㪋㪏
㪋㪏
㪋㪍
㪋㪏
㪋㪏
㪋㪏
㪋㪏㪘
㪋㪍㪘
㪉㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪊㪍㪘
㪍㪪㪤㩷㪂㩷㪋㪉㩷㪪㪫㪆㪘
㪋㪏
㪋㪏
㪍㪪㪤㩷㪂㩷㪋㪉㩷㪪㪫㪆㪘
㪋㪏
㪏㪤㩷㪂㩷㪈㪏㪪㪤㩷㪂㩷㪉㪉㩷㪪㪫㪆㪘
㪈㪏㪤㩷㪂㩷㪈㪏㪪㪤㩷㪂㩷㪈㪉㩷㪪㪫㪆㪘
㪋㪏 㪋㪏
㪝㪃㩷㪤 㪝㪃㩷㪤
㪏㪉
㪋㪏
㪋㪍
㪌㪇
㪐㪍
㪌㪋
㪌㪋
㪍㪍
㪏㪉
㪎㪋
㪏㪋
㪋㪏
㪋㪍
㩿㪏㪍㪀
㩿㪎㪉㪀
㪍㪇
㪐㪍
㪎㪏
㪌㪍
㪉
㪈㪅㪊㩷㪝㪠㪘
㪉㪅㪍㩷㪙㪝㪘 㪉㪅㪍㩷㪙㪝㪘 㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㫄㪸㫉㫀㫅㪼
㪽㫉㪼㫊㪿㫎㪸㫋㪼㫉
㪘㪚㪥㪔㪋㪏
㩿㪘㫌㫊㫋㫉㪸㫃㫀㪸㪀
㪘㫌㫊㫋㫉㪸㫃㫀㪸
㩿㪧㪸㫇㫌㪸㩷㪥㪼㫎㩷㪞㫌㫀㫅㪼㪸㪀
㩿㪘㫌㫊㫋㫉㪸㫃㫀㪸㪀
㩿㪪㫌㫃㪸㫎㪼㫊㫀㪀
㪤㪸㪻㪸㪾㪸㫊㪺㪸㫉
㪡㪸㫇㪸㫅㩷㩿㪚㪿㫀㪹㪸㪀
㪡㪸㫇㪸㫅㩷㩿㪮㪸㫂㪸㫐㪸㫄㪸㪀
㪩㫌㫊㫊㫀㪸
㪩㫌㫊㫊㫀㪸
㪬㪪㪘㩷㩿㪣㫆㫅㪾㩷㪠㫊㫃㪸㫅㪻㪀
㪬㪪㪘㩷㩿㪣㪘㪀
㪬㪪㪘㩷㩿㪣㪘㪀
㪬㪪㪘㩷㩿㪣㪘㪀
㪬㪪㪘
㪤㪼㫏㫀㪺㫆㩷㩿㪤㫀㪺㪿㫆㪸㪺㬗㫅㪀
㪤㪼㫏㫀㪺㫆㩷㩿㪣㪸㫂㪼㩷㪚㪿㪸㫇㫌㫃㫋㪼㫇㪼㪺㪀
㪋㪋
㪎㪏
㪤㪼㫏㫀㪺㫆㩷㩿㪤㫀㪺㪿㫆㪸㪺㬗㫅㪀
㪤㪼㫏㫀㪺㫆
㩿㫀㫅㫋㫉㫆㪻㫌㪺㪼㪻㪃㩷㪡㪸㫇㪸㫅㪀
㪠㫋㪸㫃㫐㩷㩿㪣㪸㫂㪼㩷㪥㪼㫄㫀㪀
㪠㫋㪸㫃㫐㩷㩿㪣㪸㫂㪼㩷㪥㪼㫄㫀㪀
㪠㫋㪸㫃㫐㩷㩿㪣㪸㫂㪼㩷㪥㪼㫄㫀㪀
㪠㫋㪸㫃㫐㩷㩿㪣㪸㫂㪼㩷㪥㪼㫄㫀㪀
㪘㫉㪾㪼㫅㫋㫀㫅㪸
㪚㪿㫀㫃㪼㩷㩿㪧㪼㫋㫆㫉㪺㪸㪀
㪚㪿㫀㫃㪼㩷㩿㪘㫌㪾㫆㫊㫋㫌㫉㪸㪀
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪏㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪈㪏㪘
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪏
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪈㪉㪪㪫㩷㪂㩷㪊㪉㪘
㪍㪏
㪠 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪋㪏
㪏㪇
㪎㪏
㪈㪄㪋
㪟 㪘㪾㪄 㪥㪦㪩㫊
㪋㪋
㪍㪏
㪎㪍
㪞 㪥㪝㪉
㪤㪼㫏㫀㪺㫆
㪈㪉㪤㩷㪂㩷㪏㪪㪤㩷㪂㩷㪈㪉㪪㪫㩷㪂㩷㪈㪍㪘
㪋㪏
㪌㪉
㪌㪇
㪌㪇
㪌㪈
㪌㪉
㪌㪍
㪌㪍
㪝 㪥㪝㪈
㪋㪏
㪋㪤㩷㪂㩷㪉㪋㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪈㪏㪘
㪋㪏
㪋㪪㪤㩷㪂㩷㪋㪋㩷㪪㪫㪆㪘
㪋㩷㪤㪆㪪㪤㩷㪂㩷㪋㪋㩷㪪㪫㪆㪘 㪊㩷㪤㪆㪪㪤㩷㪂㩷㪋㪌㩷㪪㪫㪆㪘
㪋㪏
㪉㪤㩷㪂㩷㪏㪪㪤㩷㪂㩷㪊㪍㩷㪪㪫㪆㪘
㪋㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪋㪇㩷㪪㪫㪆㪘
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪋㪏
㪝㪃㩷㪤
㪋㪍 㪋㪏
㪋㪏
㪝㪃㩷㪤
㪛 㪉㫅
㪝㪃㩷㪤
㪚 㪪㪼㫏
㪘㫋㪿㪼㫉㫀㫅㫀㪻㪸㪼 㪘㫋㪿㪼㫉㫀㫅㫀㪻㪸㪼 㪘㫋㪿㪼㫉㫀㫅㫀㪻㪸㪼 㪘㫋㪿㪼㫉㫀㫅㫀㪻㪸㪼
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪥㪼㫄㪸㫋㫆㪺㪼㫅㫋㫉㫀㫊㩷 㪺㪽㪅㩷㫉㫌㪹㫉㫆㫊㫋㫉㫀㪸㫋㫌 㪤
㪫㪸㪹㫃㪼㩷㪍㪅㪉㪍㩷㩷㪦㫉㪻㪼㫉㩷㪘㪫㪟㪜㪩㪠㪥㪠㪝㪦㪩㪤㪜㪪㩷
㪘㪄㪎㪈
㪪㪄㪉㪋
㪟㪄㪈㪊
㪟㪄㪈㪊
㪪㪄㪉㪋
㪪㪄㪉㪋
㪘㪄㪎㪈
㪢㪄㪌㪇
㪭㪄㪎㪉
㪭㪄㪎㪉
㪮㪄㪈㪍
㪢㪄㪈㪇㪇
㪢㪄㪈㪇㪇
㪢㪄㪈㪇㪇
㪢㪄㪈㪇㪇㪃㩷㪟㪄㪋㪇
㪬㪄㪌㪇
㪬㪄㪌㪇
㪬㪄㪌㪇
㪬㪄㪌㪇
㪬㪄㪌㪇
㪘㪄㪎㪍
㪪㪄㪈㪎㪇
㪪㪄㪈㪎㪇
㪪㪄㪈㪎㪇
㪪㪄㪈㪎㪇
㪝㪄㪉㪇
㪞㪄㪈
㪞㪄㪈
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
134
㪦㫉㫐㫑㫀㪸㫊 㪦㫉㫐㫑㫀㪸㫊 㪦㫉㫐㫑㫀㪸㫊 㪦㫉㫐㫑㫀㪸㫊 㪦㫉㫐㫑㫀㪸㫊 㪦㫉㫐㫑㫀㪸㫊 㪦㫉㫐㫑㫀㪸㫊 㪦㫉㫐㫑㫀㪸㫊 㪦㫉㫐㫑㫀㪸㫊 㪦㫉㫐㫑㫀㪸㫊 㪦㫉㫐㫑㫀㪸㫊 㪦㫉㫐㫑㫀㪸㫊 㪦㫉㫐㫑㫀㪸㫊 㪦㫉㫐㫑㫀㪸㫊 㪦㫉㫐㫑㫀㪸㫊 㪦㫉㫐㫑㫀㪸㫊 㪦㫉㫐㫑㫀㪸㫊 㪦㫉㫐㫑㫀㪸㫊 㪦㫉㫐㫑㫀㪸㫊 㪦㫉㫐㫑㫀㪸㫊 㪦㫉㫐㫑㫀㪸㫊 㪦㫉㫐㫑㫀㪸㫊 㪦㫉㫐㫑㫀㪸㫊 㪦㫉㫐㫑㫀㪸㫊 㪦㫉㫐㫑㫀㪸㫊 㪦㫉㫐㫑㫀㪸㫊 㪦㫉㫐㫑㫀㪸㫊
㪺㪼㫃㪼㪹㪼㫅㫊㫀㫊 㪺㫌㫉㫍㫀㫅㫆㫋㫌㫊 㪻㪸㫅㪺㪼㫅㪸 㪿㫌㪹㪹㫊㫀 㫁㪸㫍㪸㫅㫀㪺㫌㫊 㫃㪸㫋㫀㫇㪼㫊㩷 㫃㪸㫋㫀㫇㪼㫊㩷 㫃㪸㫋㫀㫇㪼㫊㩷 㫃㪸㫋㫀㫇㪼㫊㩷 㫃㪸㫋㫀㫇㪼㫊㩷 㫃㪸㫋㫀㫇㪼㫊㩷 㫃㫌㫑㫆㫅㪼㫅㫊㫀㫊 㫄㪸㫉㫄㫆㫉㪸㫋㫌㫊 㫄㪸㫋㪸㫅㪼㫅㫊㫀㫊 㫄㪼㫂㫆㫅㪾㪼㫅㫊㫀㫊 㫄㫀㫅㫌㫋㫀㫃㫃㫌㫊 㫄㫀㫅㫌㫋㫀㫃㫃㫌㫊 㫄㫀㫅㫌㫋㫀㫃㫃㫌㫊 㫄㫀㫅㫌㫋㫀㫃㫃㫌㫊 㫄㫀㫅㫌㫋㫀㫃㫃㫌㫊 㫄㫀㫅㫌㫋㫀㫃㫃㫌㫊 㫄㫀㫅㫌㫋㫀㫃㫃㫌㫊 㫅㫀㪾㫉㫀㫄㪸㫊 㫊㫀㫅㪼㫅㫊㫀㫊 㫊㫀㫅㪼㫅㫊㫀㫊 㫊㫀㫅㪼㫅㫊㫀㫊 㫊㫀㫅㪼㫅㫊㫀㫊
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㪹㫆㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷 㪪㫌㪹㫆㫉㪻㪼㫉㩷㪘㪻㫉㫀㪸㫅㫀㪺㪿㫋㪿㫐㫆㫀㪻㪼㫀 㪘㪻㫉㫀㪸㫅㫀㪺㪿㫋㪿㫐㫀㪻㪸㪼 㩷㩷㩷㪦㫉㫐㫑㫀㫀㫅㪸㪼
㪫㪸㪹㫃㪼㩷㪍㪅㪉㪎㩷㩷㪦㫉㪻㪼㫉㩷㪙㪜㪣㪦㪥㪠㪝㪦㪩㪤㪜㪪
㫃㪸㫋㫀㫇㪼㫊
㫃㪸㫋㫀㫇㪼㫊
㩷㪟㫀㫄㪼㪻㪸㫂㪸
㫄㪼㫃㪸㫊㫋㫀㪾㫄㪸 㫁㪸㫍㪸㫅㫀㪺㫌㫊
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪋㪤㩷㪂㩷㪈㪏㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪉㪉㪘
㪋㪏
㪝㪃㩷㪤
㪝㪃㩷㪤
㪋㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪉㪍㪘
㪋㪏
㪝㪃㩷㪤
㪉㪪㪫㩷㪂㩷㪋㪍㪘
㪉㪉㩷㪤㪆㪪㪤㩷㪂㩷㪉㪋㩷㪪㪫㪆㪘
㪋㪍
㪍㪤㩷㪂㩷㪈㪏㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪈㪏㪘
㪍㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪉㪉㪘
㪋㪍
㪈㪉㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪉㪉㪘
㪋㪍
㪈㪋㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪈㪉㪘 㪍㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪉㪏㪘
㪉㪏 㪊㪏 㪋㪍
㪈㪇㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪉㪇㪘 㪈㪉㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪈㪍㪘
㪏㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪉㪋㪘
㪊㪋 㪊㪉
㪉㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪊㪍㪘
㪋㪇
㪊㪇
㪋㪉㪘 㪉㪪㪤㩷㪂㩷㪋㪇㪘
㪉㪤㩷㪂㩷㪏㪪㪤㩷㪂㩷㪉㪋㪪㪫㩷㪂㩷㪈㪋㪘
㪋㪏 㪋㪉
㪉㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪊㪋㪘
㪋㪉
㪋㪉
㪉㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪊㪍㪘
㪋㪉
㪈㪇㪤㩷㪂㩷㪈㪇㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪉㪍㪘
㪋㪏 㪈㪋㪤㩷㪂㩷㪊㪋㪪㪤
㪉㪉㩷㪤㪆㪪㪤㩷㪂㩷㪉㪍㩷㪪㪫㪆㪘
㪋㪏 㪋㪏
㪉㪇㩷㪤㪆㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪉㪍㪘
㪋㪏
㪉㪇㩷㪤㪆㪪㪤㩷㪂㩷㪉㪏㪘
㪋㪏 㪋㪏
㪤
㪋㪏㪘 㪋㪏㪘
㪋㪏 㪋㪏
㪏㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪉㪋㪘 㪉㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪊㪉㩷㪪㪫㪆㪘
㪊㪍
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪋㪏
㪛 㪉㫅
㪤
㪝㪃㩷㪤
㪝㪃㩷㪤
㪚 㪪㪼㫏
㪎㪇
㪍㪏
㪍㪏
㪎㪇
㪋㪏
㪋㪋
㪋㪋
㪋㪋
㪋㪋
㪋㪋
㪋㪋
㪋㪉
㪌㪏
㪋㪏
㪋㪏
㪐㪍
㪍㪏
㪎㪇
㪍㪏
㪎㪇
㪍㪏
㪍㪏
㪋㪏
㪋㪏
㪋㪏
㪍㪋
㪋㪏
㪝 㪥㪝㪈
㪎㪋
㪎㪇
㪎㪇
㪋㪏
㪋㪋
㪋㪋
㪋㪋
㪋㪋
㪋㪋
㪋㪋
㪋㪉
㪏㪉
㪌㪇
㪋㪏
㪐㪍
㪎㪇
㪎㪇
㪎㪋
㪎㪇
㪌㪇
㪋㪏
㪋㪏
㪋㪏
㪞 㪥㪝㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪟 㪘㪾㪄 㪥㪦㪩㫊
㪪㫌㫃㪸㫎㪼㫊㫀
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪈㪅㪌㩷㪝㪛
㪈㪅㪌㩷㪝㪛
㪈㪅㪌㩷㪝㪛
㪈㪅㪐㩷㪝㪛
㪈㪅㪎㩷㪝㪛
㪬㪄㪌㪐㪃㩷㪫㪄㪏㪌
㪬㪄㪌㪏㪃㩷㪬㪄㪌㪐㪃㩷㪫㪄㪏㪌
㪬㪄㪌㪎㪃㩷㪫㪄㪏㪌
㪬㪄㪌㪊㪃㩷㪬㪄㪌㪐
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
㪘㪚㪥㪔㪋㪏
㪡㪸㫇㪸㫅
㪢㫆㫉㪼㪸㩷㩿㪡㪸㫇㪸㫅㩷㪪㪼㪸㩷㫊㫀㪻㪼㪀
㪢㫆㫉㪼㪸
㪡㪸㫇㪸㫅
㪡㪸㫇㪸㫅㩷㩿㪘㫆㫄㫆㫉㫀㪀
㪪㫌㫃㪸㫎㪼㫊㫀
㪪㫌㫃㪸㫎㪼㫊㫀
㪪㪅㩷㪸㫅㪻㩷㪥㪜㩷㪫㪿㪸㫀㫃㪸㫅㪻 㪪㪜㩷㪫㪿㪸㫀㫃㪸㫅㪻
㪪㪜㩷㪫㪿㪸㫀㫃㪸㫅㪻
㪥㪅㩷㪫㪿㪸㫀㫃㪸㫅㪻
㪬㪄㪌㪋㪃㩷㪦㪄㪋㪏㪃㩷㪫㪄㪏㪌
㪤㪄㪈㪈
㪤㪄㪌㪃㩷㪤㪄㪍㪃㩷㪤㪄㪈㪈㪃㩷㪫㪄㪏㪌
㪤㪄㪈㪈
㪤㪄㪈㪈
㪤㪄㪈㪈
㪬㪄㪍㪇㪃㩷㪤㪄㪍㪃㩷㪫㪄㪏㪌
㪬㪄㪎㪌
㪬㪄㪎㪌
㪝㪄㪊㪏㪃㩷㪫㪄㪏㪌
㪬㪄㪍㪈㪃㩷㪢㪄㪌㪎
㪧㪄㪎㪈
㪘㪄㪌㪊
㪬㪄㪌㪐
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪋
㪘㪚㪥㪔㪋㪉
㪚㪿㫀㫅㪸㩷㩿㪪㪿㪸㫅㪾㪿㪸㫀㪀
㪢㫆㫉㪼㪸
㪢㫆㫉㪼㪸
㪢㫆㫉㪼㪸㩷㩿㪰㪼㫃㫃㫆㫎㩷㪪㪼㪸㩷㫊㫀㪻㪼㪀
㪪㫌㫃㪸㫎㪼㫊㫀
㪚㪅㩷㪫㪿㪸㫀㫃㪸㫅㪻
㪬㪄㪌㪐㪃㩷㪚㪄㪌㪏
㪧㪄㪎㪈
㪬㪄㪍㪈
㪢㪄㪌㪎
㪬㪄㪎㪌
㪤㪄㪈㪈
㪯㪯㪆㪯㪰㪃㩷㪘㪚㪥㪔㪋㪉 㪚㪅㩷㪸㫅㪻㩷㪥㪅㩷㪫㪿㪸㫀㫃㪸㫅㪻㩷㩿㪚㪿㫀㪸㫅㪾㩷㪤㪸㫀㪀 㪤㪄㪌㪃㩷㪤㪄㪈㪈㪃㩷㪬㪄㪌㪐㪃㩷㪫㪄㪏㪌
㪘㪚㪥㪔㪋㪉
㪯㪯㪆㪯㪰㪃㩷㪘㪚㪥㪔㪋㪉 㪚㪅㩷㪫㪿㪸㫀㫃㪸㫅㪻㩷㩿㪙㪸㫅㪾㫂㫆㫂㪀
㪘㪚㪥㪔㪋㪉
㪘㪚㪥㪔㪋㪉
㪘㪚㪥㪔㪋㪉
㪯㪯㪆㪯㪰㪃㩷㪘㪚㪥㪔㪋㪏 㪥㪅㪜㪅㩷㪫㪿㪸㫀㫃㪸㫅㪻
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪯㪯㪆㪯㪰㪃㩷㪘㪚㪥㪔㪋㪏 㪧㪿㫀㫃㫀㫇㫇㫀㫅㪼㫊㩷㩿㪪㫆㫃㫊㫆㫅㪸㪀
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪦㪄㪈㪌㪃㩷㪟㪄㪈㪊
㪱㪱㪆㪱㪮㪃㩷㪘㪚㪥㪔㪋㪏 㪫㪿㪸㫀㫃㪸㫅㪻㩷㩿㪧㪿㫌㫂㪼㫋㪀㪃㩷㪪㫀㫅㪾㪸㫇㫆㫉㪼 㪤㪄㪍㪃㩷㪬㪄㪌㪌㪃㩷㪬㪄㪌㪐㪃㩷㪫㪄㪏㪌
㪱㪱㪆㪱㪮㪃㩷㪘㪚㪥㪔㪋㪏 㪠㫅㪻㫆㫅㪼㫊㫀㪸㩷㩿㪡㪸㫂㪸㫉㫋㪸㪀
㪯㪯㪆㪯㪰㪃㩷㪘㪚㪥㪔㪋㪏 㪠㫅㪻㫀㪸㩷㩿㪚㪿㫀㪻㪸㫄㪹㪸㫉㪸㫄㪀
㪯㪯㪆㪯㪰㪃㩷㪘㪚㪥㪔㪋㪏 㪚㪿㫀㫅㪸㩷㩿㪟㪸㫀㫅㪸㫅㩷㪠㫊㪅㪀
㪘㪚㪥㪔㪋㪋
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㩿㪉㪅㪈㪁㩷㪝㪚㪤㪀㪃㩷㪈㪅㪎㩷㪝㪛 㪯㪯㪆㪯㪰㪃㩷㪘㪚㪥㪔㪋㪏 㪡㪸㫇㪸㫅㩷㩿㪜㪿㫀㫄㪼㪀
㩿㪉㪅㪉㩷㪙㪝㪘㪀
㪈㪅㪎㩷㪝㪛
㪈㪅㪏㩷㪝㪛
㪈㪅㪏㩷㪝㪛
㪈㪅㪌㩷㪝㪛
㪈㪅㪎㩷㪝㪛
㪠 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㩿㫇㪾㪆㪺㪼㫃㫃㪀
135
㪙㪼㫃㫆㫅㫀㪻㪸㪼㩷
㪚㫆㫃㫆㫃㪸㪹㫀㪸㫊
㪪㪺㫆㫄㪹㪼㫉㪼㫊㫆㪺㫀㪻㪸㪼
㪧㫆㫋㪸㫄㫆㫉㫉㪿㪸㫇㪿㫀㫊㩷 㪧㫆㫋㪸㫄㫆㫉㫉㪿㪸㫇㪿㫀㫊㩷 㪧㫊㪼㫌㪻㫆㫋㫐㫃㫆㫊㫌㫉㫌㫊 㪪㫋㫉㫆㫅㪾㫐㫃㫌㫉㪸 㪪㫋㫉㫆㫅㪾㫐㫃㫌㫉㪸 㪪㫋㫉㫆㫅㪾㫐㫃㫌㫉㪸 㪪㫋㫉㫆㫅㪾㫐㫃㫌㫉㪸 㪯㪼㫅㪼㫅㫋㫆㪻㫆㫅 㪯㪼㫅㪼㫅㫋㫆㪻㫆㫅 㪯㪼㫅㪼㫅㫋㫆㪻㫆㫅
㫊㪸㫀㫉㪸
㪺㪽㪅㩷㪼㫀㪾㪼㫅㫄㪸㫅㫅㫀 㪾㫌㫀㪸㫅㪼㫅㫊㫀㫊 㫄㫀㪺㫉㫆㫇㫊 㫀㫅㪺㫀㫊㪸 㫃㪼㫀㫌㫉㪸 㫊㫋㫉㫆㫅㪾㫐㫃㫌㫉㪸 㫊㫋㫉㫆㫅㪾㫐㫃㫌㫉㪸 㪺㪸㫅㪺㫀㫃㪸 㪺㪸㫅㪺㫀㫃㪸 㪺㪸㫅㪺㫀㫃㪸
㪫㫐㫃㫆㫊㫌㫉㫌㫊㩷㫊㫋㫉㫆㫅㪾㫐㫃㫌㫉㫌㫊
㪫㫐㫃㫆㫊㫌㫉㫌㫊㩷㫃㪼㫀㫌㫉㫌㫊
㪪㫋㫉㫆㫅㪾㫐㫃㫌㫉㪸
㫇㫌㫊㫀㫃㫃㫌㫊 㫄㪸㫉㪾㫀㫅㪸㫋㫌㫊 㪟㪼㫄㫀㫉㪸㫄㫇㪿㫌㫊 㪟㪼㫄㫀㫉㪸㫄㫇㪿㫌㫊
㪛㪼㫉㫄㫆㪾㪼㫅㫐㫊 㫇㫌㫊㫀㫃㫃㪸 㪟㪼㫄㫀㫉㪸㫄㫇㪿㫌㫊 㪹㫉㪸㫊㫀㫃㫀㪼㫅㫊㫀㫊 㪟㫐㫇㫆㫉㪿㪸㫄㫇㪿㫌㫊 㫂㫌㫉㫌㫄㪼㫌㫊 㪩㪿㫐㫅㪺㪿㫆㫉㪿㪸㫄㫇㪿㫌㫊 㪾㪼㫆㫉㪾㫀㫀
㪟㪼㫄㫀㫉㪸㫄㫇㪿㫀㪻㪸㪼
㪚㫐㫇㫊㪼㫃㫌㫉㫌㫊
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪸㪾㫆㫆㩷㪸㪾㫆㫆
㪚㪿㪼㫀㫃㫆㫇㫆㪾㫆㫅
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㪹㫆㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷 㪪㫌㪹㫆㫉㪻㪼㫉㩷㪙㪼㫃㫆㫅㫆㫀㪻㪼㫀㩷㩿㪔㩷㪜㫏㫆㪺㫆㪼㫋㫆㫀㪻㪼㫀㪀 㪜㫏㫆㪺㫆㪼㫋㫀㪻㪸㪼
㪫㪸㪹㫃㪼㩷㪍㪅㪉㪎㩷㩷㪦㫉㪻㪼㫉㩷㪙㪜㪣㪦㪥㪠㪝㪦㪩㪤㪜㪪㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀
㪋㪉
㪉㪋㪤㩷㪂㩷㪏㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪈㪉㪘
㪋㪏
㪤
㪊㪇㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪈㪋㪘
㪋㪏
㪝
㪈㪍㪤㩷㪂㩷㪈㪏㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪏㪘
㪋㪏㩷㪪㪫㪆㪘
㪈㪍㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪉㪇㪘
㪋㪏㩷㪪㪫㪆㪘
㪌㪇㩷㪪㪫㪆㪘
㪋㪏
㪋㪏
㪌㪇
㪋㪏
㪋㪏
㪌㪇
㪋㪏
㪍㩷㪤㪆㪪㪤㩷㪂㩷㪋㪏㩷㪪㪫㪆㪘
㪍㩷㪤㪆㪪㪤㩷㪂㩷㪋㪇㩷㪪㪫㪆㪘
㪋㪍
㪌㪋
㪉㪤㩷㪂㩷㪊㪏㪘
㪌㪉㩷㪪㪫㪆㪘
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪋㪇
㪌㪉
㪋㪏
㪋㪏
㪛 㪉㫅
㪝㪃㩷㪤
㪝㪃㩷㪤
㪝㪃㩷㪤
㪝㪃㩷㪤
㪝㪃㩷㪤
㪚 㪪㪼㫏
㪏㪇
㪏㪇
㪏㪉
㪋㪏
㪏㪇
㪋㪏
㪌㪇
㪍㪇
㪌㪉
㪋㪉
㪌㪉
㪝 㪥㪝㪈
㪏㪋
㪏㪉
㪏㪏
㪏㪇
㩿㪌㪏㪀
㪞 㪥㪝㪉
㪉
㪉
㪟 㪘㪾㪄 㪥㪦㪩㫊
㪉㪅㪉㪁㩷㪝㪚㪤
㪉㪅㪋㩷㪙㪝㪘
㪈㪅㪊㪁㩷㪝㪛
㪈㪅㪌㩷㪙㪝㪘
㪈㪅㪐㪁㩷㪝㪚㪤
㪠 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㩿㪪㪅㩷㪘㫄㪼㫉㫀㪺㪸㪀
㪘㫉㪾㪼㫅㫋㫀㫅㪸㩷㩿㪤㫀㫊㫀㫆㫅㪼㫊㪀
㪠㫅㪻㫀㪸㩷㩿㪞㫆㪸㪀
㪚㪿㫀㫅㪸㩷㩿㪟㫌㪹㪼㫀㪀
㪠㫅㪻㫀㪸㩷㩿㪞㫆㪸㪀
㪜㪅㩷㪘㫊㫀㪸
㪡㪸㫇㪸㫅
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪌㪇
㪥㪅㩷㪧㪸㪺㫀㪽㫀㪺
㪫㪿㪸㫀㫃㪸㫅㪻
㪠㫅㪻㫀㪸㩷㩿㪮㪙㪀
㪠㫅㪻㫀㪸㩷㩿㪡㪸㫄㫄㫌㪀
㪠㫅㪻㫀㪸㩷㩿㪫㪸㫄㫀㫃㩷㪥㪸㪻㫌㪀
㪠㫅㪻㫀㪸㩷㩿㪦㫉㫀㫊㫊㪸㪀
㪠㫅㪻㫀㪸㩷㩿㪞㫆㪸㪀
㪡㪸㫇㪸㫅
㪇㪄㪉㩷㪙㪃㩷㪘㪚㪥㪔㪌㪇 㪘㫉㪾㪼㫅㫋㫀㫅㪸㩷㩿㪤㫀㫊㫀㫆㫅㪼㫊㪀
㪘㪚㪥㪔㪋㪏
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪰㪄㪉
㪛㪄㪉㪇
㪥㪄㪈㪍
㪪㪄㪌㪈
㪩㪄㪋㪌
㪩㪄㪌㪎
㪩㪄㪋㪌
㪦㪄㪋㪏
㪧㪄㪈㪌
㪟㪄㪈㪊
㪧㪄㪈㪌
㪩㪄㪋㪌
㪱㪄㪉㪏㪃㩷㪟㪄㪊㪉㪃㩷㪚㪄㪏㪊
㪩㪄㪋㪌
㪪㪄㪉㪋㪃㩷㪟㪄㪈㪊
㪦㪄㪋㪏
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
136
㪹㫃㫆㪺㫂㫀㫀 㪻㪸㫐㫀 㫃㫀㫅㪼㪸㫋㫌㫊 㫇㪸㫅㪺㪿㪸㫏 㫇㪸㫅㪺㪿㪸㫏 㫇㪸㫅㪺㪿㪸㫏 㫎㪼㫉㫅㪼㫉㫀 㫇㫃㪸㫐㪽㪸㫀㫉㫀㫀
㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅
㪸㪿㫃㫀 㪸㪿㫃㫀 㪸㪿㫃㫀 㪸㪿㫃㫀 㪸㪿㫃㫀 㪸㪿㫃㫀 㪸㪿㫃㫀 㪸㪿㫃㫀 㪸㫃㫇㪿㪸 㪸㫄㫆㪼㫅㫌㫄 㪸㫌㫊㫋㫉㪸㫃㪼 㪸㫌㫊㫋㫉㪸㫃㪼 㪹㪸㫄㫀㫃㪼㫂㫆㫉㫌㫄 㪹㪸㫋㪼㫊㫀㫀 㪹㪸㫋㪼㫊㫀㫀 㪹㫀㫋㪸㪼㫅㫀㪸㫋㫌㫄 㪹㫀㫋㪸㪼㫅㫀㪸㫋㫌㫄 㪹㫀㫋㪸㪼㫅㫀㪸㫋㫌㫄 㪹㫀㫋㪸㪼㫅㫀㪸㫋㫌㫄 㪹㫀㫋㪸㪼㫅㫀㪸㫋㫌㫄 㪹㫀㫋㪸㪼㫅㫀㪸㫋㫌㫄 㪹㫀㫋㪸㪼㫅㫀㪸㫋㫌㫄 㪹㫀㫋㪸㪼㫅㫀㪸㫋㫌㫄 㪹㫀㫍㫀㫋㫋㪸㫋㫌㫄 㪹㫀㫍㫀㫋㫋㪸㫋㫌㫄 㪹㫀㫍㫀㫋㫋㪸㫋㫌㫄
㪥㫆㫋㪿㫆㪹㫉㪸㫅㪺㪿㫀㫀㪻㪸㪼㩷㩿㪘㪽㫉㫀㪺㪸㫅㩷㫉㫀㫍㫌㫃㫀㫅㪼㫊㪀
㪘㫇㫃㫆㪺㪿㪼㫀㫃㫌㫊 㪘㫇㫃㫆㪺㪿㪼㫀㫃㫌㫊 㪘㫇㫃㫆㪺㪿㪼㫀㫃㫌㫊 㪘㫇㫃㫆㪺㪿㪼㫀㫃㫌㫊 㪘㫇㫃㫆㪺㪿㪼㫀㫃㫌㫊 㪘㫇㫃㫆㪺㪿㪼㫀㫃㫌㫊 㪘㫇㫃㫆㪺㪿㪼㫀㫃㫌㫊 㪧㪸㪺㪿㫐㫇㪸㫅㪺㪿㪸㫏
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㪹㫆㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷 㪪㫌㪹㫆㫉㪻㪼㫉㩷㪘㫇㫃㫆㪺㪿㪼㫀㫃㫆㫀㪻㪼㫀 㪘㫇㫃㫆㪺㪿㪼㫀㫃㫀㪻㪸㪼㩷㩿㪘㫊㫀㪸㫅㩷㫉㫀㫍㫌㫃㫀㫅㪼㫊㪀
㩿㪋㪋㪀 㪊㪏
㪏㩷㪤㪆㪪㪤㩷㪂㩷㪉㪏㪘 㪍㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪉㪋㪘 㪈㪇㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪈㪉㪘 㪉㪇㩷㪤㪆㪪㪤 㪉㪉㩷㪤㪆㪪㪤
㪍㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪉㪉㪘 㪉㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪊㪇㪘 㪍㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪉㪉㩷㪪㪫㪆㪘 㪊㪋㩷㪤㪆㪪㪤
㪊㪍 㪊㪋 㪉㪍 㪉㪇 㪉㪉 㪊㪏 㪊㪋 㪊㪇 㪊㪋 㪊㪋 㪊㪋
㪝㪃㩷㪤
㪚㪿㫉㫆㫄㪸㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㪤㪦㪄㪫㪰 㪘㪬㪪㪄㪚㪘 㪘㪬㪪㪄㪣㪠 㪙㪘㪤㪄㪫㪰 㪙㪘㪫㪄㪘㪢 㩷㫊㫇㫃㪼㫅㪻㫀㪻㫌㫄 㩷㪪㪧㪣㪄㪛㪡 㩷 㪙㪠㪫㪄㪙㪠 㩷 㪙㪠㪫㪄㪣㪦 㩷㪙㪠㪫㪄㪜㪚㩷 㩷㪙㪠㪫㪄㪢㪘㩷 㩷 㪙㪠㪫㪄㪛㪠 㩷㪙㪠㪫㪄㪙㪘㪃㩷㪜㪢㪃㩷㪤㪙㪃㩷㪥㪥㪃㩷㪫㪢 㩷㪙㪠㪫㪄㪠㪡 㪚㪿㫉㫆㫄㪸㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪃㩷㪘㪽㪸㫅㫐㪸㫅㪾㪸㫅㩷 㪝㪃㩷㪤 㩷㪙㪠㪭㪄㪜㪪 㩷 㪙㪠㪭㪄㪥㪜 㪙㪠㪭㪄㪥㪮 㪈㪋㩷㪤㪆㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪈㪇㪘 㪉㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪊㪉㪘 㪍㪪㪫㩷㪂㩷㪊㪉㪘 㪉㪪㪫㩷㪂㩷㪊㪍㪘 㪋㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪊㪋㪘㩷 㪈㪇㩷㪤㪆㪪㪤㪆㪪㪫㩷㪂㩷㪊㪇㪘㩷 㪋㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪉㪋㪘 㪉㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪊㪉㪘 㪏㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪉㪇㪘
㪉㪍 㪊㪍 㪊㪏 㪊㪏 㪋㪇 㪋㪇 㪊㪋 㪊㪍 㪊㪉
㪋㪇
㪊㪏
㪋㪉
㪋㪋
㪊㪏
㪊㪏
㪊㪏
㪋㪇
㪋㪋
㪋㪇
㪋㪋
㪌㪇
㪋㪍
㪋㪇
㪋㪋
㪋㪇
㪋㪉
㪋㪋
㪍㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪉㪏㪘㩷
㪊㪍
㪋㪉
㪋㪏
㪋㪇
㪉㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪏㪪㪫㩷㪂㩷㪉㪇㪘
㪊㪋
㪍㪏
㩿㪍㪍㪀
㪊㪏
㪌㪉
㪋㪋
㪋㪇
㪋㪇
㪋㪋
㪋㪋
㪌㪇
㩿㪍㪇㪀
㪍㪏
㪋㪍
㪊㪏
㪊㪏
㪋㪇
㪋㪋
㪋㪇
㪊㪏
㪋㪉
㪋㪋
㪋㪋
㪊㪉
㪉㪪㪤㩷㪂㩷㪈㪉㪪㪫㪂㩷㪉㪋㪘
㪋㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪉㪍㪘
㪌㪋
㪊㪏
㪌㪏
㪉㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪈㪉㪪㪫㩷㪂㩷㪉㪉㪘
㪋㪉
㪈㪉㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪉㪉㪘
㪊㪏
㪌㪉
㪎㪇
㩿㪐㪍㪀
㪉㪉㩷㪤㪆㪪㪤㩷㪂㩷㪉㪍㩷㪪㪫㪆㪘
㪍㪋
㪋㪏
㪍㪇
㪍㪋
㩿㪌㪍㪀
㩿㪍㪇㪀
㩿㪏㪍㪀
㩿㪎㪇㪀
㪞 㪥㪝㪉
㩿㪏㪏㪀
㪈㪋㪤㩷㪂㩷㪏㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪈㪉㪘
㪍㪇
㪌㪇
㪋㪏
㪌㪋
㪌㪇
㪝 㪥㪝㪈
㪋㪏
㪊㪏
㪤
㪈㪉㩷㪤㪆㪪㪤㩷㪂㩷㪉㪍㩷㪪㪫㪆㪘
㪊㪏 㪈㪊㪤㩷㪂㩷㪐㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪈㪉㪘
㪋㪏㩷㪪㪫㪆㪘
㪋㪏 㪊㪏
㪉㩷㪤㪆㪪㪤㩷㪂㩷㪋㪍㩷㪪㪫㪆㪘 㪍㩷㪤㪆㪪㪤㩷㪂㩷㪋㪉㩷㪪㪫㪆㪘
㪋㪏
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪋㪏
㪛 㪉㫅
㪝
㪚 㪪㪼㫏
㪋㪇
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪘㪟㪣㪄㪥㪥 㪘㪟㪣㪄㪥㪪 㪘㪟㪣㪄㪜㪛 㪘㪟㪣㪄㪤㪙 㪘㪟㪣㪄㪪㪘 㪘㪟㪣㪄㪙㪜 㪘㪟㪣㪄㪚㪦 㪘㪟㪣㪄㪙㪥㪃㩷㪢㪠㪃㩷㪣㪦
㪫㪸㪹㫃㪼㩷㪍㪅㪉㪏㩷㩷㪦㫉㪻㪼㫉㩷㪚㪰㪧㪩㪠㪥㪦㪛㪦㪥㪫㪠㪝㪦㪩㪤㪜㪪㩷
㪉
㪉
㪈㪅㪌㩷㪝㪠㪘
㩿㪈㪅㪌㩷㪝㪛㪃㩷㪈㪅㪋㩷㪙㪝㪘㪀
㪟 㪠 㪘㪾㪄 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㩿㫇㪾㪆㪺㪼㫃㫃㪀 㪥㪦㪩㫊
㪘㪚㪥㪔㪋㪋
㪘㪚㪥㪔㪋㪋
㪘㪚㪥㪔㪋㪉
㪘㪚㪥㪔㪋㪋
㪘㪚㪥㪔㪋㪉
㪘㪚㪥㪔㪋㪉
㪘㪚㪥㪔㪋㪉
㪘㪚㪥㪔㪋㪋
㪘㪚㪥㪔㪋㪇
㪘㪚㪥㪔㪋㪇
㪘㪚㪥㪔㪋㪉
㪘㪚㪥㪔㪋㪋
㪘㪚㪥㪔㪋㪇
㪘㪚㪥㪔㪋㪉
㪘㪚㪥㪔㪋㪉
㪘㪚㪥㪔㪋㪉
㪘㪚㪥㪔㪋㪋
㪘㪚㪥㪔㪋㪇
㪘㪚㪥㪔㪋㪇
㪘㪚㪥㪔㪋㪋
㪘㪚㪥㪔㪋㪋
㪘㪚㪥㪔㪋㪉
㪘㪚㪥㪔㪋㪉
㪘㪚㪥㪔㪋㪋
㪘㪚㪥㪔㪋㪏
㪱㪱
㪱㪮
㪘㪚㪥㪔㪋㪏
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪮㪅㩷㪚㪸㫄㪼㫉㫆㫆㫅
㪮㪅㩷㪚㪸㫄㪼㫉㫆㫆㫅
㪜㪅㩷㪚㪸㫄㪼㫉㫆㫆㫅
㪚㪸㫄㪼㫉㫆㫆㫅
㪪㪅㪮㪅㩷㪥㫀㪾㪼㫉㫀㪸
㪚㪸㫄㪼㫉㫆㫆㫅
㪜㪅㩷㪚㪸㫄㪼㫉㫆㫆㫅
㪚㪸㫄㪼㫉㫆㫆㫅
㪚㪸㫄㪼㫉㫆㫆㫅㩷㩿㪩㫀㫆㩷㪤㫌㫅㫀㪀
㪚㪸㫄㪼㫉㫆㫆㫅㩷㩿㪢㫉㫀㪹㫀㪀
㪚㪸㫄㪼㫉㫆㫆㫅
㪚㫆㫅㪾㫆
㪜㪅㩷㪚㪸㫄㪼㫉㫆㫆㫅
㪜㪅㩷㪚㪸㫄㪼㫉㫆㫆㫅
㪞㪸㪹㫆㫅
㪞㪸㪹㫆㫅
㪜㪅㩷㪚㪸㫄㪼㫉㫆㫆㫅
㪥㪅㪮㪅㩷㪞㪸㪹㫆㫅
㪜㪅㩷㪚㪸㫄㪼㫉㫆㫆㫅㩷
㪜㪅㩷㪚㪸㫄㪼㫉㫆㫆㫅㩷
㪜㪅㩷㪚㪸㫄㪼㫉㫆㫆㫅㩷
㪜㪅㩷㪚㪸㫄㪼㫉㫆㫆㫅㩷
㪜㪅㩷㪚㪸㫄㪼㫉㫆㫆㫅㩷
㪜㪅㩷㪚㪸㫄㪼㫉㫆㫆㫅㩷
㪜㪅㩷㪚㪸㫄㪼㫉㫆㫆㫅㩷㩿㪥㫐㫆㫅㪾㪀
㪜㪅㩷㪚㪸㫄㪼㫉㫆㫆㫅㩷㩿㪥㫐㫆㫅㪾㪀
㪪㪼㫐㪺㪿㪼㫃㫃㪼㫊
㪚㪼㫐㫃㫆㫅
㪠㫅㪻㫀㪸㩷㩿㪮㪙㪀
㪠㫅㪻㫀㪸㩷㩿㪮㪙㪀
㪠㫅㪻㫀㪸㪃㩷㪫㪿㪸㫀㫃㪸㫅㪻
㪪㪅㩷㪠㫅㪻㫀㪸
㪚㪼㫐㫃㫆㫅
㪪㪅㩷㪠㫅㪻㫀㪸
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪪㪄㪈㪌㪏
㪪㪄㪈㪌㪏
㪪 㪄㪉㪋
㪭㪄 㪐 㪎
㪪㪄㪈㪌㪏
㪪㪄㪈㪌㪏
㪪㪄㪈㪌㪏
㪪㪄㪈㪌㪏
㪪㪄㪈㪌㪏
㪪㪄㪈㪌㪏
㪪㪄㪈㪌㪏
㪪㪄㪈㪌㪏
㪪㪄㪈㪌㪏
㪪㪄㪈㪌㪏
㪪㪄㪈㪌㪏
㪪㪄㪈㪌㪏
㪪㪄㪈㪌㪏
㪭㪄 㪎 㪈
㪪㪄㪈㪌㪏
㪪㪄㪈㪌㪏
㪪㪄㪈㪌㪏
㪪㪄㪈㪌㪏
㪪㪄㪈㪌㪏
㪪㪄㪈㪌㪏
㪪㪄㪈㪌㪏
㪪㪄㪈㪌㪏
㪪㪄㪉㪋㪃㩷㪪㪄㪈㪌㪏㪃㩷㪟㪄㪋㪈
㪪 㪄㪉㪋
㪢㪄㪊㪈㪃㩷㪬㪄㪌㪐㪃㩷㪟㪄㪈㪊
㪢㪄㪊㪈
㪪㪄㪉㪋㪃㩷㪪㪄㪈㪌㪏㩷
㪪㪄㪉㪋㪃㩷㪪㪄㪈㪌㪏㩷
㪪㪄㪉㪋㪃㩷㪪㪄㪈㪌㪏㩷
㪪㪄㪉㪋㪃㩷㪪㪄㪈㪌㪏㩷
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
137
㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅
㪹㫀㫍㫀㫋㫋㪸㫋㫌㫄 㪹㫀㫍㫀㫋㫋㪸㫋㫌㫄 㪹㫀㫍㫀㫋㫋㪸㫋㫌㫄 㪹㫀㫍㫀㫋㫋㪸㫋㫌㫄 㪹㫀㫍㫀㫋㫋㪸㫋㫌㫄 㪹㫀㫍㫀㫋㫋㪸㫋㫌㫄 㪹㫀㫍㫀㫋㫋㪸㫋㫌㫄 㪹㫀㫍㫀㫋㫋㪸㫋㫌㫄 㪹㫀㫍㫀㫋㫋㪸㫋㫌㫄 㪹㫌㪸㫃㪸㫅㫌㫄 㪹㫌㪸㫃㪸㫅㫌㫄 㪹㫌㪸㫃㪸㫅㫌㫄㩷㫂㪼㫂㪼㫄㪼㫅㫊㪼 㪹㫌㫐㫋㪸㪼㫉㫋㫀 㪺㪸㫃㫃㫀㫌㫉㫌㫄 㪺㪸㫃㫃㫀㫌㫉㫌㫄 㪺㪸㫃㫃㫀㫌㫉㫌㫄 㪺㪸㫃㫃㫀㫌㫉㫌㫄 㪺㪸㫃㫃㫀㫌㫉㫌㫄 㪺㪸㫃㫃㫀㫌㫉㫌㫄 㪺㪸㫃㫃㫀㫌㫉㫌㫄 㪺㪸㫄㪼㫉㫆㫅㪼㫅㫊㪼㩷 㪺㪸㫄㪼㫉㫆㫅㪼㫅㫊㪼㩷 㪺㪸㫄㪼㫉㫆㫅㪼㫅㫊㪼㩷 㪺㪸㫄㪼㫉㫆㫅㪼㫅㫊㪼㩷 㪺㪸㫄㪼㫉㫆㫅㪼㫅㫊㪼㩷 㪺㪸㫄㪼㫉㫆㫅㪼㫅㫊㪼㩷 㪺㪸㫄㪼㫉㫆㫅㪼㫅㫊㪼㩷 㪺㪼㫃㫀㪸㪼 㪺㪼㫃㫀㪸㪼 㪺㪿㪸㫌㪺㪿㪼㫀 㪺㪿㫉㫀㫊㫋㫐㫀 㪺㪿㫉㫀㫊㫋㫐㫀 㪺㪿㫉㫀㫊㫋㫐㫀 㪺㫆㪼㫃㪼㫊㫋㪼 㪺㫆㪼㫃㪼㫊㫋㪼 㪺㫆㪾㫅㪸㫋㫌㫄 㪺㫆㪾㫅㪸㫋㫌㫄 㪺㫆㫅㪾㫀㪺㫌㫄
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㪹㫆㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉 㪚㪿㫉㫆㫄㪸㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㩷㩾㪝㫌㫅㪾㪼㩾 㪚㪿㫉㫆㫄㪸㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㩷㪚㪦㪊㪆㪋㩷 㪚㪿㫉㫆㫄㪸㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㩷㪚㪦㪊㪆㪍㩷 㪚㪿㫉㫆㫄㪸㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㩷㪚㪦㪊㪆㪍㩷 㪚㪿㫉㫆㫄㪸㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㩷㪚㪦㪊㪆㪍 㪚㪿㫉㫆㫄㪸㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㩷㪚㪦㪊㪆㪍㩷 㪚㪿㫉㫆㫄㪸㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㩷㪚㪦㪊㪆㪍㩷 㪚㪿㫉㫆㫄㪸㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㩷㪚㪦㪊㪆㪐㩷 㪚㪿㫉㫆㫄㪸㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㩷㪢㪭㪦㪊㪆㪊㪋㩷 㪙㪬㪘㪄㪙㪘㩷 㪙㪬㪘㪄㪥㪛㩷 㪙㪬㪘㪄㪢㪜 㪙㪬㪰㪄㪘㪨 㪚㪘㪣㪄㪠㪡 㪚㪘㪣㪄㪛㪤㪃㩷㪤㪜㩷 㪚㪘㪣㪄㪚㪤㩷 㪚㪘㪣㪄㪙㪢㪃㩷㪤㪦㪃㩷㪤㪬 㪚㪘㪣㪄㪥㪢 㪚㪘㪣㪄㪮㪚 㪚㪘㪣㪄㪥㪫㩷 㪚㪘㪤㪄㪤㪠㩷 㪚㪘㪤㪄㪣㪥 㪚㪘㪤㪄㪙㪜㪃㩷㪜㪚㪃㩷㪰㪘 㪚㪘㪤㪄㪤㪘㩷 㪚㪘㪤㪄㪢㪦㩷 㪚㪘㪤㪄㪥㪞㩷 㪚㪘㪤㪄㪣㪮㩷 㪚㪜㪣㪄㪙㪘㪃㩷㪙㪬㪃㩷㪤㪘 㪺㪼㫃㫀㪸㪼㩷㫎㫀㫅㫀㪽㫉㪼㪻㪸㪼 㩷㪮㪠㪥㪄㪫㪰 㪚㪟㪦 㪚㪟㪩㪄㪪㪘 㪚㪟㪩 㫊㪿㫆㫌㫋㪼㪻㪼㫅㫀 㩷㪪㪚㪟㪄㪘㪨 㪚㪦㪣㪄㪫㪰 㪚㪦㪣㪄㪫㪠 㪚㪦㪞㪄㪘㪨 㪚㪦㪞 㫄㪼㫃㪸㫅㫆㫇㫋㪼㫉㫆㫅㩷 㪤㪜㪫
㪫㪸㪹㫃㪼㩷㪍㪅㪉㪏㩷㩷㪦㫉㪻㪼㫉㩷㪚㪰㪧㪩㪠㪥㪦㪛㪦㪥㪫㪠㪝㪦㪩㪤㪜㪪㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀
㪋㪋
㪌㪋
㪋㪋
㪈㪋㩷㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪋㪘 㪉㪇㩷㪤㪆㪪㪤 㪉㪇㩷㪤㪆㪪㪤 㪈㪉㩷㪤㪆㪪㪤㩷㪂㩷㪈㪉㪘 㪊㪍㪘 㪈㪍㪤㩷㪂㩷㪉㪪㪤 㪈㪇㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪏㪘 㪋㩷㪤㪆㪪㪤㩷㪂㩷㪉㪏㩷㪪㪫㪆㪘 㪍㩷㪤㪆㪪㪤㩷㪂㩷㪉㪋㩷㪪㪫㪆㪘 㪍㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪉㪇㪘 㪍㩷㪤㪆㪪㪤㩷㪂㩷㪉㪋㪘 㪍㪤㩷㪂㩷㪉㪋㪘
㪉㪋 㪉㪇 㪉㪇 㪉㪋 㪊㪍 㪈㪏 㪉㪉 㪊㪉 㪊㪇 㪉㪏 㪊㪇 㪊㪇
㪊㪍
㪊㪍
㪊㪍
㪊㪍
㪊㪍
㪊㪍
㪊㪍
㪊㪍
㪊㪍
㪋㪇
㪋㪇
㪊㪍
㪊㪍
㪊㪍
㪊㪍
㪊㪍
㪊㪍
㪊㪍
㪋㪇
㪋㪇
㪋㪋
㪋㪋 㪊㪏
㩿㪋㪍㪀 㪈㪋㩷㪤㪆㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪈㪉㪘
㪊㪇 㪉㪏
㪋㪉
㪋㪇
㪋㪍
㪘㪚㪥㪔㪋㪇㩷
㪘㪚㪥㪔㪋㪇
㪘㪚㪥㪔㪋㪇
㪘㪚㪥㪔㪋㪇
㪘㪚㪥㪔㪋㪇
㪘㪚㪥㪔㪋㪇
㪘㪚㪥㪔㪋㪋
㪘㪚㪥㪔㪋㪋
㪘㪚㪥㪔㪋㪋
㪘㪚㪥㪔㪋㪋
㪘㪚㪥㪔㪋㪋
㪜㪅㩷㪚㪸㫄㪼㫉㫆㫆㫅
㪜㪅㩷㪚㪸㫄㪼㫉㫆㫆㫅
㪜㪅㩷㪚㪸㫄㪼㫉㫆㫆㫅
㪱㪸㫀㫉㪼
㪚㫆㫅㪾㫆
㪚㫆㫅㪾㫆
㪚㫆㫅㪾㫆
㪞㪸㪹㫆㫅
㪱㪸㫀㫉㪼
㪱㪸㫀㫉㪼
㪱㪸㫀㫉㪼
㪚㫆㫅㪾㫆
㪮㪅㩷㪚㪸㫄㪼㫉㫆㫆㫅
㪮㪅㩷㪚㪸㫄㪼㫉㫆㫆㫅
㪜㪅㩷㪚㪸㫄㪼㫉㫆㫆㫅
㪜㪅㩷㪚㪸㫄㪼㫉㫆㫆㫅
㪜㪅㩷㪚㪸㫄㪼㫉㫆㫆㫅
㪮㪅㩷㪚㪸㫄㪼㫉㫆㫆㫅
㪋㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪉㪋㪘
㪊㪋
㪋㪇
㪊㪍
㪚㪸㫄㪼㫉㫆㫆㫅
㪜㪅㩷㪚㪸㫄㪼㫉㫆㫆㫅
㪜㪅㩷㩽㩷㪮㪅㩷㪚㪸㫄㪼㫉㫆㫆㫅
㪜㪅㩷㪚㪸㫄㪼㫉㫆㫆㫅㩷㩿㪥㫐㫆㫅㪾㪀
㩿㪋㪍㪀
㪋㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪉㪉㪘
㪊㪋
㪊㪍
㪋㪇
㪘㪚㪥㪔㪋㪋
㪘㪚㪥㪔㪋㪋
㪘㪚㪥㪔㪋㪋
㪜㪅㩷㪚㪸㫄㪼㫉㫆㫆㫅㩷㩿㪥㫐㫆㫅㪾㪀
㪪㪅㪮㪅㩷㪥㫀㪾㪼㫉㫀㪸
㪚㫆㫅㪾㫆
㪪㪅㪮㪅㩷㪚㪸㫄㪼㫉㫆㫆㫅
㪮㪅㩷㪚㪸㫄㪼㫉㫆㫆㫅
㪜㪅㩷㪚㪸㫄㪼㫉㫆㫆㫅
㪚㪸㫄㪼㫉㫆㫆㫅
㪚㪸㫄㪼㫉㫆㫆㫅
㪚㪸㫄㪼㫉㫆㫆㫅
㪚㪸㫄㪼㫉㫆㫆㫅
㪚㪸㫄㪼㫉㫆㫆㫅
㪚㪸㫄㪼㫉㫆㫆㫅
㪚㪸㫄㪼㫉㫆㫆㫅
㪚㪸㫄㪼㫉㫆㫆㫅
㪚㪸㫄㪼㫉㫆㫆㫅
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪊㪉
㪈㪏㩷㪤㪆㪪㪤㩷
㪈㪏
㪋㪇
㪋㪇
㪋㪇
㪋㪇
㪍㪙㪃㩷㪘㪚㪥㪔㪋㪋
㪘㪚㪥㪔㪋㪉
㪘㪚㪥㪔㪋㪉
㪘㪚㪥㪔㪋㪋
㪘㪚㪥㪔㪋㪋
㪘㪚㪥㪔㪋㪇
㪘㪚㪥㪔㪋㪇
㪘㪚㪥㪔㪋㪉
㪘㪚㪥㪔㪋㪉
㪘㪚㪥㪔㪋㪉
㪘㪚㪥㪔㪋㪉
㪘㪚㪥㪔㪋㪉
㪘㪚㪥㪔㪋㪇
㪘㪚㪥㪔㪋㪇
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪜㪅㩷㪚㪸㫄㪼㫉㫆㫆㫅
㪉㪇㩷㪤㪆㪪㪤
㪉㪇
㪊㪏
㪋㪇
㪋㪇
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪟 㪠 㪘㪾㪄 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㩿㫇㪾㪆㪺㪼㫃㫃㪀 㪥㪦㪩㫊
㪊㪋
㪉㪇㩷㪤㪆㪪㪤 㪈㪏㩷㪤㪆㪪㪤㩷㪂㩷㪉㪪㪫
㪉㪇 㪉㪇
㪈㪍㩷㪤㪆㪪㪤㩷㪂㩷㪏㪘
㪉㪋
㪋㪇
㪉㪇㩷㪤㪆㪪㪤
㪉㪇
㪋㪇
㪊㪏
㩿㪎㪉㪀 㩿㪌㪏㪀
㪊㪏
㪋㪇
㪉㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪉㪍㪘
㪋㪪㪤㩷㪂㩷㪊㪉㩷㪪㪫㪆㪘
㪊㪍
㪌㪉
㪋㪉
㪋㪉
㪋㪋
㪋㪋
㪋㪋
㪋㪋
㪋㪋
㪋㪇
㪋㪇
㪞 㪥㪝㪉
㪊㪏
㪉㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪉㪉㪘
㪊㪏
㪋㪏
㪊㪏
㪊㪏
㪋㪇
㪊㪏
㪋㪇
㪋㪇
㪊㪏
㪊㪎
㪊㪐
㪝 㪥㪝㪈
㪊㪉
㪋㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪉㪏㪘
㪋㪇
㪈㪈㩷㪤㪆㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪈㪋㪘
㪉㪐 㪍㩷㪤㪆㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪉㪉㪘
㪏㩷㪤㪆㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪈㪍㪘
㪊㪇
㪊㪉
㪐㩷㪤㪆㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪈㪏㪘
㪊㪈
㪝㪃㩷㪤
㪎㩷㪤㪆㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪉㪉㪘
㪊㪊
㪍㩷㪤㪆㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪉㪉㪘
㪋㩷㪤㪆㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪉㪋㪘
㪊㪋
㪊㪉
㪊㩷㪤㪆㪪㪤㩷㪂㩷㪊㪪㪫㩷㪂㩷㪉㪏㪘
㪊㩷㪤㪆㪪㪤㩷㪂㩷㪈㪪㪫㩷㪂㩷㪊㪉㪘
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪊㪋
㪊㪍
㪛 㪉㫅
㪝㪃㩷㪤
㪝㪃㩷㪤
㪚 㪪㪼㫏
㪪㪄㪉㪋㪃㩷㪪㪄㪉㪏㪃㩷㪟㪄㪊㪊
㪪㪄㪈㪌㪏
㪪㪄㪈㪌㪏
㪪㪄㪈㪌㪏
㪪㪄㪈㪌㪏
㪟㪄㪊㪊㪃㩷㪪㪄㪉㪏㪃㩷㪪㪄㪈㪌㪏
㪪㪄㪉㪏㪃㩷㪪㪄㪈㪌㪏
㪟㪄㪊㪊㪃㩷㪪㪄㪈㪌㪏
㪟㪄㪊㪊
㪪㪄㪈㪌㪏
㪪㪄㪈㪌㪏
㪪㪄㪈㪌㪏
㪪㪄㪈㪌㪏
㪪㪄㪉㪋
㪪㪄㪉㪋
㪪㪄㪈㪌㪏
㪪㪄㪈㪌㪏
㪪㪄㪈㪌㪏
㪪㪄㪈㪌㪏
㪪㪄㪈㪌㪏
㪪㪄㪈㪌㪏
㪪㪄㪈㪌㪏
㪪㪄㪈㪌㪏
㪪㪄㪈㪌㪏
㪪㪄㪈㪌㪏
㪪㪄㪈㪌㪏
㪩 㪄㪊㪇
㪪㪄㪈㪌㪏
㪪㪄㪈㪌㪏
㪭㪄 㪏 㪈
㪭㪄 㪏 㪈
㪭㪄 㪏 㪈
㪭㪄 㪏 㪈
㪭㪄 㪏 㪈
㪭㪄 㪏 㪈
㪭㪄 㪏 㪈
㪭㪄 㪏 㪈
㪭㪄 㪏 㪈
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
138
㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅
㪺㫐㪸㫅㫆㫊㫋㫀㪺㫋㫌㫄 㪻㪼㪺㫆㫉㫊㪼㫀 㪼㫃㪹㪼㫉㫋㫀 㪼㫃㪹㪼㫉㫋㫀㩷㫂㪼㫂㪼㫄㪼㫅㫊㪼 㪼㫃㪼㪾㪸㫅㫊 㪼㫊㪺㪿㪼㫉㫀㪺㪿㫀 㪼㫏㫀㪾㫆㫀㪻㪼㫌㫄 㪼㫏㫀㪾㫌㫌㫄 㪽㫉㪸㫅㫑㫎㪼㫉㫅㪼㫉㫀 㪽㫌㫃㪾㪼㫅㫊 㪾㪸㪹㫌㫅㪼㫅㫊㪼 㪾㪸㪹㫌㫅㪼㫅㫊㪼 㪾㪼㫆㫉㪾㫀㪸㪼 㪾㪼㫆㫉㪾㫀㪸㪼 㪿㪼㫉㫑㫆㪾㫀㩷 㫂㫆㫌㪸㫄㪼㫅㫊㪼 㫃㪸㪹㪸㫉㫉㪼㫀 㫃㪸㪹㪸㫉㫉㪼㫀 㫃㪸㫄㪹㪼㫉㫋㫀 㫃㫆㪼㫅㫅㪹㪼㫉㪾㫀㫀 㫃㫆㪼㫅㫅㪹㪼㫉㪾㫀㫀 㫃㫆㪼㫅㫅㪹㪼㫉㪾㫀㫀 㫃㫆㪼㫅㫅㪹㪼㫉㪾㫀㫀 㫃㫆㪼㫅㫅㪹㪼㫉㪾㫀㫀 㫃㫆㪼㫅㫅㪹㪼㫉㪾㫀㫀 㫃㫆㪼㫅㫅㪹㪼㫉㪾㫀㫀 㫃㫆㫌㪼㫊㫊㪼㫅㫊㪼 㫃㫆㫌㪼㫊㫊㪼㫅㫊㪼 㫃㫌㪾㪼㫅㫊 㪺㪽㪅㩷㫃㫌㪾㪼㫅㫊 㫃㫌㫁㪸㪼 㫄㪸㪺㫌㫃㪸㫋㫌㫄 㫄㪸㫃㫌㫄㪹㫉㪼㫊㫀 㫄㪼㫃㪸㫅㫆㪾㪸㫊㫋㪼㫉 㫄㫀㪺㫉㫆㫇㪿㫋㪸㫃㫄㫌㫄 㫄㫀㫄㪹㫆㫅 㫆㪹㫊㪺㫌㫉㫌㫄 㫆㪺㪼㫃㫃㪸㫋㫌㫄
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㪹㫆㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷 㪈㪏㩷㪤㪆㪪㪤㩷㪂㩷㪍㪪㪫
㪉㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪉㪇㪘 㪋㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪈㪏㪘
㪊㪋 㪊㪉
㪉㩷㪤㪆㪪㪤㩷㪂㩷㪊㪏㩷㪪㪫㪆㪘 㪈㪍㪤㩷㪂㩷㪋㪪㪤
㪊㪋 㪋㪇 㪉㪇
㪝㪃㩷㪤
㪤
㪝㪃㩷㪤
㪏㩷㪤㪆㪪㪤㪆㪪㪫㩷㪂㩷㪉㪍㪘
㪊㪋
㪤
㪊㪇 㪊㪋 㪊㪇
㪧㪸㫅㪺㪿㪸㫏㩷㫆㪹㫊㪺㫌㫉㫌㫊 㪦㪚㪜㪄㪘㪨
㪈㪋㩷㪤㪆㪪㪤㪆㪪㪫㩷㪂㩷㪉㪉㪘 㪈㪍㩷㪤㪆㪪㪤㩷㪂㩷㪉㪉㩷㪪㪫㪆㪘
㪊㪍 㪊㪏
㪤㪠㪧㪄㪘㪨 㪤㪠㪤㪄㪘㪨
㪌㪋
㩿㪌㪋㪀
㩿㪋㪇㪀
㩿㪌㪇㪀
㩿㪎㪍㪀
㪌㪇
㪋㪋
㪉
㪉
㪯㪯㪆㪯㪰
㪘㪚㪥㪔㪋㪉
㪘㪚㪥㪔㪋㪇㩷
㪯㪯㪆㪯㪰
㪯㪰
㪯㪯
㪘㪚㪥㪔㪋㪉
㪘㪚㪥㪔㪋㪉
㪘㪚㪥㪔㪋㪉
㪘㪚㪥㪔㪋㪋
㪘㪚㪥㪔㪋㪋
㪘㪚㪥㪔㪋㪋
㪘㪚㪥㪔㪋㪉
㪚㪸㫄㪼㫉㫆㫆㫅
㪪㪅㩷㪮㪅㩷㪚㪸㫄㪼㫉㫆㫆㫅
㪚㫆㫅㪾㫆
㪚㫆㫅㪾㫆
㪚㪸㫄㪼㫉㫆㫆㫅
㪚㪸㫄㪼㫉㫆㫆㫅
㪚㪸㫄㪼㫉㫆㫆㫅
㪜㪅㩷㪚㪸㫄㪼㫉㫆㫆㫅
㪜㪅㩷㪚㪸㫄㪼㫉㫆㫆㫅
㪜㪅㩷㪚㪸㫄㪼㫉㫆㫆㫅
㪜㪅㩷㪚㪸㫄㪼㫉㫆㫆㫅
㪞㪸㪹㫆㫅
㪚㫆㫅㪾㫆
㪚㫆㫅㪾㫆
㪥㪅㩷㪮㪅㩷㪞㪸㪹㫆㫅
㪯㪯㪆㪯㪰 㪘㪚㪥㪔㪋㪉㩷
㪚㫆㫅㪾㫆㪃㩷㪞㪸㪹㫆㫅
㪚㪸㫄㪼㫉㫆㫆㫅
㪞㪸㪹㫆㫅
㪚㫆㫅㪾㫆㪃㩷㪞㪸㪹㫆㫅
㪚㪸㫄㪼㫉㫆㫆㫅
㪚㪸㫄㪼㫉㫆㫆㫅
㪥㪅㩷㪞㪸㪹㫆㫅 㪉㪇㩷㪤㪆㪪㪤㪆㪪㪫㩷㪂㩷㪋㪘
㪉㪋
㩿㪋㪋㪀
㪉
㪉
㪉
㪉
㪉
㪥㪅㩷㪞㪸㪹㫆㫅
㪞㪸㪹㫆㫅
㪞㪸㪹㫆㫅
㪞㪸㪹㫆㫅
㪞㪸㪹㫆㫅
㪥㪅㩷㪞㪸㪹㫆㫅
㪜㪅㩷㪚㪸㫄㪼㫉㫆㫆㫅
㪜㪅㩷㪚㪸㫄㪼㫉㫆㫆㫅
㪞㪸㪹㫆㫅
㪞㪸㪹㫆㫅
㪚㫆㫅㪾㫆
㪜㪅㩷㪚㪸㫄㪼㫉㫆㫆㫅
㪚㪸㫄㪼㫉㫆㫆㫅
㪱㪸㫀㫉㪼
㪥㪅㩷㪞㪸㪹㫆㫅
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪊㪋
㪋㪇
㪊㪏
㪋㪇
㩿㪎㪋㪀
㪋㪉
㪌㪊
㪌㪋
㩿㪌㪉㪀
㪋㪍
㪋㪏
㪌㪇
㪋㪏
㪌㪇
㪌㪇
㪋㪏
㪘㪚㪥㪔㪋㪋
㪘㪚㪥㪔㪋㪉㩷
㪘㪚㪥㪔㪊㪏
㪘㪚㪥㪔㪋㪉㩷
㪘㪚㪥㪔㪋㪉㩷
㪘㪚㪥㪔㪊㪏
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㩿㪱㪸㫀㫉㪼㪀
㪈㪉㩷㪤㪆㪪㪤㪆㪪㪫㩷㪂㩷㪈㪍㪘
㪉㪏
㪊㪏
㪋㪇
㪋㪉
㪋㪉
㪋㪉
㪋㪋
㪋㪋
㪋㪍
㪋㪏
㪊㪏
㪟 㪠 㪘㪾㪄 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㩿㫇㪾㪆㪺㪼㫃㫃㪀 㪥㪦㪩㫊
㪋㪇㪁
㪉㪤㩷㪂㩷㪊㪋㪘
㪊㪍
㪈㪐㩷㪤㪆㪪㪤㪆㪪㪫㩷㪂㩷㪈㪌㪘
㪊㪋
㪉㪇㩷㪤㪆㪪㪤㪆㪪㪫㩷㪂㩷㪈㪋㪘
㪉㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪉㪍㪘
㪊㪏
㪊㪉
㪉㪇㩷㪤㪆㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪉㪘 㪉㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪉㪋㪘
㪉㪍 㪊㪍
㪏㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪍㪘
㪉㪏
㪈㪇㪪㪫㩷㪂㩷㪉㪏㪘
㩿㪍㪏㪀
㪊㪏
㪋㩷㪤㪆㪪㪤㩷㪂㩷㪊㪇㪘
㪊㪋
㪊㪏
㪋㪇
㪋㪪㪤㩷㪂㩷㪊㪉㪘
㪊㪍
㪋㪇
㩿㪌㪋㪀
㪋㪇
㪊㪏 㩿㪍㪋㪀
㪊㪏
㪊㪍
㪝
㪚㪿㫉㫆㫄㪸㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㩷㪞㪜㪤㪟㪪㪇㪇㪆㪊㪈 㪝㪃㩷㪤 㪚㪿㫉㫆㫄㪸㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㩷㪢㪭㪇㪊㪆㪋㪈㩷 㪝㪃㩷㪤
㪤㪘㪣㪄㪘㪨
㪚㪿㫉㫆㫄㪸㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪚㪿㫉㫆㫄㪸㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㩷㪚㪤㪤㪊㪍
㪣㪘㪙㪄㪘㪨 㪣㪘㪙㪄㪥㪪㪚㪄㪋 㪣㪘㪠㪄㪘㪨 㩷㪣㪦㪜㪄㪥㪪 㩷㪣㪦㪜㪄㪢㪠 㩷㪣㪦㪜㪄㪤㪦 㩷㫇㪸㫇㫇㪼㫅㪿㪼㫀㫄㫀㩷 㪧㪘㪧㪄㪙㪠 㪚㪿㫉㫆㫄㪸㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅㩷 㪢㪭㪇㪊㪆㪊㪏 㪚㪿㫉㫆㫄㪸㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅㩷 㪢㪭㪇㪊㪆㪊㪏 㪚㪿㫉㫆㫄㪸㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅㩷 㪚㪇㪊㪆㪉㪐 㪣㪦㪬㪄㪘㪨 㪣㪦㪬㪄㪤㪠
㪊㪏
㪚㪿㫉㫆㫄㪸㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅
㪊㪏㪘
㪊㪏
㪋㪋
㪉㪉㩷㪤㪆㪪㪤
㪉㪉
㪋㪋
㪎㪉
㪉㪇㩷㪤㪆㪪㪤㩷㪂㩷㪈㪍㪪㪫
㪊㪍
㪌㪍
㩿㪋㪉㪀
㪉㪉
㪊㪍 㩿㪎㪇㪀
㪊㪍
㪋㪇
㪈㪉㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪋㪘
㩿㪎㪉㪀
㪉㪇
㩿㪋㪇㪀
㪋㪏
㪌㪋
㪞 㪥㪝㪉
㪊㪍
㪋㪉
㪋㪉
㪋㪏
㪝 㪥㪝㪈
㪊㪏 㪍㩷㪤㪆㪪㪤㩷㪂㩷㪊㪇㩷㪪㪫㪆㪘
㪈㪋㩷㪤㪆㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪈㪋㪘
㪉㪋
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪊㪋
㪛 㪉㫅
㪊㪋 㪝㪃㩷㪤
㪚 㪪㪼㫏
㪜㪣㪜㪄㪪㪘 㫊㫀㫄㫌㫃㪸㫅㫊 㩷㪪㪠㪤㪄㪘㪨 㪜㪯㪦㪄㪘㪨 㪜㪯㪠㪄㪥㪞 㪝㪩㪘㪄㪫㪰 㪝㪬㪣㪄㪘㪨 㪤㪩㪞㪄㪘㪨 㪞㪘㪙㪄㪘㪨 㪞㪜㪦㪄㪘㪨 㪞㪜㪦㪄㪘㪨 㪟㪜㪱㪄㪘㪨
㫉㫌㪹㫉㫀㪽㪸㫊㪺㫀㫌㫄 㩷㫂㪼㫂㪼㫄㪼㫅㫊㪼㩷 㪢㪜㪢㪄㪫㪰
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉 㪚㪰㪘㪄㪘㪨 㪛㪜㪚㪄㪢㪚㪝㩷㪌
㪫㪸㪹㫃㪼㩷㪍㪅㪉㪏㩷㩷㪦㫉㪻㪼㫉㩷㪚㪰㪧㪩㪠㪥㪦㪛㪦㪥㪫㪠㪝㪦㪩㪤㪜㪪㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀
㪪㪄㪈㪌㪏
㪪㪄㪈㪌㪐
㪪㪄㪈㪌㪏
㪪㪄㪈㪌㪏
㪭㪄㪐㪎
㪭㪄㪐㪎
㪪㪄㪈㪌㪏
㪞㪄㪍㪌
㪭㪄㪐㪎
㪭㪄㪎㪈
㪪㪄㪈㪌㪏
㪟㪄㪊㪊
㪭㪄㪐㪎
㪭㪄㪐㪎
㪭㪄㪐㪎
㪪㪄㪈㪌㪏
㪪㪄㪈㪌㪏
㪪㪄㪈㪌㪏
㪪㪄㪈㪌㪏
㪟㪄㪊㪊㪃㩷㪪㪄㪈㪌㪏
㪪㪄㪈㪌㪏
㪪㪄㪈㪌㪏
㪭㪄㪎㪈
㪪㪄㪈㪌㪏
㪪㪄㪈㪌㪏
㪪㪄㪈㪌㪏
㪪㪄㪈㪌㪏
㪪㪄㪈㪌㪏
㪪㪄㪈㪌㪏
㪪㪄㪈㪌㪏
㪪㪄㪈㪌㪏
㪪㪄㪈㪌㪏
㪪㪄㪈㪌㪏
㪪㪄㪉㪏㪃㩷㪪㪄㪈㪌㪏㪃㩷㪟㪄㪊㪊
㪪㪄㪈㪌㪏
㪪㪄㪈㪌㪐
㪟㪄㪊㪊
㪪㪄㪈㪌㪏
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
139
㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪘㫉㪺㪿㫀㪸㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪚㪸㫃㫃㫆㫇㪸㫅㪺㪿㪸㫏 㪚㪸㫃㫃㫆㫇㪸㫅㪺㪿㪸㫏 㪚㪸㫃㫃㫆㫇㪸㫅㪺㪿㪸㫏 㪚㪸㫃㫃㫆㫇㪸㫅㪺㪿㪸㫏 㪚㪸㫃㫃㫆㫇㪸㫅㪺㪿㪸㫏 㪚㪿㫉㫆㫄㪸㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅
㫆㪾㫆㪼㫅㫊㪼 㫆㪾㫆㪼㫅㫊㪼 㫆㪾㫆㪼㫅㫊㪼㩷㪺㪸㫌㪻㫆㪽㪸㫊㪺㫀㪸㫋㫌㫄 㫆㪾㫆㪼㫅㫊㪼㩷㫇㫐㫉㫆㫇㪿㫆㫉㪼 㫆㪾㫆㪼㫅㫊㪼㩷㫆㫋㫋㫆㪾㪸㫉㫋㫅㪼㫉㫀 㫇㪸㫊㪺㪿㪼㫅㫀 㫇㪸㫊㪺㪿㪼㫅㫀 㫇㫉㫀㫄㫀㪾㪼㫅㫀㫌㫄 㫇㫌㫅㪺㫋㪸㫋㫌㫄 㫇㫌㫅㪺㫋㫌㫃㪸㫋㫌㫄 㫉㪸㪻㪻㪸㫀㩷㫉㪸㪻㪻㪸㫀 㫉㪼㪺㫋㫆㪾㫆㪼㫅㫊㪼 㫉㫀㪾㪾㪼㫅㪹㪸㪺㪿㫀 㫉㫀㪾㪾㪼㫅㪹㪸㪺㪿㫀 㫉㫀㪾㪾㪼㫅㪹㪸㪺㪿㫀 㫉㫀㪾㪾㪼㫅㪹㪸㪺㪿㫀 㫉㫀㪾㪾㪼㫅㪹㪸㪺㪿㫀 㫉㫀㪾㪾㪼㫅㪹㪸㪺㪿㫀 㫉㫀㪾㪾㪼㫅㪹㪸㪺㪿㫀 㫉㫀㪾㪾㪼㫅㪹㪸㪺㪿㫀 㫉㫀㪾㪾㪼㫅㪹㪸㪺㪿㫀 㫊㪺㪿㫀㫆㪼㫋㫑㫀 㫊㪺㪿㫃㫌㫇㫇㫀 㫊㫇㫃㪼㫅㪻㫆㫇㫃㪼㫌㫉㪼 㫊㫋㫉㫀㪸㫋㫌㫄 㫋㪿㫐㫊㫀 㫍㫆㫃㪺㪸㫅㫌㫄 㫍㫆㫃㪺㪸㫅㫌㫄 㫎㪸㪺㪿㫋㪼㫉㫊㫀 㫎㫀㫃㪻㪼㫂㪸㫄㫇㫀 㫑㫐㪾㪸㫀㫄㪸 㪾㫌㫀㫅㪼㪼㫅㫊㪼 㫄㫆㫅㫉㫆㫍㫀㪸㪼 㫆㪺㪺㫀㪻㪼㫅㫋㪸㫃㫀㫊 㫆㪺㪺㫀㪻㪼㫅㫋㪸㫃㫀㫊 㫋㫆㪻㪻㫀 㫋㫆㪻㪻㫀 㫇㫆㫃㫀㪸㫂㫀
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㪹㫆㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷
㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪩㫆㫃㫆㪽㪽㫀㪸㩷㫆㪅㩷㫆㪺㪺㫀㪻㪼㫅㫋㪸㫃㫀㫊 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㩷㪦㪚㪚㪄㪘㪨 㪩㫆㫃㫆㪽㪽㫀㪸㩷㫆㪺㪺㫀㪻㪼㫅㫋㪸㫃㫀㫊㩷㫋㫆㪻㪻㫀 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅㩷 㪫㪦㪛㪄㪫㪰
㪮㪘㪚㪄㪘㪨 㪮㪠㪣㪄㪫㪰 㪱㪰㪞㪄㪤㪠 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅㩷 㪞㪬㪠㪄㪘㪨
㪊㪏
㪈㪏㩷㪤㪆㪪㪤 㪈㪉㩷㪤㪆㪪㪤㩷㪂㩷㪈㪍㩷㪪㪫㪆㪘 㪋㪪㪫㩷㪂㩷㪊㪋㪘 㪋㩷㪤㪆㪪㪤㩷㪂㩷㪊㪍㩷㪪㪫㪆㪘
㪉㪇 㪉㪇 㪈㪏 㪉㪏 㪊㪏 㪋㪇
㪝㪃㩷㪤 㪝㪃㩷㪤
㪝㪃㩷㪤
㪤
㪤
㪝㪃㩷㪤
㪈㪍㩷㪤㪆㪪㪤㩷㪂㩷㪋㪪㪫
㪉㪋
㪝㪃㩷㪤
㪋㪋
㩿㪐㪉㪀
㪉
㪣㫀㪹㪼㫉㫀㪸
㪬㫇㫇㪼㫉㩷㪥㫀㪾㪼㫉
㪚㫆㫅㪾㫆
㪜㪅㩷㪚㪸㫄㪼㫉㫆㫆㫅
㪚㫆㫅㪾㫆
㪮㪅㩷㪚㪸㫄㪼㫉㫆㫆㫅
㪮㪅㩷㪚㪸㫄㪼㫉㫆㫆㫅
㪪㪅㩷㪚㫆㫅㪾㫆
㪥㪅㩷㪞㪸㪹㫆㫅
㪚㪸㫄㪼㫉㫆㫆㫅
㪪㪅㩷㪞㪸㪹㫆㫅
㪚㪅㩷㪘㪽㫉㫀㪺㪸
㪜㪅㩷㪚㪸㫄㪼㫉㫆㫆㫅
㪜㪅㩷㪚㪸㫄㪼㫉㫆㫆㫅
㪜㪅㩷㪚㪸㫄㪼㫉㫆㫆㫅
㪜㪅㩷㪚㪸㫄㪼㫉㫆㫆㫅
㪜㪅㩷㪚㪸㫄㪼㫉㫆㫆㫅
㪜㪅㩷㪚㪸㫄㪼㫉㫆㫆㫅㩷㩿㪮㫌㫉㫀㪀㩷
㪊㪏
㪉㪪㪫㩷㪂㩷㪊㪍㪘
㪊㪏
㪋㪇
㩿㪏㪍㪀
㪘㪚㪥㪔㪋㪋
㪘㪚㪥㪔㪋㪍
㪮㪅㩷㪚㪸㫄㪼㫉㫆㫆㫅
㪪㫀㪼㫉㫉㪸㩷㪣㪼㫆㫅㪼
㪎㪏
㪋㪍
㪊㪉㩷㪤㪆㪪㪤㩷㪂㩷㪈㪋㩷㪪㪫㪆㪘
㪪㫀㪼㫉㫉㪸㩷㪣㪼㫆㫅㪼
㪋㪍㪁
㪘㪚㪥㪔㪋㪍
㪜㪅㩷㪚㪸㫄㪼㫉㫆㫆㫅㩷㩿㪭㫌㫉㫀㪀 㪜㪅㩷㪚㪸㫄㪼㫉㫆㫆㫅㩷㩿㪪㪸㪹㪸㪾㪸㪀
㪪㫀㪼㫉㫉㪸㩷㪣㪼㫆㫅㪼
㪎㪏
㪟㪄㪊㪊
㪪㪄㪈㪌㪏
㪭㪄㪐㪎
㪟㪄㪊㪊
㪪㪄㪈㪌㪏
㪪㪄㪈㪌㪏
㪪㪄㪈㪌㪏
㪪㪄㪉㪋㪃㩷㪪㪄㪈㪌㪏
㪪㪄㪈㪌㪏
㪪㪄㪈㪌㪏
㪪㪄㪈㪌㪏
㪪㪄㪈㪌㪏
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
㪭㪄㪎㪐
㪪㪄㪉㪋㪃㩷㪪㪄㪈㪌㪏
㪞㪄㪍㪌
㪪㪄㪉㪋㪃㩷㪪㪄㪈㪌㪏
㪞㪄㪍㪌
㪪㪄㪈㪌㪏
㪪㪄㪈㪌㪏
㪪㪄㪈㪌㪏
㪟㪄㪊㪊㪃㩷㪪㪄㪈㪌㪏
㪪㪄㪈㪌㪏
㪭㪄㪎㪐
㪪㪄㪈㪌㪏
㪪㪄㪈㪌㪏
㪪㪄㪈㪌㪏
㪭㪄㪐㪎
㪪㪄㪈㪌㪏
㪟㪄㪊㪊
㪭㪄㪏㪇
㪭㪄㪏㪇
㪭㪄㪏㪇
㪭㪄㪏㪇
㪭㪄㪏㪇
㪪㪄㪈㪌㪏
㪪㪄㪈㪌㪏
㪪㪄㪈㪌㪏
㪜㪅㩷㪚㪸㫄㪼㫉㫆㫆㫅㩷㩿㪛㫀㪹㫆㫅㪹㪸㪀 㪪㪄㪈㪌㪏
㪞㪸㪹㫆㫅
㪜㪅㩷㪚㪸㫄㪼㫉㫆㫆㫅
㪚㪸㫄㪼㫉㫆㫆㫅
㪞㪸㪹㫆㫅
㪞㪸㪹㫆㫅
㪜㪅㩷㪚㪸㫄㪼㫉㫆㫆㫅
㪜㪅㩷㪚㪸㫄㪼㫉㫆㫆㫅
㪚㪅㩷㪚㫆㫅㪾㫆
㪪㪅㩷㪚㫆㫅㪾㫆
㪪㪅㩷㪚㫆㫅㪾㫆
㪚㪅㩷㪚㫆㫅㪾㫆
㪞㪸㪹㫆㫅
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪋㪍
㪸㫅㫅㫌㪸㫃
㪘㪚㪥㪔㪋㪋
㪘㪚㪥㪔㪋㪇
㪘㪚㪥㪔㪋㪋
㪘㪚㪥㪔㪋㪋
㪘㪚㪥㪔㪋㪋
㪘㪚㪥㪔㪋㪉
㪘㪚㪥㪔㪋㪇
㪘㪚㪥㪔㪊㪍
㪘㪚㪥㪔㪊㪍
㪘㪚㪥㪔㪊㪍
㪘㪚㪥㪔㪊㪏
㪘㪚㪥㪔㪊㪏
㪘㪚㪥㪔㪋㪇
㪘㪚㪥㪔㪋㪉
㪘㪚㪥㪔㪊㪍
㪘㪚㪥㪔㪋㪇
㪘㪚㪥㪔㪋㪉
㪘㪚㪥㪔㪋㪋
㪘㪚㪥㪔㪋㪋
㪘㪚㪥㪔㪋㪉
㪘㪚㪥㪔㪋㪉㩷
㪘㪚㪥㪔㪋㪉㩷
㪘㪚㪥㪔㪋㪋
㪘㪚㪥㪔㪋㪇㩷
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪪㫀㪼㫉㫉㪸㩷㪣㪼㫆㫅㪼 㪊㪉㩷㪤㪆㪪㪤㩷㪂㩷㪈㪋㩷㪪㪫㪆㪘
㪉
㪉
㪉
㪉㪃㩷㪋
㪉
㪉
㪍
㪉
㪟 㪠 㪘㪾㪄 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㪥㪦㪩㫊 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪋㪍㪁
㪋㪍
㪋㪍
㪋㪏
㪉㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪉㪏㪘
㪊㪏
㪊㪍 㩿㪋㪇㪀
㪉㪇
㪊㪇
㪋㪇
㩿㪍㪍㪀
㪋㪉
㩿㪌㪋㪀
㪊㪍
㪋㪇
㪋㪇
㪋㪋
㪋㪍
㪋㪇
㪋㪇
㪋㪇
㪊㪏
㩿㪋㪉㪀
㪊㪍
㪋㪋
㩿㪍㪏㪀 㪊㪍
㪊㪏
㪊㪏
㪋㪋
㪊㪏
㪋㪇
㪊㪍
㪊㪍
㪊㪍
㪊㪍
㪊㪏
㪊㪏
㪋㪇
㪋㪇
㪊㪏
㪊㪏
㪊㪍
㪋㪋
㪊㪋 㪋㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪉㪋㪘
㪉㪪㪫㩷㪂㩷㪊㪍㪘
㪉㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪊㪉㪘
㪈㪍㩷㪤㪆㪪㪤㩷㪂㩷㪋㪪㪫
㪈㪉㩷㪤㪆㪪㪤㩷㪂㩷㪏㪪㪫㩷㪂㩷㪋㪘
㪏㩷㪤㪆㪪㪤㩷㪂㩷㪏㪪㪫㩷㪂㩷㪈㪋㪘
㪊㪇
㪝㪃㩷㪤
㪉㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪊㪉㪘
㪈㪉㪤㩷㪂㩷㪏㪪㪤㩷
㪉㪇 㪊㪍
㪋㪪㪤㩷㪂㩷㪊㪇㪘 㪉㪤㩷㪂㩷㪏㪪㪤㩷㪂㩷㪉㪇㪘
㪊㪏㩷㪪㪫㪆㪘
㪊㪏 㪊㪋
㪈㪏㩷㪤㪆㪪㪤
㪈㪏
㪊㪇
㪏㩷㪤㪆㪪㪤㪆㪪㪫㩷㪂㩷㪉㪏㪘 㪈㪉㩷㪤㪆㪪㪤㩷㪂㩷㪉㪇㪘㩷
㪊㪍 㪊㪉
㪋㪏
㪉㪋
㪤
㪝㪃㩷㪤
㩿㪋㪉㪀
㪉㪉 㪋㪍
㩿㪋㪏㪀
㪉㪋 㪉㪉㩷㪤㪆㪪㪤㩷㪂㩷㪉㪪㪫
㪈㪏㩷㪤㪆㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪉㪘
㪉㪋
㪋㪍
㩿㪎㪍㪀
㪈㪉㩷㪤㪆㪪㪤㩷㪂㩷㪉㪏㩷㪪㪫㪆㪘㩷
㪋㪇 㪋㪉
㩿㪍㪋㪀
㪊㪏 㪌㪉
㩿㪎㪍㪀
㩿㪎㪉㪀
㪊㪏
㪌㪏 㩿㪌㪍㪀
㪈㪏㩷㪤㪆㪪㪤㩷㪂㩷㪉㪉㩷㪪㪫㪆㪘
㪊㪉
㪋㪇
㪚㪿㫉㫆㫄㪸㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅
㪞 㪥㪝㪉
㪋㪇
㪝 㪥㪝㪈
㩿㪌㪉㪀
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪉㪏
㪛 㪉㫅
㪊㪍
㪚 㪪㪼㫏
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉 㪦㪞㪦㪄㪘㪨 㪦㪞㪦㪄㪙㪘 㪚㪘㪬㪄㪘㪨 㪧㪰㪩㪄㪘㪨 㪦㪫㪫㪄㪘㪨 㪧㪘㪪㪄㪫㪰 㪧㪘㪪㪄㪘㪨 㪧㪩㪠㪄㪘㪨 㪧㪬㪚㪄㪦㪭 㪚㪿㫉㫆㫄㪸㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㩷㪚㪤㪤㪉㪉 㪩㪘㪛㪄㪫㪰 㪩㪜㪚 㩷㪩㪠㪞㪄㪰㪘 㩷㪩㪠㪞㪄㪞㪠 㩷㪩㪠㪞㪄㪪㪘 㪩㪠㪞㪄㪮㪥 㪚㪿㫉㫆㫄㪸㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㩷㪢㪭㪦㪊㪆㪈㪍㩷 㪚㪿㫉㫆㫄㪸㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㩷㪢㪭㪦㪊㪆㪉㪎㩷 㪚㪿㫉㫆㫄㪸㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㩷㪢㪭㪦㪊㪆㪉㪌 㪚㪿㫉㫆㫄㪸㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㩷㪢㪭㪦㪊㪆㪉㪏 㪚㪿㫉㫆㫄㪸㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅㩷 㪢㪭㪦㪊㪆㪉㪐㩷 㪪㪠㪦㪄㪘㪨 㪪㪣㪬㪄㪘㪨 㪚㪿㫉㫆㫄㪸㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㩷㪙㫀㫆㫂㫆㩷 㪪㪫㪩㪄㪘㪨 㪫㪟㪰㪄㪘㪨 㪭㪦㪣㪄㪫㪰
㪫㪸㪹㫃㪼㩷㪍㪅㪉㪏㩷㩷㪦㫉㪻㪼㫉㩷㪚㪰㪧㪩㪠㪥㪦㪛㪦㪥㪫㪠㪝㪦㪩㪤㪜㪪㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀
140
㪉㩷㪤㪆㪪㪤㩷㪂㩷㪋㪍㪘
㪋㪏
㪋㩷㪤㪆㪪㪤㩷㪂㩷㪋㪋㪘㩷
㪋㪏
㪈㪉㩷㪤㪆㪪㪤㩷㪂㩷㪉㪍㩷㪪㪫㪆㪘
㪊㪏
㪊㪏
㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅
㪋㪏
㪋㪇
㪝㪣㪘㪄㪘㪨
㪈㪇㩷㪤㪆㪪㪤㩷㪂㩷㪉㪏㩷㪪㪫㪆㪘
㪉㪋 㩿㪍㪉㪀
㪌㪉
㩿㪋㪏㪀 㪉㪋
㪉㪋
㩿㪌㪏㪀
㪋㪉 㪊㪋
㩿㪌㪇㪀
㪋㪏
㪉㪋㪘
㪋㪏
㪋㪏
㩿㪌㪇㪀
㪋㪏
㪋㪏
㪋㪏㪁
㩿㪎㪍㪀
㩿㪐㪉㪀 㩿㪐㪉㪀
㪌㪇
㪍㪇
㪋㪍 㪋㪏㩷㪪㪫㪆㪘
㪈㪋㩷㪤㪆㪪㪤㩷㪂㩷㪊㪉㩷㪪㪫㪆㪘
㪋㪍
㩿㪐㪉㪀
㪈㪋㩷㪤㪆㪪㪤㩷㪂㩷㪊㪉㩷㪪㪫㪆㪘
㪋㪍
㪍㪇
㪋㪏
㪋㪏㪘
㪋㪏
㪋㪏
㩿㪌㪉㪀
㪋㪉
㪌㪉
㪌㪉
㪌㪉
㩿㪌㪇㪀 㪌㪉
㪍㩷㪤㪆㪪㪤㩷㪂㩷㪋㪇㪘
㪋㪏 㪋㪍
㪌㪇
㪌㪇
㪋㪏
㪉㪪㪤㩷㪂㩷㪋㪍㪘
㩿㪎㪍㪀 㩿㪎㪍㪖㪀
㪊㪏
㩿㪎㪍㪀
㪊㪍
㪊㪏
㪈㪇㩷㪤㪆㪪㪤㩷㪂㩷㪊㪇㩷㪪㪫㪆㪘
㪋㪇
㪌㪇
㪌㪇
㪏㪤㩷㪂㩷㪊㪋㪘
㪋㪉
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪉
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪭㪄㪐㪎 㪪㪄㪈㪌㪏
㪪㪄㪉㪋㪃㩷㪪㪄㪈㪌㪏㪃㩷㪪㪄㪈㪌㪐
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
㪤㫆㫅㫉㫆㫍㫀㪸
㪠㫍㫆㫉㫐㩷㪚㫆㪸㫊㫋
㪞㪿㪸㫅㪸
㪞㪿㪸㫅㪸㪃㩷㪠㫍㫆㫉㫐㩷㪚㫆㪸㫊㫋
㪮㪅㩷㪘㪽㫉㫀㪺㪸㩷㫋㫆㩷㪥㫀㫃㪼
㪭㫆㫃㫋㪸
㪞㪸㪹㫆㫅
㪥㫀㪾㪼㫉㫀㪸
㪥㫀㪾㪼㫉㫀㪸
㪱㪸㫀㫉㪼
㪮㪅㩷㪘㪽㫉㫀㪺㪸㩷㫋㫆㩷㪥㫀㫃㪼
㪥㫀㪾㪼㫉㫀㪸
㪱㪸㫀㫉㪼
㪮㪅㩷㪚㪸㫄㪼㫉㫆㫆㫅
㪞㪿㪸㫅㪸㩷㫋㫆㩷㪞㪸㪹㫆㫅
㪜㪅㩷㪚㪸㫄㪼㫉㫆㫆㫅
㪣㫀㪹㪼㫉㫀㪸
㪠㫍㫆㫉㫐㩷㪚㫆㪸㫊㫋
㪚㫆㫅㪾㫆
㪱㪸㫀㫉㪼
㪚㪅㩷㪘㪽㫉㫀㫅㩷㪩㪼㫇㪅
㪠㫍㫆㫉㫐㩷㪚㫆㪸㫊㫋
㪣㫀㪹㪼㫉㫀㪸
㪪㪅㪮㪅㩷㪞㪸㪹㫆㫅
㪚㪸㫄㪼㫉㫆㫆㫅
㪥㫀㪾㪼㫉㫀㪸㩷㫋㫆㩷㪚㫆㫅㪾㫆
㪞㫌㫀㫅㪼㪼㪃㩷㪣㫀㪹㪼㫉㫀㪸
㪞㫌㫀㫅㪼㪼㪃㩷㪣㫀㪹㪼㫉㫀㪸
㪪㫀㪼㫉㫉㪸㩷㪣㪼㫆㫅㪼
㪞㫌㫀㫅㪼㪼㪃㩷㪣㫀㪹㪼㫉㫀㪸
㪜㪅㩷㪚㪸㫄㪼㫉㫆㫆㫅
㪚㫆㫅㪾㫆
㪪㪄㪉㪋㪃㩷㪪㪄㪈㪌㪐
㪪㪄㪈㪌㪏
㪪㪄㪈㪌㪏
㪪㪄㪉㪋㪃㩷㪪㪄㪈㪌㪐
㪪㪄㪈㪏
㪪㪄㪈㪌㪏
㪪㪄㪈㪌㪏
㪪㪄㪉㪋㪃㩷㪪㪄㪈㪌㪐
㪪㪄㪉㪋㪃㩷㪪㪄㪈㪌㪐
㪪㪄㪈㪌㪏
㪪㪄㪈㪌㪏
㪪㪄㪈㪌㪏
㪪㪄㪈㪌㪏
㪪㪄㪈㪌㪏
㪪㪄㪈㪌㪏
㪪㪄㪈㪌㪏
㪪㪄㪈㪌㪏
㪪㪄㪈㪌㪏
㪪㪄㪉㪋
㪪㪄㪉㪋㪃㩷㪪㪄㪈㪌㪐
㪪㪄㪉㪋㪃㩷㪪㪄㪈㪌㪐
㪪㪄㪈㪏
㪪㪄㪉㪋㪃㩷㪪㪄㪈㪌㪏㪃㩷㪪㪄㪈㪌㪐
㪪㪄㪉㪋㪃㩷㪪㪄㪈㪌㪐
㪪㪄㪉㪋㪃㩷㪪㪄㪈㪌㪐
㪪㪄㪈㪌㪏
㪪㪄㪉㪋㪃㩷㪪㪄㪈㪌㪐
㪪㪄㪈㪏
㪪㪄㪈㪌㪏
㪪㪄㪈㪌㪏
㪪㪄㪉㪋㪃㩷㪪㪄㪈㪌㪐
㪪㪄㪉㪋㪃㩷㪪㪄㪈㪌㪐
㪪㪄㪈㪏
㪪㪄㪈㪌㪏
㪪㫀㪼㫉㫉㪸㩷㪣㪼㫆㫅㪼㪃㩷㪮㪅㩷㪣㫀㪹㪼㫉㫀㪸 㪪㪄㪉㪋㪃㩷㪪㪄㪈㪌㪏
㪞㪸㪹㫆㫅
㪞㫌㫀㫅㪼㪼㪃㩷㪣㫀㪹㪼㫉㫀㪸
㪩㫀㫆㩷㪤㫌㫅㫀
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪣㫀㪹㪼㫉㫀㪸
㩿㪐㪉㪀 㩿㪌㪉㪀
㪌㪇
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪍
㪯㪰
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪞㪿㪸㫅㪸㩷㫋㫆㩷㪣㫀㪹㪼㫉㫀㪸
㪉
㪟 㪠 㪘㪾㪄 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㩿㫇㪾㪆㪺㪼㫃㫃㪀 㪥㪦㪩㫊
㩿㪐㪉㪀
㪋㪏
㪏㪉
㪌㪇
㪊㪉㩷㪤㪆㪪㪤㩷㪂㩷㪈㪏㩷㪪㪫㪆㪘
㪋㪏㪁
㪌㪇
㪌㪇
㩿㪌㪉㪀
㩿㪌㪍㪀
㪋㪏
㪌㪇
㪌㪇
㪌㪇
㪋㪏
㪌㪇
㩿㪏㪏㪀 㩿㪌㪋㪀
㩿㪌㪉㪀
㪌㪇㩷㪪㪫㪆㪘
㪌㪇
㪌㪇 㪋㪏
㩿㪏㪍㪀
㪋㪋
㪞 㪥㪝㪉
㪌㪇
㪏㪤㩷㪂㩷㪊㪉㪘
㪋㪇
㪋㪇
㪋㩷㪤㪆㪪㪤㩷㪂㩷㪋㪉㩷㪪㪫㪆㪘 㪈㪋㩷㪤㪆㪪㪤㩷㪂㩷㪉㪇㩷㪪㪫㪆㪘
㪋㪍 㪊㪋
㪎㪇
㪝 㪥㪝㪈
㪊㪋㪁
㪤
㪤
㪤
㪤
㪏㩷㪤㪆㪪㪤㪆㪪㪫㩷㪂㩷㪉㪏㪘 㪉㪇㩷㪤㪆㪪㪤㩷㪂㩷㪊㪇㩷㪪㪫㪆㪘
㪊㪍
㪝㪃㩷㪤
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪌㪇
㪛 㪉㫅
㪚 㪪㪼㫏
㪘㫇㫃㫆㪺㪿㪼㫀㫃㫌㫊 㪘㪻㪸㫄㪸㫊 㩷㪝㪦㪩㪄㪘㪨
㪘㫇㫃㫆㪺㪿㪼㫀㫃㫌㫊 㪘㫇㫃㫆㪺㪿㪼㫀㫃㫌㫊 㪘㫇㫃㫆㪺㪿㪼㫀㫃㫌㫊 㪘㫇㫃㫆㪺㪿㪼㫀㫃㫌㫊㩷㫅㫀㪾㫉㫆㫄㪸㫉㪾㫀㫅㪸㫋㫌㫊 㪘㫇㫃㫆㪺㪿㪼㫀㫃㫌㫊 㪘㫇㫃㫆㪺㪿㪼㫀㫃㫌㫊 㩷㪣㪘㪤 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅㩷 㪤㪘㪜㪄㪘㪨 㪘㫇㫃㫆㪺㪿㪼㫀㫃㫌㫊 㪘㫇㫃㫆㪺㪿㪼㫀㫃㫌㫊㩷 㪘㫇㫃㫆㪺㪿㪼㫀㫃㫌㫊㩷㪹㫆㫌㫃㪼㫅㪾㪼㫉㫀 㪘㫇㫃㫆㪺㪿㪼㫀㫃㫌㫊 㪘㫇㫃㫆㪺㪿㪼㫀㫃㫌㫊 㪘㫇㫃㫆㪺㪿㪼㫀㫃㫌㫊 㪘㫇㫃㫆㪺㪿㪼㫀㫃㫌㫊 㪘㫇㫃㫆㪺㪿㪼㫀㫃㫌㫊 㪘㫇㫃㫆㪺㪿㪼㫀㫃㫌㫊
㪘㫇㫃㫆㪺㪿㪼㫀㫃㫌㫊 㪘㫇㫃㫆㪺㪿㪼㫀㫃㫌㫊 㪘㫇㫃㫆㪺㪿㪼㫀㫃㫌㫊 㪘㫇㫃㫆㪺㪿㪼㫀㫃㫌㫊 㪘㫇㫃㫆㪺㪿㪼㫀㫃㫌㫊
㪘㫇㫃㫆㪺㪿㪼㫀㫃㫌㫊 㪘㫇㫃㫆㪺㪿㪼㫀㫃㫌㫊 㪘㫇㫃㫆㪺㪿㪼㫀㫃㫌㫊 㪘㫇㫃㫆㪺㪿㪼㫀㫃㫌㫊
㪘㫇㫃㫆㪺㪿㪼㫀㫃㫌㫊 㪘㫇㫃㫆㪺㪿㪼㫀㫃㫌㫊 㪘㫇㫃㫆㪺㪿㪼㫀㫃㫌㫊㩷 㪙㪘㪩 㪘㫇㫃㫆㪺㪿㪼㫀㫃㫌㫊
㪜㫇㫀㫇㫃㪸㫋㫐㫊 㪜㫇㫀㫇㫃㪸㫋㫐㫊 㪜㫇㫀㫇㫃㪸㫋㫐㫊 㪜㫇㫀㫇㫃㪸㫋㫐㫊 㪜㫇㫀㫇㫃㪸㫋㫐㫊 㪜㫇㫀㫇㫃㪸㫋㫐㫊 㪜㫇㫀㫇㫃㪸㫋㫐㫊 㪜㫇㫀㫇㫃㪸㫋㫐㫊 㪜㫇㫀㫇㫃㪸㫋㫐㫊 㪜㫇㫀㫇㫃㪸㫋㫐㫊 㪜㫇㫀㫇㫃㪸㫋㫐㫊 㪜㫇㫀㫇㫃㪸㫋㫐㫊 㪜㫇㫀㫇㫃㪸㫋㫐㫊 㪜㫇㫀㫇㫃㪸㫋㫐㫊 㪜㫇㫀㫇㫃㪸㫋㫐㫊 㪜㫇㫀㫇㫃㪸㫋㫐㫊 㪜㫇㫀㫇㫃㪸㫋㫐㫊 㪜㫇㫀㫇㫃㪸㫋㫐㫊 㪜㫇㫀㫇㫃㪸㫋㫐㫊 㪜㫇㫀㫇㫃㪸㫋㫐㫊 㪜㫇㫀㫇㫃㪸㫋㫐㫊 㪜㫇㫀㫇㫃㪸㫋㫐㫊 㪜㫇㫀㫇㫃㪸㫋㫐㫊 㪜㫇㫀㫇㫃㪸㫋㫐㫊 㪜㫇㫀㫇㫃㪸㫋㫐㫊 㪜㫇㫀㫇㫃㪸㫋㫐㫊 㪜㫇㫀㫇㫃㪸㫋㫐㫊 㪜㫇㫀㫇㫃㪸㫋㫐㫊 㪜㫇㫀㫇㫃㪸㫋㫐㫊 㪜㫇㫀㫇㫃㪸㫋㫐㫊 㪜㫇㫀㫇㫃㪸㫋㫐㫊 㪜㫇㫀㫇㫃㪸㫋㫐㫊 㪜㫇㫀㫇㫃㪸㫋㫐㫊 㪜㫇㫀㫇㫃㪸㫋㫐㫊 㪝㪼㫅㪼㫉㪹㪸㪿㪺㪼 㪝㫆㪼㫉㫊㪺㪿㫀㪺㪿㫋㪿㫐㫊 㪝㫌㫅㪻㫌㫃㫆㫇㪸㫅㪺㪿㪸㫏
㪸㫅㫅㫌㫃㪸㫋㫌㫊 㪸㫅㫊㫆㫉㪾㫀㫀 㪹㪸㫉㫄㫆㫀㪼㫅㫊㫀㫊 㪹㪼㫉㫂㪼㫅㫂㪸㫄㫇㫀 㪹㫀㪽㪸㫊㪺㫀㪸㫋㫌㫊 㪹㫀㪽㪸㫊㪺㫀㪸㫋㫌㫊 㪺㪿㪸㫇㪼㫉㫀 㪺㪿㪸㫇㪼㫉㫀㩷㫊㪺㪿㫉㪼㫀㪹㪼㫉㫀 㪺㪿㪸㫇㪼㫉㫀㩷㫊㪿㪼㫃㫁㫌㫑㪿㫂㫆㫀 㪻㪸㪾㪼㫋㫀 㪻㪸㪾㪼㫋㫀 㪻㪸㪾㪼㫋㫀㩷㫄㫆㫅㫉㫆㫍㫀㪸㪼 㪻㫌㪹㫆㫀㫊㫀 㪼㫊㪼㫂㪸㫅㫌㫊 㪽㪸㫊㪺㫀㫆㫃㪸㫋㫌㫊㩷㪽㪸㫊㪺㫀㫆㫃㪸㫋㫌㫊 㪽㪸㫊㪺㫀㫆㫃㪸㫋㫌㫊 㪽㪸㫊㪺㫀㫆㫃㪸㫋㫌㫊 㪽㪸㫊㪺㫀㫆㫃㪸㫋㫌㫊 㪾㫉㪸㪿㪸㫄㫀 㪾㫉㪸㪿㪸㫄㫀 㪿㫌㪹㪼㫉㫀 㫃㪸㫄㫆㫋㫋㪼㫀 㫄㪸㪼㫊㪼㫅㫀 㫄㪼㫊㫆㪾㫉㪸㫄㫄㪸 㫄㫌㫃㫋㫀㪽㪸㫊㪺㫀㪸㫋㫌㫊 㫄㫌㫃㫋㫀㪽㪸㫊㪺㫀㪸㫋㫌㫊 㫆㫃㪹㫉㪼㪺㪿㫋㫊㫀 㫉㫆㫃㫆㪽㪽㫀 㫊㪸㫅㪾㫄㪼㫃㫀㫅㪼㫅㫊㫀㫊 㫊㪼㫏㪽㪸㫊㪺㫀㪸㫋㫌㫊 㫊㪼㫏㪽㪸㫊㪺㫀㪸㫋㫌㫊㩷㫉㪸㫋㪿㫂㪼㫀 㫊㫀㫅㪾㪸 㫊㫇㫀㫃㪸㫉㪾㫐㫉㪼㫀㫌㫊 㫊㫇㫀㫃㪸㫉㪾㫐㫉㪼㫀㫌㫊 㪽㫆㫉㫄㫆㫊㫌㫊 㪽㫃㪸㫍㫀㫇㫀㫅㫅㫀㫊 㪸㫉㫅㫆㫃㪻㫀
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉 㪞㪜㪤㪟㪪㪇㪇㪆㪋㪈
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㪹㫆㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷 㪚㪿㫉㫆㫄㪸㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㫊㫇㪅
㪫㪸㪹㫃㪼㩷㪍㪅㪉㪏㩷㩷㪦㫉㪻㪼㫉㩷㪚㪰㪧㪩㪠㪥㪦㪛㪦㪥㪫㪠㪝㪦㪩㪤㪜㪪㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀
141
㪝㫌㫅㪻㫌㫃㫆㫇㪸㫅㪺㪿㪸㫏 㪝㫌㫅㪻㫌㫃㫆㫇㪸㫅㪺㪿㪸㫏 㪝㫌㫅㪻㫌㫃㫆㫇㪸㫅㪺㪿㪸㫏 㪝㫌㫅㪻㫌㫃㫆㫇㪸㫅㪺㪿㪸㫏 㪝㫌㫅㪻㫌㫃㫆㫇㪸㫅㪺㪿㪸㫏 㪝㫌㫅㪻㫌㫃㫆㫇㪸㫅㪺㪿㪸㫏 㪝㫌㫅㪻㫌㫃㫆㫇㪸㫅㪺㪿㪸㫏 㪝㫌㫅㪻㫌㫃㫆㫇㪸㫅㪺㪿㪸㫏 㪝㫌㫅㪻㫌㫃㫆㫇㪸㫅㪺㪿㪸㫏 㪝㫌㫅㪻㫌㫃㫆㫇㪸㫅㪺㪿㪸㫏 㪝㫌㫅㪻㫌㫃㫆㫇㪸㫅㪺㪿㪸㫏 㪝㫌㫅㪻㫌㫃㫆㫇㪸㫅㪺㪿㪸㫏 㪝㫌㫅㪻㫌㫃㫆㫇㪸㫅㪺㪿㪸㫏 㪝㫌㫅㪻㫌㫃㫆㫇㪸㫅㪺㪿㪸㫏 㪝㫌㫅㪻㫌㫃㫆㫇㪸㫅㪺㪿㪸㫏 㪝㫌㫅㪻㫌㫃㫆㫇㪸㫅㪺㪿㪸㫏 㪝㫌㫅㪻㫌㫃㫆㫇㪸㫅㪺㪿㪸㫏 㪝㫌㫅㪻㫌㫃㫆㫇㪸㫅㪺㪿㪸㫏 㪝㫌㫅㪻㫌㫃㫆㫇㪸㫅㪺㪿㪸㫏 㪝㫌㫅㪻㫌㫃㫆㫇㪸㫅㪺㪿㪸㫏 㪝㫌㫅㪻㫌㫃㫆㫇㪸㫅㪺㪿㪸㫏 㪝㫌㫅㪻㫌㫃㫆㫇㪸㫅㪺㪿㪸㫏 㪝㫌㫅㪻㫌㫃㫆㫇㪸㫅㪺㪿㪸㫏 㪝㫌㫅㪻㫌㫃㫆㫇㪸㫅㪺㪿㪸㫏 㪝㫌㫅㪻㫌㫃㫆㫇㪸㫅㪺㪿㪸㫏 㪝㫌㫅㪻㫌㫃㫆㫇㪸㫅㪺㪿㪸㫏 㪝㫌㫅㪻㫌㫃㫆㫇㪸㫅㪺㪿㪸㫏 㪝㫌㫅㪻㫌㫃㫆㫇㪸㫅㪺㪿㪸㫏 㪝㫌㫅㪻㫌㫃㫆㫇㪸㫅㪺㪿㪸㫏 㪝㫌㫅㪻㫌㫃㫆㫇㪸㫅㪺㪿㪸㫏 㪝㫌㫅㪻㫌㫃㫆㫇㪸㫅㪺㪿㪸㫏 㪝㫌㫅㪻㫌㫃㫆㫇㪸㫅㪺㪿㪸㫏 㪝㫌㫅㪻㫌㫃㫆㫇㪸㫅㪺㪿㪸㫏 㪝㫌㫅㪻㫌㫃㫆㫇㪸㫅㪺㪿㪸㫏 㪝㫌㫅㪻㫌㫃㫆㫇㪸㫅㪺㪿㪸㫏 㪝㫌㫅㪻㫌㫃㫆㫇㪸㫅㪺㪿㪸㫏 㪥㫀㫄㪹㪸㫇㪸㫅㪺㪿㪸㫏
㪺㫀㫅㫅㪸㫄㫆㫄㪼㫌㫄 㪽㪸㫃㫃㪸㫏 㪽㫀㫃㪸㫄㪼㫅㫋㫆㫊㫌㫄 㪽㫀㫃㪸㫄㪼㫅㫋㫆㫊㫌㫄 㪽㫀㫃㪸㫄㪼㫅㫋㫆㫊㫌㫄 㪾㪸㫉㪻㫅㪼㫉㫀 㪾㪸㫉㪻㫅㪼㫉㫀 㪾㪸㫉㪻㫅㪼㫉㫀 㪾㪸㫉㪻㫅㪼㫉㫀 㪾㪸㫉㪻㫅㪼㫉㫀㩷㪺㫃㪸㫌㫊㪼㫅 㪾㪸㫉㪻㫅㪼㫉㫀㩷㫃㪸㪺㫌㫊㫋㫉㪼 㪾㪸㫉㪻㫅㪼㫉㫀㩷㫃㪸㪺㫌㫊㫋㫉㪼 㪾㪸㫉㪻㫅㪼㫉㫀㩷㫄㪸㫄㪽㪼㫅㫊㪼 㪾㫌㫃㪸㫉㫀㫊 㪾㫌㫃㪸㫉㫀㫊 㫀㫅㫋㪼㫉㫄㫀㫋㫋㪼㫅㫊 㫂㫉㫀㪹㫀㪸㫅㫌㫊 㫄㪸㫉㫄㫆㫉㪸㫋㫌㫄 㫄㫀㫉㪸㪹㫀㫃㫀㫊 㫄㫀㫉㪸㪹㫀㫃㫀㫊 㫄㫀㫉㪸㪹㫀㫃㫀㫊 㫄㫀㫉㪸㪹㫀㫃㫀㫊 㫄㫆㪼㫅㫊㫀㫊 㫄㫆㪼㫅㫊㫀㫊 㫅㪻㫀㪸㫅㫌㫊 㫆㪼㫊㪼㫉㫀 㫇㫌㪼㫉㫑㫃㫀 㫉㫆㪹㪼㫉㫋㫊㫆㫅㫀 㫉㫌㪹㫉㫆㫃㪸㪹㫀㪸㫃㫀㫊 㫉㫌㪹㫉㫆㫃㪸㪹㫀㪸㫃㫀㫊 㫉㫌㪹㫉㫆㫃㪸㪹㫀㪸㫃㫀㫊 㫊㪺㪿㪼㪼㫃㫀 㫊㪺㪿㫎㫆㫀㫊㪼㫉㫀 㫊㫁㫆㫊㫋㪼㪻㫋㫀㩷 㫋㫉㪸㫌㪻㪼㪸㪼 㫎㪸㫃㫂㪼㫉㫀 㫇㪼㫋㪼㫉㫊㫀㫀
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㪹㫆㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷
㪚 㪪㪼㫏 㪋㪇
㪛 㪉㫅 㪋㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪊㪉㩷㪪㪫㪆㪘
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅㩷㫊㪺㪿㫎㫆㫀㫊㪼㫉㫀 㪋㪋 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㩷㩷㪝㪠㪣㪄㪠㪡 㪊㪍 㪋㩷㪤㪆㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪊㪇㪘 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㩷㩷㪝㪠㪣㪄㪘㪨 㪊㪇 㪏㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪉㪇㪘 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㩷㩷㪝㪠㪣㪄㪘㪨 㪊㪇 㪍㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪈㪋㪘 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅㩷 㪞㪘㪩㪄㪞㪜 㪋㪇 㪋㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪊㪇㩷㪪㪫㪆㪘 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅㩷 㪞㪘㪩㪄㪤㪠 㪊㪏 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅㩷 㪞㪘㪩㪄㪜㪞 㪊㪍 㪋㩷㪤㪆㪪㪤㩷㪂㩷㪊㪉㩷㪪㪫㪆㪘 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㩷㪞㪘㪩㪄㪦㪮 㪊㪍 㪋㩷㪤㪆㪪㪤㩷㪂㩷㪊㪉㩷㪪㪫㪆㪘 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅㩷 㪚㪣㪘 㪊㪍 㪋㩷㪤㪆㪪㪤㩷㪂㩷㪊㪉㩷㪪㪫㪆㪘 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪝 㪊㪐 㪊㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪈㪉㪪㪫㩷㪂㩷㪉㪇㪘 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪤 㪊㪎 㪌㪤㩷㪂㩷㪋㪪㪤㩷㩷㪂㩷㪈㪉㪪㪫㩷㪂㩷㪈㪍㪘 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪝 㪋㪇 㪈㪍㩷㪤㪆㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪉㪉㪘 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅㩷㪾㫌㫃㪸㫉㪼㩷 㪞㪬㪣㪄㪘㪨 㪊㪉 㪊㪉㪘 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅㩷㪾㫌㫃㪸㫉㪼 㪤 㪊㪍 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪊㪊㪃㩷㪊㪍 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅㩷 㪢㪩㪠㪄㪫㪰 㪋㪋 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅㩷 㪤㪘㪤㪄㪫㪰 㪋㪇 㪍㩷㪤㪆㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪉㪋㪘 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅㩷㫄㫀㫉㪸㪹㫀㫃㪼 㪊㪉㪄㪊㪏 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅㩷㫄㫀㫉㪸㪹㫀㫃㪼㩷㩷 㪤㪠㪩㪄㪫㪰 㪊㪇 㪊㪇㩷㪤㪆㪪㪤㪆㪪㪫 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅㩷㫄㫀㫉㪸㪹㫀㫃㪼 㪊㪏 㪉㪇㩷㪤㪆㪪㪤㩷㪂㩷㪈㪏㩷㪪㪫㪆㪘 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅㩷㫄㫀㫉㪸㪹㫀㫃㪼㩷㫄㫀㫉㪸㪹㫀㫃㪼㩷 㪝 㪊㪎 㪈㪐㩷㪤㪆㪪㪤㩷㪂㩷㪈㪏㪘 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅㩷㫄㫀㫉㪸㪹㫀㫃㪼㩷㫄㫆㪼㫅㫊㪼㩷 㪤㪦㪜㪄㪠㪥 㪊㪉 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅㩷㫄㫀㫉㪸㪹㫀㫃㪼㩷㫄㫆㪼㫅㫊㪼㩷 㪤㪦㪜㪄㪫㪰 㪊㪏 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅㩷㫅㪻㫀㪸㫅㫌㫄㩷 㪥㪛㪠㪄㪘㪨 㪋㪇 㪋㪇㪘 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅㩷㫊㪅㩷㫊㪸㫅㫋㪸㫀㫊㪸㪹㪼㫃㫃㪸㪼㩷 㪋㪇 㪍㩷㪤㪆㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪉㪋㪘 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㩷㪧㪬㪜㪄㪫㪰 㪊㪏 㪉㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪊㪋㪘 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅㩷 㪩㪦㪪㪄㪫㪰 㪋㪉 㪉㪇㩷㪤㪆㪪㪤㩷㪂㩷㪉㪉㩷㪪㪫㪆㪘 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅㩷㫉㫌㪹㫉㫆㫃㪸㪹㫀㪸㫃㪼㩷 㪩㪬㪣㪄㪤㪙㩷 㪋㪋 㪍㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪊㪇㪘 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅㩷㫉㫌㪹㫉㫆㫃㪸㪹㫀㪸㫃㪼 㩷㪩㪬㪣㪄㪰㪦㩷 㪋㪇 㪈㪇㩷㪤㪆㪪㪤㩷㪂㩷㪏㪪㪫㩷㪂㩷㪉㪉㪘 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅㩷㫉㫌㪹㫉㫆㫃㪸㪹㫀㪸㫃㪼㩷 㪋㪇 㪏㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪊㪇㪘 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㩷㪪㪚㪜㪄㪘㪨 㪋㪇 㪈㪇㩷㪤㪆㪪㪤㩷㪂㩷㪊㪇㩷㪪㪫㪆㪘 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪋㪋 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅㩷 㪪㪡㪦㪄㪘㪨 㪋㪇 㪋㪇㪘 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅㩷㫄㫀㫉㪸㪹㫀㫃㪼㩷㫋㫉㪸㫌㪻㪼㪸㪼 㪊㪎 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅㩷 㪮㪘㪣㪄㪘㪨 㪊㪍 㪈㪉㩷㪪㪤㩷㪂㩷㪉㪋㩷㪪㪫㪆㪘 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅㩷 㪧㪜㪫㪄㪘㪨 㪋㪇 㪈㪇㪤㩷㪂㩷㪊㪇㪘
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅㩷 㪚㪠㪥㪄㪫㪰
㪫㪸㪹㫃㪼㩷㪍㪅㪉㪏㩷㩷㪦㫉㪻㪼㫉㩷㪚㪰㪧㪩㪠㪥㪦㪛㪦㪥㪫㪠㪝㪦㪩㪤㪜㪪㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀
㩿㪍㪏㪀
㪌㪏 㪌㪏 㪊㪉
㪋㪍 㪌㪍 㪊㪉
㪌㪍 㪋㪉 㩿㪎㪏㪀 㪌㪏 㪌㪏 㪌㪇 㩿㪎㪍㪀
㪋㪍 㪋㪇 㪍㪉 㪌㪍 㪌㪇 㪋㪏 㪌㪇
㪋㪇 㩿㪎㪇㪀 㪌㪇
㪋㪇 㪋㪏 㪌㪇
㩿㪋㪏㪀
㪋㪇
㪋㪇
㪘㪚㪥㪔㪋㪋
㪘㪚㪥㪔㪋㪇
㪘㪚㪥㪔㪋㪉
㪘㪚㪥㪔㪋㪉
㪘㪚㪥㪔㪋㪋
㪘㪚㪥㪔㪋㪋
㪘㪚㪥㪔㪋㪋
㪘㪚㪥㪔㪋㪇
㪘㪚㪥㪔㪋㪉
㪘㪚㪥㪔㪋㪋
㪩㪄㪉㪏
㪪㪄㪈㪌㪏
㪩㪄㪉㪏㪃㩷㪪㪄㪈㪌㪏
㪩㪄㪉㪏㪃㩷㪪㪄㪈㪌㪏
㪩㪄㪉㪏㪃㩷㪪㪄㪈㪌㪏
㪪㪄㪉㪋㪃㩷㪪㪄㪈㪌㪏
㪪㪄㪈㪌㪏
㪪㪄㪈㪌㪏
㪪㪄㪈㪌㪏
㪩㪄㪉㪐
㪪㪄㪈㪌㪏
㪪㪄㪈㪌㪏
㪪㪄㪈㪌㪏
㪪㪄㪈㪌㪏㪃㩷㪪㪄㪈㪌㪐
㪠㫍㫆㫉㫐㩷㪚㫆㪸㫊㫋
㪠㫍㫆㫉㫐㩷㪚㫆㪸㫊㫋
㪪㪄㪉㪋㪃㩷㪪㪄㪈㪌㪏
㪪㪄㪈㪌㪏
㪪㪄㪈㪌㪏 㪩㪄㪉㪐
㪮㪅㩷㪚㪸㫄㪼㫉㫆㫆㫅
㪪㪄㪈㪌㪏 㪮㪅㩷㪚㪸㫄㪼㫉㫆㫆㫅
㪮㪅㩷㪚㪸㫄㪼㫉㫆㫆㫅
㪪㪅㪜㪅㩷㪥㫀㪾㪼㫉㫀㪸㪃㩷㪚㪸㫄㪼㫉㫆㫆㫅 㪪㪄㪉㪋
㪮㪅㩷㪚㪸㫄㪼㫉㫆㫆㫅
㪮㪅㩷㪚㪸㫄㪼㫉㫆㫆㫅
㪮㪅㩷㪚㪸㫄㪼㫉㫆㫆㫅
㪮㪅㩷㪚㪸㫄㪼㫉㫆㫆㫅
㪜㪅㩷㪚㪸㫄㪼㫉㫆㫆㫅
㪝㪼㫉㫅㪸㫅㪻㫆㩷㪧㫆
㪜㪅㩷㪥㫀㪾㪼㫉㫀㪸
㪮㪅㩷㪚㪸㫄㪼㫉㫆㫆㫅
㪮㪅㩷㪚㪸㫄㪼㫉㫆㫆㫅 㪮㪅㩷㪚㪸㫄㪼㫉㫆㫆㫅
㪘㪚㪥㪔㪋㪉 㩿㪍㪍㪀
㪌㪍
㪌㪍
㪮㪅㩷㪚㪸㫄㪼㫉㫆㫆㫅
㩿㪍㪇㪀
㩿㪍㪇㪀
㪮㪅㩷㪚㪸㫄㪼㫉㫆㫆㫅
㩿㪍㪇㪀
㪮㪅㩷㪚㪸㫄㪼㫉㫆㫆㫅
㪪㪄㪈㪌㪏
㪪㪄㪈㪌㪏
㪚㪸㫄㪼㫉㫆㫆㫅 㪜㪅㩷㪚㪸㫄㪼㫉㫆㫆㫅
㪪㪄㪉㪋㪃㩷㪪㪄㪈㪌㪏 㪞㪄㪍㪌
㪥㫀㪾㪼㫉㫀㪸
㪩㪄㪉㪐
㪩㪄㪉㪐
㪩㪄㪉㪐
㪪㪄㪈㪌㪏
㪪㪄㪈㪌㪏
㪪㪄㪉㪋
㪪㪄㪈㪌㪏
㪪㪄㪉㪋㪃㩷㪪㪄㪈㪌㪏㪃㩷㪪㪄㪈㪌㪐
㪪㪄㪉㪋㪃㩷㪪㪄㪈㪌㪏
㪪㪄㪉㪋㪃㩷㪪㪄㪈㪌㪏
㪪㪄㪉㪋㪃㩷㪪㪄㪈㪌㪏
㪪㪄㪈㪌㪏
㪪㪄㪉㪋㪃㩷㪪㪄㪈㪌㪏㪃㩷㪩㪄㪉㪐
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
㪥㫀㪾㪼㫉㫀㪸
㪮㪅㩷㪚㪸㫄㪼㫉㫆㫆㫅
㪮㪅㩷㪚㪸㫄㪼㫉㫆㫆㫅
㪮㪅㩷㪚㪸㫄㪼㫉㫆㫆㫅
㪥㫀㪾㪼㫉㫀㪸㩷
㪥㫀㪾㪼㫉㫀㪸㩷㩿㪦㫎㫆㪀
㪥㫀㪾㪼㫉㫀㪸
㪥㫀㪾㪼㫉㫀㪸
㪮㪅㩷㪚㪸㫄㪼㫉㫆㫆㫅
㪘㪚㪥㪔㪋㪉
㪘㪚㪥㪔㪋㪇
㪘㪚㪥㪔㪋㪉
㪘㪚㪥㪔㪋㪉
㪘㪚㪥㪔㪋㪉
㪘㪚㪥㪔㪊㪏
㩿㪍㪇㪀
㪌㪍
㪌㪏
㪋㪍
㪌㪏
㪋㪍
㩿㪋㪏㪀
㩿㪍㪍㪀 㩿㪍㪍㪀
㪋㪇 㪋㪇
㩿㪍㪏㪀
㪥㫀㪾㪼㫉㫀㪸
㩿㪍㪏㪀
㪌㪇 㪋㪇
㪮㪅㩷㪚㪸㫄㪼㫉㫆㫆㫅
㪋㪍
㪥㫀㪾㪼㫉㫀㪸
㪊㪍
㪘㪚㪥㪔㪊㪏
㪥㫀㪾㪼㫉㫀㪸
㪮㪅㩷㪚㪸㫄㪼㫉㫆㫆㫅
㪚㪸㫄㪼㫉㫆㫆㫅
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪋㪇
㪘㪚㪥㪔㪋㪇
㪘㪚㪥㪔㪋㪋
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪊㪏
㪟 㪠 㪘㪾㪄 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㪥㪦㪩㫊 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪋㪉
㩿㪋㪏㪀
㩿㪍㪋㪀
㪞 㪥㪝㪉
㪋㪇
㪋㪏
㪝 㪥㪝㪈
142
㪥㫀㫄㪹㪸㫇㪸㫅㪺㪿㪸㫏 㪥㫆㫋㪿㫆㪹㫉㪸㫅㪺㪿㫀㫌㫊 㪥㫆㫋㪿㫆㪹㫉㪸㫅㪺㪿㫀㫌㫊 㪥㫆㫋㪿㫆㪹㫉㪸㫅㪺㪿㫀㫌㫊 㪥㫆㫋㪿㫆㪹㫉㪸㫅㪺㪿㫀㫌㫊 㪥㫆㫋㪿㫆㪹㫉㪸㫅㪺㪿㫀㫌㫊 㪥㫆㫋㪿㫆㪹㫉㪸㫅㪺㪿㫀㫌㫊 㪥㫆㫋㪿㫆㪹㫉㪸㫅㪺㪿㫀㫌㫊 㪥㫆㫋㪿㫆㪹㫉㪸㫅㪺㪿㫀㫌㫊 㪥㫆㫋㪿㫆㪹㫉㪸㫅㪺㪿㫀㫌㫊 㪥㫆㫋㪿㫆㪹㫉㪸㫅㪺㪿㫀㫌㫊 㪥㫆㫋㪿㫆㪹㫉㪸㫅㪺㪿㫀㫌㫊 㪥㫆㫋㪿㫆㪹㫉㪸㫅㪺㪿㫀㫌㫊 㪥㫆㫋㪿㫆㪹㫉㪸㫅㪺㪿㫀㫌㫊 㪥㫆㫋㪿㫆㪹㫉㪸㫅㪺㪿㫀㫌㫊 㪥㫆㫋㪿㫆㪹㫉㪸㫅㪺㪿㫀㫌㫊 㪥㫆㫋㪿㫆㪹㫉㪸㫅㪺㪿㫀㫌㫊 㪥㫆㫋㪿㫆㪹㫉㪸㫅㪺㪿㫀㫌㫊 㪥㫆㫋㪿㫆㪹㫉㪸㫅㪺㪿㫀㫌㫊 㪥㫆㫋㪿㫆㪹㫉㪸㫅㪺㪿㫀㫌㫊 㪥㫆㫋㪿㫆㪹㫉㪸㫅㪺㪿㫀㫌㫊 㪥㫆㫋㪿㫆㪹㫉㪸㫅㪺㪿㫀㫌㫊 㪥㫆㫋㪿㫆㪹㫉㪸㫅㪺㪿㫀㫌㫊 㪥㫆㫋㪿㫆㪹㫉㪸㫅㪺㪿㫀㫌㫊 㪥㫆㫋㪿㫆㪹㫉㪸㫅㪺㪿㫀㫌㫊 㪥㫆㫋㪿㫆㪹㫉㪸㫅㪺㪿㫀㫌㫊 㪥㫆㫋㪿㫆㪹㫉㪸㫅㪺㪿㫀㫌㫊 㪥㫆㫋㪿㫆㪹㫉㪸㫅㪺㪿㫀㫌㫊 㪥㫆㫋㪿㫆㪹㫉㪸㫅㪺㪿㫀㫌㫊 㪥㫆㫋㪿㫆㪹㫉㪸㫅㪺㪿㫀㫌㫊 㪥㫆㫋㪿㫆㪹㫉㪸㫅㪺㪿㫀㫌㫊 㪥㫆㫋㪿㫆㪹㫉㪸㫅㪺㪿㫀㫌㫊 㪥㫆㫋㪿㫆㪹㫉㪸㫅㪺㪿㫀㫌㫊 㪥㫆㫋㪿㫆㪹㫉㪸㫅㪺㪿㫀㫌㫊 㪥㫆㫋㪿㫆㪹㫉㪸㫅㪺㪿㫀㫌㫊 㪥㫆㫋㪿㫆㪹㫉㪸㫅㪺㪿㫀㫌㫊 㪪㪺㫉㫀㫇㫋㪸㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪪㪺㫉㫀㫇㫋㪸㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅
㫍㫀㫉㫀㪻㫀㫊 㪼㪾㪾㪼㫉㫊㫀 㪼㫃㫆㫅㪾㪸㫋㫌㫊 㪽㫆㪼㫉㫊㪺㪿㫀 㪽㫆㪼㫉㫊㪺㪿㫀 㪽㫌㫉㫑㪼㫉㫀 㪾㫌㪼㫅㫋㪿㪼㫉㫀 㪾㫌㪼㫅㫋㪿㪼㫉㫀 㪾㫌㪼㫅㫋㪿㪼㫉㫀 㪿㪼㫅㪾㫊㫋㫃㪼㫉㫀 㫁㪸㫅㫇㪸㫇㫀 㫁㫌㪹㪹㫀㩷㪺㫐㪸㫅㪼㫌㫊 㫁㫌㪹㪹㫀㩷㫁㫌㪹㪹㫀 㫂㫀㫉㫂㫀 㪺㪽㪅㩷㫂㫀㫉㫂㫀 㫂㫀㫐㪸㫎㪼㫅㫊㫀㫊 㫂㫆㫉㫋㪿㪸㫌㫊㪸㪼 㫂㫌㪿㫅㫋㪸㪼 㫃㫆㫌㫉㪼㫅㫊㫀 㫃㫌㪺㫀㫌㫊 㫄㪸㫂㫆㫅㪻㫆㫉㫌㫄 㫄㪼㫃㪸㫅㫆㫊㫇㫀㫃㫌㫊 㫄㪼㫃㪸㫅㫆㫊㫇㫀㫃㫌㫊 㫄㪼㫃㪸㫅㫆㫊㫇㫀㫃㫌㫊 㫄㫀㪺㫉㫆㫃㪼㫇㫀㫊 㫇㪸㫃㫄㫈㫍㫀㫊㫋㫀 㫇㪸㫃㫄㫈㫍㫀㫊㫋㫀 㫇㪸㫃㫄㫈㫍㫀㫊㫋㫀 㫇㪸㫋㫉㫀㫑㫀㫀 㫇㪸㫋㫉㫀㫑㫀㫀 㫇㫆㫃㫃㫀 㫉㪸㪺㪿㫆㫍㫀㫀 㫉㪸㪺㪿㫆㫍㫀㫀 㫊㫋㪼㫀㫅㪽㫆㫉㫋㫀 㫋㪿㫀㪼㫉㫉㫐㫀 㫋㪿㫀㪼㫉㫉㫐㫀 㪹㪼㫉㫋㪿㫆㫃㪻㫀 㪹㪼㫉㫋㪿㫆㫃㪻㫀
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㪹㫆㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷
㪝㪃㩷㪤
㪤 㪤
㪩㫆㫃㫆㪽㪽㫀㪸
㪝㪃㩷㪤
㪝㪃㩷㪤
㪝㪃㩷㪤
㪝㫌㫅㪻㫌㫃㫆㫊㫆㫄㪸 㩷㪫㪟㪠㪄㪘㪨
㪩㪘㪚㪄㪘㪨 㪪㪫㪠㪄㪘㪨
㪧㪣㪣㪄㪱㪘
㪧㪘㪣㩷㪈㪐㪌㪍㩷㫊㫋㫉㪸㫀㫅 㪧㪘㪣㩷㪈㪐㪌㪎㩷㫊㫋㫉㪸㫀㫅
㪤㪠㪣㪄㪮㪘
㪤㪜㪧㪄㪛㪪
㪋㪉
㪋㪉
㪋㪊
㪋㩷㪤㪆㪪㪤㩷㪂㩷㪊㪐㪘
㪋㪎
㩿㩷㪕㪋㪋㪀
㪋㪎
㩿㪋㪏㪀
㪊㪇
㪊㪇
㪋㪉
㪊㪇
㪊㪇
㩿㪎㪉㪀
㩿㪎㪉㪀
㩿㪎㪉㪀
㪈㪉㩷㪤㪆㪪㪤㩷㪂㩷㪍㪘
㪏㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪉㪘
㪋㪏
㪊㪍
㪈㪏
㪈㪍
㪊㪍
㪊㪍
㪈㪉㩷㪤㪆㪪㪤㩷㪂㩷㪉㪋㩷㪪㪫㪆㪘
㪋㪍
㪊㪍
㩿㪋㪇㪀 㪋㪍
㪋㪇
㩿㪉㪍㪀
㩿㪎㪍㪀
㩿㪎㪍㪀
㪊㪋 㪈㪉㪤㩷㪂㩷㪉㪉㪘
㪋㪤㩷㪂㩷㪊㪉㩷㪪㪫㪆㪘
㪊㪏
㪌㪉
㪌㪍
㪊㪋
㪊㪍
㪉㪋
㪊㪍
㪉㪤㩷㪂㩷㪊㪋㩷㪪㪫㪆㪘
㪈㪋㩷㪤㪆㪪㪤㩷㪂㩷㪉㪋㩷㪪㪫㪆㪘
㪊㪏 㪊㪏
㪈㪏㩷㪤㪆㪪㪤㩷㪂㩷㪉㪇㩷㪪㪫㪆㪘
㪊㪏
㪌㪏
㪊㪍
㪊㪍
㪋㪤㩷㪂㩷㪉㪏㪘
㪊㪏 㪉㪉㩷㪤㪆㪪㪤㩷㪂㩷㪈㪋㩷㪪㪫㪆㪘
㩿㪍㪍㪀
㪊㪍
㪢㪦㪩㪄㪫㪰 㪢㪬㪟㪄㪘㪨 㪣㪦㪩㪄㪘㪨 㪊㪉
㩿㪋㪉㪀
㪉㪏
㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅㩷㫊㪼㫐㫄㫆㫌㫉㫀㩷 㪪㪜㪤㪄㪭㪦
㪊㪍
㩿㪏㪋㪀
㪋㪋 㩿㪌㪉㪀
㩿㪌㪏㪀
㪊㪍 㪊㪇
㩿㪍㪍㪀
㪊㪋
㪉㪤㩷㪂㩷㪉㪍㩷㪪㪫㪆㪘
㩿㪍㪏㪀
㪊㪋
㪋㪋
㪋㪇
㪊㪏
㩿㪎㪇㪀
㪍㩷㪤㪆㪪㪤㩷㪂㩷㪊㪉㩷㪪㪫㪆㪘
㪊㪏
㪋㪇
㪊㪏
㪋㩷㪤㪆㪪㪤㩷㪂㩷㪊㪉㪘
㪊㪍
㪊㪏
㪤
㪉㪤㩷㪂㩷㪈㪪㪤㩷㪂㩷㪊㪉㪘
㪊㪌
㪝
㪋㪍 㩿㪎㪍㪀 㪊㪏
㪊㪏
㪋㪍 㩿㪋㪍㪀
㪉㪤㩷㪂㩷㪊㪋㪘
㪈㪉㩷㪤㪆㪪㪤㩷㪂㩷㪉㪉㪘
㪊㪏 㪊㪍
㪊㪋
㩿㪎㪍㪀
㪌㪇
㪞 㪥㪝㪉
㪊㪏
㪌㪇
㪝 㪥㪝㪈
㩿㪍㪍㪀
㪈㪇㪤㩷㪂㩷㪊㪇㪘
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪊㪍
㪋㪇
㪛 㪉㫅
㪊㪋
㪝㪃㩷㪤
㪚 㪪㪼㫏
㪡㪘㪥㪄㪫㪰 㪚㪰㪥㪄㪮㪘 㪡㪬㪙㪄㪫㪰 㪢㪠㪩㪄㪫㪰 㩹㪢㪠㪩㩹
㪞㪬㪜㪄㪱㪘
㪝㪦㪜㪄㪘㪨 㪝㪬㪩㪄㪫㪰
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅㩷㫍㫀㫉㫀㪻㪼㩷 㪭㪠㪩㪄㪘㪨
㪫㪸㪹㫃㪼㩷㪍㪅㪉㪏㩷㩷㪦㫉㪻㪼㫉㩷㪚㪰㪧㪩㪠㪥㪦㪛㪦㪥㪫㪠㪝㪦㪩㪤㪜㪪㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㪟 㪠 㪘㪾㪄 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㩿㫇㪾㪆㪺㪼㫃㫃㪀 㪥㪦㪩㫊
㪫㪸㫅㫑㪸㫅㫀㪸
㪫㪸㫅㫑㪸㫅㫀㪸
㪢㪼㫅㫐㪸
㪪㪅㩷㪫㪸㫅㫑㪸㫅㫀㪸
㪣㫀㪹㪼㫉㫀㪸
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪉
㪘㪚㪥㪔㪋㪋
㪘㪚㪥㪔㪊㪏
㪘㪚㪥㪔㪋㪉
㪘㪚㪥㪔㪋㪋
㪘㪚㪥㪔㪋㪉
㪘㪚㪥㪔㪋㪉
㪘㪚㪥㪔㪋㪉
㪘㪚㪥㪔㪊㪏
㪘㪚㪥㪔㪋㪉
㪪㫀㪼㫉㫉㪸㩷㪣㪼㫆㫅㪼
㪪㫀㪼㫉㫉㪸㩷㪣㪼㫆㫅㪼
㪞㪿㪸㫅㪸
㪮㪅㩷㪘㪽㫉㫀㪺㪸
㪫㪸㫅㫑㪸㫅㫀㪸
㪤㫆㫑㪸㫄㪹㫀㫈㫌㪼
㪪㫆㫄㪸㫃㫀㪸
㪱㪸㫀㫉㪼
㪪㫆㫄㪸㫃㫀
㪢㪼㫅㫐㪸㪃㩷㪪㫆㫄㪸㫃㫀㪸
㪢㪼㫅㫐㪸㪃㩷㪫㪸㫅㫑㪸㫅㫀㪸
㪢㪼㫅㫐㪸㪃㩷㪫㪸㫅㫑㪸㫅㫀㪸
㪢㪼㫅㫐㪸㪃㩷㪫㪸㫅㫑㪸㫅㫀㪸
㪢㪼㫅㫐㪸㪃㩷㪪㫆㫄㪸㫃㫀㪸
㪫㪸㫅㫑㪸㫅㫀㪸
㪫㪸㫅㫑㪸㫅㫀㪸
㪫㪸㫅㫑㪸㫅㫀㪸
㪫㪸㫅㫑㪸㫅㫀㪸㪃㩷㪤㫆㫑㪸㫄㪹㫀㫈㫌㪼
㪫㪸㫅㫑㪸㫅㫀㪸
㪫㪸㫅㫑㪸㫅㫀㪸
㪤㫆㫑㪸㫄㪹㫀㫈㫌㪼
㪫㪸㫅㫑㪸㫅㫀㪸
㪞㪿㪸㫅㪸
㪤㪸㫃㪸㫎㫀
㪤㪸㫃㪸㫎㫀
㪢㪼㫅㫐㪸
㪢㪼㫅㫐㪸
㪫㪸㫅㫑㪸㫅㫀㪸
㪤㫆㫑㪸㫄㪹㫀㫈㫌㪼
㪱㪸㫅㫑㫀㪹㪸㫉
㪯㪈㪯㪉㪰㪃㩷㪘㪚㪥㪔㪋㪋 㪱㪸㫅㫑㫀㪹㪸㫉
㪩㪿㫆㪻㪼㫊㫀㪸 㪯㪈㪯㪈㪯㪉㪯㪉㪃㩷㪘㪚㪥㪔㪋㪋 㪱㪸㫅㫑㫀㪹㪸㫉
㪘㪚㪥㪔㪋㪉
㪘㪚㪥㪔㪋㪏
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪞㪄㪍㪌
㪪㪄㪈㪌㪏
㪪㪄㪈㪌㪏
㪪㪄㪉㪋
㪪㪄㪈㪌㪏
㪪㪄㪉㪋㪃㩷㪪㪄㪈㪌㪏㪃㩷㪪㪄㪈㪌㪐
㪢㪄㪈㪇㪍㪃㩷㪜㪄㪌
㪪㪄㪈㪌㪏
㪪㪄㪈㪌㪏
㪜㪄㪌
㪪㪄㪉㪋㪃㩷㪪㪄㪈㪌㪏
㪪㪄㪉㪋㪃㩷㪪㪄㪈㪌㪏
㪜㪄㪌
㪪㪄㪈㪌㪏
㪜㪄㪌
㪪㪄㪈㪌㪏
㪮㪄㪊㪌
㪮㪄㪊㪌
㪮㪄㪊㪌
㪪㪄㪈㪌㪏
㪪㪄㪈㪌㪏
㪪㪄㪈㪌㪏
㪪㪄㪈㪌㪏
㪪㪄㪈㪌㪏
㪪㪄㪉㪋㪃㩷㪪㪄㪈㪌㪏
㪪㪄㪈㪌㪏
㪪㪄㪈㪌㪏
㪪㪄㪈㪌㪏
㪮㪄㪊㪌
㪪㪄㪈㪌㪏
㪜㪄㪌
㪪㪄㪈㪌㪏 㪜㪄㪌
㪪㪄㪈㪌㪏
㪜㪄㪌
㪪㪄㪈㪌㪏
㪪㪄㪈㪌㪏
㪪㪄㪈㪌㪏
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
143
㪹㫉㫌㪼㫅㫀㫅㪾㫀 㪹㫉㫌㪼㫅㫀㫅㪾㫀 㪺㪿㪸㫐㫋㫆㫉㫀 㪽㫉㪼㪻㫉㫆㪻㫀 㪾㪼㫉㫐㫀 㪾㪼㫉㫐㫀 㪾㪼㫉㫐㫀 㪾㪼㫉㫐㫀 㪾㫌㫀㪾㫅㪸㫉㪻㫀 㫃㫀㪹㪼㫉㫀㪼㫅㫊㪼 㫃㫀㪹㪼㫉㫀㪼㫅㫊㪼 㫃㫀㪹㪼㫉㫀㪼㫅㫊㪼 㫉㫆㫃㫆㪽㪽㫀 㫉㫆㫃㫆㪽㪽㫀 㫉㫆㫃㫆㪽㪽㫀 㫊㪺㪿㫄㫀㫋㫋㫀
㪘㫇㪿㫐㫆㫃㪼㪹㫀㪸㫊 㪘㫌㫊㫋㫉㫆㪽㫌㫅㪻㫌㫃㫌㫊 㪘㫌㫊㫋㫉㫆㪽㫌㫅㪻㫌㫃㫌㫊 㪘㫌㫊㫋㫉㫆㪽㫌㫅㪻㫌㫃㫌㫊 㪘㫌㫊㫋㫉㫆㫃㪼㪹㫀㪸㫊 㪘㫌㫊㫋㫉㫆㫃㪼㪹㫀㪸㫊 㪘㫌㫊㫋㫉㫆㫃㪼㪹㫀㪸㫊 㪘㫌㫊㫋㫉㫆㫃㪼㪹㫀㪸㫊 㪘㫌㫊㫋㫉㫆㫃㪼㪹㫀㪸㫊 㪘㫌㫊㫋㫉㫆㫃㪼㪹㫀㪸㫊 㪘㫌㫊㫋㫉㫆㫃㪼㪹㫀㪸㫊 㪘㫌㫊㫋㫉㫆㫃㪼㪹㫀㪸㫊 㪘㫌㫊㫋㫉㫆㫃㪼㪹㫀㪸㫊 㪘㫌㫊㫋㫉㫆㫃㪼㪹㫀㪸㫊 㪘㫌㫊㫋㫉㫆㫃㪼㪹㫀㪸㫊 㪘㫌㫊㫋㫉㫆㫃㪼㪹㫀㪸㫊 㪘㫌㫊㫋㫉㫆㫃㪼㪹㫀㪸㫊 㪘㫌㫊㫋㫉㫆㫃㪼㪹㫀㪸㫊 㪘㫌㫊㫋㫉㫆㫃㪼㪹㫀㪸㫊 㪘㫌㫊㫋㫉㫆㫃㪼㪹㫀㪸㫊
㫇㪼㫉㫌㪼㫅㫊㫀㫊 㫃㫀㫄㫅㪸㪼㫌㫊 㫋㫉㪸㫅㫊㫀㫃㫀㫊 㫋㫉㪸㫅㫊㫀㫃㫀㫊 㪸㪻㫃㫆㪽㪽㫀 㪺㪽㪅㩷㪸㪻㫃㫆㪽㪽㫀 㪺㪽㪅㩷㪸㪻㫃㫆㪽㪽㫀 㪺㪽㪅㩷㪸㪻㫃㫆㪽㪽㫀 㪸㪽㪽㫀㫅㫀㫊 㪸㪽㪽㫀㫅㫀㫊 㪸㫃㪼㫏㪸㫅㪻㫉㫀㫀 㪸㫃㪼㫏㪸㫅㪻㫉㫀㫀 㪸㫉㪸㪺㪿㪸㫅 㪸㫉㪸㪺㪿㪸㫅 㪹㪼㫃㫃㫆㫋㫋㫀 㪹㪼㫃㫃㫆㫋㫋㫀 㪹㪼㫃㫃㫆㫋㫋㫀 㪺㪿㪸㫉㫉㫌㪸 㪺㪿㪸㫉㫉㫌㪸 㪺㪿㪸㫉㫉㫌㪸
㪩㫀㫍㫌㫃㫀㪻㪸㪼㩷㩿㪥㪼㫎㩷㪮㫆㫉㫃㪻㩷㫉㫀㫍㫌㫃㫀㫅㪼㫊㪀㩷
㪪㪺㫉㫀㫇㫋㪸㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪪㪺㫉㫀㫇㫋㪸㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪪㪺㫉㫀㫇㫋㪸㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪪㪺㫉㫀㫇㫋㪸㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪪㪺㫉㫀㫇㫋㪸㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪪㪺㫉㫀㫇㫋㪸㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪪㪺㫉㫀㫇㫋㪸㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪪㪺㫉㫀㫇㫋㪸㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪪㪺㫉㫀㫇㫋㪸㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪪㪺㫉㫀㫇㫋㪸㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪪㪺㫉㫀㫇㫋㪸㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪪㪺㫉㫀㫇㫋㪸㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪪㪺㫉㫀㫇㫋㪸㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪪㪺㫉㫀㫇㫋㪸㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪪㪺㫉㫀㫇㫋㪸㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㪪㪺㫉㫀㫇㫋㪸㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㪹㫆㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷
㪚㫐㫅㫆㫃㪼㪹㫀㪸㫊 㪚㫐㫅㫆㫃㪼㪹㫀㪸㫊㩷 㫊㫇㪅 㪚㫐㫅㫆㫃㪼㪹㫀㪸㫊㩷 㫊㫇㪅 㪚㫐㫅㫆㫃㪼㪹㫀㪸㫊 㩷㫊㫇㪅 㪚㫐㫅㫆㫃㪼㪹㫀㪸㫊 㪚㫐㫅㫆㫃㪼㪹㫀㪸㫊 㪚㫐㫅㫆㫃㪼㪹㫀㪸㫊 㪚㫐㫅㫆㫃㪼㪹㫀㪸㫊 㪚㫐㫅㫆㫃㪼㪹㫀㪸㫊㩷㫌㫉㫌㪾㫌㪸㫐㪼㫅㫊㫀㫊 㪚㫐㫅㫆㫃㪼㪹㫀㪸㫊㩷㫌㫉㫌㪾㫌㪸㫐㪼㫅㫊㫀㫊 㪚㫐㫅㫆㫃㪼㪹㫀㪸㫊 㪚㫐㫅㫆㫃㪼㪹㫀㪸㫊 㪚㫐㫅㫆㫃㪼㪹㫀㪸㫊 㪚㫐㫅㫆㫃㪼㪹㫀㪸㫊 㪚㫐㫅㫆㫃㪼㪹㫀㪸㫊 㪚㫐㫅㫆㫃㪼㪹㫀㪸㫊
㪧㫋㪼㫉㫆㫃㪼㪹㫀㪸㫊
㪩㫆㫃㫆㪽㪽㫀㪸 㪩㫆㫃㫆㪽㪽㫀㪸 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㩷㪝㪩㪜㪄㪫㪰 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅 㩷㪞㪜㪩㪄㪘㪨 㪩㫆㫃㫆㪽㪽㫀㪸 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅㩷㪾㫌㫀㫅㪼㪼㫅㫊㪼㩷 㪞㪬㪠㪄㪘㪨 㪩㫆㫃㫆㪽㪽㫀㪸㩷㪾㫌㫀㫅㪼㪼㫅㫊㫀㫊 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅㩷 㪞㪬㪞㪄㪫㪰㩷 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅㩷 㪩㫆㫃㫆㪽㪽㫀㪸㩷㪺㪸㫃㪸㪹㪸㫉㫀㪺㫌㫊 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅㩷㫄㪼㫃㪸㫅㫋㪼㫉㪼㫆㫅㩷 㪤㪜㪣㪄㪘㪨 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅㩷 㪩㪦㪣㪄㪘㪨 㪩㫆㫃㫆㪽㪽㫀㪸 㪩㫆㫃㫆㪽㪽㫀㪸㩷㪺㪸㫃㪻㪸㫃 㪘㫇㪿㫐㫆㫊㪼㫄㫀㫆㫅
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪫㪸㪹㫃㪼㩷㪍㪅㪉㪏㩷㩷㪦㫉㪻㪼㫉㩷㪚㪰㪧㪩㪠㪥㪦㪛㪦㪥㪫㪠㪝㪦㪩㪤㪜㪪㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀
㪉㩷㪤㪆㪪㪤㩷㪂㩷㪋㪍㩷㪪㪫㪆㪘 㪋㩷㪤㪆㪪㪤㩷㪂㩷㪋㪋㩷㪪㪫㪆㪘 㪍㩷㪤㪆㪪㪤㩷㪂㩷㪋㪉㩷㪪㪫㪆㪘
㪋㪏 㪋㪏
㪍㩷㪤㪆㪪㪤㩷㪂㩷㪋㪉㩷㪪㪫㪆㪘
㪋㩷㪤㪆㪪㪤㩷㪂㩷㪋㪋㩷㪪㪫㪆㪘
㪋㪏
㪋㪏
㪋㪏
㪋㪏 㪤
㪉㩷㪤㪆㪪㪤㩷㪂㩷㪋㪍㩷㪪㪫㪆㪘
㪋㪏 㪋㪏
㪋㩷㪤㪆㪪㪤㩷㪂㩷㪋㪋㩷㪪㪫㪆㪘
㪋㪏
㪝㪃㩷㪤
㪤
㪋㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪊㪋㪘
㪋㪏
㪋㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪊㪏㪘
㪉㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪋㪌㪘
㪋㪐
㪝
㪏㩷㪤㪆㪪㪤㩷㪂㩷㪋㪇㩷㪪㪫㪆㪘
㪋㪏
㪝㪃㩷㪤
㪍㩷㪤㪆㪪㪤㩷㪂㩷㪋㪇㩷㪪㪫㪆㪘
㪋㪍 㪉㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪋㪋㪘
㪋㩷㪤㪆㪪㪤㩷㪂㩷㪋㪋㩷㪪㪫㪆㪘
㪋㪏
㪝
㪉㪪㪤㩷㪂㩷㪋㪍㪘
㪋㪏
㪈㪉㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪈㪍㪘
㪋㪏
㪋㪋
㪋㪋
㪝㪃㩷㪤
㪈㪉㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪈㪍㪘
㪌㪋
㪌㪉
㪌㪇
㪌㪋
㪌㪉
㪌㪇
㪌㪉
㪌㪉
㪌㪉
㪌㪊
㪌㪉
㪌㪍
㪌㪉
㪌㪉
㪌㪇
㪎㪉
㪎㪉
㪌㪉
㪍㪉
㪌㪏
㪌㪊
㪌㪉
㩿㪏㪇㪀
㩿㪐㪇㪀
㪉
㪌㪄㪍
㪊
㪊
㪉
㪋
㪋
㪍
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪍
㪞㪄㪈㪋
㪞㪄㪈㪋
㪞㪄㪈㪋
㪞㪄㪈㪌
㪪㪄㪉㪋
㪜㪄㪋
㪜㪄㪋
㪪㪄㪉㪍
㪪㪄㪈㪌㪏
㪞㪄㪐㪊
㪞㪄㪍㪌
㪪㪄㪈㪌㪏
㪪㪄㪈㪌㪏
㪞㪄㪐㪊
㪪㪄㪉㪋
㪪㪄㪈㪌㪏
㪞㪄㪍㪌
㪪㪄㪈㪌㪏
㪞㪄㪍㪌
㪪㪄㪈㪌㪏
㪪㪄㪈㪌㪏
㪞㪄㪍㪌
㪞㪄㪍㪌
㪪㪄㪈㪌㪏
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
㪬㫉㫌㪾㫌㪸㫐
㪬㫉㫌㪾㫌㪸㫐
㪬㫉㫌㪾㫌㪸㫐
㪣㪸㩷㪧㫃㪸㫋㪸
㪘㫉㪾㪼㫅㫋㫀㫅㪸
㪬㫉㫌㪾㫌㪸㫐
㪬㫉㫌㪾㫌㪸㫐
㪬㫉㫌㪾㫌㪸㫐
㪬㫉㫌㪾㫌㪸㫐㩷㩿㪪㪸㫃㫋㫆㪀
㪬㫉㫌㪾㫌㪸㫐㩷㩿㪪㪸㫃㫋㫆㪀
㪞㪄㪈㪎
㪞㪄㪈㪎
㪞㪄㪈㪎
㪪㪄㪉㪋
㪞㪄㪈㪋
㪞㪄㪈㪋
㪞㪄㪐㪉
㪞㪄㪐㪉
㪞㪄㪈㪌
㪞㪄㪈㪌
㪬㫉㫌㪾㫌㪸㫐㩷㩿㪫㪸㪺㫌㪸㫉㪼㫄㪹㫆㪀 㪞㪄㪈㪌
㪬㫉㫌㪾㫌㪸㫐㩷㩿㪫㪸㪺㫌㪸㫉㪼㫄㪹㫆㪀 㪞㪄㪈㪌
㪬㫉㫌㪾㫌㪸㫐
㪬㫉㫌㪾㫌㪸㫐
㪬㫉㫌㪾㫌㪸㫐
㪙㫉㪸㫑㫀㫃㩷㩿㪩㪪㪀
㪭㪼㫅㪼㫑㫌㪼㫃㪸
㪭㪼㫅㪼㫑㫌㪼㫃㪸
㪭㪼㫅㪼㫑㫌㪼㫃㪸
㪬㫇㫇㪼㫉㩷㪘㫄㪸㫑㫆㫅
㪣㫀㪹㪼㫉㫀㪸
㪌㪋㪁
㩿㪘㪽㫉㫀㪺㪸㪀
㪋㪇
㩿㪍㪇㪀
㪋㪉
㪪㫀㪼㫉㫉㪸㩷㪣㪼㫆㫅㪼 㪪㫀㪼㫉㫉㪸㩷㪣㪼㫆㫅㪼
㪋㪋
㪝㪃㩷㪤
㪘㪚㪥㪔㪋㪋
㪉㪤㩷㪂㩷㪋㪇㪘
㪋㪉 㪋㪉
㪋㪋
㪣㫀㪹㪼㫉㫀㪸
㪋㪋
㩿㪘㪽㫉㫀㪺㪸㪀 㪌㪇
㪉㪤㩷㪂㩷㪋㪍㪘
㪣㫀㪹㪼㫉㫀㪸
㪋㪏
㩿㪋㪋㪀
㪋㪋
㪞㫌㫀㫅㪼㪼㪃㩷㪪㫀㪼㫉㫉㪸㩷㪣㪼㫆㫅㪼
㪋㪉㪁 㪌㪇
㪋㪋
㪘㪚㪥㪔㪋㪍
㪮㪅㩷㪞㫌㫀㫅㪼㪸
㪋㪉
㪋㩷㪤㪆㪪㪤㩷㪂㩷㪊㪍㪘
㪋㪏
㪪㫀㪼㫉㫉㪸㩷㪣㪼㫆㫅㪼
㪋㪇
㪋㪍
㪋㪉
㪞㫌㫀㫅㪼㪼㪃㩷㪪㫀㪼㫉㫉㪸㩷㪣㪼㫆㫅㪼
㪪㫀㪼㫉㫉㪸㩷㪣㪼㫆㫅㪼
㪉㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪉㪏㪘
㪊㪏
㪋㪉
㪋㪉
㪋㪇
㪉㪤㩷㪂㩷㪊㪏㪘
㪋㪇
㪋㪉
㪉㪤㩷㪂㩷㪊㪏㪘
㪪㫀㪼㫉㫉㪸㩷㪣㪼㫆㫅㪼
㪪㫀㪼㫉㫉㪸㩷㪣㪼㫆㫅㪼
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪋㪇
㪘㪚㪥㪔㪋㪋
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪪㫀㪼㫉㫉㪸㩷㪣㪼㫆㫅㪼
㪝㪃㩷㪤
㪤
㪤
㪤
㪟 㪠 㪘㪾㪄 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㪥㪦㪩㫊 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪪㫀㪼㫉㫉㪸㩷㪣㪼㫆㫅㪼 㪋㪋
㪺㪸㪅㩷㪋㪋
㪞 㪥㪝㪉
㪉㩷㪤㪆㪪㪤㩷㪂㩷㪋㪇㪘
㪋㪋
㪝 㪥㪝㪈
㪋㪉
㪤
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪋㪉
㪋㪉㪁
㪋㪉
㪛 㪉㫅
㪤
㪤
㪚 㪪㪼㫏
144
㪘㫌㫊㫋㫉㫆㫃㪼㪹㫀㪸㫊 㪘㫌㫊㫋㫉㫆㫃㪼㪹㫀㪸㫊 㪘㫌㫊㫋㫉㫆㫃㪼㪹㫀㪸㫊 㪘㫌㫊㫋㫉㫆㫃㪼㪹㫀㪸㫊 㪘㫌㫊㫋㫉㫆㫃㪼㪹㫀㪸㫊 㪘㫌㫊㫋㫉㫆㫃㪼㪹㫀㪸㫊 㪘㫌㫊㫋㫉㫆㫃㪼㪹㫀㪸㫊 㪘㫌㫊㫋㫉㫆㫃㪼㪹㫀㪸㫊 㪘㫌㫊㫋㫉㫆㫃㪼㪹㫀㪸㫊 㪘㫌㫊㫋㫉㫆㫃㪼㪹㫀㪸㫊 㪘㫌㫊㫋㫉㫆㫃㪼㪹㫀㪸㫊 㪘㫌㫊㫋㫉㫆㫃㪼㪹㫀㪸㫊 㪘㫌㫊㫋㫉㫆㫃㪼㪹㫀㪸㫊 㪘㫌㫊㫋㫉㫆㫃㪼㪹㫀㪸㫊 㪘㫌㫊㫋㫉㫆㫃㪼㪹㫀㪸㫊 㪘㫌㫊㫋㫉㫆㫃㪼㪹㫀㪸㫊 㪚㫐㫅㫆㫇㫆㪼㪺㫀㫃㫌㫊 㪚㫐㫅㫆㫇㫆㪼㪺㫀㫃㫌㫊 㪞㫅㪸㫋㪿㫆㫃㪼㪹㫀㪸㫊 㪢㫉㫐㫇㫋㫆㫃㪼㪹㫀㪸㫊 㪢㫉㫐㫇㫋㫆㫃㪼㪹㫀㪸㫊 㪢㫉㫐㫇㫋㫆㫃㪼㪹㫀㪸㫊 㪢㫉㫐㫇㫋㫆㫃㪼㪹㫀㪸㫊 㪤㪼㪾㪸㫃㪼㪹㫀㪸㫊 㪤㪼㪾㪸㫃㪼㪹㫀㪸㫊 㪤㪼㪾㪸㫃㪼㪹㫀㪸㫊 㪥㪼㫄㪸㫋㫆㫃㪼㪹㫀㪸㫊 㪧㫋㪼㫉㫆㫃㪼㪹㫀㪸㫊 㪧㫋㪼㫉㫆㫃㪼㪹㫀㪸㫊 㪧㫋㪼㫉㫆㫃㪼㪹㫀㪸㫊 㪧㫋㪼㫉㫆㫃㪼㪹㫀㪸㫊 㪩㪸㪺㪿㫆㫍㫀㪸 㪩㪸㪺㪿㫆㫍㫀㪸 㪩㪸㪺㪿㫆㫍㫀㪸 㪩㪸㪺㪿㫆㫍㫀㪸 㪩㪸㪺㪿㫆㫍㫀㪸 㪩㪸㪺㪿㫆㫍㫀㪸 㪩㫀㫍㫌㫃㫌㫊
㪺㪿㪸㫉㫉㫌㪸 㪺㪿㪼㫉㪸㪻㫆㫇㪿㫀㫃㫌㫊 㪺㫀㫅㪼㫉㪼㫌㫊 㪻㫌㫉㪸㫑㫅㪼㫅㫊㫀㫊 㪻㫌㫉㪸㫑㫅㪼㫅㫊㫀㫊 㪾㫐㫄㫅㫆㫍㪼㫅㫋㫉㫀㫊 㫃㫌㫋㪼㫆㪽㫃㪸㫄㫄㫌㫃㪸㫋㫌㫊 㫄㪼㫃㪸㫅㫆㫆㫉㫌㫊 㫅㫀㪾㫉㫀㫇㫀㫅㫅㫀㫊 㫅㫀㪾㫉㫀㫇㫀㫅㫅㫀㫊 㫅㫀㪾㫉㫀㫇㫀㫅㫅㫀㫊 㫅㫀㫆㫅㫀 㫍㪸㫑㪽㪼㫉㫉㪼㫀㫉㪸㫀 㫍㪸㫑㪽㪼㫉㫉㪼㫀㫉㪸㫀 㫍㫀㪸㫉㫀㫌㫊 㫍㫀㪸㫉㫀㫌㫊 㫄㪼㫃㪸㫅㫆㫋㪸㪼㫅㫀㪸 㫄㪼㫃㪸㫅㫆㫋㪸㪼㫅㫀㪸 㫑㫆㫅㪸㫋㫌㫊 㪹㫉㪸㫊㫀㫃㫀㪼㫅㫊㫀㫊 㫄㪸㫉㫄㫆㫉㪸㫋㫌㫊 㫄㪸㫉㫄㫆㫉㪸㫋㫌㫊 㫆㪺㪼㫃㫃㪸㫋㫌㫊 㫇㫉㫆㪾㫅㪸㫋㫌㫊 㫇㫉㫆㪾㫅㪸㫋㫌㫊 㫎㫆㫃㫋㪼㫉㫊㫋㫆㫉㪽㪽㫀 㫎㪿㫀㫋㪼㫀 㪿㫆㫀㪾㫅㪼㫀 㪿㫆㫀㪾㫅㪼㫀 㪿㫆㫀㪾㫅㪼㫀 㫃㫆㫅㪾㫀㫇㫀㫅㫅㫀㫊 㪹㫉㪼㫍㫀㫊 㪿㫌㫄㫄㪼㫃㫀㫅㪺㫂㫀 㫄㪸㪺㫌㫃㫀㫇㫀㫅㫅㫀㫊 㫄㪸㪺㫌㫃㫀㫇㫀㫅㫅㫀㫊 㫇㫐㫉㫆㫇㫌㫅㪺㫋㪸㫋㪸 㫊㫋㪼㫃㫃㫀㪽㪼㫉 㪸㪾㫀㫃㪸㪼
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㪹㫆㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷
㪩㫀㫍㫌㫃㫌㫊
㪧㫋㪼㫉㫆㫃㪼㪹㫀㪸㫊 㫄㪸㪺㫌㫃㫀㫇㫀㫅㫅㪸
㪚㫐㫅㫆㫃㪼㪹㫀㪸㫊 㪧㫋㪼㫉㫆㫃㪼㪹㫀㪸㫊 㪩㫀㫍㫌㫃㫌㫊㩷㪻㫆㫉㫅㫀 㪩㫀㫍㫌㫃㫌㫊 㪩㫀㫍㫌㫃㫌㫊 㪩㫀㫍㫌㫃㫌㫊㩷 㪚㫐㫅㫆㫃㪼㪹㫀㪸㫊 㪚㫐㫅㫆㫃㪼㪹㫀㪸㫊 㪚㫐㫅㫆㫃㪼㪹㫀㪸㫊 㪚㫐㫅㫆㫃㪼㪹㫀㪸㫊
㪚㫐㫅㫆㫃㪼㪹㫀㪸㫊 㪚㫐㫅㫆㫃㪼㪹㫀㪸㫊 㪚㫐㫅㫆㫃㪼㪹㫀㪸㫊 㪚㫐㫅㫆㫃㪼㪹㫀㪸㫊 㪚㫐㫅㫆㫃㪼㪹㫀㪸㫊 㪚㫐㫅㫆㫃㪼㪹㫀㪸㫊 㪚㫐㫅㫆㫃㪼㪹㫀㪸㫊 㪚㫐㫅㫆㫃㪼㪹㫀㪸㫊 㪚㫐㫅㫆㫃㪼㪹㫀㪸㫊 㪚㫐㫅㫆㫃㪼㪹㫀㪸㫊 㪚㫐㫅㫆㫃㪼㪹㫀㪸㫊 㪚㫐㫅㫆㫃㪼㪹㫀㪸㫊 㪚㫐㫅㫆㫃㪼㪹㫀㪸㫊 㪚㫐㫅㫆㫃㪼㪹㫀㪸㫊 㪚㫐㫅㫆㫃㪼㪹㫀㪸㫊 㪚㫐㫅㫆㫃㪼㪹㫀㪸㫊
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪫㪸㪹㫃㪼㩷㪍㪅㪉㪏㩷㩷㪦㫉㪻㪼㫉㩷㪚㪰㪧㪩㪠㪥㪦㪛㪦㪥㪫㪠㪝㪦㪩㪤㪜㪪㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀
㪋㪏 㪊㪋 㪋㪏 㪋㪏 㪋㪏
㪝㪃㩷㪤 㪝㪃㩷㪤 㪝㪃㩷㪤 㪝㪃㩷㪤 㪤
㪊㪍 㪋㪍
㪤 㪤
㪈㪏㪤㩷㪂㩷㪏㪪㪤㩷㪂㩷㪉㪉㪘 㪏㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪈㪋㪪㪫㩷㪂㩷㪉㪇㪘
㪋㪋
㪈㪇㪤㩷㪂㩷㪏㪪㪤㩷㪂㩷㪉㪍㪘
㪉㪇㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪈㪉㪘
㪈㪇㪤㩷㪂㩷㪈㪇㪪㪤㩷㪂㩷㪉㪋㪘
㪈㪉㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪈㪏㪘
㪋㪏
㪋㪋
㪝㪃㩷㪤 㪝㪃㩷㪤
㪋㪋
㪝㪃㩷㪤
㪋㪋
㪋㪋
㪝㪃㩷㪤
㪉㪇 㪋㪋
㪉㪇㪘
㪋㪍
㪝㪃㩷㪤 㪝㪃㩷㪤
㪍㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪊㪍㪘
㪋㪍
㪤
㪍㪤㩷㪂㩷㪊㪪㪤㩷㪂㩷㪊㪎㪘
㪋㪍
㪍㪤㩷㪂㩷㪋㪇㪘
㪋㩷㪤㪆㪪㪤㩷㪂㩷㪋㪉㩷㪪㪫㪆㪘
㪈㪇㩷㪤㪆㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪉㪇㪘
㪈㪉㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪈㪏㪘
㪝
㪋㪍
㪊㪍
㪋㪏 㪝㪃㩷㪤
㪌㪋
㪎㪋
㪍㪉
㪎㪍
㪍㪋
㪎㪇
㪉㪇
㪌㪍
㪌㪌
㪌㪉
㪌㪇
㪋㪍
㪋㪏
㪌㪉
㪌㪋
㪍㪏
㪎㪋
㪍㪉
㪎㪍
㩿㪏㪇㪀
㪍㪋
㪎㪇
㪉㪇
㪌㪍
㪌㪌
㪌㪉
㩿㪐㪉㪀
㪌㪉
㪌㪋
㩿㪌㪋㪀
㩿㪌㪉㪀
㪋㪏
㪋㩷㪤㪆㪪㪤㩷㪂㩷㪋㪍㩷㪪㪫㪆㪘
㪌㪋
㩿㪌㪉㪀
㪋㪏
㪈㪉㩷㪤㪆㪪㪤㩷㪂㩷㪊㪇㪘
㪌㪏
㪌㪇
㪌㪇
㪎㪍
㪏㪇
㪏㪏
㩿㪎㪋㪀
㪍㪉
㪎㪉
㪌㪍
㪍㪉
㪌㪏
㪌㪏
㪍㪋
㪞 㪥㪝㪉
㩿㪎㪇㪀
㪋㪉
㪝㪃㩷㪤
㪈㪋㩷㪤㪆㪪㪤㩷㪂㩷㪊㪇㩷㪪㪫㪆㪘
㪉㩷㪤㪆㪪㪤㩷㪂㩷㪋㪍㩷㪪㪫㪆㪘
㪋㪏
㪌㪉
㪌㪇
㪌㪋
㪌㪋
㪌㪍
㪌㪇
㪌㪇
㪌㪉
㪌㪉
㪌㪉
㪌㪇
㪋㪋
㪌㪍
㪝 㪥㪝㪈
㪋㪏㪁
㪋㪋
㪝㪃㩷㪤
㪋㪋
㪋㪏
㪤
㪉㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪋㪉㪘
㪉㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪉㪋㪪㪫㩷㪂㩷㪈㪍㪘
㪋㪍 㪋㪍
㪉㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪊㪋㪪㪫㩷㪂㩷㪋㪘 㪉㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪊㪇㪪㪫㩷㪂㩷㪈㪉㪘
㪋㪍
㪍㩷㪤㪆㪪㪤㩷㪂㩷㪏㪪㪫㩷㪂㩷㪊㪋㪘
㪏㩷㪤㪆㪪㪤㩷㪂㩷㪋㪇㩷㪪㪫㪆㪘
㪉㪪㪤㩷㪂㩷㪉㪉㪪㪫㩷㪂㩷㪉㪋㪘
㪈㪍㩷㪤㪆㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪈㪉㪘
㪉㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪊㪋㪘
㪉㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪊㪏㪘
㪋㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪊㪏㪘
㪋㪍 㪤
㪝㪃㩷㪤
㪋㪏
㪝㪃㩷㪤
㪋㪏
㪋㪏
㪤
㪋㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪈㪋㪪㪫㩷㪂㩷㪉㪋㪘
㪋㩷㪤㪆㪪㪤㩷㪂㩷㪊㪍㩷㪪㪫㪆㪘
㪋㪋
㪏㩷㪤㪆㪪㪤㩷㪂㩷㪋㪇㩷㪪㪫㪆㪘
㪋㪇
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪋㪏
㪛 㪉㫅
㪝
㪚 㪪㪼㫏
㪋
㪌
㪊
㪉
㪌
㪍
㪉
㪉
㪌㪄㪍
㪉
㪋
㪉
㪊
㪊
㪉
㪋
㪟 㪠 㪘㪾㪄 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㩿㫇㪾㪆㪺㪼㫃㫃㪀 㪥㪦㪩㫊
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪍
㪰㩷㪺㪿㫉㫆㫄㪅
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪿㪼㫉㫄㪸㫇㪿㫉㫆㪻㫀㫋㪼
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪏
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪞㪄㪈㪋
㪞㪄㪈㪌
㪞㪄㪈㪌
㪞㪄㪈㪌
㪞㪄㪈㪍
㪟㪄㪋㪊
㪞㪄㪈㪎
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
㪪㪄㪉㪋
㪞㪄㪈㪋
㪞㪄㪈㪋
㪝㫉㪼㫅㪺㪿㩷㪞㫌㫐㪸㫅㪸
㪭㪼㫅㪼㫑㫌㪼㫃㪸
㪭㪼㫅㪼㫑㫌㪼㫃㪸
㪭㪼㫅㪼㫑㫌㪼㫃㪸
㪭㪼㫅㪼㫑㫌㪼㫃㪸
㪭㪼㫅㪼㫑㫌㪼㫃㪸
㪭㪼㫅㪼㫑㫌㪼㫃㪸
㩿㪣㫆㫎㪼㫉㩷㪘㫄㪸㫑㫆㫅㪀
㪭㪼㫅㪼㫑㫌㪼㫃㪸
㪭㪼㫅㪼㫑㫌㪼㫃㪸
㪭㪼㫅㪼㫑㫌㪼㫃㪸
㪙㫉㪸㫑㫀㫃㩷㩿㪩㪡㪀㩷
㪬㫉㫌㪾㫌㪸㫐
㪬㫉㫌㪾㫌㪸㫐㩷㩿㪩㫆㪺㪿㪸㪀
㪬㫉㫌㪾㫌㪸㫐㩷㩿㪩㫆㪺㪿㪸㪀
㪙㫉㪸㫑㫀㫃
㪘㫄㪼㫉㫀㪺㪸
㪬㪪㪘㩷㩿㪝㪣㪀㪃㩷㪚㫌㪹㪸
㪙㫉㪸㫑㫀㫃㩷㩿㪩㪡㪀㩷
㪭㪼㫅㪼㫑㫌㪼㫃㪸
㪬㫉㫌㪾㫌㪸㫐
㪙㫉㪸㫑㫀㫃
㪬㫉㫌㪾㫌㪸㫐
㪬㫉㫌㪾㫌㪸㫐
㪬㫉㫌㪾㫌㪸㫐㩷㩿㪚㪼㫉㫉㫆㩷㪣㪸㫉㪾㫆㪀
㪬㫉㫌㪾㫌㪸㫐㩷㩿㪚㪼㫉㫉㫆㩷㪣㪸㫉㪾㫆㪀
㪱㪄㪋㪈
㪜㪄㪋
㪜㪄㪋
㪜㪄㪋
㪪㪄㪉㪋
㪜㪄㪋
㪜㪄㪋
㪪㪄㪉㪋㪃㩷㪢㪄㪈㪇㪍
㪜㪄㪋
㪜㪄㪊
㪜㪄㪊
㪪㪄㪉㪋
㪞㪄㪈㪋
㪞㪄㪈㪋
㪞㪄㪈㪋
㪪㪄㪉㪋
㪪㪄㪐㪉
㪪㪄㪉㪋
㪪㪄㪉㪋
㪜㪄㪊
㪞㪄㪈㪋
㪪㪄㪉㪋
㪞㪄㪈㪋
㪞㪄㪈㪋
㪞㪄㪈㪍
㪞㪄㪈㪍
㪬㫉㫌㪾㫌㪸㫐㩷㩿㪫㪸㪺㫌㪸㫉㪼㫄㪹㫆㪀 㪞㪄㪈㪍
㪣㪸㩷㪧㫃㪸㫋㪸
㪬㫉㫌㪾㫌㪸㫐㩷㩿㪘㫉㫋㫀㪾㪸㫊㪀
㪬㫉㫌㪾㫌㪸㫐㩷㩿㪪㪸㫃㫋㫆㪀
㪬㫉㫌㪾㫌㪸㫐㩷㩿㪫㪸㪺㫌㪸㫉㪼㫄㪹㫆㪀 㪞㪄㪈㪍
㪬㫉㫌㪾㫌㪸㫐㩷㩿㪩㫆㪺㪿㪸㪀
㪬㫉㫌㪾㫌㪸㫐㩷㩿㪩㫆㪺㪿㪸㪀
㪬㫉㫌㪾㫌㪸㫐㩷㩿㪛㫌㫉㪸㫑㫅㫆㪀
㪬㫉㫌㪾㫌㪸㫐㩷㩿㪛㫌㫉㪸㫑㫅㫆㪀
㪬㫉㫌㪾㫌㪸㫐㩷㩿㪚㫆㫃㫆㫅㫀㪸㪀
㪬㫉㫌㪾㫌㪸㫐
㪬㫉㫌㪾㫌㪸㫐
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
145
㪺㫐㫃㫀㫅㪻㫉㪸㪺㪼㫌㫊 㪿㪸㫉㫋㫀㫀 㪿㫆㫃㫄㫀㪸㪼 㫄㪸㪾㪻㪸㫃㪼㫅㪸㪼 㫆㫉㫅㪸㫋㫌㫊 㫊㫋㫉㫀㪾㪸㫋㫌㫊 㫌㫉㫆㫇㪿㫋㪿㪸㫃㫄㫌㫊 㫌㫉㫆㫇㪿㫋㪿㪸㫃㫄㫌㫊 㪻㫆㫃㫀㪺㪿㫆㫇㫋㪼㫉㫌㫊
㪻㫆㫎㫀
㪘㫇㪿㪸㫅㫀㫌㫊 㪘㫇㪿㪸㫅㫀㫌㫊 㪘㫇㪿㪸㫅㫀㫌㫊 㪘㫇㪿㪸㫅㫀㫌㫊 㪘㫇㪿㪸㫅㫀㫌㫊 㪘㫇㪿㪸㫅㫀㫌㫊 㪘㫇㪿㪸㫅㫀㫌㫊 㪘㫇㪿㪸㫅㫀㫌㫊 㪚㫐㫇㫉㫀㫅㫆㪻㫆㫅 㪚㫐㫇㫉㫀㫅㫆㪻㫆㫅 㪚㫐㫇㫉㫀㫅㫆㪻㫆㫅 㪚㫐㫇㫉㫀㫅㫆㪻㫆㫅 㪚㫐㫇㫉㫀㫅㫆㪻㫆㫅 㪚㫐㫇㫉㫀㫅㫆㪻㫆㫅 㪚㫐㫇㫉㫀㫅㫆㪻㫆㫅 㪚㫐㫇㫉㫀㫅㫆㪻㫆㫅 㪚㫐㫇㫉㫀㫅㫆㪻㫆㫅 㪚㫐㫇㫉㫀㫅㫆㪻㫆㫅 㪚㫐㫇㫉㫀㫅㫆㪻㫆㫅 㪚㫐㫇㫉㫀㫅㫆㪻㫆㫅 㪚㫐㫇㫉㫀㫅㫆㪻㫆㫅 㪚㫐㫇㫉㫀㫅㫆㪻㫆㫅
㪸㫊㫈㫌㪸㫄㪸㫋㫌㫊 㪻㫀㫊㫇㪸㫉 㪽㪸㫊㪺㫀㪸㫋㫌㫊 㫀㪹㪼㫉㫌㫊 㫄㪼㫅㫋㫆 㫇㪼㫉㫊㫀㪺㫌㫊 㫊㫆㫇㪿㫀㪸㪼 㫊㫆㫇㪿㫀㪸㪼 㪸㫃㫍㪸㫉㪼㫑㫀 㪸㫋㫉㫆㫉㫌㫊 㪹㪼㫃㫋㫉㪸㫅㫀 㪹㫀㪽㪸㫊㪺㫀㪸㫋㫌㫊 㪹㫆㫍㫀㫅㫌㫊 㪻㪼㪸㫉㪹㫆㫉㫅㫀 㪼㫃㪼㪾㪸㫅㫊 㪼㫏㫀㫄㫀㫌㫊 㪽㫆㫅㫋㫀㫅㪸㫃㫀㫊 㪿㫌㪹㪹㫊㫀 㫄㪸㪺㫌㫃㪸㫉㫀㫌㫊 㫄㪸㪺㫌㫃㪸㫉㫀㫌㫊 㫅㪼㫍㪸㪻㪼㫅㫊㫀㫊㩷㪸㫄㪸㫉㪾㫆㫊㪸㪼 㫇㪼㪺㫆㫊㪼㫅㫊㫀㫊
㪚㫐㫇㫉㫀㫅㫆㪻㫆㫅㫋㫀㪻㪸㪼㩷㩿㫇㫌㫇㪽㫀㫊㪿㪼㫊㪀 㩷㩷㪚㫐㫇㫉㫀㫅㫆㪻㫆㫅㫋㫀㫅㪸㪼
㪘㫅㪸㪹㫃㪼㫇㫊
㪪㫌㪹㫆㫉㪻㪼㫉㩷㪚㫐㫇㫉㫀㫅㫆㪻㫆㫅㫋㫆㫀㪻㪼㫀 㪘㫅㪸㪹㫃㪼㫇㫀㪻㪸㪼
㪩㫀㫍㫌㫃㫌㫊 㪩㫀㫍㫌㫃㫌㫊 㪩㫀㫍㫌㫃㫌㫊 㪩㫀㫍㫌㫃㫌㫊 㪩㫀㫍㫌㫃㫌㫊 㪩㫀㫍㫌㫃㫌㫊 㪩㫀㫍㫌㫃㫌㫊 㪩㫀㫍㫌㫃㫌㫊 㪫㪼㫉㫉㪸㫅㪸㫋㫆㫊
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㪹㫆㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷
㪺㫐㫇㫉㫀㫊
㪢㫆㫊㫊㫎㫀㪾㫀㪺㪿㫋㪿㫐㫊
㪘㫌㫊㫋㫉㫆㪽㫌㫅㪻㫌㫃㫌㫊
㫄㫀㫃㪼㫊㫀
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪫㪸㪹㫃㪼㩷㪍㪅㪉㪏㩷㩷㪦㫉㪻㪼㫉㩷㪚㪰㪧㪩㪠㪥㪦㪛㪦㪥㪫㪠㪝㪦㪩㪤㪜㪪㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀
㪉㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪊㪉㪪㪫 㪉㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪋㪇㪘
㪋㪏 㪋㪏 㪋㪏 㪋㪏 㪋㪏 㪋㪏
㪝㪃㩷㪤 㪝㪃㩷㪤 㪝㪃㩷㪤 㪝㪃㩷㪤 㪝㪃㩷㪤
㪝㪃㩷㪤
㪉㪤㩷㪂㩷㪋㪍㪘
㪋㪏
㪉㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪊㪉㪪㪫
㪉㪤㪆㪪㪤㩷㪂㩷㪋㪍㩷㪪㪫㪆㪘
㪋㪏 㪋㪏
㪉㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪊㪉㪪㪫 㪉㪤㩷㪂㩷㪋㪍㪘
㪋㪏 㪋㪏
㪉㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪊㪉㪪㪫
㪉㪤㩷㪂㩷㪈㪇㪪㪤㩷㪂㩷㪊㪍㩷㪪㪫㪆㪘
㪉㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪊㪉㪪㪫
㪉㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪊㪉㪪㪫
㪉㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪊㪉㪪㪫
㪋㪏
㪝㪃㩷㪤
㪉㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪊㪉㪪㪫
㪋㪏
㪝㪃㩷㪤
㪍㪋
㪌㪇
㪌㪇
㪌㪇
㪍㪋
㪌㪇
㪍㪋
㪍㪋
㪍㪇
㪍㪋
㪍㪋
㪍㪋
㪍㪋
㪐㪍
㪌㪇
㪌㪇
㪐㪍
㪌㪍
㪐㪍
㪐㪍
㪐㪍
㪐㪍
㪐㪍
㪐㪍
㪐㪍
㪉
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪯㪈㪯㪈
㪘㪚㪥㪔㪋㪏
㪬㪪㪘㩷㩿㪫㪯㪀
㪬㪪㪘㩷㩿㪛㪼㪸㫋㪿㩷㪭㪸㫃㫃㪼㫐㪀
㪬㪪㪘㩷㩿㪚㪘㪀
㪬㪪㪘㩷㩿㪛㪼㪸㫋㪿㩷㪭㪸㫃㫃㪼㫐㪀
㪬㪪㪘㩷㩿㪝㪣㪀
㪤㪼㫏㫀㪺㫆
㪬㪪㪘㩷㩿㪫㪯㪀
㪬㪪㪘㩷㩿㪫㪯㪀
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
㪪㪄㪈㪇㪏
㪪㪄㪈㪇㪏
㪪㪄㪈㪇㪏
㪪㪄㪈㪇㪏
㪢㪄㪐 㪟㪄㪈
㪜㪄㪈㪉
㪜㪄㪈㪉
㪢㪄㪐
㪢㪄㪐
㪭㪄㪍㪐
㪢㪄㪐
㪢㪄㪐
㪤㪄㪍㪐
㪪㪄㪉㪋
㪟㪄㪈㪊
㪪㪄㪉㪋
㪪㪄㪉㪋
㪪㪄㪉㪋
㪪㪄㪉㪋
㪪㪄㪉㪋
㪪㪄㪉㪋
㪪㪄㪉㪋
㪪㪄㪈㪇㪏
㪫㪄㪍㪉
㪫㪄㪌㪍
㪫㪄㪍㪉
㪪㪄㪈㪇㪏
㪪㪄㪈㪍㪇
㪪㪄㪈㪇㪏
㪪㪄㪈㪇㪏
㪭㪼㫅㪼㫑㫌㪼㫃㪸㩷㩿㪤㪸㫉㪾㪸㫉㫀㫋㪸㩷㪠㫊㪅㪀 㪥㪄㪍㪈
㪬㪪㪘㩷㩿㪫㪯㪀
㪤㪼㫏㫀㪺㫆
㪤㪼㫏㫀㪺㫆
㪤㪼㫏㫀㪺㫆
㪠㫉㪸㫅 㪤㪼㫏㫀㪺㫆
㪠㫉㪸㫅㩷㩿㪝㪸㫉㫊㪀
㪠㫉㪸㫅㩷㩿㪝㪸㫉㫊㪀
㪎㪍
㪉㪏㪪㪤㩷㪂㩷㪉㪇㪪㪫
㪋㪏
㪎㪇
㪉㪉㪪㪤㩷㪂㩷㪉㪍㪪㪫
㪋㪏
㪪㫇㪸㫀㫅
㪠㫋㪸㫃㫐㩷㩿㪪㫀㪺㫀㫃㫐㪀 㪠㫉㪸㫈㪃㩷㪫㫌㫉㫂㪼㫐
㪝
㪝㪃㩷㪤
㪐㪍
㪘㪚㪥㪔㪋㪏
㪋㪏
㪋㪏㪁
㪋㪏
㪤㫀㪻㪻㫃㪼㩷㪜㪸㫊㫋
㪤㪼㫏㫀㪺㫆㩷㩿㪫㪼㪿㫌㪸㫅㫋㪼㫇㪼㪺㪀
㪭㪼㫅㪼㫑㫌㪼㫃㪸
㩿㪪㪅㩷㪘㫄㪼㫉㫀㪺㪸㪀
㪣㫆㫎㪼㫉㩷㪘㫄㪸㫑㫆㫅
㪘㫄㪸㫑㫆㫅
㪣㫆㫎㪼㫉㩷㪘㫄㪸㫑㫆㫅
㪚㫆㫃㫆㫄㪹㫀㪸
㪪㪅㩷㪘㫄㪼㫉㫀㪺㪸
㪪㪅㩷㪘㫄㪼㫉㫀㪺㪸
㪚㫌㪹㪸
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪫㫌㫉㫂㪼㫐 㪈㪄㪏
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪏
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪋㪏㪁
㪊㪅㪇㩷㪙㪝㪘
㪟 㪠 㪘㪾㪄 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㪥㪦㪩㫊 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪋㪏㪁
㪋㪍
㪋㪋
㪋㪏
㩿㪏㪍㪀
㪋㪍
㪋㪏㩷㪪㪫㪆㪘
㩿㪏㪏㪀
㪋㪍
㩿㪌㪋㪀
㩿㪍㪍㪀
㪋㪇
㪋㪋
㩿㪐㪉㪀
㩿㪎㪉㪀
㪋㪋 㪋㪍
㩿㪌㪏㪀
㪞 㪥㪝㪉
㩿㪌㪍㪀
㪋㪍
㪝 㪥㪝㪈
㪋㪏
㪋㪍㩷㪪㪫㪆㪘
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪋㪋
㪛 㪉㫅
㪋㪏㪁 㪋㪏
㪝㪃㩷㪤
㪝㪃㩷㪤
㪚 㪪㪼㫏
146
㫉㪸㪻㫀㫆㫊㫌㫊 㫉㫌㪹㫉㫆㪽㫃㫌㫍㫀㪸㫋㫀㫃㫀㫊 㫊㪸㫃㫀㫅㫌㫊 㫋㫌㫃㪸㫉㫆㫊㪸 㫍㪸㫉㫀㪼㪾㪸㫋㫌㫊 㫍㪸㫉㫀㪼㪾㪸㫋㫌㫊 㫇㫌㫃㪺㪿㫉㪸 㫇㫌㫃㪺㪿㫉㪸 㪽㫃㫆㫉㫀㪻㪸㪼 㪸㫇㫆㫉㫌㫊 㪸㫇㫆㫉㫌㫊 㪸㪾㪸㫊㫊㫀㫀 㪸㫊㪺㫆㫋㪸㫅㪼㫅㫊㫀㫊 㪺㪿㫌㫅㪾㪸㫉㪼㫅㫊㫀㫊 㫃㪸㫌㪺㪸㪼㫅㫊㫀㫊 㫃㪸㫌㪺㪸㪼㫅㫊㫀㫊 㫃㫌㫋㪼㫌㫊 㫇㪸㫉㫀㫅㪸㪺㫆㫋㪼㫅㫊㫀㫊 㫇㫀㪸㪺㫆㫋㪼㫅㫊㫀㫊
㪘㪻㫀㫅㫀㪸 㪘㪻㫀㫅㫀㪸 㪝㫌㫅㪻㫌㫃㫌㫊 㪝㫌㫅㪻㫌㫃㫌㫊 㪝㫌㫅㪻㫌㫃㫌㫊 㪝㫌㫅㪻㫌㫃㫌㫊 㪝㫌㫅㪻㫌㫃㫌㫊 㪝㫌㫅㪻㫌㫃㫌㫊 㪝㫌㫅㪻㫌㫃㫌㫊 㪝㫌㫅㪻㫌㫃㫌㫊 㪝㫌㫅㪻㫌㫃㫌㫊 㪝㫌㫅㪻㫌㫃㫌㫊 㪝㫌㫅㪻㫌㫃㫌㫊 㪝㫌㫅㪻㫌㫃㫌㫊 㪝㫌㫅㪻㫌㫃㫌㫊 㪝㫌㫅㪻㫌㫃㫌㫊 㪝㫌㫅㪻㫌㫃㫌㫊
㫏㪼㫅㫀㪺㪸 㫏㪼㫅㫀㪺㪸 㪺㪸㫋㪼㫅㪸㫋㫌㫊 㪺㪿㫉㫐㫊㫆㫋㫌㫊 㪺㫀㫅㪾㫌㫃㪸㫋㫌㫊 㪺㫆㫅㪽㫃㫌㪼㫅㫋㫌㫊 㪻㫀㪸㫇㪿㪸㫅㫌㫊 㪻㫀㪸㫇㪿㪸㫅㫌㫊 㪻㫀㪸㫇㪿㪸㫅㫌㫊 㪾㫉㪸㫅㪻㫀㫊 㪾㫉㪸㫅㪻㫀㫊 㪿㪼㫋㪼㫉㫆㪺㫃㫀㫋㫌㫊 㪿㪼㫋㪼㫉㫆㪺㫃㫀㫋㫌㫊 㪿㪼㫋㪼㫉㫆㪺㫃㫀㫋㫌㫊 㫂㪸㫅㫊㪸㪼 㫃㫀㫅㪼㫆㫃㪸㫋㫌㫊 㫃㫌㪺㫀㪸㪼
㪝㫌㫅㪻㫌㫃㫀㪻㪸㪼㩷㩿㫋㫆㫇㫄㫀㫅㫅㫆㫎㫊㩷㪸㫅㪻㩷㫂㫀㫃㫃㫀㪽㫀㫊㪿㪼㫊㪀㩷
㪚㫐㫇㫉㫀㫅㫆㪻㫆㫅 㪚㫐㫇㫉㫀㫅㫆㪻㫆㫅 㪚㫐㫇㫉㫀㫅㫆㪻㫆㫅 㪚㫐㫇㫉㫀㫅㫆㪻㫆㫅 㪚㫐㫇㫉㫀㫅㫆㪻㫆㫅 㪚㫐㫇㫉㫀㫅㫆㪻㫆㫅 㪞㪸㫉㫄㪸㫅㪼㫃㫃㪸 㪞㪸㫉㫄㪸㫅㪼㫃㫃㪸 㪡㫆㫉㪻㪸㫅㪼㫃㫃㪸 㪤㪼㪾㫌㫇㫊㫀㫃㫆㫅 㪤㪼㪾㫌㫇㫊㫀㫃㫆㫅 㪦㫉㪼㫊㫋㫀㪸㫊 㪦㫉㪼㫊㫋㫀㪸㫊 㪦㫉㪼㫊㫋㫀㪸㫊 㪦㫉㪼㫊㫋㫀㪸㫊 㪦㫉㪼㫊㫋㫀㪸㫊 㪦㫉㪼㫊㫋㫀㪸㫊 㪦㫉㪼㫊㫋㫀㪸㫊 㪦㫉㪼㫊㫋㫀㪸㫊
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㪹㫆㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷
㪭㪸㫃㪼㫅㪺㫀㪸㩷㫃㫆㫑㪸㫅㫆㫀
㫄㫌㫃㫋㫀㪽㪸㫊㪺㫀㪸㫋㫌㫊
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪫㪸㪹㫃㪼㩷㪍㪅㪉㪏㩷㩷㪦㫉㪻㪼㫉㩷㪚㪰㪧㪩㪠㪥㪦㪛㪦㪥㪫㪠㪝㪦㪩㪤㪜㪪㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀
㪌㪇 㪌㪇 㪌㪈 㪋㪏㪁 㪋㪏
㪝㪃㩷㪤 㪝 㪤
㪊㪉
㪋㪏㩷㪪㪫㪆㪘
㪋㪏 㪝㪃㩷㪤
㪉㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪊㪍㪘 㪋㪏㪘 㪉㪤㩷㪂㩷㪋㪋㩷㪪㪫㪆㪘 㪈㪍㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪈㪉㩷㪪㪫㪆㪘
㪋㪏 㪋㪍 㪊㪉
㪋㪏㩷㪪㪫㪆㪘 㪋㪏
㪋㪏
㪉㪪㪤㩷㪂㩷㪋㪍㩷㪪㪫㪆㪘
㪋㪏 㪤
㪋㪪㪫㩷㪂㩷㪋㪋㪘
㪋㪏
㪝㪃㩷㪤
㪋㪪㪤㩷㪂㩷㪋㪋㪘 㪉㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪋㪋㪘
㪋㪏 㪋㪏
㪝
㪋㪪㪤㩷㪂㩷㪋㪋㪘
㪋㪏
㪌㪉
㪋㪏
㪋㪏
㪌㪇
㪋㪏
㪋㪏
㪌㪇
㪋㪏
㪌㪉
㪌㪉
㪌㪉
㪋㪏
㪋㪏
㪍㪇
㪌㪉
㪌㪉
㪌㪉
㪌㪉
㪉
㪉
㪉
㪉
㪋
㪉
㪉
㪉
㩿㪉㪅㪎㩷㪝㪚㪤㪃㩷㪉㪅㪍㩷㪝㪠㪘㪀
㪋㪏㩷㪪㪫㪆㪘
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪋㪏
㪉
㪉㪤㩷㪂㩷㪋㪋㩷㪪㪫㪆㪘
㪋㪍
㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏 㪘㪚㪥㪔㪋㪏 㪋㪏
㪍㪋
㩿㪍㪋㪀
㪉㪙㪃㩷㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪌㪙㪃㩷㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪈㪋㪤㩷㪂㩷㪉㪇㩷㪪㪫㪆㪘
㪌㪋
㪍㪍
㪍㪋
㪎㪋
㪌㪏
㪘㪚㪥㪔㪋㪏
㪯㪈㪯㪉㪰㪃㩷㪘㪚㪥㪔㪋㪏
㪋㪍
㪈㪍㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪈㪇㪪㪫
㪌㪋
㪌㪋
㪌㪋
㪌㪋
㪍㪏
㪰㫌㪺㪸㫋㪸㫅㩷㪧㪼㫅㫀㫅㫊㫌㫃㪸
㪬㪪㪘㩷㩿㪚㪫㪀
㪬㪪㪘㩷㩿㪝㪣㪀
㪬㪪㪘㩷㩿㪤㪦㪀
㪪㪅㩷㪮㪅㩷㪪㫇㪸㫀㫅
㪬㪪㪘㩷㩿㪤㪜㪀
㪬㪪㪘㩷㩿㪚㪫㪀
㪬㪪㪘㩷㩿㪝㪣㪀
㪬㪪㪘㩷㩿㪣㪘㪀
㪬㪪㪘㩷㩿㪚㪫㪃㩷㪥㪰㪀
㪬㪪㪘㩷㩿㪚㪫㪃㩷㪥㪰㪀
㪬㪪㪘㩷㩿㪚㪫㪀
㪬㪪㪘㩷㩿㪝㪣㪀
㪬㪪㪘㩷㩿㪝㪣㪀
㪬㪪㪘㩷㩿㪝㪣㪀
㪬㪪㪘
㪬㪪㪘㩷㩿㪣㪘㪀
㪬㪪㪘㩷㩿㪫㪯㪀
㪚㪿㫀㫃㪼㩷㩿㩷㪘㫃㫋㫀㫇㫃㪸㫅㫆㪀
㪚㪿㫀㫃㪼
㪚㪿㫀㫃㪼㩷㩿㪘㫃㫋㫀㫇㫃㪸㫅㫆㪀
㪚㪿㫀㫃㪼㩷㩿㪘㫃㫋㫀㫇㫃㪸㫅㫆㪀
㪚㪿㫀㫃㪼㩷㩿㪘㫃㫋㫀㫇㫃㪸㫅㫆㪀
㪤㪼㫏㫀㪺㫆㩷㩿㪥㫌㪼㫍㫆㩷㪣㪼㫆㫅㪀
㪤㪼㫏㫀㪺㫆 㪯㪈㪯㪈㪯㪉㪯㪉㪃㩷㪘㪚㪥㪔㪋㪏 㪤㪼㫏㫀㪺㫆㩷㩿㪥㫌㪼㫍㫆㩷㪣㪼㫆㫅㪀
㪯㪈㪯㪉㪰㪃㩷㪘㪚㪥㪔㪋㪏
㪊㪋
㪊㪉
㪤
㪝㪃㩷㪤
㪝㪃㩷㪤
㪉㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪈㪉㪪㪫㩷㪂㩷㪊㪋㪘
㪉㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪊㪉㪘
㪉㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪉㪇㪪㪫㩷㪂㩷㪉㪍㪘
㪉㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪊㪏㪘
㪌㪋
㪌㪍
㪌㪇 㪌㪍
㪌㪇
㪊㪅㪇㩷㪝㪚㪤
㪋㪏
㪝㪃㩷㪤
㪋
㪚㪿㫀㫃㪼㩷㩿㪘㫃㫋㫀㫇㫃㪸㫅㫆㪀
㪋㪏
㪌㪇
㪧㪼㫉㫌㩷㩿㪣㪸㫂㪼㩷㪫㫀㫋㫀㪺㪸㪺㪸㪀
㪊㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪊㪏㩷㪪㪫㪆㪘
㪋㪎
㪤 㪝㪃㩷㪤
㪝㪃㩷㪤
㪚㪿㫀㫃㪼
㪉㪤㩷㪂㩷㪋㪍㩷㪪㪫㪆㪘 㪉㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪋㪇㩷㪪㪫㪆㪘 㪉㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪈㪋㪪㪫㩷㪂㩷㪉㪏㪘
㪊㩷㪤㪆㪪㪤㩷㪂㩷㪋㪋㩷㪪㪫㪆㪘
㪘㪚㪥㪔㪋㪏 㪬㪪㪘㩷㩿㪫㪯㪃㩷㪝㪣㪀㪃㩷㪤㪼㫏㫀㪺㫆 㪯㪈㪯㪈㪯㪉㪯㪉㪃㩷㪘㪚㪥㪔㪋㪏 㪰㫌㪺㪸㫋㪸㫅㩷㪧㪼㫅㫀㫅㫊㫌㫃㪸
㪋㪏 㪋㪏
㪐㪍
㪋㪎
㪍㪋 㪌㪇
㪬㪪㪘㩷㩿㪣㪘㪀
㪬㪪㪘㩷㩿㪥㪤㪀
㪤
㪘㪚㪥㪔㪋㪏
㪬㪪㪘㩷㩿㪛㪼㪸㫋㪿㩷㪭㪸㫃㫃㪼㫐㪀
㪬㪪㪘㩷㩿㪦㪢㪀
㪬㪪㪘㩷㩿㪛㪼㪸㫋㪿㩷㪭㪸㫃㫃㪼㫐㪀
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪝㪃㩷㪤 㪝
㩿㪊㪅㪉㩷㪙㪝㪘㪀
㪘㪚㪥㪔㪋㪏
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪉㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪊㪉㪪㪫 㪉㪤㩷㪂㩷㪋㪍㩷㪪㪫㪆㪘
㪐㪍
㪐㪍
㪌㪇
㪟 㪠 㪘㪾㪄 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㪥㪦㪩㫊 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪋㪏 㪋㪏
㪍㪋
㪍㪋
㪌㪇
㪐㪍
㪌㪇
㪞 㪥㪝㪉
㪝㪃㩷㪤 㪝
㪉㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪊㪉㪪㪫
㪋㪏 㪉㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪊㪉㪪㪫
㪉㪤㩷㪂㩷㪋㪍㪘
㪋㪏
㪍㪋
㪌㪇
㪝 㪥㪝㪈
㪋㪏
㪉㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪊㪉㪪㪫
㪉㪤㩷㪂㩷㪋㪍㪘
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪋㪏
㪋㪏
㪛 㪉㫅
㪝㪃㩷㪤
㪝㪃㩷㪤
㪚 㪪㪼㫏
㪚㪄㪌㪉
㪚㪄㪌㪉
㪚㪄㪌㪉
㪙㪄㪉㪎
㪢㪄㪐㪐
㪚㪄㪋㪐㪃㩷㪚㪄㩷㪌㪉㪃㩷㪞㪄㪏㪌㪃㩷㪟㪄㪋㪇
㪚㪄㪌㪉
㪪㪄㪌㪐㩷
㪚㪄㪋㪐㪃㩷㪟㪄㪉㪎
㪚㪄㪋㪐㪃㩷㪟㪄㪉㪎
㪚㪄㪌㪉㪃㩷㪘㪄㪏㪎㪃㩷㪞㪄㪏㪌
㪚㪄㪌㪉
㪚㪄㪌㪉
㪚㪄㪌㪉
㪚㪄㪌㪉
㪪㪄㪌㪐㩷
㪪㪄㪉㪋
㪭㪄㪎㪍㪃㩷㪭㪄㪈㪈㪈
㪭㪄㪎㪍㪃㩷㪭㪄㪈㪈㪈
㪣㪄㪎㪋
㪭㪄㪎㪍㩷
㪭㪄㪎㪍㩷
㪭㪄㪎㪍㪃㩷㪭㪄㪈㪈㪈
㪭㪄㪎㪍㪃㩷㪭㪄㪈㪈㪈
㪣㪄㪎㪋㪃㩷㪭㪄㪎㪍㪃㩷㪭㪄㪈㪈㪈
㪤㪄㪍㪏㪃㩷㪟㪄㪈
㪣㪄㪉㪍 㪤㪄㪍㪏㪃㩷㪟㪄㪈
㪣㪄㪉㪍
㪪㪄㪈㪇㪏 㪣㪄㪉㪍
㪪㪄㪌㪐㪃㩷㪟㪄㪈㪊
㪤㪄㪈㪌㪇
㪫㪄㪍㪉
㪪㪄㪈㪇㪏
㪫㪄㪍㪉
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
147
㪘㫃㫃㫆㪻㫆㫅㫋㫀㪺㪿㫋㪿㫐㫊 㪘㫃㫃㫆㪻㫆㫅㫋㫀㪺㪿㫋㪿㫐㫊 㪘㫃㫃㫆㪻㫆㫅㫋㫀㪺㪿㫋㪿㫐㫊 㪘㫃㫃㫆㪻㫆㫅㫋㫀㪺㪿㫋㪿㫐㫊 㪘㫃㫃㫆㪻㫆㫅㫋㫀㪺㪿㫋㪿㫐㫊 㪘㫃㫃㫆㫆㫇㪿㫆㫉㫌㫊 㪘㫃㫃㫆㫋㫆㪺㪸 㪘㫃㫃㫆㫋㫆㪺㪸 㪘㫃㫃㫆㫋㫆㪺㪸 㪘㫃㫃㫆㫋㫆㪺㪸 㪘㫃㫃㫆㫋㫆㪺㪸 㪘㫃㫃㫆㫋㫆㪺㪸 㪘㫃㫃㫆㫋㫆㪺㪸 㪘㫄㪼㪺㪸
㪞㫆㫆㪻㪼㫀㪻㪸㪼 㪞㫆㫆㪻㪼㫀㫅㪸㪼
㪝㫌㫅㪻㫌㫃㫌㫊 㪝㫌㫅㪻㫌㫃㫌㫊 㪝㫌㫅㪻㫌㫃㫌㫊 㪝㫌㫅㪻㫌㫃㫌㫊 㪝㫌㫅㪻㫌㫃㫌㫊 㪝㫌㫅㪻㫌㫃㫌㫊 㪝㫌㫅㪻㫌㫃㫌㫊 㪝㫌㫅㪻㫌㫃㫌㫊 㪝㫌㫅㪻㫌㫃㫌㫊 㪝㫌㫅㪻㫌㫃㫌㫊 㪝㫌㫅㪻㫌㫃㫌㫊 㪝㫌㫅㪻㫌㫃㫌㫊 㪝㫌㫅㪻㫌㫃㫌㫊 㪝㫌㫅㪻㫌㫃㫌㫊 㪝㫌㫅㪻㫌㫃㫌㫊 㪝㫌㫅㪻㫌㫃㫌㫊 㪝㫌㫅㪻㫌㫃㫌㫊 㪝㫌㫅㪻㫌㫃㫌㫊 㪝㫌㫅㪻㫌㫃㫌㫊 㪝㫌㫅㪻㫌㫃㫌㫊 㪝㫌㫅㪻㫌㫃㫌㫊 㪋㪏㩷㪪㪫㪆㪘 㪉㪪㪤㩷㪂㩷㪋㪍㩷㪪㪫㪆㪘 㪋㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪊㪏㩷㪪㪫㪆㪘 㪋㪏㪘
㪋㪏 㪋㪏 㪋㪏 㪋㪏 㪋㪋 㪋㪏
㪤
㪉㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪋㪋㩷㪪㪫㪆㪘
㪋㪏 㪋㪏 㪊㪇
㫊㫇㪅
㫉㫆㪹㫌㫊㫋㫌㫊 㪺㪸㫋㪸㫉㫀㫅㪸㪼 㪻㫀㪸㫑㫀 㪻㫌㪾㪼㫊㫀 㪻㫌㪾㪼㫊㫀 㪾㫆㫊㫃㫀㫅㪼㫀 㫄㪸㪺㫌㫃㪸㫋㪸 㫄㪼㪼㫂㫀 㫊㫇㫃㪼㫅㪻㪼㫅㫊 㪥㪼㫆㫆㫇㪿㫆㫉㫌㫊
㪉㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪋㪋㩷㪪㪫㪆㪘
㪋㪏
㪝㪃㩷㪤
㪉㪍
㪋㪍
㪉㪉㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪉㪘
㪉㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪊㪏㪘
㪋㪪㪫㩷㪂㩷㪋㪋㪘
㪉㪉㪤㩷㪂㩷㪋㪪㪫
㪉㪍 㪋㪏
㪉㪉㪤㩷㪂㩷㪋㩷㪪㪤㪆㪪㪫
㪉㪍
㪍㪪㪫㩷㪂㩷㪋㪉㪘
㪉㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪋㪇㪘
㪋㪍
㪋㪏
㪉㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪋㪇㪘
㪋㪍
㪉㪇㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪏㩷㪪㪫㪆㪘
㪉㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪋㪋㩷㪪㪫㪆㪘
㪐㪤㩷㪂㩷㪊㪉㩷㪪㪤㪆㪪㪫㪆㪘
㪋㪈
㪏㪤㩷㪂㩷㪊㪋㩷㪪㪤㪆㪪㪫㪆㪘
㪋㪉
㪋㪏
㪌㪇
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪌㪇
㪌㪉
㪌㪉
㪌㪉
㪌㪇
㪌㪋
㪌㪉
㪌㪋
㪌㪉
㪌㪉
㪌㪉
㪌㪉
㪌㪋
㪌㪋
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪯㪰㪃㩷㪘㪚㪥㪔㪋㪏
㪯㪯㪃㩷㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪌㪉
㪌㪇
㪋㪏
㪋㪏
㪋㪐
㪌㪇
㪌㪇
㪍㪉
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏 㪋㪪㪤㩷㪂㩷㪋㪋㩷㪪㪫㪆㪘
㪌㪇
㪋㪏
㪌㪇
㪌㪇
㪋㪏
㪋㪏
㪋㪐
㪌㪇
㪌㪇
㪌㪇
㪉
㪋㪏
㪉㪪㪤㩷㪂㩷㪋㪍㪘
㪉㪪㪤㩷㪂㩷㪋㪍㪘
㪉㪪㪤㩷㪂㩷㪋㪍㪘
㪝
㪝㪃㩷㪤
㪍㪉
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪋㪏
㪋㪏
㪋㪏 㪘
㪋㪏
㪝
㪝㪃㩷㪤
㪈㪪㪤㩷㪂㩷㪋㪎㪘
㪋㪏
㪝㪃㩷㪤
㪉㪤㩷㪂㩷㪈㪉㪪㪫㩷㪂㩷㪊㪋㪘
㪋㪏
㪝㪃㩷㪤
㪍㪉
㪌㪉
㪉
㪉
㩿㪉㪅㪏㩷㪙㪝㪘㪀
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪬㪪㪘㩷㩿㪝㪣㪀
㪬㪪㪘㩷㩿㪤㪦㪀
㪬㪪㪘㩷㩿㪤㪪㪃㩷㪫㪥㪃㩷㪫㪯㪀
㪬㪪㪘㩷㩿㪘㪣㪀
㪬㪪㪘㩷㩿㪚㪫㪀
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪤㪼㫏㫀㪺㫆㩷㩿㪧㪸㪺㫀㪽㫀㪺㩷㫊㫀㪻㪼㪀
㪤㪼㫏㫀㪺㫆
㪮㪅㩷㪤㪼㫏㫀㪺㫆
㪤㪼㫏㫀㪺㫆㩷㩿㪡㪸㫃㫀㫊㪺㫆㪀
㪮㪅㩷㪤㪼㫏㫀㪺㫆
㪤㪼㫏㫀㪺㫆㩷
㪤㪼㫏㫀㪺㫆
㪤㪼㫏㫀㪺㫆
㪤㪼㫏㫀㪺㫆
㪤㪼㫏㫀㪺㫆
㪤㪼㫏㫀㪺㫆
㪤㪼㫏㫀㪺㫆
㪤㪼㫏㫀㪺㫆㩷㩿㪡㪸㫃㫀㫊㪺㫆㪀
㪤㪼㫏㫀㪺㫆㩷㩿㪡㪸㫃㫀㫊㪺㫆㪀
㪬㪪㪘
㪬㪪㪘㩷㩿㪥㪚㪀
㪬㪪㪘
㪬㪪㪘㩷㩿㪝㪣㪀
㪬㪪㪘㩷㩿㪝㪣㪀
㪬㪪㪘㩷㩿㪤㪦㪀
㪬㪪㪘㩷㩿㪥㪚㪀
㪬㪪㪘㩷㩿㪘㪣㪀
㪬㪪㪘㩷㩿㪚㪘㪀
㪬㪪㪘㩷㩿㪚㪘㪀
㪬㪪㪘㩷㩿㪚㪘㪀
㪬㪪㪘㩷㩿㪚㪘㪀
㪬㪪㪘㩷㩿㪘㪣㪃㩷㪤㪪㪃㩷㪫㪯㪀
㪬㪪㪘㩷㩿㪫㪯㪀
㪬㪪㪘㩷㩿㪤㪦㪀
㪉㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪊㪋㪘
㪋㪏
㪉㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪋㪋㩷㪪㪫㪆㪘
㪋㪏
㪌㪉
㪉
㪟 㪠 㪘㪾㪄 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㩿㫇㪾㪆㪺㪼㫃㫃㪀 㪥㪦㪩㫊
㪋㪏
㪉㪤㩷㪂㩷㪋㪋㩷㪪㪫㪆㪘
㪋㪍
㪍㪉
㪍㪉
㪞 㪥㪝㪉
㪬㪪㪘㩷㩿㪘㪣㪀
㪈㪇㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪉㪏㩷㪪㪫㪆㪘
㪋㪇
㪌㪇
㪌㪇
㪌㪇
㪝 㪥㪝㪈
㪋㪏
㪈㪇㪤㩷㪂㩷㪈㪉㪪㪫㩷㪂㩷㪈㪏㪘
㪍㪤㩷㪂㩷㪈㪉㪪㪫㩷㪂㩷㪉㪍㪘
㪋㪇
㪉㪪㪤㩷㪂㩷㪋㪍㩷㪪㪫㪆㪘
㪋㪋
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪋㪏
㪛 㪉㫅
㪝㪃㩷㪤
㪝㪃㩷㪤
㪝㪃㩷㪤
㪚 㪪㪼㫏
㪤
㪥㪼㫆㫆㫇㪿㫆㫉㫌㫊 㪥㪼㫆㫆㫇㪿㫆㫉㫌㫊
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪿㫌㪹㪹㫊㫀 㪿㫌㪹㪹㫊㫀 㫋㪸㫄㪸㫑㫌㫃㪸㪼 㫑㫆㫅㫀㫊㫋㫀㫌㫊
㫄㪸㫁㪸㫃㫀㫊 㫅㫆㫋㪸㫋㫌㫊 㫅㫆㫋㪸㫋㫌㫊 㫅㫆㫋㪸㫋㫌㫊 㫅㫆㫋㫋㫀 㫅㫆㫋㫋㫀 㫆㫃㫀㫍㪸㪺㪼㫌㫊 㫆㫃㫀㫍㪸㪺㪼㫌㫊 㫆㫃㫀㫍㪸㪺㪼㫌㫊 㫇㪸㫉㫍㫀㫇㫀㫅㫅㫀㫊 㫇㪸㫉㫍㫀㫇㫀㫅㫅㫀㫊 㫇㪸㫉㫍㫀㫇㫀㫅㫅㫀㫊 㫇㪸㫉㫍㫀㫇㫀㫅㫅㫀㫊 㫇㫌㫃㫍㪼㫉㪼㫌㫊 㫉㪸㫋㪿㪹㫌㫅㫀 㫊㪺㫀㪸㪻㫀㪺㫌㫊 㫊㪼㫄㫀㫅㫆㫃㫀㫊 㫊㫀㫄㫀㫃㫀㫊 㫊㫋㪼㫃㫃㫀㪽㪼㫉 㫎㪸㪺㪺㪸㫄㪼㫅㫊㫀㫊 㫑㪼㪹㫉㫀㫅㫌㫊
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㪹㫆㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷
㪫㪸㪹㫃㪼㩷㪍㪅㪉㪏㩷㩷㪦㫉㪻㪼㫉㩷㪚㪰㪧㪩㪠㪥㪦㪛㪦㪥㪫㪠㪝㪦㪩㪤㪜㪪㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀
㪤㪄㪎㪉㪃㩷㪬㪄㪎㪇
㪬㪄㪎㪇
㪪㪄㪈㪍㪇㪃㩷㪬㪄㪎㪇
㪪㪄㪎㪊
㪙㪄㪍㪊㪃㩷㪪㪄㪈㪍㪇
㪬㪄㪎㪇
㪬㪄㪎㪇
㪬㪄㪎㪇
㪬㪄㪎㪇
㪬㪄㪎㪇
㪬㪄㪎㪇
㪬㪄㪎㪇
㪤㪄㪎㪇㪃㩷㪬㪄㪍㪌㪃㩷㪬㪄㪎㪇
㪤㪄㪎㪇㪃㩷㪬㪄㪍㪌㪃㩷㪬㪄㪎㪇
㪚㪄㪌㪉
㪚㪄㪌㪉
㪚㪄㪌㪉㪃㩷㪛㪄㪍
㪚㪄㪌㪉㪃㩷㪪㪄㪌㪐
㪚㪄㪌㪉
㪚㪄㪌㪉
㪚㪄㪌㪉
㪚㪄㪌㪉
㪚㪄㪌㪉
㪚㪄㪋㪐
㪚㪄㪋㪐
㪢㪄㪐㪐
㪙㪄㪊㪏㪃㩷㪪㪄㪋㪉
㪚㪄㪍
㪚㪄㪌㪉
㪛㪄㪍
㪚㪄㪌㪉
㪚㪄㪌㪉
㪙㪄㪊㪏㪃㩷㪪㪄㪋㪉
㪙㪄㪊㪏
㪚㪄㪋㪐㪃㩷㪚㪄㪌㪉㪃㩷㪟㪄㪈㪊
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
148
㪘㫋㪸㪼㫅㫀㫆㪹㫀㫌㫊 㪚㪿㪸㫇㪸㫃㫀㪺㪿㫋㪿㫐㫊 㪚㪿㪸㫇㪸㫃㫀㪺㪿㫋㪿㫐㫊 㪚㪿㪸㫉㪸㪺㫆㪻㫆㫅 㪞㫀㫉㪸㫉㪻㫀㫅㫀㪺㪿㫋㪿㫐㫊 㪞㫀㫉㪸㫉㪻㫀㫅㫀㪺㪿㫋㪿㫐㫊 㪞㫆㫆㪻㪼㪸 㪞㫆㫆㪻㪼㪸 㪞㫆㫆㪻㪼㪸 㪟㫌㪹㪹㫊㫀㫅㪸 㪠㫃㫐㫆㪻㫆㫅 㪠㫃㫐㫆㪻㫆㫅 㪠㫃㫐㫆㪻㫆㫅 㪠㫃㫐㫆㪻㫆㫅 㪠㫃㫐㫆㪻㫆㫅 㪠㫃㫐㫆㪻㫆㫅 㪠㫃㫐㫆㪻㫆㫅 㪠㫃㫐㫆㪻㫆㫅 㪠㫃㫐㫆㪻㫆㫅 㪠㫃㫐㫆㪻㫆㫅 㪠㫃㫐㫆㪻㫆㫅 㪠㫃㫐㫆㪻㫆㫅 㪪㫂㫀㪽㪽㫀㪸 㪪㫂㫀㪽㪽㫀㪸 㪪㫂㫀㪽㪽㫀㪸 㪪㫂㫀㪽㪽㫀㪸 㪯㪼㫅㫆㫆㫇㪿㫆㫉㫌㫊 㪯㪼㫅㫆㫋㪸㪼㫅㫀㪸 㪯㪼㫅㫆㫋㫆㪺㪸 㪯㪼㫅㫆㫋㫆㪺㪸 㪯㪼㫅㫆㫋㫆㪺㪸 㪱㫆㫆㪾㫆㫅㪼㫋㫀㪺㫌㫊
㫋㫆㫎㪼㫉㫀 㪼㫅㪺㪸㫌㫊㫋㫌㫊 㫇㪸㫉㪻㪸㫃㫀㫊 㫃㪸㫋㪼㫉㪸㫃㫀㫊 㫄㫌㫃㫋㫀㫉㪸㪻㫀㪸㫋㫌㫊 㫍㫀㫍㫀㫇㪸㫉㫌㫊 㪸㫋㫉㫀㫇㫀㫅㫅㫀㫊 㪾㫉㪸㪺㫀㫃㫀㫊 㫃㫌㫀㫋㫇㫆㫃㪻㫀 㫋㫌㫉㫅㪼㫉㫀 㪽㫌㫉㪺㫀㪻㪼㫅㫊 㪽㫌㫉㪺㫀㪻㪼㫅㫊 㪽㫌㫉㪺㫀㪻㪼㫅㫊 㪽㫌㫉㪺㫀㪻㪼㫅㫊 㪽㫌㫉㪺㫀㪻㪼㫅㫊 㪽㫌㫉㪺㫀㪻㪼㫅㫊 㫃㪼㫅㫅㫆㫅㫀 㫃㪼㫅㫅㫆㫅㫀 㫎㪿㫀㫋㪼㫀 㫎㪿㫀㫋㪼㫀 㫎㪿㫀㫋㪼㫀 㫏㪸㫅㫋㫌㫊㫀 㪹㫀㫃㫀㫅㪼㪸㫋㪸 㪽㫉㪸㫅㪺㪼㫊㪸㪼 㫃㪼㫉㫄㪸㪼 㫄㫌㫃㫋㫀㫇㫌㫅㪺㫋㪸㫋㪸 㪺㪸㫇㫋㫀㫍㫌㫊 㫉㪼㫊㫆㫃㪸㫅㪸㪼 㪼㫀㫊㪼㫅㫀 㫄㪼㫃㪸㫅㫆㫊㫆㫄㪸 㫍㪸㫉㫀㪸㫋㪸 㫈㫌㫀㫋㫑㪼㫆㪼㫅㫊㫀㫊
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㪹㫆㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪫㪸㪹㫃㪼㩷㪍㪅㪉㪏㩷㩷㪦㫉㪻㪼㫉㩷㪚㪰㪧㪩㪠㪥㪦㪛㪦㪥㪫㪠㪝㪦㪩㪤㪜㪪㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀
㪏㪪㪫㩷㪂㩷㪋㪇㪘 㪈㪤㩷㪂㩷㪋㪎㩷㪪㪫㪆㪘 㪏㪪㪫㩷㪂㩷㪋㪇㪘 㪋㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪊㪋㪪㪫㩷㪂㩷㪏㪘 㪉㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪋㪇㪘 㪉㪉㪤㩷㪂㩷㪋㪘 㪋㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪊㪏㪘
㪋㪏 㪋㪏 㪋㪏 㪋㪏 㪋㪏 㪉㪍 㪋㪍
㪝 㪤 㪝㪃㩷㪤
㪍㪪㪫㩷㪂㩷㪋㪉㪘 㪏㪪㪫㩷㪂㩷㪋㪇㪘 㪋㪪㪫㩷㪂㩷㪋㪋㪘 㪉㪉㪤㩷㪂㩷㪍㩷㪪㪫㪆㪘
㪋㪏 㪋㪏 㪋㪏 㪉㪏
㪤
㪋㪏㩷㪪㪫㪆㪘
㪋㪏
㪝
㪉㪪㪤㩷㪂㩷㪋㪍㩷㪪㪫㪆㪘
㪋㪏
㪝
㪋㪏㩷㪪㪫㪆㪘
㪋㪏㩷㪪㪫㪆㪘
㪋㪏
㪈㪉㩷㪤㪆㪪㪤㩷㪂㩷㪈㪎㪪㪫㩷㪂㩷㪈㪐㪘
㪋㪏 㪋㪏
㪍㪤㩷㪂㩷㪊㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪉㪐㪘
㪋㪏
㪤
㪋㩷㪤㪆㪪㪤㩷㪂㩷㪈㪉㪪㪫㩷㪂㩷㪊㪉㪘
㪋㪏
㪝㪃㩷㪤
㪉㩷㪤㪆㪪㪤㩷㪂㩷㪈㪈㪪㪫㩷㪂㩷㪊㪌㪘
㪋㪏
㪉㪪㪤㩷㪂㩷㪋㪍㩷㪪㪫㪆㪘
㪎㪪㪫㩷㪂㩷㪋㪈㪘
㪋㪏㩷㪪㪫㪆㪘
㪋㪏 㪋㪏
㪉㪪㪤㩷㪂㩷㪋㪍㩷㪪㪫㪆㪘
㪋㪏 㪏㪪㪫㩷㪂㩷㪋㪇㪘
㪉㪪㪤㩷㪂㩷㪋㪍㩷㪪㪫㪆㪘
㪋㪏
㪋㪏
㪈㪇㪪㪫㩷㪂㩷㪊㪏㪘
㪈㪇㪪㪫㩷㪂㩷㪊㪏㪘
㪋㪏 㪉㪪㪤㩷㪂㩷㪋㪍㩷㪪㪫㪆㪘
㪉㪋㪤
㪉㪋 㪋㪏
㪈㪉㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪏㪪㪫㩷㪂㩷㪈㪋㪘
㪊㪍
㪋㪏
㪉㪪㪤㩷㪂㩷㪋㪍㩷㪪㪫㪆㪘 㪈㪉㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪈㪍㪪㪫㩷㪂㩷㪋㪘
㪋㪏
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪊㪍
㪛 㪉㫅
㪋㪏
㪝
㪝㪃㩷㪤
㪚 㪪㪼㫏
㪌㪇
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪌㪇
㪌㪇
㪋㪏
㪌㪍
㪌㪋
㪋㪏
㪋㪏
㪋㪐
㪋㪏
㪋㪏
㪌㪇
㪍㪇
㪌㪎
㪌㪉
㪌㪇
㪋㪏
㪋㪏
㪋㪏
㪌㪇
㪌㪇
㪌㪇
㪋㪏
㪋㪏
㪋㪏
㪌㪇
㪌㪉
㪌㪇
㪝 㪥㪝㪈
㪌㪉
㪌㪍
㪌㪋
㪌㪋
㪋㪏
㪌㪍
㪏㪏
㪌㪍
㪌㪍
㪎㪎
㪍㪎
㪍㪋
㪍㪈
㪌㪌
㪌㪍
㪌㪏
㪌㪏
㪋㪏
㪌㪏
㪍㪏
㪞 㪥㪝㪉
㪟 㪠 㪘㪾㪄 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㩿㫇㪾㪆㪺㪼㫃㫃㪀 㪥㪦㪩㫊
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪱㪱㪃㩷㪘㪚㪥㪔㪋㪏
㪱㪮㪃㩷㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪤㪼㫏㫀㪺㫆㩷㩿㪧㪸㪺㫀㪽㫀㪺㩷㫊㫀㪻㪼㪀
㪤㪼㫏㫀㪺㫆
㪤㪼㫏㫀㪺㫆
㪤㪼㫏㫀㪺㫆
㪤㪼㫏㫀㪺㫆
㪤㪼㫏㫀㪺㫆
㪤㪼㫏㫀㪺㫆
㪤㪼㫏㫀㪺㫆
㪤㪼㫏㫀㪺㫆
㪤㪼㫏㫀㪺㫆
㪤㪼㫏㫀㪺㫆
㪤㪼㫏㫀㪺㫆㩷㩿㪞㫌㪼㫉㫉㪼㫉㫆㪀
㪤㪼㫏㫀㪺㫆㩷㩿㪞㫌㪼㫉㫉㪼㫉㫆㪀
㪤㪼㫏㫀㪺㫆
㪤㪼㫏㫀㪺㫆㩷㩿㪞㫌㪼㫉㫉㪼㫉㫆㪀
㪤㪼㫏㫀㪺㫆㩷㩿㪞㫌㪼㫉㫉㪼㫉㫆㪀
㪤㪼㫏㫀㪺㫆㩷㩿㪧㪸㪺㫀㪽㫀㪺㩷㫊㫀㪻㪼㪀
㪤㪼㫏㫀㪺㫆㩷㩿㪧㪸㪺㫀㪽㫀㪺㩷㫊㫀㪻㪼㪀
㪤㪼㫏㫀㪺㫆㩷㩿㪧㪸㪺㫀㪽㫀㪺㩷㫊㫀㪻㪼㪀
㪤㪼㫏㫀㪺㫆㩷㩿㪧㪸㪺㫀㪽㫀㪺㩷㫊㫀㪻㪼㪀
㪤㪼㫏㫀㪺㫆㩷㩿㪧㪸㪺㫀㪽㫀㪺㩷㫊㫀㪻㪼㪀
㪤㪼㫏㫀㪺㫆
㪤㪼㫏㫀㪺㫆
㪤㪼㫏㫀㪺㫆
㪤㪼㫏㫀㪺㫆
㪤㪼㫏㫀㪺㫆
㪤㪼㫏㫀㪺㫆
㪤㪼㫏㫀㪺㫆
㪤㪼㫏㫀㪺㫆
㪤㪼㫏㫀㪺㫆
㪤㪼㫏㫀㪺㫆
㪤㪼㫏㫀㪺㫆
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪙㪄㪍㪊
㪬㪄㪎㪇
㪬㪄㪎㪇
㪬㪄㪎㪇
㪬㪄㪎㪇
㪬㪄㪎㪇
㪬㪄㪎㪇
㪬㪄㪎㪇
㪬㪄㪎㪇
㪬㪄㪎㪇
㪬㪄㪎㪇㪃㩷㪤㪄㪈㪍㪊
㪤㪄㪈㪍㪊
㪤㪄㪈㪍㪊
㪬㪄㪎㪇
㪤㪄㪈㪍㪊
㪤㪄㪈㪍㪊
㪫㪄㪌㪎
㪫㪄㪌㪎
㪫㪄㪌㪎
㪫㪄㪌㪎
㪫㪄㪌㪎
㪬㪄㪎㪇㪃㩷㪤㪄㪈㪍㪊
㪬㪄㪎㪇
㪬㪄㪎㪇
㪬㪄㪎㪇
㪬㪄㪎㪇
㪬㪄㪎㪇
㪬㪄㪎㪇
㪝㪄㪌㪐㪃㩷㪬㪄㪎㪇
㪬㪄㪎㪇
㪬㪄㪎㪇
㪬㪄㪎㪇
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
149
㪞㪸㫄㪹㫌㫊㫀㪸 㪞㪸㫄㪹㫌㫊㫀㪸 㪞㪸㫄㪹㫌㫊㫀㪸 㪞㪸㫄㪹㫌㫊㫀㪸 㪞㪸㫄㪹㫌㫊㫀㪸 㪞㪸㫄㪹㫌㫊㫀㪸 㪞㪸㫄㪹㫌㫊㫀㪸 㪞㪸㫄㪹㫌㫊㫀㪸 㪞㪸㫄㪹㫌㫊㫀㪸 㪞㪸㫄㪹㫌㫊㫀㪸 㪞㪸㫄㪹㫌㫊㫀㪸 㪞㪸㫄㪹㫌㫊㫀㪸 㪞㪸㫄㪹㫌㫊㫀㪸 㪞㪸㫄㪹㫌㫊㫀㪸 㪞㪸㫄㪹㫌㫊㫀㪸 㪞㪸㫄㪹㫌㫊㫀㪸 㪞㪸㫄㪹㫌㫊㫀㪸 㪞㪸㫄㪹㫌㫊㫀㪸 㪞㪸㫄㪹㫌㫊㫀㪸 㪞㪸㫄㪹㫌㫊㫀㪸 㪞㪸㫄㪹㫌㫊㫀㪸 㪞㪸㫄㪹㫌㫊㫀㪸 㪞㪸㫄㪹㫌㫊㫀㪸 㪞㪸㫄㪹㫌㫊㫀㪸 㪞㪸㫄㪹㫌㫊㫀㪸 㪞㪸㫄㪹㫌㫊㫀㪸 㪞㪸㫄㪹㫌㫊㫀㪸 㪞㪸㫄㪹㫌㫊㫀㪸 㪞㫀㫉㪸㫉㪻㫀㫅㫌㫊 㪞㫀㫉㪸㫉㪻㫀㫅㫌㫊 㪣㫀㫄㫀㪸 㪧㪿㪸㫃㫃㫆㪺㪼㫉㫆㫊
㩷㩷㩷㪧㫆㪼㪺㫀㫃㫀㫀㫅㪸㪼
㪤㫀㪺㫉㫆㫇㪸㫅㪺㪿㪸㫏 㪧㫆㫉㫆㫇㪸㫅㪺㪿㪸㫏 㪧㫉㫆㪺㪸㫋㫆㫇㫌㫊 㪧㫉㫆㪺㪸㫋㫆㫇㫌㫊
㩷㩷㩷㪧㫉㫆㪺㪸㫋㫆㫇㫆㪻㫀㫅㪸㪼
㪘㫇㫃㫆㪺㪿㪼㫀㫃㫀㪺㪿㫋㪿㫐㫊 㪘㫇㫃㫆㪺㪿㪼㫀㫃㫀㪺㪿㫋㪿㫐㫊
㪋㪏㪘
㪋㪏 㪋㪏 㪋㪏 㪋㪏 㪋㪏 㪋㪏 㪋㪏 㪋㪏 㪋㪏 㪋㪏
㪤 㪝㪃㩷㪤 㪝㪃㩷㪤 㪝㪃㩷㪤 㪝㪃㩷㪤 㪝㪃㩷㪤 㪝㪃㩷㪤 㪝 㪤 㪝
㪋㪏㪘 㪉㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪋㪉㪘 㪋㪏㪘 㪋㪏㪘 㪉㪪㪤㩷㪂㩷㪋㪍㪘
㪋㪏 㪋㪏 㪋㪏 㪋㪏 㪋㪏 㪋㪏 㪋㪏
㪝㪃㩷㪤 㪝 㪝㪃㩷㪤 㪝㪃㩷㪤
㫊㫇㪅
㪽㪸㫃㪺㪸㫋㫌㫊 㫄㪼㫋㪸㫃㫃㫀㪺㫌㫊 㫍㫀㫋㫋㪸㫋㪸 㪺㪸㫌㪻㫀㫄㪸㪺㫌㫃㪸㫋㫌㫊
㪤
㪋㪏
㪋㪍
㪉㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪋㪉㪘
㪋㪏
㪤 㪝㪃㩷㪤
㪝㪃㩷㪤
㪍㩷㪤㪆㪪㪤㩷㪂㩷㪋㪉㪘
㪋㪏
㪝
㪞㫃㪸㫉㫀㪻㫀㪺㪿㫋㪿㫐㫊㩷
㪌㩷㪤㪆㪪㪤㩷㪂㩷㪋㪊㪘
㪋㪏 㪋㪏
㪤
㪋㪉㪘
㪋㪍㪘
㪋㪏㪘
㪋㪏㪘
㪋㪏㪘
㪈㪤㩷㪂㩷㪋㪎㪘
㪋㪉
㪋㪏㪘
㪋㪏㪘
㪈㪤㩷㪂㩷㪋㪎㪘
㪉㪪㪤㩷㪂㩷㪋㪍㪘
㪈㪪㪤㩷㪂㩷㪋㪎㪘
㪋㪏㪘
㪋㪏㪘
㪋㪏㪘
㪋㪏㪘
㪉㪪㪤㩷㪂㩷㪋㪍㪘
㪈㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪋㪌㪘
㪋㪏
㪋㪏
㪋㪏
㪝
㪋㪏
㪈㪤㩷㪂㩷㪋㪎㪘
㪋㪏
㪤
㪤
㪋㪏㪘
㪋㪏
㪝
㪝㪃㩷㪤
㪈㪤㩷㪂㩷㪋㪎㪘
㪋㪏
㪋㪏㪘
㪋㪏
㪋㪍
㪌㪇
㪋㪏
㪋㪏
㪌㪋
㪋㪏
㪋㪏
㪌㪋
㪋㪏
㪌㪋
㪌㪊
㪋㪏
㪋㪐
㪋㪉
㪋㪏
㪋㪏
㪋㪐
㪋㪏
㪋㪐
㪌㪇
㪋㪐
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪐
㪌㪇
㪌㪈
㪋㪏
㪋㪐
㪋㪍
㪌㪇
㪋㪏
㪋㪏
㪌㪋
㪋㪏
㪋㪏
㪌㪋
㪋㪏
㪌㪋
㪌㪊
㪋㪏
㪋㪐
㪋㪉
㪋㪏
㪋㪏
㪋㪐
㪋㪏
㪋㪐
㪌㪇
㪋㪐
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪐
㪌㪇
㪌㪈
㪋㪏
㪋㪐
㩿㪐㪍㪀
㪋㪏㪁 㪝
㩿㪐㪍㪀
㩿㪋㪏㪀
㩿㪋㪏㪀
㩿㪐㪋㪀
㪎㪍
㪞 㪥㪝㪉
㪋㪏
㪋㪏 㪋㪏
㪋㪏
㪝 㪥㪝㪈
㪋㪏
㪈㪤㩷㪂㩷㪋㪎㪘
㪉㪏㪪㪫㩷㪂㩷㪉㪇㪘
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪋㪏
㪋㪏
㪋㪏
㪛 㪉㫅
㪤
㪚 㪪㪼㫏
㪝
㪸㪽㪽㫀㫅㫀㫊 㪸㪽㪽㫀㫅㫀㫊 㪸㪽㪽㫀㫅㫀㫊 㪸㪽㪽㫀㫅㫀㫊
㪘㫇㫃㫆㪺㪿㪼㫀㫃㫀㪺㪿㫋㪿㫐㫊 㪘㫇㫃㫆㪺㪿㪼㫀㫃㫀㪺㪿㫋㪿㫐㫊
㫊㪺㪿㪸㫃㫃㪼㫉㫀
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪝㪃㩷㪤
㪸㪽㪽㫀㫅㫀㫊㩷㪸㪽㪽㫀㫅㫀㫊 㪸㪽㪽㫀㫅㫀㫊㩷㪸㪽㪽㫀㫅㫀㫊 㪸㪽㪽㫀㫅㫀㫊㩷㪸㪽㪽㫀㫅㫀㫊 㪸㪽㪽㫀㫅㫀㫊㩷㪸㪽㪽㫀㫅㫀㫊 㪸㪽㪽㫀㫅㫀㫊㩷㪸㪽㪽㫀㫅㫀㫊 㪸㪽㪽㫀㫅㫀㫊㩷㪸㪽㪽㫀㫅㫀㫊 㪸㪽㪽㫀㫅㫀㫊㩷㪿㫆㫃㪹㫉㫆㫆㫂㫀 㪸㪽㪽㫀㫅㫀㫊㩷㪿㫆㫃㪹㫉㫆㫆㫂㫀 㪸㪽㪽㫀㫅㫀㫊㩷㪿㫆㫃㪹㫉㫆㫆㫂㫀 㪸㪽㪽㫀㫅㫀㫊㩷㪿㫆㫃㪹㫉㫆㫆㫂㫀 㪸㪽㪽㫀㫅㫀㫊㩷㪿㫆㫃㪹㫉㫆㫆㫂㫀 㪸㪽㪽㫀㫅㫀㫊㩷㪿㫆㫃㪹㫉㫆㫆㫂㫀 㪾㪸㫀㪾㪼㫀 㪾㪸㫀㪾㪼㫀 㪿㫌㫉㫋㪸㪻㫆㫀 㪿㫌㫉㫋㪸㪻㫆㫀 㫃㫌㫄㪸 㫄㪸㫉㫊㪿㫀 㫅㫆㪹㫀㫃㫀㫊 㫅㫆㪹㫀㫃㫀㫊 㫇㫌㫅㪺㫋㫀㪺㫌㫃㪸㫋㪸㩷㫇㫌㫅㪺㫋㫀㪺㫌㫃㪸㫋㪸 㫇㫌㫅㪺㫋㫀㪺㫌㫃㪸㫋㪸㩷㫇㫌㫅㪺㫋㫀㪺㫌㫃㪸㫋㪸 㫉㪼㪾㪸㫅㫀 㫉㪿㫀㫑㫆㫇㪿㫆㫉㪸㪼 㫊㪼㫏㫉㪸㪻㫀㪸㫋㪸 㫍㫀㫋㫋㪸㫋㪸 㫏㪸㫅㫋㪿㫆㫊㫆㫄㪸
㫄㪸㪺㫉㫆㫇㪿㫋㪿㪸㫃㫄㫌㫊 㫅㫆㫉㫄㪸㫅㫀 㪸㪹㪼㫉㫉㪸㫅㫊 㫊㫀㫄㫀㫃㫀㫊
㪿㫌㫋㪼㫉㪼㪸㫌㫀 㫊㫇㫀㫃㪸㫌㪺㪿㪼㫅
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㪹㫆㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷 㪧㫆㪼㪺㫀㫃㫀㫀㪻㪸㪼㩷 㩷㩷㩷㪘㫇㫃㫆㪺㪿㪼㫀㫃㫀㪺㪿㫋㪿㫐㫀㫅㪸㪼
㪫㪸㪹㫃㪼㩷㪍㪅㪉㪏㩷㩷㪦㫉㪻㪼㫉㩷㪚㪰㪧㪩㪠㪥㪦㪛㪦㪥㪫㪠㪝㪦㪩㪤㪜㪪㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀
㪋
㪈㪅㪐㩷㪝㪛
㩿㪈㪅㪌㩷㪝㪚㪤㪃㩷㪈㪅㪎㩷㪙㪝㪘㪀
㩿㪈㪅㪐㩷㪝㪚㪤㪀
㩿㪈㪅㪏㪁㩷㪝㪚㪤㪀
㪟 㪠 㪘㪾㪄 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㪥㪦㪩㫊 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪱㪱㪃㩷㪘㪚㪥㪔㪋㪏
㪱㪮㪃㩷㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪱㪱㪃㩷㪘㪚㪥㪔㪋㪏
㪱㪮㪃㩷㪘㪚㪥㪔㪋㪏
㪱㪱㪃㩷㪘㪚㪥㪔㪋㪏
㪱㪮㪃㩷㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪱㪱㪃㩷㪘㪚㪥㪔㪋㪏
㪱㪮㪃㩷㪘㪚㪥㪔㪋㪐
㪱㪱㪃㩷㪘㪚㪥㪔㪋㪏
㪱㪮㪃㩷㪘㪚㪥㪔㪋㪐
㪱㪱㪃㩷㪘㪚㪥㪔㪋㪏
㪱㪮㪃㩷㪘㪚㪥㪔㪋㪐㩷
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪠㪄㪈㪍 㪚㪄㪋㪎
㪚㪄㪋㪎㪃㩷㪞㪄㪏㪌
㪬㪪㪘㩷㩿㪥㪚㪀㩷
㪘㫉㪾㪼㫅㫋㫀㫅㪸
㪚㫌㪹㪸
㩿㪚㫌㪹㪸㪀
㪚㫌㪹㪸
㪫㪼㫅㪼㫉㫀㪽㪼
㪚㪸㫐㫄㪸㫅㩷㪠㫊㫃㪸㫅㪻㫊
㪤㪼㫏㫀㪺㫆
㪙㪼㫃㫀㫑㪼
㪬㪪㪘㩷㩿㪝㪣㪀
㪤㪼㫏㫀㪺㫆
㪚㫌㪹㪸
㪚㫌㪹㪸
㪬㪪㪘㩷㩿㪫㪯㪀
㪬㪪㪘㩷㩿㪫㪯㪀
㪤㪼㫏㫀㪺㫆
㪙㪼㫃㫀㫑㪼
㪤㪼㫏㫀㪺㫆
㪤㪼㫏㫀㪺㫆
㪬㪪㪘㩷㩿㪫㪯㪀
㪬㪪㪘㩷㩿㪫㪯㪀
㪠㫋㪸㫃㫐㩷㩿㪧㪸㫃㪼㫉㫄㫆㪀
㪠㫋㪸㫃㫐㩷㩿㪧㪸㫃㪼㫉㫄㫆㪀
㪠㫋㪸㫃㫐㪃㩷㪚㫐㫇㫉㫌㫊
㪠㫅㪻㫀㪸㩷㩿㪡㩷㩽㩷㪢㪀
㪝㪄㪉㪇
㪩㪄㪎㪃㩷㪞㪄㪏㪌
㪝㪄㪍㪎
㪩㪄㪎
㪪㪄㪉㪋
㪮㪄㪉㪍
㪚㪄㪋
㪮㪄㪉㪍
㪮㪄㪉㪍
㪚㪄㪋
㪩㪄㪎
㪩㪄㪎
㪚㪄㪋
㪚㪄㪋
㪚㪄㪋
㪮㪄㪉㪍
㪚㪄 㪋
㪚㪄㪋
㪚㪄㪋
㪚㪄㪋
㪭㪄㪍㪏
㪭㪄㪍㪏
㪣㪄㪍㪍㪃㩷㪭㪄㪍㪏㪃㩷㪩㪄㪈㪇㪇
㪪㪄㪌㪊㪃㩷㪢㪄㪈㪇㪊
㪙㪄㪊㪐
㪩㪄㪏㪈㪃㩷㪫㪄㪎㪊㪃㩷㪟㪄㪈㪊
㪬㪪㪘㩷㩿㪘㪣㪃㩷㪤㪪㪃㩷㪘㪩㪃㩷㪤㪦㪀 㪙㪄㪊㪐 㪬㪪㪘㩷㩿㪥㪚㪃㩷㪪㪚㪃㩷㪝㪣㪃㩷㪘㪣㪀
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
㪠㪄㪈㪍㪃㩷㪦㪄㪋㪏
㪪㪄㪉㪋
㪪㪄㪉㪋
㪪㪄㪉㪋
㪪㪄㪉㪋
㪪㪄㪉㪋
㪪㪄㪊㪈
㪬㪪㪘㩷㩿㪘㪣㪃㩷㪤㪪㪃㩷㪘㪩㪃㩷㪤㪦㪀 㪙㪄㪊㪐
㪬㪪㪘㩷㩿㪚㪘㪃㩷㪫㪯㪀
㪬㪪㪘㩷㩿㪚㪘㪃㩷㪫㪯㪀
㪡㪸㫇㪸㫅㩷㩿㪢㫆㪺㪿㫀㪀
㪡㪸㫇㪸㫅㩷㩿㪢㫆㪺㪿㫀㪀
㪥㫀㪾㪼㫉㫀㪸㪃㩷㪚㪸㫄㪼㫉㫆㫆㫅
㪥㫀㪾㪼㫉㫀㪸㪃㩷㪚㪸㫄㪼㫉㫆㫆㫅
㪘㪽㫉㫀㪺㪸
㪥㫀㪾㪼㫉㫀㪸
㪘㪽㫉㫀㪺㪸
㪤㫆㫑㪸㫄㪹㫀㫈㫌㪼
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
150
㪭㪸㫃㪼㫅㪺㫀㪸
㪭㪸㫃㪼㫅㪺㫀㫀㪻㪸㪼
㪧㫆㪼㪺㫀㫃㫀㪸 㪧㫆㪼㪺㫀㫃㫀㪸 㪧㫆㪼㪺㫀㫃㫀㪸 㪧㫆㪼㪺㫀㫃㫀㪸 㪧㫆㪼㪺㫀㫃㫀㪸 㪧㫆㪼㪺㫀㫃㫀㪸 㪧㫆㪼㪺㫀㫃㫀㪸 㪧㫆㪼㪺㫀㫃㫀㪸 㪧㫆㪼㪺㫀㫃㫀㪸 㪧㫆㪼㪺㫀㫃㫀㪸 㪧㫆㪼㪺㫀㫃㫀㪸 㪧㫆㪼㪺㫀㫃㫀㪸 㪧㫆㪼㪺㫀㫃㫀㪸 㪧㫆㪼㪺㫀㫃㫀㪸 㪧㫆㪼㪺㫀㫃㫀㪸 㪧㫆㪼㪺㫀㫃㫀㫆㫇㫊㫀㫊 㪧㫆㪼㪺㫀㫃㫀㫆㫇㫊㫀㫊 㪧㫆㪼㪺㫀㫃㫀㫆㫇㫊㫀㫊 㪧㫆㪼㪺㫀㫃㫀㫆㫇㫊㫀㫊 㪧㫆㪼㪺㫀㫃㫀㫆㫇㫊㫀㫊 㪧㫆㪼㪺㫀㫃㫀㫆㫇㫊㫀㫊 㪧㫆㪼㪺㫀㫃㫀㫆㫇㫊㫀㫊 㪨㫌㫀㫅㫋㪸㫅㪸 㪯㪼㫅㫆㫇㪿㪸㫃㫃㫌㫊 㪯㫀㫇㪿㫆㫇㪿㫆㫉㫌㫊 㪯㫀㫇㪿㫆㫇㪿㫆㫉㫌㫊 㪯㫀㫇㪿㫆㫇㪿㫆㫉㫌㫊 㪯㫀㫇㪿㫆㫇㪿㫆㫉㫌㫊 㪯㫀㫇㪿㫆㫇㪿㫆㫉㫌㫊 㪯㫀㫇㪿㫆㫇㪿㫆㫉㫌㫊
㪿㫀㫊㫇㪸㫅㫀㪺㪸
㪽㫆㫉㫄㫆㫊㪸 㪽㫆㫉㫄㫆㫊㪸 㫃㪸㫋㫀㫇㫀㫅㫅㪸 㫃㪸㫋㫀㫇㫀㫅㫅㪸 㫃㪸㫋㫀㫇㫀㫅㫅㪸 㫃㪸㫋㫀㫇㫌㫅㪺㫋㪸㫋㪸 㫄㪼㫏㫀㪺㪸㫅㪸 㫄㪼㫏㫀㪺㪸㫅㪸㩷㫄㪼㫏㫀㪺㪸㫅㪸 㫄㪼㫏㫀㪺㪸㫅㪸㩷㫄㪼㫏㫀㪺㪸㫅㪸 㫉㪼㫋㫀㪺㫌㫃㪸㫋㪸 㫊㫇㪿㪼㫅㫆㫇㫊 㫊㫇㪿㪼㫅㫆㫇㫊 㫊㫇㪿㪼㫅㫆㫇㫊 㫍㪼㫃㫀㪽㪼㫉㪸 㫍㫀㫍㫀㫇㪸㫉㪸 㪹㪸㪼㫅㫊㪺㪿㫀 㫃㪸㫋㫀㪻㪼㫅㫊 㫃㪸㫋㫀㪻㪼㫅㫊 㫃㫌㪺㫀㪻㪸 㫄㫆㫅㪸㪺㪿㪸 㫆㪺㪺㫀㪻㪼㫅㫋㪸㫃㫀㫊 㫍㫀㫉㫀㫆㫊㪸 㪸㫋㫉㫀㫑㫆㫅㪸 㫌㫄㪹㫉㪸㫋㫀㫃㫀㫊 㪿㪼㫃㫃㪼㫉㫀 㪿㪼㫃㫃㪼㫉㫀 㫄㪸㪺㫌㫃㪸㫋㫌㫊 㫄㪸㪺㫌㫃㪸㫋㫌㫊 㫄㫆㫅㫋㪼㫑㫌㫄㪸㪼 㫏㫀㫇㪿㫀㪻㫀㫌㫄
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㪹㫆㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷
㪣㪼㪹㫀㫊㫋㪼㫊㩷㫉㪼㫋㫀㪺㫌㫃㪸㫋㫌㫊 㪤㫆㫃㫃㫀㪼㫅㪼㫊㫀㪸 㪤㫆㫃㫃㫀㪼㫅㪼㫊㫀㪸 㪤㫆㫃㫃㫀㪼㫅㪼㫊㫀㪸
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪫㪸㪹㫃㪼㩷㪍㪅㪉㪏㩷㩷㪦㫉㪻㪼㫉㩷㪚㪰㪧㪩㪠㪥㪦㪛㪦㪥㪫㪠㪝㪦㪩㪤㪜㪪㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀
㪋㪍
㪝㪃㩷㪤
㪋㪍
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪤
㪋㪏 㪘
㪋㪏
㪋㪏 㪝
㪋㪏㪘
㪋㪏
㪝㪃㩷㪤
㪋㪏㪘
㪋㪏㪘
㪋㪏㪘
㪋㪏
㪤
㪋㪏㪘
㪉㪪㪤㩷㪂㩷㪋㪋㪘
㪋㪏
㪋㪍
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㩿㪐㪉㪀
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪈㪅㪌㩷㪝㪚㪤
㪈㪅㪌㩷㪝㪚㪤
㩿㪈㪅㪏㪁㩷㪝㪚㪤㪃㩷㪈㪅㪐㩷㪙㪝㪘㪀
㪈㪅㪌㩷㪝㪚㪤㪃㩷㪈㪅㪍㩷㪝㪛
㪈㪅㪐㪁㩷㪝㪚㪤㪃㩷㪈㪅㪐㩷㪙㪝㪘
㪋㪏 㪋㪏㪘
㪈㪅㪋㩷㪝㪛
㪋㪏 㪋㪏
㪈㪅㪋㩷㪝㪛
㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪯㪰㪆㪯㪯
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪈㪅㪊㩷㪝㪚㪤㪃㩷㪈㪅㪋㩷㪝㪛 㪈㪅㪊㩷㪝㪚㪤㪃㩷㪈㪅㪊㩷㪝㪛
㪋㪏
㪊㪯
㪈㪅㪊㩷㪝㪛
㪎㪉
㪋㪏
㪋㪏
㪋㪏
㪡㪸㫇㪸㫅
㪠㫅㪻㫀㪸
㪠㫅㪻㫀㪸
㩿㪤㪼㫏㫀㪺㫆㪀
㪤㪼㫏㫀㪺㫆
㪤㪼㫏㫀㪺㫆
㪤㪼㫏㫀㪺㫆
㪤㪼㫏㫀㪺㫆㩷㩿㪫㪸㫄㫇㫊㪀
㪤㪼㫏㫀㪺㫆
㪤㪼㫏㫀㪺㫆
㪤㪼㫏㫀㪺㫆
㩿㪪㫇㪸㫀㫅㪀
㩿㪤㪼㫏㫀㪺㫆㪀
㩿㪤㪼㫏㫀㪺㫆㪀
㩿㪚㪅㩷㪘㫄㪼㫉㫀㪺㪸㪀
㩿㪚㪅㩷㪘㫄㪼㫉㫀㪺㪸㪀
㩿㪚㪅㩷㪘㫄㪼㫉㫀㪺㪸㪀
㩿㪚㪅㩷㪘㫄㪼㫉㫀㪺㪸㪀
㪚㫆㫊㫋㪸㩷㪩㫀㪺㪸㩷㩿㪘㫋㫃㪸㫅㫋㫀㪺㪀
㪚㫌㪹㪸
㪤㪼㫏㫀㪺㫆
㩿㪪㪅㩷㪬㪪㪘㪃㩷㪥㪅㩷㪤㪼㫏㫀㪺㫆㪀
㪤㪼㫏㫀㪺㫆
㪤㪼㫏㫀㪺㫆
㪤㪼㫏㫀㪺㫆
㪤㪼㫏㫀㪺㫆
㩿㪤㪼㫏㫀㪺㫆㪃㩷㪧㪸㪺㫀㪽㫀㪺㪀
㪙㫉㪸㫑㫀㫃
㪋㪏
㪋㪏
㪤㪼㫏㫀㪺㫆㩷㩿㪫㪸㫄㪸㫌㫃㫀㫇㪸㫊㪀 㪤㪼㫏㫀㪺㫆㩷㩿㪫㪸㫄㪸㫌㫃㫀㫇㪸㫊㪀
㪋㪏㪘
㪘㪚㪥㪔㪋㪏
㪱㪱
㪱㪮
㪘㪚㪥㪔㪋㪏
㪊㪯
㪘㪚㪥㪔㪋㪏
㪱㪱
㪱㪮
㪊㪯
㪘㪚㪥㪔㪋㪏
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪋㪏㪘
㩿㪈㪅㪐㩷㪝㪛㪀
㪉㪅㪇㩷㪝㪚㪤㪃㩷㪈㪅㪌㩷㪝㪛
㪉㪅㪉㩷㪝㪛
㩷㪉㪅㪇㩷㪝㪚㪤㪃㩷㪈㪅㪌㪄㪈㪅㪏㩷㪝㪛
㪈㪅㪏㩷㪝㪛
㩷㪉㪅㪇㩷㪝㪚㪤㪃㩷㪈㪅㪐㩷㪝㪛
㪊㪅㪈㩷㪝㪚㪤
㪈㪅㪐㩷㪝㪚㪤
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪋㪏
㪋
㪏
㪈㪄㪉
㪈㪄 㪋
㪋
㪉
㪟 㪠 㪘㪾㪄 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㪥㪦㪩㫊 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪋㪏
㪋㪍
㪋㪍
㪋㪎
㪋㪍
㪍㪐
㪋㪍
㪋㪍
㪋㪍
㪋㪍
㪍㪐
㪋㪍
㪞 㪥㪝㪉
㪤㪼㫏㫀㪺㫆
㪋㪍
㪋㪍
㪋㪎
㪋㪍
㪍㪐
㪋㪍
㪋㪍
㪋㪍
㪋㪍
㪋㪍
㪍㪐
㪋㪍
㪝 㪥㪝㪈
㪋㪍
㪝㪃㩷㪤
㪝㪃㩷㪤
㪋㪍㪘
㪋㪍
㪤 㪝㪃㩷㪤
㪋㪍㪘
㪈㪤㩷㪂㩷㪋㪌㪘
㪋㪍
㪝
㪋㪍㪘
㪍㪐㪘
㪍㪐 㪋㪍
㪋㪍㪘
㪋㪍㩷㪪㪫㪆㪘
㪋㪍 㪘
㪋㪍㪘
㪍㪐㪘
㪋㪍㪘
㪜 㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪋㪍
㪋㪍
㪋㪍
㪤
㪝㪃㩷㪤
㪋㪍
㪋㪍
㪍㪐
㪋㪍
㪛 㪉㫅
㪝
㪝
㪚 㪪㪼㫏
㪪㪄㪉㪋
㪣㪄㪎㪌
㪣㪄㪎㪌㪃㩷㪫㪄㪎㪉
㪚㪄㪌㪌㪃㩷㪪㪄㪉㪋㪃㩷㪫㪄㪎㪉
㪠㪄㪈㪍㪃㩷㪦㪄㪋㪏㪃㩷㪟㪄㪈㪊
㪦㪄㪋㪃㩷㪞㪄㪏㪌㪃㩷㪫㪄㪎㪉
㪠㪄㪈㪍㪃㩷㪦㪄㪋㪏㪃㩷㪟㪄㪈㪊
㪝㪄㪍㪎
㪩㪄㪎
㪪㪄㪈㪏㪊㪃㩷㪚㪄㪈㪇㪐
㪪㪄㪉㪇㪎㪃㩷㪚㪄㪈㪇㪐
㪪㪄㪈㪏㪊㪃㩷㪚㪄㪈㪇㪐㪃㩷㪞㪄㪏㪌
㪪㪄㪈㪍㪈㪃㩷㪚㪄㪈㪇㪐㪃㩷㪞㪄㪏㪌
㪪㪄㪈㪍㪈
㪪㪄㪈㪍㪈㪃㩷㪚㪄㪈㪇㪐
㪝㪄㪍㪎
㪦㪄㪌㪇
㪞㪄㪎
㪠㪄㪈㪍㪃㩷㪞㪄㪏㪌
㪩㪄㪋㪏
㪩㪄㪋㪏
㪠㪄㪈㪍㪃㩷㪚㪄㪈㪇㪐㪃㩷㪭㪄㪏㪍
㪪㪄㪈㪏㪎
㪪㪄㪈㪏㪎
㪞㪄㪎㪃㩷㪞㪄㪏㪌㪃㩷㪣㪄㪏㪉
㪞㪄㪎㪃㩷㪞㪄㪏㪌
㪪㪄㪈㪏㪏
㪪㪄㪈㪏㪏
㪢㪄㪎㪊㪃㩷㪣㪄㪏㪉㪃㩷㪞㪄㪏㪌
㪞㪄㪏㪃㩷㪣㪄㪏㪉
㪞㪄㪏㪃㩷㪣㪄㪏㪉
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
151
㪸㪺㪸㫅㫋㪿㫆㫄㫌㫊 㫇㪸㫉㫍㫌㫊 㪺㫉㪸㫊㫊㫀㪺㪼㫇㫊 㫉㫆㪹㫌㫊㫋㫌㫊 㫄㫀㫑㫆㫃㪼㫇㫀㫊㩷㪹㫀㫊㫇㫀㫅㫆㫊㫌㫊
㪙㪼㫉㫐㫏 㪙㪼㫉㫐㫏
㪪㫌㪹㫆㫉㪻㪼㫉㩷㪙㪼㫉㫐㪺㫆㫀㪻㪼㫀 㪙㪼㫉㫐㪺㫀㪻㪸㪼
㪟㫆㫇㫃㫆㫊㫋㪼㫋㪿㫌㫊
㪫㫉㪸㪺㪿㫀㪺㪿㫋㪿㫐㫀㪻㪸㪼
㪤㫆㫅㫆㪺㪼㫅㫋㫉㫀㫊 㪤㫆㫅㫆㪺㪼㫅㫋㫉㫀㫊
㪤㫆㫅㫆㪺㪼㫅㫋㫉㫀㪻㪸㪼
㪛㫀㫉㪼㫋㫄㫌㫊 㪛㫀㫉㪼㫋㫄㫌㫊
㪛㫀㫉㪼㫋㫄㫀㪻㪸㪼
㪘㫅㫆㫇㫃㫆㪾㪸㫊㫋㪼㫉
㪌㪏 㪋㪉 㪋㪍
㪤 㪤 㪤
㫊㫇㫃㪼㫅㪻㪼㫅㫊 㫊㫇㫃㪼㫅㪻㪼㫅㫊
㫄㪼㪻㫀㫋㪼㫉㫉㪸㫅㪼㫌㫊
㪌㪇
㪋㪏
㪝 㪥㪝㪈
㪜 㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪉㪪㪤㩷㪂㩷㪋㪍㪘
㪋㪍㪘
㪌㪇
㪝 㪥㪝㪈
㪋㪍
㪋㪇㪘㩷㪂㩷㪉㩷㫊㪸㫋㪼㫃㫃㫀㫋㪼㪻㩷㪺㪿㫉㫆㫄㪅
㪋㪏 㪋㪎
㪝
㪋㪏
㪌㪤㩷㪂㩷㪏㪪㪤㩷㪂㩷㪊㪋㪘
㪋㪤㩷㪂㩷㪏㪪㪤㩷㪂㩷㪊㪍㪘
㪉㪪㪫㩷㪂㩷㪋㪍㪘
㪋㪏㪘 㪉㪪㪫㩷㪂㩷㪋㪍㪘
㪋㪏 㪋㪏
㪎㪇㫧
㪌㪇
㪋㪏
㪞 㪥㪝㪉
㪟 㪠 㪘㪾㪄 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㪥㪦㪩㫊 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪋㪏
㪍㪇
㪍㪇
㪋㪏
㪋㪏
㪍㪇
㪍㪇
㪌㪇
㪌㪇
㪋㪏
㪌㪇
㪞 㪥㪝㪉
㪋㪍
㪉
㪈㪅㪎㪁㩷㪝㪚㪤
㪟 㪠 㪘㪾㪄 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㪥㪦㪩㫊 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪌㪍㩷㪤㪆㪪㪤㪆㪪㪫㪆㪘㩷㪂㩷㪉㩷㫊㪸㫋㪼㫃㫃㫀㫋㪼㪻㩷㪺㪿㫉㫆㫄㪅
㪌㪇㪘
㪋㪏㪘
㪜 㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪋㪋㪄㪋㪍 㪉㩷㫄㪸㪺㫉㫆㪅㩷㪂㩷㪋㪉㪄㪋㪋㩷㫅㫆㫉㫄㪸㫃
㪋㪏
㪤
㪤
㫁㪸㫇㫆㫅㫀㪺㪸 㫁㪸㫇㫆㫅㫀㪺㪸
㪤
㪤
㪛 㪉㫅
㪌㪇
㪚 㪪㪼㫏
㪋㪏
㪤
㪛 㪉㫅
㪤
㪚 㪪㪼㫏
㪸㫉㪾㪼㫅㫋㪼㫌㫊
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㫊㫇㪅㩷㪚
㪺㫆㫉㫅㫌㫋㪸
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㪹㫆㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷 㪪㫌㪹㫆㫉㪻㪼㫉㩷㪫㫉㪸㪺㪿㫀㪺㪿㫋㪿㫐㫆㫀㪻㪼㫀 㪘㫅㫆㫇㫃㫆㪾㪸㫊㫋㪼㫉㫀㪻㪸㪼
㪫㪸㪹㫃㪼㩷㪍㪅㪊㪇㩷㩷㪦㫉㪻㪼㫉㩷㪙㪜㪩㪰㪚㪠㪝㪦㪩㪤㪜㪪
㪤㪼㫃㪸㫄㫇㪿㪸㪼㫊 㪤㪼㫃㪸㫄㫇㪿㪸㪼㫊 㪧㫆㫉㫆㫄㫀㫋㫉㪸 㪪㪺㫆㫇㪼㫃㫆㪹㪼㫉㫐㫏 㪪㪺㫆㫇㪼㫃㫆㪾㪸㪻㫌㫊
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪝㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷 㪤㪼㫃㪸㫄㫇㪿㪸㫀㪻㪸㪼
㪫㪸㪹㫃㪼㩷㪍㪅㪉㪐㩷㩷㪦㫉㪻㪼㫉㩷㪪㪫㪜㪧㪟㪘㪥㪦㪙㪜㪩㪰㪚㪠㪝㪦㪩㪤㪜㪪㩷㩷
㪡㪸㫇㪸㫅㩷㩿㪪㫌㫉㫌㪾㪸㩷㪙㪸㫐㪀
㪡㪸㫇㪸㫅㩷㩿㪪㫌㫉㫌㪾㪸㩷㪙㪸㫐㪀
㪡㪸㫇㪸㫅㩷㩿㪚㪿㫀㪹㪸㪀
㪘㫋㫃㪸㫅㫋㫀㪺
㪘㫋㫃㪸㫅㫋㫀㪺
㪬㪪㪘㩷㩿㫆㪽㪽㩷㪚㪘㪀
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪬㪪㪘㩷㩿㫆㪽㪽㩷㪚㪘㪀
㪬㪪㪘㩷㩿㫆㪽㪽㩷㪚㪘㪀
㪬㪪㪘㩷㩿㫆㪽㪽㩷㪚㪘㪀
㪬㪪㪘㩷㩿㫆㪽㪽㩷㪚㪘㪀
㪬㪪㪘㩷㩿㫆㪽㪽㩷㪚㪘㪀
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪯㪈㪯㪉㪰㪃㩷㪘㪚㪥㪔㪋㪏 㪡㪸㫇㪸㫅㩷㩿㪠㫑㫌㩷㪧㪼㫅㫀㫅㫊㫌㫃㪸㪀
㪯㪈㪯㪈㪯㪉㪯㪉㪃㩷㪘㪚㪥㪔㪋㪏 㪡㪸㫇㪸㫅㩷㩿㪠㫑㫌㩷㪧㪼㫅㫀㫅㫊㫌㫃㪸㪀
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪌㪇
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪯㪰㪃㩷㪘㪚㪥㪔㪋㪏
㪯㪰㪃㩷㪘㪚㪥㪔㪋㪋
㪯㪰㪃㩷㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪋㪏
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪦㪄㪋㪊
㪦㪄㪋㪊㪃㩷㪦㪄㪋㪏
㪤㪄㪈㪇㪋
㪤㪄㪈㪇㪋
㪘㪄㪍㪎
㪧㪄㪎㪋
㪧㪄㪎㪋
㪚㪄㪋㪍
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
㪚㪄㪋㪍㪃㩷㪚㪄㪋㪏
㪚㪄㪋㪍㪃㩷㪚㪄㪋㪏
㪚㪄㪋㪍
㪚㪄㪋㪏
㪚㪄㪋㪍
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
152
㪸㪻㫊㪺㪼㫅㫊㫀㫆㫅㫀㫊 㫁㪸㪺㫆㪹㫌㫊 㫉㫌㪹㫉㫌㫄
㪱㪼㫌㫊 㪱㪼㫌㫊
㪱㪼㫀㪻㪸㪼
㪘㫃㫃㫆㪺㫐㫋㫋㫌㫊
㪽㪸㪹㪼㫉 㪽㪸㪹㪼㫉
㫍㪼㫉㫉㫌㪺㫆㫊㫌㫊
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㪹㫆㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷 㪪㫌㪹㫆㫉㪻㪼㫉㩷㪱㪼㫀㫆㫀㪻㪼㫀 㪦㫉㪼㫆㫊㫆㫄㪸㫋㫀㪻㪸㪼
㪫㪸㪹㫃㪼㩷㪍㪅㪊㪈㩷㩷㪦㫉㪻㪼㫉㩷㪱㪜㪠㪝㪦㪩㪤㪜㪪
㪟㫆㫃㫆㪺㪼㫅㫋㫉㫌㫊 㪤㫐㫉㫀㫇㫉㫀㫊㫋㫀㫊 㪪㪸㫉㪾㫆㪺㪼㫅㫋㫉㫆㫅
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㪹㫆㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷 㪪㫌㪹㫆㫉㪻㪼㫉㩷㪟㫆㫃㫆㪺㪼㫅㫋㫉㫆㫀㪻㪼㫀 㪟㫆㫃㫆㪺㪼㫅㫋㫉㫀㪻㪸㪼
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪘㪻㫀㫆㫉㫐㫏㩷㫉㫌㪹㪼㫉
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪫㪸㪹㫃㪼㩷㪍㪅㪊㪇㩷㩷㪦㫉㪻㪼㫉㩷㪙㪜㪩㪰㪚㪠㪝㪦㪩㪤㪜㪪㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀
㪋㪋 㪋㪉
㪝
㪋㪉
㪛 㪉㫅
㪋㪏
㪜 㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪈㪪㪫㩷㪂㩷㪋㪈㪘
㪋㪋㪘
㪋㪉㪘
㪋㪉
㪋㪋
㪋㪉
㪝 㪥㪝㪈
㪋㪏
㪋㪊
㪋㪋
㪋㪉
㪞 㪥㪝㪉
㪋㪏
㪋㪏
㪞 㪥㪝㪉
㪎㪏 㪋㪏
㪝 㪥㪝㪈
㪋㪏 㪋㪏㪘
㪜 㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪌㪇
㪛 㪉㫅
㪤
㪚 㪪㪼㫏
㪚 㪪㪼㫏
㪉
㪉
㪟 㪠 㪘㪾㪄 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㪥㪦㪩㫊 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪈㪅㪊㩷㪝㪛㪃㩷㪈㪅㪏㩷㪙㪝㪘
㪟 㪠 㪘㪾㪄 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㪥㪦㪩㫊 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪠㫋㪸㫃㫐㩷㩿㪧㪸㫃㪼㫉㫄㫆㪀
㪡㪸㫇㪸㫅㩷㩿㪟㫆㫂㫂㪸㫀㪻㫆㪀
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪡㪸㫇㪸㫅㩷㩿㪰㪸㫂㫌㫊㪿㫀㫄㪸㩷㪠㫊㪅㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪩㪥㪃㩷㪪㪧㪩㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪚㪜㪃㩷㪩㪥㪀
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪰㩷㪺㪿㫉㫆㫄㪅㪃㩷㪘㪚㪥㪔㪋㪍 㪠㫋㪸㫃㫐㩷㩿㪧㪸㫃㪼㫉㫄㫆㪀
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪏
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪘㪚㪥㪔㪋㪏
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪭㪄㪍㪋
㪭㪄㪌㪎㪃㩷㪭㪄㪍㪋
㪪㪄㪈㪋㪇
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
㪘㪄㪍㪎
㪞㪄㪈㪉
㪞㪄㪈㪉㪃㩷㪞㪄㪏㪌㪃㩷㪟㪄㪈㪊
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
153
㫊㫇㪅 㫊㫇㪅
㫈㫌㪸㪻㫉㪸㪺㫌㫊 㫈㫌㪸㪻㫉㪸㪺㫌㫊 㫀㫅㪺㫆㫅㫊㫋㪸㫅㫊 㪸㪺㫌㫃㪼㪸㫋㫌㫊 㪸㪺㫌㫃㪼㪸㫋㫌㫊 㪸㪺㫌㫃㪼㪸㫋㫌㫊㩷㪸㪺㫌㫃㪼㪸㫋㫌㫊 㪸㪺㫌㫃㪼㪸㫋㫌㫊㩷㫄㫀㪺㫉㫆㪺㪼㫇㪿㪸㫃㫌㫊 㫎㪿㪼㪸㫋㫃㪸㫅㪻㫀 㫇㫃㪸㫋㫐㪾㪸㫊㫋㪼㫉 㫇㫌㫅㪾㫀㫋㫀㫌㫊 㫇㫌㫅㪾㫀㫋㫀㫌㫊 㫇㫌㫅㪾㫀㫋㫀㫌㫊 㫇㫌㫅㪾㫀㫋㫀㫌㫊 㫊㫀㫅㪼㫅㫊㫀㫊 㫋㫐㫄㪼㫅㫊㫀㫊
㪛㫆㫉㫐㫀㪺㪿㫋㪿㫐㫊 㪥㪼㫉㫆㫇㪿㫀㫊 㪪㫐㫅㪾㫅㪸㫋㪿㫌㫊 㪪㫐㫅㪾㫅㪸㫋㪿㫌㫊
㩷㩷㩷㪪㫐㫅㪾㫅㪸㫋㪿㫀㫅㪸㪼
㪟㫀㫇㫇㫆㪺㪸㫄㫇㫌㫊㩷 㪟㫀㫇㫇㫆㪺㪸㫄㫇㫌㫊㩷 㪟㫀㫇㫇㫆㪺㪸㫄㫇㫌㫊㩷 㪟㫀㫇㫇㫆㪺㪸㫄㫇㫌㫊㩷
㪪㫐㫅㪾㫅㪸㫋㪿㫀㪻㪸㪼 㩷㩷㩷㪟㫀㫇㫇㫆㪺㪸㫄㫇㫀㫅㪸㪼
㪤㪸㪺㫉㫆㫉㪸㫄㫇㪿㫆㫊㫌㫊 㪤㪸㪺㫉㫆㫉㪸㫄㫇㪿㫆㫊㫌㫊
㪹㫆㪸㫁㪸 㫆㫇㪿㫀㪻㫀㫆㫅 㪸㪹㪸㫊㫋㪼㫉 㫋㫐㫇㪿㫃㪼
㪾㫌㫋㫋㫌㫃㪸㫋㫌㫊 㪿㫀㫇㫇㫆㪺㪸㫄㫇㫌㫊 㪿㫀㫇㫇㫆㪺㪸㫄㫇㫌㫊 㪖 㫉㪸㫄㫌㫃㫆㫊㫌㫊
㪾㫉㪸㪺㫀㫃㫀㫊 㫊㪺㫆㫃㫆㫇㪸㫏
㪪㫌㪹㫆㫉㪻㪼㫉㩷㪪㫐㫅㪾㫅㪸㫋㪿㫆㫀㪻㪼㫀 㪤㪸㪺㫉㫆㫉㪸㫄㫇㪿㫆㫊㫀㪻㪸㪼
㪘㫇㪼㫃㫋㪼㫊 㪘㫇㪼㫃㫋㪼㫊 㪚㫌㫃㪸㪼㪸 㪞㪸㫊㫋㪼㫉㫆㫊㫋㪼㫌㫊 㪞㪸㫊㫋㪼㫉㫆㫊㫋㪼㫌㫊 㪞㪸㫊㫋㪼㫉㫆㫊㫋㪼㫌㫊 㪞㪸㫊㫋㪼㫉㫆㫊㫋㪼㫌㫊 㪞㪸㫊㫋㪼㫉㫆㫊㫋㪼㫌㫊 㪧㫌㫅㪾㫀㫋㫀㫌㫊 㪧㫌㫅㪾㫀㫋㫀㫌㫊 㪧㫌㫅㪾㫀㫋㫀㫌㫊 㪧㫌㫅㪾㫀㫋㫀㫌㫊 㪧㫌㫅㪾㫀㫋㫀㫌㫊 㪧㫌㫅㪾㫀㫋㫀㫌㫊 㪧㫌㫅㪾㫀㫋㫀㫌㫊 㪧㫌㫅㪾㫀㫋㫀㫌㫊 㪧㫌㫅㪾㫀㫋㫀㫌㫊
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㪹㫆㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷 㪪㫌㪹㫆㫉㪻㪼㫉㩷㪞㪸㫊㫋㪼㫉㫆㫊㫋㪼㫆㫀㪻㪼㫀 㪞㪸㫊㫋㪼㫉㫆㫊㫋㪼㫀㪻㪸㪼
㪫㪸㪹㫃㪼㩷㪍㪅㪊㪉㩷㩷㪦㫉㪻㪼㫉㩷㪞㪘㪪㪫㪜㪩㪦㪪㪫㪜㪠㪝㪦㪩㪤㪜㪪㩷
㪤㫀㪺㫉㫆㫇㪿㫀㫊
㪿㫀㫇㫇㫆㪺㪸㫄㫇㫌㫊
㫁㪸㫇㫆㫅㫀㪺㫌㫊 㫊㪸㪾㫀㪽㫌㪼
㪤㫌㫊㪸㫊㪿㫀㫋㫆㫄㫀㫐㫆 㪤㫌㫊㪸㫊㪿㫀㫋㫆㫄㫀㫐㫆
㪢㫀㫋㪸㫅㫆㫋㫆㫄㫀㫐㫆 㪢㫀㫋㪸㫅㫆㫋㫆㫄㫀㫐㫆
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪋㪏 㪋㪏㪘
㪝㪃㩷㪤
㪌㪏 㪌㪇㩷㪤㪆㪪㪤㩷㪂㩷㪏㪪㪫 㪋㪋 㪋㪋㪘 㪋㪋 㪋㪋㪘
㪤 㪤 㪤
㪊㪍 㪋㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪉㪉㪘
㪋㪋 㪉㪤㩷㪂㩷㪋㪉㪘
㪋㪏 㪈㪇㪪㪫㩷㪂㩷㪊㪏㪘
㪝㪃㩷㪤
㪋㪋 㪉㩷㪤㪆㪪㪤㩷㪂㩷㪋㪉㪘
㪋㪋
㪋㪋
㪈㪇㪏
㪋㪋
㪋㪏
㪋㪍
㪋㪏
㪋㪍
㪋㪏
㪤
㪋㪏
㪋㪏 㪋㪏㪘 㪋㪏 㪋㪏㪘
㪋㪉 㪉㪤㩷㪂㩷㪏㩷㪪㪤㪆㪪㪫㩷㪂㩷㪊㪉㪘
㪌㪋
㪋㪋
㪋㪋
㪈㪈㪍
㪌㪇
㪋㪏
㪋㪍
㪌㪏
㪋㪍
㪋㪏
㪋㪏
㪌㪉
㪍㪋
㪍㪋
㪌㪋
㪋㪉 㪈㪉㩷㪤㪆㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪉㪇㪘 㪋㪉 㪈㪉㩷㪤㪆㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪉㪇㪘
㪌㪏
㪌㪇
㪍㪋
㪋㪉 㪏㩷㪤㪆㪪㪤㩷㪂㩷㪏㪪㪫㩷㪂㩷㪉㪍㪘
㪌㪋
㪎㪇 㪎㪍 㪌㪉
㪋㪉 㪈㪉㩷㪤㪆㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪉㪇㪘
㪍㪏
㪎㪇
㪌㪉
㪍㪏
㪍㪏
㪎㪍
㪌㪋
㪋㪉 㪉㪤㩷㪂㩷㪏㩷㪪㪤㪆㪪㪫㩷㪂㩷㪊㪉㪘
㪤
㪝
㪋㪉 㪈㪍㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪈㪋㪘 㪋㪉 㪈㪋㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪏㪪㪫㩷㪂㩷㪏㪘
㪝㪃㩷㪤 㪝㪃㩷㪤
㪋㪉
㪋㪉 㪋㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪊㪉㩷㪪㪫㪆㪘
㪌㪏 㪌㪏
㪋㪉 㪈㪍㩷㪤㪆㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪈㪍㪘 㪋㪉 㪈㪍㩷㪤㪆㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪈㪍㪘 㪝㪃㩷㪤
㪍㪉
㪋㪉 㪏㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪈㪋㪪㪫㩷㪂㩷㪏㪘
㪝㪃㩷㪤
㪌㪋
㪋㪉 㪍㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪊㪇㩷㪪㪫㪆㪘
㪌㪋
㪋㪍 㪏㪪㪤㩷䋫㩷㪊㪏㪘
㪝㪃㩷㪤
㪎㪏
㪎㪎
㪝 㪞 㪥㪝㪈 㪥㪝㪉
㪝㪃㩷㪤
㪋㪍 㪈㪉㪤㩷㪂㩷㪈㪐㪪㪤㩷㪂㩷㪈㪌㩷㪪㪫㪆㪘 㪋㪍 㪈㪉㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪈㪋㩷㪪㪫㪆㪘
㪜 㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪝
㪛 㪉㫅
㪤
㪚 㪪㪼㫏
㪋
㪉㪄㪋
㪊
㪉
㪉
㪉
㪉
㪉
㪉
㪈㪅㪈㩷㪝㪚㪤
㪈㪅㪇㩷㪝㪚㪤
㪊㪅㪍㩷㪝㪚㪤
㪈㪅㪇㩷㪝㪚㪤
㪇㪅㪐㩷㪝㪚㪤
㩿㪈㪅㪉㩷㪝㪚㪤㪀
㩿㪈㪅㪋㩷㪙㪝㪘㪀
㪈㪅㪊㩷㪝㪠㪘㪃㩷㪈㪅㪊㩷㪙㪝㪘
㩿㪈㪅㪉㩷㪙㪝㪘㪀
㪟 㪠 㪘㪾㪄 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㪥㪦㪩㫊 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪬㪪㪘㩷㩿㪥㪰㪀
㪬㪪㪘㩷㩿㪤㪜㪀
㪬㪪㪘㩷㩿㪤㪜㪀
㪢 㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪞㪼㫉㫄㪸㫅㫐 㪡㪸㫇㪸㫅㩷㩿㪞㫀㪽㫌㪀
㪘㪚㪥㪔㪋㪉
㪬㪪㪘㩷㩿㪤㪜㪀
㪫㪿㪸㫀㫃㪸㫅㪻
㪠㫋㪸㫃㫐㩷㩿㪧㪸㫃㪼㫉㫄㫆㪀
㪠㫋㪸㫃㫐㩷㩿㪧㪸㫃㪼㫉㫄㫆㪀
㪠㫋㪸㫃㫐㩷㩿㪭㪼㫅㫀㪺㪼㪀
㪠㫋㪸㫃㫐㩷㩿㪭㪼㫅㫀㪺㪼㪀
㪡㪸㫇㪸㫅㩷㩿㪪㫌㫉㫌㪾㪸㩷㪙㪸㫐㪀
㪡㪸㫇㪸㫅㩷㩿㪪㫌㫉㫌㪾㪸㩷㪙㪸㫐㪀
㪡㪸㫇㪸㫅㩷㩿㪪㪸㫀㫋㪸㫄㪸㪀
㪡㪸㫇㪸㫅
㪡㪸㫇㪸㫅
㪡㪸㫇㪸㫅㩷㩿㪝㫌㫂㫌㫀㪀㩷
㪡㪸㫇㪸㫅㩷㩿㪟㫆㫂㫂㪸㫀㪻㫆㪀
㪡㪸㫇㪸㫅
㪞㪼㫉㫄㪸㫅㫐
㪘㪚㪥㪔㪋㪋㪃㩷㫄㪸㫉㫀㫅㪼 㪠㫋㪸㫃㫐㩷㩿㪭㪼㫅㫀㪺㪼㪀
㪘㪚㪥㪔㪋㪋㪃㩷㫄㪸㫉㫀㫅㪼 㪠㫋㪸㫃㫐㩷㩿㪭㪼㫅㫀㪺㪼㪀
㪋㪯㪃㩷㪽㫉㪼㫊㪿㩷㫎㪸㫋㪼㫉 㪠㫋㪸㫃㫐㩷㩿㪭㪼㫅㫀㪺㪼㪀
㪘㪚㪥㪔㪋㪉
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪋
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪉
㪘㪚㪥㪔㪋㪉
㪘㪚㪥㪔㪋㪉
㪘㪚㪥㪔㪋㪉
㪘㪚㪥㪔㪋㪉
㪘㪚㪥㪔㪋㪉
㪘㪚㪥㪔㪋㪉
㪩㫌㫊㫊㫀㪸
㪯㪯㪆㪯㪰㪃㩷㪘㪚㪥㪔㪋㪉 㪬㪪㪘㩷㩿㪤㪜㪀
㪘㪚㪥㪔㪋㪉
㪯㪯㪆㪯㪰㪃㩷㪘㪚㪥㪔㪋㪉 㪡㪸㫇㪸㫅㩷㩿㪝㫌㫂㫌㫀㪀
㪘㪚㪥㪔㪋㪉
㪯㪯㪆㪯㪰㪃㩷㪘㪚㪥㪔㪋㪉 㪬㪪㪘㩷㩿㪤㪜㪀
㪘㪚㪥㪔㪋㪍
㪱㪱㪃㩷㪘㪚㪥㪔㪋㪍
㪱㪮㪃㩷㪘㪚㪥㪔㪋㪍
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪭㪄㪎㪇
㪭㪄㪎㪇
㪭㪄㪎㪇
㪛 㪄㪉㪇
㪭㪄㪌㪍
㪭㪄㪌㪍
㪭㪄㪎㪇
㪭㪄㪎㪇
㪤㪄㪈㪇㪎
㪤㪄㪈㪇㪎
㪪㪄㪈㪊㪋
㪤㪄㪐㪋
㪤㪄㪐㪋
㪤㪄㪐㪊㪃㩷㪤㪄㪐㪋
㪪㪄㪈㪊㪋
㪤㪄㪐㪋
㪢㪄㪎㪌
㪚㪄 㪌 㪇
㪭㪄㪎㪉
㪚㪄㪌㪇㪃㩷㪧㪄㪐㪎
㪤㪄㪐㪊
㪤㪄㪐㪊㪃㩷㪤㪄㪐㪋㪃㩷㪧㪄㪐㪎
㪢㪄㪎㪌㪃㩷㪭㪄㪏㪍
㪚㪄㪌㪇㪃㩷㪟㪄㪈㪊㪃㩷㪧㪄㪐㪎
㪚㪄㪌㪇㪃㩷㪟㪄㪈㪊㪃㩷㪟㪄㪋㪇
㪚㪄㪌㪇㪃㩷㪟㪄㪈㪊
㪚㪄 㪌 㪇
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
154
㪺㫉㫐㫇㫋㫆㪺㪼㫅㫋㫉㫌㫊 㫄㪸㫅㪾㫃㪸㪼 㫇㪸㪺㫀㪽㫀㪺㫀 㪻㫀㪻㪸㪺㫋㫐㫃㫌㫊 㫅㫆㫋㪸㫋㫌㫊 㫇㫃㪼㪺㫋㫉㫆㪻㫆㫅 㫇㫆㫉㫆㫊㫀㫊㫊㫀㫄㫌㫊 㫄㪸㪺㫌㫃㫆㫊㪸 㫄㪸㪺㫌㫃㫆㫊㪸 㫅㪸㫋㫋㪼㫉㪼㫉㫀
㪤㪸㪺㫉㫆㪾㫅㪸㫋㪿㫌㫊 㪤㪸㪺㫉㫆㪾㫅㪸㫋㪿㫌㫊 㪤㪸㪺㫉㫆㪾㫅㪸㫋㪿㫌㫊 㪤㪸㪺㫉㫆㪾㫅㪸㫋㪿㫌㫊 㪤㪸㪺㫉㫆㪾㫅㪸㫋㪿㫌㫊 㪤㪸㪺㫉㫆㪾㫅㪸㫋㪿㫌㫊 㪤㪸㫊㫋㪸㪺㪼㫄㪹㪼㫃㫌㫊 㪤㪸㫊㫋㪸㪺㪼㫄㪹㪼㫃㫌㫊 㪤㪸㫊㫋㪸㪺㪼㫄㪹㪼㫃㫌㫊 㪪㫀㫅㫆㪹㪻㪼㫃㫃㪸㩷 㪪㫀㫅㫆㪹㪻㪼㫃㫃㪸㩷 㪪㫀㫅㫆㪹㪻㪼㫃㫃㪸㩷
㪸㪺㫌㫃㪼㪸㫋㫌㫄 㪸㪺㫌㫃㪼㪸㫋㫌㫄 㪸㪺㫌㫃㪼㪸㫋㫌㫄 㪸㪺㫌㫃㪼㪸㫋㫌㫄 㫇㪸㫅㪺㪸㫃㫌㫊 㫇㪸㫅㪺㪸㫃㫌㫊 㪸㫉㫄㪸㫋㫌㫊 㪸㫉㫄㪸㫋㫌㫊 㪸㫉㫄㪸㫋㫌㫊 㫊㫀㫅㪼㫅㫊㫀㫊 㫊㫀㫅㪼㫅㫊㫀㫊 㫊㫀㫅㪼㫅㫊㫀㫊
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㪹㫆㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷 㪪㫌㪹㫆㫉㪻㪼㫉㩷㪤㪸㫊㫋㪸㪺㪼㫄㪹㪼㫃㫆㫀㪻㪼㫀 㪤㪸㫊㫋㪸㪺㪼㫄㪹㪼㫃㫀㪻㪸㪼
㪎㪏
㪏㪋 㪏㪍
㪍㪏
㪎㪏
㪌㪏
㪌㪏
㪌㪉
㪉 㪉
㪈㪄㪊
㪉
㪉
㪊㪅㪋㩷㪙㪝㪘
㪋㪅㪋㩷㪙㪝㪘
㪟 㪠 㪘㪾㪄 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㪥㪦㪩㫊 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪍㪋 㪍㪉
㪋㪏 㪈㪍㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪏㪪㪫㩷㪂㩷㪈㪏㪘 㪋㪏 㪈㪋㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪉㪏㪘
㪝㪃㩷㪤
㪍㪏 㪍㪎 㪍㪏
㪋㪏 㪈㪍㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪉㪍㪘 㪋㪏 㪈㪌㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪊㪪㪫㩷㪂㩷㪉㪍㪘 㪋㪏 㪈㪍㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪉㪏㪘㩷
㪤㪸㫊㫋㪸㪺㪼㫄㪹㪼㫃㫌㫊㩷㪸㪺㫌㫃㪼㪸㫋㫌㫊 㪝 㪤㪸㫊㫋㪸㪺㪼㫄㪹㪼㫃㫌㫊㩷㪸㪺㫌㫃㪼㪸㫋㫌㫊 㪤 㪤㪸㫊㫋㪸㪺㪼㫄㪹㪼㫃㫌㫊㩷㪸㪺㫌㫃㪼㪸㫋㫌㫊 㪝㪃㩷㪤
㪍㪋
㪋㪏 㪈㪇㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪊㪉㪘 㪋㪏 㪈㪇㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪉㪏㪘
㪎㪇
㪋㪏 㪈㪋㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪈㪋㪪㪫㩷㪂㩷㪏㪘
㪝
㪎㪋
㪌㪏
㪌㪏
㪌㪏
㪍㪏
㪎㪇
㪎㪇
㪍㪏
㪍㪋
㪍㪏
㪎㪏
㪏㪏
㪌㪏
㪌㪏
㪌㪏
㪉
㪉
㪉
㪉
㩿㪈㪅㪏㪁㩷㪝㪛㪀
㪈㪅㪋㩷㪝㪛
㪝 㪞 㪟 㪠 㪥㪝㪈 㪥㪝㪉 㪘㪾㪄 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㪥㪦㪩㫊 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪍㪋 㪍㪉
㪍㪇
㪌㪏
㪝㪃㩷㪤
㪋㪏
㪋㪏 㪈㪇㪤㩷㪂㩷㪊㪏㪘
㪝㪃㩷㪤 㪝
㪋㪏 㪏㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪊㪏㪘 㪋㪏 㪏㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪊㪏㪘
㪤 㪝㪃㩷㪤
㪜 㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪋㪍 㪈㪉㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪉㪇㪪㪫㩷㪂㩷㪏㪘 㪋㪍 㪏㪤㩷㪂㩷㪏㪪㪤㩷㪂㩷㪉㪋㪪㪫㩷㪂㩷㪍㪘
㪝㪃㩷㪤 㪝㪃㩷㪤
㪛 㪉㫅
㪋㪍 㪏㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪊㪉㩷㪪㪫㪆㪘
㪝㪃㩷㪤
㪚 㪪㪼㫏
㪋㪋 㪈㪋㩷㪤㪆㪪㪤㩷㪂㩷㪊㪇㩷㪪㪫㪆㪘
㪝㪃㩷㪤
㪍㪉
㪋㪏 㪈㪇㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪈㪏㪘 㪋㪋 㪏㪤㩷㪂㩷㪈㪇㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪉㪇㪘
㪝㪃㩷㪤
㪝
㪍㪍
㪋㪍 㪏㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪉㪍㩷㪪㪫㪆㪘
㪝㪃㩷㪤
㪌㪏
㪋㪍 㪍㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪊㪋㪘
㪌㪉 㪌㪏
㪝 㪞 㪥㪝㪈 㪥㪝㪉
㪋㪍 㪍㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪊㪋㪘
㪜 㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪋㪍 㪋㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪋㪇㪘
㪛 㪉㫅
㪝㪃㩷㪤
㪚 㪪㪼㫏
㪝
㪤㪸㫊㫋㪸㪺㪼㫄㪹㪼㫃㫌㫊 㪤㪸㫊㫋㪸㪺㪼㫄㪹㪼㫃㫌㫊
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪝㪃㩷㪤
㪫㪸㪹㫃㪼㩷㪍㪅㪊㪋㩷㩷㪦㫉㪻㪼㫉㩷㪪㪰㪥㪙㪩㪘㪥㪚㪟㪠㪝㪦㪩㪤㪜㪪
㪘㫄㫇㪿㫀㪺㪿㫋㪿㫐㫊 㪙㪸㫋㫉㪸㪺㪿㫆㫀㪻㪼㫊 㪙㪸㫋㫉㪸㪺㪿㫆㫀㪻㪼㫊 㪟㪸㫃㫆㪹㪸㫋㫉㪸㪺㪿㫌㫊 㪧㫆㫉㫀㪺㪿㫋㪿㫐㫊 㪧㫆㫉㫀㪺㪿㫋㪿㫐㫊 㪧㫆㫉㫀㪺㪿㫋㪿㫐㫊 㪫㪿㪸㫃㪸㫊㫊㫆㫇㪿㫉㫐㫅㪼 㪫㪿㪸㫃㪸㫊㫊㫆㫇㪿㫉㫐㫅㪼 㪫㪿㪸㫃㪸㫊㫊㫆㫇㪿㫉㫐㫅㪼
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪝㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷 㪙㪸㫋㫉㪸㪺㪿㫆㫀㪻㫀㪻㪸㪼
㪫㪸㪹㫃㪼㩷㪍㪅㪊㪊㩷㩷㪦㫉㪻㪼㫉㩷㪙㪘㪫㪩㪘㪚㪟㪦㪠㪛㪠㪝㪦㪩㪤㪜㪪
㪯㪯㪆㪯㪰
㪯㪰㪃㩷㪘㪚㪥㪔㪋㪏
㪯㪯㪃㩷㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪘㪚㪥㪔㪋㪏 㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪤㪄㪉㪍
㪢㪄㪋㪉
㪥㪄㪈㪊
㪩㪄 㪎 㪍
㪢㪄㪋㪉
㪤㪄㪉㪍
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
㪥㪄㪉㪎 㪚㪄㪈㪇㪍
㪥㪄㪉㪋
㪙㪄㪌㪏㪃㩷㪟㪄㪈㪊
㪥㪄㪉㪍
㪚㪄㪋㪍㪃㩷㪟㪄㪈㪊
㪧 㪄㪊
㪥㪄㪉㪊
㪥㪄㪉㪋
㪥㪄㪉㪋
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
㪚㪿㫀㫅㪸㩷㩿㪟㫌㪹㪼㫀㪀
㪚㪿㫀㫅㪸㩷㩿㪞㫌㫀㫃㫀㫅㪀
㪚㪿㫀㫅㪸㩷㩿㪞㫌㫀㫃㫀㫅㪀
㩿㪘㫊㫀㪸㪀
㪠㫅㪻㫀㪸㩷㩿㪮㪙㪀
㪣㪄 㪌 㪌
㪰 㪄㪈㪌
㪰㪄㪈㪌㪃㩷㪚㪄㪏㪊
㪦㪄㪌㪎
㪤㪄㪉㪏㪃㩷㪛㪄㪊㪋
㪚㪿㫀㫅㪸㩷㩿㪞㫌㪸㫅㪾㪻㫆㫅㪾㪃㩷㪞㫌㫀㫃㫀㫅㪀 㪰㪄㪈㪌
㪠㫅㪻㫀㪸㩷㩿㪮㪙㪀
㪠㫅㪻㫀㪸㩷㩿㪙㫀㪿㪸㫉㪀
㪠㫅㪻㫀㪸㩷㩿㪧㫆㫉㫋㫆㫅㫆㫍㫆㪀
㪠㫅㪻㫀㪸㩷㩿㪟㪸㫉㫐㪸㫅㪸㪀
㪠㫅㪻㫀㪸㩷㩿㪙㫀㪿㪸㫉㪀
㪠㫅㪻㫀㪸㩷㩿㪮㪙㪀
㪢 㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪭㪼㫅㪼㫑㫌㪼㫃㪸 㪙㫉㪸㫑㫀㫃㩷㩿㪩㪥㪀
㪭㪼㫅㪼㫑㫌㪼㫃㪸
㪙㫉㪸㫑㫀㫃㩷㩿㪩㪡㪀
㪭㪼㫅㪼㫑㫌㪼㫃㪸
㪜㪅㩷㪧㪸㪺㫀㪽㫀㪺
㪪㫇㪸㫀㫅㩷㩿㪙㪸㫐㩷㫆㪽㩷㪚㪸㪻㫀㫑㪀
㪧㪸㫅㪸㫄㪸㩷㩿㪧㪸㪺㫀㪽㫀㪺㩷㪺㫆㪸㫊㫋㪀
㪭㪼㫅㪼㫑㫌㪼㫃㪸
㪭㪼㫅㪼㫑㫌㪼㫃㪸
㪢 㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
155
㪤㫆㫅㫆㫇㫋㪼㫉㫌㫊 㪤㫆㫅㫆㫇㫋㪼㫉㫌㫊 㪤㫆㫅㫆㫇㫋㪼㫉㫌㫊 㪤㫆㫅㫆㫇㫋㪼㫉㫌㫊 㪤㫆㫅㫆㫇㫋㪼㫉㫌㫊 㪤㫆㫅㫆㫇㫋㪼㫉㫌㫊 㪦㫇㪿㫀㫊㫋㪼㫉㫅㫆㫅 㪪㫐㫅㪹㫉㪸㫅㪺㪿㫌㫊 㪪㫐㫅㪹㫉㪸㫅㪺㪿㫌㫊 㪪㫐㫅㪹㫉㪸㫅㪺㪿㫌㫊 㪪㫐㫅㪹㫉㪸㫅㪺㪿㫌㫊 㪪㫐㫅㪹㫉㪸㫅㪺㪿㫌㫊 㪪㫐㫅㪹㫉㪸㫅㪺㪿㫌㫊 㪪㫐㫅㪹㫉㪸㫅㪺㪿㫌㫊 㪪㫐㫅㪹㫉㪸㫅㪺㪿㫌㫊 㪪㫐㫅㪹㫉㪸㫅㪺㪿㫌㫊 㪪㫐㫅㪹㫉㪸㫅㪺㪿㫌㫊
㪸㫃㪹㫌㫊 㪸㫃㪹㫌㫊 㪸㫃㪹㫌㫊 㪸㫃㪹㫌㫊 㪺㫌㪺㪿㫀㪸 㪺㫌㪺㪿㫀㪸 㪹㪼㫅㪾㪸㫃㪼㫅㫊㪼 㫄㪸㫉㫄㫆㫉㪸㫋㫌㫊 㫄㪸㫉㫄㫆㫉㪸㫋㫌㫊 㫄㪸㫉㫄㫆㫉㪸㫋㫌㫊 㫄㪸㫉㫄㫆㫉㪸㫋㫌㫊 㫄㪸㫉㫄㫆㫉㪸㫋㫌㫊 㫄㪸㫉㫄㫆㫉㪸㫋㫌㫊 㫄㪸㫉㫄㫆㫉㪸㫋㫌㫊 㫄㪸㫉㫄㫆㫉㪸㫋㫌㫊 㫄㪸㫉㫄㫆㫉㪸㫋㫌㫊 㫄㪸㫉㫄㫆㫉㪸㫋㫌㫊
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㪹㫆㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷 㪪㫌㪹㫆㫉㪻㪼㫉㩷㪪㫐㫅㪹㫉㪸㫅㪺㪿㫆㫀㪻㪼㫀 㪪㫐㫅㪹㫉㪸㫅㪺㪿㫀㪻㪸㪼 㪝㪃㩷㪤
㪚 㪪㪼㫏
㪋㪍 㪌㪉 㪌㪉 㪋㪏 㪋㪏 㪌㪇 㪌㪉 㪌㪋
㪋㪉 㪋㩷㪤㪆㪪㪤㩷㪂㩷㪊㪏㩷㪪㪫㪆㪘 㪋㪍 㪍㩷㪤㪆㪪㪤㩷㪂㩷㪋㪇㩷㪪㪫㪆㪘 㪋㪉 㪋㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪏㪪㪫㩷㪂㩷㪉㪋㪘 㪋㪉 㪋㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪏㪪㪫㩷㪂㩷㪉㪏㪘 㪋㪉 㪋㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪏㪪㪫㩷㪂㩷㪉㪏㪘 㪋㪋 㪋㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪏㪪㪫㩷㪂㩷㪊㪇㪘 㪋㪍 㪋㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪏㪪㪫㩷㪂㩷㪊㪉㪘 㪋㪍 㪍㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪊㪉㪘
㪝㪃㩷㪤
㪋㪏 㪋㪏
㪋㪋 㪋㩷㪤㪆㪪㪤㩷㪂㩷㪋㪇㩷㪪㪫㪆㪘
㪌㪉
㪋㪍 㪍㩷㪤㪆㪪㪤㩷㪂㩷㪋㪇㪘 㪋㪋 㪋㩷㪤㪆㪪㪤㩷㪂㩷㪋㪇㩷㪪㪫㪆㪘
㪋㪍
㪋㪉 㪋㪪㪤㩷㪂㩷㪊㪏㪘
㪝
㪋㪏
㪋㪉 㪉㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪈㪋㪪㪫㩷㪂㩷㪉㪉㪘
㪉㪋
㪉㪋 㪉㪋㪘 㪉㪋
㪉㪋
㪉㪋 㪉㪋㪘
㪉㪋
㪍㪇
㪍㪇
㪌㪏
㪌㪍
㪌㪍
㪍㪇
㪌㪉
㪋㪍
㪍㪉
㪉㪋
㪉㪋
㪉㪋
㪉㪋
㪋
㪉
㪉
㪉
㪌㪅㪍㩷㪝㪛
㪍㪅㪋㩷㪝㪛
㪎㪅㪐㩷㪝㪛
㪍㪅㪍㩷㪝㪛
㪍㪅㪍㪄㪎㪅㪋㩷㪝㪛
㪎㪅㪍㪄㪏㪅㪌㩷㪝㪛
㩿㪈㪅㪊㪁㪃㩷㪈㪅㪍㩷㪝㪛㪀
㪝 㪞 㪟 㪠 㪥㪝㪈 㪥㪝㪉 㪘㪾㪄 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㪥㪦㪩㫊 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪉㪋 㪉㪋㪘
㪜 㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪉㪋 㪉㪋㪘
㪛 㪉㫅
㪝㪃㩷㪤
㪸㫃㪹㪸 㪝 㪘㫄㫇㪿㫀㫇㫅㫆㫌㫊 㪘㫄㫇㪿㫀㫇㫅㫆㫌㫊 㪝㪃㩷㪤 㪪㫐㫅㪹㫉㪸㫅㪺㪿㫌㫊㩷㪹㪼㫅㪾㪸㫃㪼㫅㫊㫀㫊 㪝
㪝㫃㫌㫋㪸㩷㪸㫃㪹㪸
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪫㪸㪹㫃㪼㩷㪍㪅㪊㪋㩷㩷㪦㫉㪻㪼㫉㩷㪪㪰㪥㪙㪩㪘㪥㪚㪟㪠㪝㪦㪩㪤㪜㪪㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪇㪄㪉㩷㪙
㪘㪚㪥㪔㪋㪉
㪘㪚㪥㪔㪉㪋
㪘㪚㪥㪔㪉㪋
㪘㪚㪥㪔㪉㪋
㪘㪚㪥㪔㪉㪋
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪪㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪩㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪪㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪩㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪪㪃㩷㪞㪦㪃㩷㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪚㪜㪃㩷㪪㪧㪀
㪘㫉㪾㪼㫅㫋㫀㫅㪸
㪠㫅㪻㫀㪸㩷㩿㪧㫆㫉㫋㫆㫅㫆㫍㫆㪀
㪠㫅㪻㫀㪸㩷㩿㪘㫊㫊㪸㫄㪀
㪠㫅㪻㫀㪸㩷㩿㪮㪙㪀
㪠㫅㪻㫀㪸㩷㩿㪤㪸㫅㫀㫇㫌㫉㪀
㪚㪿㫀㫅㪸
㪚㪿㫀㫅㪸㩷㩿㪟㫌㪹㪼㫀㪀
㪡㪸㫇㪸㫅㩷㩿㪥㪸㫉㪸㪀
㪢 㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪫㪄㪎㪌
㪫㪄㪎㪌
㪫㪄㪎㪌
㪫㪄㪎㪌
㪫㪄㪎㪌
㪫㪄㪎㪌
㪝㪄 㪌 㪎
㪝㪄 㪌 㪎
㪝㪄 㪌 㪎
㪪㪄㪈㪇㪃㩷㪚㪄㪐㪏
㪥㪄㪈㪊
㪩㪄 㪍 㪋
㪢㪄㪋㪍
㪩㪄㪌㪍㪃㩷㪩㪄㪍㪋
㪣㪄㪍㪈㪃㩷㪰㪄㪈㪉
㪣㪄㪊㪐㪃㩷㪚㪄㪏㪊
㪢㪄㪍㪌
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
156
㫍㫆㫃㫀㫋㪸㫅㫊
㪟㪼㫃㫀㪺㫆㫃㪼㫅㫌㫊 㪟㪼㫃㫀㪺㫆㫃㪼㫅㫌㫊 㪟㪼㫃㫀㪺㫆㫃㪼㫅㫌㫊 㪪㪼㪹㪸㫊㫋㪼㫊 㪪㪼㪹㪸㫊㫋㪼㫊 㪪㪼㪹㪸㫊㫋㪼㫊 㪪㪼㪹㪸㫊㫋㪼㫊 㪪㪼㪹㪸㫊㫋㪼㫊 㪪㪼㪹㪸㫊㫋㪼㫊 㪪㪼㪹㪸㫊㫋㪼㫊 㪪㪼㪹㪸㫊㫋㪼㫊 㪪㪼㪹㪸㫊㫋㪼㫊 㪪㪼㪹㪸㫊㫋㪼㫊 㪪㪼㪹㪸㫊㫋㪼㫊 㪪㪼㪹㪸㫊㫋㪼㫊 㪪㪼㪹㪸㫊㫋㪼㫊 㪪㪼㪹㪸㫊㫋㪼㫊 㪪㪼㪹㪸㫊㫋㪼㫊 㪪㪼㪹㪸㫊㫋㪼㫊 㪪㪼㪹㪸㫊㫋㪼㫊 㪪㪼㪹㪸㫊㫋㪼㫊 㪪㪼㪹㪸㫊㫋㫀㫊㪺㫌㫊 㪪㪼㪹㪸㫊㫋㫀㫊㪺㫌㫊 㪪㪼㪹㪸㫊㫋㫀㫊㪺㫌㫊 㪪㪼㪹㪸㫊㫋㫀㫊㪺㫌㫊 㪪㪼㪹㪸㫊㫋㫆㫃㫆㪹㫌㫊
㪻㪸㪺㫋㫐㫃㫆㫇㫋㪼㫉㫌㫊 㪻㪸㪺㫋㫐㫃㫆㫇㫋㪼㫉㫌㫊 㪿㫀㫃㪾㪼㫅㪻㫆㫉㪽㫀 㪿㫌㪹㪹㫊㫀 㪿㫌㪹㪹㫊㫀 㫀㫅㪼㫉㫄㫀㫊 㫀㫅㪼㫉㫄㫀㫊 㫀㫉㪸㪺㫌㫅㪻㫌㫊 㫁㫆㫐㫅㪼㫉㫀 㫃㫆㫅㪾㫀㫊㫇㫀㫅㫀㫊 㫄㪸㫋㫊㫌㪹㪸㫉㪸㪼 㫆㪹㫃㫆㫅㪾㫌㫊 㫇㪸㪺㪿㫐㪺㪼㫇㪿㪸㫃㫌㫊㩷㫅㫌㪻㫌㫊 㫊㪺㪿㫃㪼㪾㪼㫃㫀 㫊㪺㪿㫃㪼㪾㪼㫃㫀 㫊㪺㪿㫃㪼㪾㪼㫃㫀 㫊㪺㪿㫃㪼㪾㪼㫃㫀 㫋㪸㪺㫑㪸㫅㫆㫎㫊㫂㫀㫀 㫋㪿㫆㫄㫇㫊㫆㫅㫀 㫋㫉㫀㫍㫀㫋㫋㪸㫋㫌㫊 㫍㫌㫃㫇㪼㫊 㪸㫃㪹㫆㪽㪸㫊㪺㫀㪸㫋㫌㫊 㫄㪸㫉㫄㫆㫉㪸㫋㫌㫊 㫄㪸㫉㫄㫆㫉㪸㫋㫌㫊 㫄㪸㫉㫄㫆㫉㪸㫋㫌㫊 㫄㪸㪺㫉㫆㪺㪿㫀㫉
㪪㫌㪹㫆㫉㪻㪼㫉㩷㪪㪺㫆㫉㫇㪸㪼㫅㫆㫀㪻㪼㫀 㪪㪺㫆㫉㫇㪸㪼㫅㫀㪻㪸㪼㩷 㩷㩷㩷㪪㪼㪹㪸㫊㫋㫀㫅㪸㪼
㪛㪸㪺㫋㫐㫃㫆㫇㫋㪼㫉㫌㫊
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㪹㫆㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷 㪪㫌㪹㫆㫉㪻㪼㫉㩷㪛㪸㪺㫋㫐㫃㫆㫇㫋㪼㫉㫆㫀㪻㪼㫀 㪛㪸㪺㫋㫐㫃㫆㫇㫋㪼㫉㫀㪻㪸㪼
㪫㪸㪹㫃㪼㩷㪍㪅㪊㪌㩷㩷㪦㫉㪻㪼㫉㩷㪪㪚㪦㪩㪧㪘㪜㪥㪠㪝㪦㪩㪤㪜㪪㩷 㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪊㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪋㪊㪘 㪉㪤㩷㪂㩷㪋㪍㪘
㪋㪏 㪋㪏
㪋㪏 㪋㪍
㪝㪃㩷㪤 㪤
㪉㪤㩷㪂㩷㪋㪍㪘
㪌㪇
㪌㪇
㪌㪇
㪌㪇
㪉㪪㪤㩷㪂㩷㪋㪍㪘
㪋㪏
㪌㪇 㪌㪇
㪌㪇
㪌㪇
㪌㪇
㪌㪇
㪉㪤㩷㪂㩷㪋㪍㪘
㪉㪤㩷㪂㩷㪋㪍㪘
㪋㪏
㪌㪇
㪌㪇
㪋㪏
㪉㪤㩷㪂㩷㪋㪍㪘
㪋㪏
㪌㪇
㪌㪇
㪌㪉
㪌㪇
㪌㪉
㪌㪇
㪌㪇
㪌㪉
㪉㪪㪤㩷㪂㩷㪋㪍㪘
㪋㪏
㪝 㪤
㪌㪇
㪌㪇
㪌㪉
㪌㪇
㪌㪇
㪌㪇
㪌㪇
㪌㪇
㪋㪏
㪉㪤㩷㪂㩷㪋㪍㪘
㪋㪏
㪤
㪉㪤㩷㪂㩷㪋㪍㪘
㪉㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪋㪋㪘
㪋㪏
㪋㪏 㪝㪃㩷㪤
㪉㪤㩷㪂㩷㪋㪍㪘
㪋㪏
㪉㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪋㪋㪘
㪋㪏 㪤
㪉㪤㩷㪂㩷㪋㪍㪘
㪋㪏
㪉㪪㪤㩷㪂㩷㪋㪍㪘
㪋㪏
㪝㪃㩷㪤
㪋㪏
㪌㪇
㪉
㪈㪅㪍㪁㩷㪝㪚㪤
㩿㪈㪅㪏㪁㩷㪝㪚㪤㪀
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪦㫂㪿㫆㫋㫊㫂㩷㪪㪼㪸
㪢㫆㫉㪼㪸㩷㩿㪙㫌㫊㪸㫅㪀
㪚㪿㫀㫅㪸
㪡㪸㫇㪸㫅
㪡㪸㫇㪸㫅
㪡㪸㫇㪸㫅㩷㩿㪟㫆㫂㫂㪸㫀㪻㫆㪀
㪡㪸㫇㪸㫅㩷㩿㪟㫆㫂㫂㪸㫀㪻㫆㪀
㪡㪸㫇㪸㫅㩷㩿㪪㪸㫅㫉㫀㫂㫌㪀
㪡㪸㫇㪸㫅㩷㩿㪟㫆㫂㫂㪸㫀㪻㫆㪀
㪚㪿㫀㫅㪸㩷㩿㪪㪿㪸㫅㪻㫆㫅㪾㪀
㪚㪿㫀㫅㪸㩷㩿㪣㫀㪸㫆㫅㫀㫅㪾㪀
㪡㪸㫇㪸㫅㩷㩿㪪㪸㫅㫉㫀㫂㫌㪀
㪡㪸㫇㪸㫅
㪡㪸㫇㪸㫅㩷㩿㪪㪸㫅㫉㫀㫂㫌㪀
㪡㪸㫇㪸㫅㩷㩿㪪㪸㫅㫉㫀㫂㫌㪀
㪡㪸㫇㪸㫅
㪡㪸㫇㪸㫅
㪡㪸㫇㪸㫅㩷㩿㪠㫑㫌㪀
㪌㪇
㪉㪤㩷㪂㩷㪋㪍㪘
㪡㪸㫇㪸㫅
㪡㪸㫇㪸㫅
㪚㪿㫀㫅㪸
㪡㪸㫇㪸㫅㩷㩿㪪㪸㫅㫉㫀㫂㫌㪀
㪡㪸㫇㪸㫅
㪠㫋㪸㫃㫐㩷㩿㪧㪸㫃㪼㫉㫄㫆㪀
㪠㫋㪸㫃㫐㩷㩿㪧㪸㫃㪼㫉㫄㫆㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪩㪡㪀
㪢 㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪉㪤㩷㪂㩷㪋㪍㪘
㪌㪇
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪋㪏
㩿㪈㪅㪐㪁㩷㪝㪚㪤㪀
㪟 㪠 㪘㪾㪄 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㪥㪦㪩㫊 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪋㪏
㪌㪇
㪌㪇
㪌㪊
㪌㪇
㪌㪉
㪌㪇
㪌㪇
㪏㪋
㪞 㪥㪝㪉
㪮㪅㪥㪅㩷㪧㪸㪺㫀㪽㫀㪺 㪌㪇
㪌㪇
㪌㪈
㪌㪇
㪌㪇
㪌㪇
㪎㪏
㪝 㪥㪝㪈
㪋㪏
㪋㪏
㪋㪤㩷㪂㩷㪋㪉㪘
㪋㪍
㪊㪤㩷㪂㩷㪋㪋㪘
㪉㪤㩷㪂㩷㪋㪍㪘
㪈㪍㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪈㪉㪘
㪜 㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪝㪃㩷㪤
㪤
㪤
㪋㪎 㪋㪏
㪋㪏
㪝㪃㩷㪤
㪋㪏
㪛 㪉㫅
㪝㪃㩷㪤
㪚 㪪㪼㫏
㪠㪄㪈㪉
㪧㪄㪎㪇
㪧㪄㪋
㪥㪄㪊㪊㪃㩷㪰㪄㪉㪉㪃㩷㪦㪄㪋㪏
㪰㪄㪉㪉
㪠㪄㪋
㪠㪄㪋
㪠㪄㪋
㪪㪄㪈㪌
㪰㪄㪈㪏㪃㩷㪮㪄㪏
㪱㪄㪈㪌
㪠㪄㪋
㪥㪄㪊㪊
㪠㪄㪋
㪠㪄㪋
㪰㪄㪉㪉
㪥㪄㪊㪊
㪠㪄㪋
㪠㪄㪈㪉
㪰㪄㪉㪉㪃㩷㪦㪄㪋㪏
㪥㪄㪊㪊
㪱㪄㪉㪊
㪠㪄㪋㪃㩷㪥㪄㪊㪊
㪰㪄㪉㪉
㪭㪄㪌㪋
㪭㪄㪌㪋
㪙㪄㪏㪍
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
157
㫉㫌㪹㫉㫀㫇㫀㫅㫅㫀㫊 㫉㫌㪹㫉㫀㫇㫀㫅㫅㫀㫊 㫉㫌㪹㫉㫀㫇㫀㫅㫅㫀㫊 㫅㫀㪾㪼㫉
㪧㪸㫉㪸㪺㪼㫅㫋㫉㫆㫇㫆㪾㫆㫅 㪧㪸㫉㪸㪺㪼㫅㫋㫉㫆㫇㫆㪾㫆㫅 㪧㪸㫉㪸㪺㪼㫅㫋㫉㫆㫇㫆㪾㫆㫅 㪫㪼㫋㫉㪸㫉㫆㪾㪼
㩷㩷㩷㪫㪼㫋㫉㪸㫉㫆㪾㫀㫅㪸㪼㩷
㫑㪼㪹㫉㪸 㫃㫌㫅㫌㫃㪸㫋㪸 㫃㫌㫅㫌㫃㪸㫋㪸 㫉㪸㪻㫀㪸㫋㪸 㫍㫆㫃㫀㫋㪸㫅㫊 㪹㫉㪸㫊㫀㫃㫀㪼㫅㫊㫀㫊 㫀㫊㫋㪿㫄㪼㫅㫊㫀㫊 㫀㫑㪼㫅㫊㫀㫊 㫄㫀㫆㫊㫋㫆㫄㪸 㫄㫀㫆㫊㫋㫆㫄㪸 㫅㫆㫋㪸㫋㪸 㫅㫆㫋㪸㫋㪸 㫅㫆㫋㪸㫋㪸 㫆㫅㪸㫉㫀㪸 㫆㫅㪸㫉㫀㪸 㫆㫅㪸㫉㫀㪸 㫆㫅㪸㫉㫀㪸 㫆㫅㪸㫉㫀㪸 㫇㫆㫉㪺㫌㫊 㫇㫆㫉㪺㫌㫊 㫇㫆㫉㪺㫌㫊 㫇㫆㫉㪺㫌㫊 㫊㪺㫉㫆㪽㪸 㫃㫀㫋㫋㫆㫉㪸㫃㫀㫊 㫃㫀㫋㫋㫆㫉㪸㫃㫀㫊 㪺㫀㫉㫉㫆㫊㪸 㪾㫀㪹㪹㫆㫊㪸
㪛㪼㫅㪻㫉㫆㪺㪿㫀㫉㫌㫊 㪧㫋㪼㫉㫆㫀㫊 㪧㫋㪼㫉㫆㫀㫊 㪧㫋㪼㫉㫆㫀㫊 㪧㫋㪼㫉㫆㫀㫊 㪪㪺㫆㫉㫇㪸㪼㫅㪸 㪪㪺㫆㫉㫇㪸㪼㫅㪸 㪪㪺㫆㫉㫇㪸㪼㫅㪸 㪪㪺㫆㫉㫇㪸㪼㫅㪸 㪪㪺㫆㫉㫇㪸㪼㫅㪸 㪪㪺㫆㫉㫇㪸㪼㫅㪸 㪪㪺㫆㫉㫇㪸㪼㫅㪸 㪪㪺㫆㫉㫇㪸㪼㫅㪸 㪪㪺㫆㫉㫇㪸㪼㫅㪸 㪪㪺㫆㫉㫇㪸㪼㫅㪸 㪪㪺㫆㫉㫇㪸㪼㫅㪸 㪪㪺㫆㫉㫇㪸㪼㫅㪸 㪪㪺㫆㫉㫇㪸㪼㫅㪸 㪪㪺㫆㫉㫇㪸㪼㫅㪸 㪪㪺㫆㫉㫇㪸㪼㫅㪸 㪪㪺㫆㫉㫇㪸㪼㫅㪸 㪪㪺㫆㫉㫇㪸㪼㫅㪸 㪪㪺㫆㫉㫇㪸㪼㫅㪸 㪪㪺㫆㫉㫇㪸㪼㫅㫆㪻㪼㫊 㪪㪺㫆㫉㫇㪸㪼㫅㫆㪻㪼㫊 㪪㪺㫆㫉㫇㪸㪼㫅㫆㫇㫊㫀㫊 㪪㪺㫆㫉㫇㪸㪼㫅㫆㫇㫊㫀㫊
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㪹㫆㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷 㩷㩷㩷㪪㪺㫆㫉㫇㪸㪼㫅㫀㫅㪸㪼㩷
㪟㫐㫇㫆㪻㫐㫋㪼㫊 㪟㫐㫇㫆㪻㫐㫋㪼㫊 㪟㫐㫇㫆㪻㫐㫋㪼㫊
㪺㫀㫉㫉㪿㫆㫊㪸
㫌㫊㫋㫌㫃㪸㫋㪸 㫅㪼㪾㫃㪼㪺㫋㪸㩷㫅㪼㪾㫃㪼㪺㫋㪸 㫅㪼㪾㫃㪼㪺㫋㪸㩷㫅㪼㪾㫃㪼㪺㫋㪸 㫅㪼㪾㫃㪼㪺㫋㪸㩷㫅㪼㪾㫃㪼㪺㫋㪸 㫅㪼㪾㫃㪼㪺㫋㪸㩷㫅㪼㪾㫃㪼㪺㫋㪸 㫅㪼㪾㫃㪼㪺㫋㪸㩷㫅㪼㪾㫃㪼㪺㫋㪸
㫅㪼㪾㫃㪼㪺㫋㪸㩷㫄㫀㫆㫊㫋㫆㫄㪸 㫅㪼㪾㫃㪼㪺㫋㪸㩷㫄㫀㫆㫊㫋㫆㫄㪸
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪫㪸㪹㫃㪼㩷㪍㪅㪊㪌㩷㩷㪦㫉㪻㪼㫉㩷㪪㪚㪦㪩㪧㪘㪜㪥㪠㪝㪦㪩㪤㪜㪪㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀
㪎㪪㪤㩷㪂㩷㪊㪉㪪㪫㩷㪂㩷㪏㪘 㪍㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪈㪏㪪㪫㩷㪂㩷㪈㪇㪘 㪎㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪈㪏㪪㪫㩷㪂㩷㪏㪘
㪋㪎 㪋㪏 㪋㪎
㪋㪏 㪋㪎 㪌㪇
㪤 㪤
㪋㪏
㪋㪏
㪊㪤㩷㪂㩷㪋㪋㪘
㪉㪤㩷㪂㩷㪋㪍㪘
㪋㩷㪤㪆㪪㪤㩷㪂㩷㪋㪋㩷㪪㪫㪆㪘
㪈㪇㪪㪫㩷㪂㩷㪊㪏㪘
㪋㪪㪫㩷㪂㩷㪋㪋㪘
㪊㪉㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪉㪘
㪋㪏
㪊㪉㩷㪤㪆㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪉㪘
㪉㪇㪪㪫㩷㪂㩷㪉㪍㪘
㪋㪍 㪊㪍
㪈㪍㩷㪤㪆㪪㪤㩷㪂㩷㪉㪍㪘
㪋㪉 㪊㪍
㪍㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪉㪍㪘
㪍㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪉㪍㪘
㪋㪉 㪋㪉
㪋㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪉㪍㪘
㪋㪉
㪋㪏
㪍㪪㪤㩷㪂㩷㪊㪉㪪㪫㩷㪂㩷㪈㪇㪘
㪋㪏
㪉㪋㪪㪫㩷㪂㩷㪈㪇㪘 㪈㪇㩷㪤㪆㪪㪤㩷㪂㩷㪉㪋㩷㪪㪫㪆㪘
㪊㪋 㪊㪋
㪉㪍㪪㪫㩷㪂㩷㪏㪘
㪊㪋
㪌㪇
㪌㪇
㪌㪉
㪋㪏
㪋㪏
㪍㪏
㪍㪏
㪋㪍
㪌㪏
㪋㪏
㪋㪏
㪋㪏
㪍㪏
㪍㪏
㪌㪋
㪌㪋
㪋㪋
㪊㪋
㪊㪋
㪌㪇
㪌㪇
㪌㪏
㪌㪉
㪎㪇
㪎㪇
㪍㪍
㪌㪏
㪌㪏
㪌㪏
㪌㪏
㪌㪍
㪏㪍
㪏㪍
㪏㪍
㪏㪍
㪌㪏
㪍㪇
㪎㪍
㪌㪍
㪍㪇
㪍㪇
㪍㪉
㪏㪉 㪌㪋
㪌㪋
㪍㪇
㪌㪏 㪎㪏
㪋㪏
㪍㪪㪤㩷㪂㩷㪉㪉㪪㪫㩷㪂㩷㪉㪇㪘
㪍㪤㩷㪂㩷㪏㪪㪤㩷㪂㩷㪉㪍㩷㪪㪫㪆㪘
㪉㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪊㪉㩷㪪㪫㪆㪘
㪌㪇
㪌㪉
㪌㪇
㪍㪇
㪌㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㩿㪉㪅㪈㪁㩷㪝㪚㪤㪀
㪈㪅㪏㩷㪝㪛
㩿㪉㪅㪏㩷㪝㪚㪤㪀
㪈㪅㪈㩷㪝㪛
㪉㪅㪏㩷㪙㪝㪘
㪉㪅㪇㩷㪝㪠㪘
㪝 㪞 㪟 㪠 㪥㪝㪈 㪥㪝㪉 㪘㪾㪄 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㪥㪦㪩㫊 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪋㪏
㪝
㪤
㪝
㪤
㪝㪃㩷㪤
㪝㪃㩷㪤
㪋㪇
㪝㪃㩷㪤 㪋㪏
㪋㪍
㪉㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪊㪍㪘
㪋㪏 㪝㪃㩷㪤
㪋㪤㩷㪂㩷㪏㪪㪫㩷㪂㩷㪊㪍㪘
㪋㪏
㪉㪤㩷㪂㩷㪈㪉㪪㪫㩷㪂㩷㪊㪋㪘
㪋㪏
㪝㪃㩷㪤
㪋㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪊㪏㪘 㪉㪤㩷㪂㩷㪈㪇㪪㪤㩷㪂㩷㪈㪏㩷㪪㪫㩷㪂㩷㪈㪏㪘
㪋㪏
㪜 㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪋㪏
㪛 㪉㫅
㪝㪃㩷㪤
㪝㪃㩷㪤
㪚 㪪㪼㫏
㪚㪄㪉㪊
㪤㪄㪈㪈㪏
㪤㪄㪈㪈㪏
㪘㪄㪌㪋㪃㩷㪫㪄㪍
㪫㪄㪊㪋
㪪㪄㪈㪐㪌
㪚㪄㪊㪈
㪫㪄㪊㪋㪃㩷㪚㪄㪐
㪚㪄㪈㪍㪃㩷㪭㪄㪏㪍
㪰㪄㪉㪉
㪥㪄㪊㪊
㪥㪄㪊㪊
㪤㪄㪈㪈㪏
㪤㪄㪈㪈㪏
㪪㪄㪈㪐㪌
㪫㪄㪊㪋
㪚㪄㪈㪍
㪤㪄㪈㪈㪏
㪰㪄㪉㪉
㪰㪄㪉㪉
㪚㪄㪎㪏
㪚㪄㪎㪏㪃㩷㪟㪄㪈㪊
㪚㪄㪉㪊㪃㩷㪟㪄㪋㪈
㪚㪄㪉㪊
㪚㪄㪉㪊
㪥㪄㪊㪊
㪚㪄㪉㪊
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
㪪㪅㩷㪡㪸㫇㪸㫅 㪠㫅㪻㫀㪸㩷㩿㪧㫆㫉㫋㫆㫅㫆㫍㫆㪀
㪥㪄㪈㪊
㪬㪄㪋㪈
㪬㪄㪋㪈
㪡㪸㫇㪸㫅㩷㩿㪚㪿㫀㪹㪸㪃 㪢㪸㫅㪸㪾㪸㫎㪸㪀 㪘㪄㪌㪋㪃㩷㪦㪄㪋㪏
㪠㫅㪻㫆㫅㪼㫊㫀㪸㩷㩿㪡㪸㫍㪸㪀
㪡㪸㫇㪸㫅㩷㩿㪪㫌㫉㫌㪾㪸㩷㪙㪸㫐㪀
㪡㪸㫇㪸㫅㩷㩿㪪㫌㫉㫌㪾㪸㩷㪙㪸㫐㪀
㪡㪸㫇㪸㫅㩷㩿㪚㪿㫀㪹㪸㪀
㪠㫋㪸㫃㫐
㪚㫉㫆㪸㫋㫀㪸
㪠㫋㪸㫃㫐㩷㩿㪩㫆㫄㪸㪀
㪪㫇㪸㫀㫅㩷㩿㪤㪸㫃㪸㪾㪸㪀
㪠㫋㪸㫃㫐㩷㩿㪪㪼㫅㫀㪾㪸㫃㫃㫀㪸㪀
㪡㪸㫇㪸㫅
㪡㪸㫇㪸㫅
㪡㪸㫇㪸㫅
㪡㪸㫇㪸㫅㩷㩿㪪㫌㫉㫌㪾㪸㩷㪙㪸㫐㪀
㪡㪸㫇㪸㫅㩷㩿㪪㫌㫉㫌㪾㪸㩷㪙㪸㫐㪀
㪚㫉㫆㪸㫋㫀㪸
㪪㫇㪸㫀㫅㩷㩿㪤㪸㫃㪸㪾㪸㪀
㪠㫋㪸㫃㫐㩷㩿㪪㪼㫅㫀㪾㪸㫃㫃㫀㪸㪀
㪡㪸㫇㪸㫅㩷㩿㪪㫌㫉㫌㪾㪸㩷㪙㪸㫐㪀
㪡㪸㫇㪸㫅
㪡㪸㫇㪸㫅
㪙㫉㪸㫑㫀㫃㩷㩿㪩㪡㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪩㪡㪀
㪠㫅㪻㫆㫅㪼㫊㫀㪸㩷㩿㪡㪸㫍㪸㪀
㪠㫅㪻㫆㫅㪼㫊㫀㪸㩷㩿㪡㪸㫍㪸㪀
㪠㫅㪻㫆㫅㪼㫊㫀㪸㩷㩿㪡㪸㫍㪸㪀
㪡㪸㫇㪸㫅
㪠㫅㪻㫆㫅㪼㫊㫀㪸㩷㩿㪡㪸㫍㪸㪀
㪢 㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪯㪈㪯㪉㪰㪃㩷㪘㪚㪥㪔㪋㪏 㪪㪅㩷㪡㪸㫇㪸㫅
㪯㪈㪯㪈㪯㪉㪯㪉
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
158
㫁㪸㫇㫆㫅㫀㪺㫌㫊
㫀㫅㪻㫀㪺㫌㫊 㫀㫅㪻㫀㪺㫌㫊 㫀㫅㪻㫀㪺㫌㫊 㫀㫅㪻㫀㪺㫌㫊 㫋㫌㪹㪼㫉㪺㫌㫃㪸㫋㫌㫊 㪺㪿㫀㫃㫋㫆㫅㪸㪼
㫊㫇㪅㩷㪉
㪾㫌㫋㫋㪸㫋㪸 㫄㪸㪺㫉㫆㫃㪼㫇㫀㫊 㫊㫇㫀㫅㫆㫊㪸
㫃㫌㪺㪼㫉㫅㫌㫊 㫃㫌㪺㪼㫉㫅㫌㫊 㫃㫌㪺㪼㫉㫅㫌㫊 㫃㫌㪺㪼㫉㫅㫌㫊 㫃㫌㪺㪼㫉㫅㫌㫊 㫇㫌㫅㪺㫋㪸㫋㫌㫊 㫃㪸㫊㫋㫆㫍㫀㫑㪸
㪜㫉㫀㫃㪼㫇㫀㫊 㪜㫉㫀㫃㪼㫇㫀㫊 㪜㫉㫀㫃㪼㫇㫀㫊 㪜㫉㫀㫃㪼㫇㫀㫊
㫑㫆㫅㫀㪽㪼㫉 㫑㫆㫅㫀㪽㪼㫉 㫑㫆㫅㫀㪽㪼㫉 㫑㫆㫅㫀㪽㪼㫉
㪪㫌㪹㫆㫉㪻㪼㫉㩷㪘㫅㫆㫇㫃㫆㫇㫆㫄㪸㫋㫆㫀㪻㪼㫀 㪘㫅㫆㫇㫃㫆㫇㫆㫄㪸㫋㫀㪻㪸㪼㩷
㪠㫅㪼㪾㫆㪺㫀㪸 㪦㫅㫀㪾㫆㪺㫀㪸 㪦㫅㫀㪾㫆㪺㫀㪸 㪧㫃㪸㫋㫐㪺㪼㫇㪿㪸㫃㫌㫊 㪧㫃㪸㫋㫐㪺㪼㫇㪿㪸㫃㫌㫊 㪧㫃㪸㫋㫐㪺㪼㫇㪿㪸㫃㫌㫊 㪧㫃㪸㫋㫐㪺㪼㫇㪿㪸㫃㫌㫊 㪧㫃㪸㫋㫐㪺㪼㫇㪿㪸㫃㫌㫊 㪧㫃㪸㫋㫐㪺㪼㫇㪿㪸㫃㫌㫊 㪫㪿㫐㫊㪸㫅㫆㫇㪿㫉㫐㫊
㪧㫃㪸㫋㫐㪺㪼㫇㪿㪸㫃㫀㪻㪸㪼㩷
㪚㪿㪼㫃㫀㪻㫆㫅㫀㪺㪿㫋㪿㫐㫊 㪚㪿㪼㫃㫀㪻㫆㫅㫀㪺㪿㫋㪿㫐㫊 㪚㪿㪼㫃㫀㪻㫆㫅㫀㪺㪿㫋㪿㫐㫊 㪚㪿㪼㫃㫀㪻㫆㫅㫀㪺㪿㫋㪿㫐㫊 㪚㪿㪼㫃㫀㪻㫆㫅㫀㪺㪿㫋㪿㫐㫊 㪧㫉㫀㫆㫅㫆㫋㫌㫊 㪫㫉㫀㪾㫃㫆㫇㫆㫉㫌㫊
㪪㫌㪹㫆㫉㪻㪼㫉㩷㪧㫃㪸㫋㫐㪺㪼㫇㪿㪸㫃㫆㫀㪻㪼㫀 㪫㫉㫀㪾㫃㫀㪻㪸㪼㩷
㪠㫅㫀㫄㫀㪺㫌㫊
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㪹㫆㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷 㩷㩷㩷㪪㫐㫅㪸㫅㪺㪼㫀㫀㫅㪸㪼㩷
㪫㪿㫐㫊㪸㫅㫆㫇㪿㫉㫐㫊
㫀㫅㪻㫀㪺㫌㫊
㪫㫉㫀㪾㫃㪸㩷㫃㫌㪺㪼㫉㫅㪸 㪫㫉㫀㪾㫃㪸㩷㫃㫌㪺㪼㫉㫅㪸 㪫㫉㫀㪾㫃㪸㩷㫃㫌㪺㪼㫉㫅㪸 㪫㫉㫀㪾㫃㪸㩷㫃㫌㪺㪼㫉㫅㪸 㪫㫉㫀㪾㫃㪸㩷㫃㫌㪺㪼㫉㫅㪸
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪫㪸㪹㫃㪼㩷㪍㪅㪊㪌㩷㩷㪦㫉㪻㪼㫉㩷㪪㪚㪦㪩㪧㪘㪜㪥㪠㪝㪦㪩㪤㪜㪪㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀
㪝
㪊㪉㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪋㪪㪫
㪋㪏
㪉㪉㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪉㪪㪫 㪉㪉㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪈㪪㪫㩷㪂㩷㪈㪘 㪈㪏㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪋㪘 㪈㪏㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪍㪘
㪊㪇 㪊㪇 㪊㪇
㪉㪉㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪋㪘
㪋㪏
㪊㪇
㪋㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪊㪋㪘
㪋㪏
㪈㪇㩷㪤㪆㪪㪤㩷㪂㩷㪊㪏㩷㪪㪫㪆㪘
㪋㪏 㪉㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪊㪍㪘
㪋㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪊㪍㪘
㪋㪏 㪋㪏
㪉㪤㩷㪂㩷㪏㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪊㪍㪘
㪋㪏
㪉㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪋㪇㪘
㪋㪏㪘
㪋㪏 㪋㪏
㪉㪇㪤㩷㪂㩷㪈㪇㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪈㪉㪘
㪋㪏
㪋㪏
㪈㪇㪇㪄㪈㪇㪉 㪍㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪊㪏㪘
㪊㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪊㪏㪘
㪋㪎
㪝㪃㩷㪤
㪉㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪋㪇㪘
㪋㪏 㪋㪏
㪊㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪋㪇㪘
㪋㪏 㪋㪎
㪉㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪋㪉㪘
㪈㪇㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪊㪉㪘
㪜 㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪝㪃㩷㪤
㪋㪏
㪛 㪉㫅
㪝㪃㩷㪤
㪚 㪪㪼㫏
㪌㪇
㪌㪉
㪌㪏
㪌㪏
㪏㪉
㪌㪍
㪌㪇
㪌㪏
㪌㪏
㪌㪏
㪌㪇
㪐㪉
㪋㪏
㪎㪏
㪌㪋
㪈㪇㪇㪄㪈㪇㪉
㪌㪋
㪌㪋
㪌㪉
㪌㪉
㪍㪉
㪌㪋
㪌㪍
㪌㪐
㪍㪇
㪐㪉
㪍㪉
㪍㪇
㪍㪇
㪍㪇
㪌㪍
㪐㪍
㪋㪏
㪏㪋
㪌㪏
㪌㪍
㪌㪍
㪌㪋
㪌㪋
㪍㪋
㪉
㪉
㪉
㪉
㩿㪈㪅㪍㩷㪝㪠㪘㪀
㪝 㪞 㪟 㪠 㪥㪝㪈 㪥㪝㪉 㪘㪾㪄 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㪥㪦㪩㫊 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪥㪅㩷㪧㪸㪺㫀㪽㫀㪺
㪥㪅㩷㪧㪸㪺㫀㪽㫀㪺
㪥㪅㩷㪧㪸㪺㫀㪽㫀㪺
㪥㪅㩷㪧㪸㪺㫀㪽㫀㪺
㪡㪸㫇㪸㫅㩷㩿㪦㫂㫀㫅㪸㫎㪸㪀
㪠㫅㪻㫀㪸㩷㩿㪮㪙㪀
㪠㫅㪻㫀㪸㩷㩿㪦㫉㫀㫊㫊㪸㪀
㪠㫅㪻㫀㪸㩷㩿㪧㫆㫉㫋㫆㫅㫆㫍㫆㪀
㪚㪿㫀㫅㪸㩷㩿㪪㪿㪸㫅㪻㫆㫅㪾㪀
㪚㪿㫀㫅㪸㩷㩿㪪㪿㪸㫅㪻㫆㫅㪾㪀
㪡㪸㫇㪸㫅㩷㩿㪠㫎㪸㫋㪼㪀
㪡㪸㫇㪸㫅㩷㩿㪠㫑㫌㪃㩷㪫㫆㫂㫐㫆㪀
㪡㪸㫇㪸㫅㩷㩿㪠㫑㫌㪀
㪡㪸㫇㪸㫅㩷㩿㪠㫑㫌㪀
㪠㫋㪸㫃㫐㩷㩿㪧㪸㫃㪼㫉㫄㫆㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪩㪡㪀
㪩㫌㫊㫊㫀㪸
㪠㫋㪸㫃㫐㩷㩿㪪㪼㫅㫀㪾㪸㫃㫃㫀㪸㪀
㪠㫋㪸㫃㫐㩷㩿㪪㪼㫅㫀㪾㪸㫃㫃㫀㪸㪀
㪠㫋㪸㫃㫐㩷㩿㪧㪸㫃㪼㫉㫄㫆㪀
㪠㫋㪸㫃㫐㩷㩿㪧㪸㫃㪼㫉㫄㫆㪀
㪡㪸㫇㪸㫅
㪢 㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪠㪄㪉㪈
㪠㪄㪉㪈
㪠㪄㪉㪈
㪠㪄㪉㪈
㪠㪄㪉
㪥㪄㪈㪎
㪚㪄㪍㪈
㪥㪄㪈㪊
㪱㪄㪊㪎
㪢㪄㪐㪍㪃㩷㪟㪄㪋㪈
㪠㪄㪉
㪠㪄㪉
㪠㪄㪉
㪠㪄㪉
㪚㪄㪈㪍
㪙㪄㪏㪍
㪭㪄㪎㪉
㪚㪄㪈㪍
㪚㪄㪈㪍
㪭㪄㪌㪋
㪭㪄㪌㪋
㪥㪄㪊㪊
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
159
㪘㫃㪺㫀㪺㪿㫋㪿㫐㫊 㪘㫉㫋㪼㪻㫀㫌㫊 㪘㫉㫋㪼㪻㫀㫌㫊 㪙㪸㫋㫉㪸㪺㪿㫆㪺㫆㫋㫋㫌㫊 㪙㪸㫋㫉㪸㪺㪿㫆㪺㫆㫋㫋㫌㫊 㪚㫃㫀㫅㫆㪺㫆㫋㫋㫌㫊 㪚㫆㫋㫋㫆㪺㫆㫄㪼㫇㪿㫆㫉㫌㫊 㪚㫆㫋㫋㫆㪺㫆㫄㪼㫇㪿㫆㫉㫌㫊 㪚㫆㫋㫋㫌㫊 㪚㫆㫋㫋㫌㫊 㪚㫆㫋㫋㫌㫊 㪚㫆㫋㫋㫌㫊 㪚㫆㫋㫋㫌㫊 㪚㫆㫋㫋㫌㫊 㪚㫆㫋㫋㫌㫊 㪚㫆㫋㫋㫌㫊 㪚㫆㫋㫋㫌㫊 㪚㫆㫋㫋㫌㫊 㪚㫆㫋㫋㫌㫊
㪪㫌㪹㫆㫉㪻㪼㫉㩷㪚㫆㫋㫋㫆㫀㪻㪼㫀 㪚㫆㫋㫋㫀㪻㪸㪼㩷
㪟㪼㫏㪸㪾㫉㪸㫄㫄㫆㫊 㪟㪼㫏㪸㪾㫉㪸㫄㫄㫆㫊 㪟㪼㫏㪸㪾㫉㪸㫄㫄㫆㫊 㪟㪼㫏㪸㪾㫉㪸㫄㫄㫆㫊 㪟㪼㫏㪸㪾㫉㪸㫄㫄㫆㫊 㪟㪼㫏㪸㪾㫉㪸㫄㫄㫆㫊 㪟㪼㫏㪸㪾㫉㪸㫄㫄㫆㫊 㪟㪼㫏㪸㪾㫉㪸㫄㫄㫆㫊 㪧㫃㪼㫌㫉㫆㪾㫉㪸㫄㫄㫌㫊
㪸㫃㪺㫀㪺㫆㫉㫅㫀㫊 㪽㪼㫅㪼㫊㫋㫉㪸㫃㫀㫊 㫃㪸㫋㪼㫉㪸㫃㫀㫊 㪹㪸㫀㪺㪸㫃㪼㫅㫊㫀㫊 㫄㫌㫃㫋㫀㫉㪸㪻㫀㪸㫋㫌㫊 㪸㫅㪸㫃㫀㫊 㪾㫉㪼㫎㫀㫅㪾㫂㫀㫀 㫀㫅㪼㫉㫄㫀㫊 㪾㫆㪹㫀㫆 㪾㫆㪹㫀㫆 㪾㫆㪹㫀㫆 㪿㪸㫅㪾㫀㫆㫅㪾㪼㫅㫊㫀㫊 㫂㪸㫑㫀㫂㪸 㫅㫆㫑㪸㫎㪸㪼 㫇㪸㫌㫃㫌㫊 㫇㫆㪼㪺㫀㫃㫆㫇㫌㫊 㫇㫆㫃㫃㫌㫏 㫇㫆㫃㫃㫌㫏 㫉㪼㫀㫅㫀㫀
㪸㪾㫉㪸㫄㫄㫌㫊 㪸㪾㫉㪸㫄㫄㫌㫊 㫃㪸㪾㫆㪺㪼㫇㪿㪸㫃㫌㫊 㫆㫋㪸㫂㫀㫀 㫆㫋㪸㫂㫀㫀 㫆㫋㪸㫂㫀㫀 㫆㫋㪸㫂㫀㫀 㫊㫋㪼㫃㫃㪼㫉㫀 㪸㫑㫆㫅㫌㫊
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㪹㫆㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷 㪪㫌㪹㫆㫉㪻㪼㫉㩷㪟㪼㫏㪸㪾㫉㪸㫄㫄㫆㫀㪻㪼㫀 㪟㪼㫏㪸㪾㫉㪸㫄㫄㫀㪻㪸㪼㩷
㫇㫐㪾㫄㪸㪼㫌㫊
㪘㪾㫉㪸㫄㫄㫌㫊 㪘㪾㫉㪸㫄㫄㫌㫊
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪫㪸㪹㫃㪼㩷㪍㪅㪊㪌㩷㩷㪦㫉㪻㪼㫉㩷㪪㪚㪦㪩㪧㪘㪜㪥㪠㪝㪦㪩㪤㪜㪪㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀
㪋㪏 㪋㪏 㪋㪏 㪋㪏
㪤 㪤 㪝㪃㩷㪤
㪋㪏 㪋㪏 㪋㪏
㪝㪃㩷㪤 㪝㪃㩷㪤 㪝
㪈㪉㩷㪤㪆㪪㪤㩷㪂㩷㪊㪍㩷㪪㪫㪆㪘
㪋㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪈㪍㪪㪫㩷㪂㩷㪉㪉㪘
㪈㪇㩷㪤㪆㪪㪤㩷㪂㩷㪊㪏㩷㪪㪫㪆㪘
㪍㪇
㪌㪏
㪌㪏
㪌㪍
㪌㪏
㪋㪏
㪏㩷㪤㪆㪪㪤㩷㪂㩷㪋㪇㪘
㪈㪇㩷㪤㪆㪪㪤㩷㪂㩷㪊㪏㩷㪪㪫㪆㪘
㪋㪏
㪋㪏
㪌㪏
㪌㪋
㪌㪏
㪌㪋
㪌㪏
㪍㪉
㪍㪋
㪍㪏
㪍㪇
㪍㪏
㪍㪏
㪌㪍
㪎㪋
㪍㪋
㪎㪋
㪎㪇
㪍㪉
㪍㪍
㪌㪍
㪏㪉
㪏㪉
㪎㪋
㪌㪍
㪌㪏
㪏㪍
㪏㪇
㪎㪏
㪏㪍
㪎㪍
㪐㪇
㪐㪇
㪎㪋
㪏㪏
㪏㪋
㪐㪍
㪐㪍
㪉
㪋
㪉
㪈㪅㪐㩷㪙㪝㪘
㪈㪅㪌㩷㪝㪛
㩿㪈㪅㪎㪁㩷㪝㪚㪤㪀
㪝 㪞 㪟 㪠 㪥㪝㪈 㪥㪝㪉 㪘㪾㪄 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㪥㪦㪩㫊 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪋㪏
㪝㪃㩷㪤
㪈㪏㩷㪤㪆㪪㪤㩷㪂㩷㪉㪉㩷㪪㪫㪆㪘
㪍㩷㪤㪆㪪㪤㩷㪂㩷㪋㪉㩷㪪㪫㪆㪘
㪋㪏 㪋㪇
㪝 㪝㪃㩷㪤
㪍㩷㪤㪆㪪㪤㩷㪂㩷㪋㪉㩷㪪㪫㪆㪘
㪝㪃㩷㪤
㪈㪇㩷㪤㪆㪪㪤㩷㪂㩷㪊㪏㩷㪪㪫㪆㪘 㪍㩷㪤㪆㪪㪤㩷㪂㩷㪋㪍㪘
㪋㪏
㪝㪃㩷㪤
㪍㪤㩷㪂㩷㪏㪪㪤㩷㪂㩷㪊㪋㩷㪪㪫㪆㪘
㪈㪇㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪊㪉㩷㪪㪫㪆㪘
㪋㪏
㪋㪏
㪤
㪈㪉㪤㩷㪂㩷㪏㪪㪤㩷㪂㩷㪈㪏㪪㪫㩷㪂㩷㪈㪇㪘
㪍㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪊㪍㩷㪪㪫㪆㪘
㪏㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪈㪉㪪㪫㩷㪂㩷㪈㪍㪘
㪈㪇㪤㩷㪂㩷㪈㪇㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪈㪏㪘
㪉㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪋㪇㩷㪪㪫㪆㪘
㪌㪉
㪋㪏
㪝㪃㩷㪤
㪋㪏㪁
㪋㪏
㪈㪏㪤㩷㪂㩷㪏㪪㪤㩷㪂㩷㪈㪉㪪㪫㩷㪂㩷㪈㪇㪘
㪋㪏
㪤
㪋㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪈㪉㪪㪫㩷㪂㩷㪉㪇㪘
㪋㪏
㪝㪃㩷㪤
㪝
㪍㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪈㪍㪪㪫㩷㪂㩷㪍㪘
㪋㪏
㪍㪤㩷㪂㩷㪏㪪㪤㩷㪂㩷㪈㪉㪪㪫㩷㪂㩷㪉㪉㪘 㪍㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪉㪇㪪㪫㩷㪂㩷㪍㪘
㪋㪏
㪍㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪉㪉㪪㪫㩷㪂㩷㪏㪘
㪋㪏 㪋㪏
㪉㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪉㪏㪪㪫㩷㪂㩷㪈㪉㪘
㪋㪏 㪝㪃㩷㪤
㪏㪤㩷㪂㩷㪉㪍㪪㪤㩷㪂㩷㪈㪋㪪㪫
㪏㪤㩷㪂㩷㪉㪍㪪㪤㩷㪂㩷㪈㪋㪪㪫
㪜 㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪋㪏
㪋㪏
㪛 㪉㫅
㪝㪃㩷㪤
㪝㪃㩷㪤
㪚 㪪㪼㫏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪡㪸㫇㪸㫅㩷㩿㪠㫎㪸㫋㪼㪀
㪡㪸㫇㪸㫅㩷㩿㪪㪸㫅㫉㫀㫂㫌㪀
㪡㪸㫇㪸㫅
㪜㫌㫉㫆㫇㪼
㪬㪪㪘㩷㩿㪘㪣㪀
㪡㪸㫇㪸㫅㩷㩿㪟㫆㫂㫂㪸㫀㪻㫆㪀
㪡㪸㫇㪸㫅㩷㩿㪟㫆㫂㫌㫉㫀㫂㫌㪀
㪡㪸㫇㪸㫅㩷㩿㪟㫆㫂㫂㪸㫀㪻㫆㪀
㪧㫆㫃㪸㫅㪻
㪙㫆㫊㫅㫀㪸㪄㪟㪼㫉㫑㪼㪾㫆㫍㫀㫅㪸
㪠㫋㪸㫃㫐㩷㩿㪭㫀㪺㪼㫅㫑㪸㪀
㪩㫌㫊㫊㫀㪸㩷㩿㪣㪸㫂㪼㩷㪙㪸㫀㫂㪸㫃㪀
㪩㫌㫊㫊㫀㪸㩷㩿㪣㪸㫂㪼㩷㪙㪸㫀㫂㪸㫃㪀
㪬㪪㪘㩷㩿㪚㪘㪀
㪩㫌㫊㫊㫀㪸㩷㩿㪣㪸㫂㪼㩷㪙㪸㫀㫂㪸㫃㪀
㪩㫌㫊㫊㫀㪸㩷㩿㪣㪸㫂㪼㩷㪙㪸㫀㫂㪸㫃㪀
㪬㪪㪘㩷㩿㪮㪘㪀
㪬㪪㪘㩷㩿㪮㪘㪀
㪡㪸㫇㪸㫅㩷㩿㪠㫎㪸㫋㪼㪀
㪡㪸㫇㪸㫅㩷㩿㪟㪸㫂㫆㪻㪸㫋㪼㪀
㪡㪸㫇㪸㫅㩷㩿㪟㫆㫂㫂㪸㫀㪻㫆㪀
㪚㪿㫀㫅㪸
㪚㪿㫀㫅㪸㩷㩿㪪㪿㪸㫅㪻㫆㫅㪾㪀
㪚㪿㫀㫅㪸㩷㩿㪣㫀㪸㫆㫅㫀㫅㪾㪀
㪡㪸㫇㪸㫅㩷㩿㪰㪸㫄㪸㪾㫌㪺㪿㫀㪀
㪡㪸㫇㪸㫅㩷㩿㪟㫆㫂㫂㪸㫀㪻㫆㪀
㪚㪿㫀㫅㪸㩷㩿㪣㫀㪸㫆㫅㫀㫅㪾㪀
㪡㪸㫇㪸㫅㩷㩿㪟㫆㫂㫂㪸㫀㪻㫆㪀
㪢 㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪘㪄㪋
㪠㪄㪎
㪘㪄㪋
㪪㪄㪈㪇㪎
㪞㪄㪊㪉
㪘㪄㪈
㪘㪄㪋
㪘㪄㪈
㪪㪄㪈㪇㪎
㪙㪄㪉㪋
㪭㪄㪍㪉
㪪㪄㪈㪍㪏
㪪㪄㪈㪍㪏
㪚㪄㪋㪍㪃㩷㪟㪄㪈㪊
㪪㪄㪈㪍㪎㪃㩷㪪㪄㪈㪍㪏
㪪㪄㪈㪍㪎㪃㩷㪪㪄㪈㪍㪏
㪠㪄㪎
㪠㪄㪎
㪫㪄㪍㪋
㪤㪄㪌㪈
㪤㪄㪌㪈
㪮㪄㪏
㪰㪄㪈㪏
㪱㪄㪈㪌
㪥㪄㪊㪍㪃㩷㪦㪄㪋㪏
㪤㪄㪌㪈
㪱㪄㪈㪌
㪤㪄㪌㪈
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
160
㪚㫆㫄㪼㫇㪿㫆㫉㫌㫊 㪚㫆㫄㪼㫇㪿㫆㫉㫌㫊
㪚㫆㫄㪼㫇㪿㫆㫉㫀㪻㪸㪼
㪞㫐㫄㫅㫆㪺㪸㫅㫋㪿㫌㫊 㪞㫐㫄㫅㫆㪺㪸㫅㫋㪿㫌㫊 㪞㫐㫄㫅㫆㪺㪸㫅㫋㪿㫌㫊 㪠㪺㪼㫃㫌㫊 㪣㪼㫆㪺㫆㫋㫋㫌㫊 㪤㫐㫆㫏㫆㪺㪼㫇㪿㪸㫃㫌㫊 㪤㫐㫆㫏㫆㪺㪼㫇㪿㪸㫃㫌㫊 㪤㫐㫆㫏㫆㪺㪼㫇㪿㪸㫃㫌㫊 㪤㫐㫆㫏㫆㪺㪼㫇㪿㪸㫃㫌㫊 㪤㫐㫆㫏㫆㪺㪼㫇㪿㪸㫃㫌㫊 㪤㫐㫆㫏㫆㪺㪼㫇㪿㪸㫃㫌㫊 㪤㫐㫆㫏㫆㪺㪼㫇㪿㪸㫃㫌㫊 㪦㪺㫐㫅㪼㪺㫋㪼㫊 㪦㫃㫀㪾㫆㪺㫆㫋㫋㫌㫊 㪦㫃㫀㪾㫆㪺㫆㫋㫋㫌㫊 㪧㪸㫉㪸㪺㫆㫋㫋㫌㫊 㪧㫊㪼㫌㪻㫆㪹㫃㪼㫅㫅㫀㫌㫊 㪧㫊㪼㫌㪻㫆㪹㫃㪼㫅㫅㫀㫌㫊 㪧㫊㪼㫌㪻㫆㪹㫃㪼㫅㫅㫀㫌㫊 㪧㫊㪼㫌㪻㫆㪹㫃㪼㫅㫅㫀㫌㫊 㪧㫊㪼㫌㪻㫆㪹㫃㪼㫅㫅㫀㫌㫊 㪫㫉㪸㪺㪿㫀㪻㪼㫉㫄㫀㫊 㪫㫉㪸㪺㪿㫀㪻㪼㫉㫄㫀㫊 㪫㫉㫀㪾㫃㫆㫇㫊㫀㫊
㪹㪸㫀㪺㪸㫃㪼㫅㫊㫀㫊 㪻㫐㪹㫆㫎㫊㫂㫀
㫀㫅㫋㪼㫉㫄㪼㪻㫀㫌㫊 㫋㫉㫀㪺㫌㫊㫇㫀㫊 㫋㫉㫀㪺㫌㫊㫇㫀㫊 㪺㪸㫋㪸㫇㪿㫉㪸㪺㫋㫌㫊 㫂㪼㫊㫊㫃㪼㫉㫀㫀 㪹㫉㪸㫅㪻㫋㫀 㫁㪸㫆㫂 㫆㪺㪿㫆㫋㪼㫅㫊㫀㫊 㫊㪺㫆㫉㫇㫀㫌㫊 㫊㪺㫆㫉㫇㫀㫌㫊 㫊㪺㫆㫉㫇㫀㫌㫊 㫊㫋㪼㫃㫃㪼㫉㫀 㫄㪸㫊㪺㪿㪸㫃㫀㫊 㫄㪸㪺㫌㫃㫆㫊㫌㫊 㫊㫅㫐㪻㪼㫉㫀 㫂㫅㪼㫉㫀㫀 㪺㫆㫋㫋㫆㫀㪻㪼㫊 㫄㪸㫉㫄㫆㫉㪸㫋㫌㫊㩷 㫄㪸㫉㫄㫆㫉㪸㫋㫌㫊㩷 㫄㪸㫉㫄㫆㫉㪸㫋㫌㫊㩷 㫇㪼㫉㪺㫆㫀㪻㪼㫊 㪽㪸㫊㪺㫀㪸㫋㫌㫊 㪽㪸㫊㪺㫀㪸㫋㫌㫊 㫈㫌㪸㪻㫉㫀㪺㫆㫉㫅㫀㫊
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㪹㫆㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷
㪫㫉㫐㪾㫃㫆㫇㫊㫀㫊
㪫㫐㫇㪼㩷㪘 㪫㫐㫇㪼㩷㪙 㪫㫐㫇㪼㩷㪚
㪚㫆㫋㫋㫌㫊
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪫㪸㪹㫃㪼㩷㪍㪅㪊㪌㩷㩷㪦㫉㪻㪼㫉㩷㪪㪚㪦㪩㪧㪘㪜㪥㪠㪝㪦㪩㪤㪜㪪㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀
㪊㪤㩷㪂㩷㪈㪪㪤㩷㪂㩷㪋㪉㪘
㪋㪍
㪉㪤㩷㪂㩷㪉㪇㪪㪫㩷㪂㩷㪉㪇㪘
㪋㪋 㪉㪋 㪋㪉
㪝㪃㩷㪤 㪝㪃㩷㪤 㪝㪃㩷㪤
㪋㪏
㪝
㪝
㪉㪋㩷㪤㪆㪪㪤㩷㪂㩷㪈㪍㩷㪪㪫㪆㪘
㪋㪇
㪏㪤㩷㪂㩷㪋㪇㩷㪪㪫㪆㪘 㪉㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪋㪋㩷㪪㪫㪆㪘
㪋㪏 㪋㪏
㪊㪉
㪈㪉㩷㪤㪆㪪㪤㩷㪂㩷㪉㪇㪪㪫
㪈㪇㪪㪤㩷㪂㩷㪊㪍㩷㪪㪫㪆㪘㩷
㪋㪍 㪋㪇
㪋㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪊㪍㩷㪪㪫㪆㪘
㪋㪍
㪤
㪋㪤㩷㪂㩷㪎㪪㪤㩷㪂㩷㪊㪌㩷㪪㪫㪆㪘
㪋㪍
㪋㪤㩷㪂㩷㪏㪪㪤㩷㪂㩷㪊㪋㩷㪪㪫㪆㪘
㪋㪤㩷㪂㩷㪏㪪㪤㩷㪂㩷㪊㪋㩷㪪㪫㪆㪘
㪏㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪊㪋㩷㪪㪫㪆㪘
㪈㪋㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪈㪋㪘
㪝
㪋㪍
㪋㪏 㪋㪍
㪝㪃㩷㪤
㪋㪏㪁
㪝
㪋㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪊㪍㩷㪪㪫㪆㪘
㪍㩷㪤㪆㪪㪤㩷㪂㩷㪊㪋㩷㪪㪫㪆㪘
㪋㪇 㪋㪍
㪍㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪉㪏㪘
㪊㪏 㪝㪃㩷㪤
㪏㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪉㪋㪘 㪎㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪉㪍㪘
㪊㪍 㪊㪎
㪈㪍㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪋㪘
㪉㪤㩷㪂㩷㪈㪏㪪㪫㩷㪂㩷㪉㪋㪘
㪋㪏
㪍㩷㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪊㪏㩷㪪㪫㪆㪘
㪈㪉㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪈㪍㩷㪪㪫㪆㪘
㪋㪤㩷㪂㩷㪋㪉㪘
㪋㪇
㪉㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪊㪏㩷㪪㪫㪆㪘
㪋㪍
㪜 㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪋㪋
㪛 㪉㫅
㪤
㪤
㪝㪃㩷㪤
㪚 㪪㪼㫏
㪌㪉
㪌㪍
㪋㪋
㪍㪇
㪍㪋
㪌㪍
㪌㪍
㪌㪎
㪌㪏
㪌㪏
㪍㪉
㪎㪍
㪌㪍
㪋㪍
㪋㪍
㪋㪍
㪋㪍
㪋㪋
㪋㪋
㪋㪍
㪌㪏
㪍㪋
㪌㪇
㪌㪇
㪌㪇
㪍㪋
㪏㪉
㪋㪏
㪋㪏
㪋㪏
㪍㪋
㪋㪋
㪍㪋
㪌㪇
㪌㪇
㪋
㪈㪅㪏㩷㪝㪠㪘
㪈㪅㪈㩷㪝㪚㪤
㪈㪅㪎㩷㪝㪠㪘
㪈㪅㪌㩷㪝㪛
㩿㪈㪅㪌㩷㪝㪠㪘㪀
㪈㪅㪌㩷㪝㪛
㪝 㪞 㪟 㪠 㪥㪝㪈 㪥㪝㪉 㪘㪾㪄 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㪥㪦㪩㫊 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪉
㪘㪚㪥㪔㪋㪉
㪘㪚㪥㪔㪋㪉
㪘㪚㪥㪔㪋㪋
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪩㪄㪈㪈㪊
㪩㪄㪈㪇㪊
㪪㪄㪈㪍㪎㪃㩷㪪㪄㪈㪍㪏
㪫㪄㪍㪋
㪣㪄㪏㪎
㪣㪄㪏㪎㪃㩷㪟㪄㪋㪇
㪫㪄㪍㪋
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
㪘㪄㪎㪉
㪪㪄㪈㪍㪎㪃㩷㪪㪄㪈㪍㪏
㪚㪄㪋㪍
㪠㪄㪎
㪘㪄㪎㪉
㪤㪄㪍㪎
㪭㪄㪎㪉
㪭㪄㪎㪉
㪭㪄㪎㪉㪃㩷㪟㪄㪋㪇
㪩㫌㫊㫊㫀㪸㩷㩿㪣㪸㫂㪼㩷㪙㪸㫀㫂㪸㫃㪀
㪩㫌㫊㫊㫀㪸㩷㩿㪣㪸㫂㪼㩷㪙㪸㫀㫂㪸㫃㪀
㪩㫌㫊㫊㫀㪸㪃㩷㪮㪿㫀㫋㪼㩷㪪㪼㪸
㪚㪿㫀㫅㪸㩷㩿㪪㪿㪸㫅㪾㪿㪸㫀㪀
㪡㪸㫇㪸㫅㩷㩿㪝㫌㫂㫌㫆㫂㪸㪀
㪢㫆㫉㪼㪸㩷㩿㪙㫌㫊㪸㫅㪀
㪪㪄㪈㪍㪏
㪪㪄㪈㪍㪏
㪣㪄㪏㪎㪃㩷㪣㪄㪏㪏㪃㩷㪟㪄㪋㪈
㪚㪄㪋㪊
㪘㪄㪋
㪢㪄㪈㪉㪌
㪡㪸㫇㪸㫅㩷㩿㪚㪿㫀㪹㪸㪃㩷㪢㪸㫅㪸㪾㪸㫎㪸㪀 㪘㪄㪎㪉
㪡㪸㫇㪸㫅㩷㩿㪚㪿㫀㪹㪸㪃㩷㪢㪸㫅㪸㪾㪸㫎㪸㪀 㪘㪄㪎㪉
㪡㪸㫇㪸㫅㩷㩿㪚㪿㫀㪹㪸㪃㩷㪢㪸㫅㪸㪾㪸㫎㪸㪀 㪘㪄㪎㪉
㪡㪸㫇㪸㫅㩷㩿㪢㪸㫅㪸㪾㪸㫎㪸㪀
㪩㫌㫊㫊㫀㪸㩷㩿㪣㪸㫂㪼㩷㪙㪸㫀㫂㪸㫃㪀
㪬㪪㪘
㪬㪪㪘㩷㩿㪮㪘㪀
㪡㪸㫇㪸㫅㩷㩿㪢㪸㫅㪸㪾㪸㫎㪸㪀
㪩㫌㫊㫊㫀㪸㩷㩿㪝㪸㫉㩷㪜㪸㫊㫋㪀
㪩㫌㫊㫊㫀㪸
㪩㫌㫊㫊㫀㪸
㪩㫌㫊㫊㫀㪸
㪩㫌㫊㫊㫀㪸㩷㩿㪪㪼㪸㩷㫆㪽㩷㪦㫂㪿㫆㫋㫊㫂㪀 㪩㪄㪈㪈㪋
㪩㫌㫊㫊㫀㪸㩷㩿㪝㪸㫉㩷㪜㪸㫊㫋㪀
㪩㫌㫊㫊㫀㪸㩷㩿㪘㫄㫌㫉㩷㪙㪸㫐㪀
㪩㫌㫊㫊㫀㪸㩷㩿㪣㪸㫂㪼㩷㪙㪸㫀㫂㪸㫃㪀
㪡㪸㫇㪸㫅㩷㩿㪠㫎㪸㫋㪼㪀
㪩㫌㫊㫊㫀㪸
㪩㫌㫊㫊㫀㪸
㪡㪸㫇㪸㫅㩷㩿㪠㫎㪸㫋㪼㪀
㪢 㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
161
㪚㫐㪺㫃㫆㫇㫋㪼㫉㫌㫊 㪚㫐㪺㫃㫆㫇㫋㪼㫉㫌㫊
㪚㫐㪺㫃㫆㫇㫋㪼㫉㫀㪻㪸㪼㩷
㪘㪾㫆㫅㫌㫊
㪘㪾㫆㫅㫀㪻㪸㪼㩷
㪟㪼㫄㫀㫋㫉㫀㫇㫋㪼㫉㫌㫊
㪟㪼㫄㫀㫋㫉㫀㫇㫋㪼㫉㫀㪻㪸㪼㩷
㪘㪹㫐㫊㫊㫆㪺㫆㫋㫋㫌㫊 㪘㪹㫐㫊㫊㫆㪺㫆㫋㫋㫌㫊 㪘㫊㫇㫉㫆㪺㫆㫋㫋㫌㫊 㪘㫊㫇㫉㫆㪺㫆㫋㫋㫌㫊 㪚㫆㫋㫋㫀㫅㪼㫃㫃㪸 㪚㫐㫇㪿㫆㪺㫆㫋㫋㫌㫊 㪣㫀㫄㫅㫆㪺㫆㫋㫋㫌㫊 㪣㫀㫄㫅㫆㪺㫆㫋㫋㫌㫊 㪣㫀㫄㫅㫆㪺㫆㫋㫋㫌㫊 㪧㫉㫆㪺㫆㫋㫋㫌㫊
㫃㫌㫄㫇㫌㫊 㫃㫌㫄㫇㫌㫊
㪺㪸㫋㪸㫇㪿㫉㪸㪺㫋㫌㫊
㫍㫀㫃㫃㫆㫊㫌㫊
㪾㫀㪹㪹㫆㫊㫌㫊 㫂㫆㫉㫆㫋㫅㪼㪽㪽㫀 㪿㪼㫉㫑㪼㫅㫊㫋㪼㫀㫅㫀 㫇㫃㪸㫋㫐㪺㪼㫇㪿㪸㫃㫌㫊 㪹㫆㫌㫃㪼㫅㪾㪼㫉㫀 㫄㪼㪾㪸㫃㫆㫇㫊 㪹㪼㫉㪾㫀㪸㫅㫌㫊 㪾㫉㫀㫊㪼㫌㫊 㫇㪸㫃㫃㫀㪻㫌㫊 㫄㪸㫁㫆㫉
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㪹㫆㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷 㪘㪹㫐㫊㫊㫆㪺㫆㫋㫋㫀㪻㪸㪼
㪣㫀㫄㫅㫆㪺㫆㫋㫋㫌㫊
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪫㪸㪹㫃㪼㩷㪍㪅㪊㪌㩷㩷㪦㫉㪻㪼㫉㩷㪪㪚㪦㪩㪧㪘㪜㪥㪠㪝㪦㪩㪤㪜㪪㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀
㪝㪃㩷㪤
㪝㪃㩷㪤 㪏㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪉㪏㩷㪪㪫㪆㪘 㪏㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪉㪍㩷㪪㪫㪆㪘
㪋㪏 㪋㪏
㪌㪇
㪌㪇
㪋㪏
㪋㪍
㪏㪪㪤㩷㪂㩷㪈㪉㪪㪫㩷㪂㩷㪊㪇㪘
㪉㪇㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪈㪇㪘
㪈㪇㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪉㪉㩷㪪㪫㪆㪘
㪏㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪉㪏㩷㪪㪫㪆㪘
㪋㪏
㪋㪏
㪈㪋㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪊㪉㩷㪪㪫㪆㪘
㪍㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪊㪇㩷㪪㪫㪆㪘
㪋㪏
㪋㪏
㪝
㪏㪤㩷㪂㩷㪈㪇㪪㪤㩷㪂㩷㪊㪇㩷㪪㪫㪆㪘
㪈㪇㪤㩷㪂㩷㪈㪇㪪㪤㩷㪂㩷㪉㪏㩷㪪㪫㪆㪘
㪋㪏 㪋㪏
㪏㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪈㪋㪪㪫㩷㪂㩷㪈㪇㪘
㪈㪇㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪉㪍㩷㪪㪫㪆㪘
㪜 㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪋㪏
㪋㪏
㪛 㪉㫅
㪝㪃㩷㪤
㪝㪃㩷㪤
㪚 㪪㪼㫏
㪌㪋
㪌㪏
㪏㪉
㪎㪋
㪎㪇
㪍㪏
㪍㪏
㪍㪋
㪍㪍
㪍㪍
㪍㪏
㪎㪉
㪎㪇
㪎㪇
㪏㪉
㪏㪍
㪝 㪞 㪟 㪠 㪥㪝㪈 㪥㪝㪉 㪘㪾㪄 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㪥㪦㪩㫊 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪩㫌㫊㫊㫀㪸㩷㩿㪮㪿㫀㫋㪼㩷㪪㪼㪸㪀
㪚㪸㫅㪸㪻㪸㩷㩿㪘㫋㫃㪸㫅㫋㫀㪺㪀
㪩㫌㫊㫊㫀㪸
㪚㪿㫀㫅㪸㩷㩿㪣㫀㪸㫆㫅㫀㫅㪾㪀
㪩㫌㫊㫊㫀㪸㩷㩿㪣㪸㫂㪼㩷㪙㪸㫀㫂㪸㫃㪀
㪩㫌㫊㫊㫀㪸㩷㩿㪣㪸㫂㪼㩷㪙㪸㫀㫂㪸㫃㪀
㪩㫌㫊㫊㫀㪸㩷㩿㪣㪸㫂㪼㩷㪙㪸㫀㫂㪸㫃㪀
㪩㫌㫊㫊㫀㪸㩷㩿㪣㪸㫂㪼㩷㪙㪸㫀㫂㪸㫃㪀
㪩㫌㫊㫊㫀㪸㩷㩿㪣㪸㫂㪼㩷㪙㪸㫀㫂㪸㫃㪀
㪩㫌㫊㫊㫀㪸㩷㩿㪣㪸㫂㪼㩷㪙㪸㫀㫂㪸㫃㪀
㪩㫌㫊㫊㫀㪸㩷㩿㪣㪸㫂㪼㩷㪙㪸㫀㫂㪸㫃㪀
㪩㫌㫊㫊㫀㪸㩷㩿㪣㪸㫂㪼㩷㪙㪸㫀㫂㪸㫃㪀
㪩㫌㫊㫊㫀㪸㩷㩿㪣㪸㫂㪼㩷㪙㪸㫀㫂㪸㫃㪀
㪩㫌㫊㫊㫀㪸㩷㩿㪣㪸㫂㪼㩷㪙㪸㫀㫂㪸㫃㪀
㪢 㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪣㪄㪏㪏
㪣㪄㪊㪊
㪭㪄㪎㪉
㪤㪄㪊㪍
㪪㪄㪈㪍㪎㪃㩷㪪㪄㪈㪍㪏
㪪㪄㪈㪍㪏
㪪㪄㪈㪍㪏
㪪㪄㪈㪍㪏
㪪㪄㪈㪍㪎㪃㩷㪪㪄㪈㪍㪏
㪪㪄㪈㪍㪎㪃㩷㪪㪄㪈㪍㪏
㪪㪄㪈㪍㪎㪃㩷㪪㪄㪈㪍㪏
㪪㪄㪈㪍㪏
㪪㪄㪈㪍㪎㪃㩷㪪㪄㪈㪍㪏
㪪㪄㪈㪍㪏
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
162
R. Arai, Fish Karyotypes © Springer 2011
㪘㫇㫆㪾㫆㫅 㪘㫇㫆㪾㫆㫅 㪘㫇㫆㪾㫆㫅 㪘㫇㫆㪾㫆㫅 㪘㫇㫆㪾㫆㫅 㪘㫇㫆㪾㫆㫅 㪘㫇㫆㪾㫆㫅 㪘㫇㫆㪾㫆㫅 㪘㫇㫆㪾㫆㫅 㪘㫇㫆㪾㫆㫅 㪘㫇㫆㪾㫆㫅 㪘㫇㫆㪾㫆㫅 㪘㫇㫆㪾㫆㫅 㪘㫇㫆㪾㫆㫅㩷 㪘㫇㫆㪾㫆㫅 㪘㫇㫆㪾㫆㫅 㪥㪼㪺㫋㪸㫄㫀㪸 㪧㪿㪸㪼㫆㫇㫋㫐㫏 㪪㫇㪿㪸㪼㫉㪸㫄㫀㪸
㪘㫇㫆㪾㫆㫅㫀㪻㪸㪼㩷
㪚㪿㪸㫅㪻㪸 㪚㪿㪸㫅㪻㪸 㪚㪿㪸㫅㪻㪸 㪧㪸㫉㪸㫄㪹㪸㫊㫊㫀㫊 㪧㪸㫉㪸㫄㪹㪸㫊㫊㫀㫊 㪧㫊㪼㫌㪻㪸㫄㪹㪸㫊㫊㫀㫊 㪧㫊㪼㫌㪻㪸㫄㪹㪸㫊㫊㫀㫊
㪹㫀㫅㫆㫋㪸㫋㫌㫊 㪹㫀㫅㫆㫋㪸㫋㫌㫊 㪹㫀㫅㫆㫋㪸㫋㫌㫊 㪻㫆㪼㪻㪼㫉㫃㪼㫀㫅㫀 㪼㫅㪻㪼㫂㪸㫋㪸㪼㫅㫀㪸 㪼㫅㪻㪼㫂㪸㫋㪸㪼㫅㫀㪸 㫀㫄㪹㪼㫉㪹㫀㫊 㫃㫀㫅㪼㪸㫋㫌㫊 㫄㪸㪺㫌㫃㪸㫋㫌㫊 㫄㫆㫃㫌㪺㪺㪼㫅㫊㫀㫊 㫅㫆㫋㪸㫋㫌㫊 㫅㫆㫋㪸㫋㫌㫊 㫅㫆㫋㪸㫋㫌㫊 㫇㫊㪼㫌㪻㫆㫄㪸㪺㫌㫃㪸㫋㫌㫊 㫊㪼㫄㫀㫃㫀㫅㪼㪸㫋㫌㫊 㫊㪼㫄㫀㫃㫀㫅㪼㪸㫋㫌㫊 㪽㫌㫊㪺㪸 㫇㫀㪾㫄㪼㫅㫋㪸㫉㫀㪸 㫆㫉㪹㫀㪺㫌㫃㪸㫉㫀㫊
㫅㪸㫄㪸 㫅㪸㫄㪸㩷 㪖 㫅㪸㫄㪸 㫊㫀㪸㫄㪼㫅㫊㫀㫊 㫎㫆㫃㪽㪽㫀㫀 㫉㪸㫅㪾㪸 㫉㪸㫅㪾㪸
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㪹㫆㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷 㪪㫌㪹㫆㫉㪻㪼㫉㩷㪧㪼㫉㪺㫆㫀㪻㪼㫀 㪘㫄㪹㪸㫊㫊㫀㪻㪸㪼㩷㩿㪔㩷㪚㪿㪸㫅㪻㫀㪻㪸㪼㪀
㪘㫇㫆㪾㫆㫅㩷
㪘㫇㫆㪾㫆㫅㩷㫅㫌㪹㫀㫃㫌㫊
㪘㫇㫆㪾㫆㫅㩷 㩿㪘㫇㫆㪾㫆㫅 㪀
㪚㪿㪸㫅㪻㪸 㪚㪿㪸㫅㪻㪸
㪚㪿㪸㫅㪻㪸
㪘㫄㪹㪸㫊㫊㫀㫊㩷㫅㪸㫄㪸
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪋㪍 㪋㪍 㪋㪍
㪝㪃㩷㪤 㪝㪃㩷㪤
㪋㪪㪤㩷㪂㩷㪋㪉㩷㪪㪫㪆㪘
㪍㪤㩷㪂㩷㪊㪉㩷㪪㪤㪆㪪㪫㪆㪘 㪋㪍
㪊㪏
㪉㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪊㪏㩷㪪㪫㪆㪘
㪋㪍
㪉㪤㩷㪂㩷㪋㪋㩷㪪㪤㪆㪪㪫㪆㪘
㪉㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪉㪇㪪㪫㩷㪂㩷㪉㪇㪘
㪋㪍 㪋㪍
㪊㪇㩷㪤㪆㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪋㪘
㪊㪍
㪉㪤㩷㪁㩷㪋㪪㪤㩷㪂㩷㪋㪇㩷㪪㪫㪆㪘
㪉㪤㩷㪂㩷㪌㪪㪤㩷㪂㩷㪊㪐㩷㪪㪫㪆㪘
㪉㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪋㪇㩷㪪㪫㪆㪘
㪋㪍㩷㪪㪫㪆㪘
㪋㪍
㪤 㪝㪃㩷㪤
㪌㪇
㪌㪋
㪌㪉
㪍㪍
㪌㪉
㪌㪊
㪌㪉
㪋㪍
㪍㪈
㪌㪉
㪉㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪊㪏㪘 㪉㪎㩷㪤㪆㪪㪤㩷㪂㩷㪎㩷㪪㪫㪆㪘
㪋㪍
㪌㪍
㪌㪉
㪋㪍
㪌㪋
㪋㪐
㪍㪉
㪌㪇
㪋㪏
㪋㪏
㪋㪏
㪋㪋
㪌㪇
㪌㪋
㪋㪏
㪎㪉
㪍㪏
㪌㪋
㪍㪏
㪌㪇
㪋㪏
㪋㪏
㪌㪇
㪌㪇
㪌㪋
㪍㪇
㪝 㪞 㪥㪝㪈 㪥㪝㪉
㪊㪍
㪉㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪈㪍㪪㪫㩷㪂㩷㪉㪋㪘
㪉㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪊㪏㩷㪪㪫㪆㪘
㪋㪍 㪋㪍㩷㪪㪫㪆㪘
㪈㪋㩷㪤㪆㪪㪤㩷㪂㩷㪉㪈㩷㪪㪫㪆㪘
㪊㪌
㪋㪍
㪉㪍㩷㪤㪆㪪㪤㩷㪂㩷㪈㪇㩷㪪㪫㪆㪘
㪋㪍
㪈㪋㩷㪤㪆㪪㪤㩷㪂㩷㪉㪉㩷㪪㪫㪆㪘
㪊㪍
㪉㪪㪫㩷㪂㩷㪋㪍㪘
㪋㪏
㪊㪍
㪋㪤㩷㪂㩷㪋㪇㪘
㪋㪋
㪋㪏㪘
㪊㪋
㪤
㪤
㪋㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪊㪇㪘
㪉㪪㪤㩷㪂㩷㪋㪍㪘
㪋㪏
㪋㪏
㪝
㪉㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪉㪍㪘
㪈㪉㪪㪫㩷㪂㩷㪊㪍㪘
㪜 㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪋㪇
㪋㪇
㪋㪏
㪛 㪉㫅
㪝㪃㩷㪤
㪚 㪪㪼㫏
㪫㪸㪹㫃㪼㩷㪍㪅㪊㪍㩷㩷㪦㫉㪻㪼㫉㩷㪧㪜㪩㪚㪠㪝㪦㪩㪤㪜㪪㪅㩷㪧㪸㫉㫋㩷㪈㩷㪧㪼㫉㪺㫆㫀㪻㪼㫀㩷㪸㫅㪻㩷㪜㫃㪸㫊㫊㫆㫄㪸㫋㫆㫀㪻㪼㫀
㪉㪅㪍㩷㪝㪠㪘
㪉㪅㪈㩷㪝㪠㪘
㪉㪅㪈㩷㪝㪠㪘
㪉㪅㪋㩷㪝㪠㪘
㪟 㪠 㪘㪾㪄 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㪥㪦㪩㫊 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪋
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪌
㪘㪚㪥㪔㪋㪋
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪏
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㩿㪠㫅㪻㫆㪄㪮㪼㫊㫋㩷㪧㪸㪺㫀㪽㫀㪺㪀
㩿㪘㫋㫃㪸㫅㫋㫀㪺㪀
㩿㪧㪸㪺㫀㪽㫀㪺㪀
㪡㪸㫇㪸㫅㩷㩿㪮㪸㫂㪸㫐㪸㫄㪸㪀
㪡㪸㫇㪸㫅㩷㩿㪪㫌㫉㫌㪾㪸㩷㪙㪸㫐㪀
㩿㪧㫌㪼㫉㫋㫆㩷㪩㫀㪺㫆㪀
㪡㪸㫇㪸㫅
㪡㪸㫇㪸㫅㩷㩿㪮㪸㫂㪸㫐㪸㫄㪸㪀
㪡㪸㫇㪸㫅㩷㩿㪮㪸㫂㪸㫐㪸㫄㪸㪀
㪠㫅㪻㫀㪸㩷㩿㪘㫅㪻㪸㫄㪸㫅㩷㪠㫊㪅㪀
㪧㫌㪼㫉㫋㫆㩷㪩㫀㪺㫆
㪡㪸㫇㪸㫅
㪪㫇㪸㫀㫅
㪡㪸㫇㪸㫅
㪠㫅㪻㫀㪸㩷㩿㪘㫅㪻㪸㫄㪸㫅㩷㪠㫊㪅㪀
㪡㪸㫇㪸㫅㩷㩿㪮㪸㫂㪸㫐㪸㫄㪸㪀
㪬㪪㪘㩷㩿㪝㪣㪀
㪬㪪㪘㩷㩿㪮㪠㪀
㪬㪪㪘㩷㩿㪝㪣㪀
㪠㫅㪻㫀㪸
㪠㫅㪻㫀㪸㩷㩿㪦㫉㫀㫊㫊㪸㪀
㪫㪿㪸㫀㫃㪸㫅㪻
㪫㪿㪸㫀㫃㪸㫅㪻
㪠㫅㪻㫀㪸㩷㩿㪮㪙㪀
㪠㫅㪻㫀㪸㩷㩿㪦㫉㫀㫊㫊㪸㪀
㪠㫅㪻㫀㪸
㪢 㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪦㪄㪋㪈
㪩㪄 㪎 㪐
㪩㪄㪎㪐㪃㩷㪟㪄㪋㪈
㪦㪄㪋㪈
㪤㪄㪈㪇㪈
㪩㪄㪎㪐㪃㩷㪩㪄㪈㪈㪇 㩷
㪦㪄㪋㪈㪃㩷㪤㪄㪈㪈㪈
㪦㪄㪋㪈
㪦㪄㪋㪈
㪩㪄㪋㪌㪃㩷㪟㪄㪋㪇
㪩㪄 㪈 㪈 㪇
㪤㪄㪈㪈㪈
㪘㪄 㪊 㪉
㪤㪄㪈㪈㪈
㪩㪄㪋㪌㪃㩷㪟㪄㪋㪈
㪦㪄㪋㪈㪃㩷㪟㪄㪋㪇
㪩㪄 㪈 㪇 㪐
㪩㪄 㪈 㪇 㪐
㪩㪄 㪈 㪇 㪐
㪱㪄 㪉 㪇
㪢㪄 㪋 㪈
㪛㪄㪉㪏
㪛㪄㪉㪇
㪢㪄 㪊 㪋
㪫㪄 㪌 㪊
㪱㪄㪉㪇
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
163
㪘㫃㪼㪺㫋㫀㫊 㪘㫃㪼㫇㪼㫊 㪘㫃㪼㫇㪼㫊 㪘㫋㫉㫆㫇㫌㫊 㪘㫋㫌㫃㪼 㪚㪸㫉㪸㫅㪾㫆㫀㪻㪼㫊 㪚㪸㫉㪸㫅㪾㫆㫀㪻㪼㫊 㪚㪸㫉㪸㫅㪾㫆㫀㪻㪼㫊 㪚㪸㫉㪸㫅㫏 㪚㪸㫉㪸㫅㫏 㪚㪸㫉㪸㫅㫏 㪚㪿㫃㫆㫉㫆㫊㪺㫆㫄㪹㫉㫌㫊 㪤㪼㪾㪸㫃㪸㫊㫇㫀㫊 㪪㪺㫆㫄㪹㪼㫉㫆㫀㪻㪼㫊 㪪㪼㫃㪼㫅㪼 㪪㪼㫃㪼㫅㪼 㪪㪼㫉㫀㫆㫃㪸 㪪㪼㫉㫀㫆㫃㪸 㪪㪼㫉㫀㫆㫃㪸 㪪㪼㫉㫀㫆㫃㪸 㪪㪼㫉㫀㫆㫃㪸 㪫㫉㪸㪺㪿㫀㫅㫆㫋㫌㫊 㪫㫉㪸㪺㪿㫀㫅㫆㫋㫌㫊 㪫㫉㪸㪺㪿㫀㫅㫆㫋㫌㫊 㪫㫉㪸㪺㪿㫀㫅㫆㫋㫌㫊 㪫㫉㪸㪺㪿㫌㫉㫌㫊 㪫㫉㪸㪺㪿㫌㫉㫌㫊 㪫㫉㪸㪺㪿㫌㫉㫌㫊 㪫㫉㪸㪺㪿㫌㫉㫌㫊
㪚㪸㫉㪸㫅㪾㫀㪻㪸㪼㩷
㪙㫉㪸㫄㪸
㪙㫉㪸㫄㫀㪻㪸㪼
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉 㪝㪃㩷㪤
㪚 㪪㪼㫏
㪺㫀㫃㫀㪸㫉㫀㫊 㪻㫁㪼㪻㪸㪹㪸 㪪㪼㫃㪸㫉㩷㫂㪸㫃㫃㪸 㪝㪃㩷㪤 㫄㪼㫃㪸㫅㫆㫇㫋㪼㫉㪸 㪪㪼㫃㪸㫉㩷㫄㪸㫃㪸㫄 㪝㪃㩷㪤 㪸㫋㫉㫆㫇㫆㫊 㪸㫋㫉㫆㫇㫌㫊 㪤 㫄㪸㫋㪼 㪚㪸㫉㪸㫅㫏 㪸㫉㫄㪸㫋㫌㫊 㪤 㪼㫈㫌㫌㫃㪸 㪚㪸㫉㪸㫅㫏 㫇㫉㪸㪼㫌㫊㫋㫌㫊 㫇㫉㫆㪼㫌㫊㫋㫌㫊 㪤 㫃㪸㫋㫌㫊 㫊㪸㫅㫊㫌㫅 㪝 㫊㪼㫏㪽㪸㫊㪺㫀㪸㫋㫌㫊 㪺㪿㫉㫐㫊㫌㫉㫌㫊 㪺㫆㫉㪻㫐㫃㪸 㪝 㫃㫐㫊㪸㫅 㪚㪿㫆㫉㫀㫅㪼㫄㫌㫊㩷㫋㫆㫃㫆㫆㫇㪸㫉㪸㪿 㪤 㫊㪼㫋㪸㫇㫀㫅㫅㫀㫊 㫍㫆㫄㪼㫉 㪻㫌㫄㪼㫉㫀㫃㫀 㪻㫌㫄㪼㫉㫀㫃㫀 㪻㫌㫄㪼㫉㫀㫃㫀 㫅㫀㪾㫉㫆㪽㪸㫊㪺㫀㪸㫋㪸 㪝㪃㩷㪤 㫈㫌㫀㫅㫈㫌㪼㫉㪸㪻㫀㪸㫋㪸 㪺㪸㫉㫆㫃㫀㫅㫌㫊 㪽㪸㫃㪺㪸㫋㫌㫊 㪾㫆㫆㪻㪼㫀 㫆㫍㪸㫋㫌㫊 㪤 㫁㪸㫇㫆㫅㫀㪺㫌㫊 㫄㪼㪻㫀㫋㪼㫉㫉㪸㫅㪼㫌㫊㩷㫇㫆㫅㫋㫀㪺㫌㫊 㫄㪼㪻㫀㫋㪼㫉㫉㪸㫅㪼㫌㫊 㫋㫉㪸㪺㪿㫌㫉㫌㫊 㪝㪃㩷㪤
㫁㪸㫇㫆㫅㫀㪺㪸
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㪹㫆㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷
㪋㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪈㪋㪪㪫㩷㪂㩷㪉㪍㪘 㪉㪪㪤㩷㪂㩷㪋㪍㪘
㪋㪏 㪋㪏
㪌㪇
㪌㪍
㪌㪏
㪋㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪈㪉㪪㪫㩷㪂㩷㪈㪏㪘 㪍㪍 㪋㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪊㪏㩷㪪㪫㪆㪘
㪋㪏
㪌㪋
㪌㪉
㪌㪏
㪌㪍
㪌㪇
㪋㪏
㪌㪇
㪌㪇 㪌㪇
㪋㪏
㪋㪏
㪌㪉
㪌㪇
㪋㪏
㪋㪏
㪌㪇
㪋㪍
㪌㪏
㪋㪏
㪋㪏
㪍㪋
㪋㪏
㪌㪇
㪌㪍
㪋㪏
㪌㪇
㪎㪇
㪎㪏
㪌㪉
㪌㪏
㪌㪍
㪌㪉
㪋㪏
㪌㪇
㪌㪉 㪌㪇
㪌㪇
㪋㪏
㪌㪉
㪌㪉
㪋㪏
㪌㪇
㪌㪇
㪋㪍
㪌㪏
㪌㪇
㪌㪇
㪋㪏
㪌㪇
㪌㪍
㪋㪏
㪝 㪞 㪥㪝㪈 㪥㪝㪉
㪋㪏
㪋㩷㪤㪆㪪㪤㩷㪂㩷㪋㪋㪘
㪈㪇㩷㪤㪆㪪㪤㩷㪂㩷㪊㪏㪘
㪋㪏
㪉㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪋㪉㩷㪪㪫㪆㪘
㪏㩷㪤㪆㪪㪤㩷㪂㩷㪋㪇㪘
㪋㪏 㪋㪏
㪉㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪋㪋㪘
㪋㪏
㪋㪏
㪈㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪋㪋㪘 㪋㪏㪘
㪋㪎
㪉㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪋㪋㪘 㪉㪪㪤㩷㪂㩷㪋㪍㪘
㪋㪏 㪋㪏
㪋㪏
㪉㪪㪤㩷㪂㩷㪋㪋㪘 㪉㪪㪫㩷㪂㩷㪋㪍㪘
㪋㪍 㪋㪏
㪉㪪㪫㩷㪂㩷㪋㪏㪘 㪋㩷㪤㪆㪪㪤㩷㪂㩷㪋㪋㪘
㪌㪇 㪋㪏
㪉㪪㪫㩷㪂㩷㪋㪍㪘 㪋㪏㪘
㪋㪏 㪋㪏
㪋㪍㪘 㪉㪪㪤㩷㪂㩷㪋㪍㪘
㪈㪇㩷㪤㪆㪪㪤㩷㪂㩷㪊㪏㪘
㪋㪏 㪋㪍
㪉㪪㪫㩷㪂㩷㪋㪍㪘
㪋㪏
㪋㪏
㪈㪋㪪㪤㩷㪂㩷㪊㪍㪘
㪋㪏㪘
㪋㪏 㪉㪪㪫㩷㪂㩷㪋㪍㪘
㪉㪪㪤㩷㪂㩷㪋㪍㪘
㪋㪏 㪌㪇
㪌㪍㪘
㪋㪏
㪋㪏㪘
㪌㪍
㪜 㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪋㪏
㪌㪋
㪛 㪉㫅
㪫㪸㪹㫃㪼㩷㪍㪅㪊㪍㩷㩷㪦㫉㪻㪼㫉㩷㪧㪜㪩㪚㪠㪝㪦㪩㪤㪜㪪㪅㩷㪧㪸㫉㫋㩷㪈㩷㪧㪼㫉㪺㫆㫀㪻㪼㫀㩷㪸㫅㪻㩷㪜㫃㪸㫊㫊㫆㫄㪸㫋㫆㫀㪻㪼㫀㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㫀㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪈㪅㪎㩷㪙㪝㪘
㪈㪅㪎㪁㩷㪝㪚㪤
㪈㪅㪋㩷㪝㪛
㪈㪅㪌㩷㪝㪠㪘
㪈㪅㪍㩷㪙㪝㪘
㪈㪅㪉㩷㪝㪛
㪟 㪠 㪘㪾㪄 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㪥㪦㪩㫊 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏 㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪌㪍
㪘㪚㪥㪔㪋㪏
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪠㫋㪸㫃㫐㩷㩿㪘㫅㪺㫆㫅㪸㪀
㪠㫋㪸㫃㫐㩷㩿㪘㫅㪺㫆㫅㪸㪀
㪙㫃㪸㪺㫂㩷㪪㪼㪸
㪡㪸㫇㪸㫅㩷㩿㪠㫑㫌㩷㪧㪼㫅㫀㫅㫊㫌㫃㪸㪀
㪠㫅㪻㫀㪸㩷㩿㪦㫉㫀㫊㫊㪸㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪡㪸㫇㪸㫅㩷㩿㪠㫎㪸㫋㪼㪀
㪠㫅㪻㫀㪸㩷㩿㪦㫉㫀㫊㫊㪸㪀
㪠㫋㪸㫃㫐㩷㩿㪪㫀㪺㫀㫃㫐㪀
㪠㫋㪸㫃㫐㩷㩿㪪㫀㪺㫀㫃㫐㪀 㪠㫋㪸㫃㫐㩷㩿㪪㫀㪺㫀㫃㫐㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪩㪡㪀
㪠㫅㪻㫀㪸㩷㩿㪦㫉㫀㫊㫊㪸㪀
㪠㫅㪻㫀㪸㩷㩿㪦㫉㫀㫊㫊㪸㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪩㪡㪀
㪡㪸㫇㪸㫅㩷㩿㪠㫑㫌㩷㪧㪼㫅㫀㫅㫊㫌㫃㪸㪀
㪠㫅㪻㫀㪸㩷㩿㪦㫉㫀㫊㫊㪸㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪩㪡㪀
㪠㫅㪻㫀㪸㩷㩿㪦㫉㫀㫊㫊㪸㪀
㪡㪸㫇㪸㫅㩷㩿㪠㫑㫌㩷㪧㪼㫅㫀㫅㫊㫌㫃㪸㪀
㪠㫅㪻㫀㪸㩷㩿㪦㫉㫀㫊㫊㪸㪀
㪬㪪㪘㩷㩿㪟㪸㫎㪸㫀㫀㪀
㪠㫅㪻㫀㪸㩷㩿㪦㫉㫀㫊㫊㪸㪀
㪠㫅㪻㫀㪸㩷㩿㪦㫉㫀㫊㫊㪸㪀
㪠㫅㪻㫀㪸㩷㩿㪦㫉㫀㫊㫊㪸㪀
㪡㪸㫇㪸㫅㩷㩿㪠㫑㫌㩷㪧㪼㫅㫀㫅㫊㫌㫃㪸㪀
㪥㪅㩷㪧㪸㪺㫀㪽㫌㪺
㪢 㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪚㪄㪈㪋
㪚㪄㪈㪋
㪭㪄㪌
㪤㪄㪐㪎
㪚㪄㪍㪋
㪩㪄㪈㪇㪏
㪩㪄㪈㪇㪏㪃㩷㪟㪄㪈㪊
㪩㪄㪈㪇㪏
㪠㪄㪈㪃㩷㪦㪄㪋㪏
㪫㪄㪌㪊
㪭㪄㪌㪉
㪪㪄㪐㪈㪃㩷㪟㪄㪋㪇 㪭㪄㪌㪉
㪩㪄 㪈 㪇 㪏
㪙㪄㪏㪍
㪛㪄㪊
㪚㪄㪍㪋
㪙㪄㪏㪍㪃㩷㪟㪄㪈㪊
㪤㪄㪐㪎
㪧㪄 㪈 㪍
㪙㪄㪏㪍
㪛㪄㪊
㪤㪄㪐㪎
㪛㪄㪊
㪣㪄 㪏
㪛㪄㪊
㪚㪄㪍㪋
㪚㪄㪍㪋
㪤㪄㪐㪎
㪰㪄㪊
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
164
㪘㪺㪸㫅㫋㪿㪸㫉㪺㪿㫌㫊 㪘㫄㪹㫃㫆㫇㫃㫀㫋㪼㫊 㪘㫉㪺㪿㫆㫇㫃㫀㫋㪼㫊 㪚㪼㫅㫋㫉㪸㫉㪺㪿㫌㫊 㪜㫅㫅㪼㪸㪺㪸㫅㫋㪿㫌㫊 㪜㫅㫅㪼㪸㪺㪸㫅㫋㪿㫌㫊 㪜㫅㫅㪼㪸㪺㪸㫅㫋㪿㫌㫊 㪣㪼㫇㫆㫄㫀㫊 㪣㪼㫇㫆㫄㫀㫊 㪣㪼㫇㫆㫄㫀㫊 㪣㪼㫇㫆㫄㫀㫊 㪣㪼㫇㫆㫄㫀㫊 㪣㪼㫇㫆㫄㫀㫊 㪣㪼㫇㫆㫄㫀㫊 㪣㪼㫇㫆㫄㫀㫊 㪣㪼㫇㫆㫄㫀㫊 㪣㪼㫇㫆㫄㫀㫊 㪣㪼㫇㫆㫄㫀㫊 㪣㪼㫇㫆㫄㫀㫊 㪣㪼㫇㫆㫄㫀㫊 㪣㪼㫇㫆㫄㫀㫊 㪣㪼㫇㫆㫄㫀㫊 㪣㪼㫇㫆㫄㫀㫊 㪣㪼㫇㫆㫄㫀㫊
㪚㪼㫅㫋㫉㪸㫉㪺㪿㫀㪻㪸㪼
㪪㫇㫀㪺㪸㫉㪸 㪪㫇㫀㪺㪸㫉㪸 㪪㫇㫀㪺㪸㫉㪸 㪪㫇㫀㪺㪸㫉㪸 㪪㫇㫀㪺㪸㫉㪸 㪪㫇㫀㪺㪸㫉㪸 㪪㫇㫀㪺㪸㫉㪸
㫇㫆㫄㫆㫋㫀㫊 㫉㫌㫇㪼㫊㫋㫉㫀㫊 㫀㫅㫋㪼㫉㫉㫌㫇㫋㫌㫊 㫄㪸㪺㫉㫆㫇㫋㪼㫉㫌㫊 㪺㪿㪸㪼㫋㫆㪻㫆㫅 㪾㫃㫆㫉㫀㫆㫊㫌㫊 㫆㪹㪼㫊㫌㫊 㪸㫌㫉㫀㫋㫌㫊 㪺㫐㪸㫅㪼㫃㫃㫌㫊 㪺㫐㪸㫅㪼㫃㫃㫌㫊 㪺㫐㪸㫅㪼㫃㫃㫌㫊 㪺㫐㪸㫅㪼㫃㫃㫌㫊 㪺㫐㪸㫅㪼㫃㫃㫌㫊 㪾㫀㪹㪹㫆㫊㫌㫊 㪾㫀㪹㪹㫆㫊㫌㫊 㪾㫌㫃㫆㫊㫌㫊 㪿㫌㫄㫀㫃㫀㫊 㪿㫌㫄㫀㫃㫀㫊 㫄㪸㪺㫉㫆㪺㪿㫀㫉㫌㫊 㫄㪸㫉㪾㫀㫅㪸㫋㫌㫊 㫄㪼㪾㪸㫃㫆㫋㫀㫊 㫄㫀㪺㫉㫆㫃㫆㫇㪿㫌㫊 㫊㫐㫄㫄㪼㫋㫉㫀㪺㫌㫊 㫊㫐㫄㫄㪼㫋㫉㫀㪺㫌㫊
㫄㪸㪼㫅㪸 㫄㪸㪼㫅㪸 㫄㪸㪼㫅㪸 㫄㪸㪼㫅㪸 㫄㪸㪼㫅㪸 㫄㪸㪼㫅㪸 㫄㪸㪼㫅㪸
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㪹㫆㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷 㪚㪼㫅㫋㫉㪸㪺㪸㫅㫋㪿㫀㪻㪸㪼㩷
㪚㪿㪸㪼㫅㫆㪹㫉㫐㫋㫋㫌㫊
㫊㫄㪸㫉㫀㫊 㫊㫄㪸㫉㫀㫊 㫊㫄㪸㫉㫀㫊 㪽㫃㪼㫏㫌㫆㫊㪸 㪽㫃㪼㫏㫌㫆㫊㪸 㪽㫃㪼㫏㫌㫆㫊㪸
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪈㪇㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪉㪏㪘 㪏㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪊㪉㪘 㪐㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪊㪇㪘 㪈㪇㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪉㪏㪘 㪋㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪊㪉㪘
㪋㪋 㪋㪍 㪋㪌 㪋㪋 㪋㪏
㪋㪏㪘 㪋㪏㪘 㪋㪏㪘 㪋㪏㪘 㪋㪏㪘 㪋㪏㪘
㪋㪏 㪋㪏 㪋㪏 㪋㪏 㪋㪏 㪋㪏 㪋㪏 㪋㪏
㪝 㪝
㪋㪏 㪋㪍
㪝㪃㩷㪤
㪋㪇 㪋㪈
㪝㪃㩷㪤 㪝㪃㩷㪤
㪋㪏㪘
㪋㪏
㪎㪤㩷㪂㩷㪊㪋㩷㪪㪫㪆㪘
㪏㩷㪤㩷㪂㩷㪊㪉㩷㪪㪫㪆㪘
㪋㪏㪘
㪋㪏㪘
㪋㪏 㪋㪏
㪋㪏㪘
㪉㪪㪤㩷㪂㩷㪋㪋㪘
㪋㪏㪘
㪉㪪㪤㩷㪂㩷㪋㪋㪘
㪈㪤㩷㪂㩷㪋㪍㪘
㪋㪏
㪋㪍
㪋㪏
㪤
㪝㪃㩷㪤
㪈㪇㪤㩷㪂㩷㪊㪍㩷㪪㪫㪆㪘
㪋㪍
㪤
㪋㪏
㪋㪏㪘
㪋㪎
㪤
㪋㪏㪘
㪋㪏
㪤
㪉㪪㪤㩷㪂㩷㪋㪋㪘
㪋㪍
㪝㪃㩷㪤
㪉㪪㪫㩷㪂㩷㪋㪍㪘
㪋㪏㪘
㪋㪏
㪝㪃㩷㪤
㪋㪏㪘
㪏㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪊㪉㪘 㪐㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪊㪇㪘
㪋㪍
㪜 㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪋㪌
㪛 㪉㫅
㪝㪃㩷㪤
㪚 㪪㪼㫏
㪫㪸㪹㫃㪼㩷㪍㪅㪊㪍㩷㩷㪦㫉㪻㪼㫉㩷㪧㪜㪩㪚㪠㪝㪦㪩㪤㪜㪪㪅㩷㪧㪸㫉㫋㩷㪈㩷㪧㪼㫉㪺㫆㫀㪻㪼㫀㩷㪸㫅㪻㩷㪜㫃㪸㫊㫊㫆㫄㪸㫋㫆㫀㪻㪼㫀㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㫀㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪌㪍
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪌㪋
㪌㪏
㪌㪏
㪌㪏
㪌㪏
㪌㪏
㪌㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪌㪇
㪋㪏
㪋㪏
㪍㪋
㪍㪇
㪍㪇
㪍㪇
㪍㪇
㪍㪇
㪍㪇
㪝 㪞 㪥㪝㪈 㪥㪝㪉
㪉㪅㪇㩷㪝㪛
㪉㪅㪈㪁㩷㪝㪚㪤㪃㩷㪉㪅㪈㩷㪝㪛
㪉㪅㪉㩷㪝㪛
㪈㪅㪐㪁㩷㪝㪚㪤㪃㩷㪈㪅㪐㩷㪝㪛
㪉㪅㪇㩷㪝㪛
㩿㪈㪅㪐㩷㪝㪠㪘㪀
㩿㪉㪅㪇㩷㪝㪛㪀
㪉㪅㪈㩷㪝㪛
㪉㪅㪊㩷㪝㪠㪘
㪟 㪠 㪘㪾㪄 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㪥㪦㪩㫊 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪬㪪㪘㩷㩿㪤㪪㪀
㪬㪪㪘㩷㩿㪤㪪㪀
㪬㪪㪘㩷㩿㪥㪚㪃㩷㪭㪘㪀
㪬㪪㪘㩷㩿㪫㪥㪀
㪬㪪㪘㩷㩿㪥㪚㪀
㪬㪪㪘㩷㩿㪮㪭㪀
㪬㪪㪘㩷㩿㪢㪰㪀
㪬㪪㪘
㪬㪪㪘㩷㩿㪥㪚㪀
㩿㪬㪪㪘㪀
㪬㪪㪘㩷㩿㪥㪚㪃㩷㪮㪭㪀
㪬㪪㪘㩷㩿㪚㪘㪀
㪬㪪㪘㩷㩿㪚㪘㪀
㪬㪪㪘㩷㩿㪚㪘㪀
㪬㪪㪘㩷㩿㪮㪭㪀
㪬㪪㪘㩷㩿㪥㪚㪀
㪬㪪㪘㩷㩿㪥㪚㪀
㪬㪪㪘㩷㩿㪥㪚㪀
㪬㪪㪘㩷㩿㪥㪚㪀
㪬㪪㪘㩷㩿㪥㪚㪀
㪬㪪㪘㩷㩿㪥㪚㪀
㪬㪪㪘㩷㩿㪚㪘㪀
㪬㪪㪘㩷㩿㪥㪚㪃㩷㪮㪭㪀
㪬㪪㪘㩷㩿㪥㪚㪀
㪙㫃㪸㪺㫂㩷㪪㪼㪸
㪙㫃㪸㪺㫂㩷㪪㪼㪸
㪙㫃㪸㪺㫂㩷㪪㪼㪸
㪙㫃㪸㪺㫂㩷㪪㪼㪸
㪙㫃㪸㪺㫂㩷㪪㪼㪸
㪙㫃㪸㪺㫂㩷㪪㪼㪸
㪙㫃㪸㪺㫂㩷㪪㪼㪸
㪢 㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪫㪄㪋㪊
㪫㪄㪋㪊
㪩㪄㪏㪇
㪩㪄㪏㪇㪃㩷㪦㪄㪋㪏
㪩㪄㪏㪇
㪩㪄㪏㪇㪃㩷㪙㪄㪍㪊㪃㩷㪦㪄㪋㪏㩷
㪩㪄㪏㪇
㪘㪄㪊㪏
㪩㪄㪏㪇
㪝㪄㪊㪇
㪩㪄㪏㪇㪃㩷㪙㪄㪍㪊㪃㩷㪟㪄㪋㪇㩷
㪙㪄㪈㪌
㪙㪄㪈㪌
㪙㪄㪈㪌
㪩㪄㪏㪇
㪦㪄㪍㪃㩷㪩㪄㪏㪇
㪩㪄㪏㪇
㪩㪄㪏㪇
㪩㪄㪏㪇
㪩㪄㪏㪇
㪩㪄㪏㪇
㪙㪄㪏㪊
㪩㪄㪏㪇㪃㩷㪟㪄㪋㪇
㪩㪄㪏㪇
㪪㪄㪎㪃㩷㪭㪄㪋㪃㩷㪭㪄㪈㪈
㪪㪄㪎㪃㩷㪭㪄㪈㪈
㪪㪄㪎㪃㩷㪭㪄㪈㪈
㪪㪄㪎㪃㩷㪭㪄㪈㪈
㪭㪄㪋
㪭㪄㪋
㪭㪄㪋
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
165
㪛㫀㪸㫇㫋㪼㫉㫌㫊 㪜㫌㪺㫀㫅㫆㫊㫋㫆㫄㫌㫊 㪜㫌㪺㫀㫅㫆㫊㫋㫆㫄㫌㫊 㪜㫌㪺㫀㫅㫆㫊㫋㫆㫄㫌㫊
㪞㪼㫉㫉㪼㫀㪻㪸㪼㩷
㪩㪼㫄㫆㫉㪸
㪜㪺㪿㪼㫅㪼㫀㪻㪸㪼
㪚㪿㪸㪼㫋㫆㪻㫆㫅 㪚㪿㪸㪼㫋㫆㪻㫆㫅 㪚㪿㪸㪼㫋㫆㪻㫆㫅 㪚㪿㪸㪼㫋㫆㪻㫆㫅 㪚㪿㪸㪼㫋㫆㪻㫆㫅 㪚㪿㪸㪼㫋㫆㪻㫆㫅 㪚㪿㪸㪼㫋㫆㪻㫆㫅 㪚㪿㪸㪼㫋㫆㪻㫆㫅 㪚㪿㪸㪼㫋㫆㪻㫆㫅 㪚㪿㪸㪼㫋㫆㪻㫆㫅 㪚㪿㪸㪼㫋㫆㪻㫆㫅 㪟㪼㫅㫀㫆㪺㪿㫌㫊
㪚㪿㪸㪼㫋㫆㪻㫆㫅㫋㫀㪻㪸㪼㩷
㪚㪼㫅㫋㫉㫆㫇㫆㫄㫌㫊
㪚㪼㫅㫋㫉㫆㫇㫆㫄㫀㪻㪸㪼
㪣㪼㫇㫆㫄㫀㫊 㪣㪼㫇㫆㫄㫀㫊 㪤㫀㪺㫉㫆㫇㫋㪼㫉㫌㫊 㪤㫀㪺㫉㫆㫇㫋㪼㫉㫌㫊 㪤㫀㪺㫉㫆㫇㫋㪼㫉㫌㫊 㪤㫀㪺㫉㫆㫇㫋㪼㫉㫌㫊 㪧㫆㫄㫆㫏㫀㫊 㪧㫆㫄㫆㫏㫀㫊
㫆㫃㫀㫋㪿㫆㫊㫋㫆㫄㫌㫊 㪸㫉㪾㪼㫅㫋㪼㫌㫊 㪾㫌㫃㪸 㪿㪸㫉㪼㫅㪾㫌㫃㫌㫊
㫉㪼㫄㫆㫉㪸
㪸㫌㫉㫀㪾㪸 㪸㫌㫉㫀㫇㪼㫊 㪸㫌㫉㫀㫇㪼㫊 㪺㫆㫃㫃㪸㫉㪼 㫃㫌㫅㫌㫃㪸 㫇㫃㪼㪹㪼㫀㫌㫊 㫊㪼㪻㪼㫅㫋㪸㫉㫀㫌㫊 㫊㫋㫉㫀㪸㫋㫌㫊 㫊㫋㫉㫀㪾㪸㫅㪾㫌㫃㫌㫊 㫋㫉㫀㪽㪸㫊㪺㫀㪸㫋㫌㫊 㫍㪸㪾㪸㪹㫌㫅㪻㫌㫊 㪸㪺㫌㫄㫀㫅㪸㫋㫌㫊
㫇㪸㫉㪸㫃㫃㪼㫃㫌㫊
㫊㫐㫄㫄㪼㫋㫉㫀㪺㫌㫊 㫊㫐㫄㫄㪼㫋㫉㫀㪺㫌㫊 㪻㫆㫃㫆㫄㫀㪼㫌㫀 㫇㫌㫅㪺㫋㫌㫃㪸㫋㫌㫊 㫊㪸㫃㫄㫆㫀㪻㪼㫊 㫋㫉㪼㪺㫌㫃㫀 㪸㫅㫅㫌㫃㪸㫉㫀㫊 㫅㫀㪾㫉㫆㫄㪸㪺㫌㫃㪸㫋㫌㫊
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㪹㫆㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷
㪤㪼㪾㪸㫇㫉㫆㫋㫆㪻㫆㫅㩷
㪤㪼㪾㪸㫇㫉㫆㫋㫆㪻㫆㫅
㪺㫆㫃㫃㪸㫉㫀㫊
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪋㪍 㪋㪍 㪋㪍 㪋㪏
㪝㪃㩷㪤 㪝㪃㩷㪤 㪝㪃㩷㪤
㪋㪏㪘 㪋㪏㪘
㪋㪏 㪋㪏
㪋㪏 㪋㪏 㪋㪏 㪋㪏
㪝㪃㩷㪤 㪝㪃㩷㪤 㪝㪃㩷㪤
㪋㪏㪘
㪋㪏㪘
㪋㪏㪘
㪋㪏㪘
㪋㪉㩷㪪㪫㪆㪘
㪋㪏㪘
㪋㪏
㪋㪉
㪉㪪㪤㩷㪂㩷㪋㪍㪘
㪋㪏㪘
㪋㪏
㪋㪏
㪝㪃㩷㪤
㪤
㪝㪃㩷㪤
㪋㪏
㪉㪤㩷㪂㩷㪋㪍㪘
㪋㪏㪘
㪋㪏 㪋㪏
㪋㪏㪘 㪋㪏㪘
㪋㪏 㪋㪏
㪋㪏㪘 㪋㪏㪘
㪋㪏㪘
㪋㪏㪘
㪉㩷㪤㪆㪪㪤㩷㪂㩷㪋㪋㪘
㪉㩷㪤㪆㪪㪤㩷㪂㩷㪋㪋㩷㪪㪫㪆㪘
㪉㪪㪤㩷㪂㩷㪋㪋㪘
㪋㪏 㪋㪏
㪋㪏
㪋㪏
㪋㪏㪘
㪋㪍
㪤
㪝
㪉㩷㪤㪆㪪㪤㩷㪂㩷㪋㪋㩷㪪㪫㪆㪘
㪊㪏
㪈㪇㪤㩷㪂㩷㪉㪏㩷㪪㪫㪆㪘
㪊㪐
㪐㪤㩷㪂㩷㪊㪇㩷㪪㪫㪆㪘
㪜 㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪤
㪛 㪉㫅
㪝㪃㩷㪤
㪚 㪪㪼㫏
㪫㪸㪹㫃㪼㩷㪍㪅㪊㪍㩷㩷㪦㫉㪻㪼㫉㩷㪧㪜㪩㪚㪠㪝㪦㪩㪤㪜㪪㪅㩷㪧㪸㫉㫋㩷㪈㩷㪧㪼㫉㪺㫆㫀㪻㪼㫀㩷㪸㫅㪻㩷㪜㫃㪸㫊㫊㫆㫄㪸㫋㫆㫀㪻㪼㫀㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㫀㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪉
㪋㪏
㪋㪏
㪋㪏
㪌㪇
㪋㪏
㪋㪏
㪌㪇
㪋㪏
㪋㪏
㪋㪏
㪋㪏 㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪌㪇
㪋㪏
㪌㪇
㪋㪏
㪋㪏
㪋㪏
㪋㪏 㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪝 㪞 㪥㪝㪈 㪥㪝㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪈㪅㪍㩷㪙㪝㪘
㪈㪅㪎㩷㪝㪠㪘
㪈㪅㪌㪁㩷㪝㪚㪤
㪈㪅㪋㩷㪝㪠㪘
㪉㪅㪈㩷㪝㪚㪤
㪉㪅㪇㪁㩷㪝㪚㪤
㪉㪅㪇㩷㪝㪠㪘
㪟 㪠 㪘㪾㪄 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㪥㪦㪩㫊 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏 㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㫊㪼㫏㩷㪺㪿㫉㫆㫄㪅
㪘㪚㪥㪔㪋㪏
㫊㪼㫏㩷㪺㪿㫉㫆㫄㪅
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪬㪪㪘㩷㩿㪝㪣㪀
㪬㪪㪘㩷㩿㪝㪣㪀
㪬㪪㪘㩷㩿㪝㪣㪀㪃㩷㪧㫌㪼㫉㫋㫆㩷㪩㫀㪺㫆
㪙㫉㪸㫑㫀㫃㩷㩿㪩㪥㪀
㪠㫅㪻㫀㪸㩷㩿㪘㫅㪻㪸㫄㪸㫅㩷㪠㫊㪅㪀
㪡㪸㫇㪸㫅㩷㩿㪮㪸㫂㪸㫐㪸㫄㪸㪀
㪡㪸㫇㪸㫅㩷㩿㪦㫂㫀㫅㪸㫎㪸㪀㩷
㪡㪸㫇㪸㫅㩷㩿㪦㫂㫀㫅㪸㫎㪸㪀㩷
㪡㪸㫇㪸㫅㩷㩿㪦㫂㫀㫅㪸㫎㪸㪀㩷
㪙㫉㪸㫑㫀㫃㩷㩿㪩㪥㪃㩷㪙㪘㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪜㪪㪀
㪡㪸㫇㪸㫅㩷㩿㪫㪸㫅㪼㪾㪸㫊㪿㫀㫄㪸㪀
㪡㪸㫇㪸㫅㩷㩿㪰㪸㫂㫌㫊㪿㫀㫄㪸㪀㩷
㪠㫅㪻㫀㪸㩷㩿㪢㪼㫉㪸㫃㪸㪀
㪡㪸㫇㪸㫅
㪡㪸㫇㪸㫅㩷㩿㪦㫂㫀㫅㪸㫎㪸㪀㩷 㪡㪸㫇㪸㫅㩷㩿㪚㪿㫀㪹㪸㪃㩷㪢㪸㪾㫆㫊㪿㫀㫄㪸㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪩㪡㪀
㪬㪪㪘㩷㩿㪥㪚㪃㩷㪮㪭㪀
㪬㪪㪘㩷㩿㪥㪚㪀
㪬㪪㪘㩷㩿㪫㪯㪀
㪬㪪㪘㩷㩿㪮㪭㪀
㪬㪪㪘㩷㩿㪫㪯㪀
㪬㪪㪘㩷㩿㪮㪭㪀
㪬㪪㪘㩷㩿㪤㪪㪀
㪬㪪㪘㩷㩿㪤㪪㪀
㪢 㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪩㪄㪐㪍
㪩㪄㪐㪍㪃㩷㪟㪄㪈㪊
㪩㪄㪐㪍
㪤㪄㪈㪉㪈
㪩㪄㪋㪌
㪘㪄㪎㪎
㪘㪄㪍㪈㪃㩷㪟㪄㪋㪇
㪘㪄㪍㪈
㪘㪄㪍㪈
㪘㪄㪎
㪞㪄㪈㪉
㪘㪄㪍㪈
㪘㪄㪍㪈
㪥㪄㪍㪌
㪦㪄㪋㪏
㪘㪄㪍㪈㪃㩷㪟㪄㪋㪇 㪘㪄㪍㪈
㪙㪄㪏㪍
㪩㪄㪏㪇
㪩㪄㪏㪇
㪫㪄㪋㪇
㪫㪄㪋㪇 㪫㪄㪋㪇㪃㩷㪫㪄㪎㪊㪃㩷㪩㪄㪏㪇㪃㩷㪦㪄㪋㪏
㪩㪄㪏㪇㪃㩷㪙㪄㪍㪊㪃㩷㪟㪄㪋㪇㩷
㪫㪄㪋㪊
㪫㪄㪋㪊
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
166
㫇㫃㫌㫄㫀㪼㫉㫀 㪽㫀㫃㪸㫄㪼㫅㫋㫆㫊㫌㫊 㫆㪹㫃㫆㫅㪾㫌㫊 㫆㫐㪼㫅㪸
㪢㫌㪿㫃㫀㪸 㪢㫌㪿㫃㫀㪸
㪢㫌㪿㫃㫀㫀㪻㪸㪼㩷
㪘㫅㫀㫊㫆㫋㫉㪼㫄㫌㫊 㪘㫅㫀㫊㫆㫋㫉㪼㫄㫌㫊 㪘㫅㫀㫊㫆㫋㫉㪼㫄㫌㫊 㪚㫆㫅㫆㪻㫆㫅 㪟㪸㪼㫄㫌㫃㫆㫅 㪟㪸㪼㫄㫌㫃㫆㫅 㪟㪸㪼㫄㫌㫃㫆㫅 㪟㪸㪼㫄㫌㫃㫆㫅 㪟㪸㪼㫄㫌㫃㫆㫅 㪟㪸㪼㫄㫌㫃㫆㫅 㪟㪸㪼㫄㫌㫃㫆㫅 㪟㪸㪼㫄㫌㫃㫆㫅 㪟㪸㪼㫄㫌㫃㫆㫅 㪟㪸㪼㫄㫌㫃㫆㫅 㪟㪸㪼㫄㫌㫃㫆㫅 㪟㪸㫇㪸㫃㫆㪾㪼㫅㫐㫊 㪟㪸㫇㪸㫃㫆㪾㪼㫅㫐㫊 㪦㫉㫋㪿㫆㫇㫉㫀㫊㫋㫀㫊 㪧㫆㫄㪸㪻㪸㫊㫐㫊 㪧㫆㫄㪸㪻㪸㫊㫐㫊 㪧㫆㫄㪸㪻㪸㫊㫐㫊
㪹㫆㫅㫀㫅㪼㫅㫊㫀㫊 㫄㫌㪾㫀㫃
㫄㫆㫉㫀㪺㪸㫅㪻㫀㩷㩷 㫊㫌㫉㫀㫅㪸㫄㪼㫅㫊㫀㫊 㫍㫀㫉㪾㫀㫅㫀㪺㫌㫊 㫅㫆㪹㫀㫃㫀㫊 㪸㫌㫉㫆㫃㫀㫅㪼㪸㫋㫌㫄 㪸㫌㫉㫆㫃㫀㫅㪼㪸㫋㫌㫄 㪹㫆㫅㪸㫉㫀㪼㫅㫊㪼 㪽㫃㪸㫍㫆㫃㫀㫅㪼㪸㫋㫌㫄 㪽㫃㪸㫍㫆㫃㫀㫅㪼㪸㫋㫌㫄 㫇㪸㫉㫉㪸 㫇㫃㫌㫄㫀㪼㫉㫀㫀 㫇㫃㫌㫄㫀㪼㫉㫀㫀 㫊㪺㫀㫌㫉㫌㫊 㫊㪺㫀㫌㫉㫌㫊 㫊㫋㫉㫀㪸㫋㫌㫄 㪸㫅㪸㫃㫀㫊 㫅㫀㪾㫉㫀㫇㫀㫅㫅㫀㫊 㫉㫌㪹㪼㫉 㪸㫉㪾㪼㫅㫋㪼㫌㫊 㪺㫆㫉㫍㫀㫅㪸㪼㪽㫆㫉㫄㫀㫊 㪺㫆㫄㫄㪼㫉㫊㫆㫅㫅㫀㫀
㪟㪸㪼㫄㫌㫃㫀㪻㪸㪼㩷㩿㪔㩷㪧㫆㫄㪸㪻㪸㫊㫐㫀㪻㪸㪼㪀㩷
㪜㫌㪾㪼㫉㫉㪼㫊 㪞㪼㫉㫉㪼㫊㩷 㪞㪼㫉㫉㪼㫊㩷 㪞㪼㫉㫉㪼㫊㩷
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㪹㫆㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷
㫋㪸㪼㫅㫀㫌㫉㪸
㪧㫉㫀㫊㫋㫀㫇㫆㫄㪸㩷㫆㫇㪼㫉㪺㫌㫃㪸㫉㪼
㪿㪸㫊㫋㪸
㫄㫌㪺㫉㫆㫅㪸㫋㫌㫊 㫅㫀㫋㪼㫅㫊
㪞㪼㫉㫉㪼㫀㫊
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪝㪃㩷㪤
㪝㪃㩷㪤
㪝㪃㩷㪤
㪝㪃㩷㪤 㪝㪃㩷㪤
㪤
㪝㪃㩷㪤
㪚 㪪㪼㫏 㪋㪏㪘
㪜 㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪋㪏㪘 㪋㪏㪘 㪋㪏㪘 㪋㪏㪘 㪋㪏㪘 㪋㪏㪘 㪋㪏㪘 㪋㪏㪘
㪋㪏 㪋㪏 㪋㪏 㪋㪏 㪋㪏 㪋㪏 㪋㪏 㪋㪏 㪋㪏
㪋㪏 㪋㪏
㪉㪪㪤㩷㪂㩷㪋㪍㪘
㪉㪪㪤㩷㪂㩷㪋㪍㪘
㪋㪏㪘
㪋㪏㪘
㪋㪏 㪋㪏
㪋㪏㪘
㪋㪏
㪉㪪㪤㩷㪂㩷㪋㪍㩷㪪㪫㪆㪘
㪉㪤㩷㪂㩷㪏㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪊㪍㪘
㪋㪏 㪋㪏
㪉㪤㩷㪂㩷㪏㪪㪤㩷㪂㩷㪈㪋㪪㪫㩷㪂㩷㪉㪋㪘
㪋㪏㪘
㪋㪏 㪋㪏
㪋㪏㪘 㪉㩷㪪㪤㪆㪪㪫㩷㪂㩷㪋㪋㪘
㪋㪏 㪋㪍
㪋㪏㪘
㪋㪏㪘
㪋㪏
㪋㪏㪘
㪋㪏
㪋㪏㩷㪪㪫㪆㪘
㪋㪤㩷㪂㩷㪋㪋㪘
㪋㪏
㪋㪏
㪌㪇㪁
㪋㪏
㪋㪏
㪛 㪉㫅
㪫㪸㪹㫃㪼㩷㪍㪅㪊㪍㩷㩷㪦㫉㪻㪼㫉㩷㪧㪜㪩㪚㪠㪝㪦㪩㪤㪜㪪㪅㩷㪧㪸㫉㫋㩷㪈㩷㪧㪼㫉㪺㫆㫀㪻㪼㫀㩷㪸㫅㪻㩷㪜㫃㪸㫊㫊㫆㫄㪸㫋㫆㫀㪻㪼㫀㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㫀㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀
㪌㪇
㪌㪇
㪋㪏
㪋㪏
㪋㪏
㪌㪇
㪌㪏
㪌㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏 㪋㪏
㪋㪏 㪋㪏 㪋㪏 㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪌㪉
㪋㪏
㪌㪇
㪌㪇
㪋㪏
㪋㪏
㪋㪏
㪍㪇
㪎㪉
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏 㪋㪏
㪋㪏 㪋㪏 㪋㪏 㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪌㪉
㪋㪏
㪝 㪞 㪥㪝㪈 㪥㪝㪉
㪉
㪉
㪉
㪉
㪉
㪉 㪉
㪉 㪉
㪉
㪉
㪉
㪉
㩿㪈㪅㪉㩷㪝㪛㪀
㩿㪈㪅㪎㩷㪙㪝㪘㪀
㩿㪉㪅㪇㩷㪙㪝㪘㪀
㩿㪈㪅㪏㩷㪙㪝㪘㪀 㩿㪈㪅㪊㩷㪝㪛㪀
㩿㪈㪅㪌㩷㪝㪛㪀
㪈㪅㪋㪁㩷㪝㪚㪤
㪟 㪠 㪘㪾㪄 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㪥㪦㪩㫊 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏 㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏 㪘㪚㪥㪔㪋㪏 㪘㪚㪥㪔㪋㪏 㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪡㪸㫇㪸㫅㩷㩿㪚㪿㫀㪹㪸㪀
㪡㪸㫇㪸㫅㩷㩿㪦㫂㫀㫅㪸㫎㪸㪀
㪠㫅㪻㫀㪸㩷㩿㪙㫆㫄㪹㪸㫐㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪩㪥㪀
㪠㫅㪻㫀㪸㩷㩿㪮㪙㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪩㪡㪀
㪚㪿㫀㫅㪸
㪚㪿㫀㫅㪸
㪙㫉㪸㫑㫀㫃㩷㩿㪩㪥㪀
㪮㪅㩷㪘㫋㫃㪸㫅㫋㫀㪺
㪮㪅㩷㪘㫋㫃㪸㫅㫋㫀㪺
㪭㪼㫅㪼㫑㫌㪼㫃㪸
㪙㫉㪸㫑㫀㫃㩷㩿㪩㪥㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪩㪥㪀 㪙㫉㪸㫑㫀㫃㩷㩿㪩㪥㪃㩷㪩㪡㪀 㪭㪼㫅㪼㫑㫌㪼㫃㪸 㪭㪼㫅㪼㫑㫌㪼㫃㪸 㪙㫉㪸㫑㫀㫃㩷㩿㪩㪥㪀 㪭㪼㫅㪼㫑㫌㪼㫃㪸 㪙㫉㪸㫑㫀㫃㩷㩿㪩㪥㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪩㪥㪃㩷㪩㪡㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪩㪥㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪩㪥㪀
㪡㪸㫇㪸㫅㩷㩿㪮㪸㫂㪸㫐㪸㫄㪸㪀
㪠㫅㪻㫀㪸㩷㩿㪘㫅㪻㪸㫄㪸㫅㩷㪠㫊㪅㪀
㪠㫅㪻㫀㪸㩷㩿㪮㪙㪀
㪬㪪㪘㩷㩿㪝㪣㪀
㪢 㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪘㪄㪎㪎
㪘㪄㪎㪎
㪩㪄㪍㪊
㪞㪄㪈㪉㪃㩷㪥㪄㪌㪐
㪢㪄㪈㪊㪐
㪙㪄㪍㪌
㪰㪄㪉㪇
㪰㪄㪉㪇
㪞㪄㪈㪉㪃㩷㪥㪄㪌㪐
㪩㪄㪋㪈
㪩㪄㪋㪈㪃㩷㪟㪄㪈㪊
㪥㪄㪌㪐
㪞㪄㪈㪉㪃㩷㪥㪄㪌㪐㪃㩷㪟㪄㪈㪊
㪞㪄㪈㪉 㪞㪄㪈㪉㪃㩷㪥㪄㪌㪐 㪥㪄㪌㪐 㪥㪄㪌㪐 㪞㪄㪈㪉㪃㩷㪟㪄㪈㪊 㪩㪄㪈㪇㪍 㪞㪄㪈㪉㪃㩷㪥㪄㪌㪐
㪞㪄㪈㪉㪃㩷㪥㪄㪌㪐
㪞㪄㪈㪉㪃㩷㪥㪄㪌㪐
㪞㪄㪈㪉㪃㩷㪥㪄㪌㪐
㪘㪄㪎㪎
㪩㪄㪋㪌㪃㩷㪦㪄㪋㪏
㪢㪄㪋㪍
㪩㪄㪐㪍
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
167
㪺㪸㫃㪺㪸㫉㫀㪽㪼㫉 㪺㪸㫃㪺㪸㫉㫀㪽㪼㫉 㫎㪸㫀㪾㫀㪼㫅㫊㫀㫊
㪣㪸㫋㪼㫊 㪣㪸㫋㪼㫊 㪧㫊㪸㫄㫄㫆㫇㪼㫉㪺㪸
㪣㫆㪹㫆㫋㫌㫊
㪣㫆㪹㫆㫋㫀㪻㪸㪼㩷
㪣㪼㫋㪿㫉㫀㫅㫌㫊 㪣㪼㫋㪿㫉㫀㫅㫌㫊
㪣㪼㫋㪿㫉㫀㫅㫀㪻㪸㪼㩷
㫊㫌㫉㫀㫅㪸㫄㪼㫅㫊㫀㫊
㫅㪼㪹㫌㫃㫆㫊㫌㫊 㫏㪸㫅㫋㪿㫆㪺㪿㫀㫃㫌㫊
㪞㪸㫑㫑㪸 㫄㫀㫅㫌㫋㪸 㪣㪼㫀㫆㪾㫅㪸㫋㪿㫌㫊 㫅㫌㪺㪿㪸㫃㫀㫊 㪧㪿㫆㫋㫆㫇㪼㪺㫋㫆㫉㪸㫃㫀㫊 㪹㫀㫅㪻㫌㫊㩷
㪣㪼㫀㫆㪾㫅㪸㫋㪿㫀㪻㪸㪼㩷
㪣㪸㫋㫀㪻㪸㪼
㪸㫉㪾㪼㫅㫋㫀㫍㪼㫅㫋㫉㫀㫊
㪣㪼㫀㫆㪾㫅㪸㫋㪿㫌㫊
㪚㪼㫅㫋㫉㫆㫇㫆㫄㫀㪻㪸㪼
㪺㪸㫃㪺㪼㫉㫀㪽㪼㫉
㪝㪃㩷㪤
㪤
㪝
㪤
㪋㪏
㫊㫇㪅
㫊㫋㫉㫀㪾㪸㫋㫌㫊
㪋㪏
㫃㪼㫄㪹㫌㫊
㪌㪇
㪌㪉
㪉
㪉
㪉
㪉
㪈㪅㪊㩷㪝㪠㪘
㪈㪅㪋㩷㪝㪠㪘
㪈㪅㪏㪁㩷㪝㪚㪤
㪈㪅㪏㪁㩷㪝㪚㪤
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪉㪪㪤㩷㪂㩷㪋㪍㪘
㪋㪏㪘
㪋㪏
㪋㪏㪘
㪋㪏
㪋㪇㩷㪪㪫㪆㪘
㪋㪏
㪋㪇
㪋㪏㪘 㪋㪏㩷㪪㪫㪆㪘
㪋㪏 㪋㪏
㪌㪇
㪋㪏
㪋㪏
㪋㪇
㪋㪏
㪋㪏
㪌㪇
㪋㪏
㪋㪏
㪋㪏
㪉㪅㪏㪁㩷㪝㪚㪤
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪋㪏
㪌㪏
㪋㪏
㪌㪇
㪌㪇
㪌㪇
㪌㪇
㪉
㪋
㪋
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪋㪏
㪋㪏
㪌㪍
㪋㪏
㪌㪇
㪌㪇
㪌㪇
㪌㪇
㪋㪏
㪋㪏
㪋㪏
㪟 㪠 㪘㪾㪄 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㪥㪦㪩㫊 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪘㪚㪥㪔㪋㪏 㪋㪏㪘
㪉㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪊㪏㪘
㪋㪏㪘
㪉㪪㪤㩷㪂㩷㪋㪍㪘
㪉㪪㪤㩷㪂㩷㪋㪍㪘
㪉㪪㪤㩷㪂㩷㪋㪍㪘
㪉㪪㪤㩷㪂㩷㪋㪍㪘
㪋㪏
㪋㪏
㪋㪏
㪝 㪞 㪥㪝㪈 㪥㪝㪉
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪜 㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪉㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪋㪋㪘
㪋㪏㪘
㪋㪏 㪋㪏
㪋㪏㪘
㪋㪏㪘
㪋㪏
㪋㪏
㪛 㪉㫅
㪹㫀㪾㫀㪹㪹㫌㫊
㪝㪃㩷㪤
㪝
㪚 㪪㪼㫏
㫊㫇㪅
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪺㫀㫅㪼㫉㪸㫊㪺㪼㫅㫊 㫍㪸㫀㪾㫀㪼㫅㫊㫀㫊 㪹㫀㪾㫀㪹㪹㫌㫊
㫄㪼㫃㪸㫅㫀㪺㪿㫋㪿㫐㫊 㫄㪼㫃㪸㫅㫀㪺㪿㫋㪿㫐㫊 㫇㫌㫅㪺㫋㪸㫋㪸
㪣㪸㪹㫉㪸㪺㫆㪾㫃㫆㫊㫊㪸
㩷㩷㩷㪪㪺㫆㫉㫇㫀㪻㫀㫅㪸㪼
㪤㫀㪺㫉㫆㪺㪸㫅㫋㪿㫌㫊
㩷㩷㩷㪤㫀㪺㫉㫆㪺㪸㫅㫋㪿㫀㫅㪸㪼
㪢㫐㫇㪿㫆㫊㫌㫊 㪢㫐㫇㪿㫆㫊㫌㫊 㪢㫐㫇㪿㫆㫊㫌㫊 㪢㫐㫇㪿㫆㫊㫌㫊
㩷㩷㩷㪢㫐㫇㪿㫆㫊㫀㫅㪸㪼
㪞㫀㫉㪼㫃㫃㪸 㪞㫀㫉㪼㫃㫃㪸 㪞㫀㫉㪼㫃㫃㪸
㪢㫐㫇㪿㫆㫊㫀㪻㪸㪼 㩷㩷㩷㪞㫀㫉㪼㫃㫃㫀㫅㪸㪼
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㪹㫆㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷
㪫㪸㪹㫃㪼㩷㪍㪅㪊㪍㩷㩷㪦㫉㪻㪼㫉㩷㪧㪜㪩㪚㪠㪝㪦㪩㪤㪜㪪㪅㩷㪧㪸㫉㫋㩷㪈㩷㪧㪼㫉㪺㫆㫀㪻㪼㫀㩷㪸㫅㪻㩷㪜㫃㪸㫊㫊㫆㫄㪸㫋㫆㫀㪻㪼㫀㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㫀㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀
㪠㫅㪻㫀㪸㩷㩿㪦㫉㫀㫊㫊㪸㪀
㪡㪸㫇㪸㫅
㪚㪿㫀㫅㪸
㪠㫅㪻㫀㪸㩷㩿㪞㫆㪸㪀
㪡㪸㫇㪸㫅㩷㩿㪪㫌㫉㫌㪾㪸㩷㪙㪸㫐㪀
㪠㫅㪻㫀㪸㩷㩿㪦㫉㫀㫊㫊㪸㪀
㪫㪿㪸㫀㫃㪸㫅㪻㩷㩿㪞㫌㫃㪽㩷㫆㪽㩷㪪㫀㪸㫄㪀
㪠㫅㪻㫀㪸㩷㩿㪧㫆㫉㫋㫆㫅㫆㫍㫆㪀
㪠㫅㪻㫀㪸㩷㩿㪮㪙㪀
㪡㪸㫇㪸㫅㩷㩿㪪㪿㫀㫑㫌㫆㫂㪸㪀
㪡㪸㫇㪸㫅㩷㩿㪚㪿㫀㪹㪸㪀
㪡㪸㫇㪸㫅㩷㩿㪥㫆㫋㫆㩷㪧㪼㫅㫀㫅㫊㫌㫃㪸㪀
㪡㪸㫇㪸㫅㩷㩿㪥㫆㫋㫆㩷㪧㪼㫅㫀㫅㫊㫌㫃㪸㪀
㪡㪸㫇㪸㫅㩷㩿㪥㫆㫋㫆㩷㪧㪼㫅㫀㫅㫊㫌㫃㪸㪀
㪡㪸㫇㪸㫅
㪡㪸㫇㪸㫅㩷㩿㪮㪸㫂㪸㫐㪸㫄㪸㪀
㪡㪸㫇㪸㫅㩷㩿㪮㪸㫂㪸㫐㪸㫄㪸㪀
㪡㪸㫇㪸㫅㩷㩿㪰㪸㫄㪸㪾㫌㪺㪿㫀㪀
㪢 㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪫㪄㪌㪊
㪦㪄㪋㪏
㪱㪄㪊㪐
㪩㪄㪋㪌㪃㩷㪟㪄㪋㪇
㪘㪄㪎㪎
㪧㪄㪈㪍
㪬㪄㪊㪐
㪥㪄㪈㪊
㪢㪄㪊㪈㪃㩷㪟㪄㪋㪇
㪤㪄㪈㪇㪊㪃㩷㪦㪄㪋㪏
㪘㪄㪍㪈
㪫㪄㪉㪈
㪫㪄㪉㪈
㪫㪄㪉㪈
㪦㪄㪋㪏
㪬㪄㪏㪊
㪬㪄㪊㪏
㪥㪄㪉㪐
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
168
㪤㫆㫅㫆㪻㪸㪺㫋㫐㫃㫌㫊 㪤㫆㫅㫆㪻㪸㪺㫋㫐㫃㫌㫊 㪤㫆㫅㫆㪻㪸㪺㫋㫐㫃㫌㫊 㪤㫆㫅㫆㪻㪸㪺㫋㫐㫃㫌㫊
㪤㫆㫅㫆㪻㪸㪺㫋㫐㫃㫀㪻㪸㪼
㪣㫌㫋㫁㪸㫅㫌㫊 㪣㫌㫋㫁㪸㫅㫌㫊 㪣㫌㫋㫁㪸㫅㫌㫊 㪣㫌㫋㫁㪸㫅㫌㫊 㪣㫌㫋㫁㪸㫅㫌㫊 㪣㫌㫋㫁㪸㫅㫌㫊 㪣㫌㫋㫁㪸㫅㫌㫊 㪣㫌㫋㫁㪸㫅㫌㫊 㪣㫌㫋㫁㪸㫅㫌㫊 㪣㫌㫋㫁㪸㫅㫌㫊 㪣㫌㫋㫁㪸㫅㫌㫊 㪣㫌㫋㫁㪸㫅㫌㫊 㪣㫌㫋㫁㪸㫅㫌㫊 㪣㫌㫋㫁㪸㫅㫌㫊 㪣㫌㫋㫁㪸㫅㫌㫊 㪣㫌㫋㫁㪸㫅㫌㫊 㪣㫌㫋㫁㪸㫅㫌㫊 㪣㫌㫋㫁㪸㫅㫌㫊 㪣㫌㫋㫁㪸㫅㫌㫊 㪣㫌㫋㫁㪸㫅㫌㫊 㪣㫌㫋㫁㪸㫅㫌㫊 㪣㫌㫋㫁㪸㫅㫌㫊 㪦㪺㫐㫌㫉㫌㫊 㪦㪺㫐㫌㫉㫌㫊 㪩㪿㫆㫄㪹㫆㫇㫃㫀㫋㪼㫊
㪣㫌㫋㫁㪸㫅㫀㪻㪸㪼㩷
㪸㫉㪾㪼㫅㫋㪼㫌㫊 㪸㫉㪾㪼㫅㫋㪼㫌㫊 㫊㪼㪹㪸㪼 㫊㪼㪹㪸㪼
㪸㫃㪼㫏㪸㫅㪻㫉㪼㫀 㪸㫅㪸㫃㫀㫊 㪸㫅㪸㫃㫀㫊 㪸㫉㪾㪼㫅㫋㫀㫄㪸㪺㫌㫃㪸㫋㫌㫊 㪸㫉㪾㪼㫅㫋㫀㫄㪸㪺㫌㫃㪸㫋㫌㫊 㪹㫆㪿㪸㫉 㪺㫐㪸㫅㫆㫇㫋㪼㫉㫌㫊 㪼㫉㫐㫋㪿㫉㫆㫇㫋㪼㫉㫌㫊 㪾㫉㫀㫊㪼㫌㫊 㫁㫆㪺㫌 㫁㫆㪿㫅㫀㫀 㫂㪸㫊㫄㫀㫉㪸 㫂㪸㫊㫄㫀㫉㪸 㫈㫌㫀㫅㫈㫌㪼㫃㫀㫅㪼㪸㫋㫌㫊 㫈㫌㫀㫅㫈㫌㪼㫃㫀㫅㪼㪸㫋㫌㫊 㫉㫌㫊㫊㪼㫃㫃㫀 㫊㪸㫅㪾㫌㫀㫅㪼㫌㫊 㫊㪼㪹㪸㪼 㫊㫐㫅㪸㪾㫉㫀㫊 㫊㫐㫅㪸㪾㫉㫀㫊 㫊㫐㫅㪸㪾㫉㫀㫊 㫍㫀㫋㫋㪸 㪺㪿㫉㫐㫊㫌㫉㫌㫊 㪺㪿㫉㫐㫊㫌㫉㫌㫊 㪸㫌㫉㫆㫉㫌㪹㪼㫅㫊
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㪹㫆㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷
㪺㫐㫋㫆㫋㫐㫇㪼㩷㪠 㪺㫐㫋㫆㫋㫐㫇㪼㩷㪠㪠
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪋㪏㪘 㪋㪏㪘 㪋㪏㪘
㪋㪏 㪋㪏 㪋㪏
㪋㪏 㪋㪎 㪋㪏
㪝
㪋㪏 㪋㪏㪘
㪈㪤㩷㪂㩷㪋㪍㪘
㪋㪏㪘
㪉㪪㪫㩷㪂㩷㪋㪍㪘
㪈㪤㩷㪂㩷㪋㪍㪘
㪋㪎
㪋㪏
㪋㪏㪘
㪋㪏㪘
㪋㪏
㪋㪏
㪤
㪝㪃㩷㪤
㪝㪃㩷㪤
㪝㪃㩷㪤
㪝㪃㩷㪤
㪋㪏㪘
㪋㪏
㪋㪏㪘
㪋㪏 㪋㪏㪘
㪈㪤㩷㪂㩷㪋㪎㪘
㪋㪎 㪋㪏
㪋㪏㪘
㪋㪏
㪝 㪤 㪤
㪋㪏㪘
㪋㪏
㪝㪃㩷㪤
㪋㪏㪘
㪋㪏㪘
㪋㪏
㪋㪏
㪜 㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪤
㪋㪏㪘 㪋㪏㪘
㪋㪏 㪋㪏
㪝㪃㩷㪤
㪋㪏㪘 㪋㪏㪘
㪋㪏 㪋㪏
㪝㪃㩷㪤
㪤
㪋㪏㪘 㪋㪏㪘
㪋㪏
㪋㪏㪘
㪋㪏 㪋㪏
㪋㪏㪘
㪋㪏 㪝㪃㩷㪤
㪋㪏㪘
㪋㪏
㪋㪏㪘
㪋㪏
㪤
㪛 㪉㫅
㪝㪃㩷㪤
㪚 㪪㪼㫏
㪫㪸㪹㫃㪼㩷㪍㪅㪊㪍㩷㩷㪦㫉㪻㪼㫉㩷㪧㪜㪩㪚㪠㪝㪦㪩㪤㪜㪪㪅㩷㪧㪸㫉㫋㩷㪈㩷㪧㪼㫉㪺㫆㫀㪻㪼㫀㩷㪸㫅㪻㩷㪜㫃㪸㫊㫊㫆㫄㪸㫋㫆㫀㪻㪼㫀㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㫀㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏 㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪌㪇
㪋㪏
㪋㪏 㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪝 㪞 㪥㪝㪈 㪥㪝㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪋
㪉㪄㪋
㪉
㪉
㪉
㪉
㩿㪈㪅㪏㩷㪙㪝㪘㪀
㪉㪅㪇㩷㪝㪠㪘 㪉㪅㪉㩷㪝㪛㪃㩷㪉㪅㪍㩷㪙㪝㪘
㪈㪅㪍㩷㪝㪠㪘
㪉㪅㪊㩷㪝㪠㪘
㪉㪅㪐㪁㩷㪝㪚㪤
㪉㪅㪐㪁㩷㪝㪚㪤
㪉㪅㪐㪁㩷㪝㪚㪤
㪉㪅㪋㩷㪝㪠㪘
㪟 㪠 㪘㪾㪄 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㪥㪦㪩㫊 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪡㪸㫇㪸㫅㩷㩿㪦㫂㫀㫅㪸㫎㪸㪀
㪯㪈㪯㪈㪯㪉㪯㪉
㪬㪄㪎㪐
㪬㪄㪎㪐
㪚㪄㪍㪈
㪣㪄㪏㪈
㪩㪄㪈㪈㪈
㪥㪄㪎㪇
㪚㪄㪈㪉㪃㩷㪰㪄㪉㪍
㪩㪄㪈㪈㪈
㪚㪄㪈㪉㪃㩷㪟㪄㪋㪇
㪧㪄㪈㪍㪃㩷㪢㪄㪋㪍
㪚㪄㪈㪉
㪥㪄㪎㪇
㪩㪄㪈㪈㪈
㪩㪄㪈㪈㪈
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
㪯㪯㪃㩷㪘㪚㪥㪔㪋㪏
㪯㪦㪃㩷㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪮㪅㩷㪘㪽㫉㫀㪺㪸
㪮㪅㩷㪘㪽㫉㫀㪺㪸
㪠㫅㪻㫀㪸㩷㩿㪧㫆㫉㫋㫆㫅㫆㫍㫆㪀
㩿㪘㫊㫀㪸㪀
㪭㪼㫅㪼㫑㫌㪼㫃㪸
㪙㫉㪸㫑㫀㫃㩷㩿㪩㪥㪀㪃㩷㪭㪼㫅㪼㫑㫌㪼㫃㪸
㪚㪿㫀㫅㪸㩷㩿㪱㪿㪸㫅㫁㫀㪸㫅㪾㪀 㪙㫉㪸㫑㫀㫃㩷㩿㪩㪥㪀
㪭㪼㫅㪼㫑㫌㪼㫃㪸
㪭㪼㫅㪼㫑㫌㪼㫃㪸
㪙㫉㪸㫑㫀㫃㩷㩿㪩㪥㪀
㪚㪿㫀㫅㪸㩷㩿㪟㪸㫀㫅㪸㫅㪀㩷
㪠㫅㪻㫀㪸㩷㩿㪞㫆㪸㪀
㪫㪿㪸㫀㫃㪸㫅㪻㩷㩿㪞㫌㫃㪽㩷㫆㪽㩷㪪㫀㪸㫄㪀
㪪㪄㪈㪉㪐
㪪㪄㪈㪉㪐
㪥㪄㪈㪊
㪪㪄㪈㪉㪐㪃㩷㪟㪄㪈㪊
㪥㪄㪎㪍
㪩㪄㪈㪈㪈㪃㩷㪥㪄㪎㪍
㪣㪄㪏㪈㪃㩷㪟㪄㪋㪈 㪞㪄㪈㪉㪃㩷㪟㪄㪈㪊
㪥㪄㪎㪇
㪥㪄㪎㪇
㪩㪄㪈㪈㪈
㪰㪄㪉㪍㪃㩷㪟㪄㪋㪈
㪩㪄㪋㪌
㪬㪄㪊㪏㪃㩷㪟㪄㪋㪇
㪯㪈㪯㪉㪰㪃㩷㪘㪚㪥㪔㪋㪏 㪡㪸㫇㪸㫅㩷㩿㪮㪸㫂㪸㫐㪸㫄㪸㪃㩷㪦㫂㫀㫅㪸㫎㪸㪀 㪬㪄㪎㪐
㪡㪸㫇㪸㫅㩷㩿㪦㫂㫀㫅㪸㫎㪸㪀
㪠㫅㪻㫀㪸㩷㩿㪦㫉㫀㫊㫊㪸㪀
㪚㪿㫀㫅㪸㩷㩿㪱㪿㪸㫅㫁㫀㪸㫅㪾㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪩㪥㪀
㪭㪼㫅㪼㫑㫌㪼㫃㪸
㪚㪿㫀㫅㪸
㪙㫉㪸㫑㫀㫃㩷㩿㪩㪥㪀
㪚㪿㫀㫅㪸
㪠㫅㪻㫀㪸㩷㩿㪦㫉㫀㫊㫊㪸㪀
㪚㪿㫀㫅㪸
㪭㪼㫅㪼㫑㫌㪼㫃㪸
㪙㫉㪸㫑㫀㫃㩷㩿㪩㪥㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪩㪥㪀
㪢 㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
169
㪽㫃㪸㫍㫆㫃㫀㫅㪼㪸㫋㫌㫊 㪸㫉㪾㪼㫅㫋㫀㫅㪸㪼 㪹㪸㫉㪹㪸㫋㫌㫊 㪹㪸㫉㪹㪸㫋㫌㫊 㪹㪸㫉㪹㪸㫋㫌㫊 㫊㫌㫉㫄㫌㫃㪼㫋㫌㫊 㫊㫌㫉㫄㫌㫃㪼㫋㫌㫊 㫊㫇㫀㫃㫌㫉㫌㫊 㫇㪸㫉㫍㫌㫊 㫋㫉㪸㪾㫌㫃㪸
㪙㪸㪻㫀㫊 㪙㪸㪻㫀㫊 㪙㪸㪻㫀㫊
㪥㪸㫅㪻㫀㪻㪸㪼 㩷㩷㩷㪙㪸㪻㫀㫅㪸㪼
㪤㫌㫃㫃㫀㪻㪸㪼㩷
㪤㫌㫃㫃㫆㫀㪻㫀㪺㪿㫋㪿㫐㫊 㪤㫌㫃㫃㫌㫊 㪤㫌㫃㫃㫌㫊 㪤㫌㫃㫃㫌㫊 㪤㫌㫃㫃㫌㫊 㪤㫌㫃㫃㫌㫊 㪤㫌㫃㫃㫌㫊 㪧㪸㫉㫌㫇㪼㫅㪼㫌㫊 㪬㫇㪼㫅㪼㫌㫊 㪬㫇㪼㫅㪼㫌㫊
㪹㪸㪻㫀㫊 㪹㪸㪻㫀㫊 㪹㪸㪻㫀㫊
㫊㫇㪅
㪸㫄㪼㫉㫀㪺㪸㫅㪸 㫊㪸㫏㪸㫋㫀㫃㫀㫊 㫊㪸㫏㪸㫋㫀㫃㫀㫊
㫃㪸㪹㫉㪸㫏 㫃㪸㪹㫉㪸㫏 㫃㪸㪹㫉㪸㫏 㫃㪸㪹㫉㪸㫏 㫇㫌㫅㪺㫋㪸㫋㫌㫊 㫇㫌㫅㪺㫋㪸㫋㫌㫊 㫁㪸㫇㫆㫅㫀㪺㫌㫊 㫁㪸㫇㫆㫅㫀㪺㫌㫊 㫁㪸㫇㫆㫅㫀㪺㫌㫊 㫃㪸㫋㫌㫊
㪛㫀㪺㪼㫅㫋㫉㪸㫉㪺㪿㫌㫊 㪛㫀㪺㪼㫅㫋㫉㪸㫉㪺㪿㫌㫊 㪛㫀㪺㪼㫅㫋㫉㪸㫉㪺㪿㫌㫊 㪛㫀㪺㪼㫅㫋㫉㪸㫉㪺㪿㫌㫊 㪛㫀㪺㪼㫅㫋㫉㪸㫉㪺㪿㫌㫊 㪛㫀㪺㪼㫅㫋㫉㪸㫉㪺㪿㫌㫊 㪣㪸㫋㪼㫆㫃㪸㪹㫉㪸㫏 㪣㪸㫋㪼㫆㫃㪸㪹㫉㪸㫏 㪣㪸㫋㪼㫆㫃㪸㪹㫉㪸㫏 㪣㪸㫋㪼㫆㫃㪸㪹㫉㪸㫏 㪣㪸㫋㪼㫆㫃㪸㪹㫉㪸㫏 㪤㫆㫉㫆㫅㪼 㪤㫆㫉㫆㫅㪼 㪤㫆㫉㫆㫅㪼
㪤㫆㫉㫆㫅㫀㪻㪸㪼
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㪹㫆㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷
㪪㪼㫉㫉㪸㫅㫀㪻㪸㪼 㪪㪼㫉㫉㪸㫅㫀㪻㪸㪼 㫊㪼㪸㩷㪹㪸㫊㫊 㪪㪼㫉㫉㪸㫅㫀㪻㪸㪼 㫊㫇㫆㫋㫋㪼㪻㩷㫊㪼㪸㩷㪹㪸㫊㫊 㪪㪼㫉㫉㪸㫅㫀㪻㪸㪼
㪪㪼㫉㫉㪸㫅㫀㪻㪸㪼
㪪㪼㫉㫉㪸㫅㫀㪻㪸㪼
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪋㪍 㪋㪍
㪝㪃㩷㪤 㪝㪃㩷㪤
㪋㪏
㪌㪇
㪤
㪍㪤㩷㪂㩷㪋㪇㪘
㪈㪇㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪊㪉㪘
㪉㪍㩷㪤㪆㪪㪤㩷㪂㩷㪉㪉㪘
㪌㪇㩷㪪㪫㪆㪘
㪏㩷㪤㪆㪪㪤㩷㪂㩷㪊㪍㩷㪪㪫㪆㪘
㪏㪤㩷㪂㩷㪏㪪㪤㩷㪂㩷㪉㪏㩷㪪㪫㪆㪘
㪋㪋
㪋㪋 㪝㪃㩷㪤
㪏㩷㪤㪆㪪㪤㩷㪂㩷㪈㪍㪪㪫㩷㪂㩷㪉㪇㪘
㪋㪏 㪋㪋
㪝㪃㩷㪤 㪝㪃㩷㪤
㪍㩷㪤㪆㪪㪤㩷㪂㩷㪈㪍㪪㪫㩷㪂㩷㪉㪉㪘
㪍㩷㪤㪆㪪㪤㩷㪂㩷㪊㪏㪘
㪋㪋 㪋㪋
㪋㩷㪤㪆㪪㪤㩷㪂㩷㪋㪇㪘
㪋㪋 㪝㪃㩷㪤
㪋㪏㪘 㪉㪪㪤㩷㪂㩷㪋㪉㪘
㪉㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪋㪇㪘
㪋㪏
㪋㪏
㪉㪪㪤㩷㪂㩷㪏㪪㪫㩷㪂㩷㪊㪏㪘
㪋㪋
㪋㪏㪘
㪋㪏
㪋㪏㪘
㪉㪪㪫㩷㪂㩷㪋㪍㪘
㪋㪏㪘
㪋㪏
㪋㪏
㪋㪏
㪋㪏㪘
㪋㪏
㪋㪏㪘
㪋㪏 㪝㪃㩷㪤 㪝㪃㩷㪤
㪋㪏㩷㪪㪫㪆㪘 㪉㪪㪫㩷㪂㩷㪋㪍㪘
㪋㪏
㪝㪃㩷㪤
㪝㪃㩷㪤
㪋㪏 㪋㪏
㪝㪃㩷㪤 㪝㪃㩷㪤
㪉㪪㪤㩷㪂㩷㪋㪍㪘
㪋㪏㩷㪪㪫㪆㪘
㪋㪏
㪋㪏
㪋㪏㪘 㪉㪪㪫㩷㪂㩷㪋㪍㪘
㪋㪏 㪋㪏
㪜 㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪝㪃㩷㪤
㪛 㪉㫅
㪝㪃㩷㪤
㪚 㪪㪼㫏
㪫㪸㪹㫃㪼㩷㪍㪅㪊㪍㩷㩷㪦㫉㪻㪼㫉㩷㪧㪜㪩㪚㪠㪝㪦㪩㪤㪜㪪㪅㩷㪧㪸㫉㫋㩷㪈㩷㪧㪼㫉㪺㫆㫀㪻㪼㫀㩷㪸㫅㪻㩷㪜㫃㪸㫊㫊㫆㫄㪸㫋㫆㫀㪻㪼㫀㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㫀㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀
㪌㪉
㪍㪇
㪎㪋
㪌㪇
㪌㪉
㪍㪇
㪌㪉
㪌㪇
㪌㪇
㪌㪇
㪋㪏
㪋㪍
㪋㪏
㪌㪇
㪌㪇
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪌㪇
㪋㪏
㪋㪏
㪋㪏
㪌㪉
㪍㪇
㪎㪋
㪍㪏
㪍㪍
㪌㪇
㪋㪏
㪋㪍
㪋㪏
㪌㪍
㪌㪏
㪋㪏
㪋㪏
㪌㪇
㪋㪏
㪋㪏
㪋㪏
㪌㪇
㪌㪇
㪌㪇
㪋㪏
㪝 㪞 㪥㪝㪈 㪥㪝㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪈㪄㪉
㪉
㪉
㪈㪅㪊㩷㪝㪛
㪈㪅㪉㪁㩷㪝㪚㪤
㩿㪈㪅㪐㩷㪝㪠㪘㪃㩷㪈㪅㪏㩷㪙㪝㪘㪀
㪈㪅㪎㩷㪝㪚㪤
㪈㪅㪎㩷㪝㪚㪤
㩿㪈㪅㪍㩷㪝㪚㪤㪀
㪟 㪠 㪘㪾㪄 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㪥㪦㪩㫊 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪇㪄㪋㩷㪙㪃㩷㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪯㪯㪆㪯㪰
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪮㪄㪎㪃㩷㪰㪄㪉㪇㪃㩷㪰㪄㪉㪈
㪢㪄㪎㪇㪃㩷㪢㪄㪏㪉㪃㩷㪫㪄㪉㪎 㩷 㩷
㪭㪄㪍㪊
㪪㪄㪐㪇
㪘㪄㪐㪇
㪪㪄㪐㪇
㪭㪄㪍㪊㪃㩷㪚㪄㪊㪈
㪚㪄㪈㪈
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
㪢㪄㪎㪇㪃㩷㪢㪄㪏㪉㪃㩷㪫㪄㪉㪎
㪠㫅㪻㫀㪸㩷㩿㪡㪸㫄㫄㫌㪀
㪠㫅㪻㫀㪸㩷㩿㪦㫉㫀㫊㫊㪸㪀
㪠㫅㪻㫀㪸㩷㩿㪘㫊㫊㪸㫄㪀
㪠㫅㪻㫀㪸㩷㩿㪘㫅㪻㪸㫄㪸㫅㩷㪠㫊㪅㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪩㪡㪀
㪡㪸㫇㪸㫅㩷㩿㪚㪿㫀㪹㪸㪀
㪠㫋㪸㫃㫐㩷㩿㪧㪸㫃㪼㫉㫄㫆㪀
㪪㫇㪸㫀㫅㩷㩿㪤㪸㫃㪸㪾㪸㪀
㪠㫋㪸㫃㫐㩷㩿㪧㪸㫃㪼㫉㫄㫆㪀
㪤㫆㫅㪸㪺㫆
㪤㫆㫅㪸㪺㫆
㪙㫉㪸㫑㫀㫃
㪡㪸㫇㪸㫅
㪬㪪㪘㩷㩿㪥㪰㪀
㪬㪪㪘㩷㩿㪥㪰㪀
㪜㪅㩷㪬㪪㪘
㪪㪄㪌㪋
㪫㪄㪌㪊
㪢㪄㪋㪍
㪩㪄㪋㪌
㪧㪄㪏㪊
㪘㪄㪎㪋
㪭㪄㪍㪍
㪚㪄㪐
㪭㪄㪍㪍
㪣㪄㪌
㪣㪄㪌
㪙㪄㪏㪍
㪦㪄㪋㪏
㪩㪄㪉㪎
㪩㪄㪉㪎㪃㩷㪟㪄㪈㪊㪃㩷㪟㪄㪋㪈
㪙㪄㪍㪋
㪢㫆㫉㪼㪸㩷㩿㪚㪿㫌㫅㪾㪺㪿㫆㫅㪾㫅㪸㫄㪄㪻㫆㪀 㪧㪄㪈㪉
㪡㪸㫇㪸㫅㩷㩿㪪㪿㫀㫄㪸㫅㪼㪀
㪢㫆㫉㪼㪸㩷㩿㪚㪿㫌㫅㪾㪺㪿㫆㫅㪾㫅㪸㫄㪄㪻㫆㪀 㪧㪄㪈㪉
㪚㪿㫀㫅㪸㩷㩿㪪㪿㪸㫅㪻㫆㫅㪾㪀
㪡㪸㫇㪸㫅㩷㩿㪪㪿㫀㫄㪸㫅㪼㪀
㪠㫋㪸㫃㫐㩷㩿㪧㪸㫃㪼㫉㫄㫆㪀
㪜㪾㫐㫇㫋
㪬㪪㪪㪩㩷㩿㪙㫃㪸㪺㫂㩷㪪㪼㪸㪀
㪠㫋㪸㫃㫐
㪠㫋㪸㫃㫐㩷㩿㪫㫐㫉㫉㪿㪼㫅㫀㪸㫅㩷㪪㪼㪸㪀
㪪㫇㪸㫀㫅㩷㩿㪤㪸㫃㪸㪾㪸㪀
㪢 㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
170
㪚㫆㫉㪼㫆㫇㪼㫉㪺㪸 㪚㫆㫉㪼㫆㫇㪼㫉㪺㪸 㪚㫆㫉㪼㫆㫇㪼㫉㪺㪸 㪪㫀㫅㫀㫇㪼㫉㪺㪸 㪪㫀㫅㫀㫇㪼㫉㪺㪸 㪪㫀㫅㫀㫇㪼㫉㪺㪸 㪪㫀㫅㫀㫇㪼㫉㪺㪸 㪪㫀㫅㫀㫇㪼㫉㪺㪸 㪪㫀㫅㫀㫇㪼㫉㪺㪸 㪪㫀㫅㫀㫇㪼㫉㪺㪸 㪪㫀㫅㫀㫇㪼㫉㪺㪸 㪪㫀㫅㫀㫇㪼㫉㪺㪸
㪧㪼㫉㪺㫀㪺㪿㫋㪿㫐㫀㪻㪸㪼
㪧㪼㫄㫇㪿㪼㫉㫀㫊
㪧㪼㫄㫇㪿㪼㫉㫀㪻㪸㪼
㪦㫇㫃㪼㪾㫅㪸㫋㪿㫌㫊 㪦㫇㫃㪼㪾㫅㪸㫋㪿㫌㫊 㪦㫇㫃㪼㪾㫅㪸㫋㪿㫌㫊 㪦㫇㫃㪼㪾㫅㪸㫋㪿㫌㫊
㪦㫇㫃㪼㪾㫅㪸㫋㪿㫀㪻㪸㪼㩷
㪧㫉㫀㫊㫋㫆㫃㪼㫇㫀㫊
㩷㩷㩷㪧㫉㫀㫊㫋㫆㫃㪼㫇㫀㪻㫀㫅㪸㪼
㪥㪸㫅㪻㫌㫊 㪥㪸㫅㪻㫌㫊 㪥㪸㫅㪻㫌㫊 㪥㪸㫅㪻㫌㫊 㪥㪸㫅㪻㫌㫊
㪿㪼㫉㫑㫀 㪿㪼㫉㫑㫀 㫂㪸㫎㪸㫄㪼㪹㪸㫉㫀 㪺㪿㫌㪸㫋㫊㫀 㪺㪿㫌㪸㫋㫊㫀 㫂㫅㪼㫉㫀 㫆㪹㫊㪺㫌㫉㪸 㫉㫆㫌㫃㪼㫀 㫊㪺㪿㪼㫉㫑㪼㫉㫀 㫊㪺㪿㪼㫉㫑㪼㫉㫀 㫊㪺㪿㪼㫉㫑㪼㫉㫀 㫌㫅㪻㫌㫃㪸㫋㪸
㫊㪺㪿㫎㪼㫅㫂㫀㫀
㪽㪸㫊㪺㫀㪸㫋㫌㫊 㪽㪸㫊㪺㫀㪸㫋㫌㫊 㪽㪸㫊㪺㫀㪸㫋㫌㫊 㫇㫌㫅㪺㫋㪸㫋㫌㫊
㫄㪸㫉㪾㫀㫅㪸㫋㪸
㫅㪸㫅㪻㫌㫊 㫅㪸㫅㪻㫌㫊 㫅㪸㫅㪻㫌㫊 㫅㪸㫅㪻㫌㫊 㫆㫏㫐㫉㪿㫐㫅㪺㪿㫌㫊
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㪹㫆㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷 㩷㩷㩷㪥㪸㫅㪻㫀㫅㪸㪼
㪋㪏
㪋㪏 㪋㪏
㪝㪃㩷㪤
㪍㪪㪤㩷㪂㩷㪈㪋㪪㪫㩷㪂㩷㪉㪏㪘
㪋㪏
㪉㪪㪤㩷㪂㩷㪈㪍㪪㪫㩷㪂㩷㪊㪇㪘
㪋㪪㪤㩷㪂㩷㪋㪋㩷㪪㪫㪆㪘
㪋㪪㪤㩷㪂㩷㪋㪋㩷㪪㪫㪆㪘
㪉㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪊㪍㪘
㪋㪏
㪝㪃㩷㪤
㪋㪪㪤㩷㪂㩷㪈㪋㪪㪫㩷㪂㩷㪊㪇㪘
㪋㪏
㪋㪏
㪍㪪㪤㩷㪂㩷㪈㪋㪪㪫㩷㪂㩷㪉㪏㪘
㪋㪏
㪝㪃㩷㪤
㪉㪉㪪㪫㩷㪂㩷㪉㪍㪘
㪋㪏
㪹㫃㪸㪺㫂㩷㫍㪸㫉㫀㪸㫅㫋 㪾㫆㫃㪻㩷㫍㪸㫉㫀㪸㫅㫋
㪉㪋㩷㪪㪤㪆㪪㪫㩷㪂㩷㪉㪋㪘
㪋㪏
㪌㪇
㪌㪉
㪌㪉
㪌㪋
㪌㪇
㪌㪉
㪌㪋
㪋㪏
㪌㪉 㪎㪉
㪈㪅㪏㪁㩷㪝㪚㪤
㪈㪅㪋㪁㩷㪝㪚㪤
㪈㪅㪊㩷㪝㪛
㪈㪅㪏㪁㩷㪝㪚㪤
㪍㪍
㪍㪏
㪍㪇
㪍㪍
㪍㪏
㪎㪇
㪈㪅㪋㩷㪝㪛
㪈㪅㪋㩷㪝㪛
㩿㪈㪅㪎㪁㩷㪝㪛㪀
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏 㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪄㪎㪋㪃㩷㪦㪄㪋㪏
㪱㪄㪊㪐 㪤㪄㪈㪈㪈
㪢㪄㪌㪊
㪥㪄㪉㪐㪃㩷㪤㪄㪈㪈㪈㪃㩷㪦㪄㪋㪏
㪥㪄㪌㪏
㪛㪄㪉㪏
㪪㪄㪌㪋
㪢㪄㪈㪊㪍
㪤㪄㪉㪍
㪥㪄㪈㪍
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
㪚㪿㫀㫅㪸
㪢㫆㫉㪼㪸㩷㩿㪟㪸㫅㩷㪩㪅㪀
㪢㫆㫉㪼㪸㩷㩿㪟㪸㫅㩷㪩㪅㪀
㪚㪿㫀㫅㪸
㪚㪿㫀㫅㪸
㪚㪿㫀㫅㪸
㪚㪿㫀㫅㪸
㪚㪿㫀㫅㪸㩷㩿㪟㫌㪹㪼㫀㪀
㪚㪿㫀㫅㪸
㪰㪄㪈㪌
㪧㪄㪈㪈
㪧㪄㪈㪈
㪰㪄㪈㪌
㪰㪄㪈㪌
㪰㪄㪈㪌
㪰㪄㪈㪌
㪣㪄㪌㪊
㪰㪄㪈㪇㪃㩷㪚㪄㪏㪊
㪬㪄㪉㪏㪃㩷㪦㪄㪋㪏
㪣㪄㪈㪌
㪢㫆㫉㪼㪸㩷㩿㪚㪿㫌㫅㪾㪺㪿㫆㫅㪾㫅㪸㫄㪄㪻㫆㪀 㪬㪄㪉㪏
㪡㪸㫇㪸㫅㩷㩿㪫㪸㫅㪼㪾㪸㫊㪿㫀㫄㪸㪀
㩿㪚㪿㫀㫅㪸㪀 㪡㪸㫇㪸㫅
㪢㫆㫉㪼㪸
㪡㪸㫇㪸㫅
㪠㫅㪻㫀㪸㩷㩿㪢㪼㫉㪸㫃㪸㪀
㪫㪿㪸㫀㫃㪸㫅㪻
㪠㫅㪻㫀㪸㩷㩿㪡㪸㫄㫄㫌㪀
㪠㫅㪻㫀㪸㩷㩿㪮㪙㪀
㪡㪸㫇㪸㫅㩷㩿㪟㫐㫆㪾㫆㪀
㪋㪪㪤㩷㪂㩷㪋㪋㩷㪪㪫㪆㪘
㪉
㪉
㪋
㪠㫅㪻㫀㪸㩷㩿㪮㪙㪀
㪠㫅㪻㫀㪸㩷㩿㪮㪙㪀
㪢 㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪋㪏
㪌㪇
㪌㪇
㪌㪉 㪌㪇
㪌㪇
㪌㪇
㪋㪏
㪎㪍
㪏㪋
㪏㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪢㫆㫉㪼㪸
㪉㪪㪤㩷㪂㩷㪋㪍㩷㪪㪫㪆㪘
㪉㪪㪤㩷㪂㩷㪋㪍㩷㪪㪫㪆㪘
㪌㪇 㪌㪇
㪌㪇
㪌㪇
㪋㪏
㪎㪇
㪏㪉
㪐㪋
㪏㪉
㪟 㪠 㪘㪾㪄 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㪥㪦㪩㫊 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪋㪏
㪋㪏
㪋㪏
㪉㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪋㪋㪘 㪉㪪㪤㩷㪂㩷㪋㪍㪘
㪋㪏 㪋㪏
㪉㪪㪤㩷㪂㩷㪋㪍㪘 㪉㩷㪤㪆㪪㪤㩷㪂㩷㪋㪍㪘
㪋㪏
㪋㪏㪘
㪋㪤㩷㪂㩷㪊㪇㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪏㪘
㪋㪏
㪤
㪝㪃㩷㪤
㪝㪃㩷㪤
㪈㪋㪤㩷㪂㩷㪏㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪉㪇㪘
㪋㪏
㪤
㪋㪏
㪋㪤㩷㪂㩷㪈㪏㪪㪤㩷㪂㩷㪈㪋㪪㪫㩷㪂㩷㪈㪉㪘 㪎㪇
㪋㪏
㪏㪏
㪝㪃㩷㪤
㪋㪤㩷㪂㩷㪊㪍㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪉㪘
㪋㪏
㪏㪉
㪝 㪞 㪥㪝㪈 㪥㪝㪉
㪋㪏
㪍㪤㩷㪂㩷㪉㪏㪪㪤㩷㪂㩷㪈㪋㪘
㪜 㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪝
㪛 㪉㫅
㪝㪃㩷㪤
㪚 㪪㪼㫏
㪚㫆㫉㪼㫆㫊㫀㫅㫀㫇㪼㫉㪺㪸
㫏㪸㫅㫋㪿㫆㫇㫋㪼㫉㪸
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪫㪸㪹㫃㪼㩷㪍㪅㪊㪍㩷㩷㪦㫉㪻㪼㫉㩷㪧㪜㪩㪚㪠㪝㪦㪩㪤㪜㪪㪅㩷㪧㪸㫉㫋㩷㪈㩷㪧㪼㫉㪺㫆㫀㪻㪼㫀㩷㪸㫅㪻㩷㪜㫃㪸㫊㫊㫆㫄㪸㫋㫆㫀㪻㪼㫀㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㫀㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀
171
㪘㫄㫄㫆㪺㫉㫐㫇㫋㪸 㪜㫋㪿㪼㫆㫊㫋㫆㫄㪸 㪜㫋㪿㪼㫆㫊㫋㫆㫄㪸 㪜㫋㪿㪼㫆㫊㫋㫆㫄㪸 㪜㫋㪿㪼㫆㫊㫋㫆㫄㪸 㪜㫋㪿㪼㫆㫊㫋㫆㫄㪸 㪜㫋㪿㪼㫆㫊㫋㫆㫄㪸 㪜㫋㪿㪼㫆㫊㫋㫆㫄㪸 㪜㫋㪿㪼㫆㫊㫋㫆㫄㪸 㪜㫋㪿㪼㫆㫊㫋㫆㫄㪸 㪜㫋㪿㪼㫆㫊㫋㫆㫄㪸 㪜㫋㪿㪼㫆㫊㫋㫆㫄㪸 㪜㫋㪿㪼㫆㫊㫋㫆㫄㪸 㪞㫐㫄㫅㫆㪺㪼㫇㪿㪸㫃㫌㫊 㪞㫐㫄㫅㫆㪺㪼㫇㪿㪸㫃㫌㫊 㪞㫐㫄㫅㫆㪺㪼㫇㪿㪸㫃㫌㫊 㪞㫐㫄㫅㫆㪺㪼㫇㪿㪸㫃㫌㫊 㪞㫐㫄㫅㫆㪺㪼㫇㪿㪸㫃㫌㫊 㪞㫐㫄㫅㫆㪺㪼㫇㪿㪸㫃㫌㫊 㪧㪼㫉㪺㪸 㪧㪼㫉㪺㪸 㪧㪼㫉㪺㪸 㪧㪼㫉㪺㪸 㪧㪼㫉㪺㪸 㪧㪼㫉㪺㪸㫉㫀㫅㪸 㪧㪼㫉㪺㫀㫅㪸 㪧㪼㫉㪺㫀㫅㪸 㪧㪼㫉㪺㫀㫅㪸 㪧㪼㫉㪺㫀㫅㪸 㪧㪼㫉㪺㫀㫅㪸 㪧㪼㫉㪺㫀㫅㪸 㪪㪸㫅㪻㪼㫉 㪪㪸㫅㪻㪼㫉
㪧㪼㫉㪺㫀㪻㪸㪼
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㫍㫀㫍㪸㫏 㪹㫃㪼㫅㫅㫀㫆㫀㪻㪼㫊㩷㪹㫃㪼㫅㫅㫀㫆㫀㪻㪼㫊 㪹㫃㪼㫅㫅㫀㫆㫀㪻㪼㫊㩷㫇㪿㫆㫃㫀㪻㫆㫋㫌㫄 㪺㪸㪼㫉㫌㫃㪼㫌㫄 㪺㪸㪼㫉㫌㫃㪼㫌㫄 㪺㪸㫄㫌㫉㫌㫄㩷㪺㪸㪼㫉㫌㫃㪼㫌㫄 㪺㪸㫄㫌㫉㫌㫄 㪻㫀㫋㫉㪼㫄㪸 㪼㫏㫀㫃㪼 㪽㫃㪸㪹㪼㫃㫃㪸㫉㪼 㪽㫃㪸㪹㪼㫃㫃㪸㫉㪼㩷㪽㫃㪸㪹㪼㫃㫃㪸㫉㪼 㫅㫀㪾㫉㫌㫄 㫅㫀㪾㫉㫌㫄㩷㫅㫀㪾㫉㫌㫄 㫊㫎㪸㫀㫅㫀 㪹㪸㫃㫆㫅㫀 㪺㪼㫉㫅㫌㫌㫊 㪘㪺㪼㫉㫀㫅㪸㩷㪺㪼㫉㫅㫌㪸 㪺㪼㫉㫅㫌㫌㫊 㪺㪼㫉㫅㫌㪸 㪺㪼㫉㫅㫌㫌㫊 㪘㪺㪼㫉㫀㫅㪸㩷㪺㪼㫉㫅㫌㪸 㪺㪼㫉㫅㫌㫌㫊 㫊㪺㪿㫉㪸㪼㫊㫋㪼㫉 㪽㫃㪸㫍㪼㫊㪺㪼㫅㫊 㪽㫃㫌㫍㫀㪸㫋㫀㫃㫀㫊 㪽㫃㫌㫍㫀㪸㫋㫀㫃㫀㫊 㪽㫃㫌㫍㫀㪸㫋㫀㫃㫀㫊 㪽㫃㫌㫍㫀㪸㫋㫀㫃㫀㫊 㪻㪼㫄㫀㪻㫆㪽㪽㫀 㪺㪸㫇㫉㫆㪻㪼㫊 㪺㪸㫇㫉㫆㪻㪼㫊 㪺㪸㫇㫉㫆㪻㪼㫊 㫄㪸㪺㫌㫃㪸㫋㪸 㫅㫀㪾㫉㫆㪽㪸㫊㪺㫀㪸㫋㪸 㫊㪺㫀㪼㫉㪸 㫃㫌㪺㫀㫆㫇㪼㫉㪺㪸 㪪㫋㫀㫑㫆㫊㫋㪼㪻㫀㫆㫅 㫃㫌㪺㫀㫆㫇㪼㫉㪺㪸 㪣㫌㪺㫀㫆㫇㪼㫉㪺㪸
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㪹㫆㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷
㪋㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪋㪉㪘 㪉㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪋㪋㪘
㪋㪏 㪋㪏
㪉㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪋㪋㪘
㪋㪏
㪈㪋㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪈㪋㪪㪫㩷㪂㩷㪍㪘 㪎㪍
㪋㪏
㪏㪇
㪉㪤㩷㪂㩷㪊㪇㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪍㪘
㪋㪏
㪏㪇
㪐㪋
㪌㪊
㪤
㪏㪤㩷㪂㩷㪊㪏㪪㪤㩷㪂㩷㪉㪪㪫
㪋㪏
㪈㪇㪤㩷㪂㩷㪉㪉㪪㪤㩷㪂㩷㪈㪍㩷㪪㪫㪆㪘
㪌㩷㪤㪆㪪㪤㩷㪂㩷㪋㪊㩷㪪㪫㪆㪘
㪋㪏
㪋㪐
㪋㪐
㪋㪏
㪈㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪋㪊㩷㪪㪫㪆㪘
㪋㪍
㪐㪉
㪎㪍
㪍㪋
㪏㪉
㪎㪏
㪝㪃㩷㪤
㪈㪤㩷㪂㩷㪋㪎㩷㪪㪫㪆㪘
㪋㪏
㪈㪋㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪉㪇㩷㪪㪫㪆㪘 㪏㪤㩷㪂㩷㪊㪍㪪㪤㩷㪂㩷㪋㪪㪫
㪋㪏 㪋㪏
㪉㪤㩷㪂㩷㪊㪉㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪏㪘 㪈㪍㪪㪤㩷㪂㩷㪉㪇㪪㪫㩷㪂㩷㪈㪉㪘
㪋㪏 㪋㪏
㪉㪤㩷㪂㩷㪉㪏㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪏㪘
㪋㪏
㪝㪃㩷㪤
㪋㪏
㪐㪇
㪏㪉
㪎㪋
㪎㪋
㪐㪇
㪌㪉
㪌㪉
㪌㪉 㪌㪋
㪌㪉
㪉㪤㩷㪂㩷㪉㪋㪪㪤㩷㪂㩷㪈㪉㪪㪫㩷㪂㩷㪈㪇㪘 㪎㪋
㪋㪏
㪝㪃㩷㪤
㪈㪇㪤㩷㪂㩷㪊㪉㪪㪤㩷㪂㩷㪍㪪㪫 㪋㪏㩷㪪㪫㪆㪘
㪋㪏 㪋㪏
㪝㪃㩷㪤
㪋㪏 㪉㪤㩷㪂㩷㪊㪉㪪㪤㩷㪂㩷㪏㪪㪫㩷㪂㩷㪍㪘
㪋㪏
㪝㪃㩷㪤 㪋㪏
㪋㪤㩷㪂㩷㪉㪉㪪㪤㩷㪂㩷㪈㪍㪪㪫㩷㪂㩷㪍㪘
㪋㪏
㪝㪃㩷㪤
㪋㪤㩷㪂㩷㪉㪉㪪㪤㩷㪂㩷㪈㪍㪪㪫㩷㪂㩷㪍㪘
㪋㪏
㪈㪇㪤㩷㪂㩷㪊㪉㪪㪤㩷㪂㩷㪍㪪㪫
㪋㪤㩷㪂㩷㪋㪋㪘 㪍㩷㪤㪆㪪㪤㩷㪂㩷㪋㪉㩷㪪㪫㪆㪘
㪋㪏 㪋㪏 㪋㪏
㪋㪤㪆㪪㪤㩷㪂㩷㪋㪋㩷㪪㪫㪆㪘 㪋㪤㪆㪪㪤㩷㪂㩷㪋㪋㩷㪪㪫㪆㪘
㪋㪏 㪋㪏
㪤
㪝㪃㩷㪤
㪌㪉
㪌㪋
㪌㪍
㪌㪉
㪏㩷㪤㪆㪪㪤㩷㪂㩷㪋㪇㩷㪪㪫㪆㪘
㪋㪏
㪌㪈
㪌㪉
㪉㪤㩷㪂㩷㪈㪪㪤㩷㪂㩷㪋㪌㪘
㪋㪏
㪌㪇
㪐㪉
㪐㪇
㪐㪇
㪐㪍
㪏㪋
㪏㪏
㪏㪏
㪏㪍
㪐㪍
㪐㪇
㪐㪇
㪐㪇
㪐㪍
㪌㪉
㪌㪉
㪌㪉
㪌㪋
㪝 㪞 㪥㪝㪈 㪥㪝㪉
㪋㪏
㪈㪉㪤㩷㪂㩷㪊㪉㪪㪤㩷㪂㩷㪋㩷㪪㪫㪆㪘 㪉㪤㩷㪂㩷㪋㪍㪘
㪋㪏
㪜 㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪋㪏
㪛 㪉㫅
㪤
㪚 㪪㪼㫏
㪫㪸㪹㫃㪼㩷㪍㪅㪊㪍㩷㩷㪦㫉㪻㪼㫉㩷㪧㪜㪩㪚㪠㪝㪦㪩㪤㪜㪪㪅㩷㪧㪸㫉㫋㩷㪈㩷㪧㪼㫉㪺㫆㫀㪻㪼㫀㩷㪸㫅㪻㩷㪜㫃㪸㫊㫊㫆㫄㪸㫋㫆㫀㪻㪼㫀㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㫀㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀
㪉
㪉
㪉
㩿㪉㪅㪊㩷㪝㪚㪤㪀
㩿㪉㪅㪈㩷㪝㪠㪘㪀
㩿㪉㪅㪋㩷㪝㪚㪤㪀
㪈㪅㪐㩷㪝㪠㪘㪃㩷㪉㪅㪋㩷㪙㪝㪘
㪟 㪠 㪘㪾㪄 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㪥㪦㪩㫊 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏 㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪟㫌㫅㪾㪸㫉㫐
㪙㪸㫃㫋㫀㪺㩷㪪㪼㪸
㪬㪪㪘㩷㩿㪫㪯㪀
㪬㪪㪘㩷㩿㪣㪘㪀
㪚㪸㫅㪸㪻㪸㩷㩿㪦㫅㫋㪸㫉㫀㫆㪀
㪚㪸㫅㪸㪻㪸㩷㩿㪦㫅㫋㪸㫉㫀㫆㪀
㪚㪸㫅㪸㪻㪸㩷㩿㪦㫅㫋㪸㫉㫀㫆㪀
㪬㪪㪘㩷㩿㪫㪯㪀
㪛㪸㫅㫌㪹㪼㩷㪛㪼㫃㫋㪸㪃㩷㪜㫌㫉㫆㫇㪼
㪤㪸㪺㪼㪻㫆㫅㫀㪸
㪟㫌㫅㪾㪸㫉㫐
㪜㫃㪹㪼㩷㪩㪅㪃㩷㪛㪸㫅㫌㪹㪼㩷㪩
㪞㪼㫉㫄㪸㫅㫐㩷㩿㪙㪸㫃㫋㫀㪺㩷㪪㪼㪸㪀
㪚㪸㫅㪸㪻㪸㩷㩿㪦㫅㫋㪸㫉㫀㫆㪀
㪛㪸㫅㫌㪹㪼㩷㪩㪅㪃㩷㪜㫌㫉㫆㫇㪼
㪛㪸㫅㫌㪹㪼㩷㪩㪅㪃㩷㪜㫌㫉㫆㫇㪼
㪟㫌㫅㪾㪸㫉㫐
㪞㪼㫉㫄㪸㫅㫐㩷㩿㪙㪸㫃㫋㫀㪺㩷㪪㪼㪸㪀
㪪㫎㪼㪻㪼㫅
㪛㪸㫅㫌㪹㪼㩷㪩㪅㪃㩷㪜㫌㫉㫆㫇㪼
㪥㪅㩷㪘㫄㪼㫉㫀㪺㪸
㪬㪪㪘㩷㩿㪦㪟㪀
㪬㪪㪘㩷㩿㪦㪟㪀 㪚㪸㫅㪸㪻㪸㩷㩿㪦㫅㫋㪸㫉㫀㫆㪀
㪚㪸㫅㪸㪻㪸㩷㩿㪦㫅㫋㪸㫉㫀㫆㪀
㪚㪸㫅㪸㪻㪸㩷㩿㪦㫅㫋㪸㫉㫀㫆㪀
㪥㪅㩷㪘㫄㪼㫉㫀㪺㪸
㪬㪪㪘㩷㩿㪦㪟㪀
㪬㪪㪘㩷㩿㪦㪟㪀
㪚㪸㫅㪸㪻㪸㩷㩿㪦㫅㫋㪸㫉㫀㫆㪀
㪬㪪㪘㩷㩿㪦㪟㪀
㪬㪪㪘㩷㩿㪦㪟㪀
㪬㪪㪘㩷㩿㪫㪯㪀
㪢 㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪙㪄㪏㪋
㪞㪄㪋㪍㪃㩷㪩㪄㪈㪈㪃㩷㪭㪄㪏㪍
㪞㪄㪊㪇
㪞㪄㪊㪇
㪛㪄㪈
㪛㪄㪈
㪛㪄㪈
㪞㪄㪊㪇㪃㩷㪞㪄㪊㪉㪃㩷㪟㪄㪋㪇
㪪㪄㪈㪈㪐
㪢㪄㪏
㪙㪄㪏㪋
㪩㪄㪈㪈㪃㩷㪭㪄㪏㪍
㪢㪄㪎㪏
㪛㪄㪈㪃㩷㪟㪄㪈㪊㪃㩷㪟㪄㪋㪇
㪩㪄㪈㪈
㪩㪄㪈㪈
㪙㪄㪏㪋
㪢㪄㪎㪎
㪥㪄㪋㪇
㪩㪄㪈㪈
㪞㪄㪊㪉
㪩㪄㪐㪈
㪩㪄㪐㪈 㪛㪄㪈
㪛㪄㪈
㪛㪄㪈
㪞㪄㪊㪉
㪩㪄㪐㪈
㪩㪄㪐㪈
㪛㪄㪈
㪩㪄㪐㪈
㪩㪄㪐㪈
㪞㪄㪊㪇
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
172
㪚㪼㫅㫋㫉㫆㫇㫐㪾㪼 㪚㪼㫅㫋㫉㫆㫇㫐㪾㪼 㪚㪼㫅㫋㫉㫆㫇㫐㪾㪼 㪚㪼㫅㫋㫉㫆㫇㫐㪾㪼 㪚㪼㫅㫋㫉㫆㫇㫐㪾㪼 㪚㪼㫅㫋㫉㫆㫇㫐㪾㪼 㪚㪼㫅㫋㫉㫆㫇㫐㪾㪼 㪚㪼㫅㫋㫉㫆㫇㫐㪾㪼 㪚㪼㫅㫋㫉㫆㫇㫐㪾㪼 㪚㪼㫅㫋㫉㫆㫇㫐㪾㪼 㪟㫆㫃㪸㪺㪸㫅㫋㪿㫌㫊 㪟㫆㫃㪸㪺㪸㫅㫋㪿㫌㫊 㪧㫆㫄㪸㪺㪸㫅㫋㪿㫌㫊 㪧㫆㫄㪸㪺㪸㫅㫋㪿㫌㫊 㪧㫆㫄㪸㪺㪸㫅㫋㪿㫌㫊
㪧㫆㫄㪸㪺㪸㫅㫋㪿㫀㪻㪸㪼
㪜㫃㪼㫌㫋㪿㪼㫉㫆㫅㪼㫄㪸
㪧㫆㫃㫐㫅㪼㫄㫀㪻㪸㪼㩷
㪧㫆㫃㫐㪺㪼㫅㫋㫉㫌㫊
㪧㫆㫃㫐㪺㪼㫅㫋㫉㫀㪻㪸㪼
㪧㫃㪼㫊㫀㫆㫇㫊
㪧㫃㪼㫊㫀㫆㫇㫀㪻㪸㪼
㪪㪸㫅㪻㪼㫉 㪪㪸㫅㪻㪼㫉 㪪㪸㫅㪻㪼㫉 㪱㫀㫅㪾㪼㫃 㪱㫀㫅㪾㪼㫃 㪱㫀㫅㪾㪼㫃 㪱㫀㫅㪾㪼㫃
㪸㫌㫉㪸㫅㫋㫆㫅㫆㫋㫌㫊 㪹㫀㪺㫆㫃㫆㫉 㪹㫀㫊㫇㫀㫅㫆㫊㪸 㪽㪼㫉㫉㫌㪾㪸㫋㪸 㪽㪼㫉㫉㫌㪾㪸㫋㪸 㪿㪼㫉㪸㫃㪻㫀 㫃㫆㫉㫀㪺㫌㫃㪸 㫅㫆㫏 㫋㫀㪹㫀㪺㪼㫅 㫍㫉㫆㫃㫀㪺㫂㫀㫀 㪺㫀㫃㫀㪸㫉㫀㫊 㫋㫉㫀㪺㫆㫃㫆㫉 㪸㫉㪺㫌㪸㫋㫌㫊 㫇㪸㫉㫌 㫊㪼㫄㫀㪺㫀㫉㪺㫌㫃㪸㫋㫌㫊
㫋㪼㫋㫉㪸㪻㪸㪺㫋㫐㫃㫌㫄
㫊㪺㪿㫆㫄㪹㫌㫉㪾㫂㫀㫀
㪺㫆㪼㫉㫌㫃㪼㫆㫃㫀㫅㪼㪸㫋㫌㫊
㫃㫌㪺㫀㫆㫇㪼㫉㪺㪸 㫍㫀㫋㫉㪼㫌㫄㩷㫍㫀㫋㫉㪼㫌㫄 㫍㫆㫃㪾㪼㫅㫊㪼 㫊㫋㫉㪼㪹㪼㫉 㫑㫀㫅㪾㪼㫃 㫑㫀㫅㪾㪼㫃 㫑㫀㫅㪾㪼㫃
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㪹㫆㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷
㪽㪼㫉㫉㫌㪾㪸㫋㫌㫊
㪣㫌㪺㫀㫆㫇㪼㫉㪺㪸 㪪㫋㫀㫑㫆㫊㫋㪼㪻㫀㫆㫅 㪪㫋㫀㫑㫆㫊㫋㪼㪻㫀㫆㫅
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪋㪏
㪝
㪋㪏㪘 㪋㪏㪘 㪉㪪㪫㩷㪂㩷㪋㪍㪘 㪉㪪㪫㩷㪂㩷㪋㪍㪘 㪋㪏㪘
㪋㪏 㪋㪏 㪋㪏 㪋㪏
㪋㪏㪘
㪋㪏 㪋㪏
㪌㪉㪘
㪌㪉
㪝
㪋㪏㪘 㪈㪉㪤㩷㪂㩷㪈㪏㪪㪤㩷㪂㩷㪉㪉㩷㪪㪫㪆㪘
㪋㪏 㪌㪉
㪏㪤㩷㪂㩷㪉㪉㪪㪤㩷㪂㩷㪉㪉㩷㪪㪫㪆㪘
㪌㪉
㪋㪏㪘
㪋㪏㪘
㪋㪏㩷㪪㪫㪆㪘
㪉㪤㩷㪂㩷㪌㪇㩷㪪㪫㪆㪘
㪋㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪉㪍㪪㪫㩷㪂㩷㪋㪘
㪋㪏㪘
㪉㪤㩷㪂㩷㪋㪍㩷㪪㪫㪆㪘
㪌㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪉㪍㩷㪪㪫㪆㪘
㪋㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪉㪏㩷㪪㪫㪆㪘
㪝
㪤
㪋㪏
㪝 㪋㪏
㪌㪉
㪋㪏
㪋㪏
㪋㪍㪁
㪝㪃㩷㪤
㪤
㪋㪎
㪤 㪋㪏
㪋㪏
㪝
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪌㪉
㪏㪉
㪋㪏
㪏㪉
㪋㪏
㪋㪏
㪋㪏
㪌㪋
㪍㪍
㪋㪏
㪌㪇
㪍㪏
㪍㪏
㪎㪉
㪋㪏
㪌㪇
㪌㪇
㪋㪏
㪋㪏
㪋㪏
㪌㪉
㪐㪉
㪋㪏
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪈㪅㪋㩷㪝㪠㪘
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪢㪄㪈㪉㪉
㪡㪸㫇㪸㫅㩷㩿㪰㪸㫂㫌㫊㪿㫀㫄㪸㩷㪠㫊㪅㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪚㪜㪃㩷㪩㪥㪃㩷㪘㪣㪃㩷㪩㪡㪃㩷㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪚㪜㪃㩷㪘㪣㪃㩷㪙㪘㪃㩷㪩㪡㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪙㪘㪃㩷㪜㪪㪃㩷㪩㪡㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪚㪜㪃㩷㪧㪜㪃㩷㪙㪘㪃㩷㪜㪪㪀
㪡㪸㫇㪸㫅㩷㩿㪰㪸㫂㫌㫊㪿㫀㫄㪸㩷㪠㫊㪅㪀
㪮㪅㩷㪧㪸㪺㫀㪽㫀㪺
㪮㪅㩷㪧㪸㪺㫀㪽㫀㪺
㪮㪅㩷㪧㪸㪺㫀㪽㫀㪺
㪮㪅㩷㪧㪸㪺㫀㪽㫀㪺
㪧㪿㫀㫃㫀㫇㫇㫀㫅㪼㫊㩷㪪㪼㪸
㪮㪅㩷㪧㪸㪺㫀㪽㫀㪺
㪮㪅㩷㪧㪸㪺㫀㪽㫀㪺
㪮㪅㩷㪧㪸㪺㫀㪽㫀㪺
㪙㫉㪸㫑㫀㫃㩷㩿㪜㪪㪃㩷㪩㪡㪀
㪠㫅㪻㫀㪸㩷㩿㪮㪙㪀
㩿㪮㪅㩷㪘㫋㫃㪸㫅㫋㫀㪺㪀
㪘㪄㪍㪈
㪘㪄㪏
㪘㪄㪏
㪘㪄㪎
㪘㪄㪎
㪘㪄㪍㪈
㪫㪄㪍㪎
㪫㪄㪍㪎
㪫㪄㪍㪎
㪫㪄㪍㪎
㪘㪄㪐
㪫㪄㪍㪎
㪫㪄㪍㪎
㪫㪄㪍㪎㪃㩷㪟㪄㪋㪈
㪘㪄㪐
㪢㪄㪋㪉
㪪㪄㪊㪇
㪡㪸㫇㪸㫅㩷㩿㪦㪾㪸㫊㪸㫎㪸㫉㪸㪃㩷㪦㫂㫀㫅㪸㫎㪸㪀 㪘㪄㪍㪍
㪚㫑㪼㪺㪿㩷㩿㪤㫆㫉㪸㫍㪸㩷㪩㪅㪀
㪢㪄㪈㪉㪉
㪯㪈㪯㪉㪰㪃㩷㪘㪚㪥㪔㪋㪏
㪩㪄㪈㪈
㪩㪄㪈㪈
㪩㪄㪈㪈
㪯㪈㪯㪈㪯㪉㪯㪉 㪃㩷㪘㪚㪥㪔㪋㪏 㪚㫑㪼㪺㪿㩷㩿㪤㫆㫉㪸㫍㪸㩷㪩㪅㪀
㪛㪸㫅㫌㪹㪼㩷㪩㪅㪃㩷㪜㫌㫉㫆㫇㪼
㪛㪄㪈㪃㩷㪟㪄㪋㪇
㪥㪄㪋㪇
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
㪛㪸㫅㫌㪹㪼㩷㪩㪅㪃㩷㪜㫌㫉㫆㫇㪼
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪛㪸㫅㫌㪹㪼㩷㪩㪅㪃㩷㪜㫌㫉㫆㫇㪼
㪋㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪉㪋㩷㪪㪫㪆㪘
㪎㪋
㪘㪚㪥㪔㪋㪏
㪋㪏
㪐㪇
㪍㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪉㪉㩷㪪㪫㪆㪘
㪋㪏
㪏㪇
㪉㪤㩷㪂㩷㪊㪇㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪍㪘
㪋㪏
㪤
㪢 㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪝㪃㩷㪤
㪘㪚㪥㪔㪋㪏
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪚㪸㫅㪸㪻㪸㩷㩿㪦㫅㫋㪸㫉㫀㫆㪀
㪉㪅㪈㩷㪝㪠㪘
㪟 㪠 㪘㪾㪄 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㪥㪦㪩㫊 㩿㫇㪾㪆㪺㪼㫃㫃㪀 㪪㫎㪼㪻㪼㫅
㪋㪏
㪝 㪞 㪥㪝㪈 㪥㪝㪉
㪋㪏㩷㪪㪫㪆㪘
㪜 㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪋㪏
㪛 㪉㫅 㪋㪏
㪤
㪚 㪪㪼㫏
㪫㪸㪹㫃㪼㩷㪍㪅㪊㪍㩷㩷㪦㫉㪻㪼㫉㩷㪧㪜㪩㪚㪠㪝㪦㪩㪤㪜㪪㪅㩷㪧㪸㫉㫋㩷㪈㩷㪧㪼㫉㪺㫆㫀㪻㪼㫀㩷㪸㫅㪻㩷㪜㫃㪸㫊㫊㫆㫄㪸㫋㫆㫀㪻㪼㫀㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㫀㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀
173
㪾㫉㫌㫅㫅㫀㪼㫅㫊 㪸㫄㫆㫐㪼㫅㫊㫀㫊 㪺㪿㫉㫐㫊㫆㫌㫉㪸 㫄㫀㪺㫉㫆㫃㪼㫇㫀㫊 㫅㫀㪾㫉㪸 㪸㪺㫆㫌㫇㪸 㪸㫉㪼㫅㪸㫉㫀㫌㫊 㫅㪼㪹㫌㫃㫆㫊㫌㫊 㪹㪼㫃㪸㫅㪾㪼㫉㫀㫀 㪹㪼㫃㪸㫅㪾㪼㫉㫀㫀 㪹㫆㫉㫅㪼㪼㫅㫊㫀㫊 㪺㪸㫉㫌㫋㫋㪸 㪻㫆㫉㫊㪸㫃㫀㫊 㪻㫌㫊㫊㫌㫄㫀㪼㫉㫀 㪸㫏㫀㫃㫃㪸㫉㫀㫊 㪺㫉㫆㪺㪼㪸 㫇㫆㫃㫐㪸㪺㫋㫀㫊 㫏㪸㫅㫋㪿㫌㫉㫌㫊 㪸㫄㪼㫉㫀㪺㪸㫅㫌㫊 㫃㫀㫋㫋㫆㫉㪸㫃㫀㫊 㪽㫌㫉㫅㫀㪼㫉㫀 㫌㫅㪻㫌㫃㪸㫋㫌㫊 㪸㫃㪹㫀㪽㫃㫆㫉㪸 㫄㫀㫋㫊㫌㫂㫌㫉㫀㫀 㫇㫌㫅㪺㫋㪸㫋㫀㫊㫊㫀㫄㫌㫊 㪺㫌㫍㫀㪼㫉㫀
㪘㫇㫃㫆㪻㫀㫅㫆㫋㫌㫊 㪘㫉㪾㫐㫉㫆㫊㫆㫄㫌㫊 㪙㪸㫀㫉㪻㫀㪼㫃㫃㪸 㪙㫆㪼㫊㪼㫄㪸㫅㫀㪸 㪚㫆㫉㫍㫀㫅㪸 㪚㫐㫅㫆㫊㪺㫀㫆㫅 㪚㫐㫅㫆㫊㪺㫀㫆㫅 㪚㫐㫅㫆㫊㪺㫀㫆㫅 㪡㫆㪿㫅㫀㫌㫊 㪡㫆㪿㫅㫀㫌㫊 㪡㫆㪿㫅㫀㫌㫊 㪡㫆㪿㫅㫀㫌㫊 㪡㫆㪿㫅㫀㫌㫊 㪡㫆㪿㫅㫀㫌㫊 㪢㪸㫋㪿㪸㫃㪸 㪣㪸㫉㫀㫄㫀㪺㪿㫋㪿㫐㫊 㪣㪸㫉㫀㫄㫀㪺㪿㫋㪿㫐㫊 㪣㪼㫀㫆㫊㫋㫆㫄㫌㫊 㪤㪼㫅㫋㫀㪺㫀㫉㫉㪿㫌㫊 㪤㪼㫅㫋㫀㪺㫀㫉㫉㪿㫌㫊 㪤㫀㪺㫉㫆㫇㫆㪾㫆㫅㫀㪸㫊 㪤㫀㪺㫉㫆㫇㫆㪾㫆㫅㫀㪸㫊 㪥㫀㪹㪼㪸 㪥㫀㪹㪼㪸 㪦㫇㪿㫀㫆㫊㪺㫀㫆㫅 㪦㫋㫆㫃㫀㫋㪿㪼㫊
㪪㪺㫀㪸㪼㫅㫀㪻㪸㪼㩷
㪸㫉㪼㫅㪸㫋㫌㫊 㪸㫉㪼㫅㪸㫋㫌㫊
㫊㪸㫃㫋㪸㫋㫉㫀㫏
㪧㫉㫀㪸㪺㪸㫅㫋㪿㫌㫊 㪧㫉㫀㪸㪺㪸㫅㫋㪿㫌㫊
㪧㫉㫀㪸㪺㪸㫅㫋㪿㫀㪻㪸㪼㩷
㪧㫆㫄㪸㫋㫆㫄㫌㫊
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㪹㫆㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷 㪧㫆㫄㪸㫋㫆㫄㫀㪻㪸㪼
㫃㫀㫋㫆㫉㪸㫃㫀㫊
㪧㫊㪼㫌㪻㫆㫊㪺㫀㪸㪼㫅㪸 㪧㫊㪼㫌㪻㫆㫊㪺㫀㪸㪼㫅㪸
㪹㪼㫃㪼㫅㪾㪼㫉㫀 㫍㫆㪾㫃㪼㫉㫀
㪥㫀㪹㪼㪸㩷㫄㫀㫀㪺㪿㫋㪿㫀㫆㫀㪻㪼㫊
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪉㪤㩷㪂㩷㪋㪋㪘 㪋㪏㪘 㪉㩷㪤㪆㪪㪤㩷㪂㩷㪋㪍㩷㪪㪫㪆㪘 㪉㩷㪤㪆㪪㪤㩷㪂㩷㪋㪍㩷㪪㪫㪆㪘
㪋㪍 㪋㪏 㪋㪏 㪋㪏
㪝
㪝㪃㩷㪤
㪝㪃㩷㪤
㪋㪏㪘
㪋㪏 㪋㪏
㪤 㪝㪃㩷㪤
㪋㪏㪘
㪋㪏
㪋㪏㪘 㪋㪏㪘 㪋㪏㪘
㪋㪏 㪋㪏
㪋㪏㪘
㪋㪏 㪋㪏
㪋㪏㪘 㪋㪏㪘
㪋㪏 㪋㪏
㪋㪏㪘
㪋㪏㪘 㪋㪏㪘
㪋㪏 㪋㪏 㪋㪏
㪋㪏㪘
㪋㪏
㪋㪏㪘
㪋㪏㪘 㪋㪏㪘
㪋㪏
㪋㪏㪘
㪋㪏
㪤
㪋㪏 㪋㪏
㪋㪏㪘
㪋㪏㪘 㪋㪏㪘
㪋㪏 㪋㪏
㪋㪏
㪋㪏㪘
㪋㪏
㪋㪏㪘
㪌㪇㪘
㪋㪏
㪋㪪㪫㩷㪂㩷㪋㪏㪘
㪌㪇
㪋㪏㪘
㪜 㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪌㪉
㪋㪏
㪛 㪉㫅
㪝㪃㩷㪤
㪝㪃㩷㪤
㪚 㪪㪼㫏
㪫㪸㪹㫃㪼㩷㪍㪅㪊㪍㩷㩷㪦㫉㪻㪼㫉㩷㪧㪜㪩㪚㪠㪝㪦㪩㪤㪜㪪㪅㩷㪧㪸㫉㫋㩷㪈㩷㪧㪼㫉㪺㫆㫀㪻㪼㫀㩷㪸㫅㪻㩷㪜㫃㪸㫊㫊㫆㫄㪸㫋㫆㫀㪻㪼㫀㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㫀㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏 㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪌㪇
㪌㪇
㪋㪏
㪋㪏
㪋㪏 㪋㪏
㪋㪏
㪋㪏
㪌㪇
㪌㪉
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏 㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏 㪋㪏
㪋㪏
㪋㪏
㪌㪍
㪝 㪞 㪥㪝㪈 㪥㪝㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪈㪅㪋㪁㩷㪝㪚㪤
㪈㪅㪍㩷㪙㪝㪘
㪈㪅㪉㩷㪝㪛
㪈㪅㪍㩷㪝㪛
㪈㪅㪌㩷㪙㪝㪘
㪉㪅㪉㩷㪙㪝㪘
㪈㪅㪍㩷㪝㪠㪘㪃㩷㪈㪅㪐㩷㪙㪝㪘
㪟 㪠 㪘㪾㪄 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㪥㪦㪩㫊 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏 㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏 㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪠㫅㪻㫀㪸
㪙㫉㪸㫑㫀㫃㩷㩿㪩㪥㪀㩷
㪡㪸㫇㪸㫅㩷㩿㪟㫐㫆㪾㫆㪀
㪚㪿㫀㫅㪸㩷㩿㪪㪿㪸㫅㪻㫆㫅㪾㪀
㪞㫌㫃㪽㩷㫆㪽㩷㪤㪼㫏㫀㪺㫆
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪃㩷㪩㪡㪀
㪙㫉㪸㫑㫀㫃
㪙㫉㪸㫑㫀㫃㩷㩿㪩㪥㪀㩷
㪚㪿㫀㫅㪸 㪞㫌㫃㪽㩷㫆㪽㩷㪤㪼㫏㫀㪺㫆
㪚㪿㫀㫅㪸㩷㩿㪝㫌㫁㫀㪸㫅㪀
㪠㫅㪻㫀㪸㩷㩿㪦㫉㫀㫊㫊㪸㪀
㪠㫅㪻㫀㪸㩷㩿㪘㫊㫊㪸㫄㪀
㪠㫅㪻㫀㪸
㪠㫅㪻㫀㪸㩷㩿㪦㫉㫀㫊㫊㪸㪀
㪠㫅㪻㫀㪸㩷㩿㪦㫉㫀㫊㫊㪸㪀
㪚㪿㫀㫅㪸㩷㩿㪪㪿㪸㫅㪻㫆㫅㪾㪀
㪠㫅㪻㫀㪸
㪞㫌㫃㪽㩷㫆㪽㩷㪤㪼㫏㫀㪺㫆
㪞㫌㫃㪽㩷㫆㪽㩷㪤㪼㫏㫀㪺㫆
㪙㫉㪸㫑㫀㫃㩷㩿㪩㪡㪀
㪚㫉㫆㪸㫋㫀㪸
㪞㫌㫃㪽㩷㫆㪽㩷㪤㪼㫏㫀㪺㫆 㪫㪿㪸㫀㫃㪸㫅㪻
㪚㪿㫀㫅㪸
㪬㪪㪘㩷㩿㪤㫀㫊㫊㫀㫊㫊㫀㫇㫇㫀㩷㪩㪅㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪩㪡㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪩㪡㪀
㪙㫉㪸㫑㫀㫃
㪢 㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪚㪄㪋㪉
㪘㪄㪈㪉㪋
㪦㪄㪋㪍㪃㩷㪦㪄㪋㪏
㪮㪄㪎㪃㩷㪰㪄㪉㪈
㪣㪄㪉㪊㪃㩷㪟㪄㪈㪊
㪞㪄㪌㪇㪃㩷㪙㪄㪌㪐
㪩㪄㪈㪉㪊
㪞㪄㪌㪈㪃㩷㪘㪄㪈㪉㪋
㪮㪄㪎 㪣㪄㪉㪊
㪱㪄㪊㪉
㪫㪄㪌㪊
㪢㪄㪋㪍㪃㩷㪚㪄㪈㪇㪏
㪩㪄㪈㪉㪌
㪧㪄㪈㪍
㪧㪄㪈㪍
㪮㪄㪎
㪣㪄㪈
㪝㪄㪍㪇
㪝㪄㪍㪇
㪙㪄㪏㪍
㪪㪄㪈㪐㪌
㪣㪄㪉㪊㪃㩷㪟㪄㪈㪊 㪛㪄㪉㪏
㪮㪄㪊
㪣㪄㪉㪊
㪙㪄㪏㪍
㪞㪄㪈㪉㪃㩷㪤㪄㪈㪉㪈㪃㩷㪟㪄㪈㪊
㪙㪄㪏㪍㪃㩷㪟㪄㪈㪊㪃㩷㪟㪄㪋㪇 㩷
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
174
㪘㫃㫇㪿㪼㫊㫋㪼㫊 㪚㪿㫉㫆㫄㫀㫃㪼㫇㫋㪼㫊 㪜㫇㫀㫅㪼㫇㪿㪼㫃㫌㫊 㪜㫇㫀㫅㪼㫇㪿㪼㫃㫌㫊 㪜㫇㫀㫅㪼㫇㪿㪼㫃㫌㫊 㪜㫇㫀㫅㪼㫇㪿㪼㫃㫌㫊 㪜㫇㫀㫅㪼㫇㪿㪼㫃㫌㫊 㪜㫇㫀㫅㪼㫇㪿㪼㫃㫌㫊 㪜㫇㫀㫅㪼㫇㪿㪼㫃㫌㫊 㪜㫇㫀㫅㪼㫇㪿㪼㫃㫌㫊 㪜㫇㫀㫅㪼㫇㪿㪼㫃㫌㫊 㪜㫇㫀㫅㪼㫇㪿㪼㫃㫌㫊 㪜㫇㫀㫅㪼㫇㪿㪼㫃㫌㫊 㪜㫇㫀㫅㪼㫇㪿㪼㫃㫌㫊 㪜㫇㫀㫅㪼㫇㪿㪼㫃㫌㫊 㪜㫇㫀㫅㪼㫇㪿㪼㫃㫌㫊
㪪㪼㫉㫉㪸㫅㫀㪻㪸㪼 㩷㩷㪜㫇㫀㫅㪼㫇㪿㪼㫃㫀㫅㪸㪼
㪦㫋㫆㫃㫀㫋㪿㫆㫀㪻㪼㫊 㪧㪸㪺㪿㫐㫌㫉㫌㫊 㪧㪸㫉㪸㫅㫀㪹㪼㪸 㪧㪸㫉㪼㫈㫌㪼㫊 㪧㫃㪸㪾㫀㫆㫊㪺㫀㫆㫅 㪧㫃㪸㪾㫀㫆㫊㪺㫀㫆㫅 㪧㫃㪸㪾㫀㫆㫊㪺㫀㫆㫅 㪧㫃㪸㪾㫀㫆㫊㪺㫀㫆㫅 㪧㫃㪸㪾㫀㫆㫊㪺㫀㫆㫅 㪧㫆㪾㫆㫅㫀㪸㫊 㪧㫉㫆㫋㫆㫅㫀㪹㪼㪸 㪧㫉㫆㫋㫆㫅㫀㪹㪼㪸 㪪㪺㫀㪸㪼㫅㪸 㪪㪺㫀㪸㪼㫅㫆㫇㫊 㪬㫄㪹㫉㫀㫅㪸
㪸㪽㪼㫉 㪸㫃㫋㫀㫍㪼㫃㫀㫊 㪸㪻㫊㪺㪼㫅㫊㫀㫆㫅㫀㫊 㪸㫃㪼㫏㪸㫅㪻㫉㫀㫅㫌㫊 㪸㫃㪼㫏㪸㫅㪻㫉㫀㫅㫌㫊 㪸㫎㫆㪸㫉㪸 㪺㪸㫅㫀㫅㫌㫊 㪺㫆㫀㫆㫀㪻㪼㫊 㪻㫀㪸㪺㪸㫅㫋㪿㫌㫊 㪽㪸㫉㫀㫆 㪽㪸㫊㪺㫀㪸㫋㫆㫄㪸㪺㫌㫃㫆㫊㫌㫊 㪽㪸㫊㪺㫀㪸㫋㫌㫊 㪾㫌㪸㫑㪸 㪾㫌㪸㫑㪸 㪾㫌㫋㫋㪸㫋㫌㫊 㫄㪸㫃㪸㪹㪸㫉㫀㪺㫌㫊
㪺㫉㫆㫄㫀㫊 㪻㫀㪸㪺㪸㫅㫋㪿㫌㫊 㪻㫀㪸㪺㪸㫅㫋㪿㫌㫊 㫌㫄㪹㫉㪸 㫆㪺㪼㫃㫃㪸㫋㫌㫊 㪺㫆㫉㫆㫀㪻㪼㫊
㫊㫇㪅 㫊㫇㪅
㫇㪸㫄㪸 㪹㫆㫅㪸㫉㫀㪼㫅㫊㫀㫊 㫊㪼㫄㫀㫃㫌㪺㫋㫌㫆㫊㪸 㪸㪺㫌㫄㫀㫅㪸㫋㫌㫊 㫄㫆㫅㫋㪼㫀 㫊㫈㫌㪸㫄㫆㫊㫀㫊㫊㫀㫄㫌㫊 㫋㪼㫉㫅㪼㫋㫑㫀
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㪹㫆㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷
㪥㫀㪹㪼㪸 㪥㫀㪹㪼㪸
㪚㫐㫋㫆㫋㫐㫇㪼㩷㪸 㪚㫐㫋㫆㫋㫐㫇㪼㩷㪹
㪥㫀㪹㪼㪸
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪝
㪝㪃㩷㪤
㪤
㪚 㪪㪼㫏
㪋㪏
㪋㪏㪘 㪋㪏㪘 㪉㪪㪤㩷㪂㩷㪋㪍㪘 㪉㪪㪤㩷㪂㩷㪋㪍㪘 㪈㪋㩷㪤㪆㪪㪤㩷㪂㩷㪊㪋㩷㪪㪫㪆㪘 㪋㪏㪘 㪋㪏㪘 㪋㪏㩷㪪㪫㪆㪘 㪋㪏㪘 㪋㪏㪘
㪋㪏 㪋㪏 㪋㪏 㪋㪏 㪋㪏 㪋㪏 㪋㪏 㪋㪏 㪋㪏 㪋㪏
㪉㪪㪤㩷㪂㩷㪋㪍㪘
㪋㪏㪘
㪋㪏
㪋㪏
㪋㪏㪘 㪋㪏㩷㪪㪫㪆㪘
㪋㪏 㪋㪏
㪋㪏㪘 㪉㪪㪫㩷㪂㩷㪋㪍㪘
㪋㪏
㪋㪪㪤㩷㪂㩷㪋㪉㪘
㪋㪍
㪋㪏
㪋㪏㪘 㪋㪏㪘
㪋㪏
㪋㪏㪘
㪋㪏 㪋㪏
㪋㪏㪘
㪋㪏
㪋㪏㪘
㪋㪏㪘
㪋㪏
㪉㪤㩷㪂㩷㪋㪍㪘
㪋㪏
㪋㪏㪘
㪋㪏
㪋㪏
㪌㪇
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪍㪉
㪌㪇
㪌㪇
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪌㪇
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪌㪇
㪋㪏
㪌㪇
㪌㪇
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪌㪇
㪌㪇
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪌㪇
㪋㪏
㪌㪇
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪌㪇
㪋㪏
㪌㪇
㪉
㪉
㪉
㪉
㪉
㪋
㪉
㪋
㪉
㪉
㪉
㪉
㪉
㪉
㪉㪅㪇㩷㪙㪝㪘
㪉㪅㪈㩷㪝㪛㪃㩷㪉㪅㪋㩷㪙㪝㪘
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪫㪿㪸㫀㫃㪸㫅㪻㩷㩿㪞㫌㫃㪽㩷㫆㪽㩷㪪㫀㪸㫄㪀
㩿㪮㪅㩷㪘㫋㫃㪸㫅㫋㫀㪺㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪩㪡㪀
㪪㫇㪸㫀㫅㩷㩿㪤㪸㫃㪸㪾㪸㪀
㪚㪿㫀㫅㪸
㪚㪿㫀㫅㪸
㪚㪿㫀㫅㪸
㪠㫅㪻㫀㪸㩷㩿㪧㫆㫉㫋㫆㫅㫆㫍㫆㪀
㪚㪿㫀㫅㪸㩷㩿㪝㫌㫁㫀㪸㫅㪀
㪪㫇㪸㫀㫅㩷㩿㪘㫃㪹㫆㫉㪸㫅㩷㪪㪼㪸㪀
㪚㪿㫀㫅㪸
㪪㫇㪸㫀㫅
㪪㫇㪸㫀㫅㩷㩿㪤㪸㫃㪸㪾㪸㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪩㪥㪃㩷㪙㪸㪿㫀㪸㪀
㩿㪠㫅㪻㫆㪄㪮㪼㫊㫋㩷㪧㪸㪺㫀㪽㫀㪺㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪩㪥㪃㩷㪙㪸㪿㫀㪸㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪩㪡㪀
㪞㫌㫃㪽㩷㫆㪽㩷㪤㪼㫏㫀㪺㫆
㪙㫃㪸㪺㫂㩷㪪㪼㪸
㪠㫅㪻㫀㪸
㪚㪿㫀㫅㪸
㪞㫌㫃㪽㩷㫆㪽㩷㪤㪼㫏㫀㪺㫆
㪙㫉㪸㫑㫀㫃㩷㩿㪘㪤㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪘㪤㪀
㪘㫉㪾㪼㫅㫋㫀㫅㪸
㪙㫉㪸㫑㫀㫃㩷㩿㪘㪤㪀
㪙㫉㪸㫑㫀㫃
㪉㪤㩷㪂㩷㪋㪍㪘
㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㫉㪾㪼㫅㫋㫀㫅㪸
㪠㫅㪻㫀㪸㩷㩿㪮㪙㪀
㪢 㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪙㫉㪸㫑㫀㫃㩷㩿㪩㪥㪀㩷
㪉
㪘㪚㪥㪔㪋㪏
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪠㫅㪻㫀㪸 㪋㪏
㪋㪏
㪟 㪠 㪘㪾㪄 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㪥㪦㪩㫊 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪋㪏㪘
㪋㪏
㪋㪏
㪝 㪞 㪥㪝㪈 㪥㪝㪉
㪋㪏
㪋㪏㪘
㪜 㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪋㪏
㪋㪏
㪋㪏
㪛 㪉㫅
㪫㪸㪹㫃㪼㩷㪍㪅㪊㪍㩷㩷㪦㫉㪻㪼㫉㩷㪧㪜㪩㪚㪠㪝㪦㪩㪤㪜㪪㪅㩷㪧㪸㫉㫋㩷㪈㩷㪧㪼㫉㪺㫆㫀㪻㪼㫀㩷㪸㫅㪻㩷㪜㫃㪸㫊㫊㫆㫄㪸㫋㫆㫀㪻㪼㫀㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㫀㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀
㪬㪄㪊㪐
㪤㪄㪈㪊㪉㪃㩷㪟㪄㪈㪊
㪘㪄㪈㪈㪃㩷㪘㪄㪈㪉
㪤㪄㪊㪐
㪣㪄㪋㪎
㪣㪄㪋㪎
㪚㪄㪌㪎
㪥㪄㪈㪊
㪛㪄㪈㪊
㪩㪄㪏㪐
㪱㪄㪉㪊㪃㩷㪘㪄㪈㪈
㪘㪄㪊㪇
㪤㪄㪊㪐
㪤㪄㪎㪏
㪫㪄㪉㪇
㪤㪄㪎㪏
㪙㪄㪏㪍
㪣㪄㪉㪊
㪭㪄㪌
㪚㪄㪋㪉
㪮㪄㪈㪊
㪣㪄㪉㪊㪃㩷㪟㪄㪈㪊
㪝㪄㪍㪍
㪝㪄㪍㪍
㪝㪄㪉㪇
㪝㪄㪍㪍㪃㩷㪧㪄㪏㪍
㪧㪄㪏㪍
㪘㪄㪈㪉㪋
㪣㪄㪈
㪝㪄㪉㪇
㪢㪄㪈㪊㪐
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
175
㪘㪺㪸㫅㫋㪿㫆㫇㪸㪾㫉㫌㫊 㪘㪺㪸㫅㫋㪿㫆㫇㪸㪾㫉㫌㫊 㪘㪺㪸㫅㫋㪿㫆㫇㪸㪾㫉㫌㫊 㪘㪺㪸㫅㫋㪿㫆㫇㪸㪾㫉㫌㫊 㪘㪺㪸㫅㫋㪿㫆㫇㪸㪾㫉㫌㫊 㪘㫉㪺㪿㫆㫊㪸㫉㪾㫌㫊 㪘㫉㪺㪿㫆㫊㪸㫉㪾㫌㫊 㪘㫉㪺㪿㫆㫊㪸㫉㪾㫌㫊
㪪㫇㪸㫉㫀㪻㪸㪼
㪪㫀㫃㫃㪸㪾㫆
㪪㫀㫃㫃㪸㪾㫀㫅㫀㪻㪸㪼㩷
㪚㪼㫅㫋㫉㫆㫇㫉㫀㫊㫋㪼㫊 㪛㫀㫇㫃㪼㪺㫋㫉㫌㫄 㪛㫀㫇㫃㪼㪺㫋㫉㫌㫄 㪛㫀㫇㫃㪼㪺㫋㫉㫌㫄 㪧㪸㫉㪸㪺㪼㫅㫋㫉㫆㫇㫀㫊㫋㫀㫊 㪪㪼㫉㫉㪸㫅㫌㫊 㪪㪼㫉㫉㪸㫅㫌㫊 㪪㪼㫉㫉㪸㫅㫌㫊 㪪㪼㫉㫉㪸㫅㫌㫊 㪪㪼㫉㫉㪸㫅㫌㫊 㪪㪼㫉㫉㪸㫅㫌㫊 㪪㪼㫉㫉㪸㫅㫌㫊 㪪㪼㫉㫉㪸㫅㫌㫊
㩷㩷㪪㪼㫉㫉㪸㫅㫀㫅㪸㪼
㪜㫇㫀㫅㪼㫇㪿㪼㫃㫌㫊 㪜㫇㫀㫅㪼㫇㪿㪼㫃㫌㫊 㪜㫇㫀㫅㪼㫇㪿㪼㫃㫌㫊 㪜㫇㫀㫅㪼㫇㪿㪼㫃㫌㫊 㪜㫇㫀㫅㪼㫇㪿㪼㫃㫌㫊 㪤㫐㪺㫋㪼㫉㫆㫇㪼㫉㪺㪸 㪤㫐㪺㫋㪼㫉㫆㫇㪼㫉㪺㪸
㫃㪸㫋㫌㫊 㫃㪸㫋㫌㫊 㫊㪺㪿㫃㪼㪾㪼㫃㫀 㫊㪺㪿㫃㪼㪾㪼㫃㫀 㫊㪺㪿㫃㪼㪾㪼㫃㫀 㫇㫉㫆㪹㪸㫋㫆㪺㪼㫇㪿㪸㫃㫌㫊 㫇㫉㫆㪹㪸㫋㫆㪺㪼㫇㪿㪸㫃㫌㫊 㫇㫉㫆㪹㪸㫋㫆㪺㪼㫇㪿㪸㫃㫌㫊
㫊㫀㪿㪸㫄㪸
㫆㪺㫐㫌㫉㫌㫊 㪼㫌㫄㪼㫃㫌㫄 㪽㫆㫉㫄㫆㫊㫌㫄 㫉㪸㪻㫀㪸㫃㪼 㪿㪼㫇㪸㫋㫌㫊 㪺㪸㪹㫉㫀㫃㫃㪸 㪺㪸㪹㫉㫀㫃㫃㪸 㪺㪸㪹㫉㫀㫃㫃㪸 㪽㫃㪸㫍㫀㫍㪼㫅㫋㫉㫀㫊 㫊㪺㫉㫀㪹㪸 㫊㪺㫉㫀㪹㪸 㫊㪺㫉㫀㪹㪸 㫊㪺㫉㫀㪹㪸
㫄㪸㫉㪾㫀㫅㪸㫋㫌㫊 㫄㪼㫉㫉㪸 㫊㪼㫏㪽㪸㫊㪺㫀㪸㫋㫌㫊 㫋㪸㫌㫍㫀㫅㪸 㫆㫅㪾㫌㫊 㪸㪺㫌㫋㫀㫉㫆㫊㫋㫉㫀㫊 㫉㫌㪹㫉㪸
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㪹㫆㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷
㫄㪸㪺㫉㫆㪺㪼㫇㪿㪸㫃㫌㫊㩷
㪪㪼㫉㫉㪸㫅㫌㫊㩷㫋㫌㫄㫀㫃㪸㪹㫉㫀㫊
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪉㪪㪤㩷㪂㩷㪋㪍㪘
㪋㪏㪘
㪋㪏
㪝㪃㩷㪤
㪤
㪤
㪝㪃㩷㪤
㪝㪃㩷㪤
㪈㪉㩷㪤㪆㪪㪤㩷㪂㩷㪊㪍㩷㪪㪫㪆㪘 㪋㪏㪘
㪋㪏 㪋㪏
㪋㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪊㪏㪘 㪈㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪋㪊㩷㪪㪫㪆㪘
㪋㪏 㪋㪏
㪏㩷㪤㪆㪪㪤㩷㪂㩷㪋㪇㪘 㪍㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪊㪏㪘
㪋㪏 㪋㪏
㪋㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪊㪏㪘 㪋㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪊㪏㪘
㪋㪏 㪋㪏
㪋㪏㩷㪪㪫㪆㪘
㪋㪏㪘
㪋㪏
㪋㪏
㪋㪏㪘 㪋㪏㪘
㪋㪏
㪋㪏㪘 㪋㪏㪘
㪋㪏 㪋㪏 㪋㪏
㪋㪏㪘
㪋㪏
㪋㪏㪘 㪋㪏㪘
㪋㪏 㪋㪏
㪝㪃㩷㪤 㪝㪃㩷㪤
㪉㪪㪤㩷㪂㩷㪋㪍㪘
㪋㪏 㪋㪏㪘
㪉㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪋㪉㪘
㪋㪏
㪉㪏㪤㩷㪂㩷㪉㪇㪪㪤
㪋㪏
㪋㪏㪘
㪋㪏 㪋㪏
㪋㪏㪘 㪋㪏㪘
㪋㪏 㪋㪏
㪉㪪㪤㩷㪂㩷㪋㪍㪘
㪋㪏 㪋㪏
㪋㪏㪘 㪍㪪㪫㩷㪂㩷㪋㪉㪘
㪋㪏
㪜 㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪋㪏
㪛 㪉㫅
㪝㪃㩷㪤
㪝
㪝
㪚 㪪㪼㫏
㪫㪸㪹㫃㪼㩷㪍㪅㪊㪍㩷㩷㪦㫉㪻㪼㫉㩷㪧㪜㪩㪚㪠㪝㪦㪩㪤㪜㪪㪅㩷㪧㪸㫉㫋㩷㪈㩷㪧㪼㫉㪺㫆㫀㪻㪼㫀㩷㪸㫅㪻㩷㪜㫃㪸㫊㫊㫆㫄㪸㫋㫆㫀㪻㪼㫀㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㫀㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀
㪋㪏
㪍㪇
㪌㪊
㪌㪍
㪌㪋
㪌㪍
㪌㪋
㪌㪉
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪌㪇
㪌㪋
㪐㪍
㪋㪏
㪋㪏
㪋㪏
㪌㪇
㪌㪇
㪋㪏
㪋㪏
㪌㪏
㪌㪏
㪌㪍
㪌㪏
㪌㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪌㪇
㪌㪋
㪐㪍
㪋㪏
㪋㪏
㪋㪏
㪌㪇
㪌㪇
㪌㪋
㪋㪏
㪝 㪞 㪥㪝㪈 㪥㪝㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉㪄㪋
㪈㪅㪉㩷㪝㪛
㪈㪅㪇㩷㪝㪛
㪈㪅㪈㩷㪝㪛
㪉㪅㪈㪁㩷㪝㪚㪤㪃㩷㪉㪅㪉㩷㪝㪠㪘
㪟 㪠 㪘㪾㪄 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㪥㪦㪩㫊 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪙㫉㪸㫑㫀㫃
㪬㪪㪘㩷㩿㪘㫋㫃㪸㫅㫋㫀㪺㪀
㪞㫌㫃㪽㩷㫆㪽㩷㪤㪼㫏㫀㪺㫆
㪚㪿㫀㫅㪸
㪡㪸㫇㪸㫅
㪢㫆㫉㪼㪸
㪚㪿㫀㫅㪸
㪡㪸㫇㪸㫅
㪠㫅㪻㫀㪸㩷㩿㪘㫅㪻㪸㫄㪸㫅㩷㪠㫊㪅㪀
㪬㪪㪪㪩
㪚㫉㫆㪸㫋㫀㪸
㪠㫋㪸㫃㫐㩷㩿㪧㪸㫃㪼㫉㫄㫆㪀
㪪㫇㪸㫀㫅㩷㩿㪤㪸㫃㪸㪾㪸㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪩㪡㪃㩷㪩㪥㪀
㪠㫋㪸㫃㫐㩷㩿㪧㪸㫃㪼㫉㫄㫆㪀
㪪㫇㪸㫀㫅㩷㩿㪤㪸㫃㪸㪾㪸㪀
㪪㫇㪸㫀㫅㩷㩿㪤㪸㫃㪸㪾㪸㪀
㪪㫇㪸㫀㫅㩷㩿㪤㪸㫃㪸㪾㪸㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪩㪡㪃㩷㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪩㪡㪀
㪜㪅㩷㪧㪸㪺㫀㪽㫀㪺
㪮㪅㩷㪘㫋㫃㪸㫅㫋㫀㪺
㪙㫉㪸㫑㫀㫃㩷㩿㪩㪡㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪩㪡㪀
㪠㫅㪻㫀㪸㩷㩿㪙㫆㫄㪹㪸㫐㪀
㪠㫅㪻㫀㪸㩷㩿㪦㫉㫀㫊㫊㪸㪀
㪚㪿㫀㫅㪸
㪡㪸㫇㪸㫅
㪙㫉㪸㫑㫀㫃㩷㩿㪩㪡㪀
㪢 㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪘㪄㪈㪉㪋
㪝㪄㪍㪐
㪣㪄㪍
㪰㪄㪈㪐
㪤㪄㪈㪇㪍
㪢㪄㪌㪊
㪱㪄㪉㪊
㪤㪄㪈㪇㪍
㪩㪄㪋㪌
㪭㪄㪎㪉
㪪㪄㪏㪍
㪭㪄㪍㪏
㪤㪄㪊㪐
㪘㪄㪈㪈㪃㩷㪤㪄㪎㪏
㪭㪄㪍㪏
㪚㪄㪈㪈
㪚㪄㪏㪃㩷㪚㪄㪐㪃㩷㪤㪄㪊㪐
㪚㪄㪏㪃 㪚㪄㪐㪃㩷㪤㪄㪊㪐
㪘㪄㪈㪈㪃㩷㪧㪄㪋㪈
㪘㪄㪈㪈㪃㩷㪘㪄㪈㪉
㪘㪄㪈㪈
㪘㪄㪈㪈
㪘㪄㪈㪈㪃㩷㪘㪄㪈㪉
㪞㪄㪈㪉
㪩㪄㪍㪊
㪧㪄㪈㪍
㪚㪄㪌㪍
㪦㪄㪋㪏㪃㩷㪟㪄㪋㪈
㪞㪄㪈㪉
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
176
㪙㫆㫆㫇㫊 㪛㪼㫅㫋㪼㫏 㪛㪼㫅㫋㪼㫏 㪛㫀㫇㫃㫆㪻㫌㫊 㪛㫀㫇㫃㫆㪻㫌㫊 㪛㫀㫇㫃㫆㪻㫌㫊 㪛㫀㫇㫃㫆㪻㫌㫊 㪛㫀㫇㫃㫆㪻㫌㫊 㪛㫀㫇㫃㫆㪻㫌㫊 㪛㫀㫇㫃㫆㪻㫌㫊 㪛㫀㫇㫃㫆㪻㫌㫊 㪛㫀㫇㫃㫆㪻㫌㫊 㪛㫀㫇㫃㫆㪻㫌㫊 㪛㫀㫇㫃㫆㪻㫌㫊 㪛㫀㫇㫃㫆㪻㫌㫊 㪛㫀㫇㫃㫆㪻㫌㫊 㪛㫀㫇㫃㫆㪻㫌㫊 㪛㫀㫇㫃㫆㪻㫌㫊 㪛㫀㫇㫃㫆㪻㫌㫊 㪛㫀㫇㫃㫆㪻㫌㫊 㪜㫍㫐㫅㫅㫀㫊 㪣㪸㪾㫆㪻㫆㫅 㪣㫀㫋㪿㫆㪾㫅㪸㫋㪿㫌㫊 㪣㫀㫋㪿㫆㪾㫅㪸㫋㪿㫌㫊 㪦㪹㫃㪸㪻㪸 㪧㪸㪾㪼㫃㫃㫌㫊 㪧㪸㪾㪼㫃㫃㫌㫊 㪧㪸㪾㪼㫃㫃㫌㫊 㪧㪸㪾㪼㫃㫃㫌㫊 㪧㪸㪾㫉㫌㫊 㪧㪸㪾㫉㫌㫊 㪧㪸㪾㫉㫌㫊 㪧㪸㪾㫉㫌㫊
㪹㫆㫆㫇㫊 㪻㪼㫅㫋㪼㫏 㪿㫐㫇㫊㪼㫃㫆㫊㫆㫄㫌㫊 㪸㫅㫅㫌㫃㪸㫉㫀㫊 㪸㫅㫅㫌㫃㪸㫉㫀㫊 㪸㫅㫅㫌㫃㪸㫉㫀㫊 㪸㫅㫅㫌㫃㪸㫉㫀㫊 㪸㫅㫅㫌㫃㪸㫉㫀㫊 㪸㫅㫅㫌㫃㪸㫉㫀㫊 㪸㫅㫅㫌㫃㪸㫉㫀㫊 㪸㫅㫅㫌㫃㪸㫉㫀㫊 㪸㫉㪾㪼㫅㫋㪼㫌㫊 㪹㪼㫃㫃㫆㫋㫋㫀㫀 㪺㪼㫉㫍㫀㫅㫌㫊 㫇㫌㫅㫋㪸㫑㫑㫆 㫊㪸㫉㪾㫌㫊 㫊㪸㫉㪾㫌㫊 㫊㪸㫉㪾㫌㫊 㫍㫌㫃㪾㪸㫉㫀㫊 㫍㫌㫃㪾㪸㫉㫀㫊 㫋㫌㫄㫀㪽㫉㫆㫅㫊 㫉㪿㫆㫄㪹㫆㫀㪻㪼㫊 㫄㫆㫉㫄㫐㫉㫌㫊 㫄㫆㫉㫄㫐㫉㫌㫊 㫄㪼㫃㪸㫅㫌㫉㪸 㪸㪺㪸㫉㫅㪼 㪸㪺㪸㫉㫅㪼 㪹㫆㪾㪸㫉㪸㫍㪼㫆 㪼㫉㫐㫋㪿㫉㫀㫅㫌㫊 㪸㫌㫉㪸㫋㫌㫊 㪸㫌㫉㫀㪾㪸 㪺㪸㪼㫉㫌㫃㪼㫆㫊㫋㫀㪺㫋㫌㫊 㫄㪸㫁㫆㫉
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㪹㫆㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷
㪺㫆㪼㫉㫌㫃㪼㫆㫊㫋㫀㪺㫋㫌㫊 㪧㪸㪾㫉㫆㫊㫆㫄㫌㫊
㪪㫇㪸㫉㫌㫊㩷㫃㪸㫋㫌㫊
㪜㫍㫀㫅㫅㫀㫊㩷㫁㪸㫇㫆㫅㫀㪺㪸
㫋㫌㫄㫀㪽㫉㫆㫅㫊
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪍㩷㪤㪆㪪㪤㩷㪂㩷㪋㪉㪘 㪎㩷㪤㪆㪪㪤㩷㪂㩷㪋㪇㪘 㪋㪏㪘 㪉㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪊㪏㩷㪪㪫㪆㪘
㪋㪏 㪋㪏 㪋㪎 㪋㪏 㪋㪍
㪤
㪏㪤㩷㪂㩷㪈㪇㪪㪤㩷㪂㩷㪏㪪㪫㩷㪂㩷㪉㪉㪘
㪋㪏 㪋㪏 㪋㪏
㪝㪃㩷㪤
㪉㪪㪤㩷㪂㩷㪋㪍㪘 㪉㪪㪫㩷㪂㩷㪋㪍㪘
㪋㪏 㪋㪏
㪋㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪊㪏㪘 㪋㪏㪘
㪋㪏 㪋㪏
㪋㪏㪘
㪉㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪋㪇㪘
㪋㪍
㪤 㪝㪃㩷㪤
㪋㪏
㪍㩷㪤㪆㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪊㪋㪘
㪋㪏
㪝㪃㩷㪤
㪝㪃㩷㪤
㪍㪤㩷㪂㩷㪈㪍㪪㪫㩷㪂㩷㪉㪍㪘
㪋㪏
㪍㩷㪤㪆㪪㪤㩷㪂㩷㪋㪉㩷㪪㪫㪆㪘
㪋㪏
㪉㪪㪤㩷㪂㩷㪋㪍㪘
㪝㪃㩷㪤
㪋㪏
㪋㪏
㪋㪏
㪌㪇
㪋㪏
㪌㪋
㪋㪏
㪍㪍
㪌㪇
㪌㪉
㪌㪉
㪌㪋
㪌㪉
㪌㪋
㪌㪇
㪌㪉
㪌㪉 㪌㪋
㪍㩷㪤㪆㪪㪤㩷㪂㩷㪋㪉㩷㪪㪫㪆㪘
㪌㪋
㪋㪏
㪍㩷㪤㪆㪪㪤㩷㪂㩷㪋㪉㪘
㪋㪏
㪌㪋
㪋㪏
㪍㩷㪤㪆㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪋㪇㪘
㪋㪏
㪌㪍
㪋㪏
㪏㩷㪤㪆㪪㪤㩷㪂㩷㪋㪇㪘
㪌㪋
㪌㪋
㪋㪏
㪌㪋
㪌㪋
㪌㪍
㪌㪋
㪌㪌
㪌㪋
㪌㪋
㪌㪋
㪋㪏
㪋㪏
㪋㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪋㪉㪘
㪝㪃㩷㪤
㪝㪃㩷㪤
㪝㪃㩷㪤
㪝㪃㩷㪤
㪋㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪋㪇㪘
㪋㪏
㪝
㪋㪤㩷㪂㩷㪊㪪㪤㩷㪂㩷㪋㪈㪘
㪋㪏
㪌㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪋㪇㪘
㪋㪎
㪉㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪋㪉㩷㪪㪫㪆㪘
㪋㪏 㪝㪃㩷㪤
㪍㩷㪤㪆㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪋㪇㪘
㪋㪏
㪋㪪㪫㩷㪂㩷㪋㪋㪘
㪌㪉
㪋㪏
㪌㪋
㪌㪇
㪌㪇
㪋㪏
㪌㪏
㪋㪏
㪎㪋
㪌㪍
㪌㪏
㪎㪇
㪌㪇
㪌㪍
㪌㪍
㪋㪏
㪌㪋
㪌㪋
㪌㪍
㪌㪋
㪌㪌
㪌㪋
㪌㪍
㪌㪉
㪝 㪞 㪥㪝㪈 㪥㪝㪉
㪋㪏
㪉㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪋㪋㩷㪪㪫㪆㪘
㪜 㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪋㪏
㪛 㪉㫅
㪝㪃㩷㪤
㪝㪃㩷㪤
㪝㪃㩷㪤
㪚 㪪㪼㫏
㪫㪸㪹㫃㪼㩷㪍㪅㪊㪍㩷㩷㪦㫉㪻㪼㫉㩷㪧㪜㪩㪚㪠㪝㪦㪩㪤㪜㪪㪅㩷㪧㪸㫉㫋㩷㪈㩷㪧㪼㫉㪺㫆㫀㪻㪼㫀㩷㪸㫅㪻㩷㪜㫃㪸㫊㫊㫆㫄㪸㫋㫆㫀㪻㪼㫀㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㫀㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀
㪉
㪉
㪉
㪉
㪏
㪈㪋
㪈㪉
㪋
㪈㪇
㪉㪄㪋
㪈㪅㪊㩷㪝㪠㪘
㪈㪅㪊㩷㪝㪛
㪈㪅㪉㩷㪝㪛
㪈㪅㪈㩷㪝㪛
㪈㪅㪉㩷㪝㪛
㪈㪅㪍㩷㪝㪛㪃㩷㪈㪅㪐㩷㪙㪝㪘
㪈㪅㪇㩷㪝㪛
㪟 㪠 㪘㪾㪄 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㪥㪦㪩㫊 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪚㪿㫀㫅㪸
㪠㫋㪸㫃㫐㩷㩿㪧㪸㫃㪼㫉㫄㫆㪀
㪠㫋㪸㫃㫐㩷㩿㪧㪸㫃㪼㫉㫄㫆㪀
㪚㪿㫀㫅㪸
㪠㫋㪸㫃㫐㩷㩿㪫㫐㫉㫉㪿㪼㫅㫀㪸㫅㩷㪪㪼㪸㪀
㪠㫋㪸㫃㫐㩷㩿㪪㫀㪺㫀㫃㫐㪀
㪠㫋㪸㫃㫐㩷㩿㪫㫐㫉㫉㪿㪼㫅㫀㪸㫅㩷㪪㪼㪸㪀
㪪㫇㪸㫀㫅㩷㩿㪤㪸㫃㪸㪾㪸㪀
㪠㫋㪸㫃㫐㩷㩿㪫㫐㫉㫉㪿㪼㫅㫀㪸㫅㩷㪪㪼㪸㪀
㪠㫋㪸㫃㫐㩷㩿㪫㫐㫉㫉㪿㪼㫅㫀㪸㫅㩷㪪㪼㪸㪀
㪪㫇㪸㫀㫅㩷㩿㪤㪸㫃㪸㪾㪸㪀
㪬㪪㪘㩷㩿㪘㫋㫃㪸㫅㫋㫀㪺㪀
㪡㪸㫇㪸㫅
㪪㫇㪸㫀㫅㩷㩿㪤㪸㫃㪸㪾㪸㪀
㪠㫋㪸㫃㫐㩷㩿㪧㪸㫃㪼㫉㫄㫆㪀
㪪㫇㪸㫀㫅㩷㩿㪤㪸㫃㪸㪾㪸㪀
㪠㫋㪸㫃㫐㩷㩿㪪㫀㪺㫀㫃㫐㪀
㪠㫋㪸㫃㫐㩷㩿㪫㫐㫉㫉㪿㪼㫅㫀㪸㫅㩷㪪㪼㪸㪀
㪠㫋㪸㫃㫐㩷㩿㪪㫀㪺㫀㫃㫐㪀
㪪㫇㪸㫀㫅
㪪㫇㪸㫀㫅㩷㩿㪤㪸㫃㪸㪾㪸㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪙㪘㪀
㪠㫋㪸㫃㫐㩷㩿㪧㪸㫃㪼㫉㫄㫆㪀
㪠㫋㪸㫃㫐㩷㩿㪧㪸㫃㪼㫉㫄㫆㪀
㪠㫋㪸㫃㫐㩷㩿㪧㪸㫃㪼㫉㫄㫆㪀
㪠㫋㪸㫃㫐㩷㩿㪧㪸㫃㪼㫉㫄㫆㪀
㪠㫋㪸㫃㫐㩷㩿㪧㪸㫃㪼㫉㫄㫆㪀
㪠㫋㪸㫃㫐㩷㩿㪧㪸㫃㪼㫉㫄㫆㪀
㪙㫃㪸㪺㫂㩷㪪㪼㪸
㪠㫋㪸㫃㫐㩷㩿㪫㫐㫉㫉㪿㪼㫅㫀㪸㫅㩷㪪㪼㪸㪀
㪡㪸㫇㪸㫅
㪠㫋㪸㫃㫐
㪪㫇㪸㫀㫅㩷㩿㪤㪸㫃㪸㪾㪸㪀
㪢 㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪰㪄㪈㪐
㪭㪄㪈㪇㪌
㪭㪄㪈㪇㪌
㪣㪄㪌㪎㪃㩷㪟㪄㪋㪇
㪚㪄㪊㪍
㪭㪄㪍㪈
㪚㪄㪊㪍
㪚㪄㪐
㪚㪄㪊㪍
㪚㪄㪊㪍
㪚㪄㪐
㪝㪄㪍㪐
㪤㪄㪈㪇㪍
㪚㪄㪐
㪭㪄㪐㪍
㪚㪄㪐
㪭㪄㪐㪍
㪚㪄㪊㪍
㪭㪄㪐㪍
㪘㪄㪋㪌
㪘㪄㪋㪌
㪞㪄㪈㪉㪃㩷㪟㪄㪈㪊
㪭㪄㪐㪍
㪭㪄㪐㪍
㪭㪄㪍㪏
㪭㪄㪍㪏
㪭㪄㪍㪏
㪭㪄㪍㪏
㪭㪄㪌
㪚㪄㪊㪍
㪤㪄㪈㪇㪍
㪣㪄㪋㪏
㪚㪄㪐
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
177
㫄㪸㫁㫆㫉 㫄㪸㫁㫆㫉 㫇㪸㪾㫉㫌㫊 㫇㪸㪾㫉㫌㫊 㫊㪸㫉㪹㪸 㫊㪸㫃㫇㪸 㫊㪸㫃㫇㪸 㪸㫌㫉㪸㫋㪸 㪸㫌㫉㪸㫋㪸
㫆㫏㫐㫉㪿㫐㫅㪺㪿㫌㫊 㫁㪸㫉㪹㫌㪸 㫇㫌㫋㪸 㫋㪿㪼㫉㪸㫇㫊
㪜㫃㪸㫊㫊㫆㫄㪸
㫑㫆㫅㪸㫋㫌㫄
㪪㫌㪹㫆㫉㪻㪼㫉㩷㪜㫃㪸㫊㫊㫆㫄㪸㫋㫆㫀㪻㪼㫀 㪜㫃㪸㫊㫊㫆㫄㪸㫋㫀㪻㪸㪼
㪩㪿㫐㫅㪺㪿㫆㫇㪼㫃㪸㫋㪼㫊 㪫㪼㫉㪸㫇㫆㫅 㪫㪼㫉㪸㫇㫆㫅 㪫㪼㫉㪸㫇㫆㫅
㪫㪼㫉㪸㫇㫆㫅㫋㫀㪻㪸㪼㩷㩿㪔㩷㪫㪼㫉㪸㫇㫆㫅㫀㪻㪸㪼㪀㩷
㪧㪸㪾㫉㫌㫊 㪧㪸㪾㫉㫌㫊 㪧㪸㪾㫉㫌㫊 㪧㪸㪾㫉㫌㫊 㪩㪿㪸㪹㪻㫆㫊㪸㫉㪾㫌㫊 㪪㪸㫉㫇㪸 㪪㪸㫉㫇㪸 㪪㫇㪸㫉㫌㫊 㪪㫇㪸㫉㫌㫊
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㪹㫆㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷
㪚㪼㫅㫋㫉㪸㫉㪺㪿㫀㪻㪸㪼
㪩㪿㫐㫅㪺㫆㫇㪼㫃㪸㫋㪼㫊 㪫㪿㪼㫉㪸㫇㫆㫅 㪫㪿㪼㫉㪸㫇㫆㫅
㪪㫇㪸㫉㫌㫊
㪚㪿㫉㫐㫊㫆㫇㪿㫉㫐㫊
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪋㪏
㪋㪏㪘 㪋㪏㪘
㪋㪏 㪋㪏
㪝㪃㩷㪤
㪉㪪㪤㩷㪂㩷㪋㪍㩷㪪㪫㪆㪘
㪋㪏㪘
㪋㪏 㪋㪏
㪉㪪㪤㩷㪂㩷㪋㪍㪘
㪏㩷㪤㪆㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪊㪇㪘
㪝
㪋㪏
㪍㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪊㪉㪘
㪍㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪊㪋㪘
㪝㪃㩷㪤
㪝㪃㩷㪤
㪋㪏
㪝㪃㩷㪤 㪋㪏
㪋㪏
㪋㪏
㪌㪇
㪋㪏
㪋㪏
㪋㪏
㪌㪇
㪌㪍
㪌㪍
㪌㪋
㪌㪏
㪌㪋
㪋㪏
㪋㪏
㪋㪏
㪌㪇
㪍㪍
㪍㪋
㪍㪇
㪌㪇 㪌㪇
㪋㪏 㪌㪇 㪌㪇
㪉㪪㪤㩷㪂㩷㪋㪍㪘
㪋㪏
㪋㪏
㪝 㪞 㪥㪝㪈 㪥㪝㪉
㪋㪏
㪉㪪㪫㩷㪂㩷㪋㪍㪘
㪋㪏㪘
㪜 㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪋㪏
㪋㪏
㪋㪏
㪛 㪉㫅
㪝㪃㩷㪤
㪝㪃㩷㪤
㪚 㪪㪼㫏
㪫㪸㪹㫃㪼㩷㪍㪅㪊㪍㩷㩷㪦㫉㪻㪼㫉㩷㪧㪜㪩㪚㪠㪝㪦㪩㪤㪜㪪㪅㩷㪧㪸㫉㫋㩷㪈㩷㪧㪼㫉㪺㫆㫀㪻㪼㫀㩷㪸㫅㪻㩷㪜㫃㪸㫊㫊㫆㫄㪸㫋㫆㫀㪻㪼㫀㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㫀㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀
㪉
㪉
㪉
㪉
㪈㪅㪋㩷㪝㪠㪘
㪈㪅㪍㩷㪝㪠㪘
㪈㪅㪊㩷㪝㪠㪘
㪈㪅㪎㪁㩷㪝㪚㪤
㪈㪅㪐㩷㪝㪚㪤
㪈㪅㪈㩷㪝㪛
㪈㪅㪌㩷㪝㪠㪘
㪈㪅㪏㪁㩷㪝㪚㪤
㪈㪅㪊㩷㪝㪛
㪟 㪠 㪘㪾㪄 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㪥㪦㪩㫊 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪬㪪㪘㩷㩿㪥㪚㪀
㪠㫅㪻㫀㪸㩷㩿㪮㪙㪀
㪠㫅㪻㫀㪸
㪠㫅㪻㫀㪸
㪡㪸㫇㪸㫅㩷㩿㪟㫐㫆㪾㫆㪀
㪠㫋㪸㫃㫐㩷㩿㪫㫐㫉㫉㪿㪼㫅㫀㪸㫅㩷㪪㪼㪸㪀
㪪㫇㪸㫀㫅
㪠㫋㪸㫃㫐㩷㩿㪫㫐㫉㫉㪿㪼㫅㫀㪸㫅㩷㪪㪼㪸㪀
㪪㫇㪸㫀㫅㩷㩿㪤㪸㫃㪸㪾㪸㪀
㪡㪸㫇㪸㫅
㪠㫋㪸㫃㫐㩷㩿㪧㪸㫃㪼㫉㫄㫆㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪩㪡㪀
㪡㪸㫇㪸㫅㩷㩿㪰㪸㫄㪸㪾㫌㪺㪿㫀㪀
㪢㫆㫉㪼㪸
㪢 㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪩㪄㪏㪇
㪢㪄㪋㪍㪃㩷㪞㪄㪏㪌
㪪㪄㪈㪈㪍㪃㩷㪟㪄㪋㪈
㪪㪄㪈㪈㪍㪃㩷㪩㪄㪋㪌㪃㩷㪟㪄㪋㪈
㪦㪄㪋㪏㪃㩷㪦㪄㪋㪍
㪚㪄㪊㪍㪃㩷㪭㪄㪈㪇㪌㪃㩷㪞㪄㪏㪌
㪘㪄㪊㪉
㪚㪄㪊㪍
㪚㪄㪐
㪤㪄㪈㪇㪍㪃㩷㪟㪄㪋㪇
㪭㪄㪈㪇㪌
㪞㪄㪈㪉
㪥㪄㪉㪐㪃㩷㪦㪄㪋㪏
㪢㪄㪌㪊
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
178
㪘㪺㪸㫉㫀㪺㪿㫋㪿㫐㫊 㪘㪼㫈㫌㫀㪻㪼㫅㫊 㪘㪼㫈㫌㫀㪻㪼㫅㫊 㪘㪼㫈㫌㫀㪻㪼㫅㫊 㪘㫄㫇㪿㫀㫃㫆㫇㪿㫌㫊 㪘㫄㫇㪿㫀㫃㫆㫇㪿㫌㫊 㪘㫇㫀㫊㫋㫆㪾㫉㪸㫄㫄㪸 㪘㫇㫀㫊㫋㫆㪾㫉㪸㫄㫄㪸 㪘㫇㫀㫊㫋㫆㪾㫉㪸㫄㫄㪸 㪘㫇㫀㫊㫋㫆㪾㫉㪸㫄㫄㪸 㪘㫇㫀㫊㫋㫆㪾㫉㪸㫄㫄㪸 㪘㫇㫀㫊㫋㫆㪾㫉㪸㫄㫄㪸 㪘㫇㫀㫊㫋㫆㪾㫉㪸㫄㫄㪸 㪘㫇㫀㫊㫋㫆㪾㫉㪸㫄㫄㪸 㪘㫇㫀㫊㫋㫆㪾㫉㪸㫄㫄㪸 㪘㫇㫀㫊㫋㫆㪾㫉㪸㫄㫄㪸 㪘㫉㪺㪿㫆㪺㪼㫅㫋㫉㫌㫊 㪘㫉㪺㪿㫆㪺㪼㫅㫋㫉㫌㫊 㪘㫉㪺㪿㫆㪺㪼㫅㫋㫉㫌㫊 㪘㫉㪺㪿㫆㪺㪼㫅㫋㫉㫌㫊 㪘㫉㪺㪿㫆㪺㪼㫅㫋㫉㫌㫊 㪘㫊㫋㫉㫆㫅㫆㫋㫌㫊 㪘㫊㫋㫉㫆㫅㫆㫋㫌㫊 㪘㫊㫋㫉㫆㫅㫆㫋㫌㫊 㪘㫊㫋㫉㫆㫅㫆㫋㫌㫊 㪘㫌㫊㫋㫉㪸㫃㫆㪿㪼㫉㫆㫊 㪘㫌㫊㫋㫉㪸㫃㫆㪿㪼㫉㫆㫊 㪘㫌㫊㫋㫉㪸㫃㫆㪿㪼㫉㫆㫊 㪙㫌㫁㫌㫉㫈㫌㫀㫅㪸 㪙㫌㫁㫌㫉㫈㫌㫀㫅㪸 㪚㪸㫈㫌㪼㫋㪸㫀㪸 㪚㪿㪸㪼㫋㫆㪹㫉㪸㫅㪺㪿㫆㫇㫊㫀㫊 㪚㫀㪺㪿㫃㪸 㪍㩷㪤㪆㪪㪤㩷㪂㩷㪈㪋㪪㪫㩷㪂㩷㪉㪏㪘㩷 㪍㩷㪤㪆㪪㪤㩷㪂㩷㪋㪉㩷㪪㪫㪆㪘
㪋㪏 㪋㪏 㪋㪏 㪋㪏
㪝 㪝㪃㩷㪤 㪝
㪺㪼㫅㫋㫉㪸㫉㪺㪿㫌㫊 㫅㫀㪾㫉㫆㪽㪸㫊㪺㫀㪸㫋㫌㫊 㫊㪼㫇㫋㪼㫄㪽㪸㫊㪺㫀㪸㫋㫌㫊 㫊㫇㫀㫃㫌㫉㫌㫊 㫊㫇㫀㫃㫌㫉㫌㫊 㫆㪺㪼㫃㫃㪸㫋㫌㫊 㫆㪺㪼㫃㫃㪸㫋㫌㫊 㫆㪺㪼㫃㫃㪸㫋㫌㫊 㫆㪺㪼㫃㫃㪸㫋㫌㫊 㪽㪸㪺㪼㫋㫌㫊 㪽㪸㪺㪼㫋㫌㫊 㪽㪸㪺㪼㫋㫌㫊 㫍㫀㫋㫋㪸㫋㪸 㫍㫀㫋㫋㪸㫋㪸 㫂㫉㪸㫌㫊㫊㫀㫀 㪸㫌㫊㫋㫉㪸㫃㪼 㫄㫆㫅㫆㪺㫌㫃㫌㫊
㪘㪼㫈㫌㫀㪻㪼㫅㫊㩷㫇㪸㫉㪸㪾㫌㪸㫐㪼㫅㫊㫀㫊 㪚㫀㪺㪿㫃㪸㫊㫆㫄㪸
㪚㫀㪺㪿㫃㪸㫊㫆㫄㪸㩷㪽㪸㪺㪼㫋㫌㫄 㪚㫀㪺㪿㫃㪸㫊㫆㫄㪸㩷㪽㪸㪺㪼㫋㫌㫄 㪚㫀㪺㪿㫃㪸㫊㫆㫄㪸㩷㪽㪸㪺㪼㫋㫌㫄
㪚㫀㪺㪿㫃㪸㫊㫆㫄㪸 㪚㫀㪺㪿㫃㪸㫊㫆㫄㪸㩷 㪚㫀㪺㪿㫃㪸㫊㫆㫄㪸㩷 㪚㫀㪺㪿㫃㪸㫊㫆㫄㪸㩷㫊㫇㫀㫃㫌㫉㫌㫄 㪚㫀㪺㪿㫃㪸㫊㫆㫄㪸㩷㪺㫌㫋㫋㪼㫉㫀
㪋㪏
㪌㪇 㪋㪏 㪋㪏
㪝㪃㩷㪤 㪝㪃㩷㪤 㪝㪃㩷㪤
㪉㪉㩷㪤㪆㪪㪤㩷㪂㩷㪏㩷㪪㪫㪆㪘㩷㪂㩷㪈㪋㩷㪤㪚 㪍㪍
㪋㪋
㪋㪋 㪝㪃㩷㪤
㪏㪪㪤㩷㪂㩷㪋㪇㪘
㪋㪏
㪋㪏㪘
㪋㪏㪘
㪍㩷㪤㪆㪪㪤㩷㪂㩷㪈㪋㪪㪫㩷㪂㩷㪊㪇㪘
㪉㪍㩷㪤㪆㪪㪤㩷㪂㪈㪏㩷㪪㪫㪆㪘
㪋㪏
㪋㪏
㪌㪍
㪎㪇
㪌㪍
㪌㪏
㪝㪃㩷㪤
㪈㪇㪪㪤㩷㪂㩷㪊㪏㩷㪪㪫㪆㪘
㪋㪏
㪌㪏
㪍㪋
㪌㪋
㪝㪃㩷㪤
㪈㪇㩷㪤㪆㪪㪤㩷㪂㩷㪊㪏㩷㪪㪫㪆㪘
㪈㪍㩷㪤㪆㪪㪤㩷㪂㩷㪊㪉㩷㪪㪫㪆㪘
㪍㩷㪤㪆㪪㪤㩷㪂㩷㪋㪉㩷㪪㪫㪆㪘
㪍㪇
㪌㪋
㪌㪋
㪌㪉
㪌㪋
㪍㪉
㪋㪏
㪋㪏
㪈㪉㩷㪤㪆㪪㪤㩷㪂㩷㪊㪍㩷㪪㪫㪆㪘
㪋㩷㪤㪆㪪㪤㩷㪂㩷㪋㪋㩷㪪㪫㪆㪘
㪍㩷㪤㪆㪪㪤㩷㪂㩷㪈㪋㪪㪫㩷㪂㩷㪉㪏㪘㩷
㪈㪍㩷㪤㪆㪪㪤㩷㪂㩷㪊㪇㩷㪪㪫㪆㪘
㪝㪃㩷㪤
㪋㪏
㪝
㪋㪏
㪋㪏
㪋㪏
㪊㪏
㪋㪍
㪋㪏
㪋㪏
㪎㪇
㪌㪍
㩿㪐㪍㪀
㩿㪍㪏㪀
㪍㪏
㪍㪏
㩿㪏㪍㪀
㩿㪍㪋㪀
㩿㪏㪍㪀
㩿㪐㪇㪀
㪍㪉
㩿㪎㪏㪀
㩿㪏㪍㪀 㪎㪇
㪍㪇
㪎㪇
㪏㪋
㪍㪏
㩿㪏㪉㪀
㪎㪇
㪋㪍 㪉㪋㩷㪤㪆㪪㪤㩷㪂㩷㪉㪉㩷㪪㪫㪆㪘
㪉㪉㩷㪤㪆㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪈㪋㪘
㪉㪋㩷㪤㪆㪪㪤㩷㪂㩷㪉㪉㩷㪪㪫㪆㪘
㪌㪍
㪋㪏
㪌㪋
㪌㪋
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪝 㪞 㪟 㪥㪝㪈 㪥㪝㪉 㪘㪾㪄 㪥㪦㪩㫊
㪋㪍
㪋㪍
㪊㪏
㪋㪇
㪋㪍
㪊㪍㩷㪪㪤㪆㪪㪫㩷㪂㩷㪈㪉㪘
㪋㪏
㪝㪃㩷㪤
㪝㪃㩷㪤
㪤
㪤
㪝㪃㩷㪤
㪏㩷㪤㪆㪪㪤㩷㪂㩷㪈㪉㪪㪫㩷㪂㩷㪉㪏㪘
㪋㪏
㪋㪏
㪋㪏㩷㪪㪫㪆㪘
㪋㪏
㪝㪃㩷㪤
㪍㩷㪤㪆㪪㪤㩷㪂㩷㪈㪍㪪㪫㩷㪂㩷㪉㪍㪘
㪋㪏
㪤 㪝㪃㩷㪤
㪍㩷㪤㪆㪪㪤㩷㪂㩷㪋㪉㩷㪪㪫㪆㪘
㪜 㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪋㪍
㪛 㪉㫅
㪋㪍
㪚 㪪㪼㫏
㫊㫇㪅
㩷㫉㪼㫀㫋㫑㫀㪾㫀
㪚㫀㪺㪿㫃㪸㫊㫆㫄㪸㩷㪺㫀㫋㫉㫀㫅㪼㫃㫃㫌㫄 㪚㫀㪺㪿㫃㪸㫊㫆㫄㪸㩷㪺㫀㫋㫉㫀㫅㪼㫃㫃㪸 㪸㪾㪸㫊㫊㫀㫑㫀 㪸㪾㪸㫊㫊㫀㫑㫀
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪿㪼㪺㫂㪼㫃㫀㫀 㫄㪼㫋㪸㪼 㫇㫃㪸㪾㫀㫆㫑㫆㫅㪸㫋㫌㫊 㫇㫌㫃㪺㪿㪼㫉 㪺㫀㫋㫉㫀㫅㪼㫃㫃㫌㫊 㪺㫀㫋㫉㫀㫅㪼㫃㫃㫌㫊 㪸㪾㪸㫊㫊㫀㫑㫀㫀 㪸㪾㪸㫊㫊㫀㫑㫀㫀 㪹㫆㫉㪼㫃㫃㫀㫀 㪹㫆㫉㪼㫃㫃㫀㫀 㪹㫆㫉㪼㫃㫃㫀㫀 㪺㪸㪺㪸㫋㫌㫆㫀㪻㪼㫊 㫆㫉㫋㫄㪸㫅㫅㫀 㫆㫉㫋㫄㪸㫅㫅㫀 㫋㫉㫀㪽㪸㫊㪺㫀㪸㫋㪸
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㪹㫆㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷 㪪㫌㪹㫆㫉㪻㪼㫉㩷㪣㪸㪹㫉㫆㫀㪻㪼㫀㩷 㪚㫀㪺㪿㫃㫀㪻㪸㪼 㩷㩷㪘㫄㪼㫉㫀㪺㪸㫅㩷㪚㫀㪺㪿㫃㫀㪻㪸㪼㩷
㪫㪸㪹㫃㪼㩷㪍㪅㪊㪎㩷㩷㪦㫉㪻㪼㫉㩷㪧㪜㪩㪚㪠㪝㪦㪩㪤㪜㪪㪅㩷㪧㪸㫉㫋㩷㪉㩷㪣㪸㪹㫉㫆㫀㪻㪼㫀㩷㪸㫅㪻㩷㪱㫆㪸㫉㪺㫆㫀㪻㪼㫀㩷
㩿㪉㪅㪈㪁㩷㪝㪚㪤㪀
㪠 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪪㪀
㪚㫆㫃㫆㫄㪹㫀㪸
㩿㪧㪸㫉㪸㪾㫌㪸㫐㩷㪩㪅㪀
㪘㫉㪾㪼㫅㫋㫀㫅㪸
㪬㫉㫌㪾㫌㪸㫐
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪩㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪫㫀㪼㫋㪼㩷㪩㪅㪃㩷㪪㪧㪀
㩿㪪㪅㩷㪘㫄㪼㫉㫀㪺㪸㪀
㩿㪪㪅㩷㪘㫄㪼㫉㫀㪺㪸㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪪㪃㩷㪘㪤㪀
㩿㪪㪅㩷㪘㫄㪼㫉㫀㪺㪸㪀
㪚㫆㫊㫋㪸㩷㪩㫀㪺㪸
㪚㫆㫊㫋㪸㩷㪩㫀㪺㪸㩷㩿㪘㫋㫃㪸㫅㫋㫀㪺㩷㫊㫀㪻㪼㪀㩷
㪚㫆㫊㫋㪸㩷㪩㫀㪺㪸
㩿㪚㪅㩷㪘㫄㪼㫉㫀㪺㪸㪃㩷㪧㪸㪺㫀㪽㫀㪺㩷㫊㫀㪻㪼㪀
㩿㪪㪅㩷㪘㫄㪼㫉㫀㪺㪸㪀
㪘㫉㪾㪼㫅㫋㫀㫅㪸
㩿㪪㪅㩷㪘㫄㪼㫉㫀㪺㪸㪀
㩿㪪㪅㩷㪘㫄㪼㫉㫀㪺㪸㪀
㩿㪪㪅㩷㪘㫄㪼㫉㫀㪺㪸㪀
㩿㪪㪅㩷㪘㫄㪼㫉㫀㪺㪸㪀
㩿㪪㪅㩷㪘㫄㪼㫉㫀㪺㪸㪀
㩿㪚㪅㩷㪘㫄㪼㫉㫀㪺㪸㪃㩷㪘㫋㫃㪸㫅㫋㫀㪺㩷㫊㫀㪻㪼㪀
㩿㪚㪅㩷㪘㫄㪼㫉㫀㪺㪸㪃㩷㪘㫋㫃㪸㫅㫋㫀㪺㩷㫊㫀㪻㪼㪀
㩿㪭㪼㫅㪼㫑㫌㪼㫃㪸㪃㩷㪫㫉㫀㫅㫀㪻㪸㪻㪀
㩿㪙㫉㪸㫑㫀㫃㪀
㩿㪦㫉㫀㫅㫀㪺㫆㩷㪩㪅㪀
㩿㪘㫄㪸㫑㫆㫅㩷㪩㪅㪀
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪈㪄㪊㩷㪙㪃㩷㪘㪚㪥㪔㪋㪏 㪙㫉㪸㫑㫀㫃㩷㩿㪘㫄㪸㫑㫆㫅㩷㪩㪅㪀
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪝㪄㪈㪋㪃㩷㪙㪄㪏㪌
㪝㪄㪐㪃㩷㪝㪄㪈㪇
㪫㪄㪋㪈
㪫㪄㪋㪈
㪝 㪄 㪉 㪇 㪃 㩷 㪩㪄 㪈 㪇 㪎
㪦㪄㪍㪍
㪭㪄㪏㪎
㪝㪄㪐㪃㩷㪝㪄㪈㪇
㪤㪄㪈㪊㪍
㪫㪄㪋㪈㪃㩷㪦㪄㪋㪏
㪪 㪄㪈 㪏㪋
㪝㪄㪐㪃㩷㪝㪄㪈㪇
㪪 㪄㪈㪏㪋
㪫㪄㪊㪐
㪫㪄㪋㪈
㪫㪄㪋㪈
㪫㪄㪋㪈
㪪 㪄㪈㪏㪋
㪝㪄㪉㪇㪃㩷㪩㪄㪈㪇㪎
㪪 㪄㪈㪏㪋
㪫㪄㪋㪈
㪪 㪄㪈㪏㪋
㪪 㪄㪈㪏㪋
㪪 㪄㪈㪏㪋
㪫㪄㪋㪈
㪪 㪄㪈㪏㪋
㪫㪄㪋㪈
㪥 㪄㪊㪇
㪫㪄㪋㪈
㪪 㪄㪈㪏㪋
㪤㪄㪈㪋㪐
㪫㪄㪋㪈
㪫㪄㪋㪈
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
179
㪚㫀㪺㪿㫃㪸 㪚㫀㪺㪿㫃㪸㫊㫆㫄㪸 㪚㫀㪺㪿㫃㪸㫊㫆㫄㪸 㪚㫀㪺㪿㫃㪸㫊㫆㫄㪸 㪚㫀㪺㪿㫃㪸㫊㫆㫄㪸 㪚㫀㪺㪿㫃㪸㫊㫆㫄㪸 㪚㫀㪺㪿㫃㪸㫊㫆㫄㪸 㪚㫀㪺㪿㫃㪸㫊㫆㫄㪸 㪚㫀㪺㪿㫃㪸㫊㫆㫄㪸 㪚㫀㪺㪿㫃㪸㫊㫆㫄㪸 㪚㫀㪺㪿㫃㪸㫊㫆㫄㪸 㪚㫀㪺㪿㫃㪸㫊㫆㫄㪸 㪚㫀㪺㪿㫃㪸㫊㫆㫄㪸 㪚㫀㪺㪿㫃㪸㫊㫆㫄㪸 㪚㫀㪺㪿㫃㪸㫊㫆㫄㪸 㪚㫀㪺㪿㫃㪸㫊㫆㫄㪸 㪚㫀㪺㪿㫃㪸㫊㫆㫄㪸 㪚㫃㪼㫀㫋㪿㫉㪸㪺㪸㫉㪸 㪚㫉㪼㫅㫀㪺㫀㪺㪿㫃㪸 㪚㫉㪼㫅㫀㪺㫀㪺㪿㫃㪸 㪚㫉㪼㫅㫀㪺㫀㪺㪿㫃㪸 㪚㫉㪼㫅㫀㪺㫀㪺㪿㫃㪸 㪚㫉㪼㫅㫀㪺㫀㪺㪿㫃㪸 㪚㫉㪼㫅㫀㪺㫀㪺㪿㫃㪸 㪚㫉㪼㫅㫀㪺㫀㪺㪿㫃㪸 㪚㫉㪼㫅㫀㪺㫀㪺㪿㫃㪸 㪚㫉㪼㫅㫀㪺㫀㪺㪿㫃㪸 㪚㫉㪼㫅㫀㪺㫀㪺㪿㫃㪸 㪚㫉㪼㫅㫀㪺㫀㪺㪿㫃㪸 㪚㫉㪼㫅㫀㪺㫀㪺㪿㫃㪸 㪚㫉㪼㫅㫀㪺㫀㪺㪿㫃㪸 㪚㫉㪼㫅㫀㪺㫀㪺㪿㫃㪸 㪚㫉㪼㫅㫀㪺㫀㪺㪿㫃㪸 㪚㫉㪼㫅㫀㪺㫀㪺㪿㫃㪸 㪚㫉㪼㫅㫀㪺㫀㪺㪿㫃㪸 㪚㫉㪼㫅㫀㪺㫀㪺㪿㫃㪸
㫄㪸㫉㫆㫅㫀㫀 㪹㫉㫀㫋㫊㫂㫀㫀 㪺㫀㫅㪺㫋㪸 㫀㪾㫌㪸㫊㫊㫌㪼㫅㫊㫀㫊 㫀㪾㫌㪸㫊㫊㫌㪼㫅㫊㫀㫊 㫀㫅㫇㪸 㪺㪽㪅㩷㫁㫆㪿㪸㫅㫅㪸 㫃㪸㪺㫌㫊㫋㫉㫀㫊 㫃㪼㫇㫀㪻㫆㫋㪸 㫃㪼㫇㫀㪻㫆㫋㪸 㫃㪼㫇㫀㪻㫆㫋㪸 㫃㪼㫇㫀㪻㫆㫋㪸 㫃㫌㪺㫀㫌㫊 㫃㫌㪾㫌㪹㫉㫀㫊 㫅㫀㪼㪻㪼㫉㫃㪼㫀㫅㫀㫀 㫅㫀㪼㪻㪼㫉㫃㪼㫀㫅㫀㫀 㫅㫀㪼㪻㪼㫉㫃㪼㫀㫅㫀㫀 㫅㫆㫋㫆㫇㪿㫋㪿㪸㫃㫄㫌㫊 㫉㪼㫋㫀㪺㫌㫃㪸㫋㪸
㪋㪏
㪝㪃㩷㪤 㪝㪃㩷㪤
㪘㪼㫈㫌㫀㪻㪼㫅㫊㩷㫄㪸㫉㫆㫅㫀
㪏㩷㪤㪆㪪㪤㩷㪂㩷㪉㪉㪪㪫㩷㪂㩷㪈㪏㪘
㪋㪏
㪝
㪍㩷㪤㪆㪪㪤㩷㪂㩷㪏㪪㪫㩷㪂㩷㪊㪋㪘 㪍㩷㪤㪆㪪㪤㩷㪂㩷㪋㪉㩷㪪㪫㪆㪘
㪋㪏 㪋㪏
㪉㪤㩷㪂㩷㪏㪪㪤㩷㪂㩷㪊㪏㩷㪪㪫㪆㪘 㪍㩷㪤㪆㪪㪤㩷㪂㩷㪋㪉㩷㪪㪫㪆㪘
㪋㪏 㪋㪏
㪤
㪉㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪊㪇㪘
㪋㪏
㪝㪃㩷㪤
㪌㪋
㪌㪋
㪌㪋
㪌㪏
㪍㪉
㪌㪍
㪍㪉
㪍㪍
㪉
㪉
㪉
㪋
㪉
㩿㪘㫄㪸㫑㫆㫅㩷㪩㪅㪀
㪘㫉㪾㪼㫅㫋㫀㫅㪸
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪩㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪩㪀
㪈㪄㪊㩷㪙㪃㩷㪘㪚㪥㪔㪋㪏 㪙㫉㪸㫑㫀㫃㩷㩿㪘㫄㪸㫑㫆㫅㩷㪩㪅㪀
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪩㪀
㪘㫉㪾㪼㫅㫋㫀㫅㪸
㪙㫉㪸㫑㫀㫃㩷㩿㪘㫄㪸㫑㫆㫅㩷㪹㪸㫊㫀㫅㪀
㪏㩷㪤㪆㪪㪤㩷㪂㩷㪋㪇㩷㪪㪫㪆㪘
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪪㪀
㩿㪪㪅㩷㪘㫄㪼㫉㫀㪺㪸㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪅㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪘㫄㪸㫑㫆㫅㩷㪹㪸㫊㫀㫅㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪘㫄㪸㫑㫆㫅㩷㪹㪸㫊㫀㫅㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪩㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪩㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪘㪤㪀
㪧㪸㫉㪸㫅㬗㪄㪧㪸㫉㪸㪾㫌㪸㫀㩷㪹㪸㫊㫀㫅
㩿㪞㫌㫐㪸㫅㪸㪃㩷㪪㫌㫉㫀㫅㪸㫄㪼㪀
㪤㪼㫏㫀㪺㫆㩷㩿㪚㫆㪸㪿㫌㫀㫃㪸㪀
㪤㪼㫏㫀㪺㫆㩷㩿㫅㪼㪸㫉㩷㪘㪺㪸㫇㫌㫃㪺㫆㪀
㩿㪤㪼㫏㫀㪺㫆㪀
㪚㫌㪹㪸
㪙㪼㫃㫀㫑㪼
㩿㪙㫉㪸㫑㫀㫃㪀
㪙㪄㪏㪉㪃㩷㪝㪄㪈㪋
㪫㪄㪋㪈
㪝㪄㪉㪇㪃㩷㪩㪄㪈㪇㪎
㪣㪄㪎㪈
㪤㪄㪋㪈
㪙㪄 㪏 㪉
㪫㪄㪋㪈
㪤㪄㪋㪈
㪝㪄㪉㪇㪃㩷㪩㪄㪈㪇㪎
㪝㪄㪐㪃㩷㪝㪄㪈㪇
㪫㪄㪋㪈
㪝㪄㪐㪃 㪝㪄㪈㪇
㪙㪄 㪏 㪉
㪙㪄 㪏 㪉
㪙㪄 㪏 㪉
㪤㪄㪈㪌㪐
㪙㪄 㪏 㪉
㪙㪄 㪏 㪉
㪪 㪄㪈㪏㪋
㪫㪄㪋㪈
㪬 㪄㪋㪏
㪫㪄 㪋㪈
㪩㪄 㪍
㪫㪄 㪋㪈
㪦㪄㪌㪇㪃㩷㪪㪄㪈㪏㪋㪃㩷㪟㪄㪈㪊
㪤㪄㪋㪈
㪫㪄㪋㪈㪃㩷㪟㪄㪈㪊 㪙㫉㪸㫑㫀㫃㩷㩿㪧㪩㪀
㪬 㪄㪋㪐
㪤㪼㫏㫀㪺㫆㩷㩿㪤㫆㫉㪼㫃㫆㫊㪀
㪬 㪄㪋㪐
㪪 㪄㪍
㪪 㪄㪍
㪫㪄㪋㪈㪃㩷㪪㪄㪍
㪝㪄㪉㪇㪃㩷㪩㪄㪈㪇㪎
㪫㪄㪋㪈
㪫㪄㪋㪈
㪫㪄㪋㪈㪃㩷㪙㪄㪏㪌
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
㩿㪘㫋㫃㪸㫅㫋㫀㪺㩷㫊㫀㪻㪼㩷㫆㪽㩷㪚㪅㩷㪘㫄㪼㫉㫀㪺㪸㪀
㪋㪏
㪉
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘 㪚㪥 㪔 㪋 㪏
㪘㪚㪥㪔㪋㪏
㪤㪼㫏㫀㪺㫆㩷㩿㪤㫀㪺㪿㫆㪸㪺㬗㫅㪀
㪚㫆㫊㫋㪸㩷㪩㫀㪺㪸
㪚㫆㫊㫋㪸㩷㪩㫀㪺㪸
㪚㫆㫊㫋㪸㩷㪩㫀㪺㪸
㪘㫉㪾㪼㫅㫋㫀㫅㪸
㩿㪙㫉㪸㫑㫀㫃㪃㩷㪪㫌㫉㫀㫅㪸㫄㪼㪀
㪤㪼㫏㫀㪺㫆㩷㩿㪪㫆㫅㫆㫉㪸㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪘㫄㪸㫑㫆㫅㩷㪩㪅㪀
㩿㪘㫄㪸㫑㫆㫅㩷㪩㪅㪀
㪍㪇
㪉㪅㪋㩷㪙㪝㪘
㪉㪅㪍㩷㪙㪝㪘
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪋㪏
㪌㪋
㪌㪋
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪝
㪉㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪊㪍㪘
㪍㩷㪤㪆㪪㪤㩷㪂㩷㪋㪉㩷㪪㪫㪆㪘
㪍㪉
㪎㪇
㩿㪏㪉㪀
㪍㪏
㪏㪉
㩿㪍㪏㪀
㪏㪇
㪍㪏
㪎㪏
㪍㪏
㪍㪏
㪋㪏
㪠 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪋㪏
㪋㪏
㪌㪋
㪌㪋
㪌㪋
㪌㪍
㪌㪋
㪌㪋
㪌㪍
㪌㪍
㪌㪍
㪌㪋
㪌㪍
㪌㪋
㪌㪋
㪏㪇
㪍㪏
㪌㪋
㪌㪍
㪌㪍
㪌㪊
㪌㪋
㪌㪍
㪌㪍
㪌㪋
㪌㪋
㪋㪏
㪝 㪞 㪟 㪥㪝㪈 㪥㪝㪉 㪘㪾㪄 㪥㪦㪩㫊
㪝㪃㩷㪤
㪍㩷㪤㪆㪪㪤㩷㪂㩷㪏㪪㪫㩷㪂㩷㪊㪋㪘 㪍㩷㪤㪆㪪㪤㩷㪂㩷㪋㪉㩷㪪㪫㪆㪘
㪋㪏 㪋㪏
㪝
㪏㩷㪤㪆㪪㪤㩷㪂㩷㪋㪇㩷㪪㪫㪆㪘
㪋㪏
㪤
㪍㩷㪤㪆㪪㪤㩷㪂㩷㪋㪉㩷㪪㪫㪆㪘
㪋㪏 㪍㩷㪤㪆㪪㪤㩷㪂㩷㪋㪉㩷㪪㪫㪆㪘
㪉㪤㩷㪂㩷㪍㪪㪤㩷㪂㪈㪋㪪㪫㩷㪂㩷㪉㪍㪘 㪍㩷㪤㪆㪪㪤㩷㪂㩷㪋㪉㩷㪪㪫㪆㪘
㪋㪏
㪏㩷㪤㪆㪪㪤㩷㪂㩷㪋㪇㩷㪪㪫㪆㪘
㪋㪏 㪋㪏
㪏㩷㪤㪆㪪㪤㩷㪂㩷㪋㪇㩷㪪㪫㪆㪘
㪋㪏
㪤
㪝㪃㩷㪤
㪏㪪㪤㩷㪂㩷㪋㪇㩷㪪㪫㪆㪘 㪍㩷㪤㪆㪪㪤㩷㪂㩷㪋㪉㩷㪪㪫㪆㪘
㪋㪏
㪋㪏
㪋㪏
㪍㪪㪤㩷㪂㩷㪉㪏㪪㪫㩷㪂㩷㪈㪋㪘
㪋㪏 㪍㩷㪤㪆㪪㪤㩷㪂㩷㪈㪋㪪㪫㩷㪂㩷㪉㪏㪘㩷㩷
㪉㪏㩷㪤㪆㪪㪤㩷㪂㩷㪉㪋㩷㪪㪫㪆㪘
㪉㪇㪪㪤㩷㪂㩷㪈㪉㪪㪫㩷㪂㩷㪈㪍㪘
㪍㩷㪤㪆㪪㪤㩷㪂㩷㪈㪋㪪㪫㩷㪂㩷㪉㪏㪘㩷
㪌㪉
㪋㪏
㪋㪏
㪝㪃㩷㪤 㪝㪃㩷㪤
㪋㪏 㪋㪏
㪝
㪏㪪㪤㩷㪂㩷㪋㪇㩷㪪㪫㪆㪘
㪍㩷㪤㪆㪪㪤㩷㪂㩷㪋㪈㩷㪪㪫㪆㪘 㪏㪪㪤㩷㪂㩷㪋㪇㩷㪪㪫㪆㪘
㪋㪎 㪋㪏
㪏㩷㪤㪆㪪㪤㩷㪂㩷㪋㪇㩷㪪㪫㪆㪘 㪍㩷㪤㪆㪪㪤㩷㪂㩷㪋㪉㩷㪪㪫㪆㪘
㪋㪏 㪋㪏
㪝㪃㩷㪤
㪝㪃㩷㪤
㪝㪃㩷㪤
㪍㩷㪤㪆㪪㪤㩷㪂㩷㪈㪋㪪㪫㩷㪂㩷㪉㪏㪘㩷
㪋㪏
㪤
㪍㩷㪤㪆㪪㪤㩷㪂㩷㪈㪋㪪㪫㩷㪂㩷㪉㪏㪘㩷
㪋㪏
㪋㪏㪘
㪋㪏
㪝㪃㩷㪤
㪜 㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪝㪃㩷㪤
㫊㫇㪅
㪛 㪉㫅
㪋㪏
㪚 㪪㪼㫏
㪝㪃㩷㪤
㪘㪼㫈㫌㫀㪻㪼㫅㫊
㫀㫊㫋㫃㪸㫅㪸㩷㪽㫌㫊㪺㪸 㫀㫊㫋㫃㪸㫅㪸㩷㫀㫊㫋㫃㪸㫅㪸
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㫋㪼㫄㪼㫅㫊㫀㫊 㪹㪼㪸㫅㫀 㪹㫀㫄㪸㪺㫌㫃㪸㫋㫌㫄 㪻㫀㫄㪼㫉㫌㫊 㪻㫆㫍㫀㫀 㪽㫉㫀㪼㪻㫉㫀㪺㪿㫊㫋㪸㫃㫀㫀 㪽㫉㫀㪼㪻㫉㫀㪺㪿㫊㫋㪸㫃㫀㫀 㫀㫊㫋㫃㪸㫅㫌㫄㩷㪽㫌㫊㪺㪸 㫀㫊㫋㫃㪸㫅㫌㫄㩷㫀㫊㫋㫃㪸㫅㫌㫄 㫆㪺㫋㫆㪽㪸㫊㪺㫀㪸㫋㫌㫄 㫇㪸㫉㪸㫅㪸㪼㫅㫊㪼 㫇㫆㫉㫋㪸㫃㪼㪾㫉㪼㫅㫊㫀㫊 㫊㪸㫃㫍㫀㫅㫀 㫋㪼㫋㫉㪸㪺㪸㫅㫋㪿㫌㫄 㫋㫉㫀㫄㪸㪺㫌㫃㪸㫋㫌㫄 㫋㫉㫀㫄㪸㪺㫌㫃㪸㫋㫌㫄
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㪹㫆㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷
㪫㪸㪹㫃㪼㩷㪍㪅㪊㪎㩷㩷㪦㫉㪻㪼㫉㩷㪧㪜㪩㪚㪠㪝㪦㪩㪤㪜㪪㪅㩷㪧㪸㫉㫋㩷㪉㩷㪣㪸㪹㫉㫆㫀㪻㪼㫀㩷㪸㫅㪻㩷㪱㫆㪸㫉㪺㫆㫀㪻㪼㫀㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀㩷 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀㩷
180
㪚㫉㪼㫅㫀㪺㫀㪺㪿㫃㪸 㪚㫉㪼㫅㫀㪺㫀㪺㪿㫃㪸 㪚㫉㪼㫅㫀㪺㫀㪺㪿㫃㪸 㪚㫉㪼㫅㫀㪺㫀㪺㪿㫃㪸 㪚㫉㪼㫅㫀㪺㫀㪺㪿㫃㪸 㪚㫉㪼㫅㫀㪺㫀㪺㪿㫃㪸 㪛㫀㪺㫉㫆㫊㫊㫌㫊 㪛㫀㪺㫉㫆㫊㫊㫌㫊 㪞㪼㫆㫇㪿㪸㪾㫌㫊 㪞㪼㫆㫇㪿㪸㪾㫌㫊 㪞㪼㫆㫇㪿㪸㪾㫌㫊 㪞㪼㫆㫇㪿㪸㪾㫌㫊 㪞㪼㫆㫇㪿㪸㪾㫌㫊 㪞㪼㫆㫇㪿㪸㪾㫌㫊 㪞㫐㫄㫅㫆㪾㪼㫆㫇㪿㪸㪾㫌㫊 㪞㫐㫄㫅㫆㪾㪼㫆㫇㪿㪸㪾㫌㫊 㪞㫐㫄㫅㫆㪾㪼㫆㫇㪿㪸㪾㫌㫊 㪞㫐㫄㫅㫆㪾㪼㫆㫇㪿㪸㪾㫌㫊 㪞㫐㫄㫅㫆㪾㪼㫆㫇㪿㪸㪾㫌㫊 㪞㫐㫄㫅㫆㪾㪼㫆㫇㪿㪸㪾㫌㫊 㪞㫐㫄㫅㫆㪾㪼㫆㫇㪿㪸㪾㫌㫊 㪟㪼㫉㫀㪺㪿㫋㪿㫐㫊 㪟㪼㫉㫀㪺㪿㫋㪿㫐㫊 㪟㪼㫉㫆㫊 㪟㪼㫉㫆㫋㫀㫃㪸㫇㫀㪸 㪟㫐㫇㫊㪼㫃㪼㪺㪸㫉㪸 㪢㫉㫆㪹㫀㪸 㪣㪸㪼㫋㪸㪺㪸㫉㪸 㪣㪸㪼㫋㪸㪺㪸㫉㪸 㪤㪼㫊㫆㫅㪸㫌㫋㪸 㪥㪸㫅㫅㪸㪺㪸㫉㪸 㪥㪼㪼㫋㫉㫆㫇㫃㫌㫊 㪧㪸㫇㫀㫃㫀㫆㪺㪿㫉㫆㫄㫀㫊 㪧㪸㫉㪸㪺㪿㫉㫆㫄㫀㫊 㪧㪸㫉㪸㪺㪿㫉㫆㫄㫀㫊 㪧㫋㪼㫉㫆㫇㪿㫐㫃㫃㫌㫄 㪋㪏
㪋㪏
㪝
㪋㩷㪤㪆㪪㪤㩷㪂㩷㪋㪋㩷㪪㪫㪆㪘 㪋㩷㪤㪆㪪㪤㩷㪂㩷㪋㪋㩷㪪㪫㪆㪘 㪋㩷㪤㪆㪪㪤㩷㪂㩷㪋㪋㩷㪪㪫㪆㪘 㪍㩷㪤㪆㪪㪤㩷㪂㩷㪈㪋㪪㪫㩷㪂㩷㪉㪏㪘㩷 㪍㩷㪤㪆㪪㪤㩷㪂㩷㪈㪋㪪㪫㩷㪂㩷㪉㪏㪘㩷
㪋㪏 㪋㪏 㪋㪏 㪋㪏 㪋㪏
㫊㫇㪅
㪺㫐㪸㫅㫆㪾㫌㫋㫋㪸㫋㫌㫊 㫃㪸㪹㫉㫀㪻㪼㫅㫊 㫊㪼㫍㪼㫉㫌㫊 㫄㫌㫃㫋㫀㫊㫇㫀㫅㫆㫊㪸 㪺㫆㫉㫐㫇㪿㪸㪼㫅㫆㫀㪻㪼㫊 㫀㫋㪸㫅㫐㫀 㪺㫌㫉㫍㫀㪺㪼㫇㫊 㪺㪽㪅㩷㪻㫆㫉㫊㫀㪾㪼㫉㪸 㪽㪼㫊㫋㫀㫍㫌㫊 㪸㫅㫆㫄㪸㫃㪸 㫅㪼㫄㪸㫋㫆㫇㫌㫊 㫉㪸㫄㫀㫉㪼㫑㫀 㫄㪸㫅㪸㪾㫌㪼㫅㫊㫀㫊 㫄㪸㫅㪸㪾㫌㪼㫅㫊㫀㫊 㫊㪺㪸㫃㪸㫉㪼
㪋㪏 㪋㪏 㪋㪏
㪝㪃㩷㪤 㪝㪃㩷㪤 㪝㪃㩷㪤
㩷㪤㫀㪺㫉㫆㪾㪼㫆㫇㪿㪸㪾㫌㫊 㪚㫀㪺㪿㫃㪸㫊㫆㫄㪸㩷㫄㪸㫅㪸㪾㫌㪼㫅㫊㪼 㪚㫀㪺㪿㫃㪸㫊㫆㫄㪸㩷㫄㪸㫅㪸㪾㫌㪼㫅㫊㪼
㪋㪏
㪝㪃㩷㪤
㪋㪏 㪋㪏
㪝㪃㩷㪤 㪝㪃㩷㪤
㪋㪏
㪋㪏
㪋㪏 㪋㪋
㪝㪃㩷㪤 㪝㪃㩷㪤
㪚㫀㪺㪿㫃㪸㫊㫆㫄㪸㩷㪽㪼㫊㫋㫀㫍㫌㫄
㪋㪌
㪋㩷㪤㪆㪪㪤㩷㪂㩷㪋㪋㩷㪪㪫㪆㪘
㪍㩷㪤㪆㪪㪤㩷㪂㩷㪈㪋㪪㪫㩷㪂㩷㪉㪏㪘㩷
㪏㩷㪤㪆㪪㪤㩷㪂㩷㪋㪇㩷㪪㪫㪆㪘
㪏㩷㪤㪆㪪㪤㩷㪂㩷㪈㪉㪪㪫㩷㪂㩷㪉㪏㪘㩷
㪈㪏㩷㪤㪆㪪㪤㩷㪂㩷㪉㪍㩷㪪㪫㪆㪘
㪏㩷㪤㪆㪪㪤㩷㪂㩷㪋㪇㩷㪪㪫㪆㪘
㪊㪤㩷㪂㩷㪋㪉㪘
㪌㪉
㪌㪋
㪌㪍
㪌㪍
㪍㪉
㪌㪍
㪋㪏
㪍㪏
㩿㪍㪋㪀
㪍㪏
㩿㪎㪍㪀
㪍㪏
㪍㪏
㪍㪏
㪎㪋
㪊㪏
㪌㪋
㪌㪋
㪌㪉
㪌㪋
㪌㪋
㪌㪇
㪌㪉
㪌㪉
㪌㪉
㪌㪉
㪌㪇
㪌㪇
㪌㪉
㪌㪉
㪌㪋
㪌㪍
㩿㪏㪍㪀
㪌㪉
㩿㪍㪋㪀
㪍㩷㪤㪆㪪㪤㩷㪂㩷㪈㪋㪪㪫㩷㪂㩷㪉㪏㪘㩷
㪍㩷㪤㪆㪪㪤㩷㪂㩷㪋㪉㩷㪪㪫㪆㪘
㪋㩷㪤㪆㪪㪤㩷㪂㩷㪋㪋㩷㪪㪫㪆㪘
㪉㩷㪤㪆㪪㪤㩷㪂㩷㪋㪍㩷㪪㪫㪆㪘
㪋㩷㪤㪆㪪㪤㩷㪂㩷㪋㪋㩷㪪㪫㪆㪘
㪋㪪㪤㩷㪂㩷㪋㪋㩷㪪㪫㪆㪘
㪍㪪㪤㩷㪂㩷㪋㪉㩷㪪㪫㪆㪘
㪏㪪㪤㩷㪂㩷㪈㪏㪪㪫㩷㪂㩷㪉㪉㪘
㪌㪇
㪌㪉
㪌㪏
㪌㪍
㪌㪋
㪌㪋
㪌㪋
㪌㪋
㪌㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪝 㪞 㪟 㪥㪝㪈 㪥㪝㪉 㪘㪾㪄 㪥㪦㪩㫊
㪋㪍
㪋㪏
㪋㪏
㪝㪃㩷㪤 㪝㪃㩷㪤
㪋㪏 㪋㪏
㪝 㪝㪃㩷㪤
㪝㪃㩷㪤
㪋㪏
㪝㪃㩷㪤
㪚㫀㪺㪿㫃㪸㫊㫆㫄㪸 㪘㪼㫈㫌㫀㪻㪼㫅㫊 㪘㪼㫈㫌㫀㪻㪼㫅㫊
㪚㫀㪺㪿㫃㪸㫊㫆㫄㪸㩷㪺㫐㪸㫅㫆㪾㫌㫋㫋㪸㫋㫌㫄 㪚㫀㪺㪿㫃㪸㫊㫆㫄㪸 㪚㫀㪺㪿㫃㪸㫊㫆㫄㪸㩷㫊㪼㫍㪼㫉㫌㫄
㪉㩷㪤㪆㪪㪤㩷㪂㩷㪋㪍㩷㪪㪫㪆㪘 㪋㩷㪤㪆㪪㪤㩷㪂㩷㪋㪋㩷㪪㪫㪆㪘
㪋㪏
㪉㩷㪤㪆㪪㪤㩷㪂㩷㪋㪍㩷㪪㪫㪆㪘
㪋㪏
㪝㪃㩷㪤
㪉㩷㪤㪆㪪㪤㩷㪂㩷㪋㪍㩷㪪㪫㪆㪘
㪋㪏 㪋㪏
㪝㪃㩷㪤
㪋㩷㪤㪆㪪㪤㩷㪂㩷㪋㪋㩷㪪㪫㪆㪘
㪋㪏
㪉㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪋㪇㩷㪪㪫㪆㪘 㪈㪉㩷㪤㪆㪪㪤㩷㪂㩷㪊㪋㩷㪪㪫㪆㪘
㪝㪃㩷㪤
㪋㪍
㪋㪍
㪤
㫊㫇㪅
㪍㩷㪤㪆㪪㪤㩷㪂㩷㪋㪉㩷㪪㪫㪆㪘 㪍㩷㪤㪆㪪㪤㩷㪂㩷㪋㪉㩷㪪㪫㪆㪘
㪽㫀㫃㪸㫄㪼㫅㫋㫆㫊㫌㫊 㫄㪸㪺㫌㫃㪸㫋㫌㫊 㪹㫉㪸㫊㫀㫃㫀㪼㫅㫊㫀㫊 㪹㫉㪸㫊㫀㫃㫀㪼㫅㫊㫀㫊 㪹㫉㪸㫊㫀㫃㫀㪼㫅㫊㫀㫊 㪹㫉㪸㫊㫀㫃㫀㪼㫅㫊㫀㫊 㪹㫉㪸㫊㫀㫃㫀㪼㫅㫊㫀㫊 㫊㫌㫉㫀㫅㪸㫄㪼㫅㫊㫀㫊 㪹㪸㫃㫑㪸㫅㫀㫀 㪹㪸㫃㫑㪸㫅㫀㫀 㪾㫐㫄㫅㫆㪾㪼㫅㫐㫊 㫃㪸㪹㫀㪸㫋㫌㫊 㫃㪸㪺㫌㫊㫋㫉㫀㫊 㫉㪿㪸㪹㪻㫆㫋㫌㫊
㪚㫉㪼㫅㫀㪺㪸㫉㪸㩷㪽㫀㫃㪸㫄㪼㫅㫋㫆㫊㪸 㪚㫉㪼㫅㫀㪺㪸㫉㪸
㪋㪏 㪋㪏
㪤
㪍㩷㪤㪆㪪㪤㩷㪂㩷㪋㪉㩷㪪㪫㪆㪘
㪍㩷㪤㪆㪪㪤㩷㪂㩷㪋㪉㩷㪪㪫㪆㪘
㪝㪃㩷㪤
㪋㪤㩷㪂㩷㪋㪋㪘
㪋㪏
㪜 㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪋㪏
㪙㪸㫋㫉㪸㪺㪿㫆㫇㫊㩷㫊㪼㫄㫀㪽㪸㫊㪺㫀㪸㫋㫌㫊
㪛 㪉㫅
㪤
㪚 㪪㪼㫏
㫊㪼㫏㪸㫋㫀㫃㫀㫊
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪝㪃㩷㪤
㫊㪸㫏㪸㫋㫀㫃㫀㫊 㫊㪼㫄㫀㪽㪸㫊㪺㫀㪸㫋㪸 㫊㪼㫄㫀㪽㪸㫊㪺㫀㪸㫋㪸 㫊㫋㫉㫀㪾㪸㫋㪸 㫍㫀㫋㫋㪸㫋㪸
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㪹㫆㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷
㪫㪸㪹㫃㪼㩷㪍㪅㪊㪎㩷㩷㪦㫉㪻㪼㫉㩷㪧㪜㪩㪚㪠㪝㪦㪩㪤㪜㪪㪅㩷㪧㪸㫉㫋㩷㪉㩷㪣㪸㪹㫉㫆㫀㪻㪼㫀㩷㪸㫅㪻㩷㪱㫆㪸㫉㪺㫆㫀㪻㪼㫀㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀㩷 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀㩷
㩿㪉㪅㪇㩷㪝㪚㪤㪃㩷㪉㪅㪋㩷㪙㪝㪘㪀
㪉㪅㪉㩷㪙㪝㪘
㪠 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪘㪤㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪩㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪩㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪩㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㩿㪙㫉㪸㫑㫀㫃㪀
㩿㪙㫉㪸㫑㫀㫃㪀
㪙㫉㪸㫑㫀㫃㪃㩷㪭㪼㫅㪼㫑㫌㪼㫃㪸
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪚㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪪㪀
㩿㪘㫄㪸㫑㫆㫅㩷㪩㪅㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪪㪀
㪘㫉㪾㪼㫅㫋㫀㫅㪸
㪪㪅㩷㪘㫄㪼㫉㫀㪺㪸㩷㩿㪘㫋㫃㪸㫅㫋㫀㪺㩷㫊㫀㪻㪼㪀㩷
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪇㪄㪉㩷㪙
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㩿㪪㪅㩷㪘㫄㪼㫉㫀㪺㪸㪀
㩿㪚㫆㫊㫋㪸㩷㪩㫀㪺㪸㪀
㪚㫆㫊㫋㪸㩷㪩㫀㪺㪸
㩿㪪㪅㩷㪘㫄㪼㫉㫀㪺㪸㪀
㪚㫆㫊㫋㪸㩷㪩㫀㪺㪸
㪪㪅㩷㪘㫄㪼㫉㫀㪺㪸
㩿㪪㪅㩷㪘㫄㪼㫉㫀㪺㪸㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪩㪀
㩿㪘㫄㪸㫑㫆㫅㩷㪩㪅㪀
㩿㪪㫌㫉㫀㫅㪸㫄㪼㪀
㩿㪘㫄㪸㫑㫆㫅㪼㫊㪀
㪚㪅㩷㪘㫄㪼㫉㫀㪺㪸
㪙㫉㪸㫑㫀㫃㪃㩷㪭㪼㫅㪼㫑㫌㪼㫃㪸
㪤㪼㫏㫀㪺㫆㩷㩿㪘㫋㫃㪸㫅㫋㫀㪺㩷㫊㫀㪻㪼㪀
㪬㪪㪘㩷㩿㪫㪯㪀㪃㩷㪤㪼㫏㫀㪺㫆
㪘㫉㪾㪼㫅㫋㫀㫅㪸
㪙㫉㪸㫑㫀㫃
㪙㫉㪸㫑㫀㫃
㪙㫉㪸㫑㫀㫃
㪙㫉㪸㫑㫀㫃
㪘㫉㪾㪼㫅㫋㫀㫅㪸
㪇㪄㪋㩷㪙㪃㩷㪘㪚㪥㪔㪋㪏 㪙㫉㪸㫑㫀㫃㩷㩿㪤㪪㪀
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪫㪄㪋㪈㪃㩷㪭㪄㪏㪍㪃㩷㪟㪄㪈㪊
㪫㪄㪋㪈
㪪 㪄㪍
㪪 㪄㪈㪏㪋
㪫㪄㪋㪈
㪫㪄㪋㪈
㪫㪄㪋㪈
㪚㪄㪐㪏
㪪 㪄㪈㪏㪋
㪪 㪄㪈㪏㪋
㪫㪄㪋㪈
㪫㪄㪋㪈
㪫㪄㪋㪈
㪫㪄㪋㪈
㪫㪄㪋㪈
㪝㪄㪉㪇㪃㩷㪩㪄㪈㪇㪎
㪧㪄 㪏 㪎
㪧㪄 㪏 㪎
㪧㪄 㪏 㪎
㪧㪄 㪏 㪎
㪝㪄㪉㪇㪃㩷㪩㪄㪈㪇㪎
㪝㪄㪐㪃㩷㪝㪄㪈㪇
㪫㪄㪋㪈㪃㩷㪝㪄㪐㪃㩷㪝㪄㪈㪇
㪣㪄㪏㪐
㪭㪄㪏㪎
㪤㪄㪋㪈
㪝㪄㪐㪃㩷㪝㪄㪈㪇
㪫㪄㪋㪈
㪪 㪄㪈㪏㪋
㪫㪄㪋㪈
㪣㪄㪎㪈
㪝㪄㪐㪃㩷㪝㪄㪈㪇
㪫㪄㪋㪈
㪝㪄㪐㪃㩷㪝㪄㪈㪇
㪝 㪄㪉㪇
㪦㪄㪍㪍㪃㩷㪟㪄㪈㪊
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
181
㪘㫅㫆㫄㪸㫃㫆㪺㪿㫉㫆㫄㫀㫊 㪘㫊㫋㪸㫋㫆㫋㫀㫃㪸㫇㫀㪸 㪘㫌㫃㫆㫅㫆㪺㪸㫉㪸 㪘㫌㫃㫆㫅㫆㪺㪸㫉㪸 㪘㫌㫃㫆㫅㫆㪺㪸㫉㪸 㪘㫌㫃㫆㫅㫆㪺㪸㫉㪸 㪘㫌㫃㫆㫅㫆㪺㪸㫉㪸 㪘㫌㫃㫆㫅㫆㪺㪸㫉㪸 㪚㪿㫉㫆㫄㫀㪻㫆㫋㫀㫃㪸㫇㫀㪸 㪚㪿㫉㫆㫄㫀㪻㫆㫋㫀㫃㪸㫇㫀㪸 㪚㪿㫉㫆㫄㫀㪻㫆㫋㫀㫃㪸㫇㫀㪸 㪟㪸㫇㫃㫆㪺㪿㫉㫆㫄㫀㫊 㪟㪸㫇㫃㫆㪺㪿㫉㫆㫄㫀㫊 㪟㪼㫄㫀㪺㪿㫉㫆㫄㫀㫊 㪟㪼㫄㫀㪿㪸㫇㫃㫆㪺㪿㫉㫆㫄㫀㫊 㪟㪼㫄㫀㪿㪸㫇㫃㫆㪺㪿㫉㫆㫄㫀㫊
㩷㩷㪘㪽㫉㫀㪺㪸㫅㩷㪚㫀㪺㪿㫃㫀㪻㪸㪼
㪜㫋㫉㫆㫇㫃㫌㫊 㪜㫋㫉㫆㫇㫃㫌㫊 㪜㫋㫉㫆㫇㫃㫌㫊 㪜㫋㫉㫆㫇㫃㫌㫊
㩷㩷㪘㫊㫀㪸㫅㩷㪚㫀㪺㪿㫃㫀㪻㪸㪼㩷
㪧㫋㪼㫉㫆㫇㪿㫐㫃㫃㫌㫄 㪪㪸㫋㪸㫅㫆㫇㪼㫉㪺㪸 㪪㪸㫋㪸㫅㫆㫇㪼㫉㪺㪸 㪪㪸㫋㪸㫅㫆㫇㪼㫉㪺㪸 㪪㫐㫄㫇㪿㫐㫊㫆㪻㫆㫅 㪪㫐㫄㫇㪿㫐㫊㫆㪻㫆㫅 㪪㫐㫄㫇㪿㫐㫊㫆㪻㫆㫅 㪪㫐㫄㫇㪿㫐㫊㫆㪻㫆㫅 㪪㫐㫄㫇㪿㫐㫊㫆㪻㫆㫅 㪪㫐㫄㫇㪿㫐㫊㫆㪻㫆㫅 㪪㫐㫄㫇㪿㫐㫊㫆㪻㫆㫅 㪫㪿㫆㫉㫀㪺㪿㫋㪿㫐㫊 㪫㪿㫆㫉㫀㪺㪿㫋㪿㫐㫊 㪬㪸㫉㫌 㪍㪇
㪤
㪋㪏 㪋㪏
㪝㪃㩷㪤 㪝㪃㩷㪤
㪋㪤㩷㪂㩷㪏㪪㪤㩷㪂㩷㪊㪉㪘 㪋㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪊㪋㪘 㪍㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪊㪉㪘
㪋㪋 㪋㪋 㪋㪋 㪋㪋 㪋㪏
㫊㫇㪅
㪽㫀㫅㫃㪼㫐㫀 㪹㪸㫋㪼㫊㫀㫀 㪹㪸㫋㪼㫊㫀㫀 㪽㫃㪸㫍㫀㫀㫁㫆㫊㪼㫇㪿㫀 㫆㪹㫃㫀㫈㫌㫀㪻㪼㫅㫊 㪹㫀㫄㪸㪺㫌㫃㪸㫋㫌㫊 㫂㫀㫉㫂㫀 㫄㫌㫃㫋㫀㪺㫆㫃㫆㫉
㪌㪋 㩿㪍㪋㪀 㩿㪎㪍㪀 㩿㪎㪏㪀
㪋㪋
㪌㪍
㪋㪋
㪈㪉㩷㪤㪆㪪㪤㩷㪂㩷㪊㪉㩷㪪㪫㪆㪘
㪋㪋
㪋㪋
㪝㪃㩷㪤
㩿㪏㪇㪀
㪋㪋
㩿㪏㪇㪀
㩿㪍㪏㪖㪀
㩿㪌㪏㪀
㪋㪏
㪍㪏
㪍㪇
㪋㪉 㪈㪇㩷㪤㪆㪪㪤㩷㪂㩷㪊㪋㩷㪪㪫㪆㪘
㪌㪍
㪌㪍
㪌㪋
㪌㪍
㪌㪋
㪌㪏
㪌㪍
㪋㪏
㪍㪋
㪌㪋
㪌㪋
㪌㪋
㪈㪈㪉
㪈㪈㪋
㪈㪈㪇
㪈㪈㪏
㪌㪋
㪌㪉
㪌㪋
㪍㪇
㪉㪄㪌
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪝 㪞 㪟 㪥㪝㪈 㪥㪝㪉 㪘㪾㪄 㪥㪦㪩㫊
㪋㪋 㪝
㪧㪼㫃㫄㪸㫋㫆㪺㪿㫉㫆㫄㫀㫊㩷 㩿㫊㫆㫌㫋㪿㪼㫉㫅㩷㪽㫆㫉㫄㪀 㪧㪼㫃㫄㪸㫋㫆㪺㪿㫉㫆㫄㫀㫊 㩷㩿㫅㫆㫉㫋㪿㪼㫉㫅㩷㪽㫆㫉㫄㪀
㪋㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪊㪋㪘
㪋㪋
㪍㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪊㪉㪘
㪍㪤㩷㪂㩷㪏㪪㪤㩷㪂㩷㪊㪇㪘
㪋㪋
㪋㪏㪘
㪈㪏㩷㪤㪆㪪㪤㩷㪂㩷㪉㪏㩷㪪㪫㪆㪘
㪏㩷㪤㪆㪪㪤㩷㪂㩷㪊㪏㩷㪪㪫㪆㪘
㪍㩷㪤㪆㪪㪤㩷㪂㩷㪈㪋㪪㪫㩷㪂㩷㪉㪏㪘㩷
㪍㩷㪤㪆㪪㪤㩷㪂㩷㪋㪉㩷㪪㪫㪆㪘
㪌㪉㩷㪤㪆㪪㪤㩷㪂㩷㪋㩷㪪㪫㪆㪘㩷㪂㩷㪋㩷㪤㪚
㪉㪍㪤㩷㪂㩷㪉㪍㪪㪤㩷㪂㩷㪏㩷㪪㪫㪆㪘
㪌㪋㩷㪤㪆㪪㪤㩷㪂㩷㪍㩷㪪㪫㪆㪘
㪌㪇㩷㪤㪆㪪㪤㩷㪂㩷㪈㪇㩷㪪㪫㪆㪘
㪌㪇㩷㪤㪆㪪㪤㩷㪂㩷㪍㩷㪪㪫㪆㪘㩷㪂㩷㪋㩷㪤㪚
㪋㪏㩷㪤㪆㪪㪤㩷㪂㩷㪏㩷㪪㪫㪆㪘㩷㪂㩷㪋㩷㪤㪚
㪈㪍㩷㪤㪆㪪㪤㩷㪂㩷㪉㪋㩷㪪㪫㪆㪘
㪋㪏
㪋㪍
㪝㪃㩷㪤
㪋㪍
㪝㪃㩷㪤
㪋㪍
㪝㪃㩷㪤 㪝㪃㩷㪤
㪋㪏
㪝㪃㩷㪤
㪍㪇 㪋㪏
㪝㪃㩷㪤
㪍㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪊㪍㪘 㪌㪏㩷㪤㪆㪪㪤㩷㪂㩷㪉㩷㪪㪫㪆㪘
㪋㪇
㩷㪧㪼㫃㫄㪸㫋㫆㪺㪿㫉㫆㫄㫀㫊
㪚㫀㪺㪿㫃㪸㫊㫆㫄㪸 㪚㫀㪺㪿㫃㪸㫊㫆㫄㪸
㪝㪃㩷㪤
㪍㪇
㪝㪃㩷㪤 㪍㪇
㪍㪇
㪤
㪸㪼㫈㫌㫀㪽㪸㫊㪺㫀㪸㫋㪸㩷㪸㫏㪼㫃㫉㫆㪻㫀
㪍㪇
㪝㪃㩷㪤
㪺㫐㫋㫆㫋㫐㫇㪼㩷㪈 㪺㫐㫋㫆㫋㫐㫇㪼㩷㪉 㪺㫐㫋㫆㫋㫐㫇㪼㩷㪈 㪺㫐㫋㫆㫋㫐㫇㪼㩷㪉
㪋㪏 㪍㪇
㪝㪃㩷㪤 㪝㪃㩷㪤
㪋㩷㪤㪆㪪㪤㩷㪂㩷㪋㪋㩷㪪㪫㪆㪘
㪍㪪㪤㩷㪂㩷㪋㪉㩷㪪㪫㪆㪘
㪋㪏
㪈㪉㩷㪤㪆㪪㪤㩷㪂㩷㪊㪍㩷㪪㪫㪆㪘
㪋㪏
㪜 㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪋㪏
㪛 㪉㫅
㪝㪃㩷㪤
㪝㪃㩷㪤
㪚 㪪㪼㫏
㪸㪼㫈㫌㫀㪽㪸㫊㪺㫀㪸㫋㪸
㩷㪞㪼㫆㫇㪿㪸㪾㫌㫊㩷
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㫋㪿㫆㫄㪸㫊㫀 㪹㫌㫉㫋㫆㫅㫀 㪹㪸㪼㫅㫊㪺㪿㫀 㪿㫌㪼㫊㪼㫉㫀 㫂㫆㫉㫅㪼㫃㫀㪸㪼 㫊㫋㫌㪸㫉㫋㪾㫉㪸㫅㫋㫀 㫊㫋㫌㪸㫉㫋㪾㫉㪸㫅㫋㫀
㫄㪸㪺㫌㫃㪸㫋㫌㫊 㫄㪸㪺㫌㫃㪸㫋㫌㫊 㫊㫌㫉㪸㫋㪼㫅㫊㫀㫊 㫊㫌㫉㪸㫋㪼㫅㫊㫀㫊
㫊㪺㪸㫃㪸㫉㪼 㫁㫌㫉㫌㫇㪸㫉㫀 㫁㫌㫉㫌㫇㪸㫉㫀 㫇㪸㫇㪸㫋㪼㫉㫉㪸 㪸㪼㫈㫌㫀㪽㪸㫊㪺㫀㪸㫋㫌㫊 㪸㪼㫈㫌㫀㪽㪸㫊㪺㫀㪸㫋㫌㫊 㪸㪼㫈㫌㫀㪽㪸㫊㪺㫀㪸㫋㫌㫊 㪻㫀㫊㪺㫌㫊 㪻㫀㫊㪺㫌㫊 㪿㪸㫉㪸㫃㪻㫀 㪿㪸㫉㪸㫃㪻㫀 㪼㫃㫃㫀㫆㫋㫀 㫄㪼㪼㫂㫀 㪸㫄㫇㪿㫀㪸㪺㪸㫅㫋㪿㫆㫀㪻㪼㫊
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㪹㫆㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷
㪫㪸㪹㫃㪼㩷㪍㪅㪊㪎㩷㩷㪦㫉㪻㪼㫉㩷㪧㪜㪩㪚㪠㪝㪦㪩㪤㪜㪪㪅㩷㪧㪸㫉㫋㩷㪉㩷㪣㪸㪹㫉㫆㫀㪻㪼㫀㩷㪸㫅㪻㩷㪱㫆㪸㫉㪺㫆㫀㪻㪼㫀㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀㩷 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀㩷
㪉㪅㪉㩷㪝㪛
㪈㪅㪐㩷㪝㪚㪤
㪉㪅㪏㩷㪙㪝㪘
㪉㪅㪌㩷㪝㪚㪤
㩿㪉㪅㪌㪁㩷㪝㪚㪤㪃㩷㪉㪅㪋㩷㪝㪛㪀
㩿㪉㪅㪋㩷㪙㪝㪘㪀
㪠 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪇㪄㪉㩷㪙
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏㪖
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪍㪉
㪘㪚㪥㪔㪍㪉
㪘㪚㪥㪔㪍㪉
㪘㪚㪥㪔㪍㪉
㪘㪚㪥㪔㪍㪉
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪇㪄㪊㩷㪙㪃㩷㪯㪰
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㩿㪘㪽㫉㫀㪺㪸㪀
㩿㪘㪽㫉㫀㪺㪸㪀
㩿㪘㪽㫉㫀㪺㪸㪀
㩿㪜㪅㩷㪘㪽㫉㫀㪺㪸㪀
㪪㪼㪸㩷㫆㪽㩷㪞㪸㫃㫀㫃㪼㪼
㪜㪅㩷㪚㪸㫄㪼㫉㫆㫆㫅
㪜㪅㩷㪚㪸㫄㪼㫉㫆㫆㫅
㩿㪘㪽㫉㫀㪺㪸㪀
㪤㪸㫃㪸㫎㫀
㪤㪸㫃㪸㫎㫀
㪤㪸㫃㪸㫎㫀
㪤㪸㫃㪸㫎㫀
㪤㪸㫃㪸㫎㫀
㪤㪸㫃㪸㫎㫀
㪘㪽㫉㫀㪺㪸㩷㩿㪣㪸㫂㪼㩷㪫㪸㫅㪾㪸㫅㫐㫀㫂㪸㪀
㩿㪘㪽㫉㫀㪺㪸㪀
㪠㫅㪻㫀㪸㩷㩿㪧㫆㫉㫋㫆㫅㫆㫍㫆㪀
㪠㫅㪻㫀㪸㩷㩿㪦㫉㫀㫊㫊㪸㪃㩷㪮㪙㪀
㪠㫅㪻㫀㪸㩷㩿㪧㫆㫉㫋㫆㫅㫆㫍㫆㪀
㩿㪘㫊㫀㪸㪀
㩿㪘㫄㪸㫑㫆㫅㩷㪩㪅㪀
㩿㪪㪅㩷㪘㫄㪼㫉㫀㪺㪸㪀
㪤㪼㫏㫀㪺㫆㩷㩿㪭㪼㫉㪸㪺㫉㫌㫑㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪘㫄㪸㫑㫆㫅㪀
㩿㪘㫄㪸㫑㫆㫅㩷㪩㪅㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪘㫄㪸㫑㫆㫅㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪘㫄㪸㫑㫆㫅㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪘㫄㪸㫑㫆㫅㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪘㫄㪸㫑㫆㫅㪀
㩿㪘㫄㪸㫑㫆㫅㩷㪩㪅㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪩㪅㪀
㩿㪪㪅㩷㪘㫄㪼㫉㫀㪺㪸㪀
㪪㪅㩷㪘㫄㪼㫉㫀㪺㪸
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪘㪀
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪪 㪄㪈㪏㪋
㪪 㪄㪈㪏㪋
㪪 㪄㪈㪏㪋
㪧㪄 㪐 㪌
㪢㪄㪐㪏
㪪 㪄㪉㪌
㪪 㪄㪉㪌
㪪 㪄㪈㪏㪋
㪝 㪄㪍㪏
㪝 㪄㪍㪏
㪝 㪄㪍㪏
㪝 㪄㪍㪏
㪝 㪄㪍㪏
㪝 㪄㪍㪏
㪫㪄㪊㪐㪃㩷㪫㪄㪋㪉㪃㩷㪞㪄㪏㪌
㪪 㪄㪉㪌
㪥㪄㪈㪊
㪩㪄㪌㪎㪃㩷㪢㪄㪋㪍
㪥㪄㪈㪊
㪫㪄㪊㪐
㪫㪄㪋㪈
㪫㪄㪋㪈㪃㩷㪟㪄㪈㪊
㪬 㪄㪋㪏
㪤㪄㪈㪋㪍
㪫㪄㪉㪋
㪤㪄㪈㪋㪍
㪤㪄㪈㪋㪍
㪤㪄㪈㪋㪍
㪤㪄㪈㪋㪍
㪫㪄㪋㪈㪃㩷㪦㪄㪋㪃㩷㪦㪄㪋㪏
㪤㪄㪋㪈
㪫㪄㪋㪈㪃㩷㪟㪄㪈㪊
㪤㪄㪋㪈㪃㩷㪦㪄㪏㪍
㪥 㪄㪉
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
182
㪟㪼㫋㪼㫉㫆㪺㪿㫉㫆㫄㫀㫊 㪡㫌㫃㫀㪻㫆㪺㪿㫉㫆㫄㫀㫊 㪣㪸㪹㪼㫆㫋㫉㫆㫇㪿㪼㫌㫊 㪣㪸㫄㫇㫉㫆㫃㫆㪾㫌㫊 㪤㪼㫃㪸㫅㫆㪺㪿㫉㫆㫄㫀㫊 㪤㪼㫃㪸㫅㫆㪺㪿㫉㫆㫄㫀㫊 㪤㪼㫋㫉㫀㪸㪺㫃㫀㫄㪸 㪥㪼㫆㫃㪸㫄㫇㫉㫆㫃㫆㪾㫌㫊 㪦㫉㪼㫆㪺㪿㫉㫆㫄㫀㫊 㪦㫉㪼㫆㪺㪿㫉㫆㫄㫀㫊 㪦㫉㪼㫆㪺㪿㫉㫆㫄㫀㫊 㪦㫉㪼㫆㪺㪿㫉㫆㫄㫀㫊 㪦㫉㪼㫆㪺㪿㫉㫆㫄㫀㫊 㪦㫉㪼㫆㪺㪿㫉㫆㫄㫀㫊 㪦㫉㪼㫆㪺㪿㫉㫆㫄㫀㫊 㪦㫉㪼㫆㪺㪿㫉㫆㫄㫀㫊 㪦㫉㪼㫆㪺㪿㫉㫆㫄㫀㫊 㪦㫉㪼㫆㪺㪿㫉㫆㫄㫀㫊 㪦㫉㪼㫆㪺㪿㫉㫆㫄㫀㫊 㪦㫉㪼㫆㪺㪿㫉㫆㫄㫀㫊 㪦㫉㪼㫆㪺㪿㫉㫆㫄㫀㫊 㪦㫉㪼㫆㪺㪿㫉㫆㫄㫀㫊 㪦㫉㪼㫆㪺㪿㫉㫆㫄㫀㫊 㪦㫉㪼㫆㪺㪿㫉㫆㫄㫀㫊 㪦㫉㪼㫆㪺㪿㫉㫆㫄㫀㫊 㪦㫉㪼㫆㪺㪿㫉㫆㫄㫀㫊 㪦㫉㪼㫆㪺㪿㫉㫆㫄㫀㫊 㪦㫉㪼㫆㪺㪿㫉㫆㫄㫀㫊 㪦㫉㪼㫆㪺㪿㫉㫆㫄㫀㫊 㪦㫉㪼㫆㪺㪿㫉㫆㫄㫀㫊 㪧㪼㫃㫍㫀㪺㪸㪺㪿㫉㫆㫄㫀㫊 㪧㪼㫃㫍㫀㪺㪸㪺㪿㫉㫆㫄㫀㫊 㪧㪼㫃㫍㫀㪺㪸㪺㪿㫉㫆㫄㫀㫊 㪪㪸㫉㫆㫋㪿㪼㫉㫆㪻㫆㫅 㪪㪸㫉㫆㫋㪿㪼㫉㫆㪻㫆㫅 㪪㪸㫉㫆㫋㪿㪼㫉㫆㪻㫆㫅
㫄㫌㫃㫋㫀㪻㪼㫅㫊 㫆㫉㫅㪸㫋㫌㫊 㪽㫌㪼㫃㫃㪼㪹㫆㫉㫅㫀 㪺㫆㫅㪾㫆㪼㫅㫊㫀㫊 㪸㫌㫉㪸㫋㫌㫊 㪸㫌㫉㪸㫋㫌㫊 㫑㪼㪹㫉㪸 㫊㪸㫍㫆㫉㫐㫀 㪸㫅㪻㪼㫉㫊㫆㫅㫀㫀 㪸㫌㫉㪼㫌㫊 㪸㫌㫉㪼㫌㫊 㪸㫌㫉㪼㫌㫊 㪸㫌㫉㪼㫌㫊 㫂㪸㫉㫆㫅㪾㪸㪼 㫃㪼㫇㫀㪻㫌㫉㫌㫊 㫃㪼㫌㪺㫆㫊㫋㫀㪺㫋㫌㫊 㫄㪸㪺㫉㫆㪺㪿㫀㫉 㫄㪸㪺㫉㫆㪺㪿㫀㫉 㫄㫆㫉㫋㫀㫄㪼㫉㫀 㫄㫆㫊㫊㪸㫄㪹㫀㪺㫌㫊 㫄㫆㫊㫊㪸㫄㪹㫀㪺㫌㫊 㫄㫆㫊㫊㪸㫄㪹㫀㪺㫌㫊 㫄㫆㫊㫊㪸㫄㪹㫀㪺㫌㫊 㫄㫆㫊㫊㪸㫄㪹㫀㪺㫌㫊 㫄㫆㫊㫊㪸㫄㪹㫀㪺㫌㫊 㫅㫀㫃㫆㫋㫀㪺㫌㫊 㫅㫀㫃㫆㫋㫀㪺㫌㫊 㫅㫀㫃㫆㫋㫀㪺㫌㫊 㫊㫇㫀㫃㫌㫉㫌㫊 㫌㫉㫆㫃㪼㫇㫀㫊㩷㪿㫆㫉㫅㫆㫉㫌㫄 㫇㫌㫃㪺㪿㪼㫉 㫊㫌㪹㫆㪺㪼㫃㫃㪸㫋㫌㫊 㫋㪸㪼㫅㫀㪸㫋㫌㫊 㪾㪸㫃㫀㫃㪸㪼㫌㫊 㪾㪸㫃㫀㫃㪸㪼㫌㫊 㪾㪸㫃㫀㫃㪸㪼㫌㫊
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㪹㫆㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷
㩷㪫㫀㫃㪸㫇㫀㪸㩷㪾㪸㫃㫀㫃㪸㪼㪸 㩷㪫㫀㫃㪸㫇㫀㪸
㪝㪃㩷㪤
㪝㪃㩷㪤
㪝㪃㩷㪤
㪝㪃㩷㪤 㪤
㪍㪪㪤㩷㪂㩷㪊㪏㪪㪫 㪏㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪊㪋㪘
㪋㪋 㪋㪋
㪍㪪㪤㩷㪂㩷㪊㪏㩷㪪㪫㪆㪘 㪏㪪㪤㩷㪂㩷㪊㪋㪪㪫㩷㪂㩷㪉㪘
㪋㪋 㪋㪋
㪌㪉
㪌㪇 㪏㪍
㩿㪎㪇㪀
㪋㪇 㪋㪋
㩿㪎㪇㪀
㪋㪇
㪌㪋
㪏㪏
㪏㪍
㪏㪏
㪍㪉
㪌㪍
㪏㪍
㪌㪇
㪏㪏
㪍㪉
㪏㪏
㩿㪏㪉㪀
㪌㪇
㪌㪉
㪌㪇
㪍㪉
㪌㪉
㪍㪋
㪋㪋
㪋㪋
㪌㪉
㪌㪇 㪋㪋
㪌㪇
㪍㪉
㪌㪇
㪋㪋
㪍㪪㪤㩷㪂㩷㪊㪏㩷㪪㪫㪆㪘
㪏㪪㪤㩷㪂㩷㪊㪋㪪㪫㩷㪂㩷㪉㪘 㪉㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪉㪍㩷㪪㪫㪆㪘
㪋㪋
㪉㪤㩷㪂㩷㪈㪏㪪㪤㩷㪂㩷㪉㪋㪪㪫
㪋㪋 㪋㪋
㪈㪏㪪㪫㩷㪂㩷㪉㪍㪘
㪈㪉㪪㪫㩷㪂㩷㪊㪉㪘
㪋㪋 㪋㪋
㪏㪪㪤㩷㪂㩷㪊㪋㪪㪫㩷㪂㩷㪉㪘
㪋㪋
㪍㪪㪤㩷㪂㩷㪊㪏㪪㪫
㪋㪋 㪍㪪㪤㩷㪂㩷㪊㪏㩷㪪㪫㪆㪘 㪍㪪㪫㩷㪂㩷㪊㪏㪘
㪈㪏㩷㪤㪆㪪㪤㩷㪂㩷㪉㪍㪘
㪋㪋 㪋㪋 㪋㪋
㪍㪪㪤㩷㪂㩷㪊㪏㩷㪪㪫㪆㪘
㪋㪋
㪉
㪉㪅㪉㩷㪝㪛
㪉㪅㪇㩷㪙㪝㪘
㪈㪅㪐㩷㪝㪛
㪉㪅㪉㪁㩷㪝㪛
㪈㪅㪐㩷㪝㪛
㩿㪈㪅㪏㪁㩷㪝㪛㪀
㪉㪅㪇㩷㪝㪛
㪈㪅㪎㩷㪝㪛
㪌㪋
㪉㪅㪌㩷㪝㪛
㪉㪅㪋㩷㪝㪛
㪋㪋
㩿㪏㪍㪀
㪍㪋
㪌㪋
㪏㪏
㪏㪏
㩿㪌㪋㪖㪀
㪉㪅㪋㩷㪙㪝㪘 㪈㪇㪪㪤㩷㪂㩷㪊㪋㪪㪫
㪋㪋
㪌㪉
㪌㪋
㪌㪏
㪌㪇
㪌㪍
㪌㪍
㪌㪍
㪠 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪋㪋
㪋㪋
㪋㪤㩷㪂㩷㪉㪉㩷㪪㪤㪆㪪㪫㩷㪂㩷㪈㪉㪘㩷
㪋㪋 㪊㪏
㪋㪋㩷㪪㪫㪆㪘
㪋㪋
㪝㪃㩷㪤
㪏㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪊㪋㪘
㪋㪋
㩷㪪㪸㫉㫆㫋㪿㪼㫉㫆㪻㫆㫅 㩷㪫㫀㫃㪸㫇㫀㪸 㩷㪫㫀㫃㪸㫇㫀㪸 㩷㪫㫀㫃㪸㫇㫀㪸 㩷㪫㫀㫃㪸㫇㫀㪸
㩷㪧㪼㫃㫄㪸㫋㫆㪺㪿㫉㫆㫄㫀㫊 㩷㪧㪼㫃㫄㪸㫋㫆㪺㪿㫉㫆㫄㫀㫊 㩷㪧㪼㫃㫄㪸㫋㫆㪺㪿㫉㫆㫄㫀㫊㩷㫂㫃㫌㪾㪼㫀
㪈㪋㪤㪆㪪㪤㩷㪂㩷㪊㪇㪪㪫
㪋㪋 㪈㪇㪪㪤㩷㪂㩷㪊㪋㪪㪫
㪍㪪㪤㩷㪂㩷㪊㪏㩷㪪㪫㪆㪘
㪋㪋
㪝㪃㩷㪤
㪝㪃㩷㪤
㩷㪫㫀㫃㪸㫇㫀㪸 㪪㪸㫉㫆㫋㪿㪼㫉㫆㪻㫆㫅
㪈㪉㩷㪤㪆㪪㪤㩷㪂㩷㪊㪉㩷㪪㪫㪆㪘
㪋㪋 㪊㪉㪖
㪈㪇㩷㪤㪆㪪㪤㩷㪂㩷㪊㪍㩷㪪㪫㪆㪘
㪈㪇㩷㪤㪆㪪㪤㩷㪂㩷㪊㪍㩷㪪㪫㪆㪘
㪋㪍
㪋㪍
㪋㪋
㩿㪋㪍㪀
㩿㪌㪏㪀
㪋㪋
㩿㪎㪋㪀 㪌㪍
㪝 㪞 㪟 㪥㪝㪈 㪥㪝㪉 㪘㪾㪄 㪥㪦㪩㫊
㪋㪋 㪈㪉㩷㪤㪆㪪㪤㩷㪂㩷㪊㪉㩷㪪㪫㪆㪘
㪜 㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪋㪉
㪛 㪉㫅
㪝㪃㩷㪤
㪝㪃㩷㪤
㪝
㪚 㪪㪼㫏
㩷㪫㫀㫃㪸㫇㫀㪸
㩷㪫㫀㫃㪸㫇㫀㪸
㪪㪸㫉㫆㫋㪿㪼㫉㫆㪻㫆㫅 㪪㪸㫉㫆㫋㪿㪼㫉㫆㪻㫆㫅 㩷㪫㫀㫃㪸㫇㫀㪸
㩷㪧㫊㪼㫌㪻㫆㫋㫉㫆㫇㪿㪼㫌㫊 㩷㪧㫊㪼㫌㪻㫆㫋㫉㫆㫇㪿㪼㫌㫊 㩷㪣㪸㫄㫇㫉㫆㫃㫆㪾㫌㫊㩷㫊㪸㫍㫆㫉㫐 㩷㪫㫀㫃㪸㫇㫀㪸
㩷㪧㪼㫃㫄㪸㫋㫆㪺㪿㫉㫆㫄㫀㫊㩷㫋㪸㪼㫅㫀㪸㫋㫌㫊
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪫㪸㪹㫃㪼㩷㪍㪅㪊㪎㩷㩷㪦㫉㪻㪼㫉㩷㪧㪜㪩㪚㪠㪝㪦㪩㪤㪜㪪㪅㩷㪧㪸㫉㫋㩷㪉㩷㪣㪸㪹㫉㫆㫀㪻㪼㫀㩷㪸㫅㪻㩷㪱㫆㪸㫉㪺㫆㫀㪻㪼㫀㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀㩷 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀㩷
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏 㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㩿㫀㫅㫋㫉㫆㪻㫌㪺㪼㪻㪃㩷㪚㪿㫀㫅㪸㪀
㩿㪘㪽㫉㫀㪺㪸㪀
㪪㪼㪸㩷㫆㪽㩷㪞㪸㫃㫀㫃㪼㪼
㩿㪘㪽㫉㫀㪺㪸㪀
㩿㪘㪽㫉㫀㪺㪸㪀
㩿㪘㪽㫉㫀㪺㪸㪀
㩿㫀㫅㫋㫉㫆㪻㫌㪺㪼㪻㪃㩷㪤㪼㫏㫀㪺㫆㪀
㪢㪼㫅㫐㪸
㩿㫀㫅㫋㫉㫆㪻㫌㪺㪼㪻㪃㩷㪡㪸㫇㪸㫅㪀
㩿㫀㫅㫋㫉㫆㪻㫌㪺㪼㪻㪃㩷㪚㪿㫀㫅㪸㪀
㪜㪾㫐㫇㫋
㩿㫀㫅㫋㫉㫆㪻㫌㪺㪼㪻㪃㩷㪡㪸㫇㪸㫅㪀
㩿㫀㫅㫋㫉㫆㪻㫌㪺㪼㪻㪃㩷㪚㪿㫀㫅㪸㪀
㩿㫀㫅㫋㫉㫆㪻㫌㪺㪼㪻㪃㩷㪚㪿㫀㫅㪸㪀
㩿㪘㪽㫉㫀㪺㪸㪀 㩿㫀㫅㫋㫉㫆㪻㫌㪺㪼㪻㪃㩷㪠㫅㪻㫀㪸㪀
㩿㪘㪽㫉㫀㪺㪸㪀
㪱㪸㫄㪹㪼㫑㫀
㪱㪸㫀㫉㪼
㪙㫆㫋㫊㫎㪸㫅㪸
㪚㪄 㪋 㪋
㪭㪄㪊㪌
㪢㪄㪐㪏
㪪㪄㪉㪌㪃㩷㪟㪄㪈㪊
㪪 㪄㪉㪌
㪪 㪄㪉㪌
㪬 㪄㪋㪎
㪤㪄㪈㪉㪌
㪘㪄㪎㪍
㪚㪄㪋㪋㪃㩷㪚㪄㪏㪊㩷
㪤㪄㪈㪉㪌
㪝 㪄㪌㪋
㪣㪄㪌㪊
㪚㪄㪋㪋㪃㩷㪚㪄㪏㪊
㪫㪄㪋㪉 㪧㪄 㪋 㪐
㪤㪄㪈㪉㪌
㪟 㪄㪈㪈
㪭㪄㪊㪌
㪤㪄㪈㪉㪌
㪪 㪄㪈㪏㪋 㪟 㪄㪈㪊
㩿㪜㪅㩷㪘㪽㫉㫀㪺㪸㪀
㪟 㪄㪊㪍
㪫㪄㪊㪐
㪫㪄㪋㪉
㪢㪄㪐㪏
㪤㪄㪈㪉㪌
㪭㪄㪊㪌
㪪 㪄㪈㪏㪋
㪢㪄㪈㪉㪇
㪫㪄㪊㪐
㪫㪄㪋㪉
㪪 㪄㪈㪏㪋
㪢㪄㪈㪉㪇
㪪 㪄㪈㪏㪋
㪪 㪄㪉㪌
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
㩿㪚㪅㩷㪘㪽㫉㫀㪺㪸㪀
㪘㪽㫉㫀㪺㪸㩷㩿㪣㪸㫂㪼㩷㪤㪸㫃㪸㫎㫀㪀
㩿㪘㪽㫉㫀㪺㪸㪀
㩿㪘㪽㫉㫀㪺㪸㪀
㪪㪼㪸㩷㫆㪽㩷㪞㪸㫃㫀㫃㪼㪼
㪜㪾㫐㫇㫋
㪪㪅㩷㪘㪽㫉㫀㪺㪸
㩿㪘㪽㫉㫀㪺㪸㪀
㪘㪽㫉㫀㪺㪸㩷㩿㪣㪸㫂㪼㩷㪤㪸㫃㪸㫎㫀㪀
㩿㪜㪅㩷㪘㪽㫉㫀㪺㪸㪀
㩿㪜㪅㩷㪘㪽㫉㫀㪺㪸㪀
㩿㪘㪽㫉㫀㪺㪸㪀
㪘㪽㫉㫀㪺㪸㩷㩿㪣㪸㫂㪼㩷㪤㪸㫃㪸㫎㫀㪀
㩿㪘㪽㫉㫀㪺㪸㪀
㩿㪘㪽㫉㫀㪺㪸㪀
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
183
㪚㪿㫉㫆㫄㫀㫊 㪚㪿㫉㫆㫄㫀㫊 㪚㪿㫉㫆㫄㫀㫊 㪚㪿㫉㫆㫄㫀㫊 㪚㪿㫉㫆㫄㫀㫊 㪚㪿㫉㫆㫄㫀㫊
㩷㩷㪚㪿㫉㫆㫄㫀㫅㪸㪼
㪘㫄㫇㪿㫀㫇㫉㫀㫆㫅 㪘㫄㫇㪿㫀㫇㫉㫀㫆㫅 㪘㫄㫇㪿㫀㫇㫉㫀㫆㫅 㪘㫄㫇㪿㫀㫇㫉㫀㫆㫅 㪘㫄㫇㪿㫀㫇㫉㫀㫆㫅 㪘㫄㫇㪿㫀㫇㫉㫀㫆㫅
㪧㫆㫄㪸㪺㪼㫅㫋㫉㫀㪻㪸㪼㩷 㩷㩷㪘㫄㫇㪿㫀㫇㫉㫀㫆㫅㫀㫅㪸㪼
㪜㫄㪹㫀㫆㫋㫆㪺㪸 㪤㫀㪺㫉㫆㫄㪼㫋㫉㫌㫊 㪥㪼㫆㪻㫀㫋㫉㪼㫄㪸
㪜㫄㪹㫀㫆㫋㫆㪺㫀㪻㪸㪼㩷
㪪㪸㫉㫆㫋㪿㪼㫉㫆㪻㫆㫅 㪪㪸㫉㫆㫋㪿㪼㫉㫆㪻㫆㫅 㪫㫀㫃㪸㫇㫀㪸 㪫㫀㫃㪸㫇㫀㪸 㪫㫀㫃㪸㫇㫀㪸 㪫㫀㫃㪸㫇㫀㪸 㪫㫀㫃㪸㫇㫀㪸 㪫㫀㫃㪸㫇㫀㪸 㪫㫀㫃㪸㫇㫀㪸 㪫㫀㫃㪸㫇㫀㪸 㪫㫀㫃㪸㫇㫀㪸 㪫㫉㫀㫊㫋㫉㪸㫄㪼㫃㫃㪸 㪫㫉㫀㫊㫋㫉㪸㫄㪼㫃㫃㪸 㪫㪿㫐㫊㫆㪺㪿㫉㫆㫄㫀㫊 㪫㫐㫃㫆㪺㪿㫉㫆㫄㫀㫊
㪺㪿㫉㫆㫄㫀㫊 㪺㪿㫉㫐㫊㫌㫉㪸 㪽㫃㪸㫍㫀㪺㪸㫌㪻㪸 㫀㫅㫊㫆㫃㪸㫋㪸 㫀㫅㫊㫆㫃㪸㫋㪸 㫄㫌㫃㫋㫀㫃㫀㫅㪼㪸㫋㪸
㪺㫃㪸㫉㫂㫀㫀 㪺㫃㪸㫉㫂㫀㫀 㪽㫉㪼㫅㪸㫋㫌㫊 㪽㫉㪼㫅㪸㫋㫌㫊 㪽㫉㪼㫅㪸㫋㫌㫊 㫆㪺㪼㫃㫃㪸㫉㫀㫊
㫁㪸㪺㫂㫊㫆㫅㫀㫀 㪸㫌㫉㫆㫉㪸 㫉㪸㫅㫊㫆㫅㫅㪼㫋㫀
㪾㪸㫃㫀㫃㪸㪼㫌㫊 㫄㪼㫃㪸㫅㫆㫋㪿㪼㫉㫆㫅 㪺㫆㫅㪾㫀㪺㪸 㪾㫌㫀㫅㪼㪼㫅㫊㫀㫊 㫄㪸㫉㫀㪸㪼 㫄㪸㫉㫀㪸㪼 㫉㪼㫅㪻㪸㫃㫃㫀 㫊㫇㪸㫉㫉㫄㪸㫅㫀㫀 㫊㫇㪸㫉㫉㫄㪸㫅㫀㫀 㫑㫀㫃㫃㫀㫀 㫑㫀㫃㫃㫀㫀 㫊㪸㪺㫉㪸 㫊㫀㫄㫆㫅㫀㫊 㪸㫅㫊㫆㫉㪾㫀㫀 㫃㪸㫋㪼㫉㪸㫃㫀㫊
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㪹㫆㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷
㪘㫄㫇㪿㫀㪾㫆㫅㫆㫇㫋㪼㫉㫌㫊
㪧㪼㫃㫄㪸㫋㫆㪺㪿㫉㫆㫄㫀㫊㩷㪸㫅㫊㫆㫉㪾㪼㫀 㪧㪼㫃㫄㪸㫋㫆㪺㪿㫉㫆㫄㫀㫊㩷㪾㫌㪼㫅㫋㪿㪼㫉㫀
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪋㪉 㪋㪋 㪋㪋
㪝㪃㩷㪤 㪝㪃㩷㪤
㪝
㪤
㪝㪃㩷㪤
㪉
㪬㪪㪘㩷㩿㪚㪘㪀
㩿㪘㪽㫉㫀㪺㪸㪀
㩿㪘㪽㫉㫀㪺㪸㪀
㪪㪼㪸㩷㫆㪽㩷㪞㪸㫃㫀㫃㪼㪼
㪪㪼㪸㩷㫆㪽㩷㪞㪸㫃㫀㫃㪼㪼
㪜㪾㫐㫇㫋
㪪㪼㪸㩷㫆㪽㩷㪞㪸㫃㫀㫃㪼㪼
㪈㪋㪤㩷㪂㩷㪉㪉㪪㪤㩷㪂㩷㪏㪪㪫㩷㪂㩷㪋㪘 㪈㪋㪤㩷㪂㩷㪉㪉㪪㪤㩷㪂㩷㪈㪉㩷㪪㪫㪆㪘
㪋㪏 㪋㪏
㪊㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪊㪏㪘
㪋㪎
㪋㪏㪘
㪋㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪊㪍㪘
㪋㪍 㪋㪏
㪐㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪉㪋㪘
㪊㪐
㪉㪤㩷㪂㩷㪋㪍㩷㪪㪫㪆㪘
㪈㪉㪤㩷㪂㩷㪉㪍㪪㪤㩷㪂㩷㪈㪇㩷㪪㪫㪆㪘
㪋㪏
㪋㪏㪘
㪈㪋㪤㩷㪂㩷㪉㪉㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪉㪘
㪋㪏
㪋㪏
㪈㪉㪤㩷㪂㩷㪉㪍㪪㪤㩷㪂㩷㪈㪇㩷㪪㪫㪆㪘
㪋㪏
㪋㪏
㪈㪋㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪈㪏㩷㪪㪫㪆㪘
㪋㪏
㪋㪏
㪌㪍
㪌㪍
㪌㪋
㪌㪇
㪋㪏
㪏㪋
㪏㪋
㪏㪍
㪏㪋
㪏㪍
㪎㪏
㪋㪏
㪌㪍
㪌㪍
㪌㪋
㪋㪏
㪐㪉
㪉
㪉
㪉
㪉
㪉㪅㪍㪁㩷㪝㪛
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪙㫉㪸㫑㫀㫃㩷㩿㪙㪘㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪜㪪㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪜㪪㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪜㪪㪀
㩿㪡㪸㫇㪸㫅㪀
㪪㫇㪸㫀㫅㩷㩿㪤㪸㫃㪸㪾㪸㪀
㪡㪸㫇㪸㫅㩷㩿㪦㫂㫀㫅㪸㫎㪸㪀
㪧㪿㫀㫃㫀㫇㫇㫀㫅㪼㫊
㩿㪮㪅㩷㪧㪸㪺㫀㪽㫀㪺㪀
㪡㪸㫇㪸㫅㩷㩿㪦㫂㫀㫅㪸㫎㪸㪀
㩿㪮㪅㩷㪧㪸㪺㫀㪽㫀㪺㪀
㪡㪸㫇㪸㫅㩷㩿㪫㪸㫅㪼㪾㪸㫊㪿㫀㫄㪸㩷㪠㫊㪅㪀
㪡㪸㫇㪸㫅㩷㩿㪢㪸㫅㪸㪾㪸㫎㪸㪀
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㩿㪘㪽㫉㫀㪺㪸㪀
㪱㪸㫀㫉㪼
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪩㪀
㩿㪘㪽㫉㫀㪺㪸㪀
㩿㪘㪽㫉㫀㪺㪸㪀
㩿㪞㫌㫀㫅㪼㪸㪀
㪱㪸㫀㫉㪼
㪠㫍㫆㫉㫐㩷㪚㫆㪸㫊㫋
㪢㪼㫅㫐㪸
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪋㪏
㪉㪅㪉㪁㩷㪝㪚㪤㪃㩷㪉㪅㪈㩷㪝㪠㪘
㪉㪅㪇㩷㪙㪝㪘
㪉㪅㪌㩷㪝㪛
㪉㪅㪍㩷㪝㪛
㪉㪅㪋㩷㪝㪛㪃㩷㩿㪉㪅㪋㩷㪙㪝㪘㪀
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪬㪪㪘㩷㩿㪚㪘㪀
㪐㪋
㪋
㪈㪅㪎㩷㪝㪛
㪠 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪋㪏㪁
㪋㪏㪁
㩿㪌㪇㪀
㪏㪏
㪍㪉
㪋㪏
㪌㪋
㪌㪇
㪌㪇
㪍㪍
㪌㪋
㪌㪉
㪌㪇
㪌㪋
㪋㪏
㪋㪋
㪌㪉
㪎㪏
㪏㪏
㩿㪌㪋㪀
㪍㪪㪤㩷㪂㩷㪋㪉㩷㪪㪫㪆㪘
㪍㩷㪤㪆㪪㪤㩷㪂㩷㪊㪏㩷㪪㪫㪆㪘
㪍㩷㪤㪆㪪㪤㩷㪂㩷㪊㪏㩷㪪㪫㪆㪘
㪈㪇㩷㪤㪆㪪㪤㩷㪂㩷㪊㪉㩷㪪㪫㪆㪘
㪏㩷㪤㪆㪪㪤㩷㪂㩷㪊㪋㩷㪪㪫㪆㪘
㪈㪇㪪㪤㩷㪂㩷㪏㪪㪫㩷㪂㩷㪉㪍㪘
㪏㩷㪤㪆㪪㪤㩷㪂㩷㪊㪉㩷㪪㪫㪆㪘㩷
㪋㩷㪤㪆㪪㪤㩷㪂㩷㪊㪍㩷㪪㪫㪆㪘
㪌㪋
㪋㪏
㪝 㪞 㪟 㪥㪝㪈 㪥㪝㪉 㪘㪾㪄 㪥㪦㪩㫊
㪋㪍
㪋㪋
㪋㪉
㪝㪃㩷㪤
㪝㪃㩷㪤
㪋㪤㩷㪂㩷㪈㪏㪪㪤㩷㪂㩷㪉㪉㪪㪫
㪋㪋
㪝㪃㩷㪤
㪋㪋
㪋㪇
㪝㪃㩷㪤
㪤
㪈㪇㩷㪤㪆㪪㪤㩷㪂㩷㪊㪋㩷㪪㪫㪆㪘
㪋㪇
㪝㪃㩷㪤
㪏㩷㪤㪆㪪㪤㩷㪂㩷㪊㪍㩷㪪㪫㪆㪘
㪋㪋
㪝㪃㩷㪤
㪈㪇㩷㪤㪆㪪㪤㩷㪂㩷㪊㪋㩷㪪㪫㪆㪘
㪋㪋
㪋㪪㪤㩷㪂㩷㪋㪇㪪㪫 㪋㪤㩷㪂㩷㪊㪇㩷㪪㪤㪆㪪㪫㩷㪂㩷㪈㪇㪘
㪋㪋
㪜 㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪋㪋
㪛 㪉㫅
㪝㪃㩷㪤
㪚 㪪㪼㫏
㪫㪸㪹㫃㪼㩷㪍㪅㪊㪎㩷㩷㪦㫉㪻㪼㫉㩷㪧㪜㪩㪚㪠㪝㪦㪩㪤㪜㪪㪅㩷㪧㪸㫉㫋㩷㪉㩷㪣㪸㪹㫉㫆㫀㪻㪼㫀㩷㪸㫅㪻㩷㪱㫆㪸㫉㪺㫆㫀㪻㪼㫀㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀㩷 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀㩷
㪤㪄㪈㪋㪊
㪤㪄㪈㪋㪊
㪤㪄㪈㪋㪊
㪤㪄㪈㪋㪊
㪦㪄㪋㪐
㪘㪄㪉㪐
㪘㪄㪍㪍
㪤㪄㪎㪐
㪫㪄㪎㪇
㪘㪄㪍㪍
㪫㪄㪎㪇
㪘㪄㪍㪌㪃㩷㪦㪄㪋㪏㪃㩷㪟㪄㪋㪈
㪘㪄㪎㪎
㪚㪄㪋㪍
㪚㪄㪋㪍㪃㩷㪟㪄㪈㪊
㪪 㪄㪉㪌
㪪 㪄㪉㪌
㪢㪄㪐㪏
㪢㪄㪐㪏
㪤㪄㪈㪉㪌
㪢㪄㪐㪏㪃㩷㪟㪄㪈㪊
㪫㪄㪋㪉
㪭㪄㪊㪌
㪢㪄㪈㪉㪊㪃㩷㪤㪄㪍㪌
㪫㪄㪋㪉
㪭㪄㪊㪌
㪭㪄㪊㪌
㪭㪄㪊㪌
㪟 㪄㪈㪈
㪤㪄㪈㪉㪌
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
184
㪘㪹㫌㪻㪼㪽㪻㫌㪽 㪘㪹㫌㪻㪼㪽㪻㫌㪽 㪘㪹㫌㪻㪼㪽㪻㫌㪽 㪘㪹㫌㪻㪼㪽㪻㫌㪽 㪘㪹㫌㪻㪼㪽㪻㫌㪽 㪘㪹㫌㪻㪼㪽㪻㫌㪽 㪘㪹㫌㪻㪼㪽㪻㫌㪽 㪘㫄㪹㫃㫐㪾㫃㫐㫇㪿㫀㪻㫆㪻㫆㫅 㪚㪿㪼㫀㫃㫆㫇㫉㫀㫆㫅 㪚㪿㫉㫐㫊㫀㫇㫋㪼㫉㪸 㪚㪿㫉㫐㫊㫀㫇㫋㪼㫉㪸 㪚㪿㫉㫐㫊㫀㫇㫋㪼㫉㪸 㪚㪿㫉㫐㫊㫀㫇㫋㪼㫉㪸 㪚㪿㫉㫐㫊㫀㫇㫋㪼㫉㪸 㪚㪿㫉㫐㫊㫀㫇㫋㪼㫉㪸 㪚㪿㫉㫐㫊㫀㫇㫋㪼㫉㪸 㪚㪿㫉㫐㫊㫀㫇㫋㪼㫉㪸 㪛㫀㫊㪺㪿㫀㫊㫋㫆㪻㫌㫊 㪤㫀㪺㫉㫆㫊㫇㪸㫋㪿㫆㪻㫆㫅 㪥㪼㫆㪾㫃㫐㫇㪿㫀㪻㫆㪻㫆㫅 㪥㪼㫆㪾㫃㫐㫇㪿㫀㪻㫆㪻㫆㫅 㪥㪼㫆㪾㫃㫐㫇㪿㫀㪻㫆㪻㫆㫅 㪧㫃㪼㪺㫋㫉㫆㪾㫃㫐㫇㪿㫀㪻㫆㪻㫆㫅
㩷㩷㪧㫆㫄㪸㪺㪼㫅㫋㫉㫀㫅㪸㪼
㪚㪿㫉㫆㫄㫀㫊 㪛㪸㫊㪺㫐㫃㫃㫌㫊 㪛㪸㫊㪺㫐㫃㫃㫌㫊 㪛㪸㫊㪺㫐㫃㫃㫌㫊 㪛㪸㫊㪺㫐㫃㫃㫌㫊 㪛㪸㫊㪺㫐㫃㫃㫌㫊 㪛㪸㫊㪺㫐㫃㫃㫌㫊 㪛㪸㫊㪺㫐㫃㫃㫌㫊 㪛㪸㫊㪺㫐㫃㫃㫌㫊 㪛㪸㫊㪺㫐㫃㫃㫌㫊 㪛㪸㫊㪺㫐㫃㫃㫌㫊 㪛㪸㫊㪺㫐㫃㫃㫌㫊
㫅㫆㫋㪸㫋㫌㫊 㫊㪸㫏㪸㫋㫀㫃㫀㫊 㫊㪸㫏㪸㫋㫀㫃㫀㫊 㫊㪼㫏㪽㪸㫊㪺㫀㪸㫋㫌㫊 㫊㫆㫉㪻㫀㪻㫌㫊 㫍㪸㫀㪾㫀㪼㫅㫊㫀㫊 㫍㪸㫀㪾㫀㪼㫅㫊㫀㫊 㪺㫌㫉㪸㪺㪸㫆 㫃㪸㪹㫀㪸㫋㫌㫊 㪺㫐㪸㫅㪼㪸 㪺㫐㪸㫅㪼㪸 㪿㪼㫄㫀㪺㫐㪸㫅㪼㪸 㪿㪼㫄㫀㪺㫐㪸㫅㪼㪸 㫃㪼㫌㪺㫆㫇㫆㫄㪸 㫉㪼㫏 㫉㪼㫏 㫊㫋㪸㫉㪺㫂㫀 㫇㫉㫆㫊㫆㫇㫆㫋㪸㪼㫅㫀㪸 㪺㪿㫉㫐㫊㫌㫉㫌㫊 㫄㪼㫃㪸㫊 㫅㫀㪾㫉㫆㫉㫀㫊 㫆㫏㫐㫆㪻㫆㫅 㫃㪸㪺㫉㫐㫄㪸㫋㫌㫊
㫋㪼㫉㫅㪸㫋㪼㫅㫊㫀㫊 㪸㫉㫌㪸㫅㫌㫊 㪸㫉㫌㪸㫅㫌㫊 㪸㫉㫌㪸㫅㫌㫊 㪸㫉㫌㪸㫅㫌㫊 㪸㫉㫌㪸㫅㫌㫊 㫄㪼㫃㪸㫅㫌㫉㫌㫊 㫉㪼㫋㫀㪺㫌㫃㪸㫋㫌㫊 㫉㪼㫋㫀㪺㫌㫃㪸㫋㫌㫊 㫉㪼㫋㫀㪺㫌㫃㪸㫋㫌㫊 㫋㫉㫀㫄㪸㪺㫌㫃㪸㫋㫌㫊 㫋㫉㫀㫄㪸㪺㫌㫃㪸㫋㫌㫊
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㪹㫆㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷
㩷㪧㪸㫉㪸㪾㫃㫐㫇㪿㫀㪻㫆㪻㫆㫅 㩷㪧㪸㫉㪸㪾㫃㫐㫇㪿㫀㪻㫆㪻㫆㫅
㪞㫃㫐㫇㪿㫀㪻㫆㪻㫆㫅㫋㫆㫇㫊㩷㫉㪼㫏
㪞㫃㫐㫇㪿㫀㪻㫆㪻㫆㫅㫋㫆㫇㫊㩷㪿㪼㫄㫀㪺㫐㪸㫅㪼㫌㫊
㪞㫃㫐㫇㪿㫀㪻㫆㪻㫆㫅㫋㫆㫇㫊㩷㪺㫐㪸㫅㪼㫌㫊
㩷㪺㫆㪼㫃㪼㫊㫋㫀㫅㫌㫊
㪺㪸㪼㫉㫌㫃㪼㫌㫊
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪝
㪚 㪪㪼㫏
㪈㪤㩷㪂㩷㪋㪍㪘
㪋㪎
㪉㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪈㪉㪪㪫㩷㪂㩷㪈㪋㪘
㪋㪏 㪋㪏
㪏㪤㩷㪂㩷㪉㪍㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪈㪉㪘
㪋㪏
㪎㪇
㪏㪉
㪍㪋
㪏㪉
㪏㪋
㪏㪋
㪉
㪉
㪉
㪉
㪌㪋 㪏㪉
㪍㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪊㪉㪘 㪏㪤㩷㪂㩷㪉㪍㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪈㪉㪘
㪉
㪋㪏
㪍㪇
㪉
㪉
㪉
㪉
㪉 㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪋㪏
㪍㪇
㪏㪇
㪏㪏
㪍㪍
㪌㪉
㪌㪋
㪌㪋
㪌㪇
㪌㪉
㪌㪉
㪌㪉
㪋㪏
㪋㪏
㪋㪏
㪋㪏 㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪉
㪉
㪉㪤㩷㪂㩷㪈㪇㪪㪤㩷㪂㩷㪊㪍㪘
㪎㪏
㪌㪏
㪎㪋
㪏㪇
㪎㪏
㪋㪏
㪍㪋
㪎㪍 㪎㪋
㪌㪉
㪌㪉
㪌㪉
㪌㪇
㪌㪉
㪌㪉
㪌㪇
㪋㪏
㪋㪏
㪋㪏
㪋㪏 㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪈㪉㪤㩷㪂㩷㪈㪇㪪㪤㩷㪂㩷㪈㪋㩷㪪㪫㪆㪘
㪊㪍
㪏㪤㩷㪂㩷㪉㪉㪪㪤㩷㪂㩷㪈㪏㩷㪪㪫㪆㪘
㪋㪤㩷㪂㩷㪉㪉㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪈㪍㪘
㪋㪏 㪋㪏
㪊㪉㪪㪤㩷㪂㩷㪈㪍㩷㪪㪫㪆㪘
㪋㪏
㪊㪇㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪏㪘
㪋㪏
㪍㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪈㪏㪘
㪋㪉 㪋㪏㩷㪪㪫㪆㪘
㪍㪤㩷㪂㩷㪉㪉㪪㪤㩷㪂㩷㪉㪇㩷㪪㪫㪆㪘 㪉㪍㪪㪤㩷㪂㩷㪉㪉㩷㪪㪫㪆㪘
㪋㪏 㪋㪏 㪋㪏
㪉㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪋㪉㪘 㪉㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪋㪋㪘
㪋㪏
㪉㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪋㪉㪘
㪋㪏 㪋㪏
㪉㪤㩷㪂㩷㪋㪍㪘
㪉㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪋㪋㪘
㪋㪏 㪋㪏
㪉㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪋㪋㪘
㪋㪏
㪉㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪋㪋㪘
㪋㪏㪘
㪋㪏
㪋㪏
㪈㪋㩷㪤㪆㪪㪤㩷㪂㩷㪉㪇㪘
㪊㪋
㪋㪏
㪉㪇㩷㪤㪆㪪㪤㩷㪂㩷㪏㪘
㪉㪏 㪋㪏㪘
㪈㪐㩷㪤㪆㪪㪤㩷㪂㩷㪈㪇㪘
㪉㪐
㪈㪉㩷㪤㪆㪪㪤㩷㪂㩷㪉㪋㪘 㪈㪊㩷㪤㪆㪪㪤㩷㪂㩷㪉㪉㪘
㪈㪏㩷㪤㪆㪪㪤㩷㪂㩷㪈㪉㪘
㪊㪇
㪋㪏
㪈㪎㩷㪤㪆㪪㪤㩷㪂㩷㪈㪋㪘
㪊㪈
㪊㪍 㪊㪌
㪋㪏
㪈㪍㩷㪤㪆㪪㪤㩷㪂㩷㪈㪍㪘
㪋㪏
㪋㪏㪘
㪋㪏
㪝 㪞 㪟 㪥㪝㪈 㪥㪝㪉 㪘㪾㪄 㪥㪦㪩㫊
㪊㪉
㪜 㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪋㪏
㪛 㪉㫅
㪫㪸㪹㫃㪼㩷㪍㪅㪊㪎㩷㩷㪦㫉㪻㪼㫉㩷㪧㪜㪩㪚㪠㪝㪦㪩㪤㪜㪪㪅㩷㪧㪸㫉㫋㩷㪉㩷㪣㪸㪹㫉㫆㫀㪻㪼㫀㩷㪸㫅㪻㩷㪱㫆㪸㫉㪺㫆㫀㪻㪼㫀㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀㩷 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀㩷
㪈㪅㪌㩷㪝㪠㪘
㪉㪅㪎㪁㩷㪝㪚㪤
㪊㪅㪋㪁㩷㪝㪚㪤㪃㩷㪈㪅㪍㪃㩷㪉㪅㪈㩷㪝㪠㪘
㪉㪅㪉㪁㩷㪝㪚㪤㪃㩷㪈㪅㪏㩷㪝㪠㪘
㪈㪅㪎㩷㪝㪠㪘
㪈㪅㪋㩷㪝㪠㪘
㩿㪉㪅㪇㩷㪙㪝㪘㪀
㪈㪅㪏㩷㪝㪠㪘
㩿㪈㪅㪎㩷㪝㪠㪘㪀
㩿㪉㪅㪈㪁㩷㪝㪚㪤㪃㩷㪈㪅㪎㩷㪝㪠㪘㪀
㪠 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏 㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㩿㪠㫅㪻㫆㪄㪮㪅㩷㪧㪸㪺㫀㪽㫀㪺㪀
㩿㪮㪅㩷㪧㪸㪺㫀㪽㫀㪺㪀
㩿㪮㪅㩷㪧㪸㪺㫀㪽㫀㪺㪀
㪡㪸㫇㪸㫅㩷㩿㪮㪸㫂㪸㫐㪸㫄㪸㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪙㪘㪀
㩿㪠㫅㪻㫆㪄㪮㪅㩷㪧㪸㪺㫀㪽㫀㪺㪀
㩿㪮㪅㩷㪧㪸㪺㫀㪽㫀㪺㪀
㩿㪠㫅㪻㫆㪄㪮㪅㩷㪧㪸㪺㫀㪽㫀㪺㪀
㩿㪮㪅㩷㪧㪸㪺㫀㪽㫀㪺㪀
㩿㪮㪅㩷㪧㪸㪺㫀㪽㫀㪺㪀
㩿㪠㫅㪻㫆㪄㪮㪅㩷㪧㪸㪺㫀㪽㫀㪺㪀
㩿㪮㪅㩷㪧㪸㪺㫀㪽㫀㪺㪀
㩿㪠㫅㪻㫆㪄㪮㪅㩷㪧㪸㪺㫀㪽㫀㪺㪀
㩿㪮㪅㩷㪧㪸㪺㫀㪽㫀㪺㪀
㩿㪠㫅㪻㫆㪄㪮㪅㩷㪧㪸㪺㫀㪽㫀㪺㪀 㪡㪸㫇㪸㫅㩷㩿㪩㫐㫌㫂㫐㫌㪀
㩿㪮㪅㩷㪧㪸㪺㫀㪽㫀㪺㪀
㪡㪸㫇㪸㫅㩷㩿㪚㪿㫀㪹㪸㪀
㪡㪸㫇㪸㫅㩷㩿㪫㪸㫅㪼㪾㪸㫊㪿㫀㫄㪸㩷㪠㫊㪅㪀
㩿㪮㪅㩷㪧㪸㪺㫀㪽㫀㪺㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪩㪥㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪩㪡㪀
㪡㪸㫇㪸㫅㩷㩿㪫㪸㫅㪼㪾㪸㫊㪿㫀㫄㪸㩷㪠㫊㪅㪀
㪡㪸㫇㪸㫅㩷㩿㪫㪸㫅㪼㪾㪸㫊㪿㫀㫄㪸㩷㪠㫊㪅㪀
㪪㪅㩷㪡㪸㫇㪸㫅
㪪㪅㩷㪡㪸㫇㪸㫅
㪪㪅㩷㪡㪸㫇㪸㫅 㪪㪅㩷㪡㪸㫇㪸㫅
㪪㪅㩷㪡㪸㫇㪸㫅
㪪㪅㩷㪡㪸㫇㪸㫅
㪪㪅㩷㪡㪸㫇㪸㫅
㪪㪅㩷㪡㪸㫇㪸㫅
㪪㪅㩷㪡㪸㫇㪸㫅
㪪㪅㩷㪡㪸㫇㪸㫅
㩿㪧㪸㪺㫀㪽㫀㪺㪀
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪫㪄㪍
㪫㪄㪈㪍
㪫㪄㪈㪍
㪫㪄㪏㪋
㪞㪄㪈㪉㪃㩷㪤㪄㪎㪐
㪫㪄㪍㪃㩷㪟㪄㪋㪈
㪫㪄㪍㪃㩷㪫㪄㪎
㪦㪄㪋㪐
㪫㪄㪈㪐
㪫㪄㪈㪐
㪦㪄㪋㪐
㪫㪄㪈㪍㪃㩷㪫㪄㪉㪊㪃㩷㪦㪄㪋㪏
㪦㪄㪋㪐
㪫㪄㪈㪐㪃㩷㪦㪄㪋㪏㪃㩷㪟㪄㪋㪈
㪫㪄㪍㪃㩷㪦㪄㪋㪏㪃㩷㪦㪄㪋㪐㪃㩷㪟㪄㪋㪇㩷 㪫㪄㪎
㪫㪄㪎
㪘㪄㪍㪌
㪘㪄㪍㪌㪃㩷㪟㪄㪋㪇
㪫㪄㪎㪃㩷㪟㪄㪋㪇
㪤㪄㪎㪐
㪘㪄㪈㪉㪃㩷㪙㪄㪌㪐㪃㩷㪟㪄㪈㪊
㪘㪄㪍㪌
㪘㪄㪍㪌
㪦㪄㪊㪍㪃㩷㪢㪄㪈㪌㪃㩷㪟㪄㪋㪇
㪦㪄㪊㪍㪃㩷㪢㪄㪈㪌
㪢㪄㪈㪌㪃㩷㪟㪄㪋㪇 㪦㪄㪊㪍㪃㩷㪢㪄㪈㪌
㪦㪄㪊㪍㪃㩷㪢㪄㪈㪌
㪦㪄㪊㪍㪃㩷㪢㪄㪈㪌
㪢㪄㪈㪌
㪦㪄㪊㪍㪃㩷㪢㪄㪈㪌
㪢㪄㪈㪌
㪢㪄㪈㪌㪃㩷㪦㪄㪋㪏㪃㩷㪟㪄㪋㪈
㪫㪄㪉㪊
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
185
㪈㪋㪤㩷㪂㩷㪉㪋㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪋㪘
㪋㪏
㪸㫏㫀㫃㫃㪸㫉㫀㫊 㫃㫆㫏㫆㫑㫆㫅㫌㫊 㫄㪼㫊㫆㫋㪿㫆㫉㪸㫏 㫉㫌㪽㫌㫊 㫉㫌㪽㫌㫊 㪹㫀㫄㪸㪺㫌㫃㪸㫋㫌㫊 㪽㪸㫊㪺㫀㪸㫋㫌㫊 㫀㫅㪼㫉㫄㫀㫊 㫀㫅㪼㫉㫄㫀㫊 㪸㫑㫌㫉㫀㫆 㪺㫐㪸㫅㫆㫇㫃㪼㫌㫉㪸 㫋㪼㫄㫄㫀㫅㪺㫂㫀㫀 㪸㫐㪾㫌㫃㪸 㪻㫆㫉㫊㫆㫄㪸㪺㫌㫃㪸 㪾㪸㫀㫄㪸㫉㪻㫀 㫁㫌㫃㫀㫊 㫁㫌㫃㫀㫊
㪙㫆㪻㫀㪸㫅㫌㫊 㪙㫆㪻㫀㪸㫅㫌㫊 㪙㫆㪻㫀㪸㫅㫌㫊 㪙㫆㪻㫀㪸㫅㫌㫊 㪙㫆㪻㫀㪸㫅㫌㫊 㪚㪿㪼㫀㫃㫀㫅㫌㫊 㪚㪿㪼㫀㫃㫀㫅㫌㫊 㪚㪿㪼㫀㫃㫀㫆 㪚㪿㪼㫀㫃㫀㫆 㪚㪿㫆㪼㫉㫆㪻㫆㫅 㪚㫀㫉㫉㪿㫀㫃㪸㪹㫉㫌㫊 㪚㫀㫉㫉㪿㫀㫃㪸㪹㫉㫌㫊 㪚㫆㫉㫀㫊 㪚㫆㫉㫀㫊 㪚㫆㫉㫀㫊 㪚㫆㫉㫀㫊 㪚㫆㫉㫀㫊
㪣㪸㪹㫉㫀㪻㪸㪼㩷
㪉㪇㪤㩷㪂㩷㪉㪉㪪㪤㩷㪂㩷㪍㪘
㫄㫌㫃㫋㫀㪺㫆㫃㫆㫉
㪜㫌㫇㫆㫄㪸㪺㪼㫅㫋㫉㫌㫊 㪜㫌㫇㫆㫄㪸㪺㪼㫅㫋㫉㫌㫊
㪋㪏
㪈㪈㪤㩷㪂㩷㪊㪎㪘
㪈㪇㪤㩷㪂㩷㪊㪏㪘
㪋㪏
㪝
㪍㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪊㪍㩷㪪㪫㪆㪘
㪋㪏
㪤
㪈㪉㪤㩷㪂㩷㪉㪉㪘
㪊㪋
㪉㪤㩷㪂㩷㪈㪇㪪㪤㩷㪂㩷㪊㪍㩷㪪㪫㪆㪘
㪈㪇㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪉㪉㩷㪪㪫㪆㪘
㪊㪋
㪋㪏
㪍㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪋㪇㩷㪪㪫㪆㪘
㪋㪏
㪍㪤㩷㪂㩷㪏㪪㪤㩷㪂㩷㪊㪋㩷㪪㪫㪆㪘
㪈㪉㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪉㪋㩷㪪㪫㪆㪘 㪋㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪋㪉㪘
㪋㪏 㪋㪏
㪌㪐
㪌㪏
㪍㪇
㪍㪉
㪍㪇
㪋㪍
㪋㪍
㪌㪍
㪌㪋
㪎㪉
㪍㪇
㪌㪐
㪌㪏
㪋㪍
㪌㪋
㪈㪉㪪㪤㩷㪂㩷㪊㪍㩷㪪㪫㪆㪘
㪋㪏
㪋㪏 㪊㪏
㪊㪏
㪋㪏
㪏㪇
㪋㪏㪘
㪋㪏
㪎㪋
㪏㪏
㪐㪉
㪐㪉
㪏㪏
㪐㪉
㪐㪇
㪐㪇
㪌㪇
㪐㪋
㪋㪏
㪋㪏
㪋㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪉㪍㪘
㪏㪤㩷㪂㩷㪈㪏㪪㪤㩷㪂㩷㪉㪉㩷㪪㪫㪆㪘
㪋㪏
㪏㪉
㪏㪍
㪌㪉 㪐㪇
㪊㪉
㪏㪤㩷㪂㩷㪉㪍㪪㪤㩷㪂㩷㪈㪋㩷㪪㪫㪆㪘
㪏㪏
㪐㪇
㪌㪉
㪎㪏
㪏㪏
㪏㪍
㪐㪇
㪏㪋
㪌㪏
㪏㪇
㪌㪇
㪏㪋
㪋㪏
㪋㪏
㪎㪏
㪋㪏
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪝 㪞 㪟 㪥㪝㪈 㪥㪝㪉 㪘㪾㪄 㪥㪦㪩㫊
㪋㪏
㪏㪤㩷㪂㩷㪊㪇㪪㪤㩷㪂㩷㪈㪇㩷㪪㪫㪆㪘
㪋㪏
㪈㪏㪤㩷㪂㩷㪉㪉㪪㪤㩷㪂㩷㪏㪘
㪈㪋㪤㩷㪂㩷㪉㪏㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪋㪘
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪍㪤㩷㪂㩷㪉㪋㪪㪤㩷㪂㩷㪈㪏㩷㪪㪫㪆㪘 㪉㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪋㪋㩷㪪㪫㪆㪘
㪋㪏
㪈㪏㪤㩷㪂㩷㪉㪉㪪㪤㩷㪂㩷㪏㪘
㪋㪏
㪋㪏
㪈㪇㪤㩷㪂㩷㪉㪍㪪㪤㩷㪂㩷㪈㪉㩷㪪㪫㪆㪘
㪋㪏
㪝㪃㩷㪤
㪝㪃㩷㪤
㪝㪃㩷㪤
㪏㩷㪤㪆㪪㪤㩷㪂㩷㪋㪉㩷㪪㪫㪆㪘
㪌㪇
㪉㪤㩷㪂㩷㪋㪍㪘 㪏㪤㩷㪂㩷㪉㪋㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪍㪘
㪋㪏 㪋㪏
㪈㪇㪤㩷㪂㩷㪉㪍㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪉㪘
㪋㪏
㪋㪏㪘
㪋㪏 㪋㪏㪘
㪏㪤㩷㪂㩷㪉㪉㪪㪤㩷㪂㩷㪈㪉㪪㪫㩷㪂㩷㪍㪘
㪋㪏 㪋㪏
㪋㪪㪫㩷㪂㩷㪋㪋㪘
㪋㪏
㪋㪏
㪜 㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪋㪏
㪝㪃㩷㪤
㪤
㪛 㪉㫅
㫊㫇㪅
㩷㪹㫀㫆㪺㪼㫃㫃㪸㫋㫌㫊
㩷㪧㪸㫉㪸㪾㫃㫐㫇㪿㫀㪻㫆㪻㫆㫅㩷㫄㪼㫃㪸㫊
㩷㪘㪹㫌㪻㪼㪽㪻㫌㪽
㩷㪘㪹㫌㪻㪼㪽㪻㫌㪽 㩷㫉㪿㫆㪻㫆㫅㫆㫋㫌㫊
㪚 㪪㪼㫏
㪽㫌㫊㪺㫌㫊 㫀㫅㫊㫌㫃㪸㫉㫀㫊 㫃㪼㫌㪺㫆㫊㫋㫀㪺㫋㫌㫊 㫃㫀㫍㫀㪻㫌㫊 㫅㫀㪾㫉㫀㪺㪸㫅㫊 㫇㫀㪺㫋㫌㫊 㫊㪸㫅㪺㫋㫀㫇㪸㫌㫃㫀 㫍㪸㫉㫀㪸㪹㫀㫃㫀㫊
㫃㪼㫌㪺㫆㫑㫆㫅㫌㫊 㪺㪿㫉㫐㫊㫌㫉㫌㫊 㪺㫆㪼㫃㪼㫊㫋㫀㫊 㪺㫆㪼㫃㪼㫊㫋㫀㫊 㫄㫆㫃㫌㪺㪺㪼㫅㫊㫀㫊 㪺㪽㪅㩷㫅㪸㪾㪸㫊㪸㫂㫀㪼㫅㫊㫀㫊 㫇㪿㫀㫃㫀㫇㫇㫀㫅㫌㫊 㫋㫉㫀㫃㫀㫅㪼㪸㫋㫌㫊
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪧㫃㪼㪺㫋㫉㫆㪾㫃㫐㫇㪿㫀㪻㫆㪻㫆㫅 㪧㫆㫄㪸㪺㪼㫅㫋㫉㫌㫊 㪧㫆㫄㪸㪺㪼㫅㫋㫉㫌㫊 㪧㫆㫄㪸㪺㪼㫅㫋㫉㫌㫊 㪧㫆㫄㪸㪺㪼㫅㫋㫉㫌㫊 㪧㫆㫄㪸㪺㪼㫅㫋㫉㫌㫊 㪧㫆㫄㪸㪺㪼㫅㫋㫉㫌㫊 㪧㫆㫄㪸㪺㪼㫅㫋㫉㫌㫊 㪧㫆㫄㪸㪺㪼㫅㫋㫉㫌㫊 㪪㫋㪼㪾㪸㫊㫋㪼㫊 㪪㫋㪼㪾㪸㫊㫋㪼㫊 㪪㫋㪼㪾㪸㫊㫋㪼㫊 㪪㫋㪼㪾㪸㫊㫋㪼㫊 㪪㫋㪼㪾㪸㫊㫋㪼㫊 㪪㫋㪼㪾㪸㫊㫋㪼㫊 㪪㫋㪼㪾㪸㫊㫋㪼㫊 㪪㫋㪼㪾㪸㫊㫋㪼㫊
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㪹㫆㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷
㪫㪸㪹㫃㪼㩷㪍㪅㪊㪎㩷㩷㪦㫉㪻㪼㫉㩷㪧㪜㪩㪚㪠㪝㪦㪩㪤㪜㪪㪅㩷㪧㪸㫉㫋㩷㪉㩷㪣㪸㪹㫉㫆㫀㪻㪼㫀㩷㪸㫅㪻㩷㪱㫆㪸㫉㪺㫆㫀㪻㪼㫀㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀㩷 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀㩷
㪈㪅㪋㩷㪝㪠㪘
㪈㪅㪏㪁㩷㪝㪚㪤
㪈㪅㪌㩷㪝㪠㪘
㪈㪅㪌㩷㪝㪛
㪈㪅㪌㩷㪝㪠㪘
㩿㪈㪅㪏㩷㪝㪠㪘㪀
㪉㪅㪈㩷㪝㪠㪘
㪠 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪊㪋
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪜㫃㪹㪸㪃㩷㪜㫌㫉㫆㫇㪼
㪜㫃㪹㪸㪃㩷㪜㫌㫉㫆㫇㪼
㪪㪅㩷㪡㪸㫇㪸㫅
㪡㪸㫇㪸㫅㩷㩿㪮㪸㫂㪸㫐㪸㫄㪸㪀
㩿㪡㪸㫇㪸㫅㪀
㪡㪸㫇㪸㫅㩷㩿㪮㪸㫂㪸㫐㪸㫄㪸㪀
㪪㪅㩷㪡㪸㫇㪸㫅
㪡㪸㫇㪸㫅㩷㩿㪮㪸㫂㪸㫐㪸㫄㪸㪀
㪡㪸㫇㪸㫅㩷㩿㪰㪸㫂㫌㫊㪿㫀㫄㪸㩷㪠㫊㪅㪀
㪪㪅㩷㪡㪸㫇㪸㫅
㩿㪡㪸㫇㪸㫅㪀
㪡㪸㫇㪸㫅㩷㩿㪮㪸㫂㪸㫐㪸㫄㪸㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪩㪥㪀
㪙㫉㪸㫑㫀㫃
㪪㪅㩷㪡㪸㫇㪸㫅
㪪㪅㩷㪡㪸㫇㪸㫅
㪪㪅㩷㪡㪸㫇㪸㫅
㪙㫉㪸㫑㫀㫃㩷㩿㪩㪥㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪩㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪙㪘㪃㩷㪚㪜㪀
䋨㪠㫅㪻㫆㪄㪮㪅㩷㪧㪸㪺㫀㪽㫀㪺㪀
䋨㪧㪸㪺㫀㪽㫀㪺㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪙㪘㪀
㪠㫅㪻㫀㪸㩷㩿㪢㪼㫉㪸㫃㪸㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪩㪥㪀
㩿㪧㪸㪺㫀㪽㫀㪺㪀
㪠㫅㪻㫀㪸㩷㩿㪘㫅㪻㪸㫄㪸㫅㩷㪠㫊㪅㪀
㪡㪸㫇㪸㫅㩷㩿㪰㪸㪼㫐㪸㫄㪸㪀
㪡㪸㫇㪸㫅㩷㩿㪮㪸㫂㪸㫐㪸㫄㪸㪀
㩿㪮㪅㩷㪧㪸㪺㫀㪽㫀㪺㪀
㩿㪮㪅㩷㪧㪸㪺㫀㪽㫀㪺㪀
㪡㪸㫇㪸㫅㩷㩿㪫㪸㫅㪼㪾㪸㫊㪿㫀㫄㪸㩷㪠㫊㪅㪀
㩿㪮㪅㩷㪧㪸㪺㫀㪽㫀㪺㪀
㪡㪸㫇㪸㫅㩷㩿㪰㪸㫂㫌㫊㪿㫀㫄㪸㩷㪠㫊㪅㪀
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪛㪄㪉㪋
㪛㪄㪉㪋
㪦㪄㪊㪈
㪦㪄㪉㪎㪃㩷㪟㪄㪋㪇
㪦㪄㪋㪐
㪦㪄㪉㪎
㪦㪄㪊㪈
㪘㪄㪎㪌
㪘㪄㪎㪌
㪦㪄㪊㪈㪃㩷㪦㪄㪋㪏
㪦㪄㪋㪐
㪦㪄㪉㪎
㪞 㪄㪈㪉
㪙㪄 㪏 㪍
㪦㪄㪊㪈
㪦㪄㪊㪈
㪦㪄㪊㪈
㪞㪄㪈㪉㪃㩷㪤㪄㪈㪋㪌
㪞 㪄㪈㪉
㪞㪄㪈㪉㪃㩷㪤㪄㪈㪋㪌
㪦㪄 㪋㪐㪃 㩷 㪟 㪄 㪋 㪇
㪦㪄㪋㪐
㪞㪄㪈㪉㪃㩷㪤㪄㪈㪋㪌
㪥 㪄㪍㪌
㪞㪄㪈㪉㪃㩷㪞㪄㪏㪌㪃㩷㪤㪄㪈㪋㪌
㪦㪄㪋㪐
㪩㪄 㪋 㪌
㪫㪄㪈㪍
㪫㪄㪎㪃㩷㪫㪄㪏㪋
㪫㪄㪈㪍㪃㩷㪟㪄㪋㪇
㪫㪄㪎㪃㩷㪫㪄㪉㪊
㪘㪄㪍㪌㪃㩷㪟㪄㪋㪇
㪫㪄㪈㪍㪃㩷㪟㪄㪋㪇
㪘㪄㪍㪌
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
186
㪚㫆㫉㫀㫊 㪚㫆㫉㫀㫊 㪚㫋㪼㫅㫆㫃㪸㪹㫉㫌㫊 㪜㫇㫀㪹㫌㫃㫌㫊 㪞㫆㫄㫇㪿㫆㫊㫌㫊 㪟㪸㫃㫀㪺㪿㫆㪼㫉㪼㫊 㪟㪸㫃㫀㪺㪿㫆㪼㫉㪼㫊 㪟㪸㫃㫀㪺㪿㫆㪼㫉㪼㫊 㪟㪸㫃㫀㪺㪿㫆㪼㫉㪼㫊 㪟㪸㫃㫀㪺㪿㫆㪼㫉㪼㫊 㪟㪸㫃㫀㪺㪿㫆㪼㫉㪼㫊 㪟㪸㫃㫀㪺㪿㫆㪼㫉㪼㫊 㪟㪸㫃㫀㪺㪿㫆㪼㫉㪼㫊 㪟㪸㫃㫀㪺㪿㫆㪼㫉㪼㫊 㪟㪸㫃㫀㪺㪿㫆㪼㫉㪼㫊 㪟㪸㫃㫀㪺㪿㫆㪼㫉㪼㫊 㪟㪸㫃㫀㪺㪿㫆㪼㫉㪼㫊 㪟㪸㫃㫀㪺㪿㫆㪼㫉㪼㫊 㪟㪸㫃㫀㪺㪿㫆㪼㫉㪼㫊 㪟㪸㫃㫀㪺㪿㫆㪼㫉㪼㫊 㪟㪼㫄㫀㪾㫐㫄㫌㫊 㪟㫆㫃㫆㪾㫐㫄㫅㫆㫊㫌㫊 㪣㪸㪹㫉㫆㫀㪻㪼㫊 㪣㪸㪹㫉㫌㫊 㪣㪸㪹㫉㫌㫊 㪣㪸㪹㫉㫌㫊 㪥㫆㫍㪸㪺㫌㫃㫀㪺㪿㫋㪿㫐㫊 㪧㫊㪼㫌㪻㫆㫃㪸㪹㫉㫌㫊 㪧㫊㪼㫌㪻㫆㫃㪸㪹㫉㫌㫊 㪧㫊㪼㫌㪻㫆㫃㪸㪹㫉㫌㫊 㪧㫋㪼㫉㪸㪾㫆㪾㫌㫊 㪧㫋㪼㫉㪸㪾㫆㪾㫌㫊 㪪㫋㪼㫋㪿㫆㫁㫌㫃㫀㫊 㪪㫋㪼㫋㪿㫆㫁㫌㫃㫀㫊 㪪㫋㪼㫋㪿㫆㫁㫌㫃㫀㫊 㪪㫋㪼㫋㪿㫆㫁㫌㫃㫀㫊
㫁㫌㫃㫀㫊 㫁㫌㫃㫀㫊 㫉㫌㫇㪼㫊㫋㫉㫀㫊 㫀㫅㫊㫀㪻㫀㪸㫋㫆㫉 㫍㪸㫉㫀㫌㫊 㪸㫉㪾㫌㫊 㪿㫆㫉㫋㫌㫃㪸㫅㫌㫊 㫄㪼㫃㪸㫅㫆㪺㪿㫀㫉 㫄㪼㫃㪸㫅㫆㪺㪿㫀㫉 㫄㪼㫃㪸㫅㫌㫉㫌㫊 㫇㫆㪼㪺㫀㫃㫆㫇㫋㪼㫉㫌㫊 㫇㫆㪼㪺㫀㫃㫆㫇㫋㪼㫉㫌㫊 㫇㫆㪼㪺㫀㫃㫆㫇㫋㪼㫉㫌㫊 㫇㫆㪼㫐㫀 㫇㫉㫆㫊㫆㫇㪼㫀㫆㫅 㫉㪸㪻㫀㪸㫋㫌㫊 㫋㪼㫅㫌㫀㫊㫇㫀㫅㫅㫀㫊 㫋㪼㫅㫌㫀㫊㫇㫀㫅㫅㫀㫊 㫋㪼㫅㫌㫀㫊㫇㫀㫅㫅㫀㫊 㫋㫉㫀㫄㪸㪺㫌㫃㪸㫋㫌㫊 㪽㪸㫊㪺㫀㪸㫋㫌㫊 㪸㫅㫅㫌㫃㪸㫋㫌㫊 㪻㫀㫄㫀㪻㫀㪸㫋㫌㫊 㪹㫀㫄㪸㪺㫌㫃㪸㫋㫌㫊 㫄㪼㫉㫌㫃㪸 㫍㫀㫉㫀㪻㫀㫊 㫋㪸㪼㫅㫀㫌㫉㫌㫊 㪼㫆㪼㫋㪿㫀㫅㫌㫊 㫊㫀㪼㪹㫆㫃㪻㫀 㫊㫀㪼㪹㫆㫃㪻㫀 㪸㫌㫉㫀㪾㪸㫉㫀㫌㫊 㪸㫌㫉㫀㪾㪸㫉㫀㫌㫊 㪖 㪹㪸㫅㪻㪸㫅㪼㫅㫊㫀㫊 㫀㫅㫋㪼㫉㫉㫌㫇㫋㪸 㫀㫅㫋㪼㫉㫉㫌㫇㫋㪸 㫊㫋㫉㫀㪾㫀㫍㪼㫅㫋㪼㫉
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㪹㫆㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷
㪟㪼㫄㫀㫇㫋㪼㫉㫆㫅㫆㫋㫌㫊 㫁㪸㫇㫆㫅㫀㪺㫌㫊 㫁㪸㫇㫆㫅㫀㪺㫌㫊 㫁㪸㫇㫆㫅㫀㪺㫌㫊 㪽㫃㪸㪾㪼㫃㫃㫀㪽㪼㫉㪸 㪽㫃㪸㪾㪼㫃㫃㫀㪽㪼㫉㪸
㫊㪼㫄㫀㪻㫀㫊㪺㫌㫊
㩷㫂㪸㫃㫃㫆㪺㪿㫉㫆㫄㪸
㪹㫀㫅㫆㫋㫆㫇㫊㫀㫊㩷 㪺㪼㫅㫋㫉㫀㫈㫌㪸㪻㫉㫌㫊
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪝㪃㩷㪤
㪝㪃㩷㪤
㪝㪃㩷㪤
㪝㪃㩷㪤
㪋㪤㩷㪂㩷㪋㪋㩷㪪㪫㪆㪘
㪋㪏
㪋㪤㩷㪂㩷㪉㪋㪪㪤㩷㪂㩷㪈㪋㩷㪪㪫㪆㪘 㪋㪤㩷㪂㩷㪋㪋㩷㪪㪫㪆㪘 㪉㪤㩷㪂㩷㪋㪍㩷㪪㪫㪆㪘 㪉㪪㪤㩷㪂㩷㪋㪍㩷㪪㪫㪆㪘 㪉㪤㩷㪂㩷㪋㪍㩷㪪㪫㪆㪘
㪋㪉 㪋㪏 㪋㪏 㪋㪏
㪉㪤㩷㪂㩷㪈㪇㪪㪤㩷㪂㩷㪊㪉㩷㪪㪫㪆㪘
㪋㪏
㪋㪤㩷㪂㩷㪉㪋㪪㪤㩷㪂㩷㪈㪋㩷㪪㪫㪆㪘
㪋㪋
㪉㪇㪤㩷㪂㩷㪏㪪㪤㩷㪂㩷㪈㪋㩷㪪㪫㪆㪘
㪋㪉 㪋㪉
㪉㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪋㪋㩷㪪㪫㪆㪘
㪋㪏
㪋㪏㪘
㪋㪏 㪋㪪㪤㩷㪂㩷㪋㪋㩷㪪㪫㪆㪘
㪋㪏㪘
㪋㪏 㪋㪏
㪋㪏㪘 㪋㪏㪘
㪋㪏
㪍㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪊㪍㩷㪪㪫㪆㪘 㪉㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪋㪋㩷㪪㪫㪆㪘
㪋㪏 㪋㪏 㪋㪏
㪋㪏㩷㪪㪫㪆㪘
㪋㪏
㪉㪪㪤㩷㪂㩷㪋㪍㩷㪪㪫㪆㪘 㪉㪪㪤㩷㪂㩷㪋㪍㩷㪪㪫㪆㪘
㪋㪏 㪋㪏 㪉㪤㩷㪂㩷㪋㪍㩷㪪㪫㪆㪘
㪋㪏㪘
㪋㪏
㪋㪏
㪉㪪㪤㩷㪂㩷㪋㪍㩷㪪㪫㪆㪘
㪋㪏
㪋㪏
㪉㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪋㪋㩷㪪㪫㪆㪘
㪋㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪋㪉㩷㪪㪫㪆㪘
㪋㪏 㪋㪏
㪋㪏㩷㪪㪫㪆㪘
㪉㪤㩷㪂㩷㪋㪍㩷㪪㪫㪆㪘 㪉㪪㪤㩷㪂㩷㪋㪍㩷㪪㪫㪆㪘
㪋㪏 㪋㪏 㪋㪏
㪋㪏㩷㪪㪫㪆㪘 㪋㪏㩷㪪㪫㪆㪘
㪋㪏
㪋㪤㩷㪂㩷㪏㪪㪤㩷㪂㩷㪊㪍㩷㪪㪫㪆㪘 㪋㪏㩷㪪㪫㪆㪘
㪋㪏 㪋㪏 㪋㪏
㪎㪋
㪋㪤㩷㪂㩷㪉㪉㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪈㪉㪘
㪋㪏
㪌㪇
㪌㪇
㪌㪇
㪌㪉
㪎㪇
㪌㪍
㪎㪇
㪎㪇
㪌㪉
㪌㪉
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪍㪇 㪌㪉
㪋㪏
㪌㪇
㪌㪇
㪌㪇
㪋㪏
㪌㪇
㪌㪉
㪌㪉
㪌㪋
㪋㪏
㪌㪇
㪌㪇
㪋㪏
㪋㪏
㪋㪏
㪍㪇
㪌㪍
㪋㪏
㪌㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪌㪏
㪏㪋
㪌㪏
㪉
㪉
㪝 㪞 㪟 㪥㪝㪈 㪥㪝㪉 㪘㪾㪄 㪥㪦㪩㫊
㪋㪏
㪋㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪊㪏㪘
㪜 㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪝㪃㩷㪤
㪛 㪉㫅
㪝㪃㩷㪤
㪚 㪪㪼㫏
㪫㪸㪹㫃㪼㩷㪍㪅㪊㪎㩷㩷㪦㫉㪻㪼㫉㩷㪧㪜㪩㪚㪠㪝㪦㪩㪤㪜㪪㪅㩷㪧㪸㫉㫋㩷㪉㩷㪣㪸㪹㫉㫆㫀㪻㪼㫀㩷㪸㫅㪻㩷㪱㫆㪸㫉㪺㫆㫀㪻㪼㫀㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀㩷 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀㩷
㪊㪅㪌㪁㩷㪝㪚㪤
㪉㪅㪈㪁㩷㪝㪚㪤
㪉㪅㪈㪁㩷㪝㪚㪤
㪉㪅㪐㩷㪝㪛
㪈㪅㪏㪁㩷㪝㪚㪤
㪈㪅㪌㪁㩷㪝㪚㪤
㪈㪅㪏㪁㩷㪝㪚㪤
㪈㪅㪎㩷㪝㪠㪘
㪉㪅㪈㪁㩷㪝㪚㪤
㪈㪅㪋㩷㪝㪛
㪉㪅㪋㩷㪝㪛
㪠 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪋
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪦㪄㪉㪎㪃㩷㪤㪄㪉
㪦㪄㪋㪐
㪭㪄㪌㪊
㪭㪄㪌㪊㪃㩷㪞㪄㪏㪌
㪭㪄㪌㪊
㪦㪄㪉㪎㪃㩷㪦㪄㪋㪏
㪦㪄㪋㪐 㪦㪄㪊㪈
㪦㪄㪊㪈
㪧㪄 㪍 㪎
㪘㪄㪎㪌
㪦㪄㪉㪎㪃㩷㪤㪄㪉
㪞 㪄㪈㪉
㪦㪄㪉㪎
㪞 㪄㪈㪉
㪧㪄 㪍 㪎
㪘㪄㪎㪌
㪦㪄㪊㪈㪃㩷㪦㪄㪋㪏
㪦㪄㪊㪈㪃㩷㪟㪄㪋㪇
㪦㪄㪉㪎㪃㩷㪦㪄㪊㪈
㪘㪄㪎㪌
㪦㪄㪊㪈
㪘㪄㪎㪌
㪦㪄㪊㪈㪃㩷㪦㪄㪋㪏
㪦㪄㪊㪈
㪘㪄㪊㪈
㪚㪄 㪐
㪭㪄㪌㪏㪃㩷㪞㪄㪏㪌
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
㪪㪅㩷㪡㪸㫇㪸㫅
㪡㪸㫇㪸㫅㩷㩿㪚㪿㫀㪹㪸㪃㩷㪢㪸㪾㫆㫊㪿㫀㫄㪸㪀
㪡㪸㫇㪸㫅㩷㩿㪮㪸㫂㪸㫐㪸㫄㪸㪀
㪪㪅㩷㪡㪸㫇㪸㫅
㪢㫆㫉㪼㪸㩷㩿㪚㪿㪼㫁㫌㩷㪠㫊㪅㪀
㪡㪸㫇㪸㫅㩷㩿㪠㫑㫌㩷㪧㪼㫅㫀㫅㫊㫌㫃㪸㪀
㪢㫆㫉㪼㪸㩷㩿㪚㪿㪼㫁㫌㩷㪠㫊㪅㪀
㪦㪄㪊㪈
㪘㪄㪎㪌
㪦㪄㪉㪎
㪦㪄㪊㪈
㪧㪄 㪍 㪎
㪘㪄㪎㪌㪃㩷㪤㪄㪉
㪧㪄 㪍 㪎
㪡㪸㫇㪸㫅㩷㩿㪢㪸㫅㪸㪾㪸㫎㪸㪃㩷㪮㪸㫂㪸㫐㪸㫄㪸㪀 㪘㪄㪎㪌㪃㩷㪤㪄㪉
㪡㪸㫇㪸㫅㩷㩿㪮㪸㫂㪸㫐㪸㫄㪸㪀
㩿㪡㪸㫇㪸㫅㪀
㪠㫋㪸㫃㫐㩷㩿㪧㪸㫃㪼㫉㫄㫆㪀
㪠㫋㪸㫃㫐㩷㩿㪧㪸㫃㪼㫉㫄㫆㪀
㪠㫋㪸㫃㫐㩷㩿㪧㪸㫃㪼㫉㫄㫆㪀
㪡㪸㫇㪸㫅㩷㩿㪮㪸㫂㪸㫐㪸㫄㪸㪀
㩿㪡㪸㫇㪸㫅㪀 㪪㪅㩷㪡㪸㫇㪸㫅
㪪㪅㩷㪡㪸㫇㪸㫅
㪢㫆㫉㪼㪸㩷㩿㪚㪿㪼㫁㫌㩷㪠㫊㪅㪀
㪡㪸㫇㪸㫅㩷㩿㪚㪿㫀㪹㪸㪀
㪡㪸㫇㪸㫅㩷㩿㪮㪸㫂㪸㫐㪸㫄㪸㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪩㪀
㪡㪸㫇㪸㫅㩷㩿㪮㪸㫂㪸㫐㪸㫄㪸㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪩㪥㪃㩷㪙㪘㪃㩷㪩㪡㪀
㪢㫆㫉㪼㪸㩷㩿㪚㪿㪼㫁㫌㩷㪠㫊㪅㪀
㪡㪸㫇㪸㫅㩷㩿㪚㪿㫀㪹㪸㪀
㪪㪅㩷㪡㪸㫇㪸㫅
㪪㪅㩷㪡㪸㫇㪸㫅
㪡㪸㫇㪸㫅
㪡㪸㫇㪸㫅㩷㩿㪫㪸㫅㪼㪾㪸㫊㪿㫀㫄㪸㩷㪠㫊㪅㪀
㪪㪅㩷㪡㪸㫇㪸㫅
㪡㪸㫇㪸㫅㩷㩿㪰㪸㫂㫌㫊㪿㫀㫄㪸㩷㪠㫊㪅㪀
㪪㪅㩷㪡㪸㫇㪸㫅
㪪㪅㩷㪡㪸㫇㪸㫅
㪪㫇㪸㫀㫅㩷㩿㪤㪼㪻㫀㫋㪼㫉㫉㪸㫅㪼㪸㫅㪀
㪪㫇㪸㫀㫅㩷㩿㪤㪸㫃㪸㪾㪸㪀
㪠㫋㪸㫃㫐㩷㩿㪧㪸㫃㪼㫉㫄㫆㪀
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
187
㪪㫐㫄㫇㪿㫆㪻㫌㫊 㪪㫐㫄㫇㪿㫆㪻㫌㫊 㪪㫐㫄㫇㪿㫆㪻㫌㫊 㪪㫐㫄㫇㪿㫆㪻㫌㫊 㪪㫐㫄㫇㪿㫆㪻㫌㫊 㪪㫐㫄㫇㪿㫆㪻㫌㫊 㪪㫐㫄㫇㪿㫆㪻㫌㫊 㪪㫐㫄㫇㪿㫆㪻㫌㫊 㪪㫐㫄㫇㪿㫆㪻㫌㫊 㪪㫐㫄㫇㪿㫆㪻㫌㫊 㪪㫐㫄㫇㪿㫆㪻㫌㫊 㪪㫐㫄㫇㪿㫆㪻㫌㫊 㪪㫐㫄㫇㪿㫆㪻㫌㫊 㪪㫐㫄㫇㪿㫆㪻㫌㫊 㪪㫐㫄㫇㪿㫆㪻㫌㫊 㪪㫐㫄㫇㪿㫆㪻㫌㫊 㪫㪿㪸㫃㪸㫊㫊㫆㫄㪸 㪫㪿㪸㫃㪸㫊㫊㫆㫄㪸 㪫㪿㪸㫃㪸㫊㫊㫆㫄㪸 㪫㪿㪸㫃㪸㫊㫊㫆㫄㪸 㪫㪿㪸㫃㪸㫊㫊㫆㫄㪸 㪫㪿㪸㫃㪸㫊㫊㫆㫄㪸 㪫㪿㪸㫃㪸㫊㫊㫆㫄㪸 㪫㪿㪸㫃㪸㫊㫊㫆㫄㪸 㪫㪿㪸㫃㪸㫊㫊㫆㫄㪸 㪯㫐㫉㫀㪺㪿㫋㪿㫐㫊 㪯㫐㫉㫀㪺㪿㫋㪿㫐㫊 㪯㫐㫉㫀㪺㪿㫋㪿㫐㫊 㪯㫐㫉㫀㪺㪿㫋㪿㫐㫊 㪯㫐㫉㫀㪺㪿㫋㪿㫐㫊
㪻㫆㪻㪼㫉㫃㪼㫀㫅㫀 㪺㫀㫅㪼㫉㪼㫌㫊 㫄㪼㪻㫀㫋㪼㫉㫉㪸㫅㪼㫌㫊 㫄㪼㪻㫀㫋㪼㫉㫉㪸㫅㪼㫌㫊 㫄㪼㫃㫆㫇㫊 㫄㪼㫃㫆㫇㫊 㫆㪺㪼㫃㫃㪸㫋㫌㫊 㫆㪺㪼㫃㫃㪸㫋㫌㫊 㫆㪺㪼㫃㫃㪸㫋㫌㫊 㫉㫆㫀㫊㫊㪸㫃㫀 㫉㫆㫀㫊㫊㪸㫃㫀 㫉㫆㫀㫊㫊㪸㫃㫀 㫉㫆㫀㫊㫊㪸㫃㫀 㫉㫆㫊㫋㫉㪸㫋㫌㫊 㫋㫀㫅㪺㪸 㫋㫀㫅㪺㪸 㪸㫄㪹㫃㫐㪺㪼㫇㪿㪸㫃㪸 㪺㫌㫇㫀㪻㫆 㪺㫌㫇㫀㪻㫆 㫃㫌㫅㪸㫉㪼 㫃㫌㫋㪼㫊㪺㪼㫅㫊 㫃㫌㫋㪼㫊㪺㪼㫅㫊 㫇㪸㫍㫆 㫇㪸㫍㫆 㫈㫌㫀㫅㫈㫌㪼㫍㫀㫋㫋㪸㫋㪸 㪻㪼㪸 㪻㪼㪸 㫅㫆㫍㪸㪺㫌㫃㪸 㫇㪸㫍㫆 㫋㫎㫀㫊㫋㫀㫀
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㪹㫆㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷
㪟㪼㫄㫀㫇㫋㪼㫉㫆㫅㫆㫋㫌㫊
㫊㪺㫀㫅㪸 㪚㫉㪼㫅㫀㫃㪸㪹㫉㫌㫊
㪚㫉㪼㫅㫀㫃㪸㪹㫉㫌㫊㩷㫈㫌㫀㫅㫈㫌㪼㫄㪸㪺㫌㫃㪸㫋㫌㫊
㪚㫉㪼㫅㫀㫃㪸㪹㫉㫌㫊
㪚㫉㪼㫅㫀㫃㪸㪹㫉㫌㫊
㪾㫉㫀㫊㪼㫌㫊
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪋㪋 㪉㪉
㪈㪏㩷㪤㪆㪪㪤㩷㪂㩷㪋㪘
㪋㪋㪘
㪏㪪㪤㩷㪂㩷㪋㪇㪘
㪋㪏 㪝
㪋㪋㪘
㪋㪋㪘
㪋㪋
㪋㪋
㪋㪇
㪋㪋
㪌㪍
㪋㪋
㪋㪋
㪋㪏
㪋㪏㩷㪪㪫㪆㪘
㪋㪏
㪋㪏
㪋㪏㪘
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏㩷㪪㪫㪆㪘
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪎㪏
㪍㪇
㪎㪋
㪎㪋
㪎㪋
㪎㪏
㪌㪍
㪌㪉
㪐㪇
㪎㪏
㪋㪇
㪋㪋
㪌㪍
㪋㪋
㪋㪋
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪏㪉
㪏㪉
㪏㪏
㪎㪋
㪎㪋
㪎㪋
㪏㪋
㪏㪉
㪐㪉
㪐㪇
㪐㪇
㪏㪇
㪏㪏
㪉
㪉
㪉
㪉
㪍
㪉
㪉
㪝 㪞 㪟 㪥㪝㪈 㪥㪝㪉 㪘㪾㪄 㪥㪦㪩㫊
㪋㪏
㪋㪏㪘
㪋㪏
㪋㪏㩷㪪㪫㪆㪘
㪋㪏 㪋㪏㪘
㪋㪏㩷㪪㪫㪆㪘
㪋㪏
㪋㪏
㪈㪍㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪈㪋㪘
㪋㪏
㪋㪏㪘
㪊㪋㩷㪤㪆㪪㪤㪆㪪㪫㩷㪂㩷㪈㪋㪘
㪋㪏
㪋㪏
㪋㪇㩷㪤㪆㪪㪤㪆㪪㪫㩷㪂㩷㪏㪘
㪊㪍㩷㪤㪆㪪㪤㪆㪪㪫㩷㪂㩷㪉㪘
㪋㪏
㪋㪍
㪊㪏
㪊㪉㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪉㪘 㪊㪍㩷㪤㪆㪪㪤㩷㪂㩷㪉㪘
㪊㪏 㪊㪏
㪏㪤㩷㪂㩷㪈㪏㪪㪤㩷㪂㩷㪏㪪㪫㩷㪂㩷㪈㪋㪘
㪋㪏 㪊㪍㩷㪤㪆㪪㪤㪆㪪㪫㩷㪂㩷㪈㪉㪘
㪈㪇㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪈㪏㪘
㪋㪏 㪋㪏
㪈㪇㪤㩷㪂㩷㪊㪍㪪㪫
㪋㪍
㪋㪍
㪉㪤㩷㪂㩷㪋㪉㩷㪪㪤㪆㪪㪫㩷㪂㩷㪉㪘
㪉㪉㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪍㪘
㪋㪏 㪋㪍
㪊㪉㩷㪤㪆㪪㪤㪆㪪㪫㩷㪂㩷㪈㪍㪘
㪉㪋㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪏㪘
㪜 㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪋㪏
㪋㪏
㪛 㪉㫅
㪝㪃㩷㪤
㪝
㪝㪃㩷㪤
㪝㪃㩷㪤
㪝㪃㩷㪤
㪝㪃㩷㪤
㪚 㪪㪼㫏
㪫㪸㪹㫃㪼㩷㪍㪅㪊㪎㩷㩷㪦㫉㪻㪼㫉㩷㪧㪜㪩㪚㪠㪝㪦㪩㪤㪜㪪㪅㩷㪧㪸㫉㫋㩷㪉㩷㪣㪸㪹㫉㫆㫀㪻㪼㫀㩷㪸㫅㪻㩷㪱㫆㪸㫉㪺㫆㫀㪻㪼㫀㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀㩷 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀㩷
㪈㪅㪎㪁㩷㪝㪚㪤
㪈㪅㪏㪁㩷㪝㪚㪤
㪈㪅㪍㩷㪝㪛
㪉㪅㪊㪁㩷㪝㪚㪤
㪉㪅㪉㩷㪝㪛
㪈㪅㪌㩷㪝㪚㪤
㪉㪅㪇㩷㪝㪛
㪈㪅㪇㩷㪝㪛
㪉㪅㪉㩷㪝㪛
㪈㪅㪈㩷㪝㪛
㪉㪅㪌㩷㪝㪛
㪠 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪦㪄㪊㪈
㪚㪄 㪐
㪭㪄㪌㪊
㪘㪄㪎㪌
㪦㪄㪉㪎
㪦㪄㪉㪎
㪬 㪄㪋㪉
㪦㪄㪊㪈㪃㩷㪘㪄㪎㪌㪃㩷㪤㪄㪉
㪦㪄㪊㪈
㪭㪄㪌㪊㪃㩷㪞㪄㪏㪌
㪭㪄㪏㪃㩷㪭㪄㪏㪍
㪭㪄㪏㪃㩷㪞㪄㪏㪌
㪚㪄 㪐
㪭㪄㪏
㪣㪄㪍㪎
㪭㪄㪌㪊
㪭㪄㪏
㪘㪄㪊㪈
㪭㪄㪌㪊㪃㩷㪞㪄㪏㪌
㪚㪄 㪊 㪈
㪣㪄㪍㪎
㪚㪄 㪐
㪭㪄㪌㪊
㪭㪄㪏㪃㩷㪞㪄㪏㪌
㪚㪄 㪉 㪐
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
㪦㪄㪉㪎 㪭㪄㪌㪊㪃㩷㪭㪄㪍㪇 㪡㪸㫇㪸㫅㩷㩿㪮㪸㫂㪸㫐㪸㫄㪸㪀
㪬㪄㪋㪊
㪡㪸㫇㪸㫅 㩿㪮㪸㫂㪸㫐㪸㫄㪸㪃㩷㪫㫆㫂㫌㫊㪿㫀㫄㪸㪀 㪬㪄㪋㪊
㪠㫋㪸㫃㫐㩷㩿㪧㪸㫃㪼㫉㫄㫆㪀
㪡㪸㫇㪸㫅㩷㩿㪮㪸㫂㪸㫐㪸㫄㪸㪀
㪡㪸㫇㪸㫅 㩿㪮㪸㫂㪸㫐㪸㫄㪸㪃㩷㪫㫆㫂㫌㫊㪿㫀㫄㪸㪀 㪬㪄㪋㪊
㪪㪅㩷㪡㪸㫇㪸㫅
㪪㫇㪸㫀㫅㩷㩿㪤㪸㫃㪸㪾㪸㪀
㪠㫋㪸㫃㫐㩷㩿㪧㪸㫃㪼㫉㫄㫆㪀
㪡㪸㫇㪸㫅㩷㩿㪰㪸㫂㫌㫊㪿㫀㫄㪸㩷㪠㫊㪅㪀
㪡㪸㫇㪸㫅㩷㩿㪮㪸㫂㪸㫐㪸㫄㪸㪀
㪡㪸㫇㪸㫅㩷㩿㪮㪸㫂㪸㫐㪸㫄㪸㪀
㪡㪸㫇㪸㫅㩷㩿㪮㪸㫂㪸㫐㪸㫄㪸㪀
㪡㪸㫇㪸㫅
㪪㪅㩷㪡㪸㫇㪸㫅
㪠㫋㪸㫃㫐㩷㩿㪧㪸㫃㪼㫉㫄㫆㪀
㪙㫃㪸㪺㫂㩷㪪㪼㪸
㪙㫃㪸㪺㫂㩷㪪㪼㪸
㪪㫇㪸㫀㫅㩷㩿㪤㪸㫃㪸㪾㪸㪀
㪙㫃㪸㪺㫂㩷㪪㪼㪸
㪪㫇㪸㫀㫅㩷㩿㪤㪸㫃㪸㪾㪸㪀
㪠㫋㪸㫃㫐㩷㩿㪧㪸㫃㪼㫉㫄㫆㪀
㪬㪪㪪㪩
㪪㫇㪸㫀㫅㩷㩿㪤㪼㪻㫀㫋㪼㫉㫉㪸㫅㪼㪸㫅㪀
㪠㫋㪸㫃㫐㩷㩿㪧㪸㫃㪼㫉㫄㫆㪀
㪠㫋㪸㫃㫐㩷㩿㪩㫆㫄㪸㪀
㪪㫇㪸㫀㫅㩷㩿㪤㪸㫃㪸㪾㪸㪀
㪪㫇㪸㫀㫅㩷㩿㪤㪸㫃㪸㪾㪸㪀
㪠㫋㪸㫃㫐㩷㩿㪧㪸㫃㪼㫉㫄㫆㪀
㪬㪪㪪㪩
㪠㫋㪸㫃㫐㩷㩿㪧㪸㫃㪼㫉㫄㫆㪀
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
188
㫁㪸㫇㫆㫅㫀㪺㫌㫊 㫊㫆㫉㪻㫀㪻㫌㫊 㫊㫆㫉㪻㫀㪻㫌㫊 㫋㫉㫀㫊㫇㫀㫅㫆㫊㫌㫊 㪸㫏㫀㫃㫃㪸㫉㪼
㪹㪼㫅㫁㪸㫄㫀㫅㫀 㫁㪸㫇㫆㫅㫀㪺㫌㫊 㪹㫌㫉㪾㪼㫉㫀 㪹㫌㫉㪾㪼㫉㫀 㪿㪼㫏㪸㪾㫉㪸㫄㫄㫌㫊 㪽㪸㪹㫉㫀㪺㫀㫀 㪽㪸㪹㫉㫀㪺㫀㫀 㫄㫀㪺㫉㫆㫊㫋㫆㫄㫌㫊
㪘㫃㪼㪺㫋㫉㫀㪸㫊 㪚㪿㫀㫉㫆㫃㫆㫇㪿㫀㫊 㪛㫀㪺㫋㫐㫆㫊㫆㫄㪸 㪛㫀㪺㫋㫐㫆㫊㫆㫄㪸 㪜㫉㫅㫆㪾㫉㪸㫄㫄㫌㫊 㪣㫌㫄㫇㪼㫅㫌㫊 㪣㫌㫄㫇㪼㫅㫌㫊 㪱㫆㪸㫉㪺㪿㫀㪸㫊
㪧㪿㫆㫃㫀㫊 㪧㪿㫆㫃㫀㫊
㪧㪿㫆㫃㫀㪻㪸㪼
㪪㫋㫀㪺㪿㪸㪼㫀㪻㪸㪼
㫅㪼㪹㫌㫃㫆㫊㪸 㫇㫀㪺㫋㪸
㪻㪼㪸㫉㪹㫆㫉㫅㫀 㪹㫉㪸㪺㪿㫐㪺㪼㫇㪿㪸㫃㫌㫄 㪹㫉㪸㪺㪿㫐㪺㪼㫇㪿㪸㫃㫌㫄 㪼㫃㫆㫅㪾㪸㫋㫌㫊 㫍㫀㫍㫀㫇㪸㫉㫌㫊
㪣㫐㪺㫆㪻㫀㪺㪿㫋㪿㫐㫊 㪧㪸㪺㪿㫐㪺㪸㫉㪸 㪧㪸㪺㪿㫐㪺㪸㫉㪸 㪱㫆㪸㫉㪺㪼㫊 㪱㫆㪸㫉㪺㪼㫊
㪱㫆㪸㫉㪺㫀㪻㪸㪼㩷
㫁㫆㫉㪻㪸㫅㫀
㪩㫆㫅㫈㫌㫀㫃㫌㫊
㪪㫌㪹㫆㫉㪻㪼㫉㩷㪱㫆㪸㫉㪺㫆㫀㪻㪼㫀㩷 㪙㪸㫋㪿㫐㫄㪸㫊㫋㪼㫉㫀㪻㪸㪼㩷
㪚㪸㫃㫆㫋㫆㫄㫌㫊 㪚㪿㫃㫆㫉㫌㫉㫌㫊 㪚㪿㫃㫆㫉㫌㫉㫌㫊 㪪㪺㪸㫉㫌㫊 㪪㫇㪸㫉㫀㫊㫆㫄㪸
㪪㪺㪸㫉㫀㪻㪸㪼㩷
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㪹㫆㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷
㪜㫅㪼㪻㫉㫀㪸㫊 㫇㫀㪺㫋㫌㫊
㪘㫑㫌㫄㪸㩷㪼㫄㫄㫅㫀㫆㫅
㪪㪺㪸㫉㫌㫊㩷㫉㪿㫆㪻㫌㫉㫆㫇㫋㪼㫉㫌㫊 㪪㪺㪸㫉㫌㫊 㪺㫆㪼㫃㪼㫊㫋㫀㫅㫌㫊
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪊㪇㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪋㪘
㪋㪏
㪤
㪤
㪉㪤㩷㪂㩷㪈㪌㪪㪤㩷㪂㩷㪊㪇㩷㪪㪫㪆㪘 㪉㪋㪤㩷㪂㩷㪋㪘
㪋㪎 㪉㪏
㪋㪍
㪉㪍㪤
㪉㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪊㪉㩷㪪㪫㪆㪘
㪋㪏
㪉㪍
㪋㪏㪘
㪋㪏
㪈㪉㪤㩷㪂㩷㪈㪏㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪈㪉㪘 㪈㪋㪤㩷㪂㩷㪈㪏㪪㪤㩷㪂㩷㪏㪪㪫㩷㪂㩷㪍㪘
㪋㪏 㪋㪍
㪍㪤㩷㪂㩷㪈㪇㪪㪤㩷㪂㩷㪋㪇㪘
㪈㪏㪤㩷㪂㩷㪈㪏㪪㪤㩷㪂㩷㪈㪉㪘
㪉㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪈㪏㪪㪫㩷㪂㩷㪉㪉㪘
㪌㪍
㪋㪏
㪋㪏
㪎㪉
㪤 㪝㪃㩷㪤
㪊㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪍㪊㪘
㪋㪏
㪉㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪋㪉㩷㪪㪫㪆㪘
㪋㪏
㪉㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪋㪋㩷㪪㪫㪆㪘
㪉㪉㩷㪤㪆㪪㪤㩷㪂㩷㪋㪘
㪍㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪉㪉㪘
㪍㪤㩷㪂㩷㪈㪇㪪㪤㩷㪂㩷㪉㪋㪪㪫㩷㪂㩷㪏㪘
㪈㪇㪤㩷㪂㩷㪏㪪㪤㩷㪂㩷㪊㪇㩷㪪㪫㪆㪘
㪏㪤㩷㪂㩷㪈㪇㪪㪤㩷㪂㩷㪊㪇㩷㪪㪫㪆㪘
㪜 㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪝㪃㩷㪤
㪉㪍
㪋㪍
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪛 㪉㫅
㪝㪃㩷㪤
㪝㪃㩷㪤
㪚 㪪㪼㫏
㪫㪸㪹㫃㪼㩷㪍㪅㪊㪎㩷㩷㪦㫉㪻㪼㫉㩷㪧㪜㪩㪚㪠㪝㪦㪩㪤㪜㪪㪅㩷㪧㪸㫉㫋㩷㪉㩷㪣㪸㪹㫉㫆㫀㪻㪼㫀㩷㪸㫅㪻㩷㪱㫆㪸㫉㪺㫆㫀㪻㪼㫀㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀㩷 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀㩷
㪌㪉
㪌㪉
㪍㪋
㪍㪋
㪋㪏
㪎㪏
㪎㪏
㪎㪉
㪏㪋
㪌㪍
㪐㪉
㪏㪈
㪌㪋
㪌㪉
㪋㪏
㪌㪉
㪌㪉
㪋㪏
㪏㪍
㪏㪋
㪎㪉
㪏㪋
㪎㪋
㪐㪉
㪏㪈
㪋㪏
㪍㪍 㪎㪇
㪍㪋 㪏㪏
㪍㪍
㪍㪍
㪉
㪊
㪉
㪉
㪉
㪉
㪝 㪞 㪟 㪥㪝㪈 㪥㪝㪉 㪘㪾㪄 㪥㪦㪩㫊
㪉㪅㪐㩷㪝㪛
㪊㪅㪉㩷㪝㪛㪃㩷㪉㪅㪉㩷㪝㪠㪘
㪋㪅㪈㪁㩷㪝㪚㪤
㪠 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪘㪚㪥㪔㪋㪏㪖
㪘㪚㪥㪔㪋㪍㪖
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪊㪯
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪡㪸㫇㪸㫅㩷㩿㪟㫆㫂㫂㪸㫀㪻㫆㪀
㪚㪿㫀㫅㪸㩷㩿㪣㫀㪸㫆㫅㫀㫅㪾㪀
㪚㪿㫀㫅㪸㩷㩿㪣㫀㪸㫆㫅㫀㫅㪾㪀
㪩㫌㫊㫊㫀㪸㪃㩷㪮㪿㫀㫋㪼㩷㪪㪼㪸
㪩㫌㫊㫊㫀㪸㪃㩷㪮㪿㫀㫋㪼㩷㪪㪼㪸
㪚㪿㫀㫅㪸㩷㩿㪣㫀㪸㫆㫅㫀㫅㪾㪀
㪡㪸㫇㪸㫅㩷㩿㪰㪸㫄㪸㪾㫌㪺㪿㫀㪀
㪡㪸㫇㪸㫅㩷㩿㪢㪸㫅㪸㪾㪸㫎㪸㪀
㪚㪿㫀㫅㪸㩷㩿㪣㫀㪸㫆㫅㫀㫅㪾㪀
㪚㪿㫀㫅㪸㩷㩿㪣㫀㪸㫆㫅㫀㫅㪾㪀
㪙㪸㫃㫋㫀㪺㩷㪪㪼㪸㪃㩷㪮㪿㫀㫋㪼㩷㪪㪼㪸
㪚㪿㫀㫅㪸㩷㩿㪣㫀㪸㫆㫅㫀㫅㪾㪀
㪩㫆㫊㫊㩷㪪㪼㪸
㪩㫆㫊㫊㩷㪪㪼㪸
㪩㫆㫊㫊㩷㪪㪼㪸
㩿㪚㪸㫅㪸㪻㪸㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪙㪘㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪩㪥㪀
㪡㪸㫇㪸㫅
㪡㪸㫇㪸㫅㩷㩿㪦㪾㪸㫊㪸㫎㪸㫉㪸㪀
㪡㪸㫇㪸㫅㩷㩿㪚㪿㫀㪹㪸㪀
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪤㪄㪈㪋
㪤㪄㪊㪊
㪤㪄㪊㪍
㪣㪄㪏㪎㪃㩷㪣㪄㪏㪏
㪣㪄㪏㪎㪃㩷㪣㪄㪏㪏
㪤㪄㪊㪈
㪥 㪄㪊㪋
㪘㪄㪌㪐
㪤㪄㪊㪍
㪤㪄㪊㪋
㪢㪄㪏㪇
㪤㪄㪊㪍
㪤㪄㪏㪐
㪤㪄㪏㪐
㪤㪄㪏㪐㪃㩷㪟㪄㪋㪈
㪤㪄㪍㪈
㪪 㪄㪈㪎㪏
㪪 㪄㪈㪎㪏
㪦㪄㪋㪏
㪘㪄㪎㪌
㪘㪄㪎㪌
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
189
㫄㪸㫉㫉㫀 㫄㪸㫉㫉㫀 㫄㪸㫎㫊㫆㫅㫀 㫄㪸㫎㫊㫆㫅㫀 㪸㫌㫊㫋㫉㪸㫃㫀㫊 㪾㪼㫆㫉㪾㫀㪸㫅㫌㫊 㪼㫍㪸㫅㫊㫀㫀 㪹㫉㪼㫍㫀㪺㪼㫇㫊 㪾㫃㪸㪺㫀㪸㫃㫀㫊
㫄㫀㫉㫌㫊 㫆㫉㫀㪸㫅㪸㪼 㫊㪿㪸㪺㫂㫃㪼㫋㫆㫅㫀 㫍㪼㫃㫀㪽㪼㫉 㪹㪸㫉㫊㫌㫂㫆㫍㫀 㪻㫆㫃㫀㪺㪿㫆㪹㫉㪸㫅㪺㪿㫀㪸㫋㪸 㫄㪸㫉㫄㫆㫉㪸㫋㪸 㫄㪼㫅㫋㪼㫃㫃㪸 㫊㪺㫆㫋㫋㫀 㫊㪺㫆㫋㫋㫀
㪙㫆㫍㫀㪺㪿㫋㫌㫊 㪙㫆㫍㫀㪺㪿㫋㫌㫊 㪙㫆㫍㫀㪺㪿㫋㫌㫊 㪚㫆㫋㫋㫆㫇㪼㫉㪺㪸 㪚㫆㫋㫋㫆㫇㪼㫉㪺㪸
㪸㫅㪾㫌㫊㫋㫀㪽㫉㫆㫅㫊 㪻㫀㪸㪺㪸㫅㫋㪿㫌㫊 㫍㪸㫉㫀㪼㪾㪸㫋㫌㫊 㪾㫆㪹㫀㫆 㪾㫆㪹㫀㫆
㪙㫆㫍㫀㪺㪿㫋㪿㫐㫀㪻㪸㪼㩷㩿㪔㩷㪙㫆㫍㫀㪺㪿㫋㫀㪻㪸㪼㪀
㪙㪸㫋㪿㫐㪻㫉㪸㪺㫆 㪙㪸㫋㪿㫐㪻㫉㪸㪺㫆 㪚㫐㪾㫅㫆㪻㫉㪸㪺㫆 㪚㫐㪾㫅㫆㪻㫉㪸㪺㫆 㪞㪼㫉㫃㪸㪺㪿㪼㪸 㪧㪸㫉㪸㪺㪿㪸㪼㫅㫀㪺㪿㫋㪿㫐㫊 㪧㫉㫀㫆㫅㫆㪻㫉㪸㪺㫆 㪧㫊㫀㫃㫆㪻㫉㪸㪺㫆 㪩㪸㪺㫆㫍㫀㫋㫑㫀㪸
㪙㪸㫋㪿㫐㪻㫉㪸㪺㫆㫅㫀㪻㪸㪼
㪘㫉㫋㪼㪻㫀㪻㫉㪸㪺㫆 㪘㫉㫋㪼㪻㫀㪻㫉㪸㪺㫆 㪘㫉㫋㪼㪻㫀㪻㫉㪸㪺㫆 㪟㫀㫋㫀㫆㪻㫉㪸㪺㫆 㪧㫆㪾㫆㫅㫆㫇㪿㫉㫐㫅㪼 㪧㫆㪾㫆㫅㫆㫇㪿㫉㫐㫅㪼 㪧㫆㪾㫆㫅㫆㫇㪿㫉㫐㫅㪼 㪧㫆㪾㫆㫅㫆㫇㪿㫉㫐㫅㪼 㪧㫆㪾㫆㫅㫆㫇㪿㫉㫐㫅㪼 㪧㫆㪾㫆㫅㫆㫇㪿㫉㫐㫅㪼
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㪹㫆㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷 㪪㫌㪹㫆㫉㪻㪼㫉㩷㪥㫆㫋㫆㫋㪿㪼㫅㫀㫆㫀㪻㪼㫀㩷 㪘㫉㫋㪼㪻㫀㪻㫉㪸㪺㫆㫅㫀㪻㪸㪼
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪋㪍
㪤
㪝
㪋㪏
㪝㪃㩷㪤
㪋㪏㪘
㪋㪏㪘
㪋㪏㪘
㪋㪤㩷㪂㩷㪊㪉㪘
㪋㪏
㪋㪏㪘
㪋㪏㪄㪌㪇 㪋㪏㪄㪌㪇㩷㪘
㪋㪏
㪝㪃㩷㪤
㪋㪏
㪊㪍
㪋㪏
㪋㪏
㪋㪏
㪋㪇
㪋㪏
㪋㪏
㪋㪏㪄㪌㪇 㪋㪏㪄㪌㪇
㪋㪏
㪋㪏
㪋㪏
㪋㪇
㪋㪏
㪉
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪤㪸㪾㪼㫃㫃㪸㫅㩷㪪㫋㫉㪸㫀㫋
㪚㪿㫀㫃㪼
㪥㪼㫎㩷㪱㪼㪸㫃㪸㫅㪻
㪫㫉㫀㫊㫋㪸㫅㩷㪻㪸㩷㪚㫌㫅㪿㪸
㪫㪸㫊㫄㪸㫅㫀㪸
㪮㪼㪻㪻㪼㫃㫃㩷㪪㪼㪸
㪮㪼㪻㪻㪼㫃㫃㩷㪪㪼㪸
㪩㫆㫊㫊㩷㪪㪼㪸
㪮㪼㪻㪻㪼㫃㫃㩷㪪㪼㪸
㪮㪼㪻㪻㪼㫃㫃㩷㪪㪼㪸 㪮㪼㪻㪻㪼㫃㫃㩷㪪㪼㪸
㪩㫆㫊㫊㩷㪪㪼㪸
㪮㪼㪻㪻㪼㫃㫃㩷㪪㪼㪸
㪮㪼㪻㪻㪼㫃㫃㩷㪪㪼㪸
㪮㪼㪻㪻㪼㫃㫃㩷㪪㪼㪸
㪪㫆㫌㫋㪿㩷㪦㫉㫂㫅㪼㫐㩷㪠㫊㪅
㪮㪼㪻㪻㪼㫃㫃㩷㪪㪼㪸
㪩㫆㫊㫊㩷㪪㪼㪸
㪮㪼㪻㪻㪼㫃㫃㩷㪪㪼㪸
㪧㪄㪌㪎
㪦㪄㪎㪇
㪤㪄㪏㪐㪃㩷㪚㪄㪉㪇
㪦㪄㪎㪇
㪦㪄㪎㪇 㪦㪄㪎㪇
㪤㪄㪏㪐
㪦㪄㪎㪇
㪦㪄㪎㪇
㪦㪄㪎㪇
㪧㪄㪌㪎
㪦㪄㪎㪇
㪚㪄㪉㪈
㪦㪄㪎㪇
㪦㪄㪎㪇
㪧㪄㪌㪏
㪧㪄㪌㪌
㪤㪄㪈㪉㪊
㪤㪄㪈㪉㪊
㪤㪄㪈㪉㪊
㪦㪄㪎㪇
㪦㪄㪎㪇 㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪯㪯㪃㩷㪘㪚㪥㪔㪋㪇 㪯㪰㪈㪰㪉㪃㩷㪘㪚㪥㪔㪋㪇
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪪㫆㫌㫋㪿㩷㪞㪼㫆㫉㪾㫀㪸㩷㪠㫊㪅 㪮㪼㪻㪻㪼㫃㫃㩷㪪㪼㪸
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
㪦㪄㪎㪇
㪋㪏㪘
㪉㪅㪏㩷㪝㪛
㪋㪅㪈㩷㪝㪛
㪘㪚㪥㪔㪋㪍 㪘㪚㪥㪔㪋㪏
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪋㪏
㪌㪉㪄㪌㪋 㪌㪉㪄㪌㪋
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪦㪄㪎㪇
㪉㪤㩷㪂㩷㪉㪄㪋㩷㪪㪤㩷㪂㩷㪋㪉㪄㪋㪋㩷㪘
㪌㪋
㪋㪋㪄㪋㪍
㪋㪉 㪋㪉
㪌㪉
㪌㪉
㪌㪉
㪌㪉
㪌㪋
㪌㪉
㪌㪋
㪌㪋
㪌㪇
㪞 㪟 㪠 㪥㪝㪉 㪘㪾㪄 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㪥㪦㪩㫊 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪉㪇
㪋㪏
㪝
㪉㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪋㪉㩷㪪㪫㪆㪘
㪋㪉 㪋㪉
㪌㪉
㪌㪉
㪌㪉
㪌㪉
㪌㪉
㪌㪉
㪌㪉
㪌㪋
㪌㪋
㪌㪇
㪝 㪥㪝㪈
㪋㪏
㪋㪏
㪝
㪋㪪㪤㩷㪂㩷㪊㪋㪘 㪊㪪㪤㩷㪂㩷㪊㪍㪘
㪍㪪㪤㩷㪂㩷㪋㪇㪘
㪉㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪋㪇㪘
㪉㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪋㪇㪘
㪉㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪋㪇㪘
㪍㪪㪤㩷㪂㩷㪋㪇㩷㪪㪫㪆㪘
㪋㪋㪄㪋㪍 㪋㪋㪄㪋㪍㩷㪪㪫㪆㪘
㪝
㪝
㪊㪏 㪊㪐
㪋㪍
㪝
㪝 㪤
㪋㪍
㪝㪃㩷㪤
㪋㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪊㪏㪘
㪋㪍 㪋㪍
㪋㪍
㪝㪃㩷㪤 㪤
㪉㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪋㪇㪘
㪋㪍
㪝㪃㩷㪤
㪉㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪊㪏㪘
㪋㪍
㪝㪃㩷㪤
㪉㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪊㪏㪘
㪉㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪋㪉㪘
㪜 㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪋㪍
㪋㪍
㪛 㪉㫅
㪝㪃㩷㪤
㪚 㪪㪼㫏
㪫㪸㪹㫃㪼㩷㪍㪅㪊㪏㩷㩷㪦㫉㪻㪼㫉㩷㪧㪜㪩㪚㪠㪝㪦㪩㪤㪜㪪㪅㩷㪧㪸㫉㫋㩷㪊㩷㪥㫆㫋㫆㫋㪿㪼㫅㫀㫆㫀㪻㪼㫀㪃㩷㪙㫃㪼㫅㫅㫀㫆㫀㪻㪼㫀㪃㩷㪸㫅㪻㩷㪚㪸㫃㫃㫀㫆㫅㫐㫄㫆㫀㪻㪼㫀㩷
190
㪟㪸㫉㫇㪸㪾㫀㪽㪼㫉 㪟㪸㫉㫇㪸㪾㫀㪽㪼㫉
㪟㪸㫉㫇㪸㪾㫀㪽㪼㫉㫀㪻㪸㪼
㪜㫃㪼㪾㫀㫅㫆㫇㫊
㪜㫃㪼㪾㫀㫅㫆㫇㫀㪻㪸㪼
㪚㪿㪸㪼㫅㫆㪺㪼㫇㪿㪸㫃㫌㫊 㪚㪿㪸㪼㫅㫆㪻㫉㪸㪺㫆 㪚㪿㪸㪼㫅㫆㪻㫉㪸㪺㫆 㪚㪿㪸㫄㫇㫊㫆㪺㪼㫇㪿㪸㫃㫌㫊 㪚㪿㪸㫅㫅㫀㪺㪿㫋㪿㫐㫊 㪚㪿㫀㫆㫅㫆㪹㪸㫋㪿㫐㫊㪺㫌㫊 㪚㪿㫀㫆㫅㫆㪻㫉㪸㪺㫆 㪚㪿㫀㫆㫅㫆㪻㫉㪸㪺㫆 㪚㪿㫀㫆㫅㫆㪻㫉㪸㪺㫆 㪚㪿㫀㫆㫅㫆㪻㫉㪸㪺㫆 㪚㪿㫀㫆㫅㫆㪻㫉㪸㪺㫆 㪚㪿㫀㫆㫅㫆㪻㫉㪸㪺㫆 㪚㫉㫐㫆㪻㫉㪸㪺㫆 㪚㫉㫐㫆㪻㫉㪸㪺㫆 㪥㪼㫆㫇㪸㪾㪼㫋㫆㫇㫊㫀㫊 㪧㪸㪾㪼㫋㫆㫇㫊㫀㫊 㪧㪸㪾㪼㫋㫆㫇㫊㫀㫊 㪧㪸㪾㪼㫋㫆㫇㫊㫀㫊 㪧㪸㪾㪼㫋㫆㫇㫊㫀㫊 㪧㫊㪼㫌㪻㫆㪺㪿㪸㪼㫅㫀㪺㪿㫋㪿㫐㫊 㪋㪎
㪤
㪋㪏
㪋㪏 㪋㪏
㪋㪏
㪋㪤㩷㪂㩷㪏㪪㪤㩷㪂㩷㪊㪍㪘
㪋㪏
㪝
㪝㪃㩷㪤
㪉㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪋㪇㪘
㪋㪎
㪤
㪋㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪏㪪㪫㩷㪂㩷㪊㪋㪘
㪉㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪋㪉㪘
㪋㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪋㪉㪘
㪊㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪊㪉㪘
㪊㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪊㪉㪘 㪉㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪊㪋㪘
㪉㪤㩷㪂㩷㪏㪪㪤㩷㪂㩷㪊㪏㪘
㪉㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪋㪉㪘
㪋㪎 㪋㪏
㪉㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪋㪉㪘
㪋㪤㩷㪂㩷㪋㪋㪘
㪉㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪊㪐㪘
㪋㪏
㪋㪏
㪤
㪤 㪝
㪋㪎
㪤
㪉㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪋㪇㪘
㪝㪃㩷㪤
㪋㪏
㪝
㪉㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪋㪈㪘
㪋㪏
㪋㪎
㪤
㪉㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪋㪉㪘
㪉㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪋㪉㪘
㪋㪏
㪋㪏
㪝
㪤
㪋㪏
㪝
㪉㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪋㪇㪘㩷㪂㩷㪉㪘㪄㫊㪸㫋㪅 㪌㪪㪤㩷㪂㩷㪋㪄㪍㩷㪪㪤㩷㪂㩷㪊㪏㪄㪊㪍㩷㪘
㪌㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪊㪍㪘
㪋㪤㩷㪂㩷㪋㪋㪘 㪋㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪊㪏㪘
㪜 㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪤
㪋㪏 㪋㪎
㪝㪃㩷㪤 㪤
㪋㪏
㪋㪏 㪋㪏
㪛 㪉㫅
㪤 㪝
㪚 㪪㪼㫏
㪸㫅㫋㪸㫉㪺㫋㫀㪺㫌㫊
㪸㫅㫋㪸㫉㪺㫋㫀㪺㫌㫊 㪸㫅㫋㪸㫉㪺㫋㫀㪺㫌㫊
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㫊㫇㪅
㫄㪸㪺㫃㫆㫍㫀㫅㫌㫊
㪸㪺㪼㫉㪸㫋㫌㫊 㫎㫀㫃㫊㫆㫅㫀 㫎㫀㫃㫊㫆㫅㫀 㪾㫌㫅㫅㪸㫉㫀 㫉㪿㫀㫅㫆㪺㪼㫉㪸㫋㫌㫊 㪻㪼㫎㫀㫋㫋㫀 㪿㪸㫄㪸㫋㫌㫊 㪿㪸㫄㪸㫋㫌㫊 㪿㪸㫄㪸㫋㫌㫊 㫄㫐㪼㫉㫊㫀 㫄㫐㪼㫉㫊㫀 㫉㪸㫊㫋㫉㫆㫊㫇㫀㫅㫆㫊㫌㫊 㪸㫋㫂㫀㫅㫊㫆㫅㫀 㪸㫋㫂㫀㫅㫊㫆㫅㫀 㫀㫆㫅㪸㪿 㫄㪸㪺㫉㫆㫇㫋㪼㫉㫌㫊 㫄㪸㪺㫉㫆㫇㫋㪼㫉㫌㫊 㫄㪸㪺㫉㫆㫇㫋㪼㫉㫌㫊 㫄㪸㪺㫌㫃㪸㫋㫌㫊 㪾㪼㫆㫉㪾㫀㪸㫅㫌㫊
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㪹㫆㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷 㪚㪿㪸㫅㫅㫀㪺㪿㫋㪿㫐㫀㪻㪸㪼
㪌㪏
㪌㪉 㪌㪏
㪌㪋
㪌㪇
㪌㪋
㪍㪇
㪌㪍
㪍㪉
㪍㪉 㪍㪉
㪌㪏
㪌㪋
㪌㪋
㪌㪉
㪌㪌
㪌㪍
㪌㪊
㪌㪋
㪌㪋
㪍㪉
㪌㪋
㪌㪋
㪍㪇
㪌㪍
㪍㪉
㪍㪉 㪍㪉
㪌㪏
㪌㪋
㪌㪋
㪌㪉
㪋㪎
㪌㪍
㪌㪊
㪌㪋
㪌㪋
㪉
㪉
㪉
㪉
㪊
㪋㪅㪋㩷㪝㪛
㪊㪅㪐㩷㪝㪛
㪊㪅㪎㩷㪝㪛
㪞 㪟 㪠 㪥㪝㪉 㪘㪾㪄 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㪥㪦㪩㫊 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪌㪋 㪌㪋 㪌㪍㪄㪌㪏 㪌㪍㪄㪌㪏
㪌㪏
㪌㪉 㪌㪏
㪝 㪥㪝㪈
㪫㪸㪹㫃㪼㩷㪍㪅㪊㪏㩷㩷㪦㫉㪻㪼㫉㩷㪧㪜㪩㪚㪠㪝㪦㪩㪤㪜㪪㪅㩷㪧㪸㫉㫋㩷㪊㩷㪥㫆㫋㫆㫋㪿㪼㫅㫀㫆㫀㪻㪼㫀㪃㩷㪙㫃㪼㫅㫅㫀㫆㫀㪻㪼㫀㪃㩷㪸㫅㪻㩷㪚㪸㫃㫃㫀㫆㫅㫐㫄㫆㫀㪻㪼㫀㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀㩷 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀㩷 㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪮㪼㪻㪻㪼㫃㫃㩷㪪㪼㪸
㪦㪄㪎㪇㪃㩷㪤㪄㪏㪏
㪮㪼㪻㪻㪼㫃㫃㩷㪪㪼㪸
㪩㫆㫊㫊㩷㪪㪼㪸
㪮㪼㪻㪻㪼㫃㫃㩷㪪㪼㪸
㪪㫆㫌㫋㪿㩷㪦㫉㫂㫅㪼㫐㩷㪠㫊㪅
㪮㪼㪻㪻㪼㫃㫃㩷㪪㪼㪸
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪯㪈㪯㪉㪰㪃㩷㪘㪚㪥㪔㪋㪏
㪤㪸㪺㫈㫌㪸㫉㫀㪼㩷㪠㫊㪅
㪪㫆㫌㫋㪿㩷㪦㫉㫂㫅㪼㫐㩷㪠㫊㪅
㪪㪅㩷㪘㫄㪼㫉㫀㪺㪸㩷㩿㫊㫌㪹㪸㫅㫋㪸㫉㪺㫋㫀㪺㪀
㪪㫆㫌㫋㪿㩷㪞㪼㫆㫉㪾㫀㪸
㪮㪼㪻㪻㪼㫃㫃㩷㪪㪼㪸
㪩㫆㫊㫊㩷㪪㪼㪸
㪘㪚㪥㪔㪋㪏 㪮㪼㪻㪻㪼㫃㫃㩷㪪㪼㪸 㪯㪈㪯㪈㪯㪉㪯㪉㪃㩷㪘㪚㪥㪔㪋㪏 㪩㫆㫊㫊㩷㪪㪼㪸
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪯㪈㪯㪉㪰㪃㩷㪘㪚㪥㪔㪋㪏
㪯㪈㪯㪈㪯㪉㪯㪉㪃㩷㪘㪚㪥㪔㪋㪏 㪮㪼㪻㪻㪼㫃㫃㩷㪪㪼㪸
㪩㫆㫊㫊㩷㪪㪼㪸
㪧㪄㪌㪍
㪧㪄㪌㪍
㪤㪄㪈㪉㪋
㪤㪄㪏㪏
㪦㪄㪎㪇
㪤㪄㪏㪏
㪦㪄㪎㪇 㪤㪄㪏㪏
㪦㪄㪎㪇
㪤㪄㪏㪐
㪦㪄㪎㪇
㪤㪄㪏㪏
㪦㪄㪎㪇㪃㩷㪤㪄㪏㪏
㪦㪄㪎㪇
㪤㪄㪏㪏
㪤㪄㪏㪏 㪯㪈㪯㪉㪰㪃㩷㪘㪚㪥㪔㪋㪏
㪦㪄㪎㪇
㪛㪄㪋 㪦㪄㪎㪇㪃㩷㪤㪄㪏㪏
㪛㪄㪋
㪯㪈㪯㪈㪯㪉㪯㪉㪃㩷㪘㪚㪥㪔㪋㪏 㪮㪼㪻㪻㪼㫃㫃㩷㪪㪼㪸
㪘㫅㫋㪸㫉㪺㫋㫀㪺㪸 㪮㪼㪻㪻㪼㫃㫃㩷㪪㪼㪸
㪘㫅㫋㪸㫉㪺㫋㫀㪺㪸
㪤㪄㪏㪏 㪦㪄㪍㪏㪃㩷㪦㪄㪎㪇
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
㪯㪈㪯㪈㪯㪉㪯㪉㪃㩷㪘㪚㪥㪔㪋㪏 㪩㫆㫊㫊㩷㪪㪼㪸
㪘㪚㪥㪔㪋㪏 㪯㪈㪯㪉㪰㪃㩷㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪯㪈㪯㪉㪰㪃㩷㪘㪚㪥㪔㪋㪏
㪪㫆㫌㫋㪿㩷㪪㪸㫅㪻㫎㫀㪺㪿㩷㪠㫊㪅 㪯㪈㪯㪈㪯㪉㪯㪉㪃㩷㪘㪚㪥㪔㪋㪏 㪘㫅㫋㪸㫉㪺㫋㫀㪺㪸
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
191
㪛㫀㫊㫊㫆㫊㫋㫀㪺㪿㫌㫊 㪛㫀㫊㫊㫆㫊㫋㫀㪺㪿㫌㫊 㪛㫀㫊㫊㫆㫊㫋㫀㪺㪿㫌㫊 㪛㫀㫊㫊㫆㫊㫋㫀㪺㪿㫌㫊 㪞㫆㪹㫀㫆㫅㫆㫋㫆㫋㪿㪼㫅 㪞㫆㪹㫀㫆㫅㫆㫋㫆㫋㪿㪼㫅 㪣㪼㫇㫀㪻㫆㫅㫆㫋㫆㫋㪿㪼㫅 㪣㪼㫇㫀㪻㫆㫅㫆㫋㫆㫋㪿㪼㫅 㪣㫀㫅㪻㪹㪼㫉㪾㫀㪺㪿㫋㪿㫐㫊 㪥㫆㫋㫆㫋㪿㪼㫅㫀㪸 㪥㫆㫋㫆㫋㪿㪼㫅㫀㪸 㪥㫆㫋㫆㫋㪿㪼㫅㫀㪸 㪥㫆㫋㫆㫋㪿㪼㫅㫀㪸 㪥㫆㫋㫆㫋㪿㪼㫅㫀㪸 㪥㫆㫋㫆㫋㪿㪼㫅㫀㪸 㪥㫆㫋㫆㫋㪿㪼㫅㫀㪸 㪧㪸㪾㫆㫋㪿㪼㫅㫀㪸 㪧㪸㪾㫆㫋㪿㪼㫅㫀㪸 㪧㪸㫉㪸㫅㫆㫋㫆㫋㪿㪼㫅㫀㪸 㪧㪸㫉㪸㫅㫆㫋㫆㫋㪿㪼㫅㫀㪸 㪧㪸㫋㪸㪾㫆㫅㫆㫋㫆㫋㪿㪼㫅 㪧㪸㫋㪸㪾㫆㫅㫆㫋㫆㫋㪿㪼㫅 㪧㫃㪼㫌㫉㪸㪾㫉㪸㫄㫄㪸 㪧㫊㪼㫌㪻㫆㫋㫉㪼㫄㪸㫋㫆㫄㫌㫊 㪧㫊㪼㫌㪻㫆㫋㫉㪼㫄㪸㫋㫆㫄㫌㫊 㪧㫊㪼㫌㪻㫆㫋㫉㪼㫄㪸㫋㫆㫄㫌㫊 㪧㫊㪼㫌㪻㫆㫋㫉㪼㫄㪸㫋㫆㫄㫌㫊 㪧㫊㪼㫌㪻㫆㫋㫉㪼㫄㪸㫋㫆㫄㫌㫊 㪧㫊㪼㫌㪻㫆㫋㫉㪼㫄㪸㫋㫆㫄㫌㫊 㪧㫊㪼㫌㪻㫆㫋㫉㪼㫄㪸㫋㫆㫄㫌㫊 㪧㫊㪼㫌㪻㫆㫋㫉㪼㫄㪸㫋㫆㫄㫌㫊 㪧㫊㪼㫌㪻㫆㫋㫉㪼㫄㪸㫋㫆㫄㫌㫊 㪧㫊㪼㫌㪻㫆㫋㫉㪼㫄㪸㫋㫆㫄㫌㫊
㪼㫃㪼㪾㫀㫅㫆㫀㪻㪼㫊 㪼㫃㪼㪾㫀㫅㫆㫀㪻㪼㫊 㫄㪸㫎㫊㫆㫅㫀 㫄㪸㫎㫊㫆㫅㫀 㪸㪺㫌㫋㪸 㪾㫀㪹㪹㪼㫉㫀㪽㫉㫆㫅㫊 㫂㪼㫄㫇㫀 㫊㫈㫌㪸㫄㫀㪽㫉㫆㫅㫊 㫄㫀㫑㫆㫇㫊 㪸㫅㪾㫌㫊㫋㪸㫋㪸 㪺㫆㫉㫀㫀㪺㪼㫇㫊㩷㫅㪼㪾㫃㪼㪺㫋㪸 㪺㫆㫉㫀㫀㪺㪼㫇㫊㩷㫅㪼㪾㫃㪼㪺㫋㪸 㪺㫆㫉㫀㫀㪺㪼㫇㫊 㪺㫐㪸㫅㫆㪹㫉㪸㫅㪺㪿㪸 㫉㫆㫊㫊㫀㩷㫄㪸㫉㫄㫆㫉㪸㫋㪸 㫉㫆㫊㫊㫀㫀㩷㫉㫆㫊㫊㫀㫀 㪹㫆㫉㪺㪿㪾㫉㪼㫍㫀㫅㫂㫀 㪹㫆㫉㪺㪿㪾㫉㪼㫍㫀㫅㫂㫀 㫄㪸㪾㪼㫃㫃㪸㫅㫀㪺㪸 㫄㫀㪺㫉㫆㫃㪼㫇㫀㪻㫆㫋㪸 㫃㫆㫅㪾㫀㫇㪼㫊 㫉㪸㫄㫊㪸㫐㫀 㪸㫅㫋㪸㫉㪺㫋㫀㪺㫌㫄 㪹㪼㫉㫅㪸㪺㪺㪿㫀㫀 㪹㪼㫉㫅㪸㪺㪺㪿㫀㫀 㪹㪼㫉㫅㪸㪺㪺㪿㫀㫀 㪹㪼㫉㫅㪸㪺㪺㪿㫀㫀 㪼㫌㫃㪼㫇㫀㪻㫆㫋㫌㫊 㪼㫌㫃㪼㫇㫀㪻㫆㫋㫌㫊 㪼㫌㫃㪼㫇㫀㪻㫆㫋㫌㫊 㪿㪸㫅㫊㫆㫅㫀 㪿㪸㫅㫊㫆㫅㫀 㪿㪸㫅㫊㫆㫅㫀
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㪹㫆㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷 㪥㫆㫋㫆㫋㪿㪼㫅㫀㫀㪻㪸㪼
㪫㫉㪼㫄㪸㫋㫆㫄㫌㫊 㪫㫉㪼㫄㪸㫋㫆㫄㫌㫊 㪫㫉㪼㫄㪸㫋㫆㫄㫌㫊 㪧㪸㪾㫆㫋㪿㪼㫅㫀㪸 㪫㫉㪼㫄㪸㫋㫆㫄㫌㫊 㪫㫉㪼㫄㪸㫋㫆㫄㫌㫊 㪫㫉㪼㫄㪸㫋㫆㫄㫌㫊 㪫㫉㪼㫄㪸㫋㫆㫄㫌㫊 㪫㫉㪼㫄㪸㫋㫆㫄㫌㫊 㪧㪸㪾㫆㫋㪿㪼㫅㫀㪸
㪥㫆㫋㫆㫋㪿㪼㫅㫀㪸
㪥㫆㫋㫆㫋㪿㪼㫅㫀㪸 㪥㫆㫋㫆㫋㪿㪼㫅㫀㪸 㪥㫆㫋㫆㫋㪿㪼㫅㫀㪸 㪥㫆㫋㫆㫋㪿㪼㫅㫀㪸 㪥㫆㫋㫆㫋㪿㪼㫅㫀㪸
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪉㪋㩷㪤㪆㪪㪤㩷㪂㩷㪉㪘 㪉㪇㪤㩷㪂㩷㪉㪪㪤
㪋㪏 㪉㪍 㪉㪉
㪝㪃㩷㪤 㪝㪃㩷㪤
㪋㪤㩷㪂㩷㪋㪋㪘
㪋㪤㩷㪂㩷㪋㪋㪘 㪉㪋㪤
㪋㪏 㪉㪋
㪤
㪏㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪉㪘 㪉㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪋㪉㩷㪪㪫㪆㪘 㪉㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪋㪉㪘 㪋㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪋㪇㪘
㪉㪋 㪉㪋 㪉㪋 㪋㪏 㪋㪏 㪋㪍
㪝㪃㩷㪤 㪝㪃㩷㪤 㪝㪃㩷㪤
㪝
㪉㪉㪤㩷㪂㩷㪉㪪㪤
㪉㪇㪤㩷㪂㩷㪋㪪㪤
㪉㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪋㪋㪘
㪋㪏
㪝㪃㩷㪤
㪉㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪋㪋㪘
㪉㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪋㪋㪘
㪋㪏 㪋㪏
㪉㪤㩷㪂㩷㪋㪍㩷㪪㪫㪆㪘
㪏㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪉㪏㪘㩷
㪋㪏
㪋㪏
㪝㪃㩷㪤
㪝㪃㩷㪤
㪋㪤㩷㪂㩷㪋㪉㩷㪪㪫㪆㪘
㪋㪍
㪉㪉㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪉㪘 㪉㪤㩷㪂㩷㪋㪍㪘
㪋㪏
㪉㪍
㪉㪋㪤㩷㪂㩷㪉㪘
㪉㪍 㪝㪃㩷㪤
㪌㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪊㪏㪘
㪋㪌
㪤
㪉㪋㪤 㪋㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪋㪇㪘
㪉㪋 㪋㪍
㪝㪃㩷㪤 㪝
㪈㪏㪤㩷㪂㩷㪋㪪㪤
㪉㪉
㪤
㪈㪏㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪉㪪㪫
㪉㪉
㪝
㪋㪤㩷㪂㩷㪋㪋㪘
㪋㪤㩷㪂㩷㪋㪋㪘
㪋㪏 㪋㪏
㪝㪃㩷㪤
㪋㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪋㪇㪘
㪍㪤㩷㪂㩷㪏㪪㪤㩷㪂㩷㪊㪉㪘㩷
㪉㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪋㪋㪘
㪉㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪋㪉㪘
㪉㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪋㪋㪘
㪉㪤㩷㪂㩷㪋㪍㪘
㪜 㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪝㪃㩷㪤
㪋㪍 㪋㪍
㪋㪏
㪝 㪝
㪋㪏
㪝㪃㩷㪤
㪝㪃㩷㪤
㪋㪏
㪋㪏
㪛 㪉㫅
㪝㪃㩷㪤
㪚 㪪㪼㫏
㪌㪋 㪌㪋 㪌㪉
㪋㪍
㪋㪏
㪋㪏
㪌㪉
㪌㪉
㪌㪉
㪌㪇
㪍㪏
㪌㪇
㪌㪇
㪌㪇
㪌㪇
㪌㪉
㪋㪏 㪌㪉
㪋㪏
㪌㪉
㪋㪋
㪋㪉
㪋㪋
㪌㪇
㪌㪉
㪌㪉
㪌㪉
㪌㪉
㪍㪇
㪌㪉
㪌㪋
㪌㪉
㪌㪇
㪝 㪥㪝㪈
㪫㪸㪹㫃㪼㩷㪍㪅㪊㪏㩷㩷㪦㫉㪻㪼㫉㩷㪧㪜㪩㪚㪠㪝㪦㪩㪤㪜㪪㪅㩷㪧㪸㫉㫋㩷㪊㩷㪥㫆㫋㫆㫋㪿㪼㫅㫀㫆㫀㪻㪼㫀㪃㩷㪙㫃㪼㫅㫅㫀㫆㫀㪻㪼㫀㪃㩷㪸㫅㪻㩷㪚㪸㫃㫃㫀㫆㫅㫐㫄㫆㫀㪻㪼㫀㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀㩷 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀㩷
㪌㪋 㪌㪉
㪋㪍
㪋㪏
㪋㪏
㪌㪉
㪌㪉
㪌㪉
㪍㪏
㪌㪇
㪌㪇
㪌㪇
㪌㪉
㪋㪏 㪌㪉
㪋㪏
㪌㪉
㪋㪋
㪋㪋
㪋㪋
㪌㪇
㪌㪉
㪌㪉
㪌㪉
㪌㪉
㪍㪇
㪌㪉
㪌㪋
㪌㪉
㪌㪇
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪋
㪉
㪊㪅㪍㩷㪝㪛
㩿㪉㪅㪋㩷㪝㪠㪘㪀
㩿㪉㪅㪈㩷㪝㪠㪘㪀
㪞 㪟 㪠 㪥㪝㪉 㪘㪾㪄 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㪥㪦㪩㫊 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪪㫆㫌㫋㪿㩷㪞㪼㫆㫉㪾㫀㪸
㪘㫅㫋㪸㫉㪺㫋㫀㪺㪸
㪩㫆㫊㫊㩷㪪㪼㪸
㪘㫅㫋㪸㫉㪺㫋㫀㪺㪸㩷㩿㪘㪻㫄㫀㫉㪸㫃㫋㫐㩷㪙㪸㫐㪀
㪛㫌㫍㫀㫃㫃㪼㩷㪠㫊㪅
㪥㪼㫎㩷㪱㪼㪸㫃㪸㫅㪻
㪘㫅㫋㪸㫉㪺㫋㫀㪺㪸
㪘㫅㫋㪸㫉㪺㫋㫀㪺㪸
㪘㫅㫋㪸㫉㪺㫋㫀㪺㪸㩷㩿㪧㫉㫐㪻㫑㩷㪙㪸㫐㪀
㪘㫅㫋㪸㫉㪺㫋㫀㪺㪸㩷㩿㪘㪻㫄㫀㫉㪸㫃㫋㫐㩷㪙㪸㫐㪀
㪘㫅㫋㪸㫉㪺㫋㫀㪺㪸㩷㩿㪟㪼㪸㫉㪻㩷㪠㫊㪅㪀
㪮㪼㪻㪻㪼㫃㫃㩷㪪㪼㪸
㪪㫆㫌㫋㪿㪼㫉㫅㩷㪦㪺㪼㪸㫅
㪪㫆㫌㫋㪿㪼㫉㫅㩷㪦㪺㪼㪸㫅
㪘㫅㫋㪸㫉㪺㫋㫀㪺㪸
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪤㪄㪈㪉㪍
㪦㪄㪎㪇
㪧㪄㪌㪈
㪧㪄㪌㪈
㪧㪄㪌㪈
㪛㪄㪋
㪘㫅㫋㪸㫉㪺㫋㫀㪺㪸㩷㩿㪧㫉㫐㪻㫑㩷㪙㪸㫐㪀
㪩㫆㫊㫊㩷㪪㪼㪸
㪮㪼㪻㪻㪼㫃㫃㩷㪪㪼㪸
㪩㫆㫊㫊㩷㪪㪼㪸
㪩㫆㫊㫊㩷㪪㪼㪸
㪮㪼㪻㪻㪼㫃㫃㩷㪪㪼㪸
㪦㪄㪍㪎㪃㩷㪦㪄㪎㪇
㪤㪄㪈㪉㪍
㪦㪄㪎㪇
㪤㪄㪈㪉㪍
㪤㪄㪏㪐
㪦㪄㪎㪇㪃㩷㪟㪄㪋㪈
㪘㫅㫋㪸㫉㪺㫋㫀㪺㪸㩷㩿㪙㫉㪸㫅㫊㪽㫀㪼㫃㪻㩷㪪㫋㫉㪸㫀㫋㪀㪧㪄㪉㪍
㪮㪼㪻㪻㪼㫃㫃㩷㪪㪼㪸
㪤㪸㪾㪼㫃㫃㪸㫅㫀㪺㩷㪩㪼㪾㫀㫆㫅
㪤㪸㪾㪼㫃㫃㪸㫅㫀㪺㩷㪩㪼㪾㫀㫆㫅
㪚㪸㫄㪹㪼㫃㫃㩷㪠㫊㪅
㪘㫅㫋㪸㫉㪺㫋㫀㪺㪸
㪘㫅㫋㪸㫉㪺㫋㫀㪺㪸
㪛㪄㪋 㪤㪄㪈㪉㪍
㪧㪄㪌㪉
㪛㪄㪋
㪤㪄㪈㪉㪍
㪧㪄㪉㪎
㪧㪄㪌㪉
㪧㪄㪊㪍
㪦㪄㪍㪎
㪦㪄㪍㪎
㪦㪄㪍㪎
㪧㪄㪉㪍㪃㩷㪧㪄㪉㪎
㪦㪄㪍㪎
㪦㪄㪎㪇㪃㩷㪟㪄㪋㪈
㪞㪄㪏㪊
㪞㪄㪏㪊
㪛㪄㪋
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
㪘㫅㫋㪸㫉㪺㫋㫀㪺㪸㩷㩿㪙㫉㪸㫅㫊㪽㫀㪼㫃㪻㩷㪪㫋㫉㪸㫀㫋㪀㪧㪄㪉㪍 㪮㪼㪻㪻㪼㫃㫃㩷㪪㪼㪸 㪦㪄㪎㪇 㪯㪈㪯㪈㪯㪉㪯㪉㪃㩷㪘㪚㪥㪔㪋㪏 㪩㫆㫊㫊㩷㪪㪼㪸 㪤㪄㪈㪉㪍
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪯㪈㪯㪉㪰㪃㩷㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪍 㪘㫅㫋㪸㫉㪺㫋㫀㪺㪸 㪯㪈㪯㪈㪯㪉㪯㪉㪃㩷㪘㪚㪥㪔㪋㪏 㪘㫅㫋㪸㫉㪺㫋㫀㪺㪸
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪋
㪘㪚㪥㪔㪋㪋
㪘㪚㪥㪔㪋㪋
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪋㪙
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
192
㫌㫉㫍㫀㫃㫃㫀㫀
㪿㪸㫅㫊㫆㫅㫀 㫃㪼㫇㫀㪻㫆㫉㪿㫀㫅㫌㫊 㫇㪼㫅㫅㪼㫃㫃㫀㫀 㫇㪼㫅㫅㪼㫃㫃㫀㫀 㫊㪺㫆㫋㫋㫀 㫃㫆㪼㫅㪹㪼㫉㪾㫀㫀 㫃㫆㪼㫅㪹㪼㫉㪾㫀㫀 㫅㪼㫎㫅㪼㫊㫀 㫅㪼㫎㫅㪼㫊㫀 㫅㪼㫎㫅㪼㫊㫀 㫅㫀㪺㫆㫃㪸㫀 㫅㫀㪺㫆㫃㪸㫀
㪺㫀㪺㪼㫉㪼㫃㫌㫊
㪜㪺㪿㫀㫀㪺㪿㫋㪿㫐㫊 㪫㫉㪸㪺㪿㫀㫅㫌㫊 㪫㫉㪸㪺㪿㫀㫅㫌㫊
㪫㫉㪸㪺㪿㫀㫅㫀㪻㪸㪼㩷
㪧㪸㫉㪸㫇㪼㫉㪺㫀㫊 㪧㪸㫉㪸㫇㪼㫉㪺㫀㫊 㪧㪸㫉㪸㫇㪼㫉㪺㫀㫊 㪧㪸㫉㪸㫇㪼㫉㪺㫀㫊 㪧㪸㫉㪸㫇㪼㫉㪺㫀㫊 㪧㪸㫉㪸㫇㪼㫉㪺㫀㫊
㫍㫀㫇㪼㫉㪸㩷 㪻㫉㪸㪺㫆 㪻㫉㪸㪺㫆
㫂㪸㫄㫆㪿㪸㫉㪸㫀 㫇㫌㫃㪺㪿㪼㫃㫃㪸 㫊㪼㫏㪽㪸㫊㪺㫀㪸㫋㪸 㫊㪼㫏㪽㪸㫊㪺㫀㪸㫋㪸 㫊㪼㫏㪽㪸㫊㪺㫀㪸㫋㪸 㫊㪼㫏㪽㪸㫊㪺㫀㪸㫋㪸
㪧㫀㫅㪾㫌㫀㫇㪼㪻㫀㪻㪸㪼㩷㩿㪔㩷㪧㪸㫉㪸㫇㪼㫉㪺㫀㪻㪸㪼㪀
㪞㫐㫄㫅㪸㫄㫄㫆㪻㫐㫋㪼㫊
㪪㫌㪹㫆㫉㪻㪼㫉㩷㪫㫉㪸㪺㪿㫀㫅㫆㫀㪻㪼㫀㩷 㪘㫄㫄㫆㪻㫐㫋㫀㪻㪸㪼㩷
㪧㫊㪼㫌㪻㪸㫇㪿㫉㫀㫋㫀㫊
㪧㫊㪼㫌㪻㪸㫇㪿㫉㫀㫋㫀㪻㪸㪼
㪧㫊㪼㫌㪻㫆㫋㫉㪼㫄㪸㫋㫆㫄㫌㫊 㪧㫊㪼㫌㪻㫆㫋㫉㪼㫄㪸㫋㫆㫄㫌㫊 㪧㫊㪼㫌㪻㫆㫋㫉㪼㫄㪸㫋㫆㫄㫌㫊 㪧㫊㪼㫌㪻㫆㫋㫉㪼㫄㪸㫋㫆㫄㫌㫊 㪧㫊㪼㫌㪻㫆㫋㫉㪼㫄㪸㫋㫆㫄㫌㫊 㪫㫉㪼㫄㪸㫋㫆㫄㫌㫊 㪫㫉㪼㫄㪸㫋㫆㫄㫌㫊 㪫㫉㪼㫄㪸㫋㫆㫄㫌㫊 㪫㫉㪼㫄㪸㫋㫆㫄㫌㫊 㪫㫉㪼㫄㪸㫋㫆㫄㫌㫊 㪫㫉㪼㫄㪸㫋㫆㫄㫌㫊 㪫㫉㪼㫄㪸㫋㫆㫄㫌㫊
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㪹㫆㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷
㪺㫀㪺㪼㫉㪼㫃㫃㫌㫊
㪙㫆㫍㫀㪺㪿㫋㫀㪻㪸㪼
㪧㪸㪾㫆㫋㪿㪼㫅㫀㪸 㪫㫉㪼㫄㪸㫋㫆㫄㫌㫊 㪫㫉㪼㫄㪸㫋㫆㫄㫌㫊 㪫㫉㪼㫄㪸㫋㫆㫄㫌㫊 㪫㫉㪼㫄㪸㫋㫆㫄㫌㫊
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪝㪃㩷㪤
㪋㪏㪘
㪋㪏㪘 㪋㪏
㪋㪏㪘 㪋㪏
㪉㪉㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪉㪘
㪉㪉㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪉㪘
㪋㪏
㪉㪍
㪝㪃㩷㪤
㪝㪃㩷㪤
㪉㪍
㪤
㪉㪉㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪉㪘
㪉㪍 㪉㪉㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪉㪘
㪏㪤㩷㪂㩷㪊㪋㪘
㪉㪍
㪋㪏㪘
㪋㪉
㪉㪉㩷㪤㪆㪪㪤㩷㪂㩷㪉㪋㩷㪪㪫㪆㪘
㪋㪤㩷㪂㩷㪋㪋㪘
㪋㪏
㪋㪍
㪋㪏
㪝
㪝㪃㩷㪤
㪝
㪉㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪈㪏㪪㪫㩷㪂㩷㪊㪉㪘
㪌㪎
㪝 㪤
㪊㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪈㪏㪪㪫㩷㪂㩷㪊㪇㪘
㪌㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪊㪏㪘
㪋㪌
㪤
㪈㪍㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪏㪘 㪋㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪋㪇㪘
㪍㪐 㪌㪏
㪊㪇 㪋㪍
㪝 㪝
㪈㪏㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪋㪘
㪋㪤㩷㪂㩷㪉㪄㪋㩷㪪㪤㩷㪂㩷㪋㪉㪄㪋㪋㩷㪘
㪌㪇 㪉㪏
㪝
㪐㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪈㪎㪘㩷 㪈㪉㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪈㪏㪘
㪉㪏 㪊㪉
㪤 㪝㪃㩷㪤 㪝㪃㩷㪤
㪋㪤㩷㪂㩷㪋㪋㪘
㪋㪌 㪋㪏
㪌㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪊㪏㪘
㪜 㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪤
㪛 㪉㫅
㪝㪃㩷㪤
㪚 㪪㪼㫏
㪋㪍
㪊㪐
㪌㪉
㪌㪉
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪌㪇
㪋㪏
㪍㪏
㪌㪉
㪍㪍
㪍㪍
㪌㪉
㪌㪉 㪌㪉
㪌㪉
㪋㪏
㪋㪏
㪋㪏
㪌㪇
㪌㪇
㪌㪇
㪌㪇
㪌㪇
㪋㪏
㪌㪉
㪏㪋
㪏㪋
㪌㪉
㪌㪉 㪌㪉
㪌㪉
㪉
㪉
㪉
㪍
㪉
㪉
㪉
㪉 㪉
㪉
㪉
㪉
㪈㪅㪐㪁㩷㪝㪚㪤
㪞 㪟 㪠 㪥㪝㪉 㪘㪾㪄 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㪥㪦㪩㫊 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪌㪍㪄㪌㪏 㪌㪍㪄㪌㪏
㪋㪍
㪊㪐
㪌㪉
㪌㪉
㪝 㪥㪝㪈
㪫㪸㪹㫃㪼㩷㪍㪅㪊㪏㩷㩷㪦㫉㪻㪼㫉㩷㪧㪜㪩㪚㪠㪝㪦㪩㪤㪜㪪㪅㩷㪧㪸㫉㫋㩷㪊㩷㪥㫆㫋㫆㫋㪿㪼㫅㫀㫆㫀㪻㪼㫀㪃㩷㪙㫃㪼㫅㫅㫀㫆㫀㪻㪼㫀㪃㩷㪸㫅㪻㩷㪚㪸㫃㫃㫀㫆㫅㫐㫄㫆㫀㪻㪼㫀㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀㩷 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀㩷
㪩㫆㫊㫊㩷㪪㪼㪸
㪮㪼㪻㪻㪼㫃㫃㩷㪪㪼㪸
㪩㫆㫊㫊㩷㪪㪼㪸
㪮㪼㪻㪻㪼㫃㫃㩷㪪㪼㪸
㪮㪼㪻㪻㪼㫃㫃㩷㪪㪼㪸
㪩㫆㫊㫊㩷㪪㪼㪸
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪩㫆㫊㫊㩷㪪㪼㪸
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪯㪰㪃㩷㪘㪚㪥㪔㪋㪏
㪯㪯㪃㩷㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪋
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪏
㪯㪈㪯㪉㪰㪃㩷㪘㪚㪥㪔㪌㪏
㪘㪄㪏㪇
㪭㪄㪌㪎
㪧㪄㪌㪏
㪤㪄㪈㪉㪍
㪤㪄㪏㪐 㪤㪄㪈㪉㪍
㪤㪄㪈㪉㪍
㪤㪄㪈㪉㪍 㪤㪄㪈㪉㪍
㪤㪄㪈㪉㪍
㪦㪄㪎㪇
㪤㪄㪈㪉㪍
㪦㪄㪎㪇
㪦㪄㪍㪎㪃㩷㪦㪄㪎㪇
㪤㪄㪈㪉㪍
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
㪠㫋㪸㫃㫐㩷㩿㪧㪸㫃㪼㫉㫄㫆㪀
㪬㪪㪪㪩
㪠㫋㪸㫃㫐㩷㩿㪘㫅㪺㫆㫅㪸㪀
㪢㫆㫉㪼㪸㩷㩿㪙㫌㫊㪸㫅㪀
㪡㪸㫇㪸㫅㩷㩿㪟㫐㫆㪾㫆㪀
㪡㪸㫇㪸㫅㩷㩿㪟㫐㫆㪾㫆㪀
㪭㪄㪌㪎
㪭㪄㪎㪉
㪚㪄㪉㪉
㪧㪄㪎㪇
㪦㪄㪋㪇
㪦㪄㪋㪇
㪡㪸㫇㪸㫅㩷㩿㪪㪿㫀㫑㫌㫆㫂㪸㪃㩷㪰㪸㫄㪸㪾㫌㪺㪿㫀㪀㪤㪄㪈㪇㪐
㪡㪸㫇㪸㫅㩷㩿㪪㪿㫀㫑㫌㫆㫂㪸㪃㩷㪰㪸㫄㪸㪾㫌㪺㪿㫀㪀㪤㪄㪈㪇㪐
㪡㪸㫇㪸㫅㩷㩿㪮㪸㫂㪸㫐㪸㫄㪸㪀
㪠㫋㪸㫃㫐㩷㩿㪧㪸㫃㪼㫉㫄㫆㪀
㪫㪸㫊㫄㪸㫅㫀㪸
㪩㫆㫊㫊㩷㪪㪼㪸
㪊㪯 㪩㫆㫊㫊㩷㪪㪼㪸 㪯㪈㪯㪈㪯㪉㪯㪉㪃㩷㪘㪚㪥㪔㪌㪏 㪩㫆㫊㫊㩷㪪㪼㪸
㪯㪈㪯㪉㪰㪃㩷㪘㪚㪥㪔㪋㪏
㪩㫆㫊㫊㩷㪪㪼㪸 㪯㪈㪯㪈㪯㪉㪯㪉㪃㩷㪘㪚㪥㪔㪋㪏 㪩㫆㫊㫊㩷㪪㪼㪸
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪋㪋
㪋㪙
㪯㪈㪯㪉㪰㪃㩷㪘㪚㪥㪔㪋㪏
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
193
㪘㫀㪻㪸㪹㫃㪼㫅㫅㫀㫌㫊 㪘㫀㪻㪸㪹㫃㪼㫅㫅㫀㫌㫊 㪘㫀㪻㪸㪹㫃㪼㫅㫅㫀㫌㫊 㪘㫋㫉㫆㫊㪸㫃㪸㫉㫀㪸㫊 㪙㫃㪼㫅㫅㫀㫌㫊 㪙㫃㪼㫅㫅㫀㫌㫊 㪚㫆㫉㫐㫇㪿㫆㪹㫃㪼㫅㫅㫀㫌㫊 㪠㫊㫋㫀㪹㫃㪼㫅㫅㫀㫌㫊 㪠㫊㫋㫀㪹㫃㪼㫅㫅㫀㫌㫊 㪣㫀㫇㫆㫇㪿㫉㫐㫊 㪣㫀㫇㫆㫇㪿㫉㫐㫊 㪣㫀㫇㫆㫇㪿㫉㫐㫊 㪦㫄㫆㪹㫉㪸㫅㪺㪿㫌㫊 㪦㫄㫆㪹㫉㪸㫅㪺㪿㫌㫊 㪧㪸㫉㪸㪹㫃㪼㫅㫅㫀㫌㫊 㪧㪸㫉㪸㪹㫃㪼㫅㫅㫀㫌㫊 㪧㪸㫉㪸㪹㫃㪼㫅㫅㫀㫌㫊 㪧㪸㫉㪸㪹㫃㪼㫅㫅㫀㫌㫊
㪪㫌㪹㫆㫉㪻㪼㫉㩷㪙㫃㪼㫅㫅㫀㫆㫀㪻㪼㫀㩷 㪙㫃㪼㫅㫅㫀㫀㪻㪸㪼㩷
㪬㫉㪸㫅㫆㫊㪺㫆㫇㫌㫊 㪬㫉㪸㫅㫆㫊㪺㫆㫇㫌㫊 㪬㫉㪸㫅㫆㫊㪺㫆㫇㫌㫊 㪬㫉㪸㫅㫆㫊㪺㫆㫇㫌㫊 㪬㫉㪸㫅㫆㫊㪺㫆㫇㫌㫊 㪬㫉㪸㫅㫆㫊㪺㫆㫇㫌㫊 㪬㫉㪸㫅㫆㫊㪺㫆㫇㫌㫊 㪬㫉㪸㫅㫆㫊㪺㫆㫇㫌㫊 㪬㫉㪸㫅㫆㫊㪺㫆㫇㫌㫊
㪬㫉㪸㫅㫆㫊㪺㫆㫇㫀㪻㪸㪼㩷
䌁䌲䌣䌴䌯䌳䌣䌯䌰䌵䌳
㪫㫉㫀㪺㪿㫆㪻㫆㫅㫋㫀㪻㪸㪼㩷
㪽㫌㫊㪺㫌㫊㩷㪿㫆㫃㫆㫄㪼㫃㪸㫊 㫆㪺㪼㫃㫃㪸㫉㫀㫊 㫆㪺㪼㫃㫃㪸㫉㫀㫊 㪾㪸㫃㪼㫉㫀㫋㪸 㪼㫅㫆㫊㫀㫄㪸㪼 㫃㫀㫅㪼㪸㫋㫌㫊 㪸㪻㫉㫀㪸㫋㫀㪺㫌㫊 㪺㪸㫅㪼㫍㪸㪼 㫇㪿㫆㫃㫀㫊 㪼㫃㪼㪾㪸㫅㫊 㫇㫌㫅㪺㫋㪸㫋㫌㫊 㪾㪸㫋㫋㫆㫉㫌㪾㫀㫅㪼 㪾㪸㫋㫋㫆㫉㫌㪾㫀㫅㪼 㪾㪸㫋㫋㫆㫉㫌㪾㫀㫅㪼 㫀㫅㪺㫆㪾㫅㫀㫋㫌㫊
㫊㫇㪿㫐㫅㫏 㫊㫇㪿㫐㫅㫏 㫊㫇㪿㫐㫅㫏
㫊㪺㪸㪹㪼㫉 㫊㪺㪸㪹㪼㫉 㫊㪺㪸㪹㪼㫉 㫊㪺㪸㪹㪼㫉 㫊㪺㪸㪹㪼㫉 㫊㪺㪸㪹㪼㫉 㫊㪺㪸㪹㪼㫉 㫊㪺㪸㪹㪼㫉 㫊㪺㪸㪹㪼㫉
㫁㪸㫇㫆㫅㫀㪺㫌㫊
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㪹㫆㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷
㩷㪙㫃㪼㫅㫅㫀㫌㫊 㩷㪙㫃㪼㫅㫅㫀㫌㫊 㩷㪙㫃㪼㫅㫅㫀㫌㫊
㪣㫐㫇㫆㫇㪿㫉㫀㫊 㩷㪙㫃㪼㫅㫅㫀㫌㫊 㩷㪙㫃㪼㫅㫅㫀㫌㫊
㩷㪙㫃㪼㫅㫅㫀㫌㫊
㩷㪙㫃㪼㫅㫅㫀㫌㫊㩷㫊㫇㪿㫀㫅㫏 㩷㪙㫃㪼㫅㫅㫀㫌㫊㩷㫊㫇㪿㫀㫅㫏 㩷㪽㫌㫊㪺㫌㫊
㪙㪄㫋㫐㫇㪼 㪚㪄㫋㫐㫇㪼
㪘㪄㫋㫐㫇㪼
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪈㪏㩷㪤㪆㪪㪤㩷㪂㩷㪈㪋㪘
㪊㪉
㪋㪏㩷㪪㪫㪆㪘
㪉㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪋㪋㪘 㪋㪏㪘
㪋㪏 㪋㪏 㪋㪏
㪝㪃㩷㪤
㪉㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪋㪋㪘
㪋㪏㩷㪪㪫㪆㪘
㪝㪃㩷㪤
㪋㪏
㪋㪤㩷㪂㩷㪋㪇㪘
㪋㪋 㪝
㪈㪇㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪉㪋㪘
㪋㪉
㪝㪃㩷㪤
㪍㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪏㪪㪫㩷㪂㩷㪊㪇㪘
㪋㪍
㪋㪏㪁 㪏㪪㪫㩷㪂㩷㪋㪇㪘
㪋㪏
㪋㪏㩷㪪㪫㪆㪘
㪉㪪㪤㩷㪂㩷㪋㪍㪘
㪋㪏
㪋㪏
㪉㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪋㪋㪘 㪉㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪋㪋㩷㪪㪫㪆㪘
㪋㪏 㪋㪏
㪉㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪋㪋㪘
㪋㪏㪘
㪋㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪋㪇㩷㪪㪫㪆㪘
㪋㪏㪘
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏㩷㪪㪫㪆㪘
㪉㪋㪤㩷㪂㩷㪋㪘
㪉㪏
㪋㪏
㪉㪊㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪋㪘㩷
㪉㪐
㪉㪊㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪋㪘
㪉㪈㪤㩷㪂㩷㪍㩷㪪㪫㪆㪘
㪉㪎 㪉㪉㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪋㪘
㪉㪇㪤㩷㪂㩷㪏㩷㪪㪫㪆㪘
㪉㪏
㪊㪈
㪈㪏㪤㩷㪂㩷㪈㪉㩷㪪㪫㪆㪘
㪊㪇
㪉㪇㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪋㩷㪪㪫㪆㪘
㪊㪇
㪉㪪㪤㩷㪂㩷㪋㪍㪘
㪜 㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪉㪍
㪋㪏
㪛 㪉㫅
㪝㪃㩷㪤
㪝㪃㩷㪤
㪝
㪝㪃㩷㪤
㪝㪃㩷㪤
㪝㪃㩷㪤
㪝㪃㩷㪤
㪝㪃㩷㪤
㪚 㪪㪼㫏
㪋㪏
㪌㪉
㪌㪉
㪋㪏
㪋㪏
㪌㪋
㪌㪋
㪋㪏
㪋㪏
㪋㪏
㪌㪇
㪌㪉
㪌㪇
㪌㪇
㪋㪏
㪌㪍
㪋㪏
㪋㪏
㪌㪉
㪌㪋
㪌㪏
㪌㪍
㪌㪇
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪌㪇
㪝 㪥㪝㪈
㪫㪸㪹㫃㪼㩷㪍㪅㪊㪏㩷㩷㪦㫉㪻㪼㫉㩷㪧㪜㪩㪚㪠㪝㪦㪩㪤㪜㪪㪅㩷㪧㪸㫉㫋㩷㪊㩷㪥㫆㫋㫆㫋㪿㪼㫅㫀㫆㫀㪻㪼㫀㪃㩷㪙㫃㪼㫅㫅㫀㫆㫀㪻㪼㫀㪃㩷㪸㫅㪻㩷㪚㪸㫃㫃㫀㫆㫅㫐㫄㫆㫀㪻㪼㫀㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀㩷 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀㩷
㪋㪏
㪌㪉
㪌㪉
㪋㪏
㪍㪇
㪍㪉
㪌㪍
㪌㪇
㪌㪉
㪌㪉
㪋㪏
㪋㪏
㪌㪉
㪌㪋
㪌㪏
㪌㪍
㪌㪇
㪌㪇
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪈㪅㪉㩷㪝㪛
㪈㪅㪍㩷㪝㪛
㪈㪅㪎㩷㪝㪛
㪈㪅㪉㩷㪝㪛
㪈㪅㪌㩷㪝㪚㪤
㪞 㪟 㪠 㪥㪝㪉 㪘㪾㪄 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㪥㪦㪩㫊 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪯㪰㪆㪯㪯㪖
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪠㫋㪸㫃㫐
㪠㫋㪸㫃㫐㩷㩿㪧㪸㫃㪼㫉㫄㫆㪀
㪪㫇㪸㫀㫅㩷㩿㪤㪸㫃㪸㪾㪸㪀
㪠㫋㪸㫃㫐㩷㩿㪘㫅㪺㫆㫅㪸㪀
㪡㪸㫇㪸㫅㩷㩿㪮㪸㫂㪸㫐㪸㫄㪸㪀
㪡㪸㫇㪸㫅㩷㩿㪢㪸㫅㪸㪾㪸㫎㪸㪀
㪪㫇㪸㫀㫅㩷㩿㪤㪸㫃㪸㪾㪸㪀
㪠㫋㪸㫃㫐
㪠㫋㪸㫃㫐㩷㩿㪘㫅㪺㫆㫅㪸㪀
㪡㪸㫇㪸㫅㩷㩿㪠㫊㪿㫀㪾㪸㫂㫀㫁㫀㫄㪸㪀
㪡㪸㫇㪸㫅㩷㩿㪚㪿㫀㪹㪸㪃㩷㪢㪸㫅㪸㪾㪸㫎㪸㪀
㪪㫇㪸㫀㫅㩷㩿㪤㪼㪻㫀㫋㪼㫉㫉㪸㫅㪼㪸㫅㪀
㪠㫋㪸㫃㫐㩷㩿㪧㪸㫃㪼㫉㫄㫆㪀
㪪㫇㪸㫀㫅㩷㩿㪤㪸㫃㪸㪾㪸㪀
㪡㪸㫇㪸㫅㩷㩿㪠㫊㪿㫀㪾㪸㫂㫀㫁㫀㫄㪸㪀
㪪㫇㪸㫀㫅㩷㩿㪤㪸㫃㪸㪾㪸㪀
㪠㫋㪸㫃㫐
㪠㫋㪸㫃㫐㩷㩿㪘㫅㪺㫆㫅㪸㪀
㪠㫋㪸㫃㫐㩷㩿㪧㪸㫃㪼㫉㫄㫆㪀
㪠㫋㪸㫃㫐㩷㩿㪧㪸㫃㪼㫉㫄㫆㪀
㪠㫋㪸㫃㫐㩷㩿㪧㪸㫃㪼㫉㫄㫆㪀
㪠㫋㪸㫃㫐㩷㩿㪧㪸㫃㪼㫉㫄㫆㪀
㪬㪪㪪㪩
㪠㫋㪸㫃㫐㩷㩿㪘㫅㪺㫆㫅㪸㪀
㪠㫋㪸㫃㫐㩷㩿㪘㫅㪺㫆㫅㪸㪀
㪠㫋㪸㫃㫐㩷㩿㪘㫅㪺㫆㫅㪸㪀
㪚㫉㫆㪸㫋㫀㪸
㪡㪸㫇㪸㫅
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪚㪄㪊㪊
㪭㪄㪌㪈
㪚㪄㪐㪃㩷㪚㪄㪈㪇㪃㩷㪞㪄㪈㪏
㪚㪄㪈㪐
㪘㪄㪏㪇
㪘㪄㪌㪐
㪚㪄㪐㪃㩷㪚㪄㪈㪇㪃㩷㪞㪄㪈㪏
㪚㪄㪊㪊
㪚㪄㪈㪐
㪘㪄㪌㪐
㪘㪄㪌㪌
㪞㪄㪈㪏
㪭㪄㪌㪈
㪚㪄㪐㪃㩷㪚㪄㪈㪇
㪘㪄㪌㪌
㪚㪄㪐㪃㩷㪚㪄㪈㪇
㪚㪄㪊㪊
㪚㪄㪈㪐
㪭㪄㪈㪇㪋
㪭㪄㪈㪇㪋
㪭㪄㪈㪇㪋
㪭㪄㪈㪇㪋
㪭㪄㪎㪉
㪚㪄㪉㪉
㪚㪄㪉㪉
㪚㪄㪉㪉
㪪㪄㪏㪍
㪫㪄㪍㪍
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
194
㪸㫉㪾㪼㫅㫋㪸㫋㫌㫊
㪚㫃㫀㫅㫀㫋㫉㪸㪺㪿㫌㫊
㪚㫃㫀㫅㫀㪻㪸㪼㩷
㫀㫅㪺㫆㪾㫅㫀㫋㫌㫊 㫇㫀㫃㫀㪺㫆㫉㫅㫀㫊 㫇㫀㫃㫀㪺㫆㫉㫅㫀㫊 㫇㫆㫅㫋㫀㪺㫌㫊 㫊㪸㫅㪾㫌㫀㫅㫆㫃㪼㫅㫋㫌㫊 㫊㪸㫅㪾㫌㫀㫅㫆㫃㪼㫅㫋㫌㫊 㫊㪸㫅㪾㫌㫀㫅㫆㫃㪼㫅㫋㫌㫊 㫊㪸㫅㪾㫌㫀㫅㫆㫃㪼㫅㫋㫌㫊 㫋㪼㫅㫋㪸㪺㫌㫃㪸㫉㫀㫊 㫋㪼㫅㫋㪸㪺㫌㫃㪸㫉㫀㫊 㫋㪼㫅㫋㪸㪺㫌㫃㪸㫉㫀㫊 㫋㪼㫅㫋㪸㪺㫌㫃㪸㫉㫀㫊 㫋㪼㫅㫋㪸㪺㫌㫃㪸㫉㫀㫊 㫋㪼㫅㫋㪸㪺㫌㫃㪸㫉㫀㫊 㫋㪼㫅㫋㪸㪺㫌㫃㪸㫉㫀㫊 㫋㪼㫅㫋㪸㪺㫌㫃㪸㫉㫀㫊 㫋㪼㫅㫋㪸㪺㫌㫃㪸㫉㫀㫊 㫋㪼㫅㫋㪸㪺㫌㫃㪸㫉㫀㫊 㫐㪸㫋㪸㪹㪼㫀 㫋㫉㫀㪾㫃㫆㫀㪻㪼㫊 㫋㫉㫀㪾㫃㫆㫀㪻㪼㫊 㫋㫉㫀㪾㫃㫆㫀㪻㪼㫊 㪹㫉㪼㫍㫀㪺㪼㫇㫊 㪽㫃㫌㫍㫀㪸㫋㫀㫃㫀㫊 㫇㪸㫍㫆 㫇㪸㫍㫆 㪽㪸㫊㪺㫀㪸㫋㫌㫊 㫃㫌㪺㫋㫌㫆㫊㫌㫊 㪺㫉㫀㫊㫋㪸㫋㪸 㪺㫉㫀㫊㫋㪸㫋㪸
㪧㪸㫉㪸㪹㫃㪼㫅㫅㫀㫌㫊 㪧㪸㫉㪸㪹㫃㪼㫅㫅㫀㫌㫊 㪧㪸㫉㪸㪹㫃㪼㫅㫅㫀㫌㫊 㪧㪸㫉㪸㪹㫃㪼㫅㫅㫀㫌㫊 㪧㪸㫉㪸㪹㫃㪼㫅㫅㫀㫌㫊 㪧㪸㫉㪸㪹㫃㪼㫅㫅㫀㫌㫊 㪧㪸㫉㪸㪹㫃㪼㫅㫅㫀㫌㫊 㪧㪸㫉㪸㪹㫃㪼㫅㫅㫀㫌㫊 㪧㪸㫉㪸㪹㫃㪼㫅㫅㫀㫌㫊 㪧㪸㫉㪸㪹㫃㪼㫅㫅㫀㫌㫊 㪧㪸㫉㪸㪹㫃㪼㫅㫅㫀㫌㫊 㪧㪸㫉㪸㪹㫃㪼㫅㫅㫀㫌㫊 㪧㪸㫉㪸㪹㫃㪼㫅㫅㫀㫌㫊 㪧㪸㫉㪸㪹㫃㪼㫅㫅㫀㫌㫊 㪧㪸㫉㪸㪹㫃㪼㫅㫅㫀㫌㫊 㪧㪸㫉㪸㪹㫃㪼㫅㫅㫀㫌㫊 㪧㪸㫉㪸㪹㫃㪼㫅㫅㫀㫌㫊 㪧㪸㫉㪸㪹㫃㪼㫅㫅㫀㫌㫊 㪧㪸㫉㪸㪹㫃㪼㫅㫅㫀㫌㫊 㪧㪸㫉㪸㫃㫀㫇㫆㫇㪿㫉㫐㫊 㪧㪸㫉㪸㫃㫀㫇㫆㫇㪿㫉㫐㫊 㪧㪸㫉㪸㫃㫀㫇㫆㫇㪿㫉㫐㫊 㪧㪼㫋㫉㫆㫊㪺㫀㫉㫋㪼㫊 㪪㪸㫃㪸㫉㫀㪸 㪪㪸㫃㪸㫉㫀㪸 㪪㪸㫃㪸㫉㫀㪸 㪪㪸㫃㪸㫉㫀㪸㫊 㪪㪸㫃㪸㫉㫀㪸㫊 㪪㪺㪸㫉㫋㪼㫃㫃㪸 㪪㪺㪸㫉㫋㪼㫃㫃㪸
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㪹㫆㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷
㪋㪎
㪤
㪝㪃㩷㪤
㪋㪏
㪝㪃㩷㪤
㪋㪏
㪋㪏㩷㪪㪫㪆㪘
㪋㪏㩷㪪㪫㪆㪘
㪉㪪㪤㩷㪂㩷㪋㪍㩷㪪㪫㪆㪘
㪉㪪㪫㩷㪂㩷㪋㪍㪘
㪋㪏 㪋㪏
㪝㪃㩷㪤
㪙㫃㪼㫅㫅㫀㫌㫊㩷㪺㫉㫀㫊㫋㪸㫋㫌㫊
㪋㪪㪤㩷㪂㩷㪈㪉㪪㪫㩷㪂㩷㪊㪉㪘
㪝㪃㩷㪤
㪏㪪㪫㩷㪂㩷㪋㪇㪘 㪋㪏㪘
㪋㪏
㪤
㪏㪤㩷㪂㩷㪊㪉㩷㪪㪫㪆㪘
㪋㪏
㪋㪏
㪤
㪋㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪉㪏㪘 㪉㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪋㪇㩷㪪㪫㪆㪘
㪋㪏
㪋㪇
㪋㪍 㪋㪏
㪉㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪈㪏㪪㪫㩷㪂㩷㪉㪉㪘
㪋㪏 㪝㪃㩷㪤
㪍㪪㪤㩷㪂㩷㪈㪉㪪㪫㩷㪂㩷㪊㪇㪘
㪈㩷㫃㪸㫉㪾㪼㩷㪘㩷㪂㩷㪋㪍㩷㪪㪫㪆㪘
㪋㪏
㪝㪃㩷㪤
㪝㪃㩷㪤
㪝
㪚㫃㫀㫅㪼㫋㪿㫉㪸㪺㪿㫌㫊
㪋㪏㪘
㪈㪪㪤㩷㪂㩷㪋㪍㩷㪪㪫㪆㪘
㪈㪪㪫㩷㪂㩷㪋㪎㩷㪪㪫㪆㪘
㪋㪏㩷㪪㪫㪆㪘
㪋㪏
㪤
㪋㪏㩷㪪㪫㪆㪘
㪋㪏
㪋㪏
㪝
㪈㪪㪤㩷㪂㩷㪋㪍㩷㪪㪫㪆㪘
㪈㪪㪫㩷㪂㩷㪋㪎㩷㪪㪫㪆㪘
㪈㩷㫃㪸㫉㪾㪼㩷㪪㪤㩷㪂㩷㪋㪍㩷㪪㪫㪆㪘
㪋㪎
㪤
㪋㪎
㪋㪏
㪤
㪋㪏㩷㪪㪫㪆㪘
㪤
㪋㪏
㪝
㪈㪤㩷㪂㩷㪉㪉㪪㪫㩷㪂㩷㪉㪋㪘
㪉㪉㪪㪫㩷㪂㩷㪉㪍㪘
㪋㪎
㪋㪎
㪤
㪤
㪋㪏
㪝㪃㩷㪤
㪍㪪㪫㩷㪂㩷㪋㪉㪘
㪏㪪㪫㩷㪂㩷㪋㪇㪘
㪋㪏
㪋㪏
㪝㪃㩷㪤
㪝
㪋㪏
㪝㪃㩷㪤
㩷㪛㪸㫊㫊㫆㫅㩷㫋㫉㫆㫊㫊㫌㫃㫌㫊 㩷㪙㫃㪼㫅㫅㫀㫌㫊 㩷㪙㫃㪼㫅㫅㫀㫌㫊 㩷㪙㫃㪼㫅㫅㫀㫌㫊
㩷㪙㫃㪼㫅㫅㫀㫌㫊 㩷㪙㫃㪼㫅㫅㫀㫌㫊 㩷㪙㫃㪼㫅㫅㫀㫌㫊 㩷㪙㫃㪼㫅㫅㫀㫌㫊 㩷㪙㫃㪼㫅㫅㫀㫌㫊 㩷㪙㫃㪼㫅㫅㫀㫌㫊 㩷㪙㫃㪼㫅㫅㫀㫌㫊 㩷㪙㫃㪼㫅㫅㫀㫌㫊
㩷㪙㫃㪼㫅㫅㫀㫌㫊 㩷㪙㫃㪼㫅㫅㫀㫌㫊 㩷㪙㫃㪼㫅㫅㫀㫌㫊 㩷㪙㫃㪼㫅㫅㫀㫌㫊 㩷㪙㫃㪼㫅㫅㫀㫌㫊 㩷㪙㫃㪼㫅㫅㫀㫌㫊 㩷㪙㫃㪼㫅㫅㫀㫌㫊
㪋㪏㩷㪪㪫㪆㪘
㪋㪏㪘
㪋㪏
㪋㪏 㪝㪃㩷㪤
㪋㪪㪫㩷㪂㩷㪋㪋㪘 㪏㪪㪫㩷㪂㩷㪋㪇㪘
㪋㪏
㪜 㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪋㪏
㪛 㪉㫅
㪝㪃㩷㪤
㪚 㪪㪼㫏
㪙㫃㪼㫅㫅㫀㫌㫊㩷㫇㫆㫅㫋㫀㪺㫌㫊㩷㫀㫅㪺㫆㪾㫅㫀㫋㫌㫊 㪝㪃㩷㪤
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪋㪏
㪌㪇
㪋㪏
㪋㪏
㪋㪏
㪌㪉
㪋㪏
㪋㪏
㪌㪍
㪌㪋
㪌㪍
㪌㪋
㪋㪏
㪋㪏
㪋㪎
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪝 㪥㪝㪈
㪫㪸㪹㫃㪼㩷㪍㪅㪊㪏㩷㩷㪦㫉㪻㪼㫉㩷㪧㪜㪩㪚㪠㪝㪦㪩㪤㪜㪪㪅㩷㪧㪸㫉㫋㩷㪊㩷㪥㫆㫋㫆㫋㪿㪼㫅㫀㫆㫀㪻㪼㫀㪃㩷㪙㫃㪼㫅㫅㫀㫆㫀㪻㪼㫀㪃㩷㪸㫅㪻㩷㪚㪸㫃㫃㫀㫆㫅㫐㫄㫆㫀㪻㪼㫀㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀㩷 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀㩷
㪌㪇
㪋㪏
㪍㪋
㪌㪍
㪍㪋
㪎㪋
㪍㪍
㪋㪏
㪎㪇
㪎㪇
㪌㪋
㪌㪍
㪋㪏
㪌㪍
㪌㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪈㪅㪎㩷㪝㪠㪘
㪉㪅㪈㩷㪝㪛
㪈㪅㪍㪁㩷㪝㪚㪤
㪉㪅㪋㩷㪝㪛
㪈㪅㪏㩷㪝㪛
㪈㪅㪍㩷㪝㪛
㪞 㪟 㪠 㪥㪝㪉 㪘㪾㪄 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㪥㪦㪩㫊 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪋
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㫅㪼㫆㩷㪰㪃㩷㪘㪚㪥㪔㪋㪏
㪯㪰㪃㩷㪘㪚㪥㪔㪋㪏
㪯㪯㪃㩷㪘㪚㪥㪔㪋㪏
㫅㪼㫆㩷㪰㪃㩷㪘㪚㪥㪔㪋㪏
㪯㪰㪃㩷㪘㪚㪥㪔㪋㪏
㪯㪯㪃㩷㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪠㫋㪸㫃㫐㩷㩿㪧㪸㫃㪼㫉㫄㫆㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪩㪡㪀
㪠㫋㪸㫃㫐㩷㩿㪧㪸㫃㪼㫉㫄㫆㪀
㪡㪸㫇㪸㫅㩷㩿㪦㫂㫀㫅㪸㫎㪸㪀
㪡㪸㫇㪸㫅㩷㩿㪦㫂㫀㫅㪸㫎㪸㪀
㪪㫇㪸㫀㫅㩷㩿㪤㪸㫃㪸㪾㪸㪀
㪠㫋㪸㫃㫐㩷㩿㪫㫐㫉㫉㪿㪼㫅㫀㪸㫅㩷㪪㪼㪸㪀
㪠㫋㪸㫃㫐㩷㩿㪩㫆㫄㪸㪀
㪡㪸㫇㪸㫅㩷㩿㪚㪿㫀㪹㪸㪀
㪠㫋㪸㫃㫐㩷㩿㪧㪸㫃㪼㫉㫄㫆㪀
㪪㫇㪸㫀㫅㩷㩿㪤㪸㫃㪸㪾㪸㪀
㪠㫋㪸㫃㫐
㪡㪸㫇㪸㫅㩷㩿㪢㪸㫅㪸㪾㪸㫎㪸㪀
㪬㪪㪪㪩
㪙㫃㪸㪺㫂㩷㪪㪼㪸
㪙㫃㪸㪺㫂㩷㪪㪼㪸
㪙㫃㪸㪺㫂㩷㪪㪼㪸
㪠㫋㪸㫃㫐㩷㩿㪘㫅㪺㫆㫅㪸㪀
㪠㫋㪸㫃㫐㩷㩿㪘㫅㪺㫆㫅㪸㪀
㪠㫋㪸㫃㫐㩷㩿㪘㫅㪺㫆㫅㪸㪀
㪠㫋㪸㫃㫐㩷㩿㪧㪸㫃㪼㫉㫄㫆㪀
㪠㫋㪸㫃㫐㩷㩿㪧㪸㫃㪼㫉㫄㫆㪀
㪠㫋㪸㫃㫐㩷㩿㪧㪸㫃㪼㫉㫄㫆㪀
㪙㫃㪸㪺㫂㩷㪪㪼㪸
㪙㫃㪸㪺㫂㩷㪪㪼㪸
㪪㫇㪸㫀㫅㩷㩿㪤㪸㫃㪸㪾㪸㪀
㪠㫋㪸㫃㫐㩷㩿㪫㫐㫉㫉㪿㪼㫅㫀㪸㫅㩷㪪㪼㪸㪀
㪠㫋㪸㫃㫐㩷㩿㪘㫅㪺㫆㫅㪸㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪩㪡㪀
㪠㫋㪸㫃㫐㩷㩿㪧㪸㫃㪼㫉㫄㫆㪀
㪪㫇㪸㫀㫅㩷㩿㪤㪸㫃㪸㪾㪸㪀
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪭㪄㪌㪈
㪙㪄㪍㪌
㪭㪄㪌㪈
㪘㪄㪌㪐
㪘㪄㪌㪌㪃㩷㪟㪄㪋㪇
㪚㪄㪐㪃㩷㪚㪄㪈㪇㪃㩷㪞㪄㪈㪏
㪚㪄㪊㪈㪃㩷㪚㪄㪊㪊
㪚㪄㪊㪈㪃㩷㪚㪄㪊㪊
㪘㪄㪌㪐㪃㩷㪦㪄㪋㪏
㪭㪄㪌㪈
㪚㪄㪐㪃㩷㪚㪄㪈㪇㪃㩷㪞㪄㪈㪏
㪚㪄㪊㪊
㪘㪄㪌㪐
㪭㪄㪎㪉
㪘㪄㪐㪌
㪘㪄㪐㪌
㪘㪄㪐㪌
㪚㪄㪈㪐
㪚㪄㪈㪐
㪚㪄㪈㪐
㪚㪄㪉㪋
㪚㪄㪉㪋
㪚㪄㪉㪋
㪘㪄㪐㪌
㪘㪄㪐㪌
㪚㪄㪐㪃㩷㪚㪄㪈㪇㪃㩷㪞㪄㪈㪏
㪚㪄㪊㪈㪃㩷㪚㪄㪊㪊
㪚㪄㪈㪐
㪙㪄㪏㪍
㪚㪄㪉㪏
㪚㪄㪐㪃㩷㪚㪄㪈㪇㪃㩷㪞㪄㪈㪏
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
195
㫅㫌㪺㪿㫀㫇㫀㫅㫅㫀㫊
㫃㪸㫋㫀㪺㪼㫇㪿㪸㫃㫌㫊 㫃㫀㫅㪼㪸㫋㫌㫊 㪽㫉㪼㫅㪸㫋㫌㫊 㪺㪸㫅㪻㫆㫃㫀㫀 㫃㪼㫇㪸㪻㫆㪾㪸㫊㫋㪼㫉
㪜㫃㪼㫌㫋㪿㪼㫉㫆㪺㪿㫀㫉 㪩㪼㫇㫆㫄㫌㪺㪼㫅㫌㫊 㪩㪼㫇㫆㫄㫌㪺㪼㫅㫌㫊 㪩㪼㫇㫆㫄㫌㪺㪼㫅㫌㫊 㪩㪼㫇㫆㫄㫌㪺㪼㫅㫌㫊 㪩㪼㫇㫆㫄㫌㪺㪼㫅㫌㫊 㪩㪼㫇㫆㫄㫌㪺㪼㫅㫌㫊 㪩㪼㫇㫆㫄㫌㪺㪼㫅㫌㫊
㫄㫀㫉㪸㪹㫀㫃㫀㫊 㪹㪼㫅㫀㫋㪼㪾㫌㫉㫀 㪹㪼㫅㫀㫋㪼㪾㫌㫉㫀 㪿㫌㪾㫌㪼㫅㫀㫅㫀 㫆㫉㫅㪸㫋㫀㫇㫀㫅㫅㫀㫊 㫆㫉㫅㪸㫋㫀㫇㫀㫅㫅㫀㫊 㫉㫀㪺㪿㪸㫉㪻㫊㫆㫅㫀㫀 㫉㫀㪺㪿㪸㫉㪻㫊㫆㫅㫀㫀
㪪㫌㪹㫆㫉㪻㪼㫉㩷㪚㪸㫃㫃㫀㫆㫅㫐㫄㫆㫀㪻㪼㫀㩷 㪚㪸㫃㫃㫀㫆㫅㫐㫄㫀㪻㪸㪼㩷
㪚㫆㫅㫀㪻㪼㫅㫊 㪛㫀㪸㪻㪼㫄㫀㪺㪿㫋㪿㫐㫊 㪣㪼㫇㪸㪻㫀㪺㪿㫋㪿㫐㫊 㪣㪼㫇㪸㪻㫆㪾㪸㫊㫋㪼㫉 㪣㪼㫇㪸㪻㫆㪾㪸㫊㫋㪼㫉
㪪㫌㪹㫆㫉㪻㪼㫉㩷㪞㫆㪹㫀㪼㫊㫆㪺㫆㫀㪻㪼㫀㩷 㪞㫆㪹㫀㪼㫊㫆㪺㫀㪻㪸㪼㩷
㪣㪸㪹㫉㫀㫊㫆㫄㫌㫊
㪣㪸㪹㫉㫀㫊㫆㫄㫀㪻㪸㪼
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㪹㫆㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷
㩷㪚㪸㫃㫃㫀㫆㫅㫐㫄㫌㫊㩷㫇㫌㫅㪺㫋㪸㫋㫌㫊 㩷㪚㪸㫃㫃㫀㫆㫅㫐㫄㫌㫊㩷㫇㫌㫅㪺㫋㪸㫋㫌㫊
㩷㪚㪸㫃㫃㫀㫆㫅㫐㫄㫌㫊㩷㪻㫆㫉㫐㫊㫊㫌㫊 㩷㪚㪸㫃㫃㫀㫆㫅㫐㫄㫌㫊 㩷㪚㪸㫃㫃㫀㫆㫅㫐㫄㫌㫊
㩷㪛㫉㪸㪺㫌㫃㫆 㩷㪚㪸㫃㫃㫀㫆㫅㫐㫄㫌㫊 㩷㪚㪸㫃㫃㫀㫆㫅㫐㫄㫌㫊
㪺㪸㫅㪻㫆㫃㫃㪼㫀
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪊㪏
㪤
㪊㪎 㪊㪏
㪝㪃㩷㪤
㪤
㪊㪎 㪊㪉 㪊㪏
㪤 㪤 㪝
㪊㪍 㪊㪏
㪝
㪋㪍
㪤
㪏㩷㪤㪆㪪㪤㩷㪂㩷㪋㪇㩷㪪㪫㪆㪘
㪋㪏
㪊㪍㩷㪪㪤㪆㪪㪫㩷㪂㩷㪉㪘
㪊㪏㪘
㪈㪤㩷㪂㩷㪊㪍㪪㪫
㪉㪤㩷㪂㩷㪊㪇㪘 㪊㪏㪪㪫
㪈㪤㩷㪂㩷㪊㪍㪪㪫
㪊㪍㪘 㪊㪏㪪㪫
㪈㪊㪤㩷㪂㩷㪈㪎㪪㪤㩷㪂㩷㪈㪍㩷㪪㪫㪆㪘
㪈㪉㪤㩷㪂㩷㪈㪏㪪㪤㩷㪂㩷㪈㪍㪪㪫
㪊㪤㩷㪂㩷㪈㪈㪪㪤㩷㪂㩷㪊㪊㩷㪪㪫㪆㪘
㪋㪍
㪈㪉㪤㩷㪂㩷㪈㪇㪪㪤㩷㪂㩷㪉㪇㩷㪪㪫㪆㪘
㪋㪎
㪜 㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪋㪉
㪋㪏
㪛 㪉㫅
㪝㪃㩷㪤
㪚 㪪㪼㫏
㪊㪏
㪊㪏
㪊㪋 㪊㪏
㪊㪏
㪊㪍 㪊㪏
㪎㪍
㪎㪍
㪌㪍
㪍㪈
㪍㪋
㪝 㪥㪝㪈
㪫㪸㪹㫃㪼㩷㪍㪅㪊㪏㩷㩷㪦㫉㪻㪼㫉㩷㪧㪜㪩㪚㪠㪝㪦㪩㪤㪜㪪㪅㩷㪧㪸㫉㫋㩷㪊㩷㪥㫆㫋㫆㫋㪿㪼㫅㫀㫆㫀㪻㪼㫀㪃㩷㪙㫃㪼㫅㫅㫀㫆㫀㪻㪼㫀㪃㩷㪸㫅㪻㩷㪚㪸㫃㫃㫀㫆㫅㫐㫄㫆㫀㪻㪼㫀㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀㩷 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀㩷
㪎㪋
㪊㪏
㪎㪋
㪊㪋 㪎㪍
㪎㪋
㪊㪍 㪎㪍
㪐㪉
㪌㪇
㪉
㪉
㪉
㪉
㪉
㪉
㪈㪅㪍㪁㩷㪝㪚㪤
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪡㪸㫇㪸㫅㩷㩿㪚㪿㫀㪹㪸㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪩㪥㪃㩷㪩㪡㪀
㪢 㩷㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪙㫃㪸㪺㫂㩷㪪㪼㪸
㪪㫇㪸㫀㫅㩷㩿㪤㪸㫃㪸㪾㪸㪀
㪡㪸㫇㪸㫅㩷㩿㪰㪸㫂㫌㫊㪿㫀㫄㪸㪀
㪘㪄㪏㪐
㪫㪄㪊㪍
㪘㪄㪍㪏
㪘㪄㪍㪏
㪘㪄㪍㪏
㪞㪄㪈㪉
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
㪡㪸㫇㪸㫅㩷㩿㪰㪸㫄㪸㪾㫌㪺㪿㫀㪃㩷㪪㪿㫀㫑㫌㫆㫂㪸㪀㪤㪄㪈㪇㪌
㪘㪚㪥㪔㪊㪏
㪘㪚㪥㪔㪊㪏
㪯㪈㪯㪉㪰㪃㩷㪘㪚㪥㪔㪊㪏
㪤㪄㪈㪇㪌 㪡㪸㫇㪸㫅㩷㩿㪟㫐㫆㪾㫆㪀
㪦㪄㪋㪍㪃㩷㪦㪄㪋㪏
㪡㪸㫇㪸㫅㩷㩿㪰㪸㫄㪸㪾㫌㪺㪿㫀㪃㩷㪪㪿㫀㫑㫌㫆㫂㪸㪀㪤㪄㪈㪈㪇
㪡㪸㫇㪸㫅㩷㩿㪰㪸㫄㪸㪾㫌㪺㪿㫀㪀
㪘㪚㪥㪔㪊㪋 㪡㪸㫇㪸㫅㩷㩿㪰㪸㫄㪸㪾㫌㪺㪿㫀㪃㩷㪪㪿㫀㫑㫌㫆㫂㪸㪀㪤㪄㪈㪈㪇 㪯㪈㪯㪈㪯㪉㪯㪉㪃㩷㪘㪚㪥㪔㪊㪏 㪡㪸㫇㪸㫅㩷㩿㪰㪸㫄㪸㪾㫌㪺㪿㫀㪀 㪤㪄㪈㪇㪌
㪯㪈㪯㪉㪰㪃㩷㪘㪚㪥㪔㪊㪏
㪘㪚㪥㪔㪊㪍 㪡㪸㫇㪸㫅㩷㩿㪟㫆㫂㫂㪸㫀㪻㫆㪀 㪪㪄㪈㪍 㪯㪈㪯㪈㪯㪉㪯㪉㪃㩷㪘㪚㪥㪔㪊㪏 㪡㪸㫇㪸㫅㩷㩿㪰㪸㫄㪸㪾㫌㪺㪿㫀㪃㩷㪪㪿㫀㫑㫌㫆㫂㪸㪀㪤㪄㪈㪇㪌
㪘㪚㪥㪔㪋㪍
㪯㪯㪆㪯㪰㪃㩷㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪏
㫊㪼㫏㩷㪺㪿㫉㫆㫄㪅㪖㪃㩷㪘㪚㪥㪔㪋㪏 㪡㪸㫇㪸㫅㩷㩿㪦㫂㫀㫅㪸㫎㪸㪀
㪞 㪟 㪠 㪥㪝㪉 㪘㪾㪄 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㪥㪦㪩㫊 㩿㫇㪾㪆㪺㪼㫃㫃㪀
196
㪛㫆㫉㫄㫀㫋㪸㫋㫆㫉 㪛㫆㫉㫄㫀㫋㪸㫋㫆㫉 㪛㫆㫉㫄㫀㫋㪸㫋㫆㫉 㪛㫆㫉㫄㫀㫋㪸㫋㫆㫉 㪛㫆㫉㫄㫀㫋㪸㫋㫆㫉 㪜㫃㪼㫆㫋㫉㫀㫊 㪜㫃㪼㫆㫋㫉㫀㫊 㪜㫃㪼㫆㫋㫉㫀㫊 㪜㫃㪼㫆㫋㫉㫀㫊 㪜㫃㪼㫆㫋㫉㫀㫊 㪞㫆㪹㫀㫆㫄㫆㫉㫌㫊 㪟㫐㫇㫊㪼㫃㪼㫆㫋㫉㫀㫊 㪤㫆㪾㫌㫉㫅㪻㪸
㩷㩷㪜㫃㪼㫆㫋㫉㫀㫅㪸㪼㩷
㪙㫆㫊㫋㫉㫐㪺㪿㫌㫊 㪙㫆㫊㫋㫉㫐㪺㪿㫌㫊 㪦㫇㪿㫀㫆㪺㪸㫉㪸 㪦㫏㫐㪼㫃㪼㫆㫋㫉㫀㫊 㪦㫏㫐㪼㫃㪼㫆㫋㫉㫀㫊 㪦㫏㫐㪼㫃㪼㫆㫋㫉㫀㫊 㪦㫏㫐㪼㫃㪼㫆㫋㫉㫀㫊 㪦㫏㫐㪼㫃㪼㫆㫋㫉㫀㫊
㪜㫃㪼㫆㫋㫉㫀㪻㪸㪼㩷 㩷㩷㪙㫌㫋㫀㫅㪸㪼
㪤㫀㪺㫉㫆㫇㪼㫉㪺㫆㫇㫊 㪦㪻㫆㫅㫋㫆㪹㫌㫋㫀㫊 㪦㪻㫆㫅㫋㫆㪹㫌㫋㫀㫊 㪦㪻㫆㫅㫋㫆㪹㫌㫋㫀㫊 㪦㪻㫆㫅㫋㫆㪹㫌㫋㫀㫊 㪦㪻㫆㫅㫋㫆㪹㫌㫋㫀㫊 㪦㪻㫆㫅㫋㫆㪹㫌㫋㫀㫊 㪧㪼㫉㪺㪺㫆㫋㫋㫌㫊 㪧㪼㫉㪺㪺㫆㫋㫋㫌㫊
㫃㪸㫋㫀㪽㫉㫆㫅㫊 㫄㪸㪺㫌㫃㪸㫋㫌㫊 㫄㪸㪺㫌㫃㪸㫋㫌㫊 㫄㪸㪺㫌㫃㪸㫋㫌㫊 㫄㪸㪺㫌㫃㪸㫋㫌㫊 㪸㪺㪸㫅㫋㪿㫆㫇㫆㫄㪸 㫆㫏㫐㪺㪼㫇㪿㪸㫃㪸 㫇㫀㪺㫋㪸 㫇㫀㫊㫆㫅㫀㫊 㫇㫀㫊㫆㫅㫀㫊 㪻㫆㫉㫄㫀㫋㫆㫉 㪺㫐㫇㫉㫀㫅㫆㫀㪻㪼㫊 㫄㫆㪾㫌㫉㫅㪻㪸
㫊㫀㫅㪼㫅㫊㫀㫊 㫊㫀㫅㪼㫅㫊㫀㫊 㫇㫆㫉㫆㪺㪼㫇㪿㪸㫃㪸 㫃㫀㫅㪼㫆㫃㪸㫋㫌㫊 㫄㪸㫉㫄㫆㫉㪸㫋㪸 㫄㪸㫉㫄㫆㫉㪸㫋㪸 㫄㪸㫉㫄㫆㫉㪸㫋㪸 㫌㫉㫆㫇㪿㫋㪿㪸㫃㫄㫆㫀㪻㪼㫊
㫊㫎㫀㫅㪿㫆㫅㫀㫊 㫆㪹㫊㪺㫌㫉㪸 㫆㪹㫊㪺㫌㫉㪸 㫆㪹㫊㪺㫌㫉㪸 㫆㪹㫊㪺㫌㫉㪸 㫆㪹㫊㪺㫌㫉㪸 㫇㫃㪸㫋㫐㪺㪼㫇㪿㪸㫃㫌㫊 㪾㫃㪼㪿㫅㫀 㪾㫃㪼㪿㫅㫀
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㪹㫆㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷 㪪㫌㪹㫆㫉㪻㪼㫉㩷㪞㫆㪹㫀㫆㫀㪻㪼㫀㩷 㪦㪻㫆㫅㫋㫆㪹㫌㫋㫀㪻㪸㪼㩷
㪙㫆㫊㫋㫉㫀㪺㪿㫋㪿㫐㫊 㪙㫆㫊㫋㫉㫀㪺㪿㫋㪿㫐㫊
㪟㫐㫇㫊㪼㫃㪼㫆㫋㫉㫀㫊
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪈㪪㪤㩷㪂㩷㪋㪊㩷㪪㪫㪆㪘
㪋㪋
㪉㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪋㪉㩷㪪㪫㪆㪘 㪉㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪋㪉㪘 㪉㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪋㪉㪘 㪍㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪏㪪㪫㩷㪂㩷㪉㪍㪘
㪋㪍 㪋㪍 㪋㪍 㪋㪍
㪋㪍
㪍㪪㪤㩷㪂㩷㪋㪇㩷㪪㪫㪆㪘
㪋㪏㪘
㪋㪏 㪝㪃㩷㪤
㪉㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪋㪉㪘
㪉㪤㩷㪂㩷㪋㪋㪘
㪋㪍 㪋㪏
㪌㪉㪘
㪌㪉
㪝㪃㩷㪤
㪋㪍㪘
㪋㪍
㪋㪍㪘
㪋㪍㩷㪪㪫㪆㪘
㪋㪍
㪤 㪝㪃㩷㪤
㪋㪍
㪈㪋㪤㩷㪂㩷㪉㪏㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪉㪘 㪈㪊㪤㩷㪂㩷㪉㪏㪪㪤㩷㪂㩷㪊㪪㪫㩷㪂㩷㪉㪘
㪋㪍 㪋㪍
㪝 㪤
㪝㪃㩷㪤
㪋㪇㩷㪤㪆㪪㪤㩷㪂㩷㪍㩷㪪㪫㪆㪘
㪋㪍
㪝㪃㩷㪤
㪈㪉㪤㩷㪂㩷㪉㪉㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪉㪘
㪋㪍
㪝㪃㩷㪤
㪈㪉㪤㩷㪂㩷㪉㪉㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪉㪘
㪋㪏㩷㪪㪫㪆㪘 㪉㪪㪤㩷㪂㩷㪏㪪㪫㩷㪂㩷㪊㪍㪘
㪋㪏 㪋㪍
㪋㪍
㪋㩷㪤㪆㪪㪤㩷㪂㩷㪋㪋㩷㪪㪫㪆㪘 㪋㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪋㪉㪘
㪋㪏 㪋㪏
㪋㪋㩷㪪㪫㪆㪘 㪋㪋㩷㪪㪫㪆㪘
㪋㪋 㪋㪋
㪝㪃㩷㪤
㪋㪋㪘
㪋㪋
㪝㪃㩷㪤
㪋㪋㪘
㪋㪋 㪋㪪㪤㩷㪂㩷㪋㪇㪘
㪋㪋㪘
㪋㪋
㪜 㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪋㪋
㪋㪋㩷㪪㪫㪆㪘
㪋㪋㪘
㪋㪋
㪋㪋
㪛 㪉㫅
㪝㪃㩷㪤
㪝㪃㩷㪤
㪚 㪪㪼㫏
㪫㪸㪹㫃㪼㩷㪍㪅㪊㪐㩷㩷㪦㫉㪻㪼㫉㩷㪧㪜㪩㪚㪠㪝㪦㪩㪤㪜㪪㪅㩷㪧㪸㫉㫋㩷㪋㩷㪞㫆㪹㫀㫆㫀㪻㪼㫀㪃㩷㪢㫌㫉㫋㫆㫀㪻㪼㫀㪃㩷㪘㪺㪸㫅㫋㪿㫌㫉㫆㫀㪻㪼㫀㪃㩷㪸㫅㪻㩷㪪㪺㫆㫄㪹㫉㫆㫀㪻㪼㫀㩷
㪌㪉
㪋㪏
㪌㪋
㪋㪍
㪋㪏
㪌㪉
㪋㪍
㪋㪍
㪏㪎
㪏㪏
㪏㪍
㪏㪇
㪏㪇
㪌㪏
㪋㪏
㪌㪇
㪌㪇
㪋㪏 㪋㪏
㪌㪉
㪌㪉
㪋㪌
㪋㪋
㪋㪋
㪋㪏
㪋㪋
㪋㪋
㪋㪋
㪋㪋
㪋㪋
㪋㪏
㪌㪋
㪋㪍
㪌㪉
㪋㪍
㪐㪇
㪐㪇
㪐㪇
㪐㪇
㪍㪍
㪌㪇
㪌㪇
㪌㪍
㪌㪉
㪋㪏
㪋㪋
㪋㪋
㪋㪋
㪋㪋
㪝 㪞 㪥㪝㪈 㪥㪝㪉
㪉
㪉
㪉
㪉
㪟 㪘㪾㪄 㪥㪦㪩㫊
㩿㪉㪅㪌㩷㪝㪠㪘㪀
㪉㪅㪉㩷㪝㪚㪤
㩿㪉㪅㪏㪁㩷㪝㪛㪀
㩿㪉㪅㪋㪁㩷㪝㪚㪤㪀
㪠 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪍
㪯㪰㪃㩷㪘㪚㪥㪔㪋㪍
㪯㪯㪃㩷㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪋
㪘㪚㪥㪔㪋㪋
㪘㪚㪥㪔㪋㪋
㪘㪚㪥㪔㪋㪋
㪘㪚㪥㪔㪋㪋
㪘㪚㪥㪔㪋㪋
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪘㫌㫊㫋㫉㪸㫃㫀㪸
㪡㪸㫇㪸㫅
㪤㪼㫏㫀㪺㫆㩷㩿㪭㪼㫉㪸㪺㫉㫌㫑㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪩㪥㪀
㪤㪼㫏㫀㪺㫆
㪤㪼㫏㫀㪺㫆
㪚㪿㫀㫅㪸㩷㩿㪞㫌㪸㫅㪾㪻㫆㫅㪾㪀
㪡㪸㫇㪸㫅㩷㩿㪦㫂㫀㫅㪸㫎㪸㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪩㪥㪀
㪤㪼㫏㫀㪺㫆㩷㩿㪭㪼㫉㪸㪺㫉㫌㫑㪀
㪤㪼㫏㫀㪺㫆㩷㩿㪧㪸㪺㫀㪽㫀㪺㩷㪺㫆㪸㫊㫋㪀
㪫㪿㪸㫀㫃㪸㫅㪻
㪚㪿㫀㫅㪸㩷㩿㪞㫌㪸㫅㪾㪻㫆㫅㪾㪀
㪫㪿㪸㫀㫃㪸㫅㪻
㪫㪿㪸㫀㫃㪸㫅㪻㩷㩿㪢㪿㫆㫅㩷㪢㪸㪼㫅㪀
㪫㪿㪸㫀㫃㪸㫅㪻 㩿㪘㫌㫊㫋㫉㪸㫃㫀㪸㪀
㪚㪿㫀㫅㪸㩷㩿㪱㪿㪼㫁㫀㪸㫅㪾㪀
㪡㪸㫇㪸㫅㩷㩿㪦㫂㫀㫅㪸㫎㪸㪀
㪩㫌㫊㫊㫀㪸㩷㩿㪤㫆㫊㪺㫆㫎㪀
㪩㫌㫊㫊㫀㪸㩷㩿㪤㫆㫊㪺㫆㫎㪀
㪢㫆㫉㪼㪸㩷㩿㪢㫎㪸㫅㪺㪿㫆㫅㪀
㪚㪿㫀㫅㪸㩷㩿㪮㫌㪿㪸㫅㪀
㪚㪿㫀㫅㪸㩷㩿㪟㫌㪹㪼㫀㪀
㪢㫆㫉㪼㪸
㪡㪸㫇㪸㫅㩷㩿㪰㪸㫄㪸㪾㫌㪺㪿㫀㪀
㪡㪸㫇㪸㫅㩷㩿㪦㫀㫋㪸㪃㩷㪢㪸㪾㫆㫊㪿㫀㫄㪸㪀
㪚㪿㫀㫅㪸㩷㩿㪮㫌㪿㪸㫅㪀
㪢 㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪘㪄㪍㪇
㪪㪄㪈㪉㪉
㪤㪄㪈㪏
㪤㪄㪏㪇
㪤㪄㪏㪇
㪬㪄㪏㪉
㪞㪄㪍㪎㪃㩷㪰㪄㪈㪌
㪘㪄㪌㪎
㪦㪄㪎㪍
㪦㪄㪎㪍
㪤㪄㪏㪇
㪬㪄㪋㪍㪃㩷㪤㪄㪈㪏
㪬㪄㪋㪌㪃㩷㪬㪄㪋㪍
㪛㪄㪉㪏
㪱㪄㪊㪇
㪛㪄㪈㪐
㪘㪄㪎㪊㪃㩷㪟㪄㪋㪇
㪘㪄㪎㪊 㪚㪄㪐㪇
㪝㪄㪏
㪘㪄㪍㪇
㪢㪄㪈㪇㪋
㪢㪄㪈㪇㪋㪃㩷㪭㪄㪏㪍
㪣㪄㪎㪐㪃㩷㪣㪄㪈㪋
㪞㪄㪍㪎㪃㩷㪰㪄㪈㪌㪃㩷㪚㪄㪏㪊
㪛㪄㪈㪏
㪣㪄㪈㪌
㪥㪄㪊㪈
㪘㪄㪍㪇㪃㩷㪦㪄㪋㪏
㪛㪄㪈㪏
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
197
㪘㪺㪼㫅㫋㫉㫆㪾㫆㪹㫀㫌㫊 㪘㪺㪼㫅㫋㫉㫆㪾㫆㪹㫀㫌㫊 㪘㫄㪹㫃㫐㪾㫆㪹㫀㫌㫊 㪘㫇㪿㫀㪸 㪘㫇㪿㫀㪸 㪘㫇㪿㫀㪸 㪘㫇㪿㫀㪸 㪘㫇㪿㫀㪸 㪙㪸㫋㪿㫐㪾㫆㪹㫀㫌㫊 㪙㪸㫋㪿㫐㪾㫆㪹㫀㫌㫊 㪙㪸㫋㪿㫐㪾㫆㪹㫀㫌㫊 㪙㪼㫅㫋㪿㫆㫇㪿㫀㫃㫌㫊 㪙㪼㫅㫋㪿㫆㫇㪿㫀㫃㫌㫊 㪙㪼㫅㫋㪿㫆㫇㪿㫀㫃㫌㫊 㪚㪸㫊㫇㫀㫆㫊㫆㫄㪸 㪝㪸㫍㫆㫅㫀㪾㫆㪹㫀㫌㫊 㪞㫃㫆㫊㫊㫆㪾㫆㪹㫀㫌㫊 㪞㫃㫆㫊㫊㫆㪾㫆㪹㫀㫌㫊 㪞㫆㪹㫀㫆㪻㫆㫅 㪞㫆㪹㫀㫆㪻㫆㫅 㪞㫆㪹㫀㫆㪻㫆㫅 㪞㫆㪹㫀㫆㪻㫆㫅 㪞㫆㪹㫀㫆㫇㫊㫀㫊 㪞㫆㪹㫀㫆㫊㫆㫄㪸 㪞㫆㪹㫀㫆㫊㫆㫄㪸㩷 㪞㫆㪹㫀㫆㫊㫆㫄㪸㩷 㪞㫆㪹㫀㫌㫊 㪞㫆㪹㫀㫌㫊 㪞㫆㪹㫀㫌㫊 㪞㫆㪹㫀㫌㫊
㪞㫆㪹㫀㫀㪻㪸㪼㩷 㩷㩷㪞㫆㪹㫀㫀㫅㪸㪼㩷
㪧㪸㫉㫀㫆㪾㫃㫆㫊㫊㫌㫊
㪧㫋㪼㫉㪼㫃㪼㫆㫋㫉㫀㪻㪸㪼
㫇㪽㫃㪸㫌㫄㫀 㫇㪽㫃㪸㫌㫄㫀 㫇㪿㪸㫃㪸㪼㫅㪸 㫄㫀㫅㫌㫋㪸 㫄㫀㫅㫌㫋㪸 㫄㫀㫅㫌㫋㪸 㫄㫀㫅㫌㫋㪸 㫄㫀㫅㫌㫋㪸 㪽㫌㫊㪺㫌㫊 㪽㫌㫊㪺㫌㫊 㪖 㫊㫆㫇㫆㫉㪸㫋㫆㫉 㫃㪼㫆㪹㪼㫉㪾㫀㫌㫊 㫊㫋㪼㫃㫃㪸㫋㫌㫊 㫃㪼㫆㪹㪼㫉㪾㫀㫌㫊 㪺㪸㫊㫇㫀㫌㫄 㪾㫐㫄㫅㪸㫌㪺㪿㪼㫅 㪾㫀㫌㫉㫀㫊 㫆㫃㫀㫍㪸㪺㪼㫌㫊 㪺㫀㫋㫉㫀㫅㫌㫊 㪺㫀㫋㫉㫀㫅㫌㫊 㫈㫌㫀㫅㫈㫌㪼㫊㫋㫉㫀㪾㪸㫋㫌㫊 㫉㫀㫍㫌㫃㪸㫋㫌㫊㩷㫉㫀㫍㫌㫃㪸㫋㫌㫊 㫄㪸㪺㫉㫆㫊㫋㫆㫄㪸 㫄㪸㪺㫉㫆㪻㫆㫅 㫑㪼㪹㫉㪼㫃㫃㫌㫊 㫑㪼㪹㫉㪼㫃㫃㫌㫊 㪹㫌㪺㪺㪿㫀㪺㪿㫀 㪹㫌㪺㪺㪿㫀㪺㪿㫀 㪺㫆㪹㫀㫋㫀㫊 㪺㫆㪹㫀㫋㫀㫊
㫉㪸㫆㫀
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㪹㫆㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷
㫑㪼㪹㫉㪼㫃㫃㪸 㫑㪼㪹㫉㪼㫃㫃㪸
㪞㫆㪹㫀㫆㫇㪿㫀㫊
㪽㪸㫊㪺㫀㪸㫇㫌㫅㪺㫋㪸㫋㫌㫊
㫊㫋㪼㫃㫃㪸㫋㫌㫊㩷㫃㪼㫆㪹㪼㫉㪾㫀㫌㫊 㫊㫋㪼㫃㫃㪸㫋㫌㫊㩷㫊㫋㪼㫃㫃㪸㫋㫌㫊 㫊㫋㪼㫃㫃㪸㫋㫌㫊㩷㫊㫋㪼㫃㫃㪸㫋㫌㫊
㪸㫃㪹㫀㫄㪸㪺㫌㫃㪸㫋㫌㫊
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪋㪏㪘 㪋㪋㪘
㪋㪉 㪋㪈 㪋㪏 㪋㪋
㪤 㪝㪃㩷㪤
㪋㪋㩷㪪㪫㪆㪘
㪋㪋
㪋㪍㪘 㪋㪍㪘
㪋㪇 㪋㪋 㪋㪍 㪋㪍
㪤 㪝㪃㩷㪤 㪝㪃㩷㪤
㪉㪪㪤㩷㪂㩷㪋㪉㪘
㪋㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪊㪋㪘
㪈㪤㩷㪂㩷㪊㪍㪘
㪊㪎
㪝
㪊㪏㪘
㪊㪏㪘
㪊㪏
㪊㪏
㪝㪃㩷㪤
㪝㪃㩷㪤
㪈㪤㩷㪂㩷㪋㪉㩷㪪㪫㪆㪘 㪋㪋㩷㪪㪫㪆㪘
㪋㪊 㪋㪋 㪈㪇㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪊㪉㪘
㪉㪤㩷㪂㩷㪋㪉㩷㪪㪫㪆㪘
㪋㪋
㪝 㪤
㪋㪍
㪈㪍㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪉㪋㪘
㪋㪍㪘
㪋㪍
㪋㪍
㪝㪃㩷㪤
㪋㪪㪤㩷㪂㩷㪊㪇㪪㪫㩷㪂㩷㪈㪋㪘
㪋㪏 㪋㪏㩷㪤㪆㪪㪤
㪈㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪋㪈㪘
㪋㪋 㪋㪏
㪉㪪㪫㩷㪂㩷㪋㪉㪘
㪋㪋
㪝㪃㩷㪤
㪉㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪋㪇㪘
㪉㪤㩷㪂㩷㪋㪇㪘
㪈㪤㩷㪂㩷㪈㪪㪫㩷㪂㩷㪋㪇㪘
㪋㪋
㪋㪍
㪉㪤㩷㪂㩷㪈㪪㪫㩷㪂㩷㪊㪏㪘
㪋㪉
㪝㪃㩷㪤
㪈㪪㪫㩷㪂㩷㪋㪉㪘
㪋㪊
㪤
㪋㪋㪘
㪉㪤㩷㪂㩷㪋㪉㩷㪪㪫㪆㪘
㪊㪍㩷㪤㪆㪪㪤㩷㪂㩷㪈㪋㩷㪪㪫㪆㪘
㪋㪏㩷㪤㪆㪪㪤㪆㪪㪫㩷㪂㩷㪉㪘
㪋㪍㪘
㪜 㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪋㪋
㪋㪋
㪌㪇
㪌㪇
㪋㪍
㪛 㪉㫅
㪝㪃㩷㪤
㪝㪃㩷㪤
㪝㪃㩷㪤
㪚 㪪㪼㫏
㪋㪍
㪋㪍
㪋㪍
㪋㪍
㪊㪏
㪊㪏
㪊㪏
㪍㪇
㪋㪋
㪋㪋 㪋㪋
㪋㪍
㪍㪉
㪋㪍
㪐㪍
㪌㪉
㪋㪌
㪋㪋
㪋㪍
㪋㪋
㪋㪏
㪋㪊
㪋㪋
㪋㪊
㪋㪊
㪋㪋
㪋㪍
㪏㪍
㪋㪍
㪋㪍
㪋㪍
㪋㪍
㪋㪍
㪊㪏
㪊㪏
㪊㪏
㪍㪇
㪍㪏
㪋㪍
㪐㪍
㪏㪉
㪋㪎
㪋㪍
㪋㪏
㪋㪏
㪋㪋
㪋㪏
㪋㪋
㪋㪋
㪋㪋
㪋㪋
㪋㪋
㪐㪏
㪋㪍
㪝 㪞 㪥㪝㪈 㪥㪝㪉
㪟 㪘㪾㪄 㪥㪦㪩㫊
㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀㩷 㪫㪸㪹㫃㪼㩷㪍㪅㪊㪐㩷㩷㪦㫉㪻㪼㫉㩷㪧㪜㪩㪚㪠㪝㪦㪩㪤㪜㪪㪅㩷㪧㪸㫉㫋㩷㪋㩷㪞㫆㪹㫀㫆㫀㪻㪼㫀㪃㩷㪢㫌㫉㫋㫆㫀㪻㪼㫀㪃㩷㪘㪺㪸㫅㫋㪿㫌㫉㫆㫀㪻㪼㫀㪃㩷㪸㫅㪻㩷㪪㪺㫆㫄㪹㫉㫆㫀㪻㪼㫀㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀㩷
㪈㪅㪊㩷㪝㪛
㪇㪅㪐㩷㪝㪛
㪉㪅㪉㩷㪝㪠㪘
㪉㪅㪈㩷㪝㪠㪘
㪉㪅㪇㩷㪝㪠㪘
㪠 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪋
㪘㪚㪥㪔㪋㪋
㪘㪚㪥㪔㪋㪋 㪘㪚㪥㪔㪋㪋
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪋
㪘㪚㪥㪔㪋㪋
㪘㪚㪥㪔㪋㪋
㪘㪚㪥㪔㪋㪋
㪘㪚㪥㪔㪋㪋
㪘㪚㪥㪔㪋㪋
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪋㪍
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪠㫋㪸㫃㫐㩷㩿㪫㫐㫉㫉㪿㪼㫅㫀㪸㫅㩷㪪㪼㪸㪀
㪪㫇㪸㫀㫅㩷㩿㪤㬗㫃㪸㪾㪸㪀
㪪㫇㪸㫀㫅㩷㩿㪤㬗㫃㪸㪾㪸㪀
㪪㫇㪸㫀㫅㩷㩿㪤㬗㫃㪸㪾㪸㪀
㪭㪼㫅㪼㫑㫌㪼㫃㪸
㪭㪼㫅㪼㫑㫌㪼㫃㪸
㪭㪼㫅㪼㫑㫌㪼㫃㪸
㪠㫅㪻㫀㪸㩷㩿㪮㪙㪀
㪘㫌㫊㫋㫉㪸㫃㫀㪸㩷㩿㪟㪼㫉㫆㫅㩷㪠㫊㪅㪀
㪡㪸㫇㪸㫅㩷㩿㪦㫂㫀㫅㪸㫎㪸㪀 㪡㪸㫇㪸㫅㩷㩿㪦㫂㫀㫅㪸㫎㪸㪀
㪡㪸㫇㪸㫅㩷㩿㪦㫂㫀㫅㪸㫎㪸㪀
㪚㪿㫀㫅㪸㩷㩿㪱㪿㪼㫁㫀㪸㫅㪾㪀
㪠㫅㪻㫀㪸㩷㩿㪦㫉㫀㫊㫊㪸㪀
㪢㫆㫉㪼㪸㩷㩿㪢㫌㫅㫊㪸㫅㪀
㪩㫌㫊㫊㫀㪸㩷㩿㪛㫆㫅㩷㪩㪅㪀
㪩㫌㫊㫊㫀㪸㩷㩿㪭㫆㫃㪾㪸㩷㪩㪅㪀
㪩㫌㫊㫊㫀㪸㩷㩿㪭㫆㫃㪾㪸㩷㪩㪅㪀
㪩㫌㫊㫊㫀㪸㩷㩿㪭㫆㫃㪾㪸㩷㪩㪅㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪩㪥㪀
㪫㪿㪸㫀㫃㪸㫅㪻
㪡㪸㫇㪸㫅㩷㩿㪚㪿㫀㪹㪸㪃㩷㪢㪸㫅㪸㪾㪸㫎㪸㪀
㪠㫋㪸㫃㫐㩷㩿㪦㫉㫋㫆㫅㪸㪀
㪠㫋㪸㫃㫐㩷㩿㪦㫉㫋㫆㫅㪸㪀
㪠㫋㪸㫃㫐㩷㩿㪦㫉㫋㫆㫅㪸㪀
㪠㫋㪸㫃㫐㩷㩿㪦㫉㫋㫆㫅㪸㪀
㪠㫋㪸㫃㫐㩷㩿㪦㫉㫋㫆㫅㪸㪀
㪡㪸㫇㪸㫅㩷㩿㪦㫂㫀㫅㪸㫎㪸㪀
㪢㫆㫉㪼㪸㩷㩿㪢㫌㫅㫊㪸㫅㪀
㪡㪸㫇㪸㫅㩷㩿㪪㪿㫀㫄㫆㫅㫆㫊㪼㫂㫀㪀
㪝㫀㫁㫀
㪢 㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪚㪄㪊㪈
㪫㪄㪊㪉㪃㩷㪚㪄㪐
㪫㪄㪊㪈
㪫㪄㪊㪉㪃㩷㪚㪄㪐
㪘㪄㪈㪊
㪘㪄㪈㪊
㪘㪄㪈㪊
㪢㪄㪋㪍
㪘㪄㪎㪊
㪘㪄㪌㪎 㪘㪄㪎㪊㪃㩷㪟㪄㪋㪇
㪘㪄㪌㪎㪃㩷㪟㪄㪋㪈
㪝㪄㪏
㪩㪄㪌㪎㪃㩷㪤㪄㪉㪋
㪣㪄㪈㪋
㪞㪄㪍㪊
㪞㪄㪍㪊
㪞㪄㪍㪊
㪞㪄㪍㪊
㪞㪄㪈㪉
㪛㪄㪈㪐
㪘㪄㪌㪉㪃㩷㪘㪄㪍㪉
㪚㪄㪈㪏
㪚㪄㪈㪏
㪚㪄㪈㪏
㪚㪄㪈㪏
㪚㪄㪈㪏
㪘㪄㪍㪇㪃㩷㪟㪄㪋㪇
㪣㪄㪈㪋
㪥㪄㪊㪈
㪮㪄㪉㪉
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
198
㪞㫆㪹㫀㫌㫊 㪞㫆㪹㫀㫌㫊 㪞㫆㪹㫀㫌㫊 㪞㫆㪹㫀㫌㫊 㪞㫆㪹㫀㫌㫊 㪞㫆㪹㫀㫌㫊 㪞㫆㪹㫀㫌㫊 㪞㫆㪹㫀㫌㫊 㪞㫆㪹㫀㫌㫊 㪞㫆㪹㫀㫌㫊 㪞㫆㪹㫀㫌㫊 㪞㫆㪹㫀㫌㫊 㪞㫆㪹㫀㫌㫊 㪞㫆㪹㫀㫌㫊 㪞㫆㪹㫀㫌㫊 㪞㫆㪹㫀㫌㫊 㪞㫆㪹㫀㫌㫊 㪞㫆㪹㫀㫌㫊 㪞㫆㪹㫀㫌㫊 㪞㫆㪹㫀㫌㫊 㪞㫆㪹㫀㫌㫊 㪞㫆㪹㫀㫌㫊 㪞㫆㪹㫀㫌㫊 㪞㫆㪹㫀㫌㫊 㪞㫆㪹㫀㫌㫊 㪞㫆㪹㫀㫌㫊 㪞㫆㪹㫀㫌㫊 㪞㫆㪹㫀㫌㫊 㪞㫆㪹㫀㫌㫊 㪞㫆㪹㫀㫌㫊 㪞㫆㪹㫀㫌㫊 㪞㫆㪹㫀㫌㫊 㪞㫆㪹㫀㫌㫊 㪞㫆㪹㫀㫌㫊 㪞㫆㪹㫀㫌㫊 㪞㫆㪹㫀㫌㫊
㪺㫆㪹㫀㫋㫀㫊 㪺㫆㫌㪺㪿㫀 㪺㫉㫌㪼㫅㫋㪸㫋㫌㫊 㪽㪸㫃㫃㪸㫏 㪽㪸㫃㫃㪸㫏 㪽㪸㫃㫃㪸㫏 㪽㪸㫃㫃㪸㫏 㪽㪸㫃㫃㪸㫏 㪽㪸㫃㫃㪸㫏 㪽㪸㫃㫃㪸㫏 㫅㫀㪾㪼㫉 㫅㫀㪾㪼㫉 㫅㫀㪾㪼㫉 㫅㫀㪾㪼㫉 㫅㫀㪾㪼㫉 㫅㫀㪾㪼㫉㩷㫁㫆㫑㫆 㫅㫀㪾㪼㫉㩷㫁㫆㫑㫆 㫅㫀㪾㪼㫉㩷㫁㫆㫑㫆 㫅㫀㪾㪼㫉㩷㫁㫆㫑㫆 㫅㫀㪾㪼㫉㩷㫁㫆㫑㫆 㫅㫀㪾㪼㫉㩷㫁㫆㫑㫆 㫅㫀㪾㪼㫉㩷㫁㫆㫑㫆 㫅㫀㪾㪼㫉㩷㫁㫆㫑㫆 㫆㫇㪿㫀㫆㪺㪼㫇㪿㪸㫃㫌㫊 㫆㫇㪿㫀㫆㪺㪼㫇㪿㪸㫃㫌㫊 㫇㪸㪾㪸㫅㪼㫃㫃㫌㫊 㫇㪸㪾㪸㫅㪼㫃㫃㫌㫊 㫇㪸㪾㪸㫅㪼㫃㫃㫌㫊 㫇㪸㪾㪸㫅㪼㫃㫃㫌㫊 㫇㪸㪾㪸㫅㪼㫃㫃㫌㫊 㫇㪸㪾㪸㫅㪼㫃㫃㫌㫊 㫇㪸㪾㪸㫅㪼㫃㫃㫌㫊 㫇㪸㪾㪸㫅㪼㫃㫃㫌㫊 㫇㪸㪾㪸㫅㪼㫃㫃㫌㫊 㫇㪸㪾㪸㫅㪼㫃㫃㫌㫊 㫇㪸㪾㪸㫅㪼㫃㫃㫌㫊
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㪹㫆㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷
㪘㪄㫋㫐㫇㪼 㪙㪄㫋㫐㫇㪼 㪚㪄㫋㫐㫇㪼 㪛㪄㫋㫐㫇㪼
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪌㪍
㪌㪏
㪌㪏
㪌㪍
㪍㪊
㪋㪍 㪋㪍
㪋㪍
㪋㪎
㪋㪍
㪋㪍
㪋㪍
㪋㪍
㪋㪏
㪋㪍
㪈㪈㩷㪤㪆㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪉㪏㪘 㪋㪪㪤㩷㪂㩷㪋㪏㩷㪪㪫㪆㪘 㪈㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪋㪎㩷㪪㪫㪆㪘 㪈㪤㩷㪂㩷㪋㪋㪘 㪋㪍㪘 㪈㪤㩷㪂㩷㪋㪋㩷㪪㪫㪆㪘 㪊㪤㩷㪂㩷㪋㪉㩷㪪㪫㪆㪘
㪌㪇 㪋㪐 㪌㪉 㪌㪉 㪋㪌 㪋㪍 㪋㪌 㪋㪌
㪝㪃㩷㪤 㪤
㪉㪤㩷㪂㩷㪋㪋㪘 㪈㪤㩷㪂㩷㪋㪌㪘
㪋㪍 㪋㪍 㪋㪍 㪋㪎 㪋㪎 㪋㪎
㪝㪃㩷㪤 㪝 㪤 㪝㪃㩷㪤 㪝㪃㩷㪤 㪤
㪋㪎㩷㪪㪫㪆㪘
㪈㩷㪤㪆㪪㪤㩷㪂㩷㪋㪍㩷㪪㪫㪆㪘
㪈㩷㪤㪆㪪㪤㩷㪂㩷㪋㪍㩷㪪㪫㪆㪘
㪉㩷㪤㪆㪪㪤㩷㪂㩷㪋㪋㩷㪪㪫㪆㪘
㪋㪍㩷㪪㪫㪆㪘 㪈㩷㪤㪆㪪㪤㩷㪂㩷㪋㪌㩷㪪㪫㪆㪘
㪋㪍 㪋㪍
㪤 㪝
㪉㩷㪤㪆㪪㪤㩷㪂㩷㪋㪊㩷㪪㪫㪆㪘
㪋㪌
㪝㪃㩷㪤
㪈㪇㩷㪤㪆㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪊㪇㪘
㪋㪎
㪋㪏
㪋㪏
㪋㪎
㪋㪏
㪋㪏
㪋㪍 㪋㪎
㪋㪎
㪋㪏
㪋㪍
㪋㪍
㪋㪍
㪌㪎
㪌㪍
㪍㪇
㪍㪇
㪐㩷㪤㪆㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪉㪍㪘㩷㪂㩷㪍㪤㪚 㪍㪇
㪌㪈
㪝㪃㩷㪤
㪋㪎
㪋㪏
㪋㪍
㪋㪍
㪎㪇
㪎㪇
㪎㪇
㪎㪇
㪍㪋
㪍㪏
㪍㪏
㪍㪍
㪍㪊
㪋㪍 㪋㪍
㪋㪍
㪋㪎
㪋㪍
㪋㪍
㪋㪍
㪋㪏
㪋㪏
㪋㪍
㪝 㪞 㪥㪝㪈 㪥㪝㪉
㪏㩷㪤㪆㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪉㪏㪘㩷㪂㩷㪍㪤㪚 㪍㪇
㪌㪉
㪝㪃㩷㪤
㪌㪇㪁
㪉㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪏㪪㪫㩷㪂㩷㪊㪉㪘
㪋㪏 㪤
㪊㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪊㪋㪘
㪌㪈
㪝
㪋㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪊㪇㪘 㪋㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪊㪉㪘
㪋㪏 㪌㪇
㪝
㪈㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪊㪎㪘
㪋㩷㪤㪆㪪㪤㩷㪂㩷㪊㪏㪘 㪊㩷㪤㪆㪪㪤㩷㪂㩷㪋㪇㪘
㪌㩷㪤㪆㪪㪤㩷㪂㩷㪊㪍㪘㩷
㪎㩷㪤㪆㪪㪤㩷㪂㩷㪊㪉㪘
㪏㩷㪤㪆㪪㪤㩷㪂㩷㪊㪇㪘
㪝
㪌㪇
㪤
㪋㪍
㪋㪉 㪋㪊
㪋㪇 㪝㪃㩷㪤 㪤
㪎㩷㪤㪆㪪㪤㩷㪂㩷㪊㪊㪘
㪋㪇
㪝㪃㩷㪤 㪋㪈
㪊㪐
㪤
㪝㪃㩷㪤
㪍㩷㪤㪆㪪㪤㩷㪂㩷㪊㪋㪘
㪊㪏
㪤
㪉㪪㪫㩷㪂㩷㪋㪋㪘
㪋㪍
㪝㪃㩷㪤
㪉㪪㪤㩷㪂㩷㪋㪋㪘
㪋㪍㪘
㪜 㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪋㪍
㪋㪍
㪛 㪉㫅
㪤
㪚 㪪㪼㫏
㪋
㪋
㪋
㪉
㪈㪄㪋
㪟 㪘㪾㪄 㪥㪦㪩㫊
㪫㪸㪹㫃㪼㩷㪍㪅㪊㪐㩷㩷㪦㫉㪻㪼㫉㩷㪧㪜㪩㪚㪠㪝㪦㪩㪤㪜㪪㪅㩷㪧㪸㫉㫋㩷㪋㩷㪞㫆㪹㫀㫆㫀㪻㪼㫀㪃㩷㪢㫌㫉㫋㫆㫀㪻㪼㫀㪃㩷㪘㪺㪸㫅㫋㪿㫌㫉㫆㫀㪻㪼㫀㪃㩷㪸㫅㪻㩷㪪㪺㫆㫄㪹㫉㫆㫀㪻㪼㫀㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀㩷 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀㩷
㪇㪅㪏㩷㪝㪛
㪉㪅㪇㩷㪝㪛
㪇㪅㪐㩷㪝㪛
㪠 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪘㪚㪥㪔㪋㪎
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪎
㪯㪰㪃㩷㪘㪚㪥㪔㪋㪍
㪯㪯㪃㩷㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪍 㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪌㪉
㪘㪚㪥㪔㪌㪇
㪯㪰㪃㩷㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪍 㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪍
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪪㫇㪸㫀㫅㩷㩿㪤㬗㫃㪸㪾㪸㪀
㪤㪼㪻㫀㫋㪼㫉㫉㪸㫅㪼㪸㫅
㪠㫋㪸㫃㫐㩷㩿㪧㪸㫃㪼㫉㫄㫆㪀
㪪㫇㪸㫀㫅㩷㩿㪤㬗㫃㪸㪾㪸㪀
㪪㫇㪸㫀㫅㩷㩿㪤㬗㫃㪸㪾㪸㪀
㪤㪼㪻㫀㫋㪼㫉㫉㪸㫅㪼㪸㫅
㪪㫇㪸㫀㫅㩷㩿㪤㬗㫃㪸㪾㪸㪀 㪠㫋㪸㫃㫐㩷㩿㪧㪸㫃㪼㫉㫄㫆㪀
㪤㪼㪻㫀㫋㪼㫉㫉㪸㫅㪼㪸㫅
㪪㫇㪸㫀㫅㩷㩿㪤㪼㪻㫀㫋㪼㫉㫉㪸㫅㪼㪸㫅㪀
㪪㫇㪸㫀㫅㩷㩿㪤㪼㪻㫀㫋㪼㫉㫉㪸㫅㪼㪸㫅㪀
㪙㫃㪸㪺㫂㩷㪪㪼㪸
㪙㫃㪸㪺㫂㩷㪪㪼㪸
㪙㫃㪸㪺㫂㩷㪪㪼㪸
㪙㫃㪸㪺㫂㩷㪪㪼㪸
㪠㫋㪸㫃㫐㩷㩿㪧㪸㫃㪼㫉㫄㫆㪀
㪠㫋㪸㫃㫐㩷㩿㪧㪸㫃㪼㫉㫄㫆㪀
㪠㫋㪸㫃㫐㩷㩿㪧㪸㫃㪼㫉㫄㫆㪀
㪠㫋㪸㫃㫐㩷㩿㪧㪸㫃㪼㫉㫄㫆㪀
㪠㫋㪸㫃㫐㩷㩿㪭㪼㫅㫀㪺㪼㪀
㪠㫋㪸㫃㫐㩷㩿㪩㫆㫄㪼㪀
㪥㫆㫉㫎㪸㫐
㪥㫆㫉㫎㪸㫐
㪥㫆㫉㫎㪸㫐
㪪㫇㪸㫀㫅㩷㩿㪤㬗㫃㪸㪾㪸㪀
㪬㪢
㪪㫇㪸㫀㫅㩷㩿㪤㬗㫃㪸㪾㪸㪀 㪪㫇㪸㫀㫅㩷㩿㪤㬗㫃㪸㪾㪸㪀
㪪㫇㪸㫀㫅㩷㩿㪤㬗㫃㪸㪾㪸㪀
㪪㫇㪸㫀㫅㩷㩿㪤㬗㫃㪸㪾㪸㪀
㪪㫇㪸㫀㫅㩷㩿㪤㬗㫃㪸㪾㪸㪀
㪪㫇㪸㫀㫅㩷㩿㪤㬗㫃㪸㪾㪸㪀
㪪㫇㪸㫀㫅㩷㩿㪤㬗㫃㪸㪾㪸㪀
㪪㫇㪸㫀㫅㩷㩿㪤㬗㫃㪸㪾㪸㪀
㪜㫌㫉㫆㫇㪼
㪙㫃㪸㪺㫂㩷㪪㪼㪸
㪢 㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪫㪄㪊㪊
㪭㪄㪋㪐㪃㩷㪫㪄㪊㪊
㪭㪄㪋㪐
㪫㪄㪊㪉
㪫㪄㪊㪉㪃㩷㪘㪄㪋㪋㪃㩷㪚㪄㪐
㪭㪄㪋㪐㪃㩷㪫㪄㪊㪊
㪫㪄㪊㪊 㪭㪄㪋㪐
㪞㪄㪎㪍㪃㩷㪭㪄㪋㪐
㪞㪄㪎㪍
㪞㪄㪎㪍
㪭㪄㪎㪉
㪭㪄㪎㪉
㪭㪄㪉㪉
㪭㪄㪉㪉
㪭㪄㪌㪐
㪭㪄㪌㪐
㪭㪄㪌㪐
㪭㪄㪌㪐
㪚㪄㪎㪍
㪚㪄㪊㪈
㪢㪄㪈㪊㪈
㪢㪄㪈㪊㪈
㪢㪄㪈㪊㪈
㪫㪄㪊㪉㪃㩷㪚㪄㪐
㪤㪄㪈㪈㪍
㪫㪄㪊㪎 㪫㪄㪊㪎
㪫㪄㪊㪎
㪫㪄㪊㪎
㪫㪄㪊㪇㪃㩷㪫㪄㪊㪉㪃㩷㪫㪄㪊㪎
㪫㪄㪊㪎
㪫㪄㪊㪎
㪫㪄㪊㪈
㪤㪄㪈㪈㪍
㪞㪄㪍㪊
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
199
㪞㫆㪹㫀㫌㫊 㪞㫆㪹㫀㫌㫊 㪞㫆㪹㫀㫌㫊 㪞㫆㪹㫀㫌㫊 㪞㫆㪹㫀㫌㫊㪺㫌㫃㫌㫊 㪤㪼㫊㫆㪾㫆㪹㫀㫌㫊 㪤㪼㫊㫆㪾㫆㪹㫀㫌㫊 㪥㪼㫆㪾㫆㪹㫀㫌㫊 㪥㪼㫆㪾㫆㪹㫀㫌㫊 㪥㪼㫆㪾㫆㪹㫀㫌㫊 㪥㪼㫆㪾㫆㪹㫀㫌㫊 㪥㪼㫆㪾㫆㪹㫀㫌㫊 㪥㪼㫆㪾㫆㪹㫀㫌㫊 㪥㪼㫆㪾㫆㪹㫀㫌㫊 㪥㪼㫆㪾㫆㪹㫀㫌㫊 㪥㪼㫆㪾㫆㪹㫀㫌㫊 㪥㪼㫆㪾㫆㪹㫀㫌㫊 㪥㪼㫆㪾㫆㪹㫀㫌㫊 㪥㪼㫆㪾㫆㪹㫀㫌㫊 㪥㪼㫆㪾㫆㪹㫀㫌㫊 㪥㪼㫆㪾㫆㪹㫀㫌㫊 㪥㪼㫆㪾㫆㪹㫀㫌㫊 㪥㪼㫆㪾㫆㪹㫀㫌㫊 㪥㪼㫆㪾㫆㪹㫀㫌㫊 㪥㪼㫆㪾㫆㪹㫀㫌㫊 㪥㪼㫆㪾㫆㪹㫀㫌㫊 㪥㪼㫆㪾㫆㪹㫀㫌㫊 㪥㪼㫆㪾㫆㪹㫀㫌㫊 㪥㪼㫆㪾㫆㪹㫀㫌㫊 㪥㪼㫆㪾㫆㪹㫀㫌㫊 㪥㪼㫆㪾㫆㪹㫀㫌㫊 㪥㪼㫆㪾㫆㪹㫀㫌㫊 㪧㪸㪻㫆㪾㫆㪹㫀㫌㫊 㪧㫆㫄㪸㫋㫆㫊㪺㪿㫀㫊㫋㫌㫊 㪧㫆㫄㪸㫋㫆㫊㪺㪿㫀㫊㫋㫌㫊
㫇㪸㪾㪸㫅㪼㫃㫃㫌㫊 㫇㪸㪾㪸㫅㪼㫃㫃㫌㫊 㫇㪸㪾㪸㫅㪼㫃㫃㫌㫊 㫇㪸㪾㪸㫅㪼㫃㫃㫌㫊 㪽㫃㪸㫍㪼㫊㪺㪼㫅㫊 㪹㪸㫋㫉㪸㪺㪿㫆㪺㪼㫇㪿㪸㫃㫌㫊 㪹㪸㫋㫉㪸㪺㪿㫆㪺㪼㫇㪿㪸㫃㫌㫊 㪺㪼㫇㪿㪸㫃㪸㫉㪾㫆㫀㪻㪼㫊 㪺㫆㫅㫊㫋㫉㫌㪺㫋㫆㫉 㪺㫆㫅㫊㫋㫉㫌㪺㫋㫆㫉 㪺㫆㫅㫊㫋㫉㫌㪺㫋㫆㫉 㪺㫐㫉㫀㫌㫊 㪺㫐㫉㫀㫌㫊 㪺㫐㫉㫀㫌㫊 㪺㫐㫉㫀㫌㫊 㪼㫌㫉㫐㪺㪼㫇㪿㪸㫃㫌㫊 㪼㫌㫉㫐㪺㪼㫇㪿㪸㫃㫌㫊 㪼㫌㫉㫐㪺㪼㫇㪿㪸㫃㫌㫊 㪽㫃㫌㫍㫀㪸㫋㫀㫃㫀㫊㩷㪽㫃㫌㫍㫀㪸㫋㫀㫃㫀㫊 㪽㫃㫌㫍㫀㪸㫋㫀㫃㫀㫊㩷㫇㪸㫃㫃㪸㫊㫀 㪾㫆㫉㫃㪸㫇 㪾㫐㫄㫅㫆㫋㫉㪸㪺㪿㪼㫃㫌㫊 㪾㫐㫄㫅㫆㫋㫉㪸㪺㪿㪼㫃㫌㫊 㪾㫐㫄㫅㫆㫋㫉㪸㪺㪿㪼㫃㫌㫊 㫂㪼㫊㫊㫃㪼㫉㫀 㫂㪼㫊㫊㫃㪼㫉㫀 㫂㪼㫊㫊㫃㪼㫉㫀㩷㫂㪼㫊㫊㫃㪼㫉㫀 㫂㪼㫊㫊㫃㪼㫉㫀㩷㫂㪼㫊㫊㫃㪼㫉㫀 㫄㪼㫃㪸㫅㫆㫊㫋㫆㫄㫌㫊 㫄㪼㫃㪸㫅㫆㫊㫋㫆㫄㫌㫊㩷㪸㪽㪽㫀㫅㫀㫊 㫄㪼㫃㪸㫅㫆㫊㫋㫆㫄㫌㫊 㫉㪿㫆㪻㫀㫆㫅㫀 㪹㫆㫅㪼㫃㫃㫀 㫃㫆㫑㪸㫅㫆㫀 㫄㫀㪺㫉㫆㫇㫊
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㪹㫆㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷
㪺㪼㫇㪿㪸㫃㪸㫉㪾㪼㫊 㫇㫃㪸㫋㫐㫉㫆㫊㫋㫉㫀㫊 㫄㪸㫉㫋㪼㫅㫊㫀㫀
㪞㫆㪹㫀㫌㫊
㫇㫃㪸㫋㫐㪾㫆㪹㫀㫌㫊㩷㪺㫆㫅㫊㫋㫉㫌㫋㫆㫉 㫇㫃㪸㫋㫐㪾㫆㪹㫀㫌㫊㩷㪺㫆㫅㫊㫋㫉㫌㫋㫆㫉 㫇㫃㪸㫋㫐㪾㫆㪹㫀㫌㫊㩷㪺㫆㫅㫊㫋㫉㫌㫋㫆㫉 㫇㫃㪸㫋㫐㪾㫆㪹㫀㫌㫊㩷㪺㫆㫅㫊㫋㫉㫌㫋㫆㫉 㫇㫃㪸㫋㫐㪾㫆㪹㫀㫌㫊㩷㪺㫆㫅㫊㫋㫉㫌㫋㫆㫉 㫇㫃㪸㫋㫐㪾㫆㪹㫀㫌㫊㩷㪺㫆㫅㫊㫋㫉㫌㫋㫆㫉 㫇㫃㪸㫋㫐㪾㫆㪹㫀㫌㫊㩷㪺㫆㫅㫊㫋㫉㫌㫋㫆㫉
㪞㫆㪹㫀㫌㫊
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪍㩷㪤㪆㪪㪤㩷㪂㩷㪋㪇㪘 㪈㪍㩷㪤㪆㪪㪤㩷㪂㩷㪈㪋㪘
㪋㪏 㪋㪍 㪊㪇
㪤 㪝㪃㩷㪤
㪋㪏㪘
㪋㪍㪘
㪋㪍㪘 㪋㪍㪘
㪋㪍 㪋㪍
㪋㪍 㪊㪎 㪋㪍
㪝 㪝㪃㩷㪤 㪝㪃㩷㪤
㪊㪇㪪㪤㩷㪂㩷㪈㪍㪪㪫
㪊㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪈㪉㪘
㪊㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪊㪪㪫㩷㪂㩷㪊㪏㪘
㪋㪍㪘
㪋㪍
㪋㪍㪘 㪋㪍㪘
㪋㪍
㪋㪍
㪈㪎㩷㪤㪆㪪㪤㩷㪂㩷㪈㪉㪘
㪉㪐 㪋㪍㪘
㪈㪋㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪈㪋㪘
㪊㪇 㪋㪍
㪈㪌㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪈㪉㩷㪪㪫㪆㪘
㪉㪐
㪤
㪈㪤㩷㪂㩷㪈㪪㪤㩷㪂㩷㪋㪋㪘
㪋㪍 㪈㪋㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪈㪋㩷㪪㪫㪆㪘
㪋㪍㪘 㪉㩷㪪㪤㪆㪪㪫㩷㪂㩷㪋㪋㪘
㪋㪍 㪋㪍 㪊㪇
㪋㪍㩷㪪㪫㪆㪘
㪋㪍
㪝
㪝㪃㩷㪤
㪈㪋㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪈㪋㪘
㪊㪇
㪤
㪈㪊㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪈㪍㪘
㪊㪈
㪝㪃㩷㪤
㪍㩷㪤㪆㪪㪤㩷㪂㩷㪊㪋㪘 㪌㩷㪤㪆㪪㪤㩷㪂㩷㪈㪪㪫㩷㪂㩷㪊㪌㪘
㪋㪇 㪋㪈 㪈㪉㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪈㪏㪘
㪏㩷㪤㪆㪪㪤㩷㪂㩷㪊㪇㪘
㪊㪏
㪊㪉
㪐㩷㪤㪆㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪉㪍㪘
㪊㪎
㪝㪃㩷㪤
㪉㪤㩷㪂㩷㪋㪉㪘 㪉㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪋㪇㪘
㪋㪋 㪋㪋
㪋㩷㪤㪆㪪㪤㩷㪂㩷㪊㪏㪘
㪋㪍 㪋㪉
㪈㪍㪤㩷㪂㩷㪈㪋㪘
㪊㪇
㪈㪤㪆㪪㪤㩷㪂㩷㪋㪎㪘
㪋㪏㩷㪪㪫㪆㪘 㪈㪪㪤㩷㪂㩷㪋㪎㪘
㪋㪏 㪋㪏 㪋㪏
㪜 㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪝
㪛 㪉㫅
㪝㪃㩷㪤 㪝
㪚 㪪㪼㫏
㪎㪍
㪌㪉
㪌㪈
㪋㪍
㪋㪍
㪋㪍
㪋㪍
㪋㪍
㪋㪍
㪋㪍
㪋㪍
㪋㪏
㪋㪍
㪋㪍
㪋㪍
㪋㪍
㪋㪍
㪋㪍
㪋㪍
㪋㪍
㪋㪍
㪋㪍
㪋㪍
㪋㪏
㪋㪍
㪋㪍
㪋㪍
㪋㪍
㪋㪍
㪌㪉
㪋㪐
㪋㪏 㪋㪐
㪋㪏
㪐㪉
㪍㪉
㪌㪋
㪋㪍
㪋㪍
㪋㪍
㪋㪍
㪋㪍
㪋㪍
㪋㪏
㪋㪍 㪋㪏
㪋㪍
㪋㪍
㪋㪍
㪋㪍
㪋㪍
㪋㪎
㪋㪍
㪋㪍
㪋㪏
㪋㪏
㪋㪍
㪋㪍
㪋㪍
㪋㪍
㪋㪍
㪌㪉
㪋㪐
㪋㪐
㪋㪏
㪝 㪞 㪥㪝㪈 㪥㪝㪉
㪉
㪉
㪉
㪉
㪟 㪘㪾㪄 㪥㪦㪩㫊
㪫㪸㪹㫃㪼㩷㪍㪅㪊㪐㩷㩷㪦㫉㪻㪼㫉㩷㪧㪜㪩㪚㪠㪝㪦㪩㪤㪜㪪㪅㩷㪧㪸㫉㫋㩷㪋㩷㪞㫆㪹㫀㫆㫀㪻㪼㫀㪃㩷㪢㫌㫉㫋㫆㫀㪻㪼㫀㪃㩷㪘㪺㪸㫅㫋㪿㫌㫉㫆㫀㪻㪼㫀㪃㩷㪸㫅㪻㩷㪪㪺㫆㫄㪹㫉㫆㫀㪻㪼㫀㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀㩷 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀㩷
㩿㪉㪅㪌㩷㪝㪠㪘㪀
㪠 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪎
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪌
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪍 㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪏 㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪜㪄㪐
㪠㪄㪈㪏
㪞㪄㪍㪋
㪢㪄㪈㪊㪈
㪫㪄㪊㪊
㪭㪄㪋㪐㪃㩷㪫㪄㪊㪊 㪭㪄㪋㪐
㪭㪄㪋㪐
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
㪭㪄㪈㪏㪃㩷㪭㪄㪉㪊㪃㩷㪭㪄㪈㪇㪊 㩷
㪭㪄㪈㪏㪃㩷㪭㪄㪉㪊㪃㩷㪭㪄㪈㪇㪊 㩷
㪭㪄㪈㪏㪃㩷㪭㪄㪉㪊㪃㩷㪭㪄㪈㪇㪊 㩷
㪬㪢㩷㩿㪛㪼㫍㫆㫅㪀
㪛㫌㫋㪺㪿㩷㪥㫆㫉㫋㪿㩷㪪㪼㪸
㪠㫋㪸㫃㫐㩷㩿㪣㫀㪾㫌㫉㫀㪸㪀
㪙㫃㪸㪺㫂㩷㪪㪼㪸㩷㪹㪸㫊㫀㫅
㪘㫑㫆㫍㩷㪪㪼㪸㩷㪹㪸㫊㫀㫅
㪙㫃㪸㪺㫂㩷㪪㪼㪸㩷㪹㪸㫊㫀㫅
㪙㫃㪸㪺㫂㩷㪪㪼㪸㩷㪹㪸㫊㫀㫅
㪙㫃㪸㪺㫂㩷㪪㪼㪸㩷㪹㪸㫊㫀㫅
㪙㫃㪸㪺㫂㩷㪪㪼㪸㩷㪹㪸㫊㫀㫅
㪙㫃㪸㪺㫂㩷㪪㪼㪸㩷㪹㪸㫊㫀㫅
㪙㫃㪸㪺㫂㩷㪪㪼㪸㩷㪹㪸㫊㫀㫅
㪙㫃㪸㪺㫂㩷㪪㪼㪸㩷㪹㪸㫊㫀㫅
㪙㫃㪸㪺㫂㩷㪪㪼㪸㩷㪹㪸㫊㫀㫅 㪙㫃㪸㪺㫂㩷㪪㪼㪸㩷㪹㪸㫊㫀㫅
㪚㪸㫊㫇㫀㪸㫅㩷㪹㪸㫊㫀㫅
㪩㫌㫊㫊㫀㪸㩷㩿㪛㫆㫅㩷㪩㪅㪀
㪩㫌㫊㫊㫀㪸㩷㩿㪛㫆㫅㩷㪩㪅㪀
㪛㪸㫅㫌㪹㪼㩷㪛㪼㫃㫋㪸㩷㫊㫐㫊㫋㪼㫄
㪛㪸㫅㫌㪹㪼㩷㪛㪼㫃㫋㪸㩷㫊㫐㫊㫋㪼㫄
㪛㪸㫅㫌㪹㪼㩷㪛㪼㫃㫋㪸㩷㫊㫐㫊㫋㪼㫄
㪞㪼㫆㫉㪾㫀㪸㩷㩿㪢㫌㫉㪸㩷㪩㪅㪀
㪞㪼㫆㫉㪾㫀㪸㩷㩿㪢㫌㫉㪸㩷㪩㪅㪀
㪮㪄㪉㪊
㪮㪄㪉㪈
㪚㪄㪊㪈
㪭㪄㪉㪊㪃㩷㪭㪄㪈㪇㪊
㪭㪄㪉㪊
㪭㪄㪎㪉
㪠㪄㪈㪏㪃㩷㪟㪄㪋㪈
㪞㪄㪍㪋
㪞㪄㪍㪋
㪭㪄㪉㪈
㪭㪄㪉㪈
㪞㪄㪍㪋
㪞㪄㪍㪋 㪞㪄㪍㪋
㪭㪄㪉㪈
㪞㪄㪍㪊
㪞㪄㪍㪊
㪜㪄㪐
㪜㪄㪐
㪜㪄㪐
㪭㪄㪉㪊㪃㩷㪭㪄㪈㪇㪊
㪭㪄㪈㪏㪃㩷㪭㪄㪉㪊㪃㩷㪭㪄㪈㪇㪊 㩷
㪞㪼㫆㫉㪾㫀㪸㩷㩿㪫㪹㫀㫃㫀㫊㫀㩷㪩㪼㫊㪼㫉㫍㫆㫀㫉㪀 㪭㪄㪈㪏㪃㩷㪭㪄㪉㪊㪃㩷㪭㪄㪈㪇㪊㩷
㪞㪼㫆㫉㪾㫀㪸㩷㩿㪢㫌㫉㪸㩷㪩㪅㪀
㪙㫃㪸㪺㫂㩷㪪㪼㪸㩷㪹㪸㫊㫀㫅
㪙㫃㪸㪺㫂㩷㪪㪼㪸㩷㪹㪸㫊㫀㫅
㪞㪼㫆㫉㪾㫀㪸㩷㩿㪫㪹㫀㫃㫀㫊㫀㩷㪩㪼㫊㪼㫉㫍㫆㫀㫉㪀 㪭㪄㪈㪏㪃㩷㪭㪄㪉㪊㪃㩷㪭㪄㪈㪇㪊
㪙㫃㪸㪺㫂㩷㪪㪼㪸
㪙㫃㪸㪺㫂㩷㪪㪼㪸
㪙㫃㪸㪺㫂㩷㪪㪼㪸
㪥㫆㫉㫎㪸㫐
㪪㫇㪸㫀㫅㩷㩿㪤㬗㫃㪸㪾㪸㪀
㪤㪼㪻㫀㫋㪼㫉㫉㪸㫅㪼㪸㫅 㪠㫋㪸㫃㫐㩷㩿㪧㪸㫃㪼㫉㫄㫆㪀
㪠㫋㪸㫃㫐㩷㩿㪧㪸㫃㪼㫉㫄㫆㪀
㪢 㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
200
㪘㪺㪸㫅㫋㪿㫆㪾㫆㪹㫀㫌㫊 㪘㪺㪸㫅㫋㪿㫆㪾㫆㪹㫀㫌㫊 㪘㪺㪸㫅㫋㪿㫆㪾㫆㪹㫀㫌㫊 㪘㪺㪸㫅㫋㪿㫆㪾㫆㪹㫀㫌㫊 㪘㪺㪸㫅㫋㪿㫆㪾㫆㪹㫀㫌㫊 㪘㪺㪸㫅㫋㪿㫆㪾㫆㪹㫀㫌㫊 㪘㪺㪸㫅㫋㪿㫆㪾㫆㪹㫀㫌㫊 㪘㪺㪸㫅㫋㪿㫆㪾㫆㪹㫀㫌㫊 㪘㪺㪸㫅㫋㪿㫆㪾㫆㪹㫀㫌㫊 㪘㪺㪸㫅㫋㪿㫆㪾㫆㪹㫀㫌㫊 㪘㪺㪸㫅㫋㪿㫆㪾㫆㪹㫀㫌㫊 㪘㫎㪸㫆㫌㫊 㪘㫎㪸㫆㫌㫊 㪘㫎㪸㫆㫌㫊 㪙㫉㪸㪺㪿㫐㪾㫆㪹㫀㫌㫊 㪚㪿㪸㪼㫅㫆㪾㫆㪹㫀㫌㫊 㪚㪿㪸㪼㫅㫆㪾㫆㪹㫀㫌㫊 㪚㪿㪸㪼㫅㫆㪾㫆㪹㫀㫌㫊 㪚㪿㪸㪼㫅㫆㪾㫆㪹㫀㫌㫊 㪚㪿㪸㪼㫅㫆㪾㫆㪹㫀㫌㫊 㪚㫋㪼㫅㫆㪾㫆㪹㫀㫌㫊
㩷㩷㪞㫆㪹㫀㫆㫅㪼㫃㫃㫀㫅㪸㪼
㪧㫆㫄㪸㫋㫆㫊㪺㪿㫀㫊㫋㫌㫊 㪧㫆㫄㪸㫋㫆㫊㪺㪿㫀㫊㫋㫌㫊 㪧㫆㫄㪸㫋㫆㫊㪺㪿㫀㫊㫋㫌㫊 㪧㫆㫄㪸㫋㫆㫊㪺㪿㫀㫊㫋㫌㫊 㪧㫆㫄㪸㫋㫆㫊㪺㪿㫀㫊㫋㫌㫊 㪧㫆㫄㪸㫋㫆㫊㪺㪿㫀㫊㫋㫌㫊 㪧㫉㫆㫋㪼㫉㫆㫉㪿㫀㫅㫌㫊 㪧㫉㫆㫋㪼㫉㫆㫉㪿㫀㫅㫌㫊 㪭㪸㫃㪼㫅㪺㫀㪼㫅㫅㪼㪸 㪭㪸㫃㪼㫅㪺㫀㪼㫅㫅㪼㪸 㪰㫆㫅㪾㪼㫀㪺㪿㫋㪿㫐㫊 㪱㫆㫊㫋㪼㫉㫀㫊㪼㫊㫊㫆㫉 㪱㫆㫊㫋㪼㫉㫀㫊㪼㫊㫊㫆㫉
㪼㫃㫆㫅㪾㪸㫋㪸 㪖 㪽㫃㪸㫍㫀㫄㪸㫅㫌㫊 㪽㫃㪸㫍㫀㫄㪸㫅㫌㫊 㪽㫃㪸㫍㫀㫄㪸㫅㫌㫊 㪽㫃㪸㫍㫀㫄㪸㫅㫌㫊 㪿㪸㫊㫋㪸 㪿㪸㫊㫋㪸 㪿㪸㫊㫋㪸 㪿㪸㫊㫋㪸 㫃㪸㪺㫋㫀㫇㪼㫊 㫃㪸㪺㫋㫀㫇㪼㫊 㪽㫃㪸㫍㫌㫊 㪾㫉㪸㫄㫄㪼㫇㫆㫄㫌㫊 㫋㪸㫁㪸㫊㫀㪺㪸 㫅㫌㫅㫌㫊 㪸㫅㫅㫌㫃㪸㫉㫀㫊 㪸㫅㫅㫌㫃㪸㫉㫀㫊 㪾㫌㫃㫆㫊㫌㫊 㪾㫌㫃㫆㫊㫌㫊 㪾㫌㫃㫆㫊㫌㫊 㫊㪿㫌㪽㪼㫃㪻㫋㫀
㫄㫀㪺㫉㫆㫇㫊 㫄㫀㫅㫌㫋㫌㫊 㫄㫀㫅㫌㫋㫌㫊 㫄㫀㫅㫌㫋㫌㫊 㫅㫆㫉㫍㪼㪾㫀㪺㫌㫊 㫇㫀㪺㫋㫌㫊 㫄㪸㫉㫄㫆㫉㪸㫋㫌㫊 㫄㪸㫉㫄㫆㫉㪸㫋㫌㫊 㫄㫌㫉㪸㫃㫀㫊 㫊㫋㫉㫀㪾㪸㫋㪸 㪺㫉㫀㫅㫀㪾㪼㫉 㫆㫇㪿㫀㫆㪺㪼㫇㪿㪸㫃㫌㫊 㫆㫇㪿㫀㫆㪺㪼㫇㪿㪸㫃㫌㫊
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㪹㫆㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷
㪋㪍㪘 㪋㪍㪘
㪋㪍 㪋㪍 㪋㪍
㪝㪃㩷㪤 㪝㪃㩷㪤
㪍㪪㪤㩷㪂㩷㪉㪋㪪㪫㩷㪂㩷㪈㪍㪘
㪊㪋㩷㪤㪆㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪈㪇㪘
㪉㪤㩷㪂㩷㪋㪉㩷㪪㪫㪆㪘
㪋㪍㪘
㪋㪍 㪋㪍
㪝㪃㩷㪤
㪋㪋㩷㪪㪫㪆㪘 㪋㪋㪘 㪋㪋㩷㪪㪫㪆㪘 㪈㪍㪪㪫㩷㪂㩷㪉㪏㪘 㪏㩷㪤㪆㪪㪤㩷㪂㩷㪊㪍㩷㪪㪫㪆㪘 㪋㪏㪘
㪋㪋 㪋㪋 㪋㪋 㪋㪋 㪋㪋 㪋㪏
㪋㪏
㪋㪍㪘
㪋㪇 㪋㪍
㪋㪇㩷㪪㪫㪆㪘
㪋㪇㪘
㪋㪋 㪋㪇
㪝㪃㩷㪤
㪝㪃㩷㪤
㪉㪤㩷㪂㩷㪋㪉㩷㪪㪫㪆㪘
㪉㪤㩷㪂㩷㪋㪉㩷㪪㪫㪆㪘
㪋㪋
㪋㪋
㪝㪃㩷㪤
㪍㩷㪤㪆㪪㪤㩷㪂㩷㪊㪏㩷㪪㪫㪆㪘
㪋㪋㪘
㪋㪋
㪝㪃㩷㪤
㪋㪋
㪈㪇㪪㪫㩷㪂㩷㪊㪋㪘 㪋㪋㪘
㪋㪋
㪋㪋 㪝㪃㩷㪤
㪊㪍㪪㪫㩷㪂㩷㪏㪘
㪋㪉 㪋㪋
㪤
㪏㩷㪤㪆㪪㪤㩷㪂㩷㪊㪋㩷㪪㪫㪆㪘
㪋㪍㪘
㪉㪤㩷㪂㩷㪋㪋㩷㪪㪫㪆㪘
㪝㪃㩷㪤
㪋㪍
㪌㪇 㪋㪍
㪝㪃㩷㪤 㪝㪃㩷㪤
㪋㪍㪘 㪉㪤㩷㪂㩷㪋㪉㩷㪪㪫㪆㪘
㪋㪍 㪋㪋
㪉㪉㩷㪤㪆㪪㪤㩷㪂㩷㪈㪉㪪㪫㩷㪂㩷㪈㪉㪘
㪈㪇㪤㩷㪂㩷㪈㪇㪪㪤㩷㪂㩷㪏㪪㪫㩷㪂㩷㪋㪘
㪋㪍 㪊㪉
㪈㪏㪪㪤㩷㪂㩷㪈㪏㪪㪫㩷㪂㩷㪈㪇㪘
㪝㪃㩷㪤
㪋㪍
㪝㪃㩷㪤
㪋㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪉㪇㪪㪫㩷㪂㩷㪍㪘
㪜 㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪋㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪈㪍㪪㪫㩷㪂㩷㪈㪇㪘
㪝㪃㩷㪤
㪋㪍 㪋㪍
㪝㪃㩷㪤
㪛 㪉㫅
㪝㪃㩷㪤
㪚 㪪㪼㫏
㪚㪿㪸㫊㫄㫀㪺㪿㫋㪿㫐㫊㩷㪻㫆㫃㫀㪺㪿㫆㪾㫅㪸㫋㪿㫌㫊 㪚㪿㪸㫊㫄㫀㪺㪿㫋㪿㫐㫊㩷㪻㫆㫃㫀㪺㪿㫆㪾㫅㪸㫋㪿㫌㫊 㪝㪃㩷㪤 㪚㪿㪸㫊㫄㫀㪺㪿㫋㪿㫐㫊 㪚㪿㪸㫊㫄㫀㪺㪿㫋㪿㫐㫊㩷 㪚㪿㪸㫊㫄㫀㪺㪿㫋㪿㫐㫊㩷 㪝㪃㩷㪤 㪞㫆㪹㫀㫆㫅㪼㫃㫃㫌㫊 㪝
㩷㪘㪹㫆㫄㪸 㫊㫋㫉㫀㪾㪸㫋㫌㫊
㪪㫐㫅㪼㪺㪿㫆㪾㫆㪹㫀㫌㫊 㪪㫐㫅㪼㪺㪿㫆㪾㫆㪹㫀㫌㫊
㫊㫇㪅
㪞㫆㪹㫀㫌㫊
㪜㫃㪼㫆㫋㫉㫀㫊 㪜㫃㪼㫆㫋㫉㫀㫆㪻㪼㫊㩷㫊㫋㫉㫀㪾㪸㫋㫌㫊 㪚㫋㪼㫅㫆㪾㫆㪹㫀㫌㫊
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪋㪏
㪌㪉
㪋㪋
㪋㪋
㪋㪋
㪋㪋
㪋㪍
㪋㪍
㪋㪇
㪋㪇
㪋㪍
㪋㪍
㪋㪍
㪌㪇
㪋㪋
㪋㪋
㪋㪋
㪋㪋
㪌㪇
㪋㪍
㪋㪏
㪏㪋
㪋㪍
㪋㪍
㪋㪍
㪋㪍
㪍㪏
㪌㪉
㪌㪉
㪍㪋
㪍㪍
㪍㪍
㪋㪏
㪍㪇
㪋㪋
㪋㪍
㪋㪍
㪋㪇
㪋㪋
㪋㪋
㪌㪋
㪏㪇
㪋㪍
㪐㪇
㪋㪍
㪋㪍
㪋㪍
㪏㪇
㪍㪇
㪎㪍
㪏㪉
㪏㪉
㪏㪍
㪝 㪞 㪥㪝㪈 㪥㪝㪉
㪉
㪉
㪉
㪉
㪟 㪘㪾㪄 㪥㪦㪩㫊
㪫㪸㪹㫃㪼㩷㪍㪅㪊㪐㩷㩷㪦㫉㪻㪼㫉㩷㪧㪜㪩㪚㪠㪝㪦㪩㪤㪜㪪㪅㩷㪧㪸㫉㫋㩷㪋㩷㪞㫆㪹㫀㫆㫀㪻㪼㫀㪃㩷㪢㫌㫉㫋㫆㫀㪻㪼㫀㪃㩷㪘㪺㪸㫅㫋㪿㫌㫉㫆㫀㪻㪼㫀㪃㩷㪸㫅㪻㩷㪪㪺㫆㫄㪹㫉㫆㫀㪻㪼㫀㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀㩷 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀㩷 㪠 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪣㪄㪈㪋
㪰㪄㪉㪈
㪘㪄㪍㪉
㪣㪄㪎㪐
㪣㪄㪈㪋
㪮㪄㪎
㪣㪄㪈㪋
㪥㪄㪊㪈
㪘㪄㪌㪉㪃㩷㪘㪄㪍㪉
㪣㪄㪈㪋
㪭㪄㪎㪉
㪚㪄㪈㪌
㪘㪄㪌㪎
㪘㪄㪌㪎
㪢㪄㪈㪊㪐
㪞㪄㪍㪊㪃㩷㪭㪄㪎㪉 㩷
㪩㪄㪏
㪢㪄㪈㪊㪈
㪮㪄㪉㪈
㪮㪄㪉㪈
㪢㪄㪈㪊㪈
㪢㪄㪎㪋
㪢㪄㪎㪋
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
㪢㫆㫉㪼㪸㩷㩿㪮㫆㫆㫃㫊㪸㫅㪀
㪡㪸㫇㪸㫅㩷㩿㪰㪸㫄㪸㪾㫌㪺㪿㫀㪀
㪡㪸㫇㪸㫅㩷㩿㪚㪿㫀㪹㪸㪃㩷㪢㪸㫅㪸㪾㪸㫎㪸㪀
㪢㫆㫉㪼㪸㩷㩿㪢㫌㫅㫊㪸㫅㪀
㪡㪸㫇㪸㫅㩷㩿㪢㪸㫅㪸㪾㪸㫎㪸㪀
㩿㪪㪅㩷㪘㫊㫀㪸㪀
㪙㫉㪸㫑㫀㫃
㪠㫅㪻㫀㪸㩷㩿㪮㪙㪀
㪧㪄㪉㪋
㪣㪄㪈㪋
㪥㪄㪊㪈
㪘㪄㪍㪉
㪣㪄㪎㪐㪃㩷㪣㪄㪈㪋
㪘㪄㪌㪉㪃㩷㪘㪄㪍㪉
㪧㪄㪋㪋
㪪㪄㪈㪐㪍
㪢㪄㪋㪉
㪡㪸㫇㪸㫅㩷㩿㪣㪸㫂㪼㩷㪢㪸㫊㫌㫄㫀㪾㪸㫌㫉㪸㪀 㪘㪄㪌㪉㪃㩷㪘㪄㪌㪎 㩿㪙㫉㪸㫑㫀㫃㪀 㪦㪄㪏㪍
㪢㫆㫉㪼㪸㩷㩿㪧㫀㪄㫀㫅㪀
㪚㪿㫀㫅㪸
㪡㪸㫇㪸㫅㩷㩿㪘㫉㫀㪸㫂㪼㩷㪪㪼㪸㪀
㪢㫆㫉㪼㪸㩷㩿㪞㫐㪼㪿㫎㪸㫋㫆㪀
㪢㫆㫉㪼㪸㩷㩿㪢㫌㫅㫊㪸㫅㪀
㪚㪿㫀㫅㪸㩷㩿㪪㪿㪸㫅㪻㫆㫅㪾㪀
㪢㫆㫉㪼㪸㩷㩿㪛㪸㪻㪸㪼㫇㫆㪀
㪡㪸㫇㪸㫅㩷㩿㪰㪸㫄㪸㪾㫌㪺㪿㫀㪀
㪡㪸㫇㪸㫅㩷㩿㪢㪸㫅㪸㪾㪸㫎㪸㪀
㪢㫆㫉㪼㪸㩷㩿㪢㫌㫅㫊㪸㫅㪀
㪙㫃㪸㪺㫂㩷㪪㪼㪸
㪠㫋㪸㫃㫐㩷㩿㪘㫅㪺㫆㫅㪸㪀
㪡㪸㫇㪸㫅㩷㩿㪦㫂㫀㫅㪸㫎㪸㪀
㪡㪸㫇㪸㫅㩷㩿㪦㫂㫀㫅㪸㫎㪸㪀
㪠㫅㪻㫀㪸㩷㩿㪮㪙㪀
㪩㫌㫊㫊㫀㪸㩷㩿㪛㫆㫅㩷㪩㪅㪀
㪪㫃㫆㫍㪸㫂㫀㪸
㪥㫆㫉㫎㪸㫐
㪬㪢㩷㩿㪧㫃㫐㫄㫆㫌㫋㪿㪀
㪬㪢㩷㩿㪧㫃㫐㫄㫆㫌㫋㪿㪀
㪥㫆㫉㫎㪸㫐
㪞㪼㫉㫄㪸㫅㫐㩷㩿㪙㪸㫃㫋㫀㪺㩷㪪㪼㪸㪀
㪞㪼㫉㫄㪸㫅㫐㩷㩿㪙㪸㫃㫋㫀㪺㩷㪪㪼㪸㪀
㪢 㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪯㪈㪯㪈㪯㪉㪯㪉 㪃㩷㪘㪚㪥㪔㪋㪏 㪬㪪㪘㩷㩿㪣㪘㪀
㪘㪚㪥㪔㪋㪋
㪘㪚㪥㪔㪋㪋
㪘㪚㪥㪔㪋㪋
㪘㪚㪥㪔㪋㪋
㪘㪚㪥㪔㪋㪋
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪋 㪯㪈㪯㪉㪰
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪋
㪘㪚㪥㪔㪋㪋
㪘㪚㪥㪔㪋㪋
㪘㪚㪥㪔㪋㪋
㪘㪚㪥㪔㪋㪋
㪘㪚㪥㪔㪋㪋
㪘㪚㪥㪔㪋㪋
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪌㪇
㪘㪚㪥㪔㪋㪋
㪘㪚㪥㪔㪋㪍
㪯㪯㪆㪯㪰
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪍
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
201
㪚㫋㪼㫅㫆㪾㫆㪹㫀㫌㫊 㪞㫀㫃㫃㫀㪺㪿㫋㪿㫐㫊 㪞㫀㫃㫃㫀㪺㪿㫋㪿㫐㫊 㪞㫆㪹㫀㫆㫅㪼㫃㫃㫌㫊 㪞㫐㫄㫅㫆㪾㫆㪹㫀㫌㫊 㪞㫐㫄㫅㫆㪾㫆㪹㫀㫌㫊 㪞㫐㫄㫅㫆㪾㫆㪹㫀㫌㫊 㪞㫐㫄㫅㫆㪾㫆㪹㫀㫌㫊 㪞㫐㫄㫅㫆㪾㫆㪹㫀㫌㫊 㪞㫐㫄㫅㫆㪾㫆㪹㫀㫌㫊 㪞㫐㫄㫅㫆㪾㫆㪹㫀㫌㫊 㪞㫐㫄㫅㫆㪾㫆㪹㫀㫌㫊 㪞㫐㫄㫅㫆㪾㫆㪹㫀㫌㫊 㪞㫐㫄㫅㫆㪾㫆㪹㫀㫌㫊 㪞㫐㫄㫅㫆㪾㫆㪹㫀㫌㫊 㪞㫐㫄㫅㫆㪾㫆㪹㫀㫌㫊 㪣㫌㪺㫀㫆㪾㫆㪹㫀㫌㫊 㪣㫌㪺㫀㫆㪾㫆㪹㫀㫌㫊 㪣㫌㪺㫀㫆㪾㫆㪹㫀㫌㫊 㪣㫌㪺㫀㫆㪾㫆㪹㫀㫌㫊 㪤㫌㪾㫀㫃㫆㪾㫆㪹㫀㫌㫊 㪤㫌㪾㫀㫃㫆㪾㫆㪹㫀㫌㫊 㪧㫋㪼㫉㫆㪾㫆㪹㫀㫌㫊 㪧㫋㪼㫉㫆㪾㫆㪹㫀㫌㫊 㪨㫌㫀㪼㫋㫌㫃㪸 㪨㫌㫀㪼㫋㫌㫃㪸 㪩㪿㫀㫅㫆㪾㫆㪹㫀㫌㫊 㪩㪿㫀㫅㫆㪾㫆㪹㫀㫌㫊 㪩㪿㫀㫅㫆㪾㫆㪹㫀㫌㫊 㪩㪿㫀㫅㫆㪾㫆㪹㫀㫌㫊 㪩㪿㫀㫅㫆㪾㫆㪹㫀㫌㫊 㪩㪿㫀㫅㫆㪾㫆㪹㫀㫌㫊 㪩㪿㫀㫅㫆㪾㫆㪹㫀㫌㫊 㪩㪿㫀㫅㫆㪾㫆㪹㫀㫌㫊
㪹㫉㫌㫅㫅㪼㫌㫊 㪹㫉㫌㫅㫅㪼㫌㫊 㪽㫃㫌㫄㫀㫅㪼㫌㫊 㪽㫃㫌㫄㫀㫅㪼㫌㫊 㪾㫀㫌㫉㫀㫅㫌㫊
㫊㫇㪅㩷㪚㪙 㫊㫇㪅㩷㪣㪛 㫊㫇㪅㩷㪛㪘
㫊㪿㫌㪽㪼㫃㪻㫋㫀 㫄㫀㫉㪸㪹㫀㫃㫀㫊 㫊㪼㫋㪸 㫄㫀㪺㫉㫆㪻㫆㫅 㪹㫉㪼㫌㫅㫀㪾㫀㫀 㪹㫉㪼㫌㫅㫀㪾㫀㫀 㪿㪼㫇㫋㪸㪺㪸㫅㫋㪿㫌㫊 㫀㫊㪸㫑㪸 㪺㪸㫊㫋㪸㫅㪼㫌㫊 㪺㪸㫊㫋㪸㫅㪼㫌㫊 㫄㫆㫉㫆㫉㪸㫅㫌㫊 㫌㫉㫆㫋㪸㪼㫅㫀㪸 㫌㫉㫆㫋㪸㪼㫅㫀㪸 㫌㫉㫆㫋㪸㪼㫅㫀㪸 㫌㫉㫆㫋㪸㪼㫅㫀㪸 㫌㫉㫆㫋㪸㪼㫅㫀㪸 㪾㫉㪸㫅㪻㫀㫊 㪾㫌㫋㫋㪸㫋㫌㫊 㪾㫌㫋㫋㪸㫋㫌㫊 㪾㫌㫋㫋㪸㫋㫌㫊 㪸㪹㪼㫀 㪸㪹㪼㫀 㪼㫃㪸㫇㫆㫀㪻㪼㫊 㫑㫆㫅㫆㫃㪼㫌㪺㫌㫊 㪾㫌㪸㫐㫄㪸㫊㫀㪸㪼 㫐㪄㪺㪸㫌㪻㪸
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㪹㫆㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷
㪝
㪝㪃㩷㪤
㪝㪃㩷㪤
㪝
㪝㪃㩷㪤
㪝㪃㩷㪤
㪝㪃㩷㪤
㪫㫌㫂㫌㪾㫆㪹㫀㫌㫊
㪋㪋㩷㪪㪫㪆㪘 㪋㪋㪘
㪋㪋 㪋㪋
㪋㪋㪘 㪋㪋㪘
㪋㪋 㪋㪋
㪝㪃㩷㪤 㪝㪃㩷㪤
㪋㪋㪘
㪋㪋㩷㪪㪫㪆㪘
㪋㪋 㪋㪋
㪋㪋㩷㪪㪫㪆㪘
㪋㪋
㪝㪃㩷㪤
㪋㪋㩷㪪㪫㪆㪘
㪋㪉㪘
㪋㪋
㪋㪉
㪈㪋㪪㪤㩷㪂㩷㪊㪇㩷㪪㪫㪆㪘 㪍㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪊㪉㪘
㪋㪋 㪋㪉
㪈㪋㪪㪤㩷㪂㩷㪊㪇㪪㪫
㪋㪍 㪋㪋
㪋㪋
㪋㪋
㪋㪋
㪋㪋
㪋㪋
㪋㪋
㪋㪋
㪋㪋
㪋㪉
㪌㪉
㪌㪏
㪋㪍 㪌㪏
㪋㪍
㪎㪉
㪋㪋
㪋㪋
㪋㪋
㪋㪋
㪋㪉
㪌㪉
㪏㪏
㪎㪉
㪊㪅㪇㪁㩷㪝㪚㪤
㪘㪚㪥㪔㪋㪋
㪘㪚㪥㪔㪋㪋
㪘㪚㪥㪔㪋㪋
㪘㪚㪥㪔㪋㪋
㪘㪚㪥㪔㪋㪋
㪘㪚㪥㪔㪋㪋
㪘㪚㪥㪔㪋㪋
㪘㪚㪥㪔㪋㪋
㪘㪚㪥㪔㪋㪉
㪘㪚㪥㪔㪋㪉
㪘㪚㪥㪔㪋㪋
㪘㪚㪥㪔㪋㪋
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪋
㪘㪚㪥㪔㪋㪋
㪘㪚㪥㪔㪋㪋
㪘㪚㪥㪔㪋㪋
㪘㪚㪥㪔㪋㪋
㪘㪚㪥㪔㪋㪋
㪘㪚㪥㪔㪋㪋
㪘㪚㪥㪔㪋㪋
㪘㪚㪥㪔㪋㪉
㪘㪚㪥㪔㪋㪉
㪘㪚㪥㪔㪋㪋
㪘㪚㪥㪔㪋㪉
㪘㪚㪥㪔㪋㪋
㪘㪚㪥㪔㪋㪋
㪯㪈㪯㪉㪰㪃㩷㪘㪚㪥㪔㪋㪏 㪘㪚㪥㪔㪋㪋
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪡㪸㫇㪸㫅㩷㩿㪠㫑㫌㩷㪧㪼㫅㫀㫅㫊㫌㫃㪸㪀
㪡㪸㫇㪸㫅㩷㩿㪠㫑㫌㩷㪧㪼㫅㫀㫅㫊㫌㫃㪸㪀
㪚㪿㫀㫅㪸㩷㩿㪣㫀㪸㫆㫅㫀㫅㪾㪀
㪢㫆㫉㪼㪸㩷㩿㪢㫌㫄㩷㪩㪅㪀
㪡㪸㫇㪸㫅㩷㩿㪰㪸㫄㪸㪾㫌㪺㪿㫀㪀
㪡㪸㫇㪸㫅㩷㩿㪣㪸㫂㪼㩷㪙㫀㫎㪸㪀
㪡㪸㫇㪸㫅㩷㩿㪢㪸㫅㫋㫆㩷㪻㫀㫊㫋㫉㫀㪺㫋㪀
㪢㫆㫉㪼㪸㩷㩿㪢㫌㫅㫊㪸㫅㪀
㪡㪸㫇㪸㫅㩷㩿㪟㫆㫂㫂㪸㫀㪻㫆㪀
㪡㪸㫇㪸㫅㩷㩿㪫㫆㫂㫐㫆㪀
㪡㪸㫇㪸㫅㩷㩿㪣㪸㫂㪼㩷㪙㫀㫎㪸㪀
㪢㫆㫉㪼㪸㩷㩿㪛㫆㫃㫊㪸㫅㫋㫆㪀
㪢㫆㫉㪼㪸㩷㩿㪪㪸㫄㪺㪿㫌㫂㪀
㪡㪸㫇㪸㫅㩷㩿㪰㪸㫄㪸㪾㫌㪺㪿㫀㪀
㪤㪼㫏㫀㪺㫆
㪞㫌㫃㪽㩷㫆㪽㩷㪚㪸㫃㫀㪽㫆㫉㫅㫀㪸
㪬㪪㪘㩷㩿㪣㪘㪀 㪬㪪㪘㩷㩿㪚㪘㪀
㪢 㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪡㪸㫇㪸㫅㩷㩿㪰㪸㫄㪸㪾㫌㪺㪿㫀㪀
㪡㪸㫇㪸㫅㩷
㪮㪅㩷㪡㪸㫇㪸㫅
㪢㫆㫉㪼㪸㩷㩿㪧㫆㫅㪾㪻㫆㫅㪾㪀
㪮㪅㩷㪡㪸㫇㪸㫅㩷
㪡㪸㫇㪸㫅㩷㩿㪫㫆㫂㫐㫆㪀
㪡㪸㫇㪸㫅㩷㩿㪠㫋㫆㪿㪀
㪡㪸㫇㪸㫅㩷㩿㪚㪿㫀㪹㪸㪀
㪞㫌㫃㪽㩷㫆㪽㩷㪚㪸㫃㫀㪽㫆㫉㫅㫀㪸
㪞㫌㫃㪽㩷㫆㪽㩷㪚㪸㫃㫀㪽㫆㫉㫅㫀㪸
㪡㪸㫇㪸㫅㩷㩿㪢㪸㫅㪸㪾㪸㫎㪸㪀
㪡㪸㫇㪸㫅㩷㩿㪦㫂㪸㫐㪸㫄㪸㪀 㪡㪸㫇㪸㫅㩷㩿㪚㪿㫀㪹㪸㪃㩷㪢㪸㫅㪸㪾㪸㫎㪸㪀
㪢㫆㫉㪼㪸㩷㩿㪢㫌㫅㫊㪸㫅㪀
㪚㪿㫀㫅㪸㩷㩿㪣㫀㪸㫆㫅㫀㫅㪾㪀
㪋㪍㩷㪪㪫㪆㪘
㪋㪍
㪈㪋㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪈㪍㪘
㪌㪍
㩿㪉㪅㪋㪁㩷㪝㪚㪤㪀
㪠 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪋㪋
㪋㪋
㪏㪍
㪏㪉
㪏㪏
㪏㪏
㪏㪋
㪏㪋
㪏㪏
㪏㪇
㪍㪋
㪋㪏 㪌㪍
㪟 㪘㪾㪄 㪥㪦㪩㫊
㪡㪸㫇㪸㫅㩷㩿㪢㪸㫅㪸㪾㪸㫎㪸㪀
㪈㪉㪪㪫㩷㪂㩷㪊㪉㪘
㪏㪍
㪏㪋
㪍㪉
㪏㪇
㪌㪋
㪌㪍
㪌㪍
㪌㪍
㪋㪋
㪍㪋
㪍㪍
㪌㪇
㪋㪏 㪋㪋
㪝 㪞 㪥㪝㪈 㪥㪝㪉
㪋㪋
㪋㪋
㪋㪋
㪉㪇㪤㩷㪂㩷㪉㪉㪪㪤㩷㪂㩷㪉㪘
㪊㪏㩷㪪㪤㪆㪪㪫㩷㪂㩷㪍㪘
㪋㪋 㪋㪋
㪈㪏㪪㪤㩷㪂㩷㪉㪍㪪㪫
㪋㪋 㪋㪇㩷㪤㪆㪪㪤㩷㪂㩷㪋㩷㪪㪫㪆㪘
㪊㪍㩷㪤㪆㪪㪤㩷㪂㩷㪏㪪㪫
㪋㪋
㪋㪋
㪈㪉㩷㪤㪆㪪㪤㩷㪂㩷㪊㪇㩷㪪㪫㪆㪘
㪈㪋㪪㪤㩷㪂㩷㪉㪏㪪㪫
㪋㪉 㪋㪉
㪈㪋㩷㪤㪆㪪㪤㩷㪂㩷㪉㪏㪪㪫
㪋㪉
㪋㪋㩷㪪㪫㪆㪘 㪈㪉㪪㪤㩷㪂㩷㪊㪉㪪㪫
㪋㪋 㪋㪋
㪤
㪉㪉㩷㪤㪆㪪㪤㩷㪂㩷㪉㪇㩷㪪㪫㪆㪘
㪋㪉
㪝㪃㩷㪤
㪊㪍㩷㪤㪆㪪㪤㪆㪪㪫㩷㪂㩷㪏㪘
㪋㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪋㪍㩷㪪㪫㪆㪘
㪌㪍 㪋㪋
㪍㪤㩷㪂㩷㪈㪋㪪㪫㩷㪂㩷㪉㪋㪘
㪋㪋
㪝
㪈㪤㩷㪂㩷㪋㪍㪘 㪈㪉㪪㪫㩷㪂㩷㪊㪉㪘
㪜 㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪋㪎 㪋㪋
㪛 㪉㫅
㪤 㪝㪃㩷㪤
㪚 㪪㪼㫏
㩷㪹㫉㫌㫅㫅㪼㫌㫊 㪃㩷㪪㪿㫀㫄㪸㫐㫆㫊㪿㫀㫅㫆㪹㫆㫉㫀 㩷㪹㫉㫌㫅㫅㪼㫌㫊 㪃㩷㪦㫆㫐㫆㫊㪿㫀㫅㫆㪹㫆㫉㫀 㪝㪃㩷㪤 㪹㫉㫌㫅㫅㪼㫌㫊 㪃㩷㪢㫌㫉㫆㫐㫆㫊㪿㫀㫅㫆㪹㫆㫉㫀 㪝㪃㩷㪤
㪚㪿㪸㪼㫅㫆㪾㫆㪹㫀㫌㫊 㪚㪿㪸㪼㫅㫆㪾㫆㪹㫀㫌㫊 㪚㪿㪸㪼㫅㫆㪾㫆㪹㫀㫌㫊 㪚㪿㪸㪼㫅㫆㪾㫆㪹㫀㫌㫊 㪩㪿㫆㪻㫆㫅㫀㫀㪺㪿㫋㪿㫐㫊㩷㫃㪸㪼㫍㫀㫊 㪚㪿㪸㪼㫅㫆㪾㫆㪹㫀㫌㫊㩷㫌㫉㫆㫋㪸㪼㫅㫀㪸 㪚㪿㪸㪼㫅㫆㪾㫆㪹㫀㫌㫊 㪚㪿㪸㪼㫅㫆㪾㫆㪹㫀㫌㫊㩷㪸㫅㫅㫌㫃㪸㫉㫀㫊 㪚㪿㪸㪼㫅㫆㪾㫆㪹㫀㫌㫊㩷㪸㫅㫅㫌㫃㪸㫉㫀㫊 㪚㪿㪸㪼㫅㫆㪾㫆㪹㫀㫌㫊㩷㪸㫅㫅㫌㫃㪸㫉㫀㫊 㪚㪿㪸㪼㫅㫆㪾㫆㪹㫀㫌㫊㩷㪸㫅㫅㫌㫃㪸㫉㫀㫊 㪚㪿㪸㪼㫅㫆㪾㫆㪹㫀㫌㫊㩷㪸㫅㫅㫌㫃㪸㫉㫀㫊
㪞㫆㪹㫀㫆㫅㪼㫃㫃㫌㫊
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪫㪸㪹㫃㪼㩷㪍㪅㪊㪐㩷㩷㪦㫉㪻㪼㫉㩷㪧㪜㪩㪚㪠㪝㪦㪩㪤㪜㪪㪅㩷㪧㪸㫉㫋㩷㪋㩷㪞㫆㪹㫀㫆㫀㪻㪼㫀㪃㩷㪢㫌㫉㫋㫆㫀㪻㪼㫀㪃㩷㪘㪺㪸㫅㫋㪿㫌㫉㫆㫀㪻㪼㫀㪃㩷㪸㫅㪻㩷㪪㪺㫆㫄㪹㫉㫆㫀㪻㪼㫀㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀㩷 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀㩷
㪥㪄㪊㪈
㪘㪄㪌㪉
㪥㪄㪈㪃㩷㪦㪄㪋㪏
㪣㪄㪈㪋
㪥㪄㪈㪃㩷㪥㪄㪊㪈
㪘㪄㪍㪉
㪘㪄㪍㪉
㪘㪄㪍㪉
㪚㪄㪎㪎
㪚㪄㪎㪎
㪘㪄㪍㪉
㪘㪄㪌㪉 㪘㪄㪌㪉㪃㩷㪘㪄㪍㪉
㪣㪄㪈㪋
㪤㪄㪊㪉
㪘㪄㪌㪉
㪤㪄㪈㪇㪉
㪘㪄㪈㪉㪊
㪤㪄㪊㪌
㪣㪄㪈㪋
㪥㪄㪊㪈
㪘㪄㪍㪉
㪘㪄㪍㪇㪃㩷㪦㪄㪋㪏
㪣㪄㪈㪋
㪰㪄㪌
㪘㪄㪍㪇
㪘㪄㪍㪉
㪣㪄㪎㪐
㪣㪄㪈㪋
㪥㪄㪊㪈
㪬㪄㪏㪉
㪚㪄㪌㪊
㪧㪄㪉㪋 㪚㪄㪌㪊
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
202
㫁㪸㫇㫆㫅㫀㪺㫌㫊
㪈㪇㪤㩷㪂㩷㪉㪏㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪋㪘
㪋㪋 㪋㪋
㫊㫇㪅
㪘㫇㫆㪺㫉㫐㫇㫋㪼㫊 㪘㫇㫆㪺㫉㫐㫇㫋㫆㪻㫆㫅 㪘㫇㫆㪺㫉㫐㫇㫋㫆㪻㫆㫅 㪧㪸㫉㪸㫇㫆㪺㫉㫐㫇㫋㪼㫊 㪧㫊㪼㫌㪻㪸㫇㫆㪺㫉㫐㫇㫋㪼㫊 㪧㫊㪼㫌㪻㪸㫇㫆㪺㫉㫐㫇㫋㪼㫊
㩷㩷㩷㩷㪘㫇㫆㪺㫉㫐㫇㫋㪼㫀
㪹㪸㫋㫆 㫄㪸㪻㫌㫉㪼㫅㫊㫀㫊 㫇㫌㫅㪺㫋㪸㫋㫌㫊 㫊㪼㫉㫇㪼㫉㪸㫊㫋㪼㫉 㪹㫆㫉㫅㪼㪼㫅㫊㫀㫊 㫃㪸㫅㪺㪼㫆㫃㪸㫋㫌㫊 㪘㫇㫆㪺㫉㫐㫇㫋㪼㫊
㪘㫇㫆㪺㫉㫐㫇㫋㪼㫊
㪺㪸㫅㫋㫆㫅㪼㫅㫊㫀㫊 㪺㪸㫅㫋㫆㫅㪼㫅㫊㫀㫊
㪺㪸㫅㫋㫆㫅㪼㫅㫊㫀㫊
㪝
㪤
㪝㪃㩷㪤
㪝㪃㩷㪤
㪊㪏
㪋㪏 㪈㪋㪤㩷㪂㩷㪉㪉㪪㪤㩷㪂㩷㪉㪪㪫
㪏㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪈㪏㪘
㪎㪋
㪎㪇
㪍㪍
㪎㪍
㪎㪋
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪋
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪋
㪘㪚㪥㪔㪋㪋
㪘㪚㪥㪔㪋㪋
㪘㪚㪥㪔㪋㪋
㪘㪚㪥㪔㪋㪋
㪘㪚㪥㪔㪋㪋 㪘㪚㪥㪔㪋㪋
㪘㪚㪥㪔㪋㪋
㪘㪚㪥㪔㪋㪋
㪘㪚㪥㪔㪋㪋
㪢㪄㪋㪍
㪟㪄㪈㪊
㪛㪄㪈㪏
㪱㪄㪊㪏
㪣㪄㪊㪏
㪞㪄㪍㪎㪃㩷㪰㪄㪈㪌
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
㪠㫅㪻㫀㪸㩷㩿㪮㪙㪀
㪢㫆㫉㪼㪸㩷㩿㪢㫆㪿㫎㪸㫋㫆㪀
㪡㪸㫇㪸㫅㩷㩿㪘㫉㫀㪸㫂㪼㩷㪪㪼㪸㪀
㪡㪸㫇㪸㫅
㪤㪸㫃㪸㫐㫊㫀㪸 㪡㪸㫇㪸㫅㩷㩿㪫㫆㫂㫐㫆㩷㪙㪸㫐㪀
㪤㪸㫃㪸㫐㫊㫀㪸
㪡㪸㫇㪸㫅㩷㩿㪚㪿㫀㪹㪸㪀
㪢㫆㫉㪼㪸㩷㩿㪢㫌㫅㫊㪸㫅㪀
㪚㪿㫀㫅㪸㩷㩿㪱㪿㪼㫁㫀㪸㫅㪾㪀
㪚㪿㫀㫅㪸㩷㩿㪣㫀㪸㫆㫅㫀㫅㪾㪀
㪢㫆㫉㪼㪸㩷㩿㪞㫐㪼㫐㪸㫋㫆㪀
㪡㪸㫇㪸㫅㩷㩿㪰㪸㫄㪸㪾㫌㪺㪿㫀㪀
㪡㪸㫇㪸㫅㩷㩿㪰㪸㫄㪸㪾㫌㪺㪿㫀㪀 㪡㪸㫇㪸㫅㩷㩿㪢㪸㫅㪸㪾㪸㫎㪸㪀
㪡㪸㫇㪸㫅㩷㩿㪚㪿㫀㪹㪸㪀
㪢㫆㫉㪼㪸㩷㩿㪪㪸㫄㪺㪿㫌㫂㪀
㪢㫆㫉㪼㪸
㪠㫅㪻㫀㪸㩷㩿㪮㪙㪀
㪠㫅㪻㫀㪸
㪠㫅㪻㫀㪸㩷㩿㪮㪙㪀
㪥㪄㪈㪌
㪭㪄㪊㪊
㪢㪄㪈㪊㪐
㪤㪄㪌㪉
㪭㪄㪊㪊
㪥㪄㪈㪌
㪣㪄㪎㪐
㪥㪄㪊㪈
㪤㪄㪌㪉
㪤㪄㪌㪉 㪘㪄㪌㪉㪃㩷㪘㪄㪍㪉
㪤㪄㪌㪉㪃㩷㪟㪄㪋㪇
㪘㪄㪎㪊
㪣㪄㪈㪋
㪝㪄㪏
㪤㪄㪊㪉
㪣㪄㪎㪐
㪥㪄㪊㪈
㪥㪄㪊㪈 㪘㪄㪌㪉㪃 㪘㪄㪍㪇
㪘㪄㪍㪇
㪣㪄㪈㪋
㪣㪄㪏㪇
㪡㪸㫇㪸㫅㩷㩿㪣㪸㫂㪼㩷㪢㪸㫊㫌㫄㫀㪾㪸㫌㫉㪸㪀 㪘㪄㪌㪉㪃㩷㪘㪄㪍㪇
㪠㫅㪻㫀㪸㩷㩿㪮㪙㪀
㪚㪿㫀㫅㪸㩷㩿㪮㫌㪿㪸㫅㪀
㪚㪿㫀㫅㪸㩷㩿㪘㫅㪿㫌㫀㪀
㪚㪿㫀㫅㪸㩷㩿㪢㫌㫅㫄㫀㫅㪾㪀
㪚㪿㫀㫅㪸㩷㩿㪞㫌㪸㫅㪾㪻㫆㫅㪾㪀
㪢 㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪡㪸㫇㪸㫅㩷㩿㪘㫉㫀㪸㫂㪼㩷㪪㪼㪸㪀
㪋㪍
㪉㪋㩷㪤㪆㪪㪤㩷㪂㩷㪈㪏㩷㪪㪫㪆㪘
㪏㪇
㪍㪉
㪈㪅㪐㩷㪝㪠㪘
㪉㪅㪏㩷㪙㪝㪘
㪘㪚㪥㪔㪋㪋
㪘㪚㪥㪔㪋㪋
㪘㪚㪥㪔㪋㪋
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪋㪉
㪏㪇
㪍㪉
㪏㪇
㪋㪍
㪏㪋
㪎㪍
㪎㪉
㪉
㪉㪄㪋
㪠 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪠㫅㪻㫀㪸
㪉㪋㪤㩷㪂㩷㪈㪇㪪㪤㩷㪂㩷㪈㪉㪘
㪈㪍㩷㪤㪆㪪㪤㩷㪂㩷㪊㪇㪘
㪎㪏
㪎㪍
㪋㪍
㪍㪋
㪍㪉
㪏㪉
㪎㪍
㪍㪋
㪎㪇
㪏㪏
㪏㪏
㪋㪏
㪋㪋
㪋㪋
㪟 㪘㪾㪄 㪥㪦㪩㫊
㪋㪏
㪋㪍
㪋㪍
㪊㪋㩷㪤㪆㪪㪤㪆㪪㪫㩷㪂㩷㪈㪉㪘
㪈㪏㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪈㪍㩷㪪㪫㪆㪘 㪊㪉㩷㪤㪆㪪㪤㩷㪂㩷㪈㪋㩷㪪㪫㪆㪘
㪋㪍 㪋㪍
㪋㪍㪘
㪌㪍 㪋㪍
㪈㪇㩷㪤㩷㪂㩷㪈㪇㪪㪤㩷㪂㩷㪉㪋㩷㪪㪫㪆㪘
㪈㪏㩷㪤㪆㪪㪤㩷㪂㩷㪉㪍㩷㪪㪫㪆㪘
㪉㪏㩷㪤㪆㪪㪤㪆㪪㪫㩷㪂㩷㪈㪍㪘
㪋㪍
㪋㪋
㪋㪋
㪍㪇
㪋㪋 㪉㪍㩷㪤㪆㪪㪤㪆㪪㪫㩷㪂㩷㪈㪏㪘 㪋㪋 㪈㪍㩷㪤㪆㪪㪤㩷㪂㩷㪉㪏㩷㪪㪫㪆㪘
㪌㪍
㪍㪉
㪌㪋
㪋㪏
㪌㪋
㪈㪉㩷㪤㪆㪪㪤㩷㪂㩷㪊㪉㩷㪪㪫㪆㪘
㪈㪇㩷㪤㪆㪪㪤㩷㪂㩷㪊㪋㪪㪫
㪋㪋
㪍㪋
㪋㪋
㪋㪋
㪝 㪞 㪥㪝㪈 㪥㪝㪉
㪈㪇㩷㪤㪆㪪㪤㩷㪂㩷㪊㪋㪪㪫
㪋㪋
㪋㪋
㪋㪋
㪋㪋
㪋㪍
㪉㪪㪤㩷㪂㩷㪋㪋㪘
㪋㪋㪘
㪋㪋 㪋㪏
㪏㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪉㪋㪘
㪋㪋
㪋㪋㪘 㪋㪋㩷㪪㪫㪆㪘
㪋㪋 㪋㪋
㪉㪇㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪈㪉㪘
㪜 㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪋㪋
㪛 㪉㫅
㪉㪇㩷㪤㪆㪪㪤㩷㪂㩷㪉㪋㩷㪪㪫㪆㪘
㪝㪃㩷㪤
㪝㪃㩷㪤
㪝㪃㩷㪤
㪝㪃㩷㪤
㪚 㪪㪼㫏
㪋㪋
㫆㪹㫊㪺㫌㫉㫌㫊㩷㫆㪹㫊㪺㫌㫉㫌㫊 㫆㪹㫊㪺㫌㫉㫌㫊㩷㫆㪹㫊㪺㫌㫉㫌㫊
㫆㪹㫊㪺㫌㫉㫌㫊㩷㪹㫉㪼㫍㫀㫊㫇㫀㫅㫀㫊
㪚㫋㪼㫅㫆㪾㫆㪹㫀㫌㫊 㪚㫋㪼㫅㫆㪾㫆㪹㫀㫌㫊 㪞㫆㪹㫀㫌㫊
㪚㫋㪼㫅㫆㪾㫆㪹㫀㫌㫊
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪾㫀㫌㫉㫀㫅㫌㫊 㪾㫀㫌㫉㫀㫅㫌㫊 㪾㫀㫌㫉㫀㫅㫌㫊 㪖 㫊㪿㪼㫅㫅㫆㫅㪾㪼㫅㫊㫀㫊 㫊㪸㪻㪸㫅㫌㫅㪻㫀㫆 㫊㪸㪻㪸㫅㫌㫅㪻㫀㫆 㪹㫉㪼㫍㫀㫊㫇㫀㫅㫀㫊 㫅㫌㪻㫀㪺㪼㫉㫍㫀㪺㫌㫊 㫆㪹㫊㪺㫌㫉㫌㫊 㫆㪹㫊㪺㫌㫉㫌㫊 㫆㪹㫊㪺㫌㫉㫌㫊 㫋㫉㫀㪾㫆㫅㫆㪺㪼㫇㪿㪸㫃㫌㫊 㫋㫉㫀㪾㫆㫅㫆㪺㪼㫇㪿㪸㫃㫌㫊 㫋㫉㫀㪾㫆㫅㫆㪺㪼㫇㪿㪸㫃㫌㫊 㫋㫉㫀㪾㫆㫅㫆㪺㪼㫇㪿㪸㫃㫌㫊 㫋㫉㫀㪾㫆㫅㫆㪺㪼㫇㪿㪸㫃㫌㫊
㪧㪼㫉㫀㫆㫇㪿㫋㪿㪸㫃㫄㫆㪻㫆㫅 㫊㪺㪿㫃㫆㫊㫊㪼㫉㫀 㪧㪼㫉㫀㫆㫇㪿㫋㪿㪸㫃㫄㫌㫊 㪺㪿㫉㫐㫊㫆㫊㫇㫀㫃㫆㫊 㪧㪼㫉㫀㫆㫇㪿㫋㪿㪸㫃㫄㫌㫊 㫄㫆㪻㪼㫊㫋㫌㫊 㪧㪼㫉㫀㫆㫇㪿㫋㪿㪸㫃㫄㫌㫊 㫄㫆㪻㪼㫊㫋㫌㫊 㪧㪼㫉㫀㫆㫇㪿㫋㪿㪸㫃㫄㫌㫊 㫄㫆㪻㪼㫊㫋㫌㫊 㪧㪼㫉㫀㫆㫇㪿㫋㪿㪸㫃㫄㫌㫊 㫄㫆㪻㪼㫊㫋㫌㫊
㩷㩷㪦㫏㫌㪻㪼㫉㪺㫀㫅㪸㪼㩷 㩷㩷㩷㩷㪧㪼㫉㫀㫆㫇㪿㫋㪿㪸㫃㫄㫀㫅㫀
㪪㫀㪺㫐㫆㫇㫋㪼㫉㫌㫊
㩷㩷㪪㫀㪺㫐㪻㫀㫀㫅㪸㪼㩷
㪩㪿㫀㫅㫆㪾㫆㪹㫀㫌㫊 㪩㪿㫀㫅㫆㪾㫆㪹㫀㫌㫊 㪩㪿㫀㫅㫆㪾㫆㪹㫀㫌㫊 㪩㪿㫀㫅㫆㪾㫆㪹㫀㫌㫊 㪪㫋㫀㪾㫄㪸㫋㫆㪾㫆㪹㫀㫌㫊 㪪㫋㫀㪾㫄㪸㫋㫆㪾㫆㪹㫀㫌㫊 㪫㫉㫀㪻㪼㫅㫋㫀㪾㪼㫉 㪫㫉㫀㪻㪼㫅㫋㫀㪾㪼㫉 㪫㫉㫀㪻㪼㫅㫋㫀㪾㪼㫉 㪫㫉㫀㪻㪼㫅㫋㫀㪾㪼㫉 㪫㫉㫀㪻㪼㫅㫋㫀㪾㪼㫉 㪫㫉㫀㪻㪼㫅㫋㫀㪾㪼㫉 㪫㫉㫀㪻㪼㫅㫋㫀㪾㪼㫉 㪫㫉㫀㪻㪼㫅㫋㫀㪾㪼㫉 㪫㫉㫀㪻㪼㫅㫋㫀㪾㪼㫉 㪫㫉㫀㪻㪼㫅㫋㫀㪾㪼㫉 㪫㫉㫀㪻㪼㫅㫋㫀㪾㪼㫉
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㪹㫆㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷
㪫㪸㪹㫃㪼㩷㪍㪅㪊㪐㩷㩷㪦㫉㪻㪼㫉㩷㪧㪜㪩㪚㪠㪝㪦㪩㪤㪜㪪㪅㩷㪧㪸㫉㫋㩷㪋㩷㪞㫆㪹㫀㫆㫀㪻㪼㫀㪃㩷㪢㫌㫉㫋㫆㫀㪻㪼㫀㪃㩷㪘㪺㪸㫅㫋㪿㫌㫉㫆㫀㪻㪼㫀㪃㩷㪸㫅㪻㩷㪪㪺㫆㫄㪹㫉㫆㫀㪻㪼㫀㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀㩷 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀㩷
203
㫉㫌㪹㫀㪺㫌㫅㪻㫌㫊 㫉㫌㪹㫀㪺㫌㫅㪻㫌㫊 㪖 㫉㫌㪹㫀㪺㫌㫅㪻㫌㫊 㫉㫌㪹㫀㪺㫌㫅㪻㫌㫊 㫍㪸㪾㫀㫅㪸
㪦㪻㫆㫅㫋㪸㫄㪹㫃㫐㫆㫇㫌㫊 㪦㪻㫆㫅㫋㪸㫄㪹㫃㫐㫆㫇㫌㫊 㪦㪻㫆㫅㫋㪸㫄㪹㫃㫐㫆㫇㫌㫊 㪦㪻㫆㫅㫋㪸㫄㪹㫃㫐㫆㫇㫌㫊 㪫㫉㫐㫇㪸㫌㪺㪿㪼㫅
㪾㫌㫃㫃㫀㫍㪼㫉㫀
㪧㫃㪸㫋㪸㫏
㪜㫇㪿㫀㫇㫇㫀㪻㪸㪼
㪘㪺㪸㫅㫋㪿㫌㫉㫌㫊 㪘㪺㪸㫅㫋㪿㫌㫉㫌㫊 㪘㪺㪸㫅㫋㪿㫌㫉㫌㫊 㪘㪺㪸㫅㫋㪿㫌㫉㫌㫊 㪚㫋㪼㫅㫆㪺㪿㪸㪼㫋㫌㫊 㪧㫉㫀㫆㫅㫌㫉㫌㫊
㫋㪼㫀㫉㪸
㪹㪸㪿㫀㪸㫅㫌㫊 㪺㪿㫀㫉㫌㫉㪾㫌㫊 㪺㫆㪼㫉㫌㫃㪼㫌㫊㩷 㫋㫉㫀㫆㫊㫋㪼㪾㫌㫊 㫊㫋㫉㫀㪸㫋㫌㫊 㫊㪺㪸㫃㫇㫉㫌㫄
㪪㫌㪹㫆㫉㪻㪼㫉㩷㪘㪺㪸㫅㫋㪿㫉㫆㫀㪻㪼㫀㩷 㪘㪺㪸㫅㫋㪿㫌㫉㫀㪻㪸㪼
㪢㫌㫉㫋㫌㫊
㪪㫌㪹㫆㫉㪻㪼㫉㩷㪢㫌㫉㫋㫆㫀㪻㪼㫀 㪢㫌㫉㫋㫀㪻㪸㪼
㩷㩷㪘㫄㪹㫃㫐㫆㫇㫀㫅㪸㪼㩷
㪹㫆㪻㪻㪸㫉㫋㫀 㪹㫆㪻㪻㪸㫉㫋㫀 㪹㫆㪻㪻㪸㫉㫋㫀 㪻㫌㫊㫊㫌㫄㫀㪼㫉㫀 㪻㫌㫊㫊㫌㫄㫀㪼㫉㫀 㪻㫌㫊㫊㫌㫄㫀㪼㫉㫀 㫇㪼㪺㫋㫀㫅㫀㫉㫆㫊㫋㫉㫀㫊 㫇㪼㪺㫋㫀㫅㫀㫉㫆㫊㫋㫉㫀㫊 㫇㪼㪺㫋㫀㫅㫀㫉㫆㫊㫋㫉㫀㫊 㪺㪸㫅㫋㫆㫉㫀㫊 㪿㫀㫊㫋㫆㫇㪿㫆㫉㫌㫊
㪙㫆㫃㪼㫆㫇㪿㫋㪿㪸㫃㫄㫌㫊 㪙㫆㫃㪼㫆㫇㪿㫋㪿㪸㫃㫄㫌㫊 㪙㫆㫃㪼㫆㫇㪿㫋㪿㪸㫃㫄㫌㫊 㪙㫆㫃㪼㫆㫇㪿㫋㪿㪸㫃㫄㫌㫊 㪙㫆㫃㪼㫆㫇㪿㫋㪿㪸㫃㫄㫌㫊 㪙㫆㫃㪼㫆㫇㪿㫋㪿㪸㫃㫄㫌㫊 㪙㫆㫃㪼㫆㫇㪿㫋㪿㪸㫃㫄㫌㫊 㪙㫆㫃㪼㫆㫇㪿㫋㪿㪸㫃㫄㫌㫊 㪙㫆㫃㪼㫆㫇㪿㫋㪿㪸㫃㫄㫌㫊 㪪㪺㪸㫉㫋㪼㫃㪸㫆㫊 㪪㪺㪸㫉㫋㪼㫃㪸㫆㫊
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㪹㫆㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷 㩷㪙㫆㫃㪼㫆㫇㪿㫋㪿㪸㫃㫄㫀
㫆㫉㪹㫀㪺㫌㫃㪸㫉㫀㫊
㫄㫀㪺㫉㫆㫃㪼㫇㫀㪻㫆㫋㫌㫊
㪞㫆㪹㫀㫆㫀㪻㪼㫊
㪋㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪉㪍㩷㪪㪫㪆㪘
㪋㩷㫅㫆㫅㪄㪘㩷㪂㩷㪋㪋㪘 㪋㪏㪘 㪋㪏㪘
㪋㪏 㪋㪏 㪋㪏
㪋㪏
㪋㪏㪘
㪋㪏㪘
㪈㪍㩷㫅㫆㫅㪄㪘㩷㪂㩷㪈㪏㪘
㪋㪏
㪈㪍㩷㫅㫆㫅㪄㪘㩷㪂㩷㪉㪇㪘
㪊㪋
㪉㪪㪤㩷㪂㩷㪋㪘㩷㪂㩷㪊㪏㩷㫅㫆㫅㪄㫀㪻㪼㫅㫋㫀㪽㫀㪼㪻
㪈㪉㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪈㪏㪘
㪋㪤㩷㪂㩷㪉㪋㪪㪤㩷㪂㩷㪏㪪㪫㩷㪂㩷㪈㪇㪘 㪉㪤㩷㪂㩷㪉㪍㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪏㪘
㪉㪇㪤㩷㪂㩷㪈㪏㪪㪤
㪊㪍
㪋㪋
㪋㪍
㪤
㪝㪃㩷㪤
㪋㪍 㪋㪍
㪊㪏
㪋㪍
㪈㪉㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪈㪉㪘 㪏㩷㪤㪆㪪㪤㩷㪂㩷㪋㪇㩷㪪㪫㪆㪘
㪋㪍 㪋㪏
㪈㪅㪋㩷㪝㪛
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪍㪋
㪎㪋 㪎㪋
㪎㪍
㪍㪍
㪌㪍
㪎㪏
㪋㪍
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪌㪉
㪌㪇
㪌㪉
㪎㪋
㪏㪉 㪏㪋
㪎㪍
㪏㪇
㪋㪏
㪈㪅㪎㪁㩷㪝㪚㪤
㪈㪅㪍㪁㩷㪝㪚㪤
㪉㪪㪫㩷㪂㩷㪋㪋㪘
㪋㪍
㪋㪍
㪋㪍
㪋㪍㪘
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪍 㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪍
㪡㪸㫇㪸㫅㩷㩿㪰㪸㫂㫌㫊㪿㫀㫄㪸㪀
㪡㪸㫇㪸㫅㩷㩿㪚㪿㫀㪹㪸㪀
㪡㪸㫇㪸㫅
㪡㪸㫇㪸㫅㩷㩿㪰㪸㫂㫌㫊㪿㫀㫄㪸㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪩㪥㪃㩷㪙㪘㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪩㪥㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪩㪥㪃㩷㪙㪘㪀
㪘㫌㫊㫋㫉㪸㫃㫀㪸㩷㩿㪥㪅㩷㪫㪼㫉㫉㫀㫋㫆㫉㫐㪀
㪠㫅㪻㫀㪸㩷㩿㪮㪙㪀
㪠㫅㪻㫀㪸㩷㩿㪮㪙㪀 㪠㫅㪻㫀㪸㩷㩿㪮㪙㪀
㪚㪿㫀㫅㪸
㪡㪸㫇㪸㫅㩷㩿㪘㫉㫀㪸㫂㪼㩷㪪㪼㪸㪀
㪤㪸㫃㪸㫐㫊㫀㪸
㪠㫅㪻㫀㪸㩷㩿㪮㪙㪀
㪚㪿㫀㫅㪸㩷㩿㪱㪿㪼㫁㫀㪸㫅㪾㪀
㪡㪸㫇㪸㫅㩷㩿㪘㫉㫀㪸㫂㪼㩷㪪㪼㪸㪀
㪡㪸㫇㪸㫅㩷㩿㪘㫉㫀㪸㫂㪼㩷㪪㪼㪸㪀
㪋㪍
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪍
㪤㪸㫃㪸㫐㫊㫀㪸
㪋㪍
㪌㪏
㪠㫅㪻㫀㪸㩷㩿㪮㪙㪀
㪠㫅㪻㫀㪸
㪠㫅㪻㫀㪸
㪤㪸㫃㪸㫐㫊㫀㪸
㪢 㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪋㪍㩷㪪㪫㪆㪘
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪍
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪋㪤㩷㪂㩷㪏㪪㪫㩷㪂㩷㪊㪋㪘
㪌㪇
㪠 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪋㪍
㪎㪏
㪋㪍
㪋㪍
㪟 㪘㪾㪄 㪥㪦㪩㫊
㪋㪍
㪎㪏
㪋㪍
㪋㪍
㪝 㪞 㪥㪝㪈 㪥㪝㪉
㪠㫅㪻㫀㪸
㪈㪋㪤㩷㪂㩷㪈㪏㪪㪤㩷㪂㩷㪈㪋㪘
㪋㪍㪘
㪋㪍㪘
㪜 㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪋㪍
㪋㪍
㪋㪍
㪋㪍
㪋㪍
㪛 㪉㫅
㪝㪃㩷㪤 㪤
㪝㪃㩷㪤
㪙㫆㫃㪼㫆㫇㪿㫋㪿㪸㫃㫄㫌㫊㩷㪾㫃㪸㫌㪺㫌㫊
㫉㫌㪹㫀㪺㫌㫅㪻㫌㫊
㪝㪃㩷㪤
㪝㪃㩷㪤
㪚 㪪㪼㫏
㪹㫆㪻㪻㪸㪼㫉㫋㫀 㪞㫆㪹㫀㫌㫊㩷㫊㫋㫉㫀㪸㫋㫌㫊 㪻㪼㫅㫋㪸㫋㫌㫊
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪫㪸㪹㫃㪼㩷㪍㪅㪊㪐㩷㩷㪦㫉㪻㪼㫉㩷㪧㪜㪩㪚㪠㪝㪦㪩㪤㪜㪪㪅㩷㪧㪸㫉㫋㩷㪋㩷㪞㫆㪹㫀㫆㫀㪻㪼㫀㪃㩷㪢㫌㫉㫋㫆㫀㪻㪼㫀㪃㩷㪘㪺㪸㫅㫋㪿㫌㫉㫆㫀㪻㪼㫀㪃㩷㪸㫅㪻㩷㪪㪺㫆㫄㪹㫉㫆㫀㪻㪼㫀㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀㩷 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀㩷
㪘㪄㪍㪍
㪘㪄㪍㪌
㪦㪄㪋㪏
㪘㪄㪍㪌㪃㩷㪦㪄㪋㪏
㪞㪄㪈㪉
㪞㪄㪈㪉㪃㩷㪞㪄㪏㪌㪃㩷㪤㪄㪈㪊㪊 㩷
㪞㪄㪈㪉
㪜㪄㪈㪇
㪢㪄㪉㪐
㪢㪄㪋㪉 㪤㪄㪉㪋
㪤㪄㪊㪍
㪘㪄㪍㪉
㪤㪄㪌㪉
㪤㪄㪉㪋
㪝㪄㪏
㪥㪄㪊㪈㪃㩷㪤㪄㪌㪉
㪘㪄㪍㪉
㪤㪄㪌㪉
㪭㪄㪊㪊㪃㩷㪢㪄㪈㪇㪉
㪢㪄㪊㪐
㪭㪄㪊㪊
㪪㪄㪈㪎㪎
㪤㪄㪌㪉
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
204
㪽㫌㫊㪺㪼㫊㪺㪼㫅㫊 㫁㪸㫍㫌㫊 㫊㫇㫀㫅㫌㫊
㪸㫉㪾㫌㫊 㪸㫉㪾㫌㫊 㪸㫉㪾㫌㫊 㪸㫉㪾㫌㫊 㪸㫉㪾㫌㫊 㪸㫉㪾㫌㫊 㫄㫌㫃㫋㫀㪽㪸㫊㪺㫀㪸㫋㪸
㪘㫌㫏㫀㫊 㪘㫌㫏㫀㫊 㪢㪸㫋㫊㫌㫎㫆㫅㫌㫊 㪢㪸㫋㫊㫌㫎㫆㫅㫌㫊 㪪㪺㫆㫄㪹㪼㫉 㪪㪺㫆㫄㪹㪼㫉 㪫㪿㫌㫅㫅㫌㫊 㪫㪿㫌㫅㫅㫌㫊 㪫㪿㫌㫅㫅㫌㫊 㪫㪿㫌㫅㫅㫌㫊 㪫㪿㫌㫅㫅㫌㫊
㪪㪺㫆㫄㪹㫉㫀㪻㪸㪼
㪪㫇㪿㫐㫉㪸㪼㫅㪸
㫉㫆㪺㪿㪼㫀 㫋㪿㪸㫑㪸㫉㪻 㫇㪼㫃㪸㫄㫀㫊 㫇㪼㫃㪸㫄㫀㫊 㪸㫌㫊㫋㫉㪸㫃㪸㫊㫀㪺㫌㫊 㫁㪸㫇㫆㫅㫀㪺㫌㫊 㪸㫃㪸㫃㫌㫅㪾㪸 㪸㫃㪹㪸㪺㪸㫉㪼㫊 㫆㫉㫀㪼㫅㫋㪸㫃㫀㫊 㫋㪿㫐㫅㫅㫌㫊 㫋㪿㫐㫅㫅㫌㫊
㫋㫆㫄㪼
㪪㫌㪹㫆㫉㪻㪼㫉㩷㪪㪺㫆㫄㪹㫉㫆㫀㪻㪼㫀㩷 㪪㫇㪿㫐㫉㪸㪼㫅㫀㪻㪸㪼
㪪㫀㪾㪸㫅㫌㫊 㪪㫀㪾㪸㫅㫌㫊 㪪㫀㪾㪸㫅㫌㫊
㪪㫀㪾㪸㫅㫀㪻㪸㪼
㪪㪺㪸㫋㫆㫇㪿㪸㪾㫌㫊 㪪㪺㪸㫋㫆㫇㪿㪸㪾㫌㫊 㪪㪺㪸㫋㫆㫇㪿㪸㪾㫌㫊 㪪㪺㪸㫋㫆㫇㪿㪸㪾㫌㫊 㪪㪺㪸㫋㫆㫇㪿㪸㪾㫌㫊 㪪㪺㪸㫋㫆㫇㪿㪸㪾㫌㫊 㪪㪼㫃㪼㫅㫆㫋㫆㪺㪸
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㪹㫆㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷 㪪㪺㪸㫋㫆㫇㪿㪸㪾㫀㪻㪸㪼
㫋㪸㫇㪸㪼㫀㫅㫆㪺㪼㫇㪿㪸㫃㫌㫊
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪋㪏㪘
㪋㪏
㪋㪏 㪋㪏
㪝 㪝
㪉㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪋㪉㪘
㪋㪏
㪉㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪋㪉㪘
㪉㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪋㪋㪘
㪋㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪊㪋㪘
㪉㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪋㪉㪘
㪋㪏 㪋㪏
㪉㪪㪫㩷㪂㩷㪋㪍㪘
㪋㪏
㪉㪪㪫㩷㪂㩷㪋㪍㪘
㪋㪏㪘
㪋㪏 㪋㪏
㪋㪏㪘
㪋㪏
㪌㪇
㪌㪇
㪌㪏
㪌㪉
㪌㪉
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪌㪇 㪋㪏
㪋㪏
㪋㪏 㪋㪏
㪋㪏
㪋㪏 㪋㪏㪘
㪋㪏㪘
㪋㪏㪘 㪍㪤㩷㪂㩷㪊㪍㪘
㪉㪪㪫㩷㪂㩷㪋㪍㪘
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪐
㪌㪇
㪌㪋
㪌㪉
㪍㪉
㪌㪋
㪌㪋
㪌㪇
㪌㪇
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏 㪋㪏
㪌㪇
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪐
㪌㪇
㪝 㪞 㪥㪝㪈 㪥㪝㪉
㪋㪏
㪋㪏
㪋㪏 㪋㪉
㪋㪏
㪤
㪝㪃㩷㪤
㪤
㪝
㪋㪏㪘
㪋㪏㪘
㪋㪏 㪋㪏
㪋 㪏㪘
㪋㪏
㪈㪤㩷㪂㩷㪋㪎㪘
㪋㪏
㪤㪃㩷㪝
㪜 㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪉㪪㪤㩷㪂㩷㪋㪍㪘
㪝
㪋㪏
㪋㪏
㪛 㪉㫅
㪤
㪝
㪚 㪪㪼㫏
㪉
㪉
㪟 㪘㪾㪄 㪥㪦㪩㫊
㪫㪸㪹㫃㪼㩷㪍㪅㪊㪐㩷㩷㪦㫉㪻㪼㫉㩷㪧㪜㪩㪚㪠㪝㪦㪩㪤㪜㪪㪅㩷㪧㪸㫉㫋㩷㪋㩷㪞㫆㪹㫀㫆㫀㪻㪼㫀㪃㩷㪢㫌㫉㫋㫆㫀㪻㪼㫀㪃㩷㪘㪺㪸㫅㫋㪿㫌㫉㫆㫀㪻㪼㫀㪃㩷㪸㫅㪻㩷㪪㪺㫆㫄㪹㫉㫆㫀㪻㪼㫀㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀㩷 㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀㩷
㪈㪅㪎㩷㪝㪛
㪈㪅㪎㩷㪝㪛㪃㩷㩿㪈㪅㪍㩷㪝㪠㪘㪀
㪈㪅㪏㩷㪝㪠㪘
㪈㪅㪏㩷㪝㪠㪘
㪈㪅㪎㩷㪝㪠㪘
㩿㪈㪅㪍㩷㪝㪠㪘㪃㩷㪉㪅㪇㩷㪙㪝㪘㪀
㪈㪅㪏㩷㪝㪛㪃㩷㪈㪅㪎㩷㪝㪠㪘
㪈㪅㪐㩷㪝㪛
㪈㪅㪈㪁㩷㪝㪚㪤㪃㩷㪈㪅㪉㩷㪝㪠㪘
㪈㪅㪉㩷㪝㪠㪘
㪈㪅㪋㩷㪝㪠㪘
㩿㪈㪅㪌㩷㪙㪝㪘㪀
㪠 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
䌘䌘㪃㩷㪘㪚㪥㪔㪋㪏
䌘䌙㪃㩷㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪡㪸㫇㪸㫅㩷㩿㪪㪸㫅㫉㫀㫂㫌㪀
㪡㪸㫇㪸㫅㩷㩿㪪㪸㫅㫉㫀㫂㫌㪀
㪠㫅㪻㫀㪸㩷㩿㪮㪙㪀
㪥㪅㩷㪧㪸㪺㫀㪽㫀㪺
㪥㪅㩷㪧㪸㪺㫀㪽㫀㪺
㪡㪸㫇㪸㫅
㪡㪸㫇㪸㫅㩷㩿㪠㫎㪸㫋㪼㪀
㪥㪅㩷㪧㪸㪺㫀㪽㫀㪺
㪡㪸㫇㪸㫅㩷㩿㪪㪸㫅㫉㫀㫂㫌㪀
㪡㪸㫇㪸㫅㩷㩿㪪㪸㫅㫉㫀㫂㫌㪀
㪡㪸㫇㪸㫅
㪙㫉㪸㫑㫀㫃㩷㩿㪩㪡㪀
㪠㫅㪻㫀㪸㩷㩿㪦㫉㫀㫊㫊㪸㪀 㪡㪸㫇㪸㫅
㪡㪸㫇㪸㫅㩷㩿㪪㪿㫀㫄㪸㫅㪼㪀
㩿㪮㪅㩷㪧㪸㪺㫀㪽㫀㪺㪀
㪚㪿㫀㫅㪸
㩿㪮㪅㩷㪧㪸㪺㫀㪽㫀㪺㪀
㪠㫅㪻㫀㪸
㪠㫅㪻㫀㪸
㪠㫅㪻㫀㪸㩷㩿㪧㫆㫉㫋㫆㫅㫆㫍㫆㪀
㪠㫅㪻㫀㪸㩷㩿㪦㫉㫀㫊㫊㪸㪀
㪢 㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪠㪄㪐
㪠㪄㪈㪃㩷㪠㪄㪐㪃㩷㪟㪄㪋㪇
㪢㪄㪈㪊㪍
㪩㪄㪊㪏㪃㩷㪪㪄㪐㪍㪃㩷㪟㪄㪋㪇
㪩㪄㪊㪏㪃㩷㪪㪄㪐㪍㪃㩷㪟㪄㪋㪈
㪤㪄㪐㪐㪃㩷㪢㪄㪌㪇
㪠㪄㪈㪃㩷㪟㪄㪋㪇
㪩㪄㪊㪏㪃㩷㪪㪄㪐㪌㪃㩷㪪㪄㪐㪍
㪠㪄㪐㪃㩷㪟㪄㪈㪊㪃㩷㪟㪄㪋㪇
㪠㪄㪐㪃㩷㪟㪄㪋㪇
㪠㪄㪐
㪙㪄㪏㪍
㪚㪄㪍㪈 㪦㪄㪋㪏㪃㩷㪟㪄㪋㪇
㪢㪄㪍㪏㪃㩷㪟㪄㪋㪈
㪪㪄㪈㪊㪇㪃㩷㪟㪄㪋㪈
㪱㪄㪊㪐
㪪㪄㪈㪊㪇
㪢㪄㪉㪍
㪢㪄㪉㪍
㪥㪄㪈㪊
㪚㪄㪍㪈㪃㩷㪟㪄㪈㪊
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
205
㪚㫋㪼㫅㫆㫇㫊 㪣㫌㪺㫀㫆㪺㪼㫇㪿㪸㫃㫌㫊 㪪㫇㪿㪸㪼㫉㫀㪺㪿㫋㪿㫐㫊 㪪㫇㪿㪸㪼㫉㫀㪺㪿㫋㪿㫐㫊 㪫㫉㫀㪺㪿㫆㪾㪸㫊㫋㪼㫉 㪫㫉㫀㪺㪿㫆㪾㪸㫊㫋㪼㫉 㪫㫉㫀㪺㪿㫆㪾㪸㫊㫋㪼㫉 㪫㫉㫀㪺㪿㫆㪾㪸㫊㫋㪼㫉 㪫㫉㫀㪺㪿㫆㪾㪸㫊㫋㪼㫉 㪫㫉㫀㪺㪿㫆㪾㪸㫊㫋㪼㫉
㫅㫆㪹㫀㫃㫀㫊 㫇㫌㫃㪺㪿㪼㫉 㫆㫊㫇㪿㫉㫆㫄㪼㫅㫆㫀㪻㪼㫊 㫆㫊㫇㪿㫉㫆㫄㪼㫅㫆㫀㪻㪼㫊 㪺㪿㫌㫅㪸 㪺㪿㫌㫅㪸 㪺㪿㫌㫅㪸 㪽㪸㫊㪺㫀㪸㫋㫌㫊 㪽㪸㫊㪺㫀㪸㫋㫌㫊 㪽㪸㫊㪺㫀㪸㫋㫌㫊
㪚㫆㫃㫀㫊㪸 㪚㫆㫃㫀㫊㪸㩷㫊㫆㫋㪸 㪚㫆㫃㫀㫊㪸㩷㪺㪿㫌㫅㪸㩷 㫍㪸㫉㪅㩷㫊㫆㫋㪸 㪚㫆㫃㫀㫊㪸㩷㪽㪸㫊㪺㫀㪸㫋㫌㫊
㪈㪍㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪈㪇㪘
㪋㪏 㪋㪏
㪉㪏㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪍㪘
㪋㪍
㪤
㪉㪇㪤㩷㪂㩷㪏㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪈㪉㪘
㪋㪍
㪈㪋㪤㩷㪂㩷㪈㪉㩷㪪㪤㪆㪪㪫㩷㪂㩷㪉㪉㪘
㪈㪌㪤㩷㪂㩷㪈㪉㩷㪪㪤㪆㪪㪫㩷㪂㩷㪉㪈㪘
㪈㪇㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪉㪘 㪈㪇㪤㩷㪂㩷㪏㪪㪤㩷㪂㩷㪉㪏㪘
㪈㪍 㪋㪍
㪋㪏
㪈㪋㩷㪤㪆㪪㪤㩷㪂㩷㪉㪘
㪉㪇㪘
㪈㪍
㪏㪤㩷㪂㩷㪏㪪㪤㩷㪂㩷㪉㪏㪘
㪉㪇
㪋㪏㪘
㪋㪋
㪝
㪝㪃㩷㪤
㪝㪃㩷㪤
㪝㪃㩷㪤
㪉㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪋㪋㩷㪪㪫㪆㪘
㪋㪏
㪋㪏
㪉㪤㩷㪂㩷㪋㪋㪘
㪋㪍
㪸㫅㫊㫆㫉㪾㫀㫀 㪺㫆㫅㪾㫀㪺㫌㫄 㫇㪼㫂㫂㫆㫃㪸㫀
㪝㪃㩷㪤
㪉㪤㩷㪂㩷㪋㪋㪘
㪋㪏 㪋㪍
㫊㫇㪅
㫋㪼㫄㫄㫀㫅㪺㫂㫀
㪋㪏㩷㪪㪫㪆㪘 㪋㪏㪘
㪋㪏 㪋㪏 㪋㪏㪘
㪋㪏㪘
㪋㩷㪤㪆㪪㪤㩷㪂㩷㪋㪉㪘
㪋㪏㪘
㪋㪍
㪋㪍
㪝
㪋㪪㪫㩷㪂㩷㪋㪉㪘
㪉㪪㪤㩷㪂㩷㪋㪋㩷㪪㪫㪆㪘
㪋㪍 㪋㪍
㪉㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪋㪉㪘
㪋㪍
㪋㪏
㫋㪼㫄㫄㫀㫅㫂㫀㫀
㪉
㪈㪅㪏㩷㪙㪝㪘
㪠 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪏㪇
㪏㪍
㪎㪋
㪊㪇 㪍㪋
㪊㪇
㪉㪇
㪍㪇
㪋㪏
㪌㪉
㪋㪏
㪋㪏
㪋㪏
㪋㪏 㪋㪏
㪋㪏
㪋㪏
㪌㪇
㪋㪍
㪋㪏
㪋㪏
㪎㪋
㪎㪌
㪏㪍
㪏㪍
㪏㪇
㪊㪇 㪍㪋
㪊㪇
㪉㪇
㪍㪇
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪌㪇
㪌㪇
㪌㪇
㪉
㪉
㪉
㩿㪈㪅㪊㩷㪝㪚㪤㪀
㪱㪱㪃㩷㪘㪚㪥㪔㪋㪏
㪱㪮㪃㩷㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪉
㪘㪚㪥㪔㪋㪋
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏 㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪍
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪠㫅㪻㫀㪸㩷㩿㪘㫅㪻㪿㫉㪸㩷㪧㫉㪸㪻㪼㫊㪿㪀
㪢 㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪠㫅㪻㫀㪸㩷㩿㪟㪸㫉㫐㪸㫅㪸㪀
㪠㫅㪻㫀㪸㩷㩿㪟㪸㫉㫐㪸㫅㪸㪀
㪠㫅㪻㫀㪸㩷㩿㪤㪸㫅㫀㫇㫌㫉㪀
㪠㫅㪻㫀㪸㩷㩿㪘㫊㫊㪸㫄㪀
㪠㫅㪻㫀㪸
㩿㪠㫅㪻㫀㪸㪀 㩿㪠㫅㪻㫀㪸㪀
㩿㪘㫊㫀㪸㪀
㪫㪿㪸㫀㫃㪸㫅㪻
㪠㫅㪻㫀㪸
㩿㪪㪅㩷㪜㪅㩷㪘㫊㫀㪸㪀
㪮㪅㩷㪜㫋㪿㫀㫆㫇㫀㪸
㩿㪘㪽㫉㫀㪺㪸㪀
㩿㪘㪽㫉㫀㪺㪸㪀
㩿㪘㪽㫉㫀㪺㪸㪀
㩿㪘㪽㫉㫀㪺㪸㪀 㪮㪅㩷㪜㫋㪿㫀㫆㫇㫀㪸
㪮㪅㩷㪜㫋㪿㫀㫆㫇㫀㪸
㩿㪘㪽㫉㫀㪺㪸㪀
㩿㪙㪸㫅㪾㫃㪸㪻㪼㫊㪿㪃㩷㪛㪿㪸㫂㪸㪀
㩿㪘㫊㫀㪸㪀
㪠㫅㪻㫀㪸㩷㩿㪮㪙㪀
㪠㫅㪻㫀㪸㩷㩿㪛㪼㫃㪿㫀㪀
㪠㫅㪻㫀㪸
㪠㫅㪻㫀㪸㩷㩿㪤㪸㫅㫀㫇㫌㫉㪀
㪍㪇
㪟 㪘㪾㪄 㪥㪦㪩㫊
㪋㪍
㪌㪋
㪝 㪞 㪥㪝㪈 㪥㪝㪉
㪠㫅㪻㫀㪸㩷㩿㪘㫅㪻㪿㫉㪸㩷㪧㫉㪸㪻㪼㫊㪿㪀 㪉㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪊㪉㪘
㪜 㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪋㪏
㪋㪍
㪛 㪉㫅
㪝㪃㩷㪤
㪝㪃㩷㪤
㪚 㪪㪼㫏
㪋㪏
㪸㫅㫊㫆㫉㪾㪼㫀
㫆㫃㫀㪾㫆㫃㪼㫇㫀㫊
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪸㪺㫌㫋㫀㫉㫆㫊㫋㫉㪼 㫄㫌㫉㫀㪼㫀 㫆㪺㪼㫃㫃㪸㫋㫌㫄 㫇㪼㫋㪿㪼㫉㫀㪺㫀
㪺㫆㪹㫆㫁㫀㫌㫊 㫋㪼㫊㫋㫌㪻㫀㫅㪼㫌㫊 㫋㪼㫊㫋㫌㪻㫀㫅㪼㫌㫊 㫋㪼㫊㫋㫌㪻㫀㫅㪼㫌㫊 㫋㪼㫊㫋㫌㪻㫀㫅㪼㫌㫊 㫋㪼㫊㫋㫌㪻㫀㫅㪼㫌㫊 㫋㪼㫊㫋㫌㪻㫀㫅㪼㫌㫊 㫋㪼㫊㫋㫌㪻㫀㫅㪼㫌㫊
㪦㫊㫇㪿㫉㫆㫅㪼㫄㫀㪻㪸㪼㩷㩿㪔㩷㪙㪼㫃㫆㫅㫋㫀㫀㪻㪸㪼㪀 㩷㩷㩷㪣㫌㪺㫀㫆㪺㪼㫇㪿㪸㫃㫀㫅㪸㪼
㪟㪼㫃㫆㫊㫋㫆㫄㪸
㪟㪼㫃㫆㫊㫋㫆㫄㪸㫋㫀㪻㪸㪼
㪚㫋㪼㫅㫆㫇㫆㫄㪸 㪚㫋㪼㫅㫆㫇㫆㫄㪸 㪚㫋㪼㫅㫆㫇㫆㫄㪸 㪚㫋㪼㫅㫆㫇㫆㫄㪸 㪚㫋㪼㫅㫆㫇㫆㫄㪸 㪤㫀㪺㫉㫆㪺㫋㪼㫅㫆㫇㫆㫄㪸 㪤㫀㪺㫉㫆㪺㫋㪼㫅㫆㫇㫆㫄㪸 㪤㫀㪺㫉㫆㪺㫋㪼㫅㫆㫇㫆㫄㪸
㩷㩷㩷㪚㫋㪼㫅㫆㫇㫆㫄㫀㫅㪸㪼
㪘㫅㪸㪹㪸㫊 㪘㫅㪸㪹㪸㫊 㪘㫅㪸㪹㪸㫊 㪘㫅㪸㪹㪸㫊 㪘㫅㪸㪹㪸㫊 㪘㫅㪸㪹㪸㫊 㪘㫅㪸㪹㪸㫊 㪘㫅㪸㪹㪸㫊
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㪹㫆㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷 㪪㫌㪹㫆㫉㪻㪼㫉㩷㪘㫅㪸㪹㪸㫅㫋㫆㫀㪻㪼㫀㩷 㪘㫅㪸㪹㪸㫅㫋㫀㪻㪸㪼 㩷㩷㩷㪘㫅㪸㪹㪸㫅㫋㫀㫅㪸㪼
㪫㪸㪹㫃㪼㩷㪍㪅㪋㪇㩷㩷㪦㫉㪻㪼㫉㩷㪧㪜㪩㪚㪠㪝㪦㪩㪤㪜㪪㪅㩷㪧㪸㫉㫋㩷㪌㩷㪘㫅㪸㪹㪸㫅㫋㫆㫀㪻㪼㫀㪃㩷㪚㪿㪸㫅㫅㫆㫀㪻㪼㫀㪃㩷㪸㫅㪻㩷㪚㪸㫇㫉㫆㫀㪻㪼㫀㩷
㪩㪄㪋㪎
㪩㪄㪋㪎
㪢㪄㪈㪊㪏
㪢㪄㪋㪍㪃㩷㪚㪄㪈㪇㪏
㪣㪄㪈
㪢㪄㪈㪊㪋 㪩㪄㪎㪎㪃㩷㪭㪄㪏㪍
㪚㪄㪏㪐
㪛㪄㪉㪏
㪩㪄㪎㪎㪃㩷㪩㪄㪎㪏
㪘㪄㪊㪃㩷㪟㪄㪈㪊
㪢㪄㪈㪈㪇
㪢㪄㪈㪈㪇
㪢㪄㪈㪈㪇
㪢㪄㪈㪈㪇
㪢㪄㪈㪈㪇 㪢㪄㪈㪈㪇
㪢㪄㪈㪈㪇
㪢㪄㪈㪈㪇
㪫㪄㪍㪏
㪘㪄㪊
㪤㪄㪉㪉
㪩㪄㪍㪏
㪢㪄㪋㪋
㪢㪄㪈㪊㪏
㪛㪄㪉㪌
㪛㪄㪉㪌
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
206
㪙㪼㫋㫋㪸 㪤㪸㪺㫉㫆㫇㫆㪻㫌㫊 㪤㪸㪺㫉㫆㫇㫆㪻㫌㫊 㪤㪸㪺㫉㫆㫇㫆㪻㫌㫊 㪤㪸㪺㫉㫆㫇㫆㪻㫌㫊 㪤㪸㪺㫉㫆㫇㫆㪻㫌㫊 㪤㪸㪺㫉㫆㫇㫆㪻㫌㫊 㪤㪸㪺㫉㫆㫇㫆㪻㫌㫊 㪦㫊㫇㪿㫉㫆㫅㪼㫄㫌㫊 㪧㪸㫉㫆㫊㫇㪿㫉㫆㫄㪼㫅㫌㫊
㩷㩷㩷㪤㪸㪺㫉㫆㫇㫆㪻㫌㫊㫀㫅㪸㪼
㫊㫇㫃㪼㫅㪻㪼㫅㫊 㪺㪿㫀㫅㪼㫅㫊㫀㫊 㪺㪿㫀㫅㪼㫅㫊㫀㫊 㫆㪺㪼㫃㫃㪸㫋㫌㫊 㫆㫇㪼㫉㪺㫌㫃㪸㫉㫀㫊 㫆㫇㪼㫉㪺㫌㫃㪸㫉㫀㫊 㫆㫇㪼㫉㪺㫌㫃㪸㫉㫀㫊 㫊㫇㪼㪺㪿㫋㫀 㪾㫆㫉㪸㫄㫐 㫊㫌㫄㪸㫋㫉㪸㫅㫌㫊 㪚㫆㫃㫀㫊㪸
㪺㫆㫅㪺㫆㫃㫆㫉
㪚㫆㫃㫀㫊㪸 㪚㫆㫃㫀㫊㪸㩷 㪚㫆㫃㫀㫊㪸㩷 㪚㫆㫃㫀㫊㪸㩷 㪚㫆㫃㫀㫊㪸㩷 㫃㪸㫉㫀㫌㫊 㪚㫆㫃㫀㫊㪸㩷㫃㪸㫃㫀㪸 㪫㫉㫀㪺㪿㫆㪾㪸㫊㫋㪼㫉㩷㫇㪼㪺㫋㫆㫉㪸㫃㫀㫊 㪫㫉㫀㪺㪿㫆㪾㪸㫊㫋㪼㫉 㪫㫉㫀㪺㪿㫆㪾㪸㫊㫋㪼㫉 㪫㫉㫀㪺㪿㫆㪾㪸㫊㫋㪼㫉 㪫㫉㫀㪺㪿㫆㪾㪸㫊㫋㪼㫉 㪫㫉㫀㪺㪿㫆㪾㪸㫊㫋㪼㫉 㪫㫉㫀㪺㪿㫆㪾㪸㫊㫋㪼㫉 㪚㫆㫃㫀㫊㪸 㪚㫆㫃㫀㫊㪸
㪚㫆㫃㫀㫊㪸㩷
㪚㫆㫃㫀㫊㪸㩷㪽㪸㫊㪺㫀㪸㫋㪸 㪚㫆㫃㫀㫊㪸㩷㪽㪸㫊㪺㫀㪸㫋㪸 㪚㫆㫃㫀㫊㪸㩷㪽㪸㫊㪺㫀㪸㫋㪸 㪚㫆㫃㫀㫊㪸㩷㪽㪸㫊㪺㫀㪸㫋㪸
㪫㫉㫀㪺㪿㫆㪾㪸㫊㫋㪼㫉 㪫㫉㫀㪺㪿㫆㪾㪸㫊㫋㪼㫉 㪫㫉㫀㪺㪿㫆㪾㪸㫊㫋㪼㫉 㪫㫉㫀㪺㪿㫆㪾㪸㫊㫋㪼㫉 㪫㫉㫀㪺㪿㫆㪾㪸㫊㫋㪼㫉 㪫㫉㫀㪺㪿㫆㪾㪸㫊㫋㪼㫉 㪫㫉㫀㪺㪿㫆㪾㪸㫊㫋㪼㫉 㪫㫉㫀㪺㪿㫆㪾㪸㫊㫋㪼㫉 㪫㫉㫀㪺㪿㫆㪾㪸㫊㫋㪼㫉 㪫㫉㫀㪺㪿㫆㪾㪸㫊㫋㪼㫉 㪫㫉㫀㪺㪿㫆㪾㪸㫊㫋㪼㫉 㪫㫉㫀㪺㪿㫆㪾㪸㫊㫋㪼㫉 㪫㫉㫀㪺㪿㫆㪾㪸㫊㫋㪼㫉 㪫㫉㫀㪺㪿㫆㪾㪸㫊㫋㪼㫉 㪫㫉㫀㪺㪿㫆㪾㪸㫊㫋㪼㫉 㪫㫉㫀㪺㪿㫆㫇㫆㪻㫌㫊 㪫㫉㫀㪺㪿㫆㫇㫆㪻㫌㫊 㪫㫉㫀㪺㪿㫆㫇㫆㪻㫌㫊 㪫㫉㫀㪺㪿㫆㫇㫆㪻㫌㫊 㪫㫉㫀㪺㪿㫆㫇㫆㪻㫌㫊 㪫㫉㫀㪺㪿㫆㫇㫆㪻㫌㫊 㪫㫉㫀㪺㪿㫆㫇㫆㪻㫌㫊 㪫㫉㫀㪺㪿㫆㫇㫆㪻㫌㫊 㪫㫉㫀㪺㪿㫆㫇㫆㪻㫌㫊
㪽㪸㫊㪺㫀㪸㫋㫌㫊 㪽㪸㫊㪺㫀㪸㫋㫌㫊 㪽㪸㫊㪺㫀㪸㫋㫌㫊 㪽㪸㫊㪺㫀㪸㫋㫌㫊 㪽㪸㫊㪺㫀㪸㫋㫌㫊 㪽㪸㫊㪺㫀㪸㫋㫌㫊 㫃㪸㪹㫀㫆㫊㫌㫊 㫃㪸㪹㫀㫆㫊㫌㫊 㫃㪸㪹㫀㫆㫊㫌㫊 㫃㪸㫃㫀㫌㫊 㫃㪸㫃㫀㫌㫊 㫃㪸㫃㫀㫌㫊 㫃㪸㫃㫀㫌㫊 㫃㪸㫃㫀㫌㫊 㫃㪸㫃㫀㫌㫊 㪺㪸㫅㫋㫆㫉㫀㫊 㫃㪼㪼㫉㫀 㫃㪼㪼㫉㫀 㫄㫀㪺㫉㫆㫃㪼㫇㫀㫊 㫄㫀㪺㫉㫆㫃㪼㫇㫀㫊 㫊㫌㫄㪸㫋㫉㪸㫅㫌㫊 㫋㫉㫀㪺㪿㫆㫇㫋㪼㫉㫌㫊 㫋㪅㩷㫊㫌㫄㪸㫋㫉㪸㫅㫌㫊 㫋㪅㩷㫋㫉㫀㪺㪿㫆㫇㫋㪼㫉㫌㫊
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㪹㫆㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷
㪈㪋㪤㩷㪂㩷㪈㪇㪪㪤㩷㪂㩷㪈㪉㪪㪫㩷㪂㩷㪈㪇㪘 㪉㪋㩷㪤㪆㪪㪤㩷㪂㩷㪉㪉㩷㪪㪫㪆㪘 㪋㪍㪘
㪋㪍 㪋㪍 㪋㪌 㪋㪍 㪋㪍 㪋㪍
㪤 㪝 㪤 㪝㪃㩷㪤
㪋㪍 㪋㪍
㪝㪃㩷㪤 㪝㪃㩷㪤
㪈㪉㩷㪤㪆㪪㪤㩷㪂㩷㪊㪋㩷㪪㪫㪆㪘
㪋㪍 㪝㪃㩷㪤
㪋㪤㩷㪂㩷㪈㪇㪪㪤㩷㪂㩷㪈㪉㪪㪫㩷㪂㩷㪉㪇㪘
㪋㪍
㪝㪃㩷㪤
㪈㪇㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪉㪉㪪㪫㩷㪂㩷㪈㪉㪘 㪉㪪㪤㩷㪂㩷㪋㪍㪘 㪋㪍㪘
㪋㪍 㪋㪏 㪋㪍
㪏㪤㩷㪂㩷㪏㪪㪤㩷㪂㩷㪈㪍㪪㪫㩷㪂㩷㪈㪋㪘
㪋㪍
㪝㪃㩷㪤
㪏㪤㩷㪂㩷㪏㪪㪤㩷㪂㩷㪈㪋㪪㪫㩷㪂㩷㪈㪍㪘
㪋㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪊㪏㪘
㪋㪍
㪋㪍 㪝㪃㩷㪤
㪍㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪋㪇㪘
㪋㪍㪘
㪋㪍㪘
㪋㪏
㪋㪉
㪋㪍
㪤
㪋㪍㪘
㪋㪍㪘 㪋㪏㪘
㪋㪍 㪋㪏 㪋㪏
㪋㪍㪘
㪋㪍
㪤
㪋㪍㪘
㪋㪍
㪝㪃㩷㪤
㪈㪋㩷㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪉㪌㪘
㪈㪋㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪉㪍㪘
㪈㪋㪤㩷㪂㩷㪈㪉㩷㪪㪤㪆㪪㪫㩷㪂㩷㪉㪇㪘
㪈㪋㪤㩷㪂㩷㪈㪉㩷㪪㪤㪆㪪㪫㩷㪂㩷㪈㪐㪘
㪋㪌
㪝
㪉㪉㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪈㪇㪘
㪈㪉㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪈㪉㪪㪫㩷㪂㩷㪈㪏㪘
㪋㪏
㪋㪏
㪉㪉㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪈㪉㪘
㪈㪏㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪈㪍㪘
㪏㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪈㪉㪪㪫㩷㪂㩷㪏㪘
㪝㪃㩷㪤
㪤
㪋㪍
㪝㪃㩷㪤 㪋㪏
㪋㪏
㪝㪃㩷㪤
㪈㪍㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪈㪉㪘
㪈㪌㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪈㪊㪘
㪋㪏 㪋㪏
㪝
㪋㪏
㪤
㪈㪍㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪈㪍㪘
㪋㪏
㪈㪎㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪈㪌㪘
㪜 㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪝
㪛 㪉㫅
㪤
㪚 㪪㪼㫏
㪫㪸㪹㫃㪼㩷㪍㪅㪋㪇㩷㩷㪦㫉㪻㪼㫉㩷㪧㪜㪩㪚㪠㪝㪦㪩㪤㪜㪪㪅㩷㪧㪸㫉㫋㩷㪌㩷㪘㫅㪸㪹㪸㫅㫋㫆㫀㪻㪼㫀㪃㩷㪚㪿㪸㫅㫅㫆㫀㪻㪼㫀㪃㩷㪸㫅㪻㩷㪚㪸㫇㫉㫆㫀㪻㪼㫀㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㫀㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷
㪌㪇 㪋㪍
㪌㪏
㪌㪏
㪍㪇
㪍㪉
㪍㪉
㪌㪋
㪌㪍
㪋㪍
㪋㪍
㪋㪍
㪋㪏
㪋㪏
㪋㪍
㪋㪍
㪋㪍
㪋㪍
㪎㪇 㪎㪇
㪍㪌
㪍㪍
㪏㪍
㪍㪍
㪏㪉
㪎㪍
㪎㪍
㪏㪇
㪎㪐
㪏㪇
㪏㪈
㪌㪇 㪋㪍
㪏㪇
㪎㪉
㪎㪏
㪎㪍
㪌㪋
㪌㪍
㪋㪍
㪋㪍
㪋㪍
㪋㪏
㪋㪍
㪋㪍
㪋㪍
㪋㪍
㪏㪉
㪍㪌
㪍㪍
㪎㪉
㪎㪈
㪏㪍
㪎㪏
㪏㪍
㪎㪍
㪏㪏
㪏㪋
㪏㪊
㪏㪇
㪏㪈
㪝 㪞 㪥㪝㪈 㪥㪝㪉
㪍
㪟 㪘㪾㪄 㪥㪦㪩㫊
㩿㪈㪅㪉㩷㪙㪝㪘㪀
㩿㪈㪅㪈㩷㪝㪚㪤㪀
㪉㪅㪏㪁㩷㪝㪛
㪈㪅㪊㩷㪝㪠㪘㪃㩷㪈㪅㪊㩷㪙㪝㪘
㩿㪈㪅㪉㩷㪝㪚㪤㪀
㪈㪅㪏㪁㩷㪝㪚㪤
㩿㪈㪅㪋㩷㪝㪚㪤㪀
㩿㪈㪅㪉㩷㪝㪚㪤㪃㩷㪈㪅㪉㩷㪙㪝㪘㪀
㪠 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪘㪚㪥㪔㪋㪏 㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪍 㪘㪚㪥㪔㪋㪍
㪯㪦
㪯㪯㪃㩷㪘㪚㪥㪔㪋㪍
㪱㪱
㪱㪦
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪍
㪱㪱㪃㩷㪘㪚㪥㪔㪋㪏
㪱㪮㪃㩷㪘㪚㪥㪔㪋㪏
㪱㪱㪃㩷㪘㪚㪥㪔㪋㪏
㪱㪮㪃㩷㪘㪚㪥㪔㪋㪏
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㩿㪪㪅㩷㪜㪅㩷㪘㫊㫀㪸㪀 㩿㪠㫅㪻㫀㪸㪀
㩿㪘㫊㫀㪸㪀
㩿㪘㫊㫀㪸㪀
㪚㪿㫀㫅㪸㩷㩿㪞㫌㫀㫃㫀㫅㪀
㩿㪘㫊㫀㪸㪀
㩿㪘㫊㫀㪸㪀
㪚㪿㫀㫅㪸㩷㩿㪮㫌㪿㪸㫅㪀
㪢㫆㫉㪼㪸
㩿㪫㪿㪸㫀㫃㪸㫅㪻㪀
㩿㪠㫅㪻㫀㪸㪀
㩿㪠㫅㪻㫀㪸㪀
㩿㪘㫊㫀㪸㪀
㩿㪘㫊㫀㪸㪀
㩿㪘㫊㫀㪸㪀
㩿㪘㫊㫀㪸㪀
㩿㪠㫅㪻㫀㪸㪀
㩿㪪㪜㩷㪘㫊㫀㪸㪀
㪠㫅㪻㫀㪸㩷㩿㪮㪙㪀 㩿㪘㫊㫀㪸㪀
㪠㫅㪻㫀㪸㩷㩿㪟㪸㫉㫐㪸㫅㪸㪀
㪠㫅㪻㫀㪸㩷㩿㪟㪸㫉㫐㪸㫅㪸㪀
㪠㫅㪻㫀㪸㩷㩿㪟㪸㫉㫐㪸㫅㪸㪀
㪠㫅㪻㫀㪸㩷㩿㪟㪸㫉㫐㪸㫅㪸㪀
㩿㪠㫅㪻㫀㪸㪀
㪠㫅㪻㫀㪸㩷㩿㪮㪙㪀
㪠㫅㪻㫀㪸
㪠㫅㪻㫀㪸㩷㩿㪦㫉㫀㫊㫊㪸㪀
㪠㫅㪻㫀㪸㩷㩿㪮㪙㪀
㪠㫅㪻㫀㪸㩷㩿㪤㪸㫅㫀㫇㫌㫉㪀
㪠㫅㪻㫀㪸㩷㩿㪤㪸㫅㫀㫇㫌㫉㪀
㪠㫅㪻㫀㪸㩷㩿㪟㪸㫉㫐㪸㫅㪸㪀
㪠㫅㪻㫀㪸㩷㩿㪟㪸㫉㫐㪸㫅㪸㪀
㪢 㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪢㪄㪐㪎 㪩㪄㪎㪎
㪢㪄㪐㪎
㪘㪄㪊
㪰㪄㪈㪌㪃㩷㪟㪄㪈㪊
㪢㪄㪐㪎㪃㩷㪭㪄㪈㪇㪈
㪢㪄㪐㪎
㪛㪄㪈㪏㪃㩷㪚㪄㪏㪊
㪣㪄㪈㪌
㪟㪄㪈㪊㪃㩷㪟㪄㪋㪈
㪩㪄㪎㪎
㪩㪄㪎㪎
㪘㪄㪊㪃㩷㪭㪄㪏㪍
㪚㪄㪏㪐
㪦㪄㪋㪏
㪢㪄㪈㪊㪋
㪘㪄㪊
㪩㪄㪎㪎㪃㩷㪭㪄㪏㪍
㪢㪄㪈㪈㪋
㪢㪄㪊㪋 㪘㪄㪊㪃㩷㪭㪄㪈㪇㪈㪃㩷㪟㪄㪊㪐
㪩㪄㪎㪎㪃㩷㪩㪄㪎㪏
㪩㪄㪎㪎㪃㩷㪩㪄㪎㪏
㪩㪄㪌㪇
㪩㪄㪌㪇
㪩㪄㪎㪎
㪤㪄㪉㪍
㪣㪄㪈
㪫㪄㪌㪇
㪤㪄㪉㪍
㪪㪄㪈㪎㪌
㪪㪄㪈㪎㪌
㪩㪄㪌㪋㪃㩷㪩㪄㪎㪎㪃㩷㪩㪄㪎㪏㪃㩷㪪㪄㪌㪎 㪩㪄㪌㪋㪃㩷㪩㪄㪎㪎㪃㩷㪩㪄㪎㪏㪃㩷㪪㪄㪌㪎
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
207
㪸㫉㪾㫌㫊 㪸㫉㪾㫌㫊 㪸㫉㪾㫌㫊 㪸㫉㪾㫌㫊 㪸㫊㫀㪸㫋㫀㪺㪸 㪸㫊㫀㪸㫋㫀㪺㪸 㪸㫊㫀㪸㫋㫀㪺㪸 㪹㪸㫉㪺㪸 㪾㪸㪺㪿㫌㪸 㪾㪸㪺㪿㫌㪸 㫄㪸㪺㫌㫃㪸㫋㪸 㫄㪸㪺㫌㫃㪸㫋㪸 㫄㪸㫉㫌㫃㫀㫌㫊 㫆㫉㫀㪼㫅㫋㪸㫃㫀㫊 㪖 㫆㫉㫀㪼㫅㫋㪸㫃㫀㫊 㫆㫉㫀㪼㫅㫋㪸㫃㫀㫊 㫇㫌㫅㪺㫋㪸㫋㪸㩷 㫇㫌㫅㪺㫋㪸㫋㪸㩷 㫇㫌㫅㪺㫋㪸㫋㪸㩷 㫇㫌㫅㪺㫋㪸㫋㪸㩷 㫇㫌㫅㪺㫋㪸㫋㪸㩷 㫇㫌㫅㪺㫋㪸㫋㪸㩷 㫇㫌㫅㪺㫋㪸㫋㪸 㫇㫌㫅㪺㫋㪸㫋㪸㩷 㫊㫋㪼㫎㪸㫉㫋㫀㫀 㫊㫋㪼㫎㪸㫉㫋㫀㫀 㫊㫋㫉㫀㪸㫋㪸 㫊㫋㫉㫀㪸㫋㪸 㫊㫋㫉㫀㪸㫋㪸 㫆㪹㫊㪺㫌㫉㪸
㪚㪸㫇㫉㫆㫊 㪚㪸㫇㫉㫆㫊 㪚㪸㫇㫉㫆㫊
㪸㫇㪼㫉 㪸㫇㪼㫉 㪸㫇㪼㫉
㪪㫌㪹㫆㫉㪻㪼㫉㩷㪚㪸㫇㫉㫆㫀㪻㪼㫀 㪚㪸㫇㫉㫆㫀㪻㪸㪼
㪚㪿㪸㫅㫅㪸 㪚㪿㪸㫅㫅㪸 㪚㪿㪸㫅㫅㪸 㪚㪿㪸㫅㫅㪸 㪚㪿㪸㫅㫅㪸 㪚㪿㪸㫅㫅㪸 㪚㪿㪸㫅㫅㪸 㪚㪿㪸㫅㫅㪸 㪚㪿㪸㫅㫅㪸 㪚㪿㪸㫅㫅㪸 㪚㪿㪸㫅㫅㪸 㪚㪿㪸㫅㫅㪸 㪚㪿㪸㫅㫅㪸 㪚㪿㪸㫅㫅㪸 㪚㪿㪸㫅㫅㪸 㪚㪿㪸㫅㫅㪸 㪚㪿㪸㫅㫅㪸 㪚㪿㪸㫅㫅㪸 㪚㪿㪸㫅㫅㪸 㪚㪿㪸㫅㫅㪸 㪚㪿㪸㫅㫅㪸 㪚㪿㪸㫅㫅㪸 㪚㪿㪸㫅㫅㪸 㪚㪿㪸㫅㫅㪸 㪚㪿㪸㫅㫅㪸 㪚㪿㪸㫅㫅㪸 㪚㪿㪸㫅㫅㪸 㪚㪿㪸㫅㫅㪸 㪚㪿㪸㫅㫅㪸 㪧㪸㫉㪸㪺㪿㪸㫅㫅㪸
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㪹㫆㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫌㪹㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷 㪪㫌㪹㫆㫉㪻㪼㫉㩷㪚㪿㪸㫅㫅㫆㫀㪻㪼㫀㩷 㪚㪿㪸㫅㫅㫀㪻㪸㪼
㫊㫋㫉㫀㪸㫋㫌㫊 㫊㫋㫉㫀㪸㫋㫌㫊 㫊㫋㫉㫀㪸㫋㫌㫊 㪦㫇㪿㫀㫆㪺㪼㫇㪿㪸㫃㫌㫊㩷㫆㪹㫊㪺㫌㫉㫌㫊
㫍㪸㫉㪅㩷㪘 㫍㪸㫉㪅㩷㪙
㫇㫌㫅㪺㫋㪸㫋㫌㫊 㫇㫌㫅㪺㫋㪸㫋㫌㫊 㫇㫌㫅㪺㫋㪸㫋㫌㫊 㫇㫌㫅㪺㫋㪸㫋㫌㫊 㫇㫌㫅㪺㫋㪸㫋㫌㫊
㫆㫉㫀㪼㫅㫋㪸㫃㫀㫊
㪦㫇㪿㫀㫆㪺㪼㫇㪿㪸㫃㫌㫊㩷
㪦㫇㪿㫀㫆㪺㪼㫇㪿㪸㫃㫌㫊 㪦㫇㪿㫀㫆㪺㪼㫇㪿㪸㫃㫌㫊
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪤
㪝㪃㩷㪤
㪉㪋㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪋㪘 㪈㪉㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪋㪉㪘
㪍㪍
㪉㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪏㪪㪫㩷㪂㩷㪊㪋㪘 㪋㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪏㪪㪫㩷㪂㩷㪊㪇㪘 㪍㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪏㪪㪫㩷㪂㩷㪉㪍㪘
㪋㪍 㪋㪋 㪋㪉
㪋㪉
㪏㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪊㪇㪘
㪏㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪉㪍㪘
㪋㪇 㪋㪇
㪏㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪉㪏㪘
㪋㪇
㪈㪇㪋 㪉㪤㩷㪂㩷㪈㪇㪉㪘
㪈㪍㪤㩷㪂㩷㪈㪍㪪㪤
㪈㪍㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪉㪘
㪊㪉
㪊㪉
㪝㪃㩷㪤
㪈㪇㪤㩷㪂㩷㪈㪏㪪㪤㩷㪂㩷㪋㪘
㪊㪉
㪊㪉
㪝㪃㩷㪤
㪈㪏㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪉㪪㪫
㪉㪋㪤㩷㪂㩷㪏㪪㪤
㪈㪍㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪋㪘
㪊㪉
㪝㪃㩷㪤
㪊㪋
㪊㪉
㪝㪃㩷㪤
㪉㪇㪤㩷㪂㩷㪈㪉㪪㪤
㪊㪋㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪋㪉㩷㪪㪫㪆㪘
㪎㪏 㪊㪉
㪉㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪊㪏㪘 㪉㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪍㪏㪘
㪋㪉 㪎㪍 㪝㪃㩷㪤
㪝㪃㩷㪤
㪋㪏
㪉 㪈㪅㪊㩷㪝㪛
㪉㪅㪇㩷㪝㪛
㪈㪅㪏㪁㩷㪝㪛
㪈㪅㪎㪁㩷㪝㪛
㪘㪚㪥㪔㪋㪋
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪉
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪠㫅㪻㫀㪸㩷㩿㪮㪙㪀 㪚㪿㫀㫅㪸㩷㩿㪞㫌㪸㫅㪾㪻㫆㫅㪾㪀
㪠㫅㪻㫀㪸
㪌㪇
㪌㪇
㪌㪇
㪌㪇
㪋㪏
㪌㪇
㪈㪇㪍
㪏㪋
㪌㪏
㪍㪋
㪍㪋
㪍㪉
㪍㪇
㪍㪉
㪍㪋
㪍㪋
㪈㪈㪋
㪋㪍 㪏㪋
㪌㪏
㪌㪏
㪌㪏
㪌㪇
㪌㪋
㪌㪉
㪈㪇㪍
㪐㪇
㪍㪇
㪍㪋
㪍㪋
㪍㪉
㪍㪇
㪍㪋
㪍㪋
㪍㪋
㪋㪍 㪏㪋
㪉
㪉
㪉
㪉㪅㪇㩷㪙㪝㪘
㪈㪅㪌㩷㪝㪛
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪉
㪘㪚㪥㪔㪋㪉
㪘㪚㪥㪔㪋㪉
㪘㪚㪥㪔㪎㪏
㪘㪚㪥㪔㪋㪋
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
㪱㪄㪉㪈
㪣㪄㪊㪈
㪣㪄㪊㪈㪃㩷㪰㪄㪈㪌㪃㩷㪚㪄㪏㪊
㪱㪄㪊㪈
㪣㪄㪌㪊
㪱㪄㪉㪈
㪣㪄㪊㪈㪃㩷㪰㪄㪈㪌㪃㩷㪚㪄㪏㪊
㪩㪄㪈㪇㪉
㪩㪄㪎㪌
㪩㪄㪋㪍㪃㩷㪩㪄㪌㪊
㪤㪄㪉㪈
㪙㪄㪉
㪩㪄㪎㪇㪃㩷㪩㪄㪎㪊㪃㩷㪪㪄㪉
㪩㪄㪈㪇㪉 㪩㪄㪍㪌 㪙㪄㪉
㪝㫉㪸㫅㪺㪼㩷㩿㪞㫌㫃㪽㩷㫆㪽㩷㪣㫀㫆㫅㪀
㪝㫉㪸㫅㪺㪼㩷㩿㪞㫌㫃㪽㩷㫆㪽㩷㪣㫀㫆㫅㪀
㪝㫉㪸㫅㪺㪼㩷㩿㪞㫌㫃㪽㩷㫆㪽㩷㪣㫀㫆㫅㪀
㩿㪘㪽㫉㫀㪺㪸㪀
㪠㫅㪻㫀㪸㩷㩿㪮㪙㪀
㪭㪄㪍㪎
㪭㪄㪍㪎
㪭㪄㪍㪎
㪟㪄㪈㪊
㪤㪄㪉㪈
㪠㫅㪻㫀㪸㩷㩿㪘㫊㫊㪸㫄㪃㩷㪤㪼㪾㪿㪸㫃㪸㫐㪸㪀 㪛㪄㪐
㪠㫅㪻㫀㪸
㪠㫅㪻㫀㪸㩷㩿㪥㪸㪾㪸㫃㪸㫅㪻㪀
㪠㫅㪻㫀㪸㩷㩿㪘㫊㫊㪸㫄㪃㩷㪤㪼㪾㪿㪸㫃㪸㫐㪸㪀 㪛㪄㪐
㪙㪸㫅㪾㫃㪸㪻㪼㫊㪿㩷㩿㪛㪿㪸㫂㪸㪀
㪠㫅㪻㫀㪸㩷㩿㪘㫊㫊㪸㫄㪃㩷㪤㪼㪾㪿㪸㫃㪸㫐㪸㪀 㪛㪄㪐
㪠㫅㪻㫀㪸㩷㩿㪘㫊㫊㪸㫄㪃㩷㪤㪼㪾㪿㪸㫃㪸㫐㪸㪀 㪛㪄㪐
㪠㫅㪻㫀㪸㩷㩿㪟㪸㫉㫐㪸㫅㪸㪀
㪠㫅㪻㫀㪸㩷㩿㪟㪸㫉㫐㪸㫅㪸㪀
㪠㫅㪻㫀㪸㩷㩿㪮㪙㪀
㪠㫅㪻㫀㪸
㪠㫅㪻㫀㪸㩷㩿㪟㪸㫉㫐㪸㫅㪸㪃㩷㪬㪅㪧㪅㪀
㪙㪸㫅㪾㫃㪸㪻㪼㫊㪿㩷㩿㪛㪿㪸㫂㪸㪀
㪠㫅㪻㫀㪸㩷㩿㪘㫊㫊㪸㫄㪀 㪢㪄㪋㪈 㪠㫅㪻㫀㪸㩷㩿㪘㫊㫊㪸㫄㪃㩷㪤㪼㪾㪿㪸㫃㪸㫐㪸㪀 㪛㪄㪐
㪢㪄㪋㪈
㪚㪄㪏㪌
㪣㪄㪊㪈㪃㩷㪰㪄㪈㪌
㪙㪄㪉
㪤㪄㪉㪈
㪠㫅㪻㫀㪸㩷㩿㪘㫊㫊㪸㫄㪃㩷㪤㪼㪾㪿㪸㫃㪸㫐㪸㪀 㪛㪄㪐
㪚㪿㫀㫅㪸㩷㩿㪪㪿㪸㫊㪿㫀㪀
㪚㪿㫀㫅㪸㩷㩿㪞㫌㪸㫅㪾㫑㪿㫆㫌㪀
㪚㪿㫀㫅㪸㩷㩿㪪㪿㪸㫆㪾㫌㪸㫅㪀
㪚㪿㫀㫅㪸㩷㩿㪙㪼㫀㫁㫀㫅㪾㪀
㪚㪿㫀㫅㪸㩷㩿㪟㫌㪹㪼㫀㪀
㪚㪿㫀㫅㪸㩷㩿㪪㪿㪸㫊㪿㫀㪀
㪚㪿㫀㫅㪸㩷㩿㪮㫌㪿㪸㫅㪀
㪢 㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪠㫅㪻㫀㪸㩷㩿㪪㫀㫄㫃㫀㫇㪸㫃㩷㪟㫀㫃㫃㫊㪀
㪋㪏
㪋㪏
㪈㪇㪉
㪋
㪋
㪠 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪋㪋
㪋㪤㩷㪂㩷㪋㪇㪘
㪋㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪊㪍㩷㪪㪫㪆㪘
㪈㪇㪋
㪈㪇㪉
㪌㪋
㪏㪉
㪎㪋
㪍㪏
㪐㪍
㪟 㪘㪾㪄 㪥㪦㪩㫊
㪚㪿㫀㫅㪸
㪋㪉
㪝㪃㩷㪤
㪈㪇㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪌㪉㩷㪪㪫㪆㪘
㪈㪉㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪌㪋㪘
㪌㪇
㪌㪋
㪌㪍
㪌㪍
㪌㪉
㪋㪏
㪌㪋
㪌㪉
㪝 㪞 㪥㪝㪈 㪥㪝㪉
㪋㪉
㪎㪏
㪝㪃㩷㪤
㪎㪏
㪍㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪉㪉㪘
㪊㪏 㪝㪃㩷㪤
㪉㪤㩷㪂㩷㪏㪪㪤㩷㪂㩷㪉㪏㪪㪫㩷㪂㩷㪍㪘
㪋㪋 㪝㪃㩷㪤
㪉㪤㩷㪂㩷㪏㪪㪤㩷㪂㩷㪊㪍㩷㪪㪫㪆㪘
㪋㪍
㪝㪃㩷㪤
㪋㪤㩷㪂㩷㪏㪪㪤㩷㪂㩷㪊㪉㩷㪪㪫㪆㪘
㪋㪋
㪋㪪㪤㩷㪂㩷㪉㪉㪪㪫㩷㪂㩷㪉㪉㪘
㪋㪏
㪝㪃㩷㪤
㪉㪇㪪㪫㩷㪂㩷㪉㪏㪘
㪉㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪋㪉㪪㪫
㪋㪏
㪋㪪㪤㩷㪂㩷㪋㪋㩷㪪㪫㪆㪘
㪋㪏
㪜 㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪋㪏
㪛 㪉㫅
㪝㪃㩷㪤
㪝㪃㩷㪤
㪚 㪪㪼㫏
㪫㪸㪹㫃㪼㩷㪍㪅㪋㪇㩷㩷㪦㫉㪻㪼㫉㩷㪧㪜㪩㪚㪠㪝㪦㪩㪤㪜㪪㪅㩷㪧㪸㫉㫋㩷㪌㩷㪘㫅㪸㪹㪸㫅㫋㫆㫀㪻㪼㫀㪃㩷㪚㪿㪸㫅㫅㫆㫀㪻㪼㫀㪃㩷㪸㫅㪻㩷㪚㪸㫇㫉㫆㫀㪻㪼㫀㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㫀㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㩷
208
㪚㫃㪼㫀㫊㫋㪿㪼㫅㪼㫊㩷 㪞㫃㫐㫇㫋㫆㪺㪼㫇㪿㪸㫃㫌㫊 㪟㫀㫇㫇㫆㪾㫃㫆㫊㫊㫌㫊 㪢㪸㫉㪼㫀㫌㫊 㪢㪸㫉㪼㫀㫌㫊 㪣㫀㫄㪸㫅㪻㪸
㪧㫃㪼㫌㫉㫆㫅㪼㪺㫋㫀㪻㪸㪼㩷
㪚㫀㫋㪿㪸㫉㫀㪺㪿㫋㪿㫐㫊 㪚㫀㫋㪿㪸㫉㫀㪺㪿㫋㪿㫐㫊 㪜㫋㫉㫆㫇㫌㫊 㪜㫋㫉㫆㫇㫌㫊 㪟㫀㫇㫇㫆㪾㫃㫆㫊㫊㫀㫅㪸 㪧㪸㫉㪸㫃㫀㪺㪿㫋㪿㫐㫊 㪧㪸㫉㪸㫃㫀㪺㪿㫋㪿㫐㫊 㪧㪸㫉㪸㫃㫀㪺㪿㫋㪿㫐㫊 㪧㪸㫉㪸㫃㫀㪺㪿㫋㪿㫐㫊 㪧㪸㫉㪸㫃㫀㪺㪿㫋㪿㫐㫊 㪧㪸㫉㪸㫃㫀㪺㪿㫋㪿㫐㫊 㪧㪸㫉㪸㫃㫀㪺㪿㫋㪿㫐㫊 㪧㪸㫉㪸㫃㫀㪺㪿㫋㪿㫐㫊 㪧㪸㫉㪸㫃㫀㪺㪿㫋㪿㫐㫊 㪧㫊㪼㫌㪻㫆㫉㪿㫆㫄㪹㫌㫊 㪧㫊㪼㫌㪻㫆㫉㪿㫆㫄㪹㫌㫊 㪧㫊㪼㫌㪻㫆㫉㪿㫆㫄㪹㫌㫊 㪯㫐㫊㫋㫉㪼㫌㫉㫐㫊
㪧㪸㫉㪸㫃㫀㪺㪿㫋㪿㫐㫀㪻㪸㪼㩷
㪧㫊㪼㫋㫋㪸 㪧㫊㪼㫋㫋㪸 㪧㫊㪼㫋㫋㪸 㪧㫊㪼㫋㫋㪸 㪪㪺㫆㫇㪿㫋㪿㪸㫃㫄㫌㫊
㪿㪼㫉㫑㪼㫅㫊㫋㪼㫀㫅㫀 㫊㫋㪼㫃㫃㪼㫉㫀 㪿㫀㫇㫇㫆㪾㫃㫆㫊㫊㫌㫊 㪹㫀㪺㫆㫃㫆㫉㪸㫋㫌㫊 㪹㫀㪺㫆㫃㫆㫉㪸㫋㫌㫊 㪽㪼㫉㫉㫌㪾㫀㫅㪼㪸
㫊㫇㫀㫃㫆㫇㫋㪼㫉㫌㫊 㫊㫇㫀㫃㫆㫇㫋㪼㫉㫌㫊 㪺㫉㫆㫊㫊㫆㫋㫌㫊 㪺㫉㫆㫊㫊㫆㫋㫌㫊 㫄㪸㪺㫉㫆㫇㫊 㪸㪻㫇㪼㫉㫊㫌㫊 㪻㪼㫅㫋㪸㫋㫌㫊 㫃㪼㫋㪿㫆㫊㫋㫀㪾㫄㪸 㫄㫀㪺㫉㫆㫇㫊 㫆㫃㫀㫍㪸㪺㪼㫌㫊 㫆㫃㫀㫍㪸㪺㪼㫌㫊 㫆㫃㫀㫍㪸㪺㪼㫌㫊 㫆㫉㪹㫀㪾㫅㫐㪸㫅㫌㫊 㫇㪸㫋㪸㪾㫆㫅㫀㪺㫌㫊 㪸㫉㫊㫀㫌㫊 㪺㫀㫅㫅㪸㫄㫆㫅㪼㫌㫊 㫋㫉㫀㫆㪺㪼㫃㫃㪸㫋㫌㫊 㫃㫀㫆㫃㪼㫇㫀㫊
㫄㪸㪼㫆㫋㫀㪺㪸 㫄㪸㪼㫆㫋㫀㪺㪸 㫄㪸㪼㫆㫋㫀㪺㪸 㫄㪸㫏㫀㫄㪸 㫉㪿㫆㫄㪹㫌㫊
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㪹㫆㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷 㪪㫌㪹㫆㫉㪻㪼㫉㩷㪧㫃㪼㫌㫉㫆㫅㪼㪺㫋㫆㫀㪻㪼㫀 㪪㪺㫆㫇㪿㫋㪿㪸㫃㫄㫀㪻㪸㪼
㪚 㪪㪼㫏
㪧㫃㪼㫌㫉㫆㫅㪼㪺㫋㪼㫊
㫇㫀㫅㪼㫋㫆㫉㫌㫄㩷㪿㪼㫉㫑㪼㫅㫊㫋㪼㫀㫅㫀
㪉㪍㩷㪤㪆㪪㪤㩷㪂㩷㪈㪉㩷㪪㪫㪆㪘 㪋㪏㪘 㪉㪤㩷㪂㩷㪋㪋㩷㪪㪫㪆㪘 㪋㪏㪘 㪉㪇㪪㪫㩷㪂㩷㪉㪏㪘 㪉㪤㩷㪂㩷㪋㪋㩷㪪㪫㪆㪘 㪋㪏㪘
㪊㪏 㪊㪏 㪋㪏 㪋㪍 㪋㪏 㪋㪏 㪋㪍 㪋㪏
㪝㪃㩷㪤 㪝㪃㩷㪤
㪈㪋㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪍㪘
㪝
㪤
㩿㪈㪅㪎㩷㪝㪠㪘㪀
㪋㪏
㪋㪏
㪋㪏㪘
㪋㪏㪘
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏 㪈㪅㪌㩷㪝㪠㪘
㩿㪈㪅㪊㪁㩷㪝㪚㪤㪀
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪡㪸㫇㪸㫅㩷㩿㪟㫆㫂㫂㪸㫀㪻㫆㪀
㩿㪜㪅㩷㪧㪸㪺㫀㪽㫀㪺㪀
㪠㫅㪻㫀㪸㩷㩿㪦㫉㫀㫊㫊㪸㪀
㪚㪿㫀㫅㪸
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀 㪠㫅㪻㫀㪸㩷㩿㪦㫉㫀㫊㫊㪸㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪚㪀
㪚㪿㫀㫅㪸
㪡㪸㫇㪸㫅㩷㩿㪰㪸㫄㪸㪾㫌㪺㪿㫀㪀
㪡㪸㫇㪸㫅
㪚㪿㫀㫃㪼㩷㩿㪚㫆㫈㫌㫀㫄㪹㫆㩷㪹㪸㫐㪀
㩿㪮㪅㪥㪅㩷㪘㫋㫃㪸㫅㫋㫀㪺㪀 㪬㪪㪘㩷㩿㪣㪘㪀
㪚㪿㫀㫃㪼㩷㩿㪚㫆㫈㫌㫀㫄㪹㫆㩷㪹㪸㫐㪀
㪚㪿㫀㫃㪼㩷㩿㪚㫆㫈㫌㫀㫄㪹㫆㩷㪹㪸㫐㪀
㪜㪸㫊㫋㩷㪺㫆㪸㫊㫋㩷㫆㪽㩷㪚㪸㫅㪸㪻㪸
㪚㪿㫀㫅㪸㩷㩿㪰㪼㫃㫃㫆㫎㩷㪪㪼㪸㪀
㪡㪸㫇㪸㫅㩷㩿㪟㫆㫂㫂㪸㫀㪻㫆㪀
㪬㪢
㪈㪅㪌㩷㪝㪠㪘
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪍 㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪬㪪㪘㩷㩿㪣㪘㪀 㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪋㪏㪘
㪉
㪈㪅㪍㩷㪝㪛㪃㩷㪈㪅㪌㩷㪙㪝㪘
㪈㪅㪇㩷㪝㪠㪘
㩿㪈㪅㪋㪁㩷㪝㪚㪤㪀
㪘㪚㪥㪔㪋㪋 㪘㪚㪥㪔㪋㪋
㪋㪏㩷㪪㪫㪆㪘
㪋㪏
㪉
㪉
㩿㪉㪅㪇㩷㪙㪝㪘㪀
㪬㪪㪘㩷㩿㪣㪘㪀 㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪍
㪋㪏
㪋㪍
㪋㪏
㪋㪏 㪍㪏
㪋㪏
㪎㪍
㪘㪚㪥㪔㪋㪍 㪘㪚㪥㪔㪊㪏
㪪㫇㪸㫀㫅
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪍 㪋㪍
㪋㪏
㪋㪏
㪋㪍
㪋㪏
㪋㪏
㪋㪏 㪋㪏
㪋㪏
㪋㪏
㪍㪋
㪌㪇
㪘㪚㪥㪔㪋㪋
㪘㪚㪥㪔㪋㪋
㪡㪸㫇㪸㫅㩷㩿㪟㫆㫂㫂㪸㫀㪻㫆㪀
㪋㩷㪪㪤㪆㪪㪫㩷㪂㩷㪋㪇㪘
㪋㪏㪘
㪋㪏 㪋㪋
㪉
㪋㪍
㪋㪋
㪋㪏
㪤
㪋㪏㪘 㪋㪏㪘
㪋㪏 㪋㪏
㪋㪍㪘 㪋㪍㩷㪪㪫㪆㪘
㪋㪏㪘 㪉㪤㩷㪂㩷㪋㪋㩷㪪㪫㪆㪘
㪋㪏 㪋㪍 㪋㪍 㪋㪍
㪋㪍㪘
㪋㪍
㪝
㪝㪃㩷㪤 㪤
㪝
㪊㪏㩷㪤㪆㪪㪤㪆㪪㪫
㪈㪏㩷㪤㪆㪪㪤㩷㪂㩷㪏㩷㪪㪫㪆㪘
㪉㪏 㪉㪍
㪝㪃㩷㪤
㪤
㪉
㪪㫇㪸㫀㫅
㪍㪇
㪋㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪊㪏㩷㪪㪫㪆㪘
㪌㪇
㪋㪤㩷㪂㩷㪈㪉㪪㪫㩷㪂㩷㪉㪏㪘
㪙㫃㪸㪺㫂㩷㪪㪼㪸
㪙㫃㪸㪺㫂㩷㪪㪼㪸
㪢 㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪋㪋
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪋
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪋㪋
㪋㪏
㪝 㪞 㪟 㪠 㪥㪝㪈 㪥㪝㪉 㪘㪾㪄 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㪥㪦㪩㫊 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪙㫃㪸㪺㫂㩷㪪㪼㪸
㪉㪇㪤㩷㪂㩷㪉㪇㩷㪪㪤㪆㪘
㪜 㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪋㪋
㪋㪏
㪋㪇
㪛 㪉㫅
㪝㪃㩷㪤
㪩㪿㫆㫄㪹㫌㫊㩷㫄㪸㪼㫆㫋㫀㪺㫌㫊 㪩㪿㫆㫄㪹㫌㫊㩷㫄㪸㪼㫆㫋㫀㪺㫌㫊 㪩㪿㫆㫄㪹㫌㫊㩷㫄㪸㪼㫆㫋㫀㪺㫌㫊 㪪㪺㫆㫇㪿㫋㪿㪸㫃㫄㫌㫊㩷㫄㪸㫏㫀㫄㫌㫊 㪝㪃㩷㪤
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪫㪸㪹㫃㪼㩷㪍㪅㪋㪈㩷㩷㪦㫉㪻㪼㫉㩷㪧㪣㪜㪬㪩㪦㪥㪜㪚㪫㪠㪝㪦㪩㪤㪜㪪
㪘㪄㪈㪉㪇㪃㩷㪟㪄㪋㪈
㪱㪄㪈㪌㪃㩷㪱㪄㪊㪎㪃㩷㪰㪄㪉㪇
㪝㪄㪌㪊㪃㩷㪪㪄㪈㪋㪉㪃㩷㪦㪄㪋㪏
㪙㪄㪎㪈㪃㩷㪟㪄㪋㪈
㪰㪄㪈
㪝㪄㪌㪊
㪦㪄㪋㪃㩷㪟㪄㪈㪊
㪧㪄㪈㪎
㪰㪄㪉㪇
㪘㪄㪈㪉㪇 㪧㪄㪈㪎㪃㩷㪟㪄㪋㪇
㪘㪄㪈㪉㪇
㪰㪄㪉㪇㪃㩷㪯㪄㪊㪃㩷㪱㪄㪊㪎
㪪㪄㪌
㪢㪄㪋㪏㪃㩷㪦㪄㪋㪏
㪮㪄㪊㪍
㪯㪄㪊 㪣㪄㪈㪎
㪮㪄㪊㪍
㪮㪄㪊㪍
㪘㪄㪈㪉㪇
㪣㪄㪈㪎㪃㩷㪟㪄㪈㪊
㪘㪄㪈㪉㪇
㪣㪄㪈㪎
㪧㪄㪍㪊
㪙㪄㪌㪊㪃㩷㪧㪄㪍㪊㪃㩷㪟㪄㪋㪈
㪭㪄㪎㪉
㪠㪄㪈㪐
㪠㪄㪈㪐
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
209
㪙㫆㫋㪿㫌㫊 㪙㫆㫋㪿㫌㫊 㪙㫆㫋㪿㫌㫊 㪧㫊㪼㫋㫋㫀㫅㪸
㪙㫆㫋㪿㫀㪻㪸㪼
㪣㫀㫄㪸㫅㪻㪸 㪣㫀㫄㪸㫅㪻㪸 㪣㫀㫆㫇㫊㪼㫋㫋㪸 㪤㫀㪺㫉㫆㫊㫋㫆㫄㫌㫊 㪤㫀㪺㫉㫆㫊㫋㫆㫄㫌㫊 㪧㫃㪸㫋㫀㪺㪿㫋㪿㫐㫊 㪧㫃㪸㫋㫀㪺㪿㫋㪿㫐㫊 㪧㫃㪸㫋㫀㪺㪿㫋㪿㫐㫊 㪧㫃㪸㫋㫀㪺㪿㫋㪿㫐㫊 㪧㫃㪼㫌㫉㫆㫅㪼㪺㫋㪼㫊 㪧㫃㪼㫌㫉㫆㫅㪼㪺㫋㪼㫊 㪧㫃㪼㫌㫉㫆㫅㪼㪺㫋㪼㫊 㪧㫃㪼㫌㫉㫆㫅㪼㪺㫋㪼㫊 㪧㫃㪼㫌㫉㫆㫅㪼㪺㫋㪼㫊 㪧㫃㪼㫌㫉㫆㫅㪼㪺㫋㪼㫊 㪧㫃㪼㫌㫉㫆㫅㪼㪺㫋㪼㫊 㪧㫃㪼㫌㫉㫆㫅㪼㪺㫋㪼㫊 㪧㫃㪼㫌㫉㫆㫅㪼㪺㫋㪼㫊 㪧㫃㪼㫌㫉㫆㫅㪼㪺㫋㪼㫊 㪧㫃㪼㫌㫉㫆㫅㪼㪺㫋㪼㫊 㪧㫃㪼㫌㫉㫆㫅㪼㪺㫋㪼㫊 㪧㫃㪼㫌㫉㫆㫅㫀㪺㪿㫋㪿㫐㫊 㪧㫃㪼㫌㫉㫆㫅㫀㪺㪿㫋㪿㫐㫊 㪧㫃㪼㫌㫉㫆㫅㫀㪺㪿㫋㪿㫐㫊 㪧㫊㪼㫌㪻㫆㫇㫃㪼㫌㫉㫆㫅㪼㪺㫋㪼㫊 㪭㪼㫉㪸㫊㫇㪼㫉
㫆㪺㪼㫃㫃㪸㫋㫌㫊 㫇㫆㪻㪸㫊 㫇㫆㪻㪸㫊 㫋㫆㫊㪸㫅㪸
㫃㫀㫄㪸㫅㪻㪸 㫃㫀㫄㪸㫅㪻㪸 㪾㫃㪸㪺㫀㪸㫃㫀㫊 㪸㪺㪿㫅㪼 㪸㪺㪿㫅㪼 㪽㫃㪼㫊㫌㫊 㪽㫃㪼㫊㫌㫊 㪽㫃㪼㫊㫌㫊 㫊㫋㪼㫃㫃㪸㫋㫌㫊 㪿㪼㫉㫑㪼㫅㫊㫋㪼㫀㫅㫀 㫆㪹㫊㪺㫌㫉㫌㫊 㫇㫃㪸㫋㪼㫊㫊㪸 㫇㫃㪸㫋㪼㫊㫊㪸 㫇㫃㪸㫋㪼㫊㫊㪸 㫇㫌㫅㪺㫋㪸㫋㫀㫊㫊㫀㫄㫌㫊 㫇㫌㫋㫅㪸㫄㫀 㫊㪺㪿㫉㪼㫅㫂㫀 㫊㪺㪿㫉㪼㫅㫂㫀 㫐㫆㫂㫆㪿㪸㫄㪸㪼 㫐㫆㫂㫆㪿㪸㫄㪸㪼 㫐㫆㫂㫆㪿㪸㫄㪸㪼 㪺㫆㫉㫅㫌㫋㫌㫊 㪺㫆㫉㫅㫌㫋㫌㫊 㫍㪼㫉㫋㫀㪺㪸㫃㫀㫊 㪸㫄㪼㫉㫀㪺㪸㫅㫌㫊 㫄㫆㫊㪼㫉㫀
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㪹㫆㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷
㪋㪏㪘 㪋㪏㪘 㪈㪤㩷㪂㩷㪋㪎㪘
㪋㪏 㪋㪏 㪋㪎
㪋㪏
㪘㪚㪥㪔㪋㪏
㪡㪸㫇㪸㫅㩷㩿㪟㫆㫂㫂㪸㫀㪻㫆㪀
㪬㪢 㪬㪢
㩿㪬㪢㪀
㪢㫆㫉㪼㪸㩷㩿㪙㫌㫊㪸㫅㪀
㪡㪸㫇㪸㫅㩷㩿㪟㫆㫂㫂㪸㫀㪻㫆㪀
㪈㪉㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪊㪋㪘
㪋㪏
㪈㪉㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪉㪋㪪㪫 㪋㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪊㪉㪘
㪊㪏 㪊㪏 㪋㪋
㪤
㪈㪉㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪉㪋㪪㪫
㪊㪉
㪝
㪈㪏㩷㪤㪆㪪㪤㩷㪂㩷㪈㪋㩷㪪㪫㪆㪘
㪉㩷㪪㪤㪆㪪㪫㩷㪂㩷㪋㪋㪘
㪝
㪋㪍
㪈㪋㪤㩷㪂㩷㪊㪋㪘
㪋㪏
㪝㪃㩷㪤
㪋㪏㪘
㪋㪏
㪋㪏㪘
㪋㪏㪘
㪋㪏
㪋㪏 㪋㪏
㪋㪏㪘
㪋㪏
㪌㪇
㪌㪉
㪌㪉
㪌㪇
㪋㪏
㪍㪉
㪍㪉
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪌㪍
㪋㪏
㪋㪏
㪍㪉
㪍㪉
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪉
㪉 㪈㪅㪈㪁㩷㪝㪚㪤
㪈㪅㪊㩷㪝㪛 㪈㪅㪌㩷㪝㪛㪃㩷㪈㪅㪋㩷㪙㪝㪘
㪈㪅㪈㪁㩷㪝㪚㪤
㪯㪰
㪯㪯
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪡㪸㫇㪸㫅
㪠㫋㪸㫃㫐㩷㩿㪧㪸㫃㪼㫉㫄㫆㪀
㪠㫋㪸㫃㫐㩷㩿㪧㪸㫃㪼㫉㫄㫆㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪡㪸㫇㪸㫅㩷㩿㪟㫆㫂㫂㪸㫀㪻㫆㪀
㩿㪜㪅㩷㪧㪸㪺㫀㪽㫀㪺㪀 㪮㪥㩷㪘㫋㫃㪸㫅㫋㫀㪺
㪚㪿㫀㫅㪸㩷㩿㪪㪿㪸㫅㪻㫆㫅㪾㪀
㪡㪸㫇㪸㫅
㪢㫆㫉㪼㪸㩷㩿㪙㫌㫊㪸㫅㪀
㪚㪿㫀㫅㪸㩷㩿㪪㪿㪸㫅㪻㫆㫅㪾㪀
㪡㪸㫇㪸㫅㩷㩿㪟㫆㫂㫂㪸㫀㪻㫆㪀
㪡㪸㫇㪸㫅㩷㩿㪟㫆㫂㫂㪸㫀㪻㫆㪀
㪋㪏㪘
㪈㪅㪊㪁㩷㪝㪚㪤
㪘㪚㪥㪔㪋㪏 㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪪㫇㪸㫀㫅 㪡㪸㫇㪸㫅㩷㩿㪟㫆㫂㫂㪸㫀㪻㫆㪀
㪋㪏
㪉
㪈㪅㪉㩷㪝㪚㪤
㪘㪚㪥㪔㪋㪏 㪘㪚㪥㪔㪋㪏
㪚㪿㫀㫅㪸 㪩㫌㫊㫊㫀㪸㩷㩿㪮㪿㫀㫋㪼㩷㪪㪼㪸㪀 㪞㪼㫉㫄㪸㫅㫐㩷㩿㪙㪸㫃㫋㫀㪺㩷㪪㪼㪸㪀
㪡㪸㫇㪸㫅㩷㩿㪟㫆㫂㫂㪸㫀㪻㫆㪀
㪋㪏
㪉 㪉
㪩㫌㫊㫊㫀㪸㩷㩿㪮㪿㫀㫋㪼㩷㪪㪼㪸㪀 㪡㪸㫇㪸㫅㩷㩿㪟㫆㫂㫂㪸㫀㪻㫆㪀
㪋㪏㪘
㪋㪏
㪋㪏 㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏 㪋㪏
㪘㪚㪥㪔㪋㪏
㪋㪏
㪋㪏
㪋㪏 㪋㪏
㪩㫌㫊㫊㫀㪸㩷㩿㪮㪿㫀㫋㪼㩷㪪㪼㪸㪀
㪜㫌㫉㫆㫇㪼㩷㩿㪠㫉㫀㫊㪿㩷㪪㪼㪸㪀
㪢 㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪮㪥㩷㪘㫋㫃㪸㫅㫋㫀㪺
㪋㪏
㪋㪏 㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏
㪋㪏 㪋㪏
㪋㪏
㪋㪏
㪘㪚㪥㪔㪋㪍
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪋㪏
㪋㪏㪘
㪋㪏㪘
㪋㪏
㪋㪏
㪋㪏㪘
㪋㪏
㪋㪏㪘 㪋㪏㪘
㪋㪏 㪋㪏
㪋㪏㪘 㪋㪏㪘 㪋㪏㪘
㪋㪏 㪋㪏 㪋㪏
㪋㪏㪘 㪋㪏㪘
㪋㪏 㪋㪏
㪋㪏
㪋㪍
㪝 㪞 㪟 㪠 㪥㪝㪈 㪥㪝㪉 㪘㪾㪄 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㪥㪦㪩㫊 㩿㫇㪾㪆㪺㪼㫃㫃㪀 㪋㪍
㪋㪍㩷㪪㪫㪆㪘
㪜 㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪋㪍
㪋㪍
㪛 㪉㫅
㪤
㪤
㪣㫀㫄㪸㫅㪻㪸 㪣㫀㫆㫇㫊㪼㫋㫋㪸 㪣㫀㫄㪸㫅㪻㪸
㪣㫀㫄㪸㫅㪻㪸 㪧㫊㪼㫌㪻㫆㫇㫃㪼㫌㫉㫆㫅㪼㪺㫋㪼㫊
㪝㪃㩷㪤
㪝㪃㩷㪤
㪚 㪪㪼㫏
㪣㫀㫄㪸㫅㪻㪸
㪧㫃㪼㫌㫉㫆㫅㪼㪺㫋㪼㫊
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪫㪸㪹㫃㪼㩷㪍㪅㪋㪈㩷㩷㪦㫉㪻㪼㫉㩷㪧㪣㪜㪬㪩㪦㪥㪜㪚㪫㪠㪝㪦㪩㪤㪜㪪㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㪪㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀
㪛㪄㪈㪇
㪦㪄㪋㪏
㪭㪄㪈㪇㪇
㪭㪄㪈㪇㪇
㪘㪄㪈㪉㪇
㪝㪄㪌㪊
㪦㪄㪋 㪙㪄㪎㪈㪃㩷㪟㪄㪈㪊
㪰㪄㪉㪇
㪦㪄㪋㪏
㪧㪄㪎㪇
㪰㪄㪉㪇
㪝㪄㪌㪊㪃㩷㪦㪄㪋㪏
㪪㪄㪈㪋㪉
㪝㪄㪌㪊
㪙㪄㪎㪈
㪝㪄㪌㪊
㪝㪄㪋 㪝㪄㪋
㪙㪄㪍
㪢㪄㪈㪉㪌
㪝㪄㪌㪊
㪝㪄㪌㪊㪃㩷㪪㪄㪈㪋㪉
㪧㪄㪍㪊
㪣㪄㪏㪎 㪢㪄㪈㪊㪉
㪰㪄㪉㪇
㪝㪄㪌㪊
㪣㪄㪏㪎㪃㩷㪣㪄㪏㪏
㪣㪄㪏㪏
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
210
㪚㫐㫅㫆㪾㫃㫆㫊㫊㫀㪻㪸㪼㩷
㪚㫐㫅㫆㪾㫃㫆㫊㫊㫌㫊 㪚㫐㫅㫆㪾㫃㫆㫊㫊㫌㫊 㪚㫐㫅㫆㪾㫃㫆㫊㫊㫌㫊 㪚㫐㫅㫆㪾㫃㫆㫊㫊㫌㫊 㪧㪸㫉㪸㫇㫃㪸㪾㫌㫊㫀㪸 㪧㪸㫉㪸㫇㫃㪸㪾㫌㫊㫀㪸 㪪㫐㫄㫇㪿㫌㫉㫌㫊 㪪㫐㫄㫇㪿㫌㫉㫌㫊 㪪㫐㫄㫇㪿㫌㫉㫌㫊
㫀㫅㫋㪼㫉㫉㫌㫇㫋㫌㫊 㫇㫌㫅㪺㫋㫀㪺㪼㫇㫊 㫊㪼㫄㫀㫃㪸㪼㫍㫀㫊 㫊㪼㫄㫀㫃㪸㪼㫍㫀㫊 㪹㫀㫃㫀㫅㪼㪸㫋㪸 㫁㪸㫇㫆㫅㫀㪺㪸 㫇㫃㪸㪾㫌㫊㫀㪸 㫇㫃㪸㪾㫌㫊㫀㪸 㫋㪼㫊㫊㪼㫃㫃㪸㫋㪼㫊
㫆㪺㫌㫃㫌㫊 㫆㪺㪼㫃㫃㪸㫋㫌㫊 㫃㪸㫊㪺㪸㫉㫀㫊 㫃㪸㫊㪺㪸㫉㫀㫊 㫃㫌㫋㪼㪸 㫊㪼㫅㪼㪾㪸㫃㪼㫅㫊㫀㫊 㫊㫆㫃㪼㪸 㫊㫆㫃㪼㪸 㫊㫆㫃㪼㪸 㫑㪼㪹㫉㪸
㪟㪼㫋㪼㫉㫆㫄㫐㪺㫋㪼㫉㫀㫊 㪤㫀㪺㫉㫆㪺㪿㫀㫉㫌㫊 㪧㪼㪾㫌㫊㪸 㪧㪼㪾㫌㫊㪸 㪪㫆㫃㪼㪸 㪪㫆㫃㪼㪸 㪪㫆㫃㪼㪸 㪪㫆㫃㪼㪸 㪪㫆㫃㪼㪸 㪱㪼㪹㫉㫀㪸㫊
㪪㫆㫃㪼㫀㪻㪸㪼㩷
㫊㫇㪅
㪻㪼㪺㫃㫀㫍㫀㫊 㫃㫀㫅㪼㪸㫋㫌㫊 㫃㫀㫅㪼㪸㫋㫌㫊 㫁㪼㫅㫐㫅㫊㫀 㫁㪼㫅㫐㫅㫊㫀 㫅㫌㪻㫌㫊 㫄㪼㫅㫋㪸㫃㫀㫊 㫄㪸㪺㫌㫃㪸㫋㫌㫊 㫇㪸㫌㫃㫀㫊㫋㪸㫅㫌㫊
㪘㪺㪿㫀㫉㫌㫊 㪘㪺㪿㫀㫉㫌㫊 㪘㪺㪿㫀㫉㫌㫊 㪚㪸㫋㪸㫋㪿㫐㫉㫀㪻㫀㫌㫄 㪚㪸㫋㪸㫋㪿㫐㫉㫀㪻㫀㫌㫄 㪞㫐㫄㫅㪸㪺㪿㫀㫉㫌㫊 㪟㫐㫇㫆㪺㫃㫀㫅㪼㫄㫌㫊 㪫㫉㫀㫅㪼㪺㫋㪼㫊 㪫㫉㫀㫅㪼㪺㫋㪼㫊 㪫㫉㫀㫅㪼㪺㫋㪼㫊
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㪹㫆㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷 㪘㪺㪿㫀㫉㫀㪻㪸㪼
㪪㫆㫃㪼㪸㩷㫃㪸㫊㪺㪸㫉㫀㫊㩷㫅㪸㫊㫌㫋㪸 㪪㫆㫃㪼㪸
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪫㪸㪹㫃㪼㩷㪍㪅㪋㪈㩷㩷㪦㫉㪻㪼㫉㩷㪧㪣㪜㪬㪩㪦㪥㪜㪚㪫㪠㪝㪦㪩㪤㪜㪪㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㪪㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀
㪋㪇 㪋㪇 㪋㪇 㪊㪍 㪊㪏 㪋㪇 㪋㪉
㪝㪃㩷㪤 㪝㪃㩷㪤 㪝㪃㩷㪤 㪝㪃㩷㪤 㪝㪃㩷㪤 㪝
㪜 㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪋㪉㪘 㪋㪉㪘
㪊㪐 㪋㪉 㪋㪉 㪊㪏 㪊㪏 㪋㪍 㪋㪌 㪋㪍
㪝 㪤 㪝㪃㩷㪤 㪝 㪝 㪤 㪝㪃㩷㪤
㪈㪍㩷㪤㪆㪪㪤㩷㪂㩷㪊㪇㩷㪪㪫㪆㪘
㪈㪎㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪉㪇㪘
㪈㪏㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪉㪇㪘
㪍㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪊㪇㪘
㪋㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪊㪉㪘
㪈㪤㩷㪂㩷㪊㪏㪘
㪊㪋
㪝
㪊㪋㪘
㪋㪍㪘
㪋㪍
㪍㪉
㪍㪏
㪎㪇
㪋㪋
㪋㪉
㪋㪉
㪋㪉
㪋㪇
㪊㪋
㪋㪍
㪎㪇
㪎㪉
㪋㪍
㪋㪋
㪋㪉
㪋㪉
㪋㪇
㪊㪋
㪋㪍
㪍㪇
㪍㪇 㪉 㪈㪅㪌㩷㪝㪚㪤
㪈㪅㪊㩷㪙㪝㪘
㪉
㪈㪅㪌㪁㩷㪝㪚㪤
㪈㪅㪉㩷㪝㪠㪘
㪘㪚㪥㪔㪋㪍
㪯㪦
㪯㪯㪃㩷㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪉
㪘㪚㪥㪔㪋㪉
㪱㪱㪃㩷㪘㪚㪥㪔㪋㪉
㪱㪮
㪘㪚㪥㪔㪋㪇
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪋
㪘㪚㪥㪔㪋㪍㪖
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪍
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪬㪪㪘㩷㩿㪣㪘㪀
㪬㪪㪘㩷㩿㪣㪘㪀
㪡㪸㫇㪸㫅㩷㩿㪰㪸㫄㪸㪾㫌㪺㪿㫀㪀
㪠㫅㪻㫀㪸㩷㩿㪦㫉㫀㫊㫊㪸㪀
㪚㪿㫀㫅㪸㩷㩿㪪㪿㪸㫅㪻㫆㫅㪾㪀
㪚㪿㫀㫅㪸㩷㩿㪪㪿㪸㫅㪻㫆㫅㪾㪀
㪠㫅㪻㫀㪸㩷㩿㪦㫉㫀㫊㫊㪸㪀
㪡㪸㫇㪸㫅㩷㩿㪰㪸㫄㪸㪾㫌㪺㪿㫀㪀
㪜㪅㩷㪚㪿㫀㫅㪸㩷㪪㪼㪸
㪠㫋㪸㫃㫐㩷㩿㪞㫌㫃㪽㩷㫆㪽㩷㪭㪼㫅㫀㪺㪼㪀
㪪㫇㪸㫀㫅
㪚㫉㫆㪸㫋㫀㪸 㪪㫇㪸㫀㫅
㪪㫇㪸㫀㫅
㪙㫃㪸㪺㫂㩷㪪㪼㪸
㪠㫋㪸㫃㫐㩷㩿㪧㪸㫃㪼㫉㫄㫆㪀
㪠㫅㪻㫀㪸㩷㩿㪦㫉㫀㫊㫊㪸㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪘㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪬㪪㪘㩷㩿㪣㪘㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪘㪺㫉㪼㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪩㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀 㪘㫉㪾㪼㫅㫋㫀㫅㪸
㪬㪪㪘㩷㩿㪣㪘㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪧㪘㪀
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
㪪㪄㪏㪍 㪭㪄㪉㪐
㪧㪄㪍㪊
㪭㪄㪌
㪘㪄㪈㪉㪇
㪧㪄㪈㪎
㪘㪄㪈㪉㪈
㪘㪄㪈㪉㪈
㪣㪄㪈㪎㪃㩷㪟㪄㪈㪊
㪘㪄㪈㪉㪈
㪘㪄㪈㪉㪈
㪘㪄㪈㪉㪈
㪘㪄㪈㪉㪈 㪝㪄㪉㪇
㪣㪄㪈㪎
㪘㪄㪈㪉㪈
㪘㪄㪈㪉㪇
㪣㪄㪈㪎
㪣㪄㪈㪎
㪪㪄㪌㪃㩷㪦㪄㪋㪏
㪧㪄㪈㪎㪃㩷㪟㪄㪋㪇
㪱㪄㪊㪌
㪱㪄㪊㪌
㪧㪄㪈㪎
㪪㪄㪌
㪝㪄㪌㪊
㪣㪄㪏㪊
㪧㪄㪍㪊
㪏㪤㩷㪂㩷㪈㪇㩷㪪㪤㪆㪪㪫㩷㪂㩷㪉㪋㪘
㪋㪉
㪌㪏㪄㪍㪇
㪋㪋 㪌㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪢 㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪙㪄㪍 㪏㪤㩷㪂㩷㪏㪄㪈㪇㩷㪪㪤㩷㪂㩷㪉㪍㪄㪉㪋㩷㪘
㪈㪋㩷㪤㪆㪪㪤㩷㪂㩷㪈㪍㩷㪪㪫㪆㪘 㪍㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪏㪪㪫㩷㪂㩷㪉㪋㪘
㪊㪇 㪋㪉
㪌㪇 㪌㪏㪄㪍㪇
㪌㪋
㪌㪇
㪌㪇
㪍㪋
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪋㪉
㪏㪤㩷㪂㩷㪏㪄㪈㪇㩷㪪㪤㩷㪂㩷㪉㪍㪄㪉㪋㩷㪘
㪋㪉
㪌㪍
㪌㪉
㪌㪋
㪌㪉
㪋㪏
㪌㪋
㪌㪇
㪌㪇
㪍㪍 㪌㪇
㪋㪏
㪌㪉
㪝 㪞 㪟 㪠 㪥㪝㪈 㪥㪝㪉 㪘㪾㪄 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㪥㪦㪩㫊 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪋㪉
㪉㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪊㪋㩷㪪㪫㪆㪘
㪋㪉
㪋㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪋㪉㪘 㪈㪋㩷㪤㪆㪪㪤㩷㪂㩷㪉㪏㩷㪪㪫㪆㪘
㪋㪏 㪋㪉
㪈㪍㩷㪤㪆㪪㪤㩷㪂㩷㪉㪉㩷㪪㪫㪆㪘
㪈㪇㩷㪤㪆㪪㪤㩷㪂㩷㪊㪉㩷㪪㪫㪆㪘
㪍㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪊㪇㪘
㪈㪍㩷㪤㪆㪪㪤㩷㪂㩷㪉㪉㩷㪪㪫㪆㪘
㪈㪋㩷㪤㪆㪪㪤㩷㪂㩷㪉㪉㩷㪪㪫㪆㪘
㪈㪇㩷㪤㪆㪪㪤㩷㪂㩷㪊㪇㩷㪪㪫㪆㪘
㪉㪍㩷㪤㪆㪪㪤㩷㪂㩷㪈㪋㩷㪪㪫㪆㪘 㪈㪇㪤㩷㪂㩷㪊㪇㪘
㪍㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪈㪍㪪㪫㩷㪂㩷㪈㪍㪘
㪈㪏㩷㪤㪆㪪㪤㩷㪂㩷㪈㪍㩷㪪㪫㪆㪘
㪝
㪝㪃㩷㪤
㪝㪃㩷㪤
㪊㪏
㪋㪇
㪝㪃㩷㪤
㪊㪋
㪤
㪛 㪉㫅
㪝㪃㩷㪤
㪚 㪪㪼㫏
211
㫇㫀㫊㪺㪸㫋㫆㫉㫀㫌㫊
㫅㫌㫄㫄㫀㪽㪼㫉 㪿㫀㫊㫋㫉㫀㫆
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㫌㫅㪻㫌㫃㪸㫋㫌㫊 㪺㪸㫇㫉㫀㫊㪺㫌㫊 㪺㪸㫇㫉㫀㫊㪺㫌㫊 㫍㪼㫋㫌㫃㪸 㪺㫆㫅㫊㫇㫀㪺㫀㫃㫃㫌㫊 㫍㫀㫉㫀㪻㪼㫊㪺㪼㫅㫊 㫅㫀㪾㪼㫉 㫍㫀㪻㫌㪸 㫅㫀㪾㪼㫉 㪽㫃㪸㫍㫀㫄㪸㫉㪾㫀㫅㪸㫋㫌㫊 㪸㪺㫌㫃㪼㪸㫋㫌㫊 㪼㪺㪿㪸㫉㫇㪼 㫍㪼㫉㫉㫌㪺㫆㫊㫌㫊 㪺㪿㫉㫐㫊㫆㫇㫋㪼㫉㫌㫊 㪽㫉㪸㪼㫅㪸㫋㫌㫊
㪙㪸㫃㫀㫊㫋㪸㫇㫌㫊 㪙㪸㫃㫀㫊㫋㪼㫊 㪙㪸㫃㫀㫊㫋㪼㫊 㪙㪸㫃㫀㫊㫋㪼㫊 㪙㪸㫃㫀㫊㫋㫆㫀㪻㪼㫊 㪙㪸㫃㫀㫊㫋㫆㫀㪻㪼㫊 㪤㪼㫃㫀㪺㪿㫋㪿㫐㫊 㪤㪼㫃㫀㪺㪿㫋㪿㫐㫊 㪦㪻㫆㫅㫌㫊 㪧㫊㪼㫌㪻㫆㪹㪸㫃㫀㫊㫋㪼㫊 㪩㪿㫀㫅㪼㪺㪸㫅㫋㪿㫌㫊 㪩㪿㫀㫅㪼㪺㪸㫅㫋㪿㫌㫊 㪩㪿㫀㫅㪼㪺㪸㫅㫋㪿㫌㫊 㪪㫌㪽㪽㫃㪸㫄㪼㫅 㪪㫌㪽㪽㫃㪸㫄㪼㫅
㪙㪸㫃㫀㫊㫋㫀㪻㪸㪼㩷
㪹㫀㪸㪺㫌㫃㪼㪸㫋㫌㫊 㪹㫀㪸㪺㫌㫃㪼㪸㫋㫌㫊 㪹㫀㪸㪺㫌㫃㪼㪸㫋㫌㫊 㫊㫋㫉㫀㪾㫀㫃㫀㪽㪼㫉
㪫㫉㫀㪸㪺㪸㫅㫋㪿㫌㫊 㪫㫉㫀㪸㪺㪸㫅㫋㪿㫌㫊 㪫㫉㫀㪸㪺㪸㫅㫋㪿㫌㫊 㪧㫊㪼㫌㪻㫆㫋㫉㫀㪸㪺㪸㫅㫋㪿㫌㫊
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㪹㫆㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷 㪪㫌㪹㫆㫉㪻㪼㫉㩷㪙㪸㫃㫀㫊㫋㫆㫀㪻㪼㫀 㪫㫉㫀㪸㪺㪸㫅㫋㪿㫀㪻㪸㪼㩷
㪟㪼㫄㫀㪹㪸㫃㫀㫊㫋㪼㫊
㪺㪸㫉㫆㫃㫀㫅㪼㫅㫊㫀㫊 㪺㪸㫉㫆㫃㫀㫅㪼㫅㫊㫀㫊
㪹㫉㪼㫍㫀㫉㫆㫊㫋㫉㫀㫊 㪫㫉㫀㪺㪸㫅㫋㪿㫌㫊㩷㪹㫉㪼㫍㫀㫉㫆㫊㫋㫉㫀㫊 㪫㫉㫀㪸㪺㪸㫅㫋㪿㫌㫊
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪫㪸㪹㫃㪼㩷㪍㪅㪋㪊㩷㩷㪦㫉㪻㪼㫉㩷㪫㪜㪫㪩㪘㪦㪛㪦㪥㪫㪠㪝㪦㪩㪤㪜㪪
㪣㫆㫇㪿㫀㫌㫊
㪣㫆㫇㪿㫀㫀㪻㪸㪼㩷
㪘㫅㫋㪼㫅㫅㪸㫉㫀㫌㫊 㪟㫀㫊㫋㫉㫀㫆
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪝㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷 㪘㫅㫋㪼㫅㫅㪸㫉㫀㫀㪻㪸㪼㩷
㪫㪸㪹㫃㪼㩷㪍㪅㪋㪉㩷㩷㪦㫉㪻㪼㫉㩷㪣㪦㪧㪟㪠㪠㪝㪦㪩㪤㪜㪪
㪝
㪤 㪉㪤㩷㪂㩷㪋㪉㩷㪪㪫㪆㪘 㪋㪋㪘 㪋㪋㩷㪪㪫㪆㪘 㪋㪋㪘
㪋㪋 㪋㪋 㪋㪋 㪋㪋
㪋㪍㪘 㪋㪍㪘
㪋㪉㩷㪪㪫㪆㪘
㪋㪉
㪋㪍 㪋㪍
㪉㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪋㪇㩷㪪㪫㪆㪘 㪋㪇㪘 㪋㪇㩷㪪㪫㪆㪘
㪋㪋 㪋㪇 㪋㪇
㪋㪍 㪋㪍
㪋㪋
㪋㪋
㪋㪋
㪋㪍
㪋㪉
㪋㪇 㪋㪇
㪋㪏
㪋㪋
㪋㪋
㪋㪋
㪋㪉
㪋㪏 㪋㪏
㪋㪐
㪌㪇
㪋㪋
㪋㪋㪘
㪉
㪋㪍 㪋㪍
㪋㪋
㪋㪋
㪋㪇
㪋㪋
㪋㪋
㪋㪋
㪋㪋
㪋㪉
㪋㪏 㪋㪏
㪋㪐
㪌㪋
㪉
㪉
㪉
㪉
㪉
㪉 㪉
㪉
㪉
㪉
㪉
㪉
㪉
㪈㪅㪉㩷㪝㪠㪘 㪈㪅㪊㩷㪝㪠㪘
㪈㪅㪊㩷㪝㪠㪘
㪈㪅㪋㩷㪝㪚㪤
㪈㪅㪋㪁㩷㪝㪚㪤
㩿㪈㪅㪈㩷㪝㪛㪀
㪈㪅㪌㪁㩷㪝㪚㪤㪃㩷㪈㪅㪊㩷㪝㪠㪘
㪝 㪞 㪟 㪠 㪥㪝㪈 㪥㪝㪉 㪘㪾㪄 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㪥㪦㪩㫊 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪍㪇
㪋㪍
㪍㪋
㪝 㪞 㪟 㪠 㪥㪝㪈 㪥㪝㪉 㪘㪾㪄 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㪥㪦㪩㫊 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪋㪋㪘
㪋㪋 㪋㪋
㪋㪋
㪝㪃㩷㪤 㪝
㪋㪋㪘
㪋㪋
㪋㪋㪘
㪋㪉㪘
㪋㪏㪘 㪋㪏㪘
㪈㪤㩷㪂㩷㪋㪎㪘
㪉㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪋㪉㪘
㪜 㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪈㪋㩷㪤㪆㪪㪤㩷㪂㩷㪊㪉㩷㪪㪫㪆㪘
㪝㪃㩷㪤
㪋㪉
㪋㪏 㪋㪏
㪝㪃㩷㪤 㪤
㪝
㪋㪏
㪋㪏
㪛 㪉㫅
㪋㪍
㪈㪍㩷㪤㪆㪪㪤㩷㪂㩷㪊㪉㩷㪪㪫㪆㪘 㪋㪍㩷㪪㪫㪆㪘
㪋㪏
㪜 㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪋㪍
㪛 㪉㫅
㪤
㪚 㪪㪼㫏
㪝㪃㩷㪤
㪚 㪪㪼㫏
㪙㫉㪸㫑㫀㫃㩷㩿㪙㪸㪿㫀㪸㪀 㩷
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪍 㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪋
㪘㪚㪥㪔㪋㪉
㪢㪄㪎㪈
㪡㪸㫇㪸㫅㩷㩿㪰㪸㫂㫌㫊㪿㫀㫄㪸㪀 㪡㪸㫇㪸㫅㩷㩿㪦㫂㫀㫅㪸㫎㪸㪀
㪡㪸㫇㪸㫅㩷㩿㪫㪸㫅㪼㪾㪸㫊㪿㫀㫄㪸㪀
㩿㪠㫅㪻㫆㪄㪮㪼㫊㫋㩷㪧㪸㪺㫀㪽㫀㪺㪀
㪡㪸㫇㪸㫅㩷㩿㪦㫂㫀㫅㪸㫎㪸㪀
㪘㪄㪍㪋㪃㩷㪟㪄㪋㪇 㪫㪄㪐㪃㩷㪟㪄㪋㪈
㪘㪄㪍㪋㪃㩷㪢㪄㪎㪈㪃㩷㪫㪄㪐
㪢㪄㪎㪈㪃㩷㪫㪄㪐
㪘㪄㪍㪋㪃㩷㪢㪄㪎㪈㪃㩷㪫㪄㪐㪃㩷㪟㪄㪋㪇
㪡㪸㫇㪸㫅㩷㩿㪰㪸㫂㫌㩷㪸㫅㪻㩷㪫㪸㫅㪼㪾㪸㩷㪠㫊㪀 㪘㪄㪍㪋
㩿㪠㫅㪻㫆㪄㪮㪼㫊㫋㩷㪧㪸㪺㫀㪽㫀㪺㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪸㫀㫅㫋㩷㪧㪸㫌㫃㫊㩷㪩㫆㪺㫂㫊㪀 㩷 㪪㪄㪈㪈㪇㪃㩷㪙㪄㪎㪌 㩿㪠㫅㪻㫆㪄㪮㪼㫊㫋㩷㪧㪸㪺㫀㪽㫀㪺㪀 㪢㪄㪎㪈
㪫㪄㪈㪇㪃㩷㪦㪄㪋㪏
㩿㪠㫅㪻㫆㪄㪮㪼㫊㫋㩷㪧㪸㪺㫀㪽㫀㪺㪀 㪘㪚㪥㪔㪋㪉
㪫㪄㪐
㪪㪄㪈㪈㪇
㪫㪄㪊㪏
㪭㪄㪌㪎㪃 㪭㪄㪍㪌㪃㩷㪤㪄㪈㪊㪊
㪫㪄㪐㪃㩷㪦㪄㪋㪏㪃㩷㪟㪄㪋㪈
㪩㪄㪌㪎 㪩㪄㪋㪌
㪚㪄㪍㪉
㪠㪄㪉㪈
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
㪭㪄㪌㪎㪃㩷㪭㪄㪍㪌
㪘㪄㪍㪐
㪘㪄㪍㪐
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
㪘㪚㪥㪔㪋㪍
㪡㪸㫇㪸㫅㩷㩿㪦㫂㫀㫅㪸㫎㪸㪀
㪪㫇㪸㫀㫅㩷㩿㪤㪸㫃㪸㪾㪸㪀
㪘㪚㪥㪔㪋㪍 㪘㪚㪥㪔㪋㪍
㪠㫋㪸㫃㫐㩷㩿㪧㪸㫃㪼㫉㫄㫆㪀
㪡㪸㫇㪸㫅㩷㩿㪦㫂㫀㫅㪸㫎㪸㪀
㪠㫅㪻㫀㪸㩷㩿㪦㫉㫀㫊㫊㪸㪀 㪠㫅㪻㫀㪸㩷㩿㪞㫆㪸㪀
㪠㫅㪻㫀㪸㩷㩿㪦㫉㫀㫊㫊㪸㪀
㪡㪸㫇㪸㫅
㪢 㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪠㫋㪸㫃㫐㩷䋨㪧㪸㫃㪼㫉㫄㫆䋩
㪡㪸㫇㪸㫅㩷䋨㪢㪸㫅㪸㪾㪸㫎㪸䋩
㪡㪸㫇㪸㫅㩷䋨㪚㪿㫀㪹㪸䋩
㪢 㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪏
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪏
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
212
㪺㫆㫉㫅㫌㫋㪸 㪻㫀㪸㫇㪿㪸㫅㪸 㪻㫀㪸㫇㪿㪸㫅㪸 㪽㫆㫉㫅㪸㫊㫀㫅㫀 㪺㫌㪹㫀㪺㫌㫊 㫀㫄㫄㪸㪺㫌㫃㪸㫋㫌㫊
㫄㪸㪺㫉㫆㪺㪼㫉㫌㫊 㫇㪸㫉㪻㪸㫃㫀㫊 㫊㪺㪸㪹㪼㫉 㫃㫆㫅㪾㫀㫉㫆㫊㫋㫉㫀㫊 㫁㪸㫇㫆㫅㫀㪺㫌㫊 㫁㪸㫇㫆㫅㫀㪺㫌㫊 㪼㫉㪺㫆㪻㪼㫊 㪺㫀㫉㫉㪿㫀㪽㪼㫉 㪺㫀㫉㫉㪿㫀㪽㪼㫉 㪺㫀㫉㫉㪿㫀㪽㪼㫉 㪺㫀㫉㫉㪿㫀㪽㪼㫉 㪿㫀㫊㫇㫀㪻㫌㫊 㪿㫀㫊㫇㫀㪻㫌㫊 㫄㫆㪻㪼㫊㫋㫌㫊 㫊㪼㫇㫋㪼㫅㫋㫉㫀㫆㫅㪸㫃㫀㫊
㪘㫉㫆㫋㪿㫉㫆㫅 㪘㫉㫆㫋㪿㫉㫆㫅 㪘㫉㫆㫋㪿㫉㫆㫅 㪘㫉㫆㫋㪿㫉㫆㫅 㪘㫉㫆㫋㪿㫉㫆㫅 㪘㫉㫆㫋㪿㫉㫆㫅 㪚㪸㫅㫋㪿㫀㪾㪸㫊㫋㪼㫉 㪚㪸㫅㫋㪿㫀㪾㪸㫊㫋㪼㫉
㪿㫀㫊㫇㫀㪻㫌㫊 㫀㫄㫄㪸㪺㫌㫃㪸㫋㫌㫊 㫄㪸㫅㫀㫃㪼㫅㫊㫀㫊 㫄㪼㫃㪼㪸㪾㫉㫀㫊 㫅㫀㪾㫉㫆㫇㫌㫅㪺㫋㪸㫋㫌㫊 㫉㪼㫋㫀㪺㫌㫃㪸㫉㫀㫊 㪺㫆㫉㫆㫅㪸㫋㪸 㫉㫀㫍㫌㫃㪸㫋㪸
㪪㫌㪹㫆㫉㪻㪼㫉㩷㪫㪼㫋㫉㪸㫆㪻㫆㫅㫋㫆㫀㪻㪼㫀 㪫㪼㫋㫉㪸㫆㪻㫆㫅㫋㫀㪻㪸㪼㩷
㪣㪸㪺㫋㫆㫉㫀㪸 㪣㪸㪺㫋㫆㫉㫀㪸 㪣㪸㪺㫋㫆㫉㫀㪸 㪣㪸㪺㫋㫆㫉㫀㪸 㪦㫊㫋㫉㪸㪺㫀㫆㫅 㪦㫊㫋㫉㪸㪺㫀㫆㫅
㪦㫊㫋㫉㪸㪺㫀㫀㪻㪸㪼㩷
㪚㪸㫅㫋㪿㪼㫉㪿㫀㫅㪼㫊 㪚㪸㫅㫋㪿㪼㫉㪿㫀㫅㪼㫊 㪤㪼㫌㫊㪺㪿㪼㫅㫀㪸 㪦㫏㫐㫄㫆㫅㪸㪺㪸㫅㫋㪿㫌㫊 㪧㪸㫉㪸㫄㫆㫅㪸㪺㪸㫅㫋㪿㫌㫊 㪧㪸㫉㪸㫄㫆㫅㪸㪺㪸㫅㫋㪿㫌㫊 㪩㫌㪻㪸㫉㫀㫌㫊 㪪㫋㪼㫇㪿㪸㫅㫆㫃㪼㫇㫀㫊 㪪㫋㪼㫇㪿㪸㫅㫆㫃㪼㫇㫀㫊 㪪㫋㪼㫇㪿㪸㫅㫆㫃㪼㫇㫀㫊 㪪㫋㪼㫇㪿㪸㫅㫆㫃㪼㫇㫀㫊 㪪㫋㪼㫇㪿㪸㫅㫆㫃㪼㫇㫀㫊 㪪㫋㪼㫇㪿㪸㫅㫆㫃㪼㫇㫀㫊 㪫㪿㪸㫄㫅㪸㪺㫆㫅㫌㫊 㪫㪿㪸㫄㫅㪸㪺㫆㫅㫌㫊
㪤㫆㫅㪸㪺㪸㫅㫋㪿㫀㪻㪸㪼㩷
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㪹㫆㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷
㪚 㪪㪼㫏
㪈㪉㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪈㪍㩷㪪㪫㪆㪘 㪍㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪉㪇㩷㪪㪫㪆㪘 㪋㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪈㪇㪪㪫㩷㪂㩷㪈㪋㪘
㪉㪏 㪊㪋
㪈㪋㪤㩷㪂㩷㪉㪇㪪㪤㩷㪂㩷㪋㪪㪫
㪈㪋㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪈㪉㪪㪫
㪋㪉
㪊㪏
㪋㪉
㪫㪼㫋㫉㪸㫆㪻㫆㫅 㪤
㪈㪉㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪈㪍㩷㪪㪫㪆㪘 㪋㪪㪤㩷㪂㩷㪋㪍㩷㪪㪫㪆㪘 㪋㪪㪤㩷㪂㩷㪋㪍㩷㪪㪫㪆㪘
㪊㪋 㪌㪇 㪌㪇
㪈㪉㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪈㪍㩷㪪㪫㪆㪘
㪈㪇㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪉㪋㩷㪪㪫㪆㪘
㪊㪍
㪋㪉
㪋㪤㩷㪂㩷㪋㪋㪘
㪋㪉 㪊㪏
㪝㪃㩷㪤
㪉㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪋㪋㪪㪫
㪋㪏
㪋㪇㪘
㪋㪇㩷㪪㪫㪆㪘
㪋㪏
㪋㪇
㪋㪇
㪊㪊
㪝㪃㩷㪤
㪊㪋㪘
㪊㪋
㪝 㪤
㪈㪤㩷㪂㩷㪊㪉㪘
㪈㪤㩷㪂㩷㪊㪉㪘 㪈㪤㩷㪂㩷㪊㪉㪘
㪊㪊 㪊㪊
㪤
㪊㪋㪘
㪊㪋 㪊㪋㪘
㪊㪍 㪊㪋
㪊㪍㪘
㪊㪋
㪝
㪊㪋㪘
㪊㪋
㪝 㪤
㪊㪋㪘
㪋㪇㪘 㪊㪍㪘
㪋㪇 㪊㪍
㪋㪇㪘 㪋㪇㩷㪪㪫㪆㪘
㪜 㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪋㪇
㪋㪇
㪛 㪉㫅
㪫㪼㫋㫉㪸㫆㪻㫆㫅㩷㫀㫄㫄㪸㪺㫌㫃㪸㫋㫌㫊
㫋㫌㪹㪼㫉㪺㫌㫃㪸㫋㫌㫊
㪥㪸㫍㫆㪻㫆㫅 㪥㪸㫍㫆㪻㫆㫅
㪪㫋㪼㫇㪿㪸㫅㫆㫃㪼㫇㫀㫊 㫆㪹㫃㫆㫅㪾㫌㫊
㪘㫄㪸㫅㫊㪼㫊㩷㫊㪸㫅㪻㫎㫀㪺㪿㫀㪼㫅㫊㫀㫊 㪧㪸㫉㫀㫂㪸 㪝㪃㩷㪤
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪫㪸㪹㫃㪼㩷㪍㪅㪋㪊㩷㩷㪦㫉㪻㪼㫉㩷㪫㪜㪫㪩㪘㪦㪛㪦㪥㪫㪠㪝㪦㪩㪤㪜㪪㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㪪㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀
㪋㪋
㪊㪍
㪍㪏
㪎㪉
㪎㪉
㪍㪏
㪌㪉 㪌㪋 㪌㪋
㪋㪏
㪌㪉
㪌㪉
㪋㪇
㪋㪇
㪊㪋
㪊㪋
㪊㪋
㪊㪋
㪊㪋
㪊㪋
㪊㪍
㪊㪋
㪊㪋
㪋㪇 㪊㪍
㪋㪇
㪋㪇
㪌㪋
㪎㪍
㪏㪋
㪌㪉
㪐㪍
㪋㪇
㪊㪋
㪊㪋
㪊㪋
㪊㪋
㪊㪋
㪊㪋
㪊㪍
㪊㪋
㪊㪋
㪋㪇 㪊㪍
㪋㪇
㪉
㪉
㪉
㪡㪸㫇㪸㫅㩷㩿㪮㪅㩷㪠㫑㫌㩷㪧㪼㫅㫀㫅㫊㫌㫃㪸㪀
㪡㪸㫇㪸㫅㩷㩿㪠㫑㫌㩷㪧㪼㫅㫀㫅㫊㫌㫃㪸㪀
㪡㪸㫇㪸㫅㩷㩿㪮㪅㩷㪠㫑㫌㩷㪧㪼㫅㫀㫅㫊㫌㫃㪸㪀
㪡㪸㫇㪸㫅㩷㩿㪮㪅㩷㪠㫑㫌㩷㪧㪼㫅㫀㫅㫊㫌㫃㪸㪀
㪥㪼㫎㩷㪱㪼㪸㫃㪸㫅㪻 㪡㪸㫇㪸㫅㩷㩿㪦㫂㫀㫅㪸㫎㪸㪀
㪡㪸㫇㪸㫅㩷㩿㪫㪸㫅㪼㪾㪸㫊㪿㫀㫄㪸㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪩㪡㪀
㪢 㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪯㪈㪯㪉㪰㪃㩷㪘㪚㪥㪔㪊㪋
㪚㪿㫀㫅㪸㩷㩿㪪㪿㪸㫅㪻㫆㫅㪾㪀
㪡㪸㫇㪸㫅㩷㩿㪠㫑㫌㩷㪧㪼㫅㫀㫅㫊㫌㫃㪸㪀
㪯㪈㪯㪈㪯㪉㪯㪉㪃㩷㪘㪚㪥㪔㪊㪋 㪡㪸㫇㪸㫅㩷㩿㪠㫑㫌㩷㪧㪼㫅㫀㫅㫊㫌㫃㪸㪀
㪘㪚㪥㪔㪊㪋
㪘㪚㪥㪔㪊㪍
㪘㪚㪥㪔㪊㪍
㪘㪚㪥㪔㪋㪇 㪘㪚㪥㪔㪊㪍
㪘㪚㪥㪔㪋㪇
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪇㪅㪎㪁㩷㪝㪚㪤
㪈㪅㪇㩷㪝㪠㪘 㪇㪅㪏㪁㩷㪝㪚㪤
㪇㪅㪏㪁㩷㪝㪚㪤㪃㩷㪈㪅㪇㩷㪝㪠㪘
㪈㪅㪈㪁㩷㪝㪚㪤
㪘㪚㪥㪔㪊㪋
㪘㪚㪥㪔㪋㪋
㪘㪚㪥㪔㪋㪇
㪘㪚㪥㪔㪋㪉
㪘㪚㪥㪔㪋㪉
㪘㪚㪥㪔㪋㪏 㪘㪚㪥㪔㪋㪏
㪘㪚㪥㪔㪋㪋
㪘㪚㪥㪔㪋㪇
㪘㪚㪥㪔㪋㪇
㪯㪈㪯㪉㪰㪃㩷㪘㪚㪥㪔㪊㪋
㪡㪸㫇㪸㫅㩷㩿㪚㪿㫀㪹㪸㪀
㪡㪸㫇㪸㫅㩷㩿㪮㪸㫂㪸㫐㪸㫄㪸㪀
㪠㫅㪻㫀㪸㩷㩿㪦㫉㫀㫊㫊㪸㪀
㪡㪸㫇㪸㫅㩷㩿㪦㫂㫀㫅㪸㫎㪸㪀
㪡㪸㫇㪸㫅㩷㩿㪦㫂㫀㫅㪸㫎㪸㪀 㪡㪸㫇㪸㫅
㪠㫅㪻㫀㪸㩷㩿㪦㫉㫀㫊㫊㪸㪀
㪠㫅㪻㫀㪸㩷㩿㪧㫆㫉㫋㫆㫅㫆㫍㫆㪀
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
㪘㪄㪎㪐
㪠㪄㪉㪊
㪠㪄㪉㪊㪃㩷㪦㪄㪎㪉
㪱㪄㪈㪌㪃㩷㩷㪮㪄㪍㪃㩷㪰㪄㪉㪈
㪤㪄㪐㪏㪃㩷㪦㪄㪋㪏
㪪㪄㪈㪏㪈
㪪㪄㪈㪏㪈㪃㩷㪙㪄㪎㪌㪃㩷㪟㪄㪈㪊
㪮㪄㪍
㪤㪄㪈㪇㪇
㪤㪄㪈㪇㪇
㪤㪄㪐㪏㪃㩷㪦㪄㪋㪏
㪘㪄㪍㪋
㪤㪄㪐㪏
㪤㪄㪐㪏
㪤㪄㪈㪈㪉 㪘㪄㪍㪋
㪘㪄㪍㪋
㪙㪄㪏㪍
㪘㪄㪍㪋㪃㩷㪤㪄㪉
㪘㪄㪎㪐
㪚㪄㪍㪉
㪘㪄㪍㪋
㪘㪄㪍㪋㪃㩷㪞㪄㪏㪌㪃㩷㪟㪄㪋㪈 㪦㪄㪋㪏
㪚㪄㪍㪉
㪥㪄㪈㪊㪃㩷㪦㪄㪋㪏㪃㩷㪞㪄㪏㪌
㪡㪸㫇㪸㫅 㪠㪄㪉㪊 㪡㪸㫇㪸㫅㩷㩿㪠㫊㪿㫀㪾㪸㫂㫀㩷㪸㫅㪻㩷㪰㪸㫂㫌㩷㪠㫊㪀 㪘㪄㪍㪋 㪡㪸㫇㪸㫅㩷㩿㪮㪸㫂㪸㫐㪸㫄㪸㪀 㪘㪄㪎㪐
㪡㪸㫇㪸㫅㩷㩿㪮㪸㫂㪸㫐㪸㫄㪸㪀
㪡㪸㫇㪸㫅
㪡㪸㫇㪸㫅
㪚㪿㫀㫅㪸㩷㩿㪰㪼㫃㫃㫆㫎㩷㪪㪼㪸㪀
㪡㪸㫇㪸㫅㩷㩿㪮㪅㩷㪠㫑㫌㩷㪧㪼㫅㫀㫅㫊㫌㫃㪸㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪙㪸㪿㫀㪸㪃㩷㪩㪡㪀
㪈㪅㪉㩷㪝㪚㪤㪃㩷㪈㪅㪋㩷㪙㪝㪘 㪯㪈㪯㪈㪯㪉㪯㪉㪃㩷㪘㪚㪥㪔㪊㪋 㪙㫉㪸㫑㫀㫃㩷㩿㪙㪸㪿㫀㪸㪃㩷㪩㪡㪀
㩿㪈㪅㪉㪁㩷㪝㪚㪤㪀
㪝 㪞 㪟 㪠 㪥㪝㪈 㪥㪝㪉 㪘㪾㪄 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㪥㪦㪩㫊 㩿㫇㪾㪆㪺㪼㫃㫃㪀
213
㪤㫆㫃㫀㪻㪸㪼㩷
㪤㫆㫃㪸
㫄㫆㫃㪸
㪸㫅㫋㪼㫅㫅㪸㫋㫌㫊 㫊㫇㫀㫅㫆㫊㫌㫊 㪿㫆㫃㫆㪺㪸㫅㫋㪿㫌㫊 㫃㫀㫋㫌㫉㫆㫊㫌㫊
㪚㪿㫀㫃㫆㫄㫐㪺㫋㪼㫉㫌㫊 㪚㪿㫀㫃㫆㫄㫐㪺㫋㪼㫉㫌㫊 㪛㫀㫆㪻㫆㫅 㪛㫀㫆㪻㫆㫅
㪛㫀㫆㪻㫆㫅㫋㫀㪻㪸㪼㩷
㫇㪸㫋㫆㪺㪸 㫀㫅㪼㫉㫄㫀㫊 㫃㪸㪼㫍㫀㪾㪸㫋㫌㫊 㫃㫌㫅㪸㫉㫀㫊 㪾㫉㪼㪼㫃㪼㫐㫀 㫊㫇㪼㫅㪾㫃㪼㫉㫀 㫊㫇㪼㫅㪾㫃㪼㫉㫀 㫋㪼㫊㫋㫌㪻㫀㫅㪼㫌㫊 㫋㫐㫃㪼㫉㫀 㪺㪿㫉㫐㫊㫆㫇㫊 㫅㫀㫇㪿㫆㪹㫃㪼㫊 㫅㫀㫇㪿㫆㪹㫃㪼㫊 㫇㪸㫉㪻㪸㫃㫀㫊 㫇㪸㫉㪻㪸㫃㫀㫊 㫇㫆㪼㪺㫀㫃㫆㫅㫆㫋㫌㫊 㫇㫆㪼㪺㫀㫃㫆㫅㫆㫋㫌㫊 㫇㫊㪼㫌㪻㫆㫄㫄㫌㫊 㫉㫌㪹㫉㫀㫇㪼㫊 㫉㫌㪹㫉㫀㫇㪼㫊 㫉㫌㪹㫉㫀㫇㪼㫊 㫍㪼㫉㫄㫀㪺㫌㫃㪸㫉㫀㫊 㫏㪸㫅㫋㪿㫆㫇㫋㪼㫉㫌㫊 㪺㫌㫋㪺㫌㫋㫀㪸 㪽㫃㫌㫍㫀㪸㫋㫀㫃㫀㫊 㪽㫃㫌㫍㫀㪸㫋㫀㫃㫀㫊 㫃㪼㫆㫇㪸㫉㪻㫌㫊 㫅㫀㪾㫉㫆㫍㫀㫉㫀㪻㫀㫊 㫇㪸㫃㪼㫄㪹㪸㫅㪾㪼㫅㫊㫀㫊
㪚㪿㪼㫃㫆㫅㫆㪻㫆㫅 㪣㪸㪾㫆㪺㪼㫇㪿㪸㫃㫌㫊 㪣㪸㪾㫆㪺㪼㫇㪿㪸㫃㫌㫊 㪣㪸㪾㫆㪺㪼㫇㪿㪸㫃㫌㫊 㪪㫇㪿㫆㪼㫉㫆㫀㪻㪼㫊 㪪㫇㪿㫆㪼㫉㫆㫀㪻㪼㫊 㪪㫇㪿㫆㪼㫉㫆㫀㪻㪼㫊 㪪㫇㪿㫆㪼㫉㫆㫀㪻㪼㫊 㪪㫇㪿㫆㪼㫉㫆㫀㪻㪼㫊 㪫㪸㫂㫀㪽㫌㪾㫌 㪫㪸㫂㫀㪽㫌㪾㫌 㪫㪸㫂㫀㪽㫌㪾㫌 㪫㪸㫂㫀㪽㫌㪾㫌 㪫㪸㫂㫀㪽㫌㪾㫌 㪫㪸㫂㫀㪽㫌㪾㫌 㪫㪸㫂㫀㪽㫌㪾㫌 㪫㪸㫂㫀㪽㫌㪾㫌 㪫㪸㫂㫀㪽㫌㪾㫌 㪫㪸㫂㫀㪽㫌㪾㫌 㪫㪸㫂㫀㪽㫌㪾㫌 㪫㪸㫂㫀㪽㫌㪾㫌 㪫㪸㫂㫀㪽㫌㪾㫌 㪫㪼㫋㫉㪸㫆㪻㫆㫅 㪫㪼㫋㫉㪸㫆㪻㫆㫅 㪫㪼㫋㫉㪸㫆㪻㫆㫅 㪫㪼㫋㫉㪸㫆㪻㫆㫅 㪫㪼㫋㫉㪸㫆㪻㫆㫅 㪫㪼㫋㫉㪸㫆㪻㫆㫅
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㪹㫆㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷
㪹㫃㪼㪼㫂㪼㫉㫀
㪘㫉㫆㫋㪿㫉㫆㫅
㪝㫌㪾㫌 㪝㫌㪾㫌 㫉㪸㪻㫀㪸㫋㫌㫊
㪝㫌㪾㫌
㪝㫌㪾㫌
㪪㫇㪿㫆㪼㫉㫆㫀㪻㪼㫊 㪝㫌㪾㫌
㪤
㪋㪍
㪋㪍㪘
㪍㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪊㪋㩷㪪㪫㪆㪘
㪉㪇㩷㪤㪆㪪㪤㩷㪂㩷㪉㪍㩷㪪㪫㪆㪘
㪋㪍 㪋㪍
㪈㪍㩷㪤㪆㪪㪤㩷㪂㩷㪊㪍㩷㪪㪫㪆㪘
㪌㪉
㪌㪉
㪍㪤㩷㪂㩷㪋㪍㩷㪪㪫㪆㪘
㪉㪇㩷㪤㪆㪪㪤㩷㪂㩷㪉㪉㪪㪫
㪋㪉 㪋㪉㪁
㪈㪋㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪈㪉㩷㪪㪫㪆㪘
㪋㪇
㪉㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪊㪋㪘
㪏㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪉㪪㪫㩷㪂㩷㪈㪏㪘
㪋㪉 㪋㪉
㪏㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪉㪉㩷㪪㪫㪆㪘 㪈㪍㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪈㪇㪘
㪋㪋 㪋㪉
㪝 㪤 㪝㪃㩷㪤
㪍㪋
㪋㪍
㪌㪏
㪍㪍
㪍㪏
㪌㪏
㪍㪉
㪍㪏
㪋㪏
㪍㪋
㪍㪍 㪎㪇
㪍㪉 㪍㪍
㪋㪍
㪏㪋
㪌㪇
㪍㪍
㪎㪋
㪉
㪉
㩿㪈㪅㪎㪃㩷㪈㪅㪐㩷㪝㪚㪤㪀
㪈㪅㪎㪁㩷㪝㪚㪤
㪈㪅㪍㩷㪝㪚㪤
㪈㪅㪇㩷㪙㪝㪘
㪇㪅㪎㩷㪝㪚㪤㪃㩷㪈㪅㪇㩷㪝㪠㪘
㩿㪇㪅㪏㪁㩷㪝㪚㪤㪀
㩿㪇㪅㪏㩷㪝㪚㪤㪃㩷㪇㪅㪏㩷㪙㪝㪘㪀
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪉
㪘㪚㪥㪔㪋㪉
㪘㪚㪥㪔㪋㪍 㪘㪚㪥㪔㪋㪋
㪚㪄㪍㪉㪃㩷㪞㪄㪏㪌㪃㩷㪟㪄㪋㪈
㪘㪄㪌㪋㪃㩷㪦㪄㪋㪏 㪤㪄㪈㪊㪋
㪘㪄㪍㪋
㪪㪄㪈㪈㪇 㪙㪄㪌㪎
㪘㪄㪈㪉㪍
㪙㪄㪌㪍
㪙㪄㪌㪍
㪡㪸㫇㪸㫅㩷㩿㪚㪿㫀㪹㪸㪀
㪡㪸㫇㪸㫅㩷㩿㪦㫂㫀㫅㪸㫎㪸㪀
㪙㫉㪸㫑㫀㫃
㪙㫉㪸㫑㫀㫃㩷㩿㪩㪡㪀
㪥㪄㪎㪃㩷㪙㪄㪎㪌
㪘㪄㪍㪋㪃㩷㪦㪄㪋㪏
㪪㪄㪈㪈㪇㪃㩷㪙㪄㪎㪌
㪙㪄㪌㪎
㪪㪄㪈㪈㪇
㪟㪄㪈㪊
㩿㪪㪜㩷㪘㫊㫀㪸㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪩㪡㪀
㪝㪄㪉㪋㪃㩷㪡㪄㪉㪈㪃㩷㪟㪄㪋㪈
㪚㪄㪍㪉
㪤㪄㪈㪐㪃㩷㪦㪄㪋㪏
㪙㪄㪊㪃㩷㪙㪄㪎㪌㪃㩷㪟㪄㪈㪊
㪤㪄㪈㪊㪋 㪢㪄㪋㪉㪃㩷㪭㪄㪏㪍
㪮㪄㪍 㪤㪄㪈㪊㪋
㪰㪄㪉㪇㪃㩷㪞㪄㪏㪌
㪤㪄㪈㪊㪋
㪱㪄㪊㪎
㪘㪄㪎㪐
㪤㪄㪈㪊㪋 㪤㪄㪈㪊㪋
㩿㪪㪅㩷㪘㫊㫀㪸㪀
㪠㫅㪻㫀㪸㩷㩿㪦㫉㫀㫊㫊㪸㪀
㩿㪪㪅㩷㪘㫊㫀㪸㪀
㪠㫅㪻㫀㪸㩷㩿㪮㪙㪀
㪡㪸㫇㪸㫅㩷㩿㪫㪸㪺㪿㫀㪹㪸㫅㪸㩷㪙㪸㫐㪀 㪠㫅㪻㫀㪸㩷㩿㪮㪙㪀
㪚㪿㫀㫅㪸㩷㩿㪪㪿㪸㫅㪻㫆㫅㪾㪀 㪡㪸㫇㪸㫅㩷㩿㪫㪸㪺㪿㫀㪹㪸㫅㪸㩷㪙㪸㫐㪀
㪚㪿㫀㫅㪸
㪡㪸㫇㪸㫅
㪈㪇㪤㩷㪂㩷㪈㪉㪪㪤㩷㪂㩷㪉㪉㩷㪪㪫㪆㪘
㪋㪋
㪘㪚㪥㪔㪋㪍
㪚㪿㫀㫅㪸㩷㩿㪰㪼㫃㫃㫆㫎㩷㪪㪼㪸㪀
㪍㪍
㪡㪸㫇㪸㫅㩷㩿㪮㪸㫂㪸㫐㪸㫄㪸㪀 㪍㪋
㪈㪉㪤㩷㪂㩷㪏㪪㪤㩷㪂㩷㪉㪋㪘 㪉㪇㩷㪤㪆㪪㪤㩷㪂㩷㪉㪋㩷㪪㪫㪆㪘
㪝㪃㩷㪤
㪘㪚㪥㪔㪋㪍 㪘㪚㪥㪔㪋㪍
㪡㪸㫇㪸㫅㩷㩿㪠㫑㫌㩷㪧㪼㫅㫀㫅㫊㫌㫃㪸㪀 㪡㪸㫇㪸㫅㩷㩿㪢㪸㫅㪸㪾㪸㫎㪸㪀 㪡㪸㫇㪸㫅㩷㩿㪦㫆㫄㫌㫉㪸㩷㪙㪸㫐㪀
㪋㪋
㪈㪉㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪉㪍㪘 㪏㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪉㪉㩷㪪㪫㪆㪘
㪝㪃㩷㪤
㪋
㪘㪚㪥㪔㪋㪍 㪘㪚㪥㪔㪋㪍 㪘㪚㪥㪔㪋㪍
㪋㪋
㪋㪋
㪝㪃㩷㪤
㪇㪅㪏㩷㪝㪚㪤
㩿㪇㪅㪏㪁㩷㪝㪚㪤㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪩㪥㪀㩷 㪙㫉㪸㫑㫀㫃㩷㩿㪩㪡㪀
㪘㪚㪥㪔㪋㪍 㪘㪚㪥㪔㪋㪍
㪙㫉㪸㫑㫀㫃㩷㩿㪪㪧㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪩㪡㪀
㪙㫉㪸㫑㫀㫃㩷㩿㪩㪡㪀
㪠㫅㪻㫀㪸㩷㩿㪦㫉㫀㫊㫊㪸㪀
㪇㪄㪉㩷㪙㪃㩷㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪍
㪘㪚㪥㪔㪋㪍
㪘㪄㪍㪋
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
㪣㪄㪈 㪪㪄㪈㪈㪇
㪡㪸㫇㪸㫅㩷㩿㪮㪸㫂㪸㫐㪸㫄㪸㪃㩷㪪㪿㫀㫑㫌㫆㫂㪸㪀 㪘㪄㪎㪐
㪍㪋
㪉
㪇㪅㪐㩷㪝㪠㪘
㪠㫅㪻㫀㪸 㪙㫉㪸㫑㫀㫃
㪡㪸㫇㪸㫅㩷㩿㪦㫂㫀㫅㪸㫎㪸㪀
㪢 㩷㩷㩷㩷㩷㩷㪣㫆㪺㪸㫃㫀㫋㫐
㪡㪸㫇㪸㫅㩷㩿㪦㫆㫄㫌㫉㪸㩷㪙㪸㫐㪀 㪡㪸㫇㪸㫅㩷㩿㪫㪸㪺㪿㫀㪹㪸㫅㪸㩷㪙㪸㫐㪀
㪍㪍 㪍㪍
㪎㪋
㪉
㪘㪚㪥㪔㪋㪉
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪋㪋 㪍㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪉㪉㩷㪪㪫㪆㪘 㪈㪉㪤㩷㪂㩷㪈㪇㪪㪤㩷㪂㩷㪉㪉㩷㪪㪫㪆㪘
㪍㪋 㪍㪋
㪍㪋
㪍㪏 㪍㪇
㪍㪍
㪍㪋
㪎㪇
㪍㪏
㪋㪍
㪎㪇
㪝 㪞 㪟 㪠 㪥㪝㪈 㪥㪝㪉 㪘㪾㪄 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼㩷 㪥㪦㪩㫊 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪋㪋 㪋㪋
㪋㪋 㪋㪋
㪝
㪝
㪍㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪉㪋㩷㪪㪫㪆㪘 㪉㪇㩷㪤㪆㪪㪤㩷㪂㩷㪉㪋㩷㪪㪫㪆㪘 㪋㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪉㪋㩷㪪㪫㪆㪘
㪋㪋 㪋㪋 㪋㪋
㪈㪏㪤㩷㪂㩷㪋㪪㪤㩷㪂㩷㪍㪪㪫㩷㪂㩷㪈㪏㪘 㪈㪋㩷㪤㪆㪪㪤㩷㪂㩷㪊㪉㩷㪪㪫㪆㪘
㪋㪍 㪋㪍
㪝㪃㩷㪤
㪈㪏㩷㪤㪆㪪㪤㩷㪂㩷㪉㪏㩷㪪㪫㪆㪘 㪉㪇㩷㪤㪆㪪㪤㩷㪂㩷㪉㪍㩷㪪㪫㪆㪘
㪋㪍 㪋㪍
㪝㪃㩷㪤
㪉㪋㩷㪤㪆㪪㪤㩷㪂㩷㪉㪉㩷㪪㪫㪆㪘
㪈㪇㪤㩷㪂㩷㪈㪋㪪㪤㩷㪂㩷㪉㪇㩷㪪㪫㪆㪘
㪉㪤㩷㪂㩷㪋㪉㪘
㪈㪋㪤㩷㪂㩷㪈㪍㪪㪤㩷㪂㩷㪈㪇㩷㪪㪫㪆㪘
㪜 㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪝㪃㩷㪤
㪋㪋 㪋㪍
㪤 㪝㪃㩷㪤
㪞㪸㫊㫋㫉㫆㫇㪿㫐㫊㫌㫊
㪋㪇
㪛 㪉㫅
㪋㪋 㪋㪍
㪚 㪪㪼㫏
㪫㪼㫋㫉㪸㫆㪻㫆㫅
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪫㪸㪹㫃㪼㩷㪍㪅㪋㪊㩷㩷㪦㫉㪻㪼㫉㩷㪫㪜㪫㪩㪘㪦㪛㪦㪥㪫㪠㪝㪦㪩㪤㪜㪪㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀 㪪㩷㩿㪺㫆㫅㫋㫀㫅㫌㪼㪻㪀
214
㪺㪿㪸㫃㫌㫄㫅㪸㪼
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪽㫆㫉㫊㫋㪼㫉㫀 㪽㫆㫉㫊㫋㪼㫉㫀
㪧㫉㫆㫋㫆㫇㫋㪼㫉㫌㫊 㪧㫉㫆㫋㫆㫇㫋㪼㫉㫌㫊 㪧㫉㫆㫋㫆㫇㫋㪼㫉㫌㫊 㪧㫉㫆㫋㫆㫇㫋㪼㫉㫌㫊 㪧㫉㫆㫋㫆㫇㫋㪼㫉㫌㫊 㪧㫉㫆㫋㫆㫇㫋㪼㫉㫌㫊
㪧㫉㫆㫋㫆㫇㫋㪼㫉㫀㪻㪸㪼
㪣㪼㫇㫀㪻㫆㫊㫀㫉㪼㫅 㪣㪼㫇㫀㪻㫆㫊㫀㫉㪼㫅 㪣㪼㫇㫀㪻㫆㫊㫀㫉㪼㫅
㪸㪼㫋㪿㫀㫆㫇㫀㪺㫌㫊㩷㪺㫆㫅㪾㫀㪺㫌㫊 㪸㫅㫅㪼㪺㫋㪼㫅㫊 㪸㫅㫅㪼㪺㫋㪼㫅㫊 㪸㫅㫅㪼㪺㫋㪼㫅㫊㩷㪸㫅㫅㪼㪺㫋㪼㫅㫊 㪻㫆㫃㫃㫆㫀 㪖 㪻㫆㫃㫃㫆㫀
㫇㪸㫉㪸㪻㫆㫏㪸 㫇㪸㫉㪸㪻㫆㫏㪸 㫇㪸㫉㪸㪻㫆㫏㪸
㪪㫌㪹㫆㫉㪻㪼㫉㩷㪣㪼㫇㫀㪻㫆㫊㫀㫉㪼㫅㫆㫀㪻㪼㫀 㪣㪼㫇㫀㪻㫆㫊㫀㫉㪼㫅㫀㪻㪸㪼
㪥㪼㫆㪺㪼㫉㪸㫋㫆㪻㫌㫊 㪥㪼㫆㪺㪼㫉㪸㫋㫆㪻㫌㫊
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪪㫌㪹㫆㫉㪻㪼㫉㪆㪽㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷 㪪㫌㪹㫆㫉㪻㪼㫉㩷㪚㪼㫉㪸㫋㫆㪻㫆㫅㫋㫆㫀㪻㪼㫀 㪚㪼㫉㪸㫋㫆㪻㫆㫅㫋㫀㪻㪸㪼
㪻㫆㫃㫃㫆㫀
㪜㫇㫀㪺㪼㫉㪸㫋㫆㪻㫌㫊
㪙 㪩㪼㫇㫆㫉㫋㪼㪻㩷㫀㫅 㫂㪸㫉㫐㫆㫋㫐㫇㪼㩷㫇㪸㫇㪼㫉
㪫㪸㪹㫃㪼㩷㪎㪅㪉㩷㩷㪦㫉㪻㪼㫉㩷㪚㪜㪩㪘㪫㪦㪛㪦㪥㪫㪠㪝㪦㪩㪤㪜㪪
㪣㪸㫋㫀㫄㪼㫉㫀㪸
㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㩷㪘 㪚㫌㫉㫉㪼㫅㫋㩷㫊㪺㫀㪼㫅㫋㫀㪽㫀㪺㩷㫅㪸㫄㪼㩷㫆㪽㩷㫋㪸㫏㫆㫅 㪝㪸㫄㫀㫃㫐㪆㫊㫇㪼㪺㫀㪼㫊㩷 㪣㪸㫋㫀㫄㪼㫉㫀㫀㪻㪸㪼
㪫㪸㪹㫃㪼㩷㪎㪅㪈㩷㩷㪦㫉㪻㪼㫉㩷㪚㪦㪜㪣㪘㪚㪘㪥㪫㪟㪠㪝㪦㪩㪤㪜㪪㩷
㪝㪃㩷㪤
㪝
㪚 㪪㪼㫏
㪚 㪪㪼㫏
㪫㪸㪹㫃㪼㩷㪎㩷㩷㪚㫃㪸㫊㫊㩷㪪㪘㪩㪚㪦㪧㪫㪜㪩㪰㪞㪠㪠㩷㩿㪦㪪㪫㪜㪠㪚㪟㪫㪟㪰㪜㪪㪀
㪍㪉
㪉
㪠 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪎㪅㪉㩷㪝㪛
㪠 㪞㪼㫅㫆㫄㪼㩷㫊㫀㫑㪼 㩿㫇㪾㪆㪺㪼㫃㫃㪀
㪊㪍㩷㪤㪆㪪㪤㩷㪂㩷㪊㪉㩷㪪㪫㪆㪘
㪈㪍㪤㩷㪂㩷㪍㪪㪤㩷㪂㩷㪈㪉㪘
㪍㪏
㪈㪍㪤㩷㪂㩷㪍㩷㪪㪤㩷㪂㩷㪈㪉㪘
㪊㪋
㪈㪋㪤㩷㪂㩷㪈㪇㪪㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪍㪘
㪊㪋
㪊㪋
㪊㪋
㪊㪏
㪊㪏㩷㪤㪆㪪㪤 㪊㪏㩷㪤㪆㪪㪤㪆㪪㪫
㪊㪏 㪊㪏
㪈㪇㪋
㪌㪍
㪌㪍
㪌㪏
㪎㪍
㪌㪍
㪌㪍
㪍㪉
㪎㪍
㪈㪍㪊㪅㪉㩷㪝㪛
㪈㪊㪇㪅㪏㩷㪝㪚㪤
㪏㪇㪅㪐㩷㪝㪛
㪈㪉㪌㪅㪉㩷㪝㪚㪤
㪏㪇㪅㪉㪃㩷㪉㪍㪌㪅㪎㪁㩷㪝㪛
㪋㪯
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㪡 㪚㫆㫄㫄㪼㫅㫋㫊
㩿㪈㪍㪈㪅㪈㩷㪝㪚㪤㪃㩷㪉㪉㪌㪅㪍㪁㩷㪝㪛㪀
㩿㪈㪋㪐㪅㪎㪁㩷㪝㪛㪀
㪎㪍
㪟 㪘㪾㪄 㪥㪦㪩㫊
㪟 㪘㪾㪄 㪥㪦㪩㫊
㪈㪇㪌㪅㪌㩷㪝㪚㪤㪃㩷㪈㪇㪐㪅㪉㩷㪝㪠㪘
㪍㪉
㪝 㪞 㪥㪝㪈 㪥㪝㪉
㪌㪏
㪝 㪞 㪥㪝㪈 㪥㪝㪉
㪌㪋
㪍㪤㩷㪂㩷㪉㪪㪤㩷㪂㩷㪉㪍㩷㪪㪫㪆㪘㩷㪂㩷㪉㪇㩷㪤㪚
㪜 㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪈㪇㪤㩷㪂㩷㪋㪪㪫㩷㪂㩷㪈㪏㪘㩷㪂㩷㪈㪍㩷㪤㪚
㪜 㪢㪸㫉㫐㫆㫋㫐㫇㪼
㪊㪉㪄㪊㪏
㪛 㪉㫅
㪋㪏
㪛 㪉㫅
㪮㪄㪉㪌㪃㩷㪧㪄㪎㪉
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
㪙㪄㪋㪈㪃㩷㪚㪄㪐㪌
㪣 㪩㪼㪽㪼㫉㪼㫅㪺㪼
㪱㪸㫀㫉㪼
㩿㪘㪽㫉㫀㪺㪸㪀
㪪㪼㫅㪼㪾㪸㫃
㪥㫀㪾㪼㫉㫀㪸
㩿㪘㪽㫉㫀㪺㪸㪀
㪱㪸㫀㫉㪼
㪘㫉㪾㪼㫅㫋㫀㫅㪸
㪙㫉㪸㫑㫀㫃㩷㩿㪤㪸㫅㪸㫌㫊㪀
㩿㪪㪅㩷㪘㫄㪼㫉㫀㪺㪸㪀
㪭㪄㪊㪏
㪭㪄㪈㪇㪈
㪭㪄㪊㪏
㪤㪄㪈㪈㪌
㪪㪄 㪈 㪉 㪏
㪭㪄㪊㪏㪃㩷㪧㪄㪎㪉
㪝㪄㪉㪇
㪦㪄㪌㪇
㪦㪄㪋㪃㩷㪭㪄㪈㪇㪈㪃㩷㪧㪄㪎㪉
㪘㫌㫊㫋㫉㪸㫃㫀㪸㩷㩿㪪㫐㪻㫅㪼㫐㪀 㪩㪄㪈㪇㪈㪃㩷㪞㪄㪏㪌
㪘㫌㫊㫋㫉㪸㫃㫀㪸
㪢 㪣㫆㪺㪸㫃㫀㫋㫐
㪚㫆㫄㫆㫉㫆
㪢 㪣㫆㪺㪸㫃㫀㫋㫐
215
References
(Papers marked with an asterisk were not seen directly.) [A] A– 1 Abe, S. (1972) Notes on the chromosomes of two species of fresh-water cottid fishes. fi Chrom. Inform. Serv., 13: 25–27. A– 2 Abe, S. and Muramoto, J. (1974) Differential staining of chromosomes of two salmonoid species, Salvelinus leucomaenis (Pallas) and Salvelinus malma (Walbaum). Proc. Japan Acad., 50: 507–511. A– 3 Abe, S. (1975) Karyotypes of 6 species of anabantoid fi fishes. Chrom. Inform. Serv., 19: 5–7. A– 4 Abe, S. (1976) A cytotaxonomical study in some freshwater cottid fi fishes (Cottidae, Pisces). Cytologia, 41: 323–329. A– 5 Abucarma, M. and Martins-Santos, I.C. (2001) Karyotype and B chromosome of Rhamdia species (Pisces, Pimelodidae) endemic in the River Iguaçu basin. Cytologia, 66: 299–306. A– 6 Abuin, M., Martinez, P. and Sánchez, L. (1996) Localization of the repetitive telomeric sequence (TTAGGG)n in four salmonid species. Genome, 39: 1035–1038. A– 7 Affonso, P.R.A.M., Guedes, W., Pauls, E. and Galetti Jr., P.M. (2001) Cytogenetic analysis of coral reef fishes fi from Brazil (families Pomacanthidae and Chaetodontidae). Cytologia, 66: 379–384. A– 8 Affonso, P.R.A.M., Guedes, W., Pauls, E. and Galetti Jr., P.M. (2002) Close karyotypical relationship between two species of marine angelfishes fi from South Atlantic: Pomacanthus arcuatus and P. paru (Perciformes, Pomacanthidae). Caryologia, 55: 323–329. A– 9 Affonso, P.R.A.M. and Galetti Jr., P.M. (2005) Chromosomal diversification fi of reef fishes from genus Centropyge (Perciformes, Pomacanthidae). Genetica, 123: 227–233. A– 10 Agnèse, J.F., Oberdorff, T. and Ozouf-Costaz, C. (1990) Karyotypic study of some species of family Mochokidae (Pisces, Siluriformes): evidence of female heterogamety. J. Fish Biol., 37: 375–381. A– 11 Aguilar, C.T. and Galetti Jr., P.M. (1997) Chromosomal studies in South Atlantic serranids (Pisces, Perciformes). Cytobios, 89: 105–114. A– 12 Aguilar, C.T., Oliveira-Corrêa, M.M. and Galetti Jr., P.M. (1998) Chromosome associations by centromeric heterochromatin in marine fi fishes. Chrom. Sci., 2: 73–76. A– 13 Ahmed, M. (1974) A chromosome study of two species of Gobiosoma from Venezuela (Gobiidae: Teleostei). Bol. Inst. Oceanogr. Univ. Oriente, 13: 11–16. A– 14 Alberdi, A.J. and Fenocchio, A.S. (1997) Karyotypes of five Tetragonopterinae species (Pisces, Characidae) from Argentina. Cytologia, 62: 171–176. A– 15 Albert, J.S., Fernandes-Matioli, F.M.C. and Almeida-Toledo, L.F. (1999) New species of Gymnotus (Gymnotiformes, Teleostei) from southeastern Brazil: toward the deconstruction of Gymnotus carapo. Copeia, 1999: 410–421. 216
References
217
A– 16 Allendorf, F.W. and Thorgaard, G.H. (1984) Tetraploidy and the evolution of salmonid fishes. In: Turner, B.J. ed. Evolutionary genetics of fishes. Plenum Press, New York, pp. fi 1–53. A– 17 Almeida Marques, M.B., Moreira-Filho, O., Garcia, C. and Margarido, V.P. (2008) Cytogenetic analyses of two endemic fish fi species from the São Francisco River basin: Conorhynchus conirostris and Lophiosilurus alexandri (Siluriformes). Genet. Mol. Biol., 31 (suppl.): 215–221. A– 18 Almeida Toledo, L.F., Foresti, F. and Almeida Toledo, S. (1981) Constitutive heterochromatin and nucleolus organizer region in the knifefish, fi Apteronotus albifrons (Pisces, Apteronotidae). Experientia, 37: 953–954. A– 19 Almeida Toledo, L.F., Foresti, F. and Toledo Filho, S.A. (1985) Spontaneous triploidy and NOR activity in Eigenmannia sp. (Pisces, Sternopygidae) from the Amazon basin. Genetica, 66: 85–88. A– 20 Almeida-Toledo, L.F., Foresti, F., Trajano, E. and Toledo Filho, S.A. (1992) Cytogenetic analysis of the Brazilian blind catfish fi Pimelodella kroneii and its presumed ancestor, P. transitoria. Caryologia, 45: 255–262. A– 21 Almeida Toledo, L.F., Foresti, F., Zambelli Daniel, M.F. and Toledo-Filho, S.A. (1993) Nucleolar chromosome variants in Sternopygus macrurus (Pisces, Sternopygidae) from three Brazilian river basins. Caryologia, 46: 53–61. A– 22 Almeida-Toledo, L.F., Bigoni, A.P., Bernardino, G., Foresti, F. and Toledo-Filho, S.A. (1996) Karyotype and NOR conservatism with heterochromatin reorganization in Neotropical bryconids. Caryologia, 49: 35–43. A– 23 Al-Sabti, K., Kurelec, B. and Fijan, N. (1983) Cytological studies of some Cyprinidae in Croatia. Veterinar. Arhiv., 53(2): 65–70. A– 24 Al-Sabti, K., Kurelec, B. and Fijan, N. (1983) Spontaneous triploidy and tetraploidy in the common carp (Cyprinus carpio L.). Veterinar. Arhiv., 53(5): 217–223. A– 25 Al-Sabti, K., Fijan, N. and Kurelec, B. (1983) A simple and fast technique for the chromosome preparation in the fish. fi Veterinar. Arhiv., 53(6): 283–290. A– 26 Al-Sabti, K. (1985) Chromosomal studies by blood leukocyte culture technique on three salmonids from Yugoslavian waters. J. Fish Biol., 26: 5–12. A– 27 Al-Sabti, K. (1986) Karyotypes off Cyprinus carpio and Leuciscus cephalus. Cytobios, 47: 19–25. A– 28 Al-Sabti, K. (1987) Cytogenetic studies on five species of Pisces from Yugoslavia. Cytobios, 49: 175–188. A– 29 Alvarez, M.C., Cano, J. and Thode, G. (1980) DNA content and chromosome complement of Chromis chromis (Pomacentridae, Perciformes). Caryologia, 33: 267–274. A– 30 Alvarez, M.C., Thode, G. and Cano, J. (1983) Somatic karyotypes of two Mediterranean teleost species: Phycis phycis (Gadidae) and Epinephelus alexandrinus (Serranidae). Cytobios, 38: 91–95. A– 31 Alvarez, M.C., Garcia, E. and Thode, G. (1986) Contribution to the karyoevolutive study of the Labridae (Perciformes). The karyotypes of Ctenolabrus rupestris and Symphodus ocellatus. Caryologia, 39: 353–357. A– 32 Alvarez, M.C., Otis, J., Amores, A. and Guise, K. (1991) Short-term cell culture technique for obtaining chromosomes in marine and freshwater fish. fi J. Fish Biol., 39: 817– 824. A– 33 Alves, A.L. and Martins-Santos, I.C. (2002) Cytogenetic studies in two populations of Astyanax scabripinnis with 2n = 48 chromosomes (Teleostei, Characidae). Cytologia, 67: 117–122. A– 34 Alves, A.L., Oliveira, C. and Foresti, F. (2003) Karyotype variability in eight species of the subfamilies Loricariinae and Ancistrinae (Teleostei, Siluriformes, Loricariidae). Caryologia, 56: 57–63.
218
References
A– 35 Alves, A.L., Oliveira, C. and Foresti, F. (2005) Comparative cytogenetic analysis of eleven species of subfamilies Neoplecostominae and Hypostominae (Siluriformes: Loricariidae). Genetica, 124: 127–136. A– 36 Amemiya, C.T., Bickham, J.W. and Gold, J.R. (1984) A cell culture technique for chromosome preparation in cyprinid fishes. fi Copeia, 1984: 232–235. A– 37 Amemiya, C.T., Kelsch, S.W., Hendricks, F.S. and Gold, J.R. (1986) The karyotype of the Mexican blindcat, Prietella phreatophila carranza (Ictaluridae). Copeia, 1986: 1024–1028. A– 38 Amemiya, C.T. and Gold, J.R. (1986) Chromomycin A3 stains nucleolus organizer regions of fish chromosomes. Copeia, 1986: 226–231. A– 39 Amemiya, C.T. and Gold, J.R. (1987) Karyology of 12 species of North American Cyprinidae (minnows) from the southern United States. Cytologia, 52: 715–719. A– 40 Amemiya, C.T. and Gold, J.R. (1988) Chromosomal NORs as taxonomic and systematic characters in North American cyprinid fishes. fi Genetica, 76: 81–90. A– 41 Amemiya, C.T. and Gold, J.R. (1990) Chromosomal NOR phenotypes of seven species of North American Cyprinidae, with comments on cytosystematic relationships of the Notropis volucellus species-group, Opsopoeodus emiliae, and the genus Pteronotropis. Copeia, 1990: 68–78. A– 42 Amemiya, C.T., Powers, P.K. and Gold, J.R. (1992) Chromosomal evolution in North American cyprinids. In: Mayden, R. ed. Systematics, historical ecology, & North American freshwater fishes. Stanford University Press, Stanford, pp. 515–533. A– 43 Amores, A., Giles, V., Thode, G. and Alvarez, M.C. (1990) Adaptive character of a Robertsonian fusion in chromosomes of the fish Gobius paganellus (Pisces, Perciformes). Heredity, 65: 151–155. A– 44 Amores, A., Giles, V., Thode, G. and Alvarez, M.C. (1990) A tandem fusion in the fish fi Gobius paganellus (Gobiidae, Perciformes), a karyotypically polymorphic species. Genome, 33: 57–59. A– 45 Amores, A., Martinez, G., Reina, J. and Alvarez, M.C. (1993) Karyotype, C-banding, and Ag-NOR analysis in Diplodus bellottiii (Sparidae, Perciformes). Intra-individual polymorphism involving heterochromatic regions. Genome, 36: 672–675. A– 46 Amores, A., Bejar, J. and Alvarez, M.C. (1995) Replication, C and Ag-NOR chromosomebanding in two anguilliform fi fish species. Mar. Biol., 123: 845–849. A– 47 Andreata, A.A., Almeida-Toledo, L.F., Oliveira, C. and Toledo Filho, S.A. (1992) Chromosome studies in Hypoptopomatinae (Pisces, Siluriformes, Loricariidae): I. XX/XY sex chromosome heteromorphism in Pseudotocinclus tietensis. Cytologia, 57: 369– 372. A– 48 Andreata, A.A., Almeida-Toledo, L.F., Oliveira, C. and Toledo Filho, S.A. (1993) Chromosome studies in Hypoptopomatinae (Pisces, Siluriformes, Loricariidae). II. ZZ/ZW sexchromosome system, B chromosomes, and constitutive heterochromatin differentiation in Microlepidogaster leucofrenatus. Cytogenet. Cell Genet., 63: 215–220. A– 49 Andreata, A.A., Almeida-Toledo, L.F., Oliveira, C. and Toledo Filho, S.A. (1994) Cytogenetic studies on the subfamily Hypoptopomatinae (Pisces, Siluriformes, Loricariidae). III. Analysis of seven species. Caryologia, 47: 27–37. A– 50 Anjum, R., Jankun, M., Kohlman, K. and Kersten, P. (1997) Silver and chromomycin A3 staining of nucleolus organizer regions in the chromosomes of ornamental (Koi) common carp, Cyprinus carpio. Cytobios, 90: 73–79. A– 51 Anjum, R. and Jankun, M. (1998) NOR-bearing chromosomal associations revealed through silver and sequential chromomycin A3 staining in the mirror carp, Cyprinus carpio. Caryologia, 51: 167–171. A– 52 Arai, R. and Kobayasi, H. (1973) A chromosome study on thirteen species of Japanese gobiid fishes. Japan. J. Ichthyol., 20: 1–6.
References
219
A– 53 Arai, R. (1973) Preliminary notes on chromosomes of the medaka, Oryzias latipes. Bull. Natn. Sci. Mus. Tokyo, 16: 173–176. A– 54 Arai, R. and Katsuyama, I. (1973) Notes on the chromosomes of three species of shorefishes. Bull. Natn. Sci. Mus. Tokyo, 16: 405–408. fi A– 55 Arai, R. and Shiotsuki, K. (1973) A chromosome study on three species of the tribe Salariini from Japan (Pisces, Blenniidae). Bull. Natn. Sci. Mus. Tokyo, 16: 581–584. A– 56 Arai, R. and Hirano, H. (1974) First record of the clariid catfish, fi Clarias fuscus, from Japan. Japan. J. Ichthyol., 21: 53–60. A– 57 Arai, R. and Sawada, Y. (1974) Chromosomes of Japanese gobioid fishes fi (I). Bull. Natn. Sci. Mus. Tokyo, 17: 97–102. A– 58 Arai, R. and Katsuyama, I. (1974) A chromosome study on four species of Japanese catfishes fi (Pisces, Siluriformes). Bull. Natn. Sci. Mus. Tokyo, 17: 187–192. A– 59 Arai, R. and Shiotsuki, K. (1974) Chromosomes of six species of Japanese blennioid fishes. Bull. Natn. Sci. Mus. Tokyo, 17: 261–268. fi A– 60 Arai, R., Katsuyama, I. and Sawada, Y. (1974) Chromosomes of Japanese gobioid fishes fi (II). Bull. Natn. Sci. Mus. Tokyo, 17: 269–274. A– 61 Arai, R. and Inoue, M. (1975) Chromosomes of nine species of Chaetodontidae and one species of Scorpidae from Japan. Bull. Natn. Sci. Mus. Tokyo, (A), 1: 217–224. A– 62 Arai, R. and Sawada, Y. (1975) Chromosomes of Japanese gobioid fishes fi (III). Bull. Natn. Sci. Mus. Tokyo, (A), 1: 225–232. A– 63 Arai, R., Nagaiwa, K. and Sawada, Y. (1976) Chromosomes of Chanos chanos (Gonorynchiformes, Chanidae). Japan. J. Ichthyol., 22: 241–242. A– 64 Arai, R. and Nagaiwa, K. (1976) Chromosomes of tetraodontiform fi fishes from Japan. Bull. Natn. Sci. Mus. Tokyo, (A), 2: 59–72. A– 65 Arai, R. and Inoue, M. (1976) Chromosomes of seven species of Pomacentridae and two species of Acanthuridae from Japan. Bull. Natn. Sci. Mus. Tokyo, (A), 2: 73– 78. A– 66 Arai, R., Inoue, M. and Ida, H. (1976) Chromosomes of four species of coral fi fishes from Japan. Bull. Natn. Sci. Mus. Tokyo, (A), 2: 137–142. A– 67 Arai, R. and Nagaiwa, K. (1976) Chromosomes of two species of beryciform fi fishes from Japan. Bull. Natn. Sci. Mus. Tokyo, (A), 2: 199–203. A– 68 Arai, R. and Nagaiwa, K. (1977) Chromosomes of three species of clingfishes fi from Japan. Bull. Natn. Sci. Mus. Tokyo, (A), 3: 117–120. A– 69 Arai, R. and Kawai, M. (1977) Chromosomes of two species of antennariid fi fishes from Japan. Bull. Natn. Sci. Mus. Tokyo, (A), 3: 121–124. A– 70 Arai, R. and Fujiki, A. (1977) Chromosomes of three races of goldfish, fi Kuro-demekin, Sanshiki-demekin and Ranchu. Bull. Natn. Sci. Mus. Tokyo, (A), 3: 187–192. A– 71 Arai, R. and Fujiki, A. (1978) Chromosomes of two species of atherinoid fi fishes. Bull. Natn. Sci. Mus. Tokyo, (A), 4: 147–150. A– 72 Arai, R. and Fujiki, A. (1978) Chromosomes of three species of cottid fi fishes from Japan. Bull. Natn. Sci. Mus. Tokyo, (A), 4: 233–239. A– 73 Arai, R. and Fujiki, A. (1979) Chromosomes of Japanese gobioid fishes fi (IV). Bull. Natn. Sci. Mus. Tokyo, (A), 5: 153–159. A– 74 Arai, R. and Koike, A. (1979) Chromosomes of a sweeper and a goatfish fi (Teleostei, Percoidei) from Japan. Bull. Natn. Sci. Mus. Tokyo, (A), 5: 219–223. A– 75 Arai, R. and Koike, A. (1980) Chromosomes of labroid fishes from Japan. Bull. Natn. Sci. Mus. Tokyo, (A), 6: 119–135. A– 76 Arai, R. and Koike, A. (1980) A karyotype study on two species of freshwater fishes fi transplanted into Japan. Bull. Natn. Sci. Mus. Tokyo, (A), 6: 275–278. A– 77 Arai, R. and Yamamoto, T. (1981) Chromosomes of six species of percoid fi fishes from Japan. Bull. Natn. Sci. Mus. Tokyo, (A), 7: 87–100.
220
References
A– 78 Arai, R. (1982) A chromosome study on two cyprinid fishes, fi Acrossocheilus labiatus and Pseudorasbora pumila pumila, with notes on Eurasian cyprinids and their karyotypes. Bull. Natn. Sci. Mus. Tokyo, (A), 8: 131–152. A– 79 Arai, R. (1983) Karyological and osteological approach to phylogenetic systematics of tetraodontiform fishes. Bull. Natn. Sci. Mus. Tokyo, (A), 9: 175–210. A– 80 Arai, R. (1984) Karyotypes of a mugiloidid, Parapercis kamoharai, and a blenniid, Omobranchus punctatus (Pisces, Perciformes). Bull. Natn. Sci. Mus. Tokyo, (A), 10: 209–213. A– 81 Arai, R. and Tokoro, T. (1986) Karyotypes of two types of a Chinese cyprinid fish, fi Tanichthys albonubes. Bull. Natn. Sci. Mus. Tokyo, (A), 12: 37–43. A– 82 Arai, R., Suzuki, A. and Akai, Y. (1988) The karyotype and DNA value of a cypriniform algae eater, Gyrinocheilus aymonieri. Japan. J. Ichthyol., 34: 515–517. A– 83 Arai, R., Suzuki, A. and Akai, Y. (1988) A karyotype of a Chinese bitterling, Paracheilognathus himantegus (Cypriniformes, Cyprinidae). Bull. Natn. Sci. Mus. Tokyo, (A), 14: 43–46. A– 84 Arai, R. and Magtoon, W. (1991) Karyotypes of four cyprinid fishes fi from Thailand. Bull. Natn. Sci. Mus. Tokyo, (A), 17: 183–188. A– 85 Arai, R., Akai, Y. and Suzuki, N. (1992) The karyotype of a Chinese bitterling, Acheilognathus tonkinensis (Pisces, Cyprinidae). Bull. Natn. Sci. Mus. Tokyo, (A), 18: 73–77. A– 86 Arai, R., Jeon, S.R. and Ueda, T. (2001) Rhodeus pseudosericeus sp. nov., a new bitterling from South Korea (Cyprinidae, Acheilognathinae). Ichthyol. Res., 48: 275–282. A– 87 Arcement, R.J. and Rachlin, J.W. (1976) A study of the karyotype of a population of banded killifi fish (Fundulus diaphanus) from the Hudson River. J. Fish Biol., 8: 119–125. A– 88 Arefjev, V.A. (1983) Polykaryographic analysis of sheap sturgeon, Acipenser nudiventris (Acipenseridae). J. Ichthyol., 23(2): 26–35. A– 89 Arefjev, V.A. (1989) Male karyotype of Black sea clingfish fi Lepadogaster lepadogaster (Bonnaterre) (Gobiesociformes, Pisces). Nucleus, 32: 131–134. A– 90 Arefjev, V.A. (1989) Cytogenetic analysis and nucleolar organization of the sea bass Dicentrarchus labrax. J. Ichthyol., 29(8): 1–12. A– 91 Arefjev, V.A. (1989) Chromosome sets of four characid fish fi species (Teleostei, Characidae). Zool. Zhurnal, 68: 82–91. (In Russian with English summary) A– 92 Arefjev, V.A. (1990) Karyotypic diversity of characid families (Pisces, Characidae). Caryologia, 43: 291–304. A– 93 Arefjev, V.A. (1990) Problems of karyotypic variability in the family Characidae (Pisces, Characiformes) with the description of somatic karyotypes for six species of tetras. Caryologia, 43: 305–319. A– 94 Arefjev, V.A. and Nikolaev, A.I. (1991) Cytological analysis of the reciprocal hybrids between low- and high-chromosome acipenserids, the great sturgeon, Huso huso (L.), and the Russian sturgeon, Acipenser gueldenstaedtiii Brandt. Cytologia, 56: 495– 502. A– 95 Arefjev, V.A. (1991) Different rate of intrapopulation chromosome polymorphism in two species of Black sea blennies (Blenniidae, Pisces). Genetica, 83: 181–187. A– 96 Arkhipchuk, V.V., Androshchuk, A.F. and Berdyshev, G.D. (1986) Utilization of variation index of chromosomes and their morphology in karyosystematics in several taxa of subclass Teleostei. Doklady Acad. Sci. Ukrain. SSR, Ser. B, 1986(1): 66–68. A– 97 Arkhipchuk, V.V. (1999) Nucleolar variations during the ontogenesis of diploid and tetraploid cyprinid species. J. Fish Biol., 54: 513–524. A– 98 Artoni, R.F. and Bertollo, L.A.C. (1996) Cytogenetic studies on Hypostominae (Pisces, Siluriformes, Loricariidae). Considerations on karyotype evolution in the genus Hypostomus. Caryologia, 49: 81–90.
References
221
A– 99 Artoni, R.F., Venere, P.C. and Bertollo, L.A.C. (1998) A heteromorphic ZZ/ZW sex chromosome system in fish, genus Hypostomus (Loricariidae). Cytologia, 63: 421–425. A– 100 Asahida, T., Ida, H. and Inoue, S. (1987) Karyotypes of three rays in the order Myliobatiformes. Japan. J. Ichthyol., 33: 426–430. A– 101 Asahida, T., Ida, H. and Inoue, T. (1988) Karyotypes and cellular DNA contents of two sharks in the family Scyliorhinidae. Japan. J. Ichthyol., 35: 215–219. A– 102 Asahida, T. and Ida, H. (1989) Karyological notes on four sharks in the order Carcharhiniformes. Japan. J. Ichthyol., 36: 275–280. A– 103 Asahida, T. and Ida, H. (1990) Karyotypes of two rays, Torpedo tokionis and Dasyatis matsubarai, and their systematic relationships. Japan. J. Ichthyol., 37: 71–75. A– 104 Asahida, T., Ida, H., Terashima, H. and Chang, H.Y. (1993) The karyotype and cellular DNA content of a ray, Mobula japonica. Japan. J. Ichthyol., 40: 317–322. A– 105 Asahida, T., Ida, H. and Hayashizaki, K. (1995) Karyotypes and cellular DNA contents of some sharks in the order Carcharhiniformes. Japan. J. Ichthyol., 42: 21–26. A– 106 Atkin, N.B. and Ohno, S. (1967) DNA values of four primitive chordates. Chromosoma, 23: 10–13. A– 107 Avise, J.C. and Gold, J.R. (1977) Chromosomal divergence and speciation in two families of North American fishes. fi Evolution, 31: 1–13. A– 108 Andreata, A.A., Oliveira, C. and Foresti, F. (2006) Karyological characterization of four Neotropical fish species of the genus Hisonotus (Teleostei, Loricariidae, Hypoptopomatinae) from distinct Brazilian river basins. Genet. Mol. Biol., 29: 62–66. A– 109 Artoni, R.F. and Bertollo, L.A.C. (2001) Trends in the karyotype evolution of Loricariidae fish (Siluriformes). Hereditas, 134: 201–210. A– 110 Asahida, T. and Ida, H. (1995) Karyotype and cellular DNA content of a guitarfish, fi Rhinobatos schlegelii. La Kromosomo, II, 79/80: 2725–2730. A– 111 Alves, M.J., Coelho, M.M. and Collares-Pereira, M.J. (2001) Evolution in action through hybridisation and polyploidy in an Iberian freshwater fish: a genetic review. Genetica, 111: 375–385. A– 112 Alves, A.L., Oliveira, C., Nirchio, M., Granado, A. and Foresti, F. (2006) Karyotypic relationships among the tribes of Hypostominae (Siluriformes: Loricariidae) with description of XO sex chromosome system in a Neotropical fish fi species. Genetica, 128: 1–9. A– 113 Almeida-Toledo, L.F., Daniel-Silva, M.F.Z., Lopes, C.E. and Toledo-Filho, S.A. (2000) Sex chromosome evolution in fish. II. Second occurrence of an X1X2Y sex chromosome system in Gymnotiformes. Chrom. Res., 8: 335–340. A– 114 Almeida-Toledo, L.F., Foresti, F., Péquignot, E.V. and Daniel-Silva, M.F.Z. (2001) XX: XY sex chromosome system with X heterochromatinization: an early stage of sex chromosome differentiation in the Neotropic electric eel Eigenmannia virescens. Cytogenet. Cell Genet., 95: 73–78. A– 115 Almeida-Toledo, L.F., Daniel-Silva, M.F.Z., Moyses, C.B., Fonteles, S.B.A., Lopes, C.E., Akama, A. and Foresti, F. (2002) Chromosome evolution in fish: fi sex chromosome variability in Eigenmannia virescens (Gymnotiformes: Sternopygidae). Cytogenet. Genome Res., 99: 164–169. A– 116 Almeida-Toledo, L.F., Foresti, F., Daniel, M.F.Z. and Toledo-Filho, S.A. (2000) Sex chromosome evolution in fish: the formation of the neo-Y chromosome in Eigenmannia (Gymnotiformes). Chromosoma, 109: 197–200. A– 117 Artoni, R.F., Falcão, J.D.N., Moreira-Filho, O. and Bertollo, L.A.C. (2001) An uncommon condition for a sex chromosome system in Characidae fish. fi Distribution and differentiation of the ZZ/ZW system in Triportheus. Chrom. Res., 9: 449–456. A– 118 Arefjev, V.A. and Karnauchov, G.I. (1989) Species-specificity fi of electrophoretic patterns of haemoglobin and uniformity of karyotypes in fishes, genus Abramis (Pisces: Cyprinidae). Biochem. Syst. Ecol., 17: 479–488.
222
References
A– 119 Artoni, R.F., Vicari, M.R., Endler, A.L., Cavallaro, Z.I., Jesus, C.M., Almeida, M.C., Moreira-Filho, O. and Bertollo, L.A.C. (2006) Banding pattern of A and B chromosomes off Prochilodus lineatus (Characiformes, Prochilodontidae), with comments on B chromosomes evolution. Genetica, 127: 277–284. A– 120 Azevedo, M.F.C., Oliveira, C., Pardo, B.G., Martinez, P. and Foresti, F. (2007) Cytogenetic characterization of six species of flatfi fl fishes with comments to karyotype differentiation patterns in Pleuronectiformes (Teleostei). J. Fish Biol., 70 (suppl. A): 1–15. A– 121 Azevedo, M.F.C., Oliveira, C., Pardo, B.G., Martinez, P. and Foresti, F. (2005) Chromosome banding and 18S rDNA in situ hybridization analysis of seven species of the family Achiridae (Teleostei: Pleuronectiformes). Genetica, 125: 125–132. A– 122 Adriano Moreira, P.W., Bertollo, L.A.C. and Moreira-Filho, O. (2007) Comparative cytogenetics between three Characidae fish fi species from the Sao Francisco River basin. Caryologia, 60: 64–68. A– 123 Arai, R. (1981) Fishes of Luciogobius and Inu (Gobiidae) from the Izu Peninsula, Central Japan. Mem. Natn. Sci. Mus. Tokyo, 14: 151–166. (In Japanese with English summary) A– 124 Accioly, I.V. and Molina, W.F. (2008) Cytogenetic studies in Brazilian marine Sciaenidae and Sparidae (Perciformes). Genet. Mol. Res., 7: 358–370. A– 125 Almeida-Toledo, L.F., Daniel-Silva, M.F.Z., Moysés, C.B. and Foresti, F. (2007) Chromosome variability in Gymnotiformes (Teleostei: Ostariophysi). In: Pisano, E., OzoufCostaz, C., Foresti, F. and Kapoor, B.G. eds. Fish cytogenetics. Science Publishers, Enfi field, pp. 17–39. A– 126 Alves, A.L., Porto-Foresti, F., Oliveira, C. and Foresti, F. (2008) Supernumerary chromosomes in the pufferfish fi Sphoeroides spengleri—First occurrence in marine teleostean Tetraodontiformes fish. Genet. Mol. Biol., 31 (suppl.): 243–245. A– 127 Arratia, G. and Campos, H. (1997) Karyotypes of diplomystid and certain loricarioid catfishes. fi International symposium on phylogeny and classifi fication of neotropical fishes and neotropical ichthyological association 9th annual meeting. Porto Alegre, Brazil. Program and Abstracts, pp. 53–54. A– 128 Adriano, M.P.W., Bertollo, L.A.C. and Moreira-Filho, O. (2006) Karyotypic characterization of Myleus micans (Lütken, 1875) (Pisces, Characidae, Serrasalminae). Caryologia, 59: 125–130. A– 129 Almeida-Toledo, L.F., Foresti, F., Toledo, S.A., Bernardino, G., Ferrari, W. and Alcantara, R.C.G. (1987) Cytogenetic studies of Colossoma mitrei, Colossoma macropomum and their interspecific fi hybrid. Proc. World symp. On selection, hybridization, and genetic engineering in aquaculture, Vol. I, pp. 189–195. A– 130 Almeida Toledo, L.F., Foresti, F. and Toledo Filho, S.A. (1984) Complex sex chromosome system in Eigenmannia sp. (Pisces, Gymnotiformes). Genetica, 64: 165–169. A– 131 Almeida-Toledo, L.F., Stocker, A.J., Foresti, F. and Toledo-Filho, S.A. (1996) Fluorescence in situ hybridization with rDNA probes on chromosomes of two nucleolus organizer region phenotypes of a species off Eigenmannia (Pisces, Gymnotoidei, Sternopygidae). Chrom. Res., 4: 301–305. A– 132 Artoni, R.F. and Bertollo, L.A.C. (1999) Nature and distribution of constitutive heterochromatin in fishes, genus Hypostomus (Loricariidae). Genetica, 106: 209–214. A– 133 Artoni, R.F., Molina, W.F., Bertollo, L.A.C. and Galetti Jr., P.M. (1999) Heterochromatin analysis in the fi fish species Liposarcus anisitsi (Siluriformes) and Leporinus elongatus (Characiformes). Genet. Mol. Biol., 22: 39–44. [B] B–
1
Bachmann, K., Goin, O.B. and Goin, C.J. (1972) The nuclear DNA of Polypterus palmas. Copeia, 1972: 363–365.
References
B–
2
B–
3
B–
4
B–
5
B–
6
B–
7
B–
8
B–
9
B– 10 B– 11
B– 12
B– 13 B– 14 B– 15
B– 16 B– 17
B– 18
B– 19
B– 20
223
Banerjee, S.K., Misra, K.K., Banerjee, S. and Ray-Chaudhuri, S.P. (1988) Chromosome numbers, genome sizes, cell volumes and evolution of snake-head fish fi (family Channidae). J. Fish Biol., 33: 781–789. Barat, A. and Khuda-Bukhsh, A.R. (1984) Karyomorphology of a sea-frog Tetraodon fl fluviatilis (Tetraodontidae, Pisces). Curr. Sci., 53: 1108–1109. Barat, A. and Khuda-Bukhsh, A.R. (1986) Karyomorphometrical studies in two species of fishes, Lepidocephalichthys guntea (fam.: Cobitidae) and Mystus corsula (fam.: Bagridae). Perspect. Cytol. Genet., 5: 115–118. Barat, A., Sahoo, P.K., Nagpure, N.S. and Ponniah, A.G. (1997) Variation in NOR pattern in different populations of Schizothorax richardsonii (Cyprinidae: Pisces). Cytobios, 91: 181–185. Barker, C.J. (1972) A method for the display of chromosomes of plaice, Pleuronectes platessa, and other marine fishes. Copeia, 1972: 365–368. Barssˇiene, J.V. (1977) The karyotype of dwarf males of Salmo salarr L. from the Neva population. Tsitologiya, 19: 906–913. (In Russian with English summary) Barssˇiene, J.V. (1977) Variability of chromosome sets in cells of various organs and tissues of the Atlantic salmon Salmo salarr L. Tsitologiya, 19: 791–797. (In Russian with English summary) Barssˇiene, J.V. (1980) Mechanism of ontogenic variability of chromosome sets in Atlantic salmon (Salmo salarr L.). In: Kirpichnikov, V.S. ed. Karyological variability, mutagenesis and gynogenesis in fi fishes. Inst. Cytol. Acad. Sci. USSR, Leningrad, pp. 3–9. (In Russian with English summary) Baruffaldi, A. and Cucchi, C. (1988) Karyological analysis in Ictalurus nebulosus marmoratus and Ictalurus species (Siluriformes: Ictaluridae). Cytobios, 54: 191–194. Beamish, R.J. and Tsuyuki, H. (1971) A biochemical and cytological study of the longnose sucker (Catostomus catostomus) and large and dwarf forms of the white sucker (Catostomus commersoni). J. Fish. Res. Board Can., 28: 1745–1748. Beamish, R.J., Merrilees, M.J. and Crossman, E.J. (1971) Karyotypes and DNA values for members of the suborder Esocoidei (Osteichthyes: Salmoniformes). Chromosoma, 34: 436–447. Beamish, R.J. and Miller, R.R. (1977) Cytotaxonomic study of gila trout, Salmo gilae. J. Fish. Res. Board Can., 34: 1041–1045. Beamish, R.J. and Uyeno, T. (1978) Karyotype of Hiodon tergisus and DNA values of Hiodon tergisus and Hiodon alosoides. Chrom. Inform. Serv., 24: 5–7. Beçak, W., Beçak, M.L. and Ohno, S. (1966) Intraindividual chromosomal polymorphism in green sunfish fi (Lepomis cyanellus) as evidence of somatic segregation. Cytogenetics, 5: 313–320. Berberovicc´, Lj., Hadziselimovic, R. and Sofradzzˇija, A. (1969) Chromosome number of the species Paraphoxinus alepidotus (Heckel). Bull. Sci. Yougoslavie, Sec. A, 14: 386. Berberovicc´, Lj., Hadziselimovic, R. and Sofradzzˇija, A. (1970) Comparative review of the basic data on the chromosome complements of Chondrostoma phoxinus Heckel and Chondrostoma kneri Heckel. Ichthyologia, 2(1): 25–30. (In Serbo-Croatian with English summary) Berberovicc´ , Lj., Curic, M., Hadziselimovic, R. and Sofradzzˇija, A. (1970) Chromosome complement of Salmothymus obtusirostris oxyrhynchus (Steindachner). Genetika, Acta Biol. Iugoslavica, 2: 55–63. Berberovicc´ , Lj. and Sofradzzˇija, A. (1972) A review of the caryological data regarding freshwater fishes of Yugoslavia. Ichthyologia, 4(3): 1–21. (In Serbo-Croatian with English summary) Berberovicc´, Lj., Hadziselimovic, R., Pavlovic, B. and Sofradzzˇija, A. (1973) Chromosome set of the species Aulopyge hugeli Heckel 1841. Bull. Sci. Yougoslavie, Sec. A, 18: 10–11.
224
References
B– 21
Berberovicc´ , Lj. and Sofradzzˇija, A. (1974) Basic data about diploid chromosome complement of Phoxinus phoxinus (Cyprinidae, Pisces). Bull. Sci. Yougoslavie, Sec. A, 19: 142–143. Berberovicc´ , Lj., Sofradzzˇija, A. and Obradovic, S. (1975) Chromosome complement of Ictalurus nebulosus (Le Sueur), Ictaluridae, Pisces. Bull. Sci. Yougoslavie, Sec. A, 20: 149–150. Berberovicc´ , Lj., Sofradzzˇija, A. and Vagner, Lj. (1978) The chromosomes of kinch (Tinca tinca). Ichthyologia, 10(1): 9–15. (In Serbo-Croatian with English summary) Berberovicc´ , Lj. and Sofradzzˇija, A. (1974) The chromosomes of the species Cottus gobio L. (Cottidae, Pisces). God. Biol. Inst. Univ. Sarajevu, 27: 5–15. (In Serbo-Croatian with English summary) Berdyshev, G.D. and Arkhipchuk, V.V. (1985) Method of chromosome preparation from the tissue of phytophagous fishes. fi Hydrobiol. J., 21(1): 61–66. (In Russian with English summary) Berdyshev, G.D. and Arkhipchuk, V.V. (1986) Characteristics of karyotypes and corresponding evolutionary transformations in various taxa of Pisces. Progress Modern Biol., 1986(1): 30–42. (In Russian) Bermejo, J.V.D. and Millán, M.M. (1988) Chromosomes of Valencia lozanoi (Pisces, Cyprinodontidae). Cytobios, 54: 149–152. Berrebi, P. and Ráb, P. (1998) The ‘Barbus’ intermedius species flock fl in Lake Tana (Ethiopia): III-Cytogenetic and molecular genetic data. Ital. J. Zool., 15 (suppl), 15– 20. Bertollo, L.A.C., Takahashi, C.S. and Moreira Filho, O. (1978) Cytotaxonomic considerations on Hoplias lacerdae (Pisces, Erythrinidae). Brazil. J. Genet., 1: 103–120. Bertollo, L.A.C., Takahashi, C.S. and Moreira Filho, O. (1979) Karyotypic studies of two allopatric populations of the genus Hoplias (Pisces, Erythrinidae). Brazil. J. Genet., 2: 17–37. Bertollo, L.A.C., Takahashi, C.S. and Moreira Filho, O. (1983) Multiple sex chromosomes in the genus Hoplias (Pisces: Erythrinidae). Cytologia, 48: 1–12. Bertollo, L.A.C., Moreira-Filho, O. and Galetti Jr., P.M. (1986) Cytogenetics and taxonomy: considerations based on chromosome studies of freshwater fish. fi J. Fish Biol., 28: 153–159. Bertollo, L.A.C. (1996) The nucleolar organizer regions of Erythrinidae fi fish. An uncommon situation in the genus Hoplias. Cytologia, 61: 75–81. Bertollo, L.A.C., Fontes, M.S., Fenocchio, A.S. and Cano, J. (1997) The X1X2Y sex chromosome system in the fish fi Hoplias malabaricus. I. G-, C- and chromosome replication banding. Chrom. Res., 5: 493–499. Bertollo, L.A.C., Oliveira, C., Molina, W.F., Margarido, V.P., Fontes, M.S., Pastori, M.C., Falcão, J. N. and Fenocchio, A.S. (2004) Chromosome evolution in the erythrinid fish, fi Erythrinus erythrinus (Teleostei: Characiformes). Heredity, 93: 228–233. Bianco, P.G., Aprea, G., Balletto, E., Capriglione, T., Fulgione, D. and Odierna, G. (2004) The karyology of the cyprinid genera Scardinius and Rutilus in southern Europe. Ichthyol. Res., 51: 274–278. Birstein, V.J. and Vasiliev, V.P. (1987) Tetraploid-octoploid relationships and karyological evolution in the order Acipenseriformes (Pisces). Karyotypes, nucleoli, and nucleolusorganizer regions in four acipenserid species. Genetica, 72: 3–12. Black, D.A. and Howell, W.M. (1978) A distinctive chromosomal race of the cyprinodontid fish, Fundulus notatus, from the Upper Tombigbee River system of Alabama and Mississippi. Copeia, 1978: 280–288. Black, D.A. and Howell, W.M. (1979) The North American mosquitofish, fi Gambusia affinis fi : a unique case in sex chromosome evolution. Copeia, 1979: 509–513.
B– 22
B– 23 B– 24
B– 25
B– 26
B– 27 B– 28
B– 29 B– 30
B– 31 B– 32
B– 33 B– 34
B– 35
B– 36
B– 37
B– 38
B– 39
References
225
B– 40 Blaxhall, P.C. (1983) Chromosome karyotyping of fi fish using conventional and G-banding methods. J. Fish Biol., 22: 417–424. B– 41 Bogart, J.P., Balon, E.K. and Bruton, M.N. (1994) The chromosomes of the living coelacanth and their remarkable similarity to those of one of the most ancient frogs. J. Heredity, 85: 322–325. B– 42 Bolla, S. (1987) Cytogenetic studies in Atlantic salmon and rainbow trout embryos. Hereditas, 106: 11–17. B– 43 Booke, H.E. (1968) Cytotaxonomic studies of the coregonine fishes fi of the Great Lakes, USA: DNA and karyotype analysis. J. Fish. Res. Board Can., 25: 1667–1687. B– 44 Booke, H.E. (1974) A cytotaxonomic study of the round whitefi fishes, genus Prosopium. Copeia, 1974: 115–119. B– 45 Booke, H.E. (1975) Cytotaxonomy of the salmonid fish fi Stenodus leucichthys. J. Fish. Res. Board Can., 32: 295–296. B– 46 Borin, L.A. and Martins-Santos, I.C. (2002) Cytogenetic aspects in species of the genus Pimelodus (Pisces, Siluriformes, Pimelodidae) of the River Paraná basin. Cytologia, 67: 199–204. B– 47 Borin, L.A. and Martins-Santos, I.C. (2004) Study on karyotype and occurrence of B chromosomes in two endemic species of the genus Pimelodus (Siluriformes, Pimelodidae) from the river Iguaçu. Hereditas, 140: 201–209. B– 48 Boron n´ , A. (1992) Karyotype study of diploid and triploid Cobitis taenia (Pisces, Cobitididae) from Vistula river basin. Cytobios, 72: 201–206. B– 49 Boron n´ , A. (1994) Use of erythrocyte measurements to detect natural triploids of spined loach Cobitis taenia (L.). Cytobios, 78: 197–202. B– 50 Boron n´ , A. (1994) Karyotypes of diploid and triploid silver crucian carp Carassius auratus gibelio (Bloch). Cytobios, 80: 117–124. B– 51 Boron n´ , A. (1995) Chromosome banding studies of Noemacheilus barbatulus (Linnaeus, 1758) from Poland. Caryologia, 48: 239–246. B– 52 Boron n´ , A. (1995) Chromosome banding studies of spined loach Cobitis taenia (L.). Cytobios, 81: 97–102. B– 53 Bouza, C., Sanchez, L. and Martinez, P. (1994) Karyotypic characterization of turbot (Scophthalmus maximus) with conventional, fluorochrome fl and restriction endonuclease-banding techniques. Mar. Biol., 120: 609–613. B– 54 Bozhko, S.I., Horváth, Á. and Mészáros, B. (1976) Karyological examinations for four species of Cyprinidae from Hungary. Acta Biol. Debrecina, 13: 237–254. B– 55 Brum, M.J.I., Galetti Jr., P.M., Oliveira Corrêa, M.M. and Aguilar, C.T. (1992) Multiple sex chromosomes in South Atlantic fish, Brevoortia aurea, Clupeidae. Brazil. J. Genet., 15: 547–553. B– 56 Brum, M.J.I., Oliveira, C.C. and Galetti Jr., P.M. (1995) Cytogenetic studies of two puffer species (Sphoeroides, Tetraodontidae) from Rio de Janeiro Coast, Brazil. Cytologia, 60: 369–374. B– 57 Brum, M.J.I. (2000) Cytogenetic studies in tetraodontiforms Sphoeroides tylerii (Tetraodontidae) and Chilomycterus spinosus (Diodontidae) from Rio de Janeiro Coast, Brazil. Chrom. Sci., 4: 103–105. B– 58 Brum, M.J.I., Affonso, P.R.A.M., Mota, L.C.G., Pauls, E. and Netto, M.R.C.B. (2001) Cytogenetic characterization of Porichthys porosissimus (Valenciennes, 1857) (Batrachoididae, Batrachoidiformes) from the Rio de Janeiro Coast, Brazil. Chrom. Sci., 5: 15–18. B– 59 Brum, M.J.I., Corrêa, M.M.O. and Aguilar, C.T. (2001) Karyotype analysis in South Atlantic perciforms Micropogonias furnieri and Abudefduf saxatilis. Chrom. Sci., 5: 83–89. B– 60 Busack, C.A., Thorgaard, G.H., Bannon, M.P. and Gall, G.A.E. (1980) An electrophoretic, karyotypic and meristic characterization of the Eagle Lake trout, Salmo gairdneri aquilarum. Copeia, 1980: 418–424.
226
References
B– 61 Bertollo, L.A.C., Born, G.G., Dergam, J.A., Fenocchio, A.S. and Moreira-Filho, O. (2000) A biodiversity approach in the neotropical Erythrinidae fish, fi Hoplias malabaricus. Karyotypic survey, geographic distribution of cytotypes and cytotaxonomic considerations. Chrom. Res., 8: 603–613. B– 62 Boron n´ , A. (2001) Comparative chromosomal studies on two minnow fish, Phoxinus phoxinus (Linnaeus, 1758) and Eupallasella perenurus (Pallas, 1814); an associated cytogenetic-taxonomic considerations. Genetica, 111: 387–395. B– 63 Benirschke, K. and Hsu, T.C. (eds) (1971) Chromosome atlas: Fish, amphibians, reptiles and birds. Volume 1. Springer-Verlag, Berlin. B– 64 Benirschke, K. and Hsu, T.C. (eds) (1973) Chromosome atlas: Fish, amphibians, reptiles and birds. Volume 2. Springer-Verlag, Berlin. B– 65 Brum, M.J.I., Corrêa, M.M.O., Oliveira, C.C. and Galetti Jr., P.M. (1995) Cytogenetic studies on the Perciformes Orthopristis ruberr (Haemulidae) and Scartella cristata (Blenniidae). Caryologia, 48: 309–318. B– 66 Boron, A., Porycka, K., Ito, D., Abe, S. and Kirtiklis, L. (2009) Comparative molecular cytogenetic analysis of three Leuciscus species (Pisces, Cyprinidae) using chromosome banding and FISH with rDNA. Genetica, 135: 199–207. B– 67 Borin, L.A., Martins-Santos, I.C. and Oliveira, C. (2002) A natural triploid in Trichomycterus davisi (Siluriformes, Trichomycteridae): mitotic and meiotic characterization by chromosome banding and synaptonemal complex analyses. Genetica, 115: 253–258. B– 68 Birstein, V.J., Poletaev, A.I. and Goncharov, B.F. (1993) DNA content in Eurasian sturgeon species determined by flow fl cytometry. Cytometry, 14: 377–383. B– 69 Blacklidge, K.H. and Bidwell, C.A. (1993) Three ploidy levels indicated by genome quantification fi in Acipenseriformes of North America. J. Heredity, 84: 427–430. B– 70 Biavati, S.H. and Maistro, E.L. (2007) Cytogenetical analyses in three Astyanax scabripinnis populations (Pisces, Characidae) from Minas Gerais State, Brazil. Cytologia, 72: 357–361. B– 71 Brown, N.P., Bromage, N.R. and Penman, D.J. (1997) The karyotype of the Atlantic halibut, Hippoglossus hippoglossus (Linnaeus). Aquacult. Res., 28: 489–491. B– 72 Bohlen, J., Völker, M., Rábová, M. and Ráb, P. (2008) Note on the banded karyotype of the enigmatic South Asian loach Vaillantella maassi (Cypriniformes: Vaillantellidae). Ichthyol. Res., 55: 82–84. B– 73 Barat, A. and Sahoo, P.K. (2007) Karyotype analysis of Channa punctatus (Pisces) using restriction endonucleases. Cytologia, 72: 471–473. B– 74 Brassesco, M.S., Pastori, M.C., Roncati, H.A. and Fenocchio, A.S. (2004) Comparative cytogenetic studies of Curimatidae (Pisces, Characiformes) from the middle Paraná River (Argentina). Genet. Mol. Res., 3: 293–301. B– 75 Brainerd, E.L., Slutz, S.S., Hall, E.K. and Phillis, R.W. (2001) Patterns of genome size evolution in tetraodontiform fishes. fi Evolution, 55: 2363–2368. B– 76 Born, G.G. and Bertollo, L.A.C. (2000) An XX/XY sex chromosome system in a fish fi species, Hoplias malabaricus, with a polymorphic NOR-bearing X chromosome. Chrom. Res., 8: 111–118. B– 77 Born, G.G. and Bertollo, L.A.C. (2001) Comparative cytogenetics among allopatric populations of the fish, Hoplias malabaricus. Cytotypes with 2n = 42 chromosomes. Genetica, 110: 1–9. B– 78 Bertollo, L.A.C. (2007) Chromosome evolution in the neotropical Erythrinidae fish fi family: an overview. In: Pisano, E., Ozouf-Costaz, C., Foresti, F. and Kapoor, B.G. eds. Fish cytogenetics. Science Publisher, Enfield, fi pp. 195–211. B– 79 Borin, L.A. and Martins-Santos, I.C. (2000) Intra-individual numerical chromosomal polymorphism in Trichomycterus davisi (Siluriformes, Trichomycteridae) from the Iguaçu River basin in Brazil. Genet. Mol. Biol., 23: 605–607.
References
B– 80
B– 81
B– 82
B– 83 B– 84 B– 85
B– 86
[C] C– 1 C–
2
C–
3
C–
4
C–
5
C–
6
C–
7
C–
8
C–
9
C– 10
C– 11
C– 12
C– 13
227
Borin, L.A. and Martins-Santos, I.C. (1999) Karyotype characterization of three species of the genus Trichomycterus (Teleostei, Siluriformes) from Iguaçu river basin. Genetica, 106: 215–221. Bellafronte, E., Margarido, V.P. and Moreira-Filho, O. (2005) Cytotaxonomy of Parodon nasus and Parodon tortuosus (Pisces, Characiformes). A case of synonymy confirmed fi by cytogenetic analyses. Genet. Mol. Biol., 28: 710–716. Benzaquem, D.C., Feldberg, E., Porto, J.I.R., Gross, M.C. and Zuanon, J.A.S. (2008) Cytotaxonomy and karyoevolution of the genus Crenicichla (Perciformes, Cichlidae). Genet. Mol. Biol., 31 (suppl.): 250–255. Busack, C.A. and Thorgaard, G.H. (1980) Karyotype of the Sacramento perch, Archoplites interruptus. Calif. Fish Game, 66: 189–191. Bozhko, S.I., Meszaros, B. and Tóth, E. (1978) The karyological studies on some species of Percidae. Ichthyologia, 10: 17–28. Brinn, M.N.A., Porto, J.I.R. and Feldberg, E. (2004) Karyological evidence for interspecifi fic hybridization between Cichla monoculus and C. temensis (Perciformes, Cichlidae) in the Amazon. Hereditas, 141: 252–257. Brum, M.J.I. (1996) Cytogenetic studies of Brazilian marine fi fish. Brazil. J. Genet., 19: 421–427.
Chiarelli, A.B. and Capanna, E. (eds) (1973) Cytotaxonomy and vertebrate evolution. Academic Press, London. Camacho, J.P.M., Sharbel, T.F. and Beukeboom, L.W. (2000) B-chromosome evolution. Phil. Trans. R. Soc. London, (B), 355: 163–178. Camilo, F.M. and Moreira Filho, O. (2005) Karyotypic description of Corumbataia cuestae (Pisces, Loricariidae, Hypoptopomatinae). Cytologia, 70: 47–51. Campos, H.H. and Hubbs, C. (1971) Cytomorphology of six species of gambusiine fi fishes. Copeia, 1971: 566–569. Campos, H.H. (1972) Karyology of three galaxiid fi fishes Galaxias maculatus, G. platei, and Brachygalaxias bullocki. Copeia, 1972: 368–370. Campos, H.H. and Hubbs, C. (1973) Taxonomic implications of the karyotype of Opsopoeodus emiliae. Copeia, 1973: 161–163. Campos, H.H., Arratia, G. and Cuevas, C. (1997) Karyotypes of the most primitive catfi fishes (Teleostei: Siluriformes: Diplomystidae). J. Zool. Syst. Evol. Res., 35: 113– 119. Cano, J., Thode, G. and Sánchez, M.L. (1982) Estudio cariológico en dos especies de Serránidos del Mediterráneo (Peces: Perciformes). Doñana, Acta Vertebrata, 9: 5– 12. Cano, J., Thode, G. and Alvarez, M.C. (1982) Karyoevolutive considerations in 29 Mediterranean teleost fishes. fi Vie Milieu, 32: 21–24. Cano, J., Alvarez, M.C., Thode, G. and Muñoz, E. (1982) Phylogenetic interpretation of chromosomal and nuclear-DNA-content data in the genus Blennius (Blenniidae: Perciformes). Genetica, 58: 11–16. Cano, J., Pretel, A., Melendez, S., Garcia, F., Caputo, V., Fenocchio, A.S. and Bertollo, L.A.C. (1996) Determination of early stages of sex chromosome differentiation in the sea bass Dicentrarchus labrax L. (Pisces: Perciformes). Cytobios, 87: 45–59. Cao, F.J., Li, C.L. and Liu, C.W. (2002) Studies on the karyotypes of Lutjanus erythopterus, Lutjanus argentimaculatus and Lutjanus bohar. Marine Sciences (Beijing), 26 (11): 43–46. (In Chinese with English abstract) Capanna, E. and Cataudella, S. (1973) The chromosomes of Calamoichthys calabaricus (Pisces, Polypteriformes). Experientia, 29: 491–492.
228
References
C– 14 Caputo, V., Marchegiani, F. and Olmo, E. (1996) Karyotype differentiation between two species of carangid fishes, genus Trachurus (Perciformes: Carangidae). Mar. Biol., 127: 193–199. C– 15 Caputo, V., Vitturi, R., Odierna, G., Cano, J., Olmo, E. and Colomba, M.S. (1996) Characterization of mitotic chromosomes in the gobiid fi fish Zosterisessor ophiocephalus (Pallas, 1811) (Perciformes, Gobiidae). Biol. Zentralbl., 115: 328–336. C– 16 Caputo, V., Sorice, M., Vitturi, R., Magistrelli, R. and Olmo, E. (1998) Cytogenetic studies in some species of Scorpaeniformes (Teleostei: Percomorpha). Chrom. Res., 6: 255–262. C– 17 Caputo, V. (1998) Nucleolar organizer (NOR) location and cytotaxonomic implications in six species of gobiid fishes fi (Perciformes, Gobiidae). Ital. J. Zool., 65: 93–99. C– 18 Caputo, V., Caniglia, M.L. and Machella, N. (1999) The chromosomal complement of Aphia minuta, a paedomorphic goby. J. Fish Biol., 55: 455–458. C– 19 Caputo, V., Machella, N., Nisi-Cerioni, P. and Olmo, E. (2001) Cytogenetics of nine species of Mediterranean blennies and additional evidence for an unusual multiple sex-chromosome system in Parablennius tentacularis (Perciformes, Blenniidae). Chrom. Res., 9: 3–12. C– 20 Caputo, V., Nisi Cerioni, P., Splendiani, A., Capriglione, T., Odierna, G. and Olmo, E. (2002) Chromosomal studies on ten species of notothenioid fi fishes (Notothenioidei: Bathydraconidae, Channichthyidae, Nototheniidae). Cytogenet. Genome Res., 98: 285–290. C– 21 Caputo, V., Splendiani, A., Nisi Cerioni, P. and Olmo, E. (2003) The chromosomal complement of the artedidraconid fish fi Histiodraco veliferr (Perciformes: Notothenioidei) from Terra Nova Bay, Ross Sea. Cytogenet. Genome Res., 101: 29–32. C– 22 Caputo, V., Colomba, M., Nisi Cerioni, P., Vitturi, R., Giovannotti, M. and Olmo, E. (2003) Chromosome banding and molecular cytogenetic study of two Mediterranean trachinoid fish species (Teleostei: Trachinidae, Uranoscopidae). Cytogenet. Genome Res., 103: 139–143. C– 23 Caputo, V., Nisi Cerioni, P., Caniglia, M.L. and Giovannotti, M. (2003) Chromosomal studies of five fi tropical scorpaeniform fishes (Teleostei, Scorpaenidae). Ital. J. Zool., 70: 201–204. C– 24 Carbone, P., Vitturi, R., Catalano, E. and Macaluso, M. (1987) Chromosome sex determination and Y-autosome fusion in Blennius tentacularis Brunnich, 1765 (Pisces, Blenniidae). J. Fish Biol., 31: 597–602. C– 25 Carvalho, M.L., Oliveira, C. and Foresti, F. (2001) Cytogenetic analysis of three species of the families Characidae and Curimatidae (Teleostei, Characiformes) from the Acre River. Chrom. Sci., 5: 91–96. C– 26 Carvalho, M.L., Oliveira, C. and Foresti, F. (2002) Cytogenetic analysis of fi five species of the subfamily Tetragonopterinae (Teleostei, Characiformes, Characidae). Caryologia, 55: 181–188. C– 27 Capistano, T.G., Castro, A.L.B.P. and Julio-Junior, H.F. (2008) Chromosome divergence and NOR polymorphism in Bryconamericus aff. iheringii (Teleostei, Characidae) in the hydrographic systems of the Paranapanema and Ivai rivers, Paraná, Brazil. Genet. Mol. Biol., 31 (suppl.): 203–207. C– 28 Catalano, E., Vitturi, R., Zava, B. and Macaluso, M. (1985) Ritrovamento di Parablennius pilicornis (Cuvier, 1829) nelle acque italiane e suo cariotipo. Atti Soc. Ital. Sci. nat. Museo civ. Stor. nat. Milano, 126: 155–164. C– 29 Catalano, E., Vitturi, R. and Valvo, M.L. (1988) Osservazioni morfologiche e cariologiche su Symphodus doderleini Jordan, 1891 del golfo di Palermo. Atti Soc. Ital. Sci. nat. Museo civ. Stor. nat. Milano, 129: 261–271. C– 30 Cataudella, S. and Capanna, E. (1973) Chromosome complements of three species of Mugilidae (Pisces, Perciformes). Experientia, 29: 489–491.
References
229
C– 31 Cataudella, S., Civitelli, M.V. and Capanna, E. (1973) The chromosomes of some Mediterranean teleosts: Scorpaenidae, Serranidae, Labridae, Blenniidae, Gobiidae (Pisces– Scorpaeniformes, Perciformes). Boll. Zool., 40: 385–389. C– 32 Cataudella, S., Civitelli, M.V. and Capanna, E. (1974) Chromosome complements of the Mediterranean mullets (Pisces Perciformes). Caryologia, 27: 93–105. C– 33 Cataudella, S. and Civitelli, M.V. (1975) Cytotaxonomical consideration of the genus Blennius (Pisces-Perciformes). Experientia, 31: 167–169. C– 34 Cataudella, S., Sola, L., Accame Muratori, R. and Capanna, E. (1977) The chromosomes of 11 species of Cyprinidae and one Cobitidae from Italy, with some remarks on the problem of polyploidy in the Cypriniformes. Genetica, 47: 161–171. C– 35 Cataudella, S. and Sola, L. (1977) Sex chromosomes of the mosquitofish fi (Gambusia affinis fi ): an interesting problem for American ichthyologists. Copeia, 1977: 382–384. C– 36 Cataudella, S., Perin Riz, P. and Sola, L. (1980) A chromosome study of eight Mediterranean species of Sparidae (Pisces, Perciformes). Genetica, 54: 155–159. C– 37 Cavallaro, Z.I., Bertollo, L.A.C., Perfectti, F. and Camacho, J.P.M. (2000) Frequency increase and mitotic stabilization of a B chromosome in the fish fi Prochilodus lineatus. Chrom. Res., 8: 627–634. C– 38 Cavender, T.M. and Kimura, S. (1989) Cytotaxonomy and interrelationships of Pacific fi basin Salvelinus. Physiol. Ecol. Japan, Spec. vol. 1: 49–68. C– 39 Centofante, L., Bertollo, L.A.C., Justi, Á.J. and Moreira-Filho, O. (2003) Correlation of chromosomal and morphologic characters in two Astyanax species (Teleostei: Characidae). Ichthyol. Explor. Freshwaters, 14: 361–368. C– 40 Centofante, L., Bertollo, L.A.C., Miyazawa, C.S. and Moreira-Filho, O. (2003) Chromosomal differentiation among allopatric populations of Hyphessobrycon anisitsi (Pisces, Tetragonopterinae). Cytologia, 68: 283–288. C– 41 Cestari, M.M. and Galetti Jr., P.M. (1992) Chromosome studies of Serrasalmus spilopleura (Characidae, Serrasalminae) from the Paraná-Paraguay rivers: evolutionary and cytotaxonomic considerations. Copeia, 1992: 108–112. C– 42 Chakraborty, S.K. and Kagwade, P.V. (1989) Somatic chromosomes of two marine teleosts. In: Das, P. and Jhingran, A.G. eds. Fish Genetics in India. Today & Tomorrow’s Printers and Publishers, New Delhi, pp. 63–68. C– 43 Chen, J.H., Zhao, Z.A. and Li, K.B. (1984) Karyotype of Trachidermus fasciatus Heckel. Zool. Res., 5: 103–104. (In Chinese) C– 44 Chen, M.R. and Chen, H.X. (1983) A comparative study of karyotypes in three Tilapia fishes. Acta Genet. Sinica, 10: 56–62. (In Chinese with English abstract) C– 45 Chen, T.R. and Ebeling, A.W. (1966) Probable male heterogamety in the deep-sea fi fish Bathylagus wesethi (Teleostei: Bathylagidae). Chromosoma, 18: 88–96. C– 46 Chen, T.R. (1967) Comparative karyology of selected deep-sea and shallow-water teleost fishes. Ph. D. Thesis, Yale University. C– 47 Chen, T.R. and Ebeling, A.W. (1968) Karyological evidence of female heterogamety in the mosquitofish, fi Gambusia affinis fi . Copeia, 1968: 70–75. C– 48 Chen, T.R. (1969) Karyological heterogamety of deep-sea fi fishes. Postilla, 130: 1–29. C– 49 Chen, T.R. and Ruddle, F.H. (1970) A chromosome study of four species and a hybrid of the killifi fish genus Fundulus (Cyprinodontidae). Chromosoma, 29: 255–267. C– 50 Chen, T.R. and Reisman, H.M. (1970) A comparative chromosome study of the North American species of sticklebacks (Teleostei: Gasterosteidae). Cytogenetics, 9: 321–332. C– 51 Chen, T.R. (1970) Fish chromosome preparation: air-dried displays of cultured ovarian cells in two killifishes fi (Fundulus). J. Fish. Res. Board Can., 27: 158–161. C– 52 Chen, T.R. (1971) A comparative chromosome study of twenty killifish fi species of the genus Fundulus (Teleostei: Cyprinodontidae). Chromosoma, 32: 436–453.
230
References
C– 53 Chen, T.R. and Ebeling, A.W. (1971) Chromosomes of the goby fishes in the genus Gillichthys. Copeia, 1971: 171–174. C– 54 Chen, T.R. and Ebeling, A.W. (1974) Cytotaxonomy of Californian myctophoid fi fishes. Copeia, 1974: 839–848. C– 55 Chen, T.R. and Ebeling, A.W. (1975) Karyotypes from short- and long-term cultures of hybrid-killifish fi and platyfi fish tissues. Copeia, 1975: 178–181. C– 56 Chen, Y.H., Rong, S.B., Liu, S.Q., Zhang, H.Q. and Pei, M.H. (1990) The karyotype of Epinephelus sexfasciatus. J. Zhanjiang Fish. Coll., 10(1): 43–44, 51. (In Chinese with English abstract) C– 57 Chen, Y.H., Rong, S.B. and Liu, S.Q. (1990) The karyotype of Epinephelus fario. Fujian Fish., 1990(1): 23–25. (In Chinese) C– 58 Chen, Y.R., Uwa, H. and Chu, X.L. (1989) Taxonomy and distribution of the genus Oryzias in Yunnan, China. Acta Zootax. Sinica, 14: 239–246. (In Chinese with English summary) C– 59 Chenuil, A., Galtier, N. and Berrebi, P. (1999) A test of the hypothesis of an autopolyploid vs. allopolyploid origin for a tetraploid lineage: application to the genus Barbus (Cyprinidae). Heredity, 82: 373–380. C– 60 Chiarelli, B., Ferrantelli, O. and Cucchi, C. (1969) The caryotype of some teleostean fi fish obtained by tissue culture in vitro. Experientia, 25: 426–427. C– 61 Choudhury, R.C., Prasad, R. and Das, C.C. (1979) Chromosomes of six species of marine fishes. Caryologia, 32: 15–21. C– 62 Choudhury, R.C., Prasad, R. and Das, C.C. (1982) Karyological studies in five fi tetraodontiform fishes from the Indian Ocean. Copeia, 1982: 728–732. C– 63 Choudhury, R.C., Prasad, R. and Das, C.C. (1993) Chromosomes of four Indian marine catfi fishes (Bagridae, Ariidae: Siluriformes) with a heteromorphic pair in male Mystus gulio. Caryologia, 46: 233–243. C– 64 Choudhury, R.C., Prasad, R. and Das, C.C. (1993) Karyomorphology of four carangids from the Indian Ocean (Carangidae: Perciformes). La Kromosomo, II, 69: 2329–2335. C– 65 Clark, B. and Mathis, P. (1982) Karyotypes of middle Tennessee bullheads: Ictalurus melas and Ictalurus natalis (Cypriniformes: Ictaluridae). Copeia, 1982: 457–460. C– 66 Colihueque, N., Corrales, O. and Parraguez, M. (2006) Karyotype and nuclear DNA content of Trichomycterus areolatus (Siluriformes, Trichomycteridae). Genet. Mol. Biol., 29: 278–282. C– 67 Colihueque, N., Iturra, P., Diaz, N., Veloso, A. and Estay, F. (1992) Karyological analysis and identifi fication of heterochromosomes in experimental gynogenetic offspring of rainbow trout (Oncorhynchus mykiss, Walbaum). Brazil. J. Genet., 15: 535–546. C– 68 Collares-Pereira, M.J. (1983) Cytotaxonomic studies in Iberian cyprinids. I. Karyology of Chondrostoma lusitanicum Collares-Pereira, 1980. Cytologia, 48: 753–760. C– 69 Collares-Pereira, M.J. (1985) Cytotaxonomic studies in Iberian cyprinids. II. Karyology of Anaecypris hispanica (Steindachner, 1866), Chondrostoma lemmingi (Steindachner, 1866), Rutilus arcasi (Steindachner, 1866) and R. macrolepidotus (Steindachner, 1866). Cytologia, 50: 879–890. C– 70 Collares-Pereira, M.J. and Coelho, M.M. (1989) Polyploidy versus diploidy: a new model for the karyological evolution of Cyprinidae. Arquivos Mus. Bocage, n.s., 1: 375–383. C– 71 Collares-Pereira, M.J. (1989) Hybridization in European cyprinids: evolutionary potential of unisexual populations. In: Dawley, R.M. and Bogart, J.P. eds. Evolution and ecology of unisexual vertebrates. Mus. Bull. 466. New York State Mus., New York, pp. 281–288. C– 72 Collares-Pereira, M.J. and Madeira, J.M. (1990) Cytotaxonomic studies in Iberian cyprinids. III. Karyology of Portuguese populations of Barbus Cuvier, 1817, with some reconsiderations on the karyological evolution of Cyprinidae. Caryologia, 43: 17–26.
References
231
C– 73 Collares-Pereira, M.J. and Madeira, J.M. (1995) Spontaneous triploidy in the stone loach Noemacheilus barbatulus (Balitoridae). Copeia, 1995: 483–484. C– 74 Collares-Pereira, M.J. (1994) The karyology of barbins and the possible plesiomorphic condition of polyploidy in Cyprinidae. Bull. Fr. Pêche Piscic., 334: 191–199. C– 75 Collares-Pereira, M.J. and Costa, L.M. (1999) Intraspecific fi and interspecifi fic genome size variation in Iberian Cyprinidae and the problem of diploidy and polyploidy, with review of genome sizes within the family. Folia Zool., 48: 61–76. C– 76 Colombera, D. and Rasotto, M. (1982) Chromosome studies in males of Gobius niger jozo (Padoa) and Gobius paganellus (Linneo) (Gobiidae, Osteichthyes). Caryologia, 35: 257–260. C– 77 Cook, P.C. (1978) Karyotypic analysis of the gobiid fish genus Quietula Jordan and Evermann. J. Fish Biol., 12: 173–179. C– 78 Corrêa, M.M.O. and Galetti Jr., P.M. (1997) Chromosomal diversity in Scorpaenidae (Teleostei, Scorpaeniformes): cytogenetic studies in Scorpaena brasiliensis and Scorpaena isthmensis from the coast of Rio de Janeiro, Brazil. Cytologia, 62: 397– 404. C– 79 Cristina, A., Malacrida, C.P., Dias, A.L. and Giuliano-Caetano, L. (2003) Natural triploidy in Astyanax aff. scabripinnis (Pisces, Characidae) of the Tibagi river bay–PR. Cytologia, 68: 267–270. C– 80 Crossman, E.J. and Ráb, P. (2001) Chromosomal NOR phenotype and C-banded karyotype of Olympic mudminnow, Novumbra hubbsi (Euteleostei: Umbridae). Copeia, 2001: 860–865. C– 81 Cuellar, O. and Uyeno, T. (1972) Triploidy in rainbow trout. Cytogenetics, 11: 508–515. C– 82 Cuevas, C.C., Campos, H.H. and Busse, K. (1999) Cytotaxonomic studies on Chilean galaxiid fishes. The karyotypes, C-bands, Ag-NORs and hybrids of Brachygalaxias gothei and B. bullocki (Osteichthyes: Galaxiidae). Cytologia, 64: 379–385. C– 83 Cui, J.X., Ren, X.H. and Yu, Q.X. (1991) Nuclear DNA content variation in fishes. Cytologia, 56: 425–429. C– 84 Cui, Y.L. and Zan, R.G. (1982) Studies on gynogenesis of the high-backed form of Carassius auratus in Kunming Lake. Zool. Res., 3 (suppl.): 237–242. (In Chinese with English summary) C– 85 Cytogenetic Laboratory of Wuhan University (1983) A preliminary report on the chromosome number of 52 species of fishes fi of the Pearl River system in Guangdong Province. J. Wuhan Univ. (Nat. Sci.), 1983(3): 58, 123–124. (In Chinese) C– 86 Cytogenetic Laboratory of Wuhan University (1981) A preliminary report of fi fish chromosomes of 7 families and 23 species. J. Wuhan Univ. (Nat. Sci.), 1981(3): 14. (In Chinese) C– 87 Cestari, M.M. and Galetti Jr., P.M. (1992) Chromosome evolution in the genus Serrasalmus and cytotaxonomic considerations about Serrasalminae (Characidae, Pisces). Brazil. J. Genet., 15: 555–567. C– 88 Collares-Pereira, M.J. and Ráb, P. (1999) NOR polymorphism in the Iberian species Chondrostoma lusitanicum (Pisces: Cyprinidae)—Re-examination by FISH. Genetica, 105: 301–303. C– 89 Calton, M.S. and Denton, T.E. (1974) Chromosomes of the chocolate gourami: a cytogenetic anomaly. Science, 185: 618–619. C– 90 Chen, Y.L., Liu, Y.H., Chen, K.C. and Zhu, X.P. (2006) The morphological character and karyotype of Oxyeleotris lineolatus. J. Fish. China, 30: 562–565. (In Chinese with English abstract) C– 91 Centofante, L., Bertollo, L.A.C., Buckup, P.A. and Moreira-Filho, O. (2003) Chromosomal divergence and maintenance of sympatric Characidium fish species (Crenuchidae, Characidiinae). Hereditas, 138: 213–218.
232
References
C– 92 Cataudella, S., Sola, L. and Capanna, E. (1978) Remarks on the karyotype of the Polypteriformes. The chromosomes of Polypterus delhezi, P. endlicheri congicus and P. palmas. Experientia, 34: 999–1000. C– 93 Carvalho, M.L., Oliveira, C. and Foresti, F. (1998) Nuclear DNA content of thirty species of neotropical fishes. fi Genet. Mol. Biol., 21: 47–54. C– 94 Carvalho, M.L., Oliveira, C., Navarrete, M.C., Froehlich, O. and Foresti, F. (2002) Nuclear DNA content determination in Characiformes fish (Teleostei, Ostariophysi) from the Neotropical region. Genet. Mol. Biol., 25: 49–55. C– 95 Cimino, M.C. and Bahr, G.F. (1974) The nuclear DNA content and chromatin ultrastructure of the coelacanth Latimeria chalumnae. Exp. Cell Res., 88: 263–272. C– 96 Calgaro, M.R., Fenocchio, A.S., Pastori, M.C. and Roncati, H.A. (2004) Karyology of Apareiodon affinis fi from Paraná river (Argentina). I. Chromosome polymorphism. Cytologia, 69: 475–479. C– 97 Carvalho, R.A., Giuliano-Caetano, L. and Dias, A.L. (2004) Cytogenetic analysis of A- and B-chromosomes of Iheringichthys labrosus (Pisces, Pimelodidae) from the Tibagi river, Paraná, Brazil. Cytologia, 69: 381–385. C– 98 Carvalho, R.A., Martins-Santos, I.C. and Dias, A.L. (2008) B chromosomes: an update about their occurrence in freshwater neotropical fishes fi (Teleostei). J. Fish Biol., 72: 1907–1932. C– 99 Cau, A., Salvadori, S., Deiana, A.M., Bella, J.L. and Mezzanotte, R. (1988) The characterization of Muraena helena L. mitotic chromosomes: karyotype, C-banding, nucleolar organizer regions, and in situ digestion with restriction endonucleases. Cytogenet. Cell Genet., 47: 223–226. C– 100 Chang, H.Y., Sang, T.K., Jan, K.Y. and Chen, C.T. (1995) Cellular DNA contents and cell volumes of batoids. Copeia, 1995: 571–576. C– 101 Carvalho, M.L., Oliveira, C. and Foresti, F. (2002) Description of a ZZ/ZW sex chromosome system in Thoracocharax cf. stellatus (Teleostei, Characiformes, Gasteropelecidae). Genet. Mol. Biol., 25: 299–303. C– 102 Collares-Pereira, M.J. (1985) The “Rutilus alburnoides (Steindachner, 1866) complex” (Pisces, Cyprinidae). II. First data on the karyology of a well-established diploid-triploid group. Arquivos Mus. Bocage, (Ser. A), 3: 69–89. C– 103 Centofante, L., Porto, J.I.R. and Feldberg, E. (2002) Chromosomal polymorphism in Serrasalmus spilopleura Kner, 1858 (Characidae, Serrasalminae) from Central Amazon basin. Caryologia, 55: 37–45. C– 104 Carvalho, R.A. and Dias, A.L. (2005) Cytogenetic characterization of B chromosomes in two populations of Iheringichthys labrosus (Pisces, Pimelodidae) from the Capivara Reservoir (Paraná, Brazil). Caryologia, 58: 269–273. C– 105 Carvalho, R.A. and Dias, A.L. (2007) Interindividual size heteromorphism of NOR and chromosomal location of 5S rRNA genes in Iheringichthys labrosus. Brazil. Archiv. Biol. Technol., 50: 141–146. C– 106 Costa, G.W.W.F. and Molina, W.F. (2009) Karyoevolution of the toadfish fi Thalassophryne nattereri (Batrachoidiformes: Batrachoididae). Genet. Mol. Res., 8: 1099–1106. C– 107 Cereali, S.S., Pomini, E., Rosa, R., Zawadzki, C.H., Froehlich, O. and Giuliano-Caetano, L. (2008) Karyotype description of two species of Hypostomus (Siluriformes, Loricariidae) of the Planalto da Bodoquena, Brazil. Genet. Mol. Res., 7: 583–591. C– 108 Chanda, T. (1998) Aspidoparia morar, Chagunius chagunio, Crossocheilus latius latius, Mystus bleekeri, Mystus menoda menoda, Ailia coila, Clupisoma garua, Pseudeutropius atherinoides, Glyptothorax trilineatus, Laguvia rebeiroi, Nangra punctata, Johnius dussumieri, Colisa sota. In: Ponniah, A.G. and John, G. eds. Fish chromosome atlas. National Bureau of Fish Genetic Resources, Lucknow, India, pp. 22–23, 48–49, 58–59, 158–159, 164–165, 190–191, 192–193, 196–197, 208–213, 244–245, 286–287.
References
233
C– 109 Cimino, M.C. (1974) The nuclear DNA content of diploid and triploid Poeciliopsis and other poeciliid fishes fi with reference to the evolution of unisexual forms. Chromosoma, 47: 297–307. C– 110 Cioffi, fi M.B., Martins, C. and Bertollo, L.A.C. (2010) Chromosome spreading of associated transposable elements and ribosomal DNA in the fish fi Erythrinus erythrinus. Implications for genome change and karyoevolution in fish. fi BMC Evol. Biol. 2010, 10: 271 doi: 10.1186/1471-2148-10-271. [D] D– 1 D–
2
D–
3
D–
4
D–
5
D–
6
D–
7
D–
8
D–
9
D– 10 D– 11 D– 12 D– 13 D– 14 D– 15
D– 16 D– 17 D– 18 D– 19
Danzmann, R.G. (1979) The karyology of eight species of fi fish belonging to the family Percidae. Can. J. Zool., 57: 2055–2060. Das, R.K. and Kar, R.N. (1977) Somatic chromosome analysis of a siluroid fi fish, Rita chrysea Day. Caryologia, 30: 247–253. Das, N.K., Prasad, R. and Das, C.C. (1980) Chromosomes of four species of marine fi fishes (Fam: Carangidae). Ind. Biologist, 12: 21–25. Doussau de Bazignan, M. and Ozouf-Costaz, C. (1985) Une technique rapide d’analyse chromosomique appliquée a sept espèces de poissons Antarctiques. Cybium, 9: 57–74. Deiana, A.M., Salvadori, S. and Cau, A. (1990) The characterization of somatic chromosomes of Gymnothorax unicolorr (Delaroche, 1809) by C-banding and NOR staining (Osteichthyes, Anguilliformes). Genetica, 81: 17–20. Denton, T.E. and Howell, W.M. (1969) A technique for obtaining chromosomes from the scale epithelium of teleost fishes. Copeia, 1969: 392–393. Denton, T.E. (1973) Fish chromosome methodology. Charles C. Thomas Publisher, Springfield, fi USA. Denton, T.E. and Howell, W.M. (1973) Chromosomes of the African polypterid fi fishes, Polypterus palmas and Calamoichthys calabaricus (Pisces: Brachiopterygii). Experientia, 29: 122–124. Dhar, N.J. and Chatterjee, K. (1984) Chromosomal evolution in Indian murrels (Channiformes: Channidae). Caryologia, 37: 359–371. Di, S.J. and Knowles, J.F. (1994) The karyotype of the dab (Limanda limanda L.). J. Fish Biol., 44: 354–356. Dias, A.L. and Foresti, F. (1993) Cytogenetic studies on fishes of the family Pimelodidae (Siluroidei). Brazil. J. Genet., 16: 585–600. Dias, A.L., Foresti, F. and Oliveira, C. (1998) Synapsis in supernumerary chromosomes of Prochilodus lineatus (Teleostei: Prochilodontidae). Caryologia, 51: 105–113. Ding, S.X., Wang, S.F., Wang D.X. and Wang J. (2004) Analysis of the karyotype of Epinephelus coioides. J. Xiamen Univ. (Nat. Sci.), 43: 426–428. (In Chinese with English abstract) Dingerkus, G. and Howell, W.M. (1976) Karyotypic analysis and evidence of tetraploidy in the North American paddlefish, fi Polyodon spathula. Science, 194: 842–844. Dingerkus, G. (1979) Chordate cytogenetic studies: an analysis of their phylogenetic implications with particular reference to fishes fi and the living coelacanth. Occ. Pap. Calif. Acad. Sci., 134: 111–127. Diniz, D. and Bertollo, L.A.C. (2003) Karyotypic studies on Hoplerythrinus unitaeniatus (Pisces, Erythrinidae) populations. A biodiversity analysis. Caryologia, 56: 303–313. Donahue, W.H. (1974) A karyotypic study of three species of Rajiformes (Chondrichthyes, Pisces). Can. J. Genet. Cytol., 16: 203–211. Dong, Y.K. (1984) Karyotypes of four freshwater fishes fi (Perciformes). Freshwater Fish., 4: 23–24. (In Chinese) Donsakul, T. and Magtoon, W. (1997) A chromosome study of two fishes, fi Oxyeleotris marmoratus and Bathygobius fuscus, from Thailand. Proceedings of the 23th Congress on Science and Technology of Thailand (Biology Section), pp. 430–431. (In Thai)
234
References
D– 20 Donsakul, T. (1998) A chromosome study of four teleostean fishes, fi Microphis boaja, Xenentodon cancila, Acanthophthalmus kuhlii and Chanda siamensis, from Thailand. Proceedings of the 36th Kasetsart University Annual Conference, pp. 1–11. (In Thai) D– 21 Donsakul, T. and Magtoon, W. (1999) A chromosome study of two species of catfishes, fi Pangasius gigas and P. sanitwongsei from Thailand. Proceedings of the 37th Kasetsart University Annual Conference, pp. 221–226. (In Thai) D– 22 Dorofeyeva, Ye.A. and Rukhkyan, R.G. (1982) Divergence of the Sevan trout, Salmo ischchan, in the light of karyological and morphological data. J. Ichthyol., 22(1): 23–36. D– 23 Doucette Jr., A.J. and Fitzsimons, J.M. (1988) Karyology of elopiform and clupeiform fishes. Copeia, 1988: 124–130. D– 24 Duchac, B., Huber, F., Müller, Hj. and Senn, D. (1982) Mating behavior and cytogenetical aspects of sex-inversion in the fish fi Coris julis L. (Labridae, Teleostei). Experientia, 38: 809–811. D– 25 Dutt, S. and Ramaseshaiah, M. (1980) Chromosome number in Anabas testudineus (Bloch, 1795) and A. oligolepis Bleeker, 1855 (Osteichthyes: Anabantidae). Matsya, 6: 71–74. D– 26 Doucette Jr., A.J. and Fitzsimons, J.M. (1982) Karyology of the ladyfish fi Elops saurus. Japan. J. Ichthyol., 29: 223–226. D– 27 Durand, J.D., Tsigenopoulos, C.S., Unlu, E. and Berrebi, P. (2002) Phylogeny and biogeography of the family Cyprinidae in the Middle East inferred from cytochrome b DNA—Evolutionary signifi ficance of this region. Mol. Phylogenet. Evol., 22: 91–100. D– 28 Donsakul, T., Rangsiruji, A. and Magtoon, W. (2005, personal communication) D– 29 Domingues, M.S., Vicari, M.R., Abilhoa, V., Wamser, J.P., Cestari, M.M., Bertollo, L.A.C., de Almeida, M.C. and Artoni, R.F. (2007) Cytogenetic and comparative morphology of two allopatric populations of Astyanax altiparanae Garutti & Britski, 2000 (Teleostei: Characidae) from upper rio Paraná basin. Neotrop. Ichthyol., 5: 37–44. D– 30 Diniz, D., Moreira-Filho, O. and Bertollo, L.A.C. (2008) Molecular cytogenetics and characterization of a ZZ/ZW sex chromosome system in Triportheus nematurus (Characiformes, Characidae). Genetica, 133: 85–91. D– 31 Dantas, E.S.O., Vicari, M.R., Souza, I.L., Moreira-Filho, O., Bertollo, L.A.C. and Artoni, R.F. (2007) Cytotaxonomy and karyotype evolution in Moenkhausia Eigenmann, 1903 (Teleostei, Characidae). Nucleus, 50: 509–522. D– 32 Della-Rosa, V.A., Bertollo, L.A.C., Ferrari, I., Takahashi, C.S., Moreira-Filho, O. and Foresti, F. (1980) Estudios citogenéticos em peixes da regiao Amazônia. II. Ordem Siluriformes. Ciênc. Cult., 32: 735. (In Portuguese) D– 33 Das, J.K. and Khuda-Bukhsh, A.R. (2007) Preponderance of GC-rich sites in silverstained nucleolus organizing regions of Rita rita (Hamilton) and Mystus gulio (Hamilton) (Bagridae, Pisces), as revealed by chromomycin A3-staining technique and scanning electron microscopic studies. Genet. Mol. Res., 6: 284–291. D– 34 Das, J.K. and Khuda-Bukhsh, A.R. (2007) GC-rich heterochromatin in silver stained nucleolar organizer regions (NORs) fluoresces fl with chromomycin A3 (CMA3) staining in three species of teleostean fishes fi (Pisces). Ind. J. Exp. Biol., 45: 413–418. [E] E– E– E–
1
Ebeling, A.W. and Chen, T.R. (1970) Heterogamety in teleostean fi fishes. Trans. Amer. Fish. Soc., 99: 131–138. 2 Ebeling, A.W., Atkin, N.B. and Setzer, P.Y. (1971) Genome sizes of teleostean fi fishes: increases in some deep-sea species. Amer. Natur., 105: 549–561. 3 Elder Jr., J.F., Turner, B.J., Thomerson, J.E. and Taphorn, D.C. (1991) Chromosomal divergence and heterogameity in two annual killifishes fi of the genus Pterolebias. Genome, 34: 674–676.
References
E–
4
E–
5
E–
6
E–
7
E–
8
E–
9
E– 10 E– 11
E– 12
E– 13
[F] F–
1
F–
2
F–
3
F–
4
F–
5
F–
6
F–
7
F–
8
F–
9
F– 10
235
Elder Jr., J.F., Turner, B.J., Thomerson, J.E. and Taphorn, D.C. (1993) Karyotypes of nine Venezuelan annual killifi fishes (Cyprinodontidae), with comments on karyotype differentiation in annual killifi fishes. Ichthyol. Explor. Freshwaters, 4: 261–268. Ewulonu, U.K., Haas, R. and Turner, B.J. (1985) A multiple sex chromosome system in the annual killifi fish, Nothobranchius guentheri. Copeia, 1985: 503–508. Ebeling, A.W. and Setzer, P.Y. (1971) Cytological confi firmation of female homogamety in the deep-sea fish fi Bathylagus milleri. Copeia, 1971: 560–562. Esmaeili, H.R. and Piravar, Z. (2006) Karyotype of Persian chub, Petroleuciscus persidis (Coad, 1981) (Actinopterygii: Cyprinidae) from southern Iran. Turk. J. Zool., 30: 137–139. Elvira, B. (1997) Threatened fishes fi of the world: Iberocypris palaciosii Doadrio, 1980 (Cyprinidae). Environ. Biol. Fishes, 50: 104. Ene, A.-C. (2003) Chromosomal polymorphism in the goby Neogobius eurycephalus (Perciformes: Gobiidae). Mar. Biol., 142: 583–588. Ezaz, T., Berra, T.M. and Marshall Graves, J.A. (2006) Karyotype of the Australian nurseryfish, fi Kurtus gulliveri (Kurtidae: Perciformes). Chrom. Sci., 9: 85–88. Eler, E.S., Dergam, J.A., Vênere, P.C., Paiva, L.C., Miranda, G.A. and Oliveira, A.A. (2007) The karyotypes of the thorny catfishes fi Wertheimeria maculata Steindachner, 1877 and Hassar wilderi Kindle, 1895 (Siluriformes: Doradidae) and their relevance in doradid chromosomal evolution. Genetica, 130: 99–103. Esmaeili, H.R., Piravar, Z. and Shiva, A.H. (2007) Karyological analysis of two endemic tooth-carps, Aphanius persicus and Aphanius sophiae (Pisces: Cyprinodontidae), from Southwest Iran. Turk. J. Zool., 31: 69–74. Eschmeyer, W.N. (2009) Catalogue of fi fishes. http://www.research.calacademy.org/ redirect?url=http://researcharchive.calacademy.org/research/ichthyology/catalog/fish fi catmain.asp
Fajkus, J., Sykorova, E. and Leitch, A.R. (2005) Telomeres in evolution and evolution of telomeres. Chrom. Res., 13: 469–479. Falcão, J.N. and Bertollo, L.A.C. (1985) Chromosome characterization in Acestrorhynchinae and Cynopotaminae (Pisces, Characidae). J. Fish Biol., 27: 603–610. Fan, Z. and Fox, D.P. (1990) A new method for fish chromosome preparation. J. Fish Biol., 37: 553–561. Fan, Z. and Fox, D.P. (1991) Robertsonian polymorphism in plaice, Pleuronectes platessa L., and cod, Gadus morhua L. (Pisces Pleuronectiformes and Gadiformes). J. Fish Biol., 38: 635–640. Fan, Z.T., Yin, H.B., Song, S.X. and Pan, F. (1995) DNA content from thirteen species of cultured freshwater fi fishes in China. J. Fish. China, 19: 322–326. (In Chinese with English abstract) Fauaz, G., Vicente, V.E. and Moreira-Filho, O. (1994) Natural triploidy and B chromosomes in the neotropical fi fish genus Astyanax (Characidae). Brazil. J. Genet., 17: 157–163. Fazoli, L.C., Silva, V.A.B., Portela-Castro, A.L.B. and Ju u¯ lio Ju u¯ nior, H.F. (2003) Chromosome characterization of Astyanax sp B (Characidae, Tetragonopterinae), an endemic species of the Iguaçu river, Paraná, Brazil. Cytologia, 68: 389–394. Fei, Z.Q. and Tao, R.Q. (1987) Studies on the karyotypes of four species in gobioids. J. Zhejiang College Fish., 1987: 127–131. (In Chinese with English abstract) Feldberg, E. and Bertollo, L.A.C. (1985) Nucleolar organizing regions in some species of neotropical cichlid fish (Pisces, Perciformes). Caryologia, 38: 319–324. Feldberg, E. and Bertollo, L.A.C. (1985) Karyotypes of 10 species of neotropical cichlids (Pisces, Perciformes). Caryologia, 38: 257–268.
236
References
F– 11 Feldberg, E., Bertollo, L.A.C., Toledo, L.F.A., Foresti, F., Moreira Filho, O. and Santos, A.F. (1987) Biological aspects of Amazonian fishes. IX. Cytogenetic studies in two species of the genus Semaprochilodus (Pisces, Prochilodontidae). Genome, 29: 1–4. F– 12 Feldberg, E., Porto, J.I.R. and Bertollo, L.A.C. (1992) Karyotype evolution in Curimatidae (Teleostei, Characiformes) of the Amazon region. I. Studies on the genera Curimata, Psectrogaster, Steindachnerina and Curimatella. Brazil. J. Genet., 15: 369–383. F– 13 Feldberg, E., Porto, J.I.R., Nakayama, C.M. and Bertollo, L.A.C. (1993) Karyotype evolution in Curimatidae (Teleostei, Characiformes) from the Amazon region. II. Centric fissions in the genus Potamorhina. Genome, 36: 372–376. fi F– 14 Feldberg, E., Porto, J.I.R., Alves-Brinn, M.N., Mendonça, M.N.C. and Benzaquem, D.C. (2004) B chromosomes in Amazonian cichlid species. Cytogenet. Genome Res., 106: 195–198. F– 15 Fenocchio, A.S. and Bertollo, L.A.C. (1990) Supernumerary chromosomes in a Rhamdia hilarii population (Pisces, Pimelodidae). Genetica, 81: 193–198. F– 16 Fenocchio, A.S., Jorge, L.C., Vênere, P.C. and Bertollo, L.A.C. (1993) Karyotypic characterization and nucleolus organizer regions in three species of Doradidae (Pisces, Siluriformes). Brazil. J. Genet., 16: 1097–1101. F– 17 Fenocchio, A.S. and Bertollo, L.A.C. (1992) Karyotype similarities among Pimelodidae (Pisces, Siluriformes) from the Brazilian Amazon region. Cytobios, 69: 41–46. F– 18 Fenocchio, A.S. and Bertollo, L.A.C. (1992) Karyotype, C-bands and NORs of the neotropical siluriform fish fi Ageneiosus brevifilis fi and Ageneiosus atronases (Ageneiosidae). Cytobios, 72: 19–22. F– 19 Fenocchio, A.S., Bertollo, L.A.C., Takahashi, C.S., Dias, A.L. and Swarça, A.C. (2003) Cytogenetic studies and correlate considerations on Rhamdiinae relationships (Pisces, Siluroidei, Pimelodidae). Cytologia, 68: 363–368. F– 20 Fenocchio, A.S., Pastori, M.C., Roncati, H.A., Moreira Filho, O. and Bertollo, L.A.C. (2003) A cytogenetic survey of the fish fauna from Argentina. Caryologia, 56: 197–204. F– 21 Fernandes, C.A. and Martins-Santos, I.C. (2003) Cytogenetic characterization of two populations of Astyanax scabripinnis (Pisces, Characiformes) of the Ivai basin PR Brazil. Cytologia, 68: 289–293. F– 22 Fernandes, C.A. and Martins-Santos, I.C. (2005) Sympatric occurrence of three cytotypes and four morphological types of B chromosomes of Astyanax scabripinnis (Pisces, Characiformes) in the River Ivaí Basin, state of Paraná, Brazil. Genetica, 124: 301–306. F– 23 Ferris, S.D. (1984) Tetraploidy and the evolution of the catostomid fishes. fi In: Turner, B.J. ed. Evolutionary genetics of fishes. fi Plenum press, New York, pp. 55–93. F– 24 Fischer, C., Ozouf-Costaz, C., Crollius, H.R., Dasilva, C., Jaillon, O., Bouneau, L., Bonillo, C., Weissenbach, J. and Bernot, A. (2000) Karyotype and chromosome location of characteristic tandem repeats in the pufferfish fi Tetraodon nigroviridis. Cytogenet. Cell Genet., 88: 50–55. F– 25 Fisher, P.B. and Rachlin, J.W. (1972) Karyotypic analysis of 2 sympatric species of fish, fi Fundulus heteroclitus L. and F. majalis. J. Fish Biol., 4: 67–71. F– 26 Fitzsimons, J.M. and Doucette Jr., A.J. (1981) Karyology of the shads Dorosoma cepedianum and D. petenense (Osteichthyes: Clupeiformes). Copeia, 1981: 908–911. F– 27 Fitzsimons, J.M., LeGrande, W.H. and Korth, J.W. (1988) Karyology of the marine catfish fi Bagre marinus (Ariidae) with an analysis of chromosome numbers among siluriform fishes. Japan. J. Ichthyol., 35: 189–193. F– 28 Flajssˇhans, M. and Ráb, P. (1990) Chromosome study of Oncorhynchus mykiss kamloops. Aquaculture, 89: 1–8. F– 29 Fonseca, Y.M., Oliveira, C., Foresti, F. and Maistro, E.L. (2003) First cytogenetic description of the species Rhamdella microcephala (Pisces, Hepapteridae). Cytologia, 68: 31–34.
References
F– 30
F– 31
F– 32
F– 33 F– 34 F– 35
F– 36
F– 37 F– 38 F– 39
F– 40
F– 41 F– 42 F– 43
F– 44
F– 45
F– 46 F– 47 F– 48 F– 49 F– 50
237
Fontana, F., Chiarelli, B. and Rossi, A.C. (1970) Il cariotipo di alcune specie di Cyprinidae, Centrarchidae, Characidae studiate mediante colture « in vitro ». Caryologia, 23: 549–564. Fontana, F., Chiarelli, B. and Rossi, A. (1970) Some new data on the number of chromosomes of teleost fish obtained by means of tissue culture in vitro. Experientia, 26: 1021. Fontana, F., Tagliavini, J., Congiu, L., Lanfredi, M., Chicca, M., Laurente, C. and Rossi, R. (1998) Karyotypic characterization of the great sturgeon, Huso huso, by multiple staining techniques and fluorescent fl in situ hybridization. Mar. Biol., 132: 495–501. Fontana, F., Lanfredi, M., Chicca, M., Aiello, V. and Rossi, R. (1998) Localization of the repetitive sequence (TTAGGG)n in four sturgeon species. Chrom. Res., 6: 303–306. Foresti, F., Almeida Toledo, L.F. and Toledo, S.A. (1984) Chromosome studies in Gymnotus carapo and Gymnotus sp. (Pisces, Gymnotidae). Caryologia, 37: 141–146. Foresti, F., Almeida-Toledo, L.F. and Toledo, S.A. (1989) Supernumerary chromosome system, C-banding pattern characterization and multiple nucleolus organizer regions in Moenkhausia sanctaefilomenae fi (Pisces, Characidae). Genetica, 79: 107–114. Foresti, F., Almeida Toledo, L.F. and Pathak, S. (1992) “In vitro” occurrence of premature chromosomes condensation in kidney cells of Eigenmannia virescens (Pisces, Sternopygidae). Cytologia, 57: 377–381. Foresti, F., Ozouf-Costaz, C. and Ráb, P. (1992) Volume dependent effect of hypotonic treatment on good spreading of fish chromosomes. Cybium, 16: 209–212. Formacion, M.J. and Uwa, H. (1985) Cytogenetic studies on the origin and species differentiation of the Philippine medaka, Oryzias luzonensis. J. Fish Biol., 27: 285–291. Freitas, P.D., Navarrete, M.C., Miyazawa, C.S. and Galetti Jr., P.M. (1998) Chromosome characterization of a neotropical fish fi Poptella paraguayensis from Paraguay river basin (Stethaprioninae, Characidae). Cytologia, 63: 73–77. Frolov, S.V. (1981) Studies of Kamchatka trout (Salmo mykiss Walbaum) karyotype by differential staining method. Biol. Morya, 1981(6): 73–75. (In Russian with English abstract) Frolov, S.V. (1986) The additional chromosome system in the karyotype of Coregonus nasus. Tsitologiya, 28: 215–219. (In Russian with English abstract) Frolov, S.V. (1986) Polymorphism and mosaicism for additional chromosomes in Coregonus sardinella. Tsitologiya, 28: 740–744. (In Russian with English abstract) Frolov, S.V. (1989) Differentiation of sex chromosomes in the Salmonidae. I. Karyotype and sex chromosomes in Parasalmo mykiss. Tsitologiya, 31: 1391–1394. (In Russian with English abstract) Frolov, S.V. (1990) Differentiation of sex chromosomes in the Salmonidae. II. Karyotype and sex chromosomes in Oncorhynchus nerka. Tsitologiya, 32: 509–514. (In Russian with English abstract) Frolov, S.V. (1990) Differentiation of sex chromosomes in the Salmonidae. III. Multiple sex chromosomes in Coregonus sardinella. Tsitologiya, 32: 659–663. (In Russian with English abstract) Frolov, S.V. (1991) Karyotype of Stenodus leucichthys nelma from Anadyr’ River. Chrom. Inform. Serv., 52: 11–12. Frolov, S.V. and Miller, I.N. (1991) Karyotypes of Salvelinus malma and S. leucomaenis from North Primorye. Chrom. Inform. Serv., 52: 12–14. Frolov, S.V. (1992) Karyotype and chromosomal variability in smallmouth char, Salvelinus elgyticus, from Lake Elgygytgyn. J. Ichthyol., 32(1): 61–66. Frolov, S.V. (1993) Unique karyotype and constitutive heterochromatin in the endemic salmonine fish Salvethymus svetovidovi. J. Ichthyol., 33(6): 42–49. Frolov, S.V., Sakai, H., Ida, H., Yamazaki, Y. and Takahashi, H. (1999) Karyotype of Siberian taimen Hucho taimen from Amur River Basin. Chrom. Sci., 3: 33–35.
238
References
F– 51
Fujioka, Y. (1973) A comparative study of the chromosomes in Japanese freshwater fishes. fi I. A study of the somatic chromosome of common catfish fi Parasilurus asotus (Linné) and fork-tailed bullhead Pelteobagrus nudiceps (Sauvage). Bull. Fac. Educ. Yamaguchi Univ., 23: 191–195. (In Japanese with English summary) Fujiwara, A., Nishida-Umehara, C., Sakamoto, T., Okamoto, N., Nakayama, I. and Abe, S. (2001) Improved fish lymphocyte culture for chromosome preparation. Genetica, 111: 77–89. Fukuoka, H. and Niiyama, H. (1970) Notes on the somatic chromosomes of ten species of pleuronectid fishes. fi Chrom. Inform. Serv., 11: 18–19. Fukuoka, H. and Muramoto, J. (1975) Somatic and meiotic chromosomes of Tilapia mossambica Peters. Chrom. Inform. Serv., 18: 4–6. Furlong, R.F. and Holland, P.W.H. (2004) Polyploidy in vertebrate ancestry: Ohno and beyond. Biol. J. Linn. Soc., 82: 425–430. Falcão, J.N., Moreira-Filho, O. and Bertollo, L.A.C. (1984) An additional chromosome in two fish species. Brazil. J. Genet., 7: 109–118. Foresti, F., Oliveira, C. and Tien, O.S. (1992) Cytogenetic studies in fishes of the genus Synbranchus (Pisces, Synbranchiformes, Synbranchidae). Naturalia, Sao Paulo, 17: 129–138. Fontana, F. and Colombo, G. (1974) The chromosomes of Italian sturgeons. Experientia, 30: 739–742. Fitzsimons, J.M. (1972) A revision of two genera of goodeid fishes (Cyprinodontiformes, Osteichthyes) from the Mexican Plateau. Copeia, 1972: 728–756. Fitzsimons, J.M., Rogers, J.S. and Cashner, R.C. (1985) Karyologic and electrophoretic studies of the genus Cynoscion (Sciaenidae, Perciformes) from the northern gulf of Mexico. Japan. J. Ichthyol., 31: 444–448. Fontana, F., Zane, L., Pepe, A. and Congiu, L. (2007) Polyploidy in Acipenseriformes: cytogenetic and molecular approaches. In: Pisano, E., Ozouf-Costaz, C., Foresti, F. and Kapoor, B.G. eds. Fish cytogenetics. Science Publishers, Enfield, fi pp. 385–403. Fontana, F., Bruch, R.M., Binkowski, F.P., Lanfredi, M., Chicca, M., Beltrami, N. and Congiu, L. (2004) Karyotype characterization of the lake sturgeon, Acipenser fulvescens (Rafi finesque 1817) by chromosome banding and fluorescent in situ hybridization. Genome, 47: 742–746. Fontana, F., Lanfredi, M., Kirschbaum, F., Garrido-Ramos, M.A., Robles, F., Forlani, A. and Congiu, L. (2008) Comparison of karyotypes of Acipenser oxyrinchus and A. sturio by chromosome banding and fluorescent fl in situ hybridization. Genetica, 132: 281–286. Fenerich, P.C., Foresti, F. and Oliveira, C. (2004) Nuclear DNA content in 20 species of Siluriformes (Teleostei: Ostariophysi) from the Neotropical region. Genet. Mol. Biol., 27: 360–354. Ferro, D.A.M., Moreira-Filfo, O. and Bertollo, L.A.C. (2003) B chromosome polymorphism in the fish, fi Astyanax scabripinnis. Genetica, 119: 147–153. Feldberg, E., Porto, J.I.R., Santos, E.B.P. and Valentim, F.C.S. (1999) Cytogenetic studies of two freshwater sciaenids of the genus Plagioscion (Perciformes, Sciaenidae) from the central Amazon. Genet. Mol. Biol., 22: 351–356. Feichtinger, W. (1988) Cytogenetic investigations in livebearing toothcarps (Pisces, Poeciliidae). II. Simp. Citogenet. Evol. e Aplic. de Peixes Neotropicais, Sao Carlos, SP, p. 38 (abstract). (After K-114) Foerster, W. and Schartl, M. (1987) Karyotype and isozyme patterns of fi five species of Aulonocara Regan, 1922. Cour. Forsch. Inst. Senckenberg, 94: 55–62. (After K-114) Fitzsimons, J.M. and Parker, R.M. (1985) Karyology of the sparid fi fishes Lagodon rhomboides and Archosargus probatocephalus (Osteichthyes, Perciformes) from coastal Louisiana, North Carolina, and Florida. Proc. Louisiana Acad. Sci., 48: 86–92.
F– 52
F– 53 F– 54 F– 55 F– 56 F– 57
F– 58 F– 59 F– 60
F– 61
F– 62
F– 63
F– 64
F– 65 F– 66
*F– 67
*F– 68 F– 69
References
239
Fontana, F. (1994) Chromosomal nucleolar organizer regions in four sturgeon species as markers of karyotype evolution in Acipenseriformes (Pisces). Genome, 37: 888–892. F– 71 Fernandes-Matioli, F.M.C., Marchetto, M.C.N., Almeida-Toledo, L.F. and Toledo-Filho, S.A. (1998) High intraspecifi fic karyological conservation in four species of Gymnotus (Pisces: Gymnotiformes) from Southeastern Brazilian basins. Caryologia, 51: 221–234. F– 72 Fernandes-Matioli, F.M.C. and Almeida-Toledo, L.F. (2001) A molecular phylogenetic analysis in Gymnotus species (Pisces: Gymnotiformes), with inferences on chromosome evolution. Caryologia, 54: 23–30.
F– 70
[G] G– 1 G–
2
G–
3
G–
4
G–
5
G–
6
G–
7
G–
8
G–
9
G– 10 G– 11 G– 12
G– 13
G– 14
G– 15
Gajardo, G.M. (1992) Karyotypes of Basilichthys microlepidotus and B. australis (Pisces: Atherinidae). Copeia, 1992: 256–258. Galetti Jr., P.M., Foresti, F., Bertollo, L.A.C. and Moreira Filho, O. (1981) Karyotypic similarity in three genera (Leporinus, Leporellus and Schizodon) of the family Anostomidae (Pisces-Teleostei). Brazil. J. Genet., 4: 11–15. Galetti Jr., P.M., Foresti, F., Bertollo, L.A.C. and Moreira Filho, O. (1981) Heteromorphic sex chromosomes in three species of the genus Leporinus (Pisces, Anostomidae). Cytogenet. Cell Genet., 29: 138–142. Galetti Jr., P.M., Foresti, F., Bertollo, L.A.C. and Moreira Filho, O. (1984) Characterization of eight species of Anostomidae (Cypriniformes) fish fi on the basis of the nucleolar organizing region. Caryologia, 37: 401–406. Galetti Jr., P.M. and Foresti, F. (1986) Evolution of the ZZ/ZW system in Leporinus (Pisces, Anostomidae). Cytogenet. Cell Genet., 43: 43–46. Galetti Jr., P.M. (1991) Chromosome complement of induced hybrids of the fi fish Prochilodus marggravii and Prochilodus affinis fi (Prochilodontidae, Characiformes). Brazil. J. Genet., 14: 203–207. Galetti Jr., P.M. and Rasch, E.M. (1993) Chromosome studies in Poecilia latipunctata with NOR polymorphism as shown by silver nitrate and chromomycin A3 (Teleostei: Poeciliidae). Ichthyol. Explor. Freshwaters, 4: 269–277. Galetti Jr., P.M. and Rasch, E.M. (1993) NOR variability in diploid and triploid forms of the Amazon molly Poecilia formosa as shown by silver nitrate and chromomycin A3 staining. Brazil. J. Genet., 16: 927–938. Galetti Jr., P.M., Bertollo, L.A.C. and Moreira-Filho, O. (1994) Trends in chromosome evolution of neotropical characiform fishes. fi Caryologia, 47: 289–297. Galetti Jr., P.M., Lima, N.R.W. and Venere, P.C. (1995) A monophyletic ZW sex chromosome system in Leporinus (Anostomidae, Characiformes). Cytologia, 60: 375–382. Galetti Jr., P.M., Aguilar, C.T. and Molina, W.F. (2000) An overview of marine fish cytogenetics. Hydrobiologia, 420: 55–62. Galetti Jr., P.M., Molina, W.F., Affonso, P.R.A.M. and Aguilar, C.T. (2006) Assessing genetic diversity of Brazilian reef fishes fi by chromosomal and DNA markers. Genetica, 126: 161–177. Garcia, C., Moreira-Filho, O., Bertollo, L.A.C. and Centofante, L. (2003) B chromosomes and natural triploidy in Rhamdia sp. (Pisces, Siluriformes, Heptapteridae). Cytologia, 68: 403–411. Garcia, G., Scvortzoff, E., Máspoli, M.C. and Vaz-Ferreira, R. (1993) Analysis of karyotypic evolution in natural populations of Cynolebias (Pisces: Cyprinodontiformes, Rivulidae) using banding techniques. Cytologia, 58: 85–94. Garcia, G., Scvortzoff, E. and Hernández, A. (1995) Karyotypic heterogeneity in South American annual killifi fishes of the genus Cynolebias (Pisces, Cyprinodontiformes, Rivulidae). Cytologia, 60: 103–110.
240
References
G– 16 Garcia, G., Lalanne, A.I., Aguirre, G. and Cappetta, M. (2001) Chromosome evolution in the annual killifish fi genus Cynolebias and mitochondrial phylogenetic analysis. Chrom. Res., 9: 437–448. G– 17 Garcia, G. (2006) Multiple simultaneous speciation in killifishes fi of the Cynolebias adloffi species complex (Cyprinodontiformes, Rivulidae) from phylogeography and chromosome data. J. Zool. Syst. Evol. Res., 44: 75–87. G– 18 Garcia, E., Alvarez, M.C. and Thode, G. (1987) Chromosome relationships in the genus Blennius (Blenniidae Perciformes) C-banding patterns suggest two karyoevolutional pathways. Genetica, 72: 27–36. G– 19 Giles, L. and Bertollo, L.A.C. (1988) Karyotype variability in Hoplerythrinus unitaeniatus (Characiformes, Erythrinidae). I. Chromosome polymorphism in the Rio Negro population (Manaus, State of Amazonas). Brazil. J. Genet., 11: 299–306. G– 20 Giuliano-Caetano, L. and Bertollo, L.A.C. (1990) Karyotypic variability in Hoplerythrinus unitaeniatus (Pisces, Characiformes, Erythrinidae). II. Occurrence of natural triploidy. Brazil. J. Genet., 13: 231–237. G– 21 Giuliano-Caetano, L., Jorge, L.C., Moreira-Filho, O. and Bertollo, L.A.C. (2001) Comparative cytogenetic studies on Hoplerythrinus unitaeniatus populations (Pisces, Erythrinidae). Caryologia, 66: 39–43. G– 22 Gregory, T.R. (2005) Genome size evolution in animals. In: Gregory, T.R. ed. The evolution of the genome. Elsevier, Amsterdam, pp. 3–87. G– 23 Gjedrem, T., Eggum, Å. and Refstie, T. (1977) Chromosomes of some salmonids and salmonid hybrids. Aquaculture, 11: 335–348. G– 24 Gold, J.R. (1974) A fast and easy method for chromosome karyotyping in adult teleosts. Progressive Fish-Culturist, 36: 169–171. G– 25 Gold, J.R. and Gall, G.A.E. (1975) Chromosome cytology and polymorphism in the California High Sierra golden trout (Salmo aguabonita). Can. J. Genet. Cytol., 17: 41–53. G– 26 Gold, J.R. (1977) Systematics of western North American trout (Salmo), with notes on the redband trout of Sheepheaven Creek, California. Can. J. Zool., 55: 1858–1873. G– 27 Gold, J.R. and Avise, J.C. (1977) Cytogenetic studies in North American minnows (Cyprinidae). I. Karyology of nine California genera. Copeia, 1977: 541–549. G– 28 Gold, J.R., Womac, W.D., Deal, F.H. and Barlow Jr., J.A. (1978) Gross karyotypic change and evolution in North American cyprinid fishes. fi Genet. Res. Camb., 32: 37–46. G– 29 Gold, J.R. (1979) Cytogenetics. In: Hoar, W.S., Randall, D.J. and Brett, J.R. eds. Fish physiology. Vol. VIII. Academic Press, New York, pp. 353–405. G– 30 Gold, J.R., Janak, B.J. and Barlow Jr., J.A. (1979) Karyology of four North American percids (Perciformes: Percidae). Can. J. Genet. Cytol., 21: 187–191. G– 31 Gold, J.R., Whitlock, C.W., Karel, W.J. and Barlow Jr., J.A. (1979) Cytogenetic studies in North American minnows (Cyprinidae). VI. Karyotypes of thirteen species in the genus Notropis. Cytologia, 44: 457–466. G– 32 Gold, J.R., Karel, W.J. and Strand, M.R. (1979) Chromosome formulae of North American fishes. Texas A & M Univ. System, Texas. G– 33 Gold, J.R., Womac, W.D., Deal, F.H. and Barlow Jr., J.A. (1981) Cytogenetic studies in North American minnows (Cyprinidae). VII. Karyotypes of 13 species from the southern United States. Cytologia, 46: 105–115. G– 34 Gold, J.R. and Ellison, J.R. (1982) Silver staining for nucleolar organizing regions of vertebrate chromosomes. Stain Technol., 58: 51–55. G– 35 Gold, J.R. (1984) Silver-staining and heteromorphism of chromosomal nucleolus organizer regions in North American cyprinid fishes. fi Copeia, 1984: 133–139. G– 36 Gold, J.R. and Amemiya, C.T. (1986) Cytogenetic studies in North American minnows (Cyprinidae). XII. Patterns of chromosomal nucleolus organizer region variation among 14 species. Can. J. Zool., 64: 1869–1877.
References
241
G– 37 Gold, J.R., Amemiya, C.T. and Ellison, J.R. (1986) Chromosomal heterochromatin differentiation in North American cyprinid fishes. Cytologia, 51: 557–566. G– 38 Gold, J.R. and Amemiya, C.T. (1987) Genome size variation in North American minnows (Cyprinidae). II. Variation among 20 species. Genome, 29: 481–489. G– 39 Gold, J.R., Jenkin, J.D. and Powers, P.K. (1990) Cytogenetic studies in North American minnows (Cyprinidae). XVIII. Chromosomal NOR variation among eight species. Cytologia, 55: 483–492. G– 40 Gold, J.R., Li, Y.C., Shipley, N.S. and Powers, P.K. (1990) Improved methods for working with fish fi chromosomes with a review of metaphase chromosome banding. J. Fish Biol., 37: 563–575. G– 41 Gold, J.R. and Li, Y.C. (1991) Trypsin G-banding of North American cyprinid chromosomes: phylogenetic considerations, implications for fish fi chromosome structure, and chromosomal polymorphism. Cytologia, 56: 199–208. G– 42 Gold, J.R., Li, Y.C., Schmidt, T.R. and Tave, D. (1991) Nucleolar dominance in interspecific fi hybrids of cyprinid fishes. Cytobios, 65: 139–147. G– 43 Gold, J.R., Zoch, P.K. and Amemiya, C.T. (1988) Cytogenetic studies in North American minnows (Cyprinidae). XIV Chromosomal NOR phenotypes of eight species from the genus Notropis. Cytobios, 54: 137–147. G– 44 Gold, J.R. and Li, Y.C. (1994) Chromosomal NOR karyotypes and genome size variation among squawfi fishes of the genus Ptychocheilus (Teleostei: Cyprinidae). Copeia, 1994: 60–65. G– 45 Gold, J.R. and Li, Y.C. (1994) Cytosystematic evidence that the genus Richardsonius belongs in the Western clade of phoxinin cyprinids. Copeia, 1994: 815–818. G– 46 Goldammer, T. and Klinkhardt, M.B. (1992) Karyologische Studien an verschiedenen Süsswasserfischarten fi aus brackigen Küstengewässern der südwestlichen Ostsee. V. Der Zander (Stizostedion lucioperca (Linnaeus, 1758)). Zool. Anz., 228: 129–139. G– 47 Golubtsov, A.S. and Krysanov, E.Yu. (1993) Karyological study of some cyprinid species from Ethiopia. The ploidy differences between large and small Barbus of Africa. J. Fish Biol., 42: 445–455. G– 48 Gold, J.R. and Price, H.J. (1985) Genome size variation among North American minnows (Cyprinidae). I. Distribution of the variation in five fi species. Heredity, 54: 297–305. G– 49 Golubtsov, A.S. and Krysanov, E.Yu. (2003) Karyological comparison of the small African barbs Barbus paludinosus (Cyprinidae) with developed and reduced spine in the dorsal fin. J. Ichthyol., 43: 245–252. fi G– 50 Gomes, V., Vazzoler, A.E.A.M. and Ngan, P.V. (1983) Estudos cariotipicos de peixes da familia Sciaenidae (Teleostei, Perciformes) da região de Cananéia, SP, Brasil. 1. Sobre o cariotipo de Micropogonias furnieri (Desmarest, 1823). Bolm Inst. Oceanogr. S Paulo, 32: 137–142. (In Portuguese with English synopsis) G– 51 Gomes, V., Vazzoler, A.E.A.M. and Ngan, P.V. (1983) Estudos cariotipicos de peixes da familia Sciaenidae (Teleostei, Perciformes) da região de Cananéia, SP, Brasil. 2. Sobre o cariotipo de Menticirrhus americanus (Linnaeus, 1758). Bolm Inst. Oceanogr. S Paulo, 32: 187–191. (In Portuguese with English synopsis) G– 52 Gomes, V., Ngan, P.V. and Passos, M.J.A.C.R. (1990) The karyotype of a marine catfish, fi Bagre bagre, from Brazil. Japan. J. Ichthyol., 37: 321–323. G– 53 Gonzalez, J.A., Bueno, M.L. and Forero, J.E. (1992) Caracterizacion cromosomica de dos especies icticas nativas; Guapucha, (Grundulus bogotensis) y Capitan, (Eremophilus mutisii), de la sabana de Bogota. Acta Biol. Colombiana, 7/8: 45–54. (In Spanish with English summary) G– 54 Gornung, E., Gabrielli, I. and Sola, L. (1998) Localization of the (TTAGGG)n telomeric sequence in zebrafish fi chromosomes. Genome, 41: 136–138. G– 55 Gorshkov, S.A. and Gorshkova, G.V. (1981) Analysis of relations between species of Pacifi fic salmons from the genera Oncorhynchus and Salmo. Zool. Zhurnal, 60: 84–96. (In Russian with English summary)
242
References
G– 56 Gorshkova, G.V. (1978) Some peculiarities of karyotypes of the Pacific fi salmon. Tsitologiya, 20: 1431–1435. (In Russian with English summary) G– 57 Gorshkova, G.V. (1980) Karyology and chromosomal polymorphism of Pacific fi salmon. In: Kirpichnikov, V.S. ed. Karyological variability, mutagenesis and gynogenesis in fishes. Inst. Cytol. Acad. Sci. USSR, Leningrad, pp. 29–33. (In Russian with English fi summary) G– 58 Gorshkova, G.V. and Gorshkov, S.A. (1985) Karyotypes of Kamchatkan trout of the genus Salmo. J. Ichthyol., 25(4): 115–123. G– 59 Gorshkova, G.V., Gorshkov, S.A. and Golani, D. (2002) Karyotypes of Barbus canis and Capoeta damascina (Pisces, Cyprinidae) from the Middle East. Ital. J. Zool., 69: 191–194. G– 60 Greenfi field, D.W., Abdel-Hameed, F., Deckert, G.D. and Flinn, R.R. (1973) Hybridization between Chrosomus erythrogasterr and Notropis cornutus (Pisces: Cyprinidae). Copeia, 1973: 54–60. G– 61 Greenfi field, D.W. and Greenfi field, T. (1972) Introgressive hybridization between Gila orcutti and Hesperoleucus symmetricus (Pisces: Cyprinidae) in the Cuyama River basin, California: I. Meristics, morphometrics and breeding. Copeia, 1972: 849–859. G– 62 Gregory, P.E., Howard-Peebles, P.N., Ellender, R.D. and Martin, B.J. (1980) C-banding of chromosomes from three established marine fish cell lines. Copeia, 1980: 545–547. G– 63 Grigoryan, K.A. and Vasiliev, V.P. (1993) Karyotypes of fi five species of goby (Gobiidae) from the basins of the Black and Caspian seas. J. Ichthyol., 33(1): 137–143. G– 64 Grigoryan, K.A. and Vasiliev, V.P. (1993) Comparative analysis of karyotypes of three species of gobies (Gobiidae) from the Black Sea Basin in the connection with their taxonomic relationships. Vopr. Ichthyol., 33(3): 449–452. (In Russian) G– 65 Grimm, H. (1972) Cytologische Untersuchungen an westafrikanischen Zahnkarpfen der Gattungen Aphyosemion Myers, 1924 und Roloffia fi Stenholt Clausen, 1966 (Pisces, Cyprinodontidae). Mitt. Hamburg. Zool. Mus. Inst., 68: 195–205. G– 66 Guégan, J.F., Rab, P., Machordom, A. and Doadrio, I. (1995) New evidence of hexaploidy in ‘large’ African Barbus with some considerations of the origin of hexaploidy. J. Fish Biol., 47: 192–198. G– 67 Gui, J.F., Li, Y.C., Li, K. and Zhou, T. (1984) A comparative study of the karyotypes of three species of gobioid fi fishes. Zool. Res., 5(3) suppl.: 67–68. (In Chinese) G– 68 Gui, J.F., Li, Y.C., Li, K., Hong, Y.H. and Zhou, T. (1985) Studies on the karyotypes of Chinese cyprinid fishes. fi VI. Karyotypes of three tetraploid species in Barbinae and one tetraploid species in Cyprininae. Acta Genet. Sinica, 12: 302–308. (In Chinese with English abstract) G– 69 Gui, J.F., Li, Y.C., Li, K. and Zhou, T. (1986) Studies on the karyotypes of Chinese cyprinid fishes. (VIII) Karyotypic analyses of fifteen species of Barbinae with a consideration for fi their phyletic evolution. Trans. Chinese Ichthyol. Soc., 5: 119–127. (In Chinese with English abstract) G– 70 Gui, J.F. and Zhou, T. (1986) Further improvement of the BrDU-Hoechst-Giemsa method and studies of BrDU-replication band karyotypes off Mylopharyngodon piceus and Ctenopharyngodon idellus. Acta Hydrobiol. Sinica, 10: 157–161. (In Chinese with English abstract) G– 71 Gul, S., Colak, A. and Sezgin, I. (2000) Karyotype analysis in Chalcalburnus mossulensis (Heckel, 1843). Turk. J. Biol., 24: 657–662. (In Turkish with English abstract) G– 72 Guo, X.H., Liu, S.J., Zhang, C. and Liu, Y. (2004) Comparative and evolutionary analysis of the cytochrome b sequences in cyprinids with different ploidy levels derived from crosses. Genetica, 121: 295–301. G– 73 Gyldenholm, A.O. and Scheel, J.J. (1971) Chromosome numbers of fishes. fi I. J. Fish Biol., 3: 479–486.
References
G– 74
G– 75
G– 76
G– 77 G– 78
G– 79
G– 80 G– 81
G– 82
G– 83
G– 84 G– 85 G– 86
G– 87 G– 88 G– 89
G– 90 G– 91
*G– 92
243
Garcia Morina, F. and Uribe-Alcocer, M. (1989) Análisis cromosómico del bagre marino Arius felis (Ariidae: Siluriformes) de la región de la laguna de Términos, Camp. An. Inst. Cienc. Mar Limnol. Univ. Nal. Autón. México, 16: 69–74. Gornung, E., Cordisco, C.A., Rossi, A.R., De Innocentiis, S., Crosetti, D. and Sola, L. (2001) Chromosomal evolution in Mugilidae: karyotype characterization of Liza saliens and comparative localization of major and minor ribosomal genes in the six Mediterranean mullets. Mar. Biol., 139: 55–60. Giles, V., Thode, G. and Alvarez, M.C. (1985) A new Robertsonian fusion in the multiple chromosome polymorphism of a Mediterranean population of Gobius paganellus (Gobiidae, Perciformes). Heredity, 55: 255–260. Gregory, T.R. and Hebert, P.D.N. (1999) The modulation of DNA content: proximate causes and ultimate consequences. Genome Res., 9: 317–324. Gromicho, M., Coutanceau, J., Ozouf-Costaz, C. and Collares-Pereira, M.J. (2006) Contrast between extensive variation of 28S rDNA and stability of 5S rDNA and telomeric repeats in the diploid-polyploid Squalius alburnoides complex and in its maternal ancestor Squalius pyrenaicus (Teleostei, Cyprinidae). Chrom. Res., 14: 297–306. Gaffaroglu, M., Yuksel, E. and Ráb, P. (2006) Note on the karyotype and NOR phenotype of leuciscine fish Acanthobrama marmid d (Osteichthyes, Cyprinidae). Biol. Bratislava, 61: 207–209. Gul, S., Nur, G. and Baysal, A. (2006) Karyotype analysis of Alburnus filippii. Ind. Vet. J., 83: 102–103. Garcia, C. and Moreira Filho, O. (2005) Cytogenetical analyses in three fish fi species of the genus Pimelodus (Siluriformes: Pimelodidae) from rio São Francisco: considerations about the karyotypical evolution in the genus. Neotrop. Ichthyol., 3: 285–290. Gold, J.R., Amemiya, C.T., Karel, W.J. and Iida, N. (1988) The karyotype and genome structure of the pirate perch Aphredoderus sayanus (Aphredoderidae: Teleostei). Experientia, 44: 68–70. Ghigliotti, L., Mazzei, F., Ozouf-Costaz, C., Bonillo, C., Williams, R., Cheng, C.C. and Pisano, E. (2007) The two giant sister species of the Southern Ocean, Dissostichus eleginoides and Dissostichus mawsoni, differ in karyotype and chromosomal pattern of ribosomal RNA genes. Polar Biol., 30: 625–634. Guégan, J.F. and Morand, S. (1996) Polyploid hosts: strange attractors for parasites? Oikos, 77: 366–370. Gregory, T.R. (2008) Animal genome size database. http://www.genomesize.com/ Gold, J.R., Li, Y.C., Birkner, M.C. and Jenkin, J.D. (1992) Chromosomal NOR karyotypes and genome sizes in Dionda (Osteichthyes: Cyprinidae) from Texas and New Mexico. Southwest. Nat., 37: 217–222. Gold, J.R., Ragland, C.J. and Schliesing, L.J. (1990) Genome size variation and evolution in North American cyprinid fishes. fi Genet. Sel. Evol., 22: 11–29. Goddard, K.A., Megwinoff, O., Wessner, L.L. and Giaimo, F. (1998) Confirmation fi of gynogenesis in Phoxinus eos-neogaeus (Pisces: Cyprinidae). J. Hered., 89: 151–157. Ghigliotti, L., Mazzei, F., Ozouf-Costaz, C., Christiansen, J.S., Fevolden, S. and Pisano, E. (2008) First cytogenetic characterization of the sub-arctic marine fi fish Mallotus villosus (Müller, 1776), Osmeriformes, Osmeridae. Genet. Mol. Biol., 31 (suppl.): 180–187. Galetti Jr., P.M., Da Silva, E.B. and Cerminaro, R.T. (1985) A multiple NOR system in the fish Serrasalmus spilopleura (Serrasalminae, Characidae). Brazil. J. Genet., 8: 479–484. Galetti Jr., P.M. and Foresti, F. (1987) Two new cases of ZZ/ZW heterogamety in Leporinus (Anostomidae, Characiformes) and their relationships in the phylogeny of the group. Brazil. J. Genet., 10: 135–140. Garcia, G., Hernandez, A. and Scvortzoff, E. (1994) Estudios citogeneticos en 5 nuevas especies del genero Cynolebias Steindachner, 1876 (Cyprinodontiformes, Rivulidae). V.
244
References
*G– 93 G– 94
G– 95
G– 96
G– 97
[H] H– 1 H–
2
H–
3
H–
4
H–
5
H–
6
H–
7
H– H–
8 9
H– 10 H– 11
H– 12 H– 13 H– 14 H– 15
Simp. Citogenet. Evol. e Aplic. de Peixes Neotropicais, Botucatu, SP, p. 46 (abstract). (After K-114) Grimm, H. (1974) Zum Problem der Unterscheidung der Gattungen Roloffia fi und Aphyosemion. Aquarien-Terrarien, 2: 50–53. (After K-114) Galetti Jr., P.M., Mestriner, C.A., Monaco, P.J. and Rasch, E.M. (1995) Post-zygotic modifications and intra- and inter-individual nucleolar organizing region variations in fish: fi report of a case involving Leporinus friderici. Chrom. Res., 3: 285–290. Gravena, W., Teribele, R., Giuliano-Caetano, L. and Dias, A.L. (2007) Occurrence of B chromosomes in Cyphocharax modestus (Fernández-Yépez, 1948) and Steindachneria insculpta (Fernández-Yépez, 1948) (Characiformes, Curimatidae) from the Tibagi River basin (Paraná State, Brazil). Brazil. J. Biol., 67 (special number): 631–637. Giuliano-Caetano, L. and Bertollo, L.A.C. (1988) Karyotype variability in Hoplerythrinus unitaeniatus (Characiformes, Erythrinidae). I. Chromosome polymorphism in the Rio Negro population (Manaus, state of Amazonas). Brazil. J. Genet., 11: 299–306. Gold, J.R., Avise, J.C. and Gall, G.A.E. (1977) Chromosome cytology in the cutthroat trout series, Salmo clarki (Salmonidae). Cytologia, 42: 377–382.
Haas, R. (1979) Intergeneric hybridyzation in a sympatric pair of Mexican cyprinodontid fishes. Copeia, 1979: 149–152. Hafez, R., Labat, R. and Quillier, R. (1978) Etude cytogénétique chez quelques espèces de cyprinidés de la région Midi-Pyrénées. Bull. Soc. Hist. Nat. Toulouse, 114: 122–159. Hafez, R., Labat, R. and Quillier, R. (1978) Aneuploidie observée chez des populations de gardons (Rutilus rutilus L.) et d’ablettes (Alburnus alburnus L.) de la région MidiPyrénées. Bull. Soc. Hist. Nat. Toulouse, 114: 85–92. Hafez, R., Labat, R. and Quillier, R. (1978) Teneurs nucléaires en A.D.N. et relations évolutives dans la famille des cyprinides (Teleostei). Bull. Soc. Hist. Nat. Toulouse, 114: 71–84. Hafez, R., Labat, R. and Quillier, R. (1981) Recherches sur les chromosomes surnuméraires de l’ablette (Alburnus alburnus L.). Cybium, 3rd ser., 5: 81–87. Hartley, S.E. and Horne, M.T. (1984) Chromosome relationships in the genus Salmo. Chromosoma, 90: 229–237. Hartley, S.E. and Horne, M.T. (1984) Chromosome polymorphism and constitutive heterochromatin in the Atlantic salmon, Salmo salar. Chromosoma, 89: 377–380. Hartley, S.E. (1987) The chromosomes of salmonid fishes. fi Biol. Rev., 62: 197–214. Hartley, S.E. (1989) Chromosomes and constitutive heterochromatin distribution in Arctic charr, Salvelinus alpinus (L.) (Pisces: Salmonidae). Genetica, 79: 161–166. Hartley, S.E. (1988) Cytogenetic studies of Atlantic salmon, Salmo salarr L., in Scotland. J. Fish Biol., 33: 735–740. Harvey, S.C., Powell, S.F., Kennedy, D.D., McAndrew, B.J. and Penman, D.J. (2002) Karyotype analysis of Oreochromis mortimeri (Trewavas) and Sarotherodon melanotheron (Rüppell). Aquacult. Res., 33: 339–342. Hellmer, A., Voiculescu, I. and Schempp, W. (1991) Replication banding studies in two cyprinid fishes. fi Chromosoma, 100: 524–531. Hinegardner, R. and Rosen, D.E. (1972) Cellular DNA content and the evolution of teleostean fishes. Amer. Natur., 106: 621–644. Hirata, J. and Urushido, T. (2000) Karyotypes and DNA contents in Osteoglossiformes fishes. Sci. Rep. Res. Inst. Evol. Biol., 9: 83–90. (In Japanese with English abstract) fi Hitotsumachi, S. and Sasaki, M. (1967) A note on the chromosomes of the loach (Misgurnus anguillicaudatus). Chrom. Inform. Serv., 8: 19–20.
References
245
H– 16 Hitotsumachi, S., Sasaki, M. and Ojima, Y. (1969) A comparative karyotype study in several species of Japanese loaches (Pisces, Cobitidae). Japan. J. Genet., 44: 157–161. H– 17 Hollenbeck, P.J. and Chrisman, C.L. (1981) Kidney preparations for chromosomal analyses of Ictaluridae. Copeia, 1981: 216–217. H– 18 Hong, Y.H. and Zhou, T. (1983) Karyotypic study of two species of Chinese catfishes fi (Siluridae). J. Wuhan Univ. (Nat. Sci.), 1983(3): 106–108, 128. (In Chinese with English abstract) H– 19 Hong, Y.H., Zhou, M. and Zhou, T. (1983) Studies on the karyotypes of Chinese cyprinid fishes. III. Comparative analysis of the chromosomes of seven species of acheilognathid fi fishes. J. Wuhan Univ. (Nat. Sci.), 1983(2): 96–102, 116. (In Chinese with English fi abstract) H– 20 Hong, Y.H. and Zhou, T. (1984) Karyotypes of nine species of Chinese catfi fishes (Bagridae). Zool. Res., 5(3) (suppl.): 21–28. (In Chinese with English abstract) H– 21 Hong, Y.H. and Zhou, T. (1984) Karyotype and its ZZ-ZO type sex chromosome of Coilia brachygnathus. Hereditas (Beijing), 6(4): 12–14. (In Chinese) H– 22 Hong, Y.H., Li, Y.C., Li, K., Gui, J.F. and Zhou, T. (1984) Studies on the karyotypes of Chinese cyprinid fishes. IV. Comparative analysis of the karyotypes of 11 species of gobionid fishes with special considerations of their phylogenetic relationship. Acta Zool. Sinica, 30: 343–351. (In Chinese with English abstract) H– 23 Hong, Y.H. and Zhou, T. (1985) Studies on the karyotype and C-banding patterns in fishes. Acta Acheilognathus gracilis with a discussion on the evolution of acheilognathid fi Genet. Sinica, 12: 143–148. (In Chinese with English abstract) H– 24 Hong, Y.H. and Zhou, T. (1985) Chromosome banding in fishes. fi I. An improved BrdUHoechst-Giemsa method for revealing DNA-replication bands in fish fi chromosomes. Acta Genet. Sinica, 12: 67–71. (In Chinese with English abstract) H– 25 Howell, W.M. and Denton, T.E. (1969) Chromosome of ammocoetes of the Ohio brook lampley, Lampetra aepyptera. Copeia, 1969: 393–395. H– 26 Howell, W.M. and Bloom, S.E. (1973) Sex-associated differential fl fluorescence of mudminnow chromosomes and spermatozoa. Nature, 245: 261–263. H– 27 Howell, W.M. and Black, D.A. (1979) Location of the nucleolus organizer regions on the sex chromosomes of the banded killifi fish, Fundulus diaphanus. Copeia, 1979: 544–546. H– 28 Hartley, S.E. (1990) Variation in cellular DNA content in Arctic charr, Salvelinus alpinus (L.). J. Fish Biol., 37: 189–190. H– 29 Howell, W.M. (1972) Somatic chromosomes of the black ghost knifefish, fi Apteronotus albifrons (Pisces: Apteronotidae). Copeia, 1972: 191–193. H– 30 Howell, W.M. and Villa, J. (1976) Chromosomal homogeneity in two sympatric cyprinid fishes of the genus Rhinichthys. Copeia, 1976: 112–116. fi H– 31 Howell, W.M. and Black, D.A. (1980) Controlled silver-staining of nucleolus organizer regions with a protective colloidal developer: a 1-step method. Experientia, 36: 1014–1015. H– 32 Hong, Y.H. and Zhou, T. (1984) Karyotype of half-beak fish. fi Zool. Res., 5(3) suppl.: 63–64. (In Chinese) H– 33 Huber, J.H. and Scheel, J.J. (1981) Revue systématique de la superespèce Aphyosemion elegans. Description de A. chauchei et A. schioetzi n. sp. Rev. fr. Aquariol., 8(2): 33–42. H– 34 Hu, G.H., Sun, G.H., Zhang, Y.B., Gu, Q., Li, G., Tang, H. and Fan, L.H. (2005) Karyotype analyses of northern sheatfish fi (Silurus soldatovi). J. Dalian Fish. Univ., 20: 318–321. (In Chinese with English abstract) H– 35 Howell, W.M. and Duckett, C.R. (1971) Somatic chromosomes of the lamprey, Ichthyomyzon gagei (Agnatha: Petromyzonidae). Experientia, 27: 222–223.
246
References
H– 36 Harvey, S.C., Campos-Ramos, R., Kennedy, D.D., Ezaz, M.T., Bromage, N.R., Griffin, fi D.K. and Penman, D.J. (2002) Karyotype evolution in Tilapia: mitotic and meiotic chromosome analysis of Oreochromis karongae and O. niloticus × O. karongae hybrids. Genetica, 115: 169–177. H– 37 Hinegardner, R. (1976) The cellular DNA content of sharks, rays and some other fi fishes. Comp. Biochem. Physiol., 55B: 367–370. H– 38 Hattori, R.S., Daniel-Silva, M.F.Z. and Almeida-Toledo, L.F. (2007) Karyotype characterization and gene mapping of 5S and 18S rDNA in three species of Oligosarcus (Teleostei: Characidae). Caryologia, 60: 372–378. H– 39 Hinegardner, R. (1968) Evolution of cellular DNA content in teleost fi fishes. Amer. Natur., 102: 517–523. H– 40 Hardie, D.C. and Hebert, P.D.N. (2004) Genome-size evolution in fi fishes. Can. J. Fish. Aquat. Sci., 61: 1636–1646, table D1. H– 41 Hardie, D.C. and Hebert, P.D.N. (2003) The nucleotypic effects of cellular DNA content in cartilaginous and ray-finned fi fishes. Genome, 46: 683–706. H– 42 Hashimoto, D.T., Laudicina, A., Bortolozzi, J., Foresti, F. and Porto-Foresti, F. (2009) Chromosomal features of nucleolar dominance in hybrids between the Neotropical fish fi Leporinus macrocephalus and Leporinus elongatus (Characiformes, Anostomidae). Genetica, 137: 135–140. *H–43 Hernandez, A. and Garcia, G. (1994) Estudio citogenetico en Cynolebias cheradophilus (Cyprinodontiformes, Rivulidae). V. Simp. Citogenet. Evol. E Aplic. De Peixes Neotropicais, Botucatu, SP, p. 22 (abstract). (After K-114) *H–44 Haimovici, S. and Ciuca, L. (1973) Observations concemant les chromosomes chez Eudontomyzon mariae (Berg, 1931) (Cyclostomata, Petromyzonidae). Ann. Sti. Univ. Jasi. Sec. 2, 19: 345–348. (After K-114) *H–45 Hudson, R.G. (1976) A comparison of karyotypes and erythrocyte DNA quantities in several species of catfish fi (Siluriformes) with phylogenetic implications. Unpublished Ph D. Dissertation, North Carolina State University, Raleigh. (After K114) [I] I– I– I– I– I– I–
I– I– I–
1 Ida, H., Murofushi, M., Fujiwara, S. and Fujino, K. (1978) Preparation of fi fish chromosomes by in vitro colchicine treatment. Japan. J. Ichthyol., 24: 281–284. 2 Ida, H. and Yunokawa, K. (1980) Karyotypic variation found among five fi species of the family Platycephalidae. Japan. J. Ichthyol., 27: 122–128. 3 Ida, H. (1981) Karyotypes of elasmobranchs. Mar. Sci. Monthly, 13(1): 52–58. (In Japanese) 4 Ida, H., Iwasawa, T. and Kamitori, M. (1982) Karyotypes in eight species off Sebastes from Japan. Japan. J. Ichthyol., 29: 162–168. 5 Ida, H., Sato, I. and Miyawaki, N. (1985) Karyotypes of two species in the order Torpediniformes. Japan. J. Ichthyol., 32: 107–111. 6 Ida, H., Asahida, T., Yano, K. and Tanaka, S. (1986) Karyotypes of two sharks, Chlamydoselachus anguineus and Heterodontus japonicus, and their systematic implications. In: Uyeno, T., Arai, R., Taniuchi, T. and Matsuura, K. eds. Indo-Pacific fi fish biology. Ichthyological Society of Japan, Tokyo, pp. 158–163. 7 Ida, H., Terashima, H. and Fujimi, T. (1989) Karyotypes in four species of the family Cottidae. Japan. J. Ichthyol., 36: 135–140. 8 Ida, H., Oka, N. and Hayashizaki, K. (1991) Karyotypes and cellular DNA contents of three species of the subfamily Clupeinae. Japan. J. Ichthyol., 38: 289–294. 9 Ida, H., Oka, N., Terashima, H. and Hayashizaki, K. (1993) Karyotypes and cellular DNA contents of three species of the family Scombridae from Japan. Bull. Japan. Soc. Sci. Fish., 59: 1319–1323.
References
247
I– 10 Ilyinskikh, N.N. (1980) Variability of the normal chromosome set in homoiothermal and poikilothermal vertebrates. Zool. Zhurnal, 59: 1494–1499. (In Russian with English summary) I– 11 Inokuchi, T., Abe, S., Yamaha, E. and Yamazaki, F. (1993) A preliminary study on BrdU replication banding in the chromosomes of chum salmon, Oncorhynchus keta. Chrom. Inform. Serv., 54: 30–32. I– 12 Ishii, K. and Yabu, H. (1981) Chromosomes in two species of rock fi fish. Chrom. Inform. Serv., 31: 22–24. I– 13 Ishii, K. and Yabu, H. (1983) Chromosomes of the longnose eel, Synaphobranchus kaupi Johnson (Anguilliformes, Pisces). Chrom. Inform. Serv., 35: 11–13. I– 14 Ishii, K. and Yabu, H. (1985) Chromosomes in three species of Gadidae (Pisces). Bull. Japan. Soc. Sci. Fish., 51: 25–28. I– 15 Ishikawa, T., Takai, A. and Ueno, K. (2001) Chromosome aberrations and survival in normal and dechorionated embryos of Misgurnus anguillicaudatus (Cobitidae, Pisces) exposed to mitomycin C. Cytologia, 66: 215–219. I– 16 Itahashi, M. and Kawase, H. (1975) Karyotype analysis in five fi species belonging to Cyprinodontidae, Teleostomi. Bull. Aichi Univ. Educ. (Nat. Sci.), 24: 153–160. I– 17 Itoh, Y. and Niiyama, H. (1972) Comparative chromosome studies of two cyprinid fishes, fi Ugui, Tribolodon hakonensis (Günther) and Ezo-ugui, T. ezoe Okada et Ikeda. Bull. Fac. Fish. Hokkaido Univ., 23(2): 73–76. (In Japanese with English abstract) I– 18 Ivanov, V.N. (1975) Chromosomes of the Black Sea Gobiidae–Gobius melanostomus (Pallas) and Gobius batrachocephalus (Pallas). Tsitol. Genet., 9: 551–552. (In Russian with English summary) I– 19 Ivanov, V.N. (1969) The chromosomes of the Black Sea fl flatfi fish Rhombus maeoticus Pallas. Dokl. Biol. Sci., 187: 507–509. I– 20 Ivanov, V.N. (1969) Chromosomes in the embryonic cells of the Black Sea anchovy. Tsitol. Genet., 3: 285–287. (In Russian with English summary) I– 21 Ida, H. (1988) A new method for karyological analysis of large fish. fi In: Uyeno, T. and Okiyama, M. eds. Ichthyology currents 1988. Asakura Shoten, Tokyo, pp. 202–217. (In Japanese) I– 22 Iliadou, K. and Rackham, B.D. (1990) The chromosomes of a catfish fi Parasilurus aristotelis from Greece. Japan. J. Ichthyol., 37: 144–148. I– 23 Iwami, T., Ogawa, A. and Matsuura, K. (1992) Karyotypes in three species of the boxfish fi genus Lactoria. Advance abstracts for 25th Annual meeting, 1992, the Ichthyological Society of Japan, p. 50. (In Japanese) [J] J– J– J– J–
J–
J–
1 Jamieson, A. (1974) Genetic ‘tags’ for marine fi fish stocks. In: Harden Jones, F.R. ed. Sea fisheries research. Elek Science, London, pp. 91–99. fi 2 Jankun, M., Kucharczyk, D., Woznicki, P. and Kotik, A. (1997) Chromosome study of Abramis brama (L.) from Lake Kortowskie, Poland. Cytobios, 90: 175–179. 3 Jankun, M., Rab, P. and Vuorinen, J. (1991) A karyotype study of vendace, Coregonus albula (Pisces, Coregoninae). Hereditas, 115: 291–294. 4 Jankun, M., Ocalewicz, K., Pardo, B.G., Martinez, P., Woznicki, P. and Sanchez, L. (2003) Localization of 5S rRNA loci in three coregonid species (Salmonidae). Genetica, 119: 183–186. 5 Jankun, M., Ocalewicz, K., Pardo, B.G., Martinez, P., Woznicki, P. and Sanchez, L. (2003) Chromosomal characteristics of rDNA in European grayling Thymallus thymallus (Salmonidae). Genetica, 119: 219–224. 6 Jenkin, J.D., Li, Y.C. and Gold, J.R. (1992) Cytogenetic studies in North American minnows (Cyprinidae). XXVI. Chromosomal NOR phenotypes of 21 species from the Western United States. Cytologia, 57: 443–453.
248 J– J– J– J– J– J–
J–
J– J– J–
J–
J–
*J–
*J–
J–
References
7 Jesus, C.M. and Moreira-Filho, O. (2000) Karyotypes of three species of Parodon (Teleostei: Parodontidae). Ichthyol. Explor. Freshwaters, 11: 75–80. 8 Jesus, C.M. and Moreira-Filho, O. (2000) Cytogenetic studies in some Apareiodon species (Pisces, Parodontidae). Cytologia, 65: 397–402. 9 John, G., Barat, A. and Lakra, W.S. (1992) Localization of nucleolar organizer regions in fish species, Catla catla and Mystus vittatus. Nucleus, 35: 179–181. fi 10 John, G., Barat, A. and Lakra, W.S. (1993) Localization of nucleolar organizer regions in Labeo (Cyprinidae). La Kromosomo, II, 70: 2381–2384. 11 Joswiak, G.R., Starnes, W.C. and Moore, W.S. (1980) Karyotypes of three species of the genus Phoxinus (Pisces: Cyprinidae). Copeia, 1980: 913–916. 12 Jurajda, P., Ráb, P., Sˇlechta, V. and Sˇlechtová, V. (1996) Occurrence and identification fi of Kessler’s gudgeon (Gobio kessleri) in the River Beccˇva (Czech Republic). Folia Zool., 45: 253–257. 13 Jordão, L.C., Oliveira, C., Foresti, F. and Godinho, H.M. (1992) Cytogenetic characterization of the mullet, Mugil platanus (Pisces, Mugilidae). Bol. Inst. Pesca, 19: 63–66. (In Portuguese with English abstract) 14 Johnson, C.R., White, R.W.G. and Bick, Y.A.E. (1981) Cytotaxonomy of seven species of Galaxias (Pisces: Galaxiidae) in Tasmania. Genetica, 56: 17–21. 15 Johnson, O.W., Utter, F.M. and Rabinovitch, P.S. (1987) Interspecies differences in salmonid cellular DNA identifi fied by flow cytometry. Copeia, 1987: 1001–1009. 16 Jesus, C.M., Galetti Jr., P.M., Valentini, S.R. and Moreira-Filho, O. (2003) Molecular characterization and chromosomal localization of two families of satellite DNA in Prochilodus lineatus (Pisces, Prochilodontidae), a species with B chromosomes. Genetica, 118: 25–32. 17 Jara-Seguel, P., Valdebenito, I., Palma-Rojas, C. and Rebolledo, C. (2008) Nuclear DNA content in Galaxias maculatus (Teleostei: Osmeriformes: Galaxiidae). Lat. Am. J. Aquat. Res., 36: 87–91. 18 Jara-Seguel, P., Valdebenito, I. and Palma-Rojas, C. (2008) Nuclear DNA content in Galaxias platei (Steindachner, 1898) (Teleostei: Osmeriformes: Galaxiidae). Gayana, 72(2): 196–201. (In Spanish with English abstract) 19 Jesus, C.F.G., Lister, T.J., Grisolia, C.K. and Silva, A.J. (1988) Estudos citogenéticos preliminares de Metynnis mola e Mylossoma orbignyanum (Pisces, Characidae) do Pantanal Mato-Grossense. II. Simp. Citogenet. Evol. e Aplic. de Peixes Neotropicais, Sao Carlos, SP, p. 23 (abstract). (After K-114) 20 Julio, H.F., Garcia, R.M.G. and Venere, P.C. (1988) Estudos cariotipicos em 2 espécies da familia Doradidae (Pisces: Siluriformes). II. Simp. Citogenet. Evol. E Aplic. De Peixes Neotropicais, Sao Carlos, SP, p. 39 (abstract). (After K-114) 21 Jaillon, O., Aury, J.M., Brunet, F., Petit, J.L., Stange-Thomann, N. et al. (2004) Genome duplication in the teleost fish fi Tetraodon nigroviridis reveals the early vertebrate protokaryotype. Nature, 431: 946–957.
[K] K– 1
K–
K–
Kaidanova, T.I. (1980) A comparative karyological analysis of some salmon and whitefish species. In: Kirpichnikov, V.S. ed. Karyological variability, mutagenesis and gynofi genesis in fishes. Inst. Cytol. Acad. Sci. USSR, Leningrad, pp. 16–23. (In Russian with English summary) 2 Kalat, M., Mayr, B., Ráb, P. and Schleger, W. (1988) Heterochromatin studies and localization of NORs in European grayling (Thymallus thymallus, Pisces, Thymallidae). Caryologia, 41: 245–249. 3 Kang, Y.S. and Park, E.H. (1973) Somatic chromosomes of the Manchurian trout, Brachymystax lenok (Salmonidae). Chrom. Inform. Serv., 15: 10–11.
References
K–
4
K–
5
K–
6
K–
7
K–
8
K–
9
K– 10 K– 11
K– 12
K– 13 K– 14
K– 15
K– 16 K– 17 K– 18 K– 19
K– 20 K– 21
K– 22
K– 23
249
Kang, Y.S. and Park, E.H. (1973) Studies on the karyotypes and comparative DNA values in several Korean cyprinid fi fishes. Korean J. Zool., 16: 97–108. Kang, Y.S. and Park, E.H. (1974) Studies on the chromosomes and relative DNA values in four species of the family Cyprinidae of Korean fresh-waters. Chrom. Inform. Serv., 16: 24–26. Kang, Y.S. and Park, E.H. (1975) Leucocyte culture of the eel without autologous serum. Japan. J. Genet., 50: 159–161. Kantek, D.L.Z., Fenocchio, A.S. and Cestari, M.M. (2003) Cytogenetic characterization and NOR polymorphism in Astyanax sp. C (Tetragonopterinae, Characidae) from the First Plateau of the Iguaçu River (Paraná State, Brazil). Cytologia, 68: 19–24. Karakousis, Y., Vareli, K., Kotsinas, A. and Triantaphyllidis, C. (1993) Genetic characteristics of a perch (Perca fluviatilis fl ) population from Lake Volvi (Macedonia, Greece). Zool. Anz., 230(3/4): 131–136. Karbe, L. (1961) Cytologische Untersuchung der Sterilitätserscheinungen bei anatolischen Zahnkarpfen, ein Beitrag zum Speziationsproblem. Mitt. Hamburg. Zool. Mus. Inst., 59: 73–104. Kasama, M., Kobayasi, H. and Jeon, S.R. (1984) Chromosomes of Coreoleuciscus splendidus compared with those of Pungtungia herzi. Japan Women’s Univ. J., 31: 109–111. Kasama, M. and Kobayasi, H. (1987) Hybridization experiments in Cyprinida (I). Cross between Gnathopogon elongatus elongatus and Pseudorasbora parva. Japan Women’s Univ. J., 34: 107–112. Kasama, M. and Kobayasi, H. (1988) Hybridization experiments in Cyprinida (III). Cross between Gnathopogon elongatus elongatus and Sarcocheilichthys biwaensis. Japan Women’s Univ. J., 35: 119–124. Kasama, M. and Kobayasi, H. (1989) Hybridization experiment between female crucian carp and male grass carp. Bull. Japan. Soc. Sci. Fish., 55: 1001–1006. Kasama, M. and Kobayasi, H. (1989) Hybridization experiments in Cyprinida (IV). Cross between Gnathopogon elongatus elongatus and Squalidus gracilis. Japan Women’s Univ. J., 36: 101–106. Kashiwagi, E., Takai, A. and Ojima, Y. (2005) Chromosomal distribution of constitutive heterochromatin and nucleolus organizer regions in four Dascyllus fi fishes (Pomacentridae, Perciformes). Cytologia, 70: 345–349. Kato, F. and Ojima, Y. (1991) Karyotypes of four species of Corydoras catfi fishes (Siluriformes, Callichthyidae). Chrom. Inform. Serv., 52: 26–29. Kato, F. and Ojima, Y. (1991) A new report of the karyotype in a catfish fi Corydoras aeneus Gill. Chrom. Inform. Serv., 51: 29–30. Kaur, D. and Srivastava, M.D.L. (1965) The structure and behaviour of chromosomes in five fresh-water teleosts. Caryologia, 18: 181–191. fi Kavalco, K.F. and Moreira-Filho, O. (2003) Cytogenetical analyses in four species of the genus Astyanax (Pisces, Characidae) from Paraiba do Sul river basin. Caryologia, 56: 453–461. Kavalco, K.F., Pazza, R., Bertollo, L.A.C. and Moreira-Filho, O. (2005) Karyotypic diversity and evolution of Loricariidae (Pisces, Siluriformes). Heredity, 94: 180–186. Kavalco, K.F., Pazza, R., Bertollo, L.A.C. and Moreira-Filho, O. (2005) Molecular cytogenetics of Oligosarcus hepsetus (Teleostei, Characiformes) from two Brazilian locations. Genetica, 124: 85–91. Kawamura, K. and Hosoya, K. (1995) Karyotypic variation in Japanese rosy bitterling, Rhodeus ocellatus kurumeus (Jordan and Thompson). Bull. Natl. Res. Inst. Aquaculture, 24: 17–21. Kaydanova, T.I. (1975) A study of the karyotypes of the brown trout, Salmo trutta morpha fario, of the Ropsha population. J. Ichthyol., 15: 1007–1011.
250
References
K– 24 Kelly, R.K., Miller, H.R., Nielsen, O. and Clayton, J.W. (1980) Fish cell culture: characteristics of a continuous fibroblastic cell line from walleye (Stizostedion vitreum vitreum). Can. J. Fish. Aquat. Sci., 37: 1070–1075. K– 25 Kendall, C., Valentino, S., Bodine, A.B. and Luer, C.A. (1994) Triploidy in a nurse shark, Ginglymostoma cirratum. Copeia, 1994: 825–827. K– 26 Khuda-Bukhsh, A.R. and Manna, G.K. (1974) Somatic chromosomes in seven species of teleostean fishes. fi Chrom. Inform. Serv., 17: 5–6. K– 27 Khuda-Bukhsh, A.R. (1975) Somatic chromosomes of an exotic fish fi Puntius japonicus. J. Cytol. Genet. (India) Congr. Suppl., 1975: 118–120. K– 28 Khuda-Bukhsh, A.R. and Manna, G.K. (1976) Chromosome analyses in two species of Indian mullets (Pisces). Ind. Biologist, 8: 23–26. K– 29 Khuda-Bukhsh, A.R. (1978) Somatic chromosomes of an estuarine fish, fi Trypauchen vagina (fam.: Gobiidae) from Sagar Island, West Bengal, India. Curr. Sci., 47: 137–138. K– 30 Khuda-Bukhsh, A.R. (1979) Karyology of two species of hillstream fi fishes, Barilius bendelesis and Rasbora daniconius (fam.: Cyprinidae). Curr. Sci., 48: 793–794. K– 31 Khuda-Bukhsh, A.R. (1979) Chromosomes in three species of fi fishes, Aplocheilus panchax (Cyprinodontidae), Lates calceriferr (Percidae) and Gadusia chapra (Clupeidae). Caryologia, 32: 161–169. K– 32 Khuda-Bukhsh, A.R., Gupta, S.K. and Goswami, S. (1980) Karyotypic studies in Garra lamta and Mystus cavassius (Pisces). Proc. Ind. Acad. Sci., Sec. B, 89: 557–562. K– 33 Khuda-Bukhsh, A.R. (1980) A high number of chromosomes in the hillstream cyprinid, Tor putitora (Pisces). Experientia, 36: 173–174. K– 34 Khuda-Bukhsh, A.R., Chattopadhyay, G.K. and Das, S.K. (1981) Karyomorphology of two species of freshwater fishes fi Chanda (Ambassis) nama (fam: Centropomidae) and Trichogaster lalius (fam. Osphronemidae). Perspect. Cytol. Genet., 3: 141–144. K– 35 Khuda-Bukhsh, A.R. and Nayak, K. (1981) Karyotypic studies in two species of Barilius (Cyprinidae: Pisces). Chrom. Inform. Serv., 30: 15–17. K– 36 Khuda-Bukhsh, A.R. (1982) Karyomorphology of two species of Torr (Pisces; Cyprinidae) with a high number of chromosomes. Experientia, 38: 82–83. K– 37 Khuda-Bukhsh, A.R. and Nayak, K. (1982) Karyomorphological studies in two species of hillstream fishes from Kashmir, India: occurrence of a high number of chromosomes. Chrom. Inform. Serv., 33: 12–14. K– 38 Khuda-Bukhsh, A.R. (1984) Karyotype studies in two species of hill stream fi fishes, Labeo diplostomus and Garra gotyla gotyla (Pisces, Cyprinidae). Perspect. Cytol. Genet., 4: 421–424. K– 39 Khuda-Bukush, A.R. and Barat, A. (1984) Somatic and germinal chromosomes of a gobiid, Boleophthalmus dentatus (Pisces). Life Sci. Adv., 3: 146–148. K– 40 Khuda-Bukhsh, A.R. (1985) Cytological indications of polyploidy in some Himalayan hillstream fishes. Zool. Orientalis, 2: 93–99. K– 41 Khuda-Bukhsh, A.R., Chanda, T. and Barat, A. (1986) Karyomorphology and evolution in some Indian hillstream fishes fi with particular reference to polyploidy in some species. In: Uyeno, T., Arai, R., Taniuchi, T. and Matsuura, K. eds. Indo-Pacific fi fish biology. Ichthyological Society of Japan, Tokyo, pp. 886–898. K– 42 Khuda-Bukhsh, A.R. and Barat, A. (1987) Chromosomes in fifteen species of Indian teleosts (Pisces). Caryologia, 40: 131–144. K– 43 Khuda-Bukhsh, A.R. and Chanda, T. (1989) Somatic chromosomes of three species of hillstream fishes from Assam. In: Das, P. and Jhingran, A.G. eds. Fish genetics in India. Today & Tomorrow’s Printers and Publishers, New Delhi, pp. 69–73. K– 44 Khuda-Bukhsh, A.R. and Tiwary, S. (1991) Localization of nucleolus organizer regions (NORs) in the metaphase chromosomes of the Indian climbing perch, Anabas testudineus (Pisces). Proc. Zool. Soc. Calcutta, 44: 101–105.
References
K– 45
K– 46
K– 47
K– 48 K– 49
K– 50 K– 51
K– 52 K– 53
K– 54
K– 55
K– 56
K– 57 K– 58
K– 59 K– 60
K– 61 K– 62 K– 63 K– 64
251
Khuda-Bukhsh, A.R., Rahman, A. and Chanda, T. (1992) A study of chromosomes in three species of hillstream fish fi belonging to the genus Barilius (Cyprinidae: Pisces). Proc. Nat. Acad. Sci. India, 62(B): 199–203. Khuda-Bukhsh, A.R., Rahman, A., Chanda, T., Nayak, K. and Khuda-Bukhsh, A. (1995) Diploid numbers and chromosome formulae of some 29 species of Indian teleosts (Pisces). Chrom. Inform. Serv., 58: 38–39. Kikuma, Y., Inafuku, J., Kubota, S. and Kohno, S.-I. (2000) Banding karyotype and 5S ribosomal DNA loci in the Japanese bitterling, Rhodeus ocellatus (Cyprinidae). Chrom. Sci., 3: 101–103. Kikuno, T., Ojima, Y. and Yamashita, N. (1986) Chromosomes of flounder, fl Paralichthys olivaceus. Proc. Japan Acad., Ser. B, 62: 194–196. Kikuno, T. and Ojima, Y. (1987) A karyotypic study of a guitarfish, fi Rhinobatus hynnicephalus Richardson (Pisces, Rajiformes). La Kromosomo, II, 47/48: 1538– 1544. Kikuno, T. and Ojima, Y. (1987) Karyotypic study of two species in Atheriniformes and Perciformes (Teleostei, Pisces). Proc. Japan Acad., Ser. B, 63: 205–207. Kiliç Demirok, N. and Ünlü, E. (2001) Karyotypes of cyprinid fish fi Capoeta trutta and Capoeta capoeta umbla (Cyprinidae) from the Tigris River. Turk. J. Zool., 25: 389–393. Kim, D.S., Park, E.H. and Kim, J.S. (1982) Karyotypes of nine species of the Korean catfishes (Teleostomi: Siluriformes). Korean J. Genet., 4: 57–68. fi Kim, D.S., Jeon, I.G. and Lee, J.K. (1989) Karyotypes, DNA values and nuclear sizes of several scups (Teleostomi: Perciformes). Korean J. Ichthyol., 1: 35–41. (In Korean with English abstract) Kim, D.S., Nam, Y.K., Noh, J.K., Park, C.H. and Chapman, F.A. (2005) Karyotype of North American shortnose sturgeon Acipenser brevirostrum with the highest chromosome number in the Acipenseriformes. Ichthyol. Res., 52: 94–97. Kim, I.S., Lee, G.Y. and Yang, S.Y. (1985) Systematic study of the subfamily Leuciscinae (Cyprinidae) from Korea. Bull. Korean Fish. Soc., 18: 381–400. (In Korean with English abstract) Kim, I.S. and Lee, J.H. (1986) A chromosomal study on the genus Cobitis (Pisces: Cobitidae) in the southern part of Korea. Bull. Korean Fish. Soc., 19: 257–264. (In Korean with English abstract) Kim, I.S. and Moon, K.C. (1987) The karyotype of a ricefish, fi Oryzias latipes from southern Korea. Korean J. Zool., 30: 379–386. (In Korean with English abstract) Kim, I.S., Lee, E.H. and Son, Y.M. (1988) Morphological variation and geographic distribution of two species of Nemacheiline loaches (Pisces, Cobitidae) from Korea. Korean J. Zool., 31: 283–294. (In Korean with English abstract) Kim, I.S. and Shim, J.H. (1991) Karyotypes of the genus Pseudopungtungia (Pisces, Cyprinidae). Korean J. Zool., 34: 54–58. Kimizuka, Y., Kobayasi, H. and Mizuno, N. (1982) Geographic distributions and karyotypes of Cobitis takatsuensis and Niwaella delicata (Cobitididae). Japan. J. Ichthyol., 29: 305–310. Kimizuka, Y. and Kobayasi, H. (1983) Geographic distributions of karyological races of Cobitis biwae (Cobitididae). Japan. J. Ichthyol., 30: 308–312. Kingston, D.I. (1978) Skiffi fia francesae, a new species of goodeid fish fi from Western Mexico. Copeia, 1978: 503–508. Kirby, R.F., Thompson, K.W. and Hubbs, C. (1977) Karyotypic similarities between the Mexican and blind tetras. Copeia, 1977: 578–580. Kirpichnikov, V.S. (ed) (1980) Karyological variability, mutagenesis and gynogenesis in fishes. Inst. Cytol. Acad. Sci. USSR, Leningrad. (In Russian with English summary) fi
252
References
K– 65 Kitada, J. and Tagawa, M. (1972) On the chromosomes of the rice-field fi eel (Fluta alba = Monopterus albus). La Kromosomo, 88/89: 2804–2807. (In Japanese with English summary) K– 66 Kitada, J. and Tagawa, M. (1973) On the chromosomes of two species of Cyclostomata. La Kromosomo, 91: 2913–2916. (In Japanese with English summary) K– 67 Kitada, J. and Tagawa, M. (1975) Somatic chromosomes of three species of Cyclostomata. Chrom. Inform. Serv., 18: 10–12. K– 68 Kitada, J., Tatewaki, R. and Tagawa, M. (1979) The karyotype of the common aigo, Siganus fuscescens. Chrom. Inform. Serv., 27: 12–13. K– 69 Kitada, J., Tatewaki, R. and Tagawa, M. (1980) Chromosomes of the pond smelt, Hypomeficus nipponensis M. Chrom. Inform. Serv., 28: 8–9. sus transpacifi K– 70 Kitada, J., Tatewaki, R. and Tagawa, M. (1981) Karyotype analysis in two species of Lateolabrax (Pisces: Perciformes: Serranidae). Chrom. Inform. Serv., 30: 9–11. K– 71 Kitayama, E. and Ojima, Y. (1984) A preliminary report on the phylogeny of fi five balistid fish in terms of several chromosome banding techniques in combination with a statistifi cal analysis. Proc. Japan Acad., Ser. B, 60: 58–61. K– 72 Kligerman, A.D. and Bloom, S.E. (1977) Distribution of F-bodies, heterochromatin, and nucleolar organizers in the genome of the central mudminnow, Umbra limi. Cytogenet. Cell Genet., 18: 182–196. K– 73 Kligerman, A.D. and Bloom, S.E. (1977) Rapid chromosome preparations from solid tissues of fishes. fi J. Fish. Res. Board Can., 34: 266–269. K– 74 Klinkhardt, M.B. (1989) Investigations into karyology and fecundity of Pomatoschistus microps (Krø´yer) and P. minutus (Pallas) (Teleostei, Gobiidae) living in an inner coastal water of the South-West Baltic Sea. Zool. Anz., 222: 177–190. K– 75 Klinkhardt, M.B. and Buuk, B. (1990) Karyological studies in several species of freshwater fishes from brackish coastal waters of Southwestern Baltic. III. The three-spined stickleback (Gasterosteus aculeatus Linnaeus, 1758) and the nine-spined stickleback (Pungitius pungitius (Linnaeus, 1758)). Zool. Anz., 225: 341–352. K– 76 Klinkhardt, M.B. and Buuk, B. (1990) Karyological studies in several species of freshwater fishes from brackish coastal waters of Southwestern Baltic. II. The roach (Rutilus rutilus fi (Linnaeus, 1758)). Zool. Anz., 224: 359–368. K– 77 Klinkhardt, M.B. (1990) Karyological studies in several species of freshwater fi fishes from brackish coastal waters of Southwestern Baltic. I. The ruffe (Gymnocephalus cernua (Linnaeus, 1758)). Zool. Anz., 224: 156–164. K– 78 Klinkhardt, M.B. and Buuk, B. (1991) Karyological studies in several species of freshwater fishes from brackish coastal waters of Southwestern Baltic. IV. The perch (Perca fluviafi fl tilis Linnaeus, 1758). Zool. Anz., 227: 38–43. K– 79 Klinkhardt, M.B. (1991) A brief comparison of methods for preparing fish fi chromosomes: an overview. Cytobios, 67: 193–208. K– 80 Klinkhardt, M.B. (1991) Comparison of the karyology (C-banding, Ag-NOR) of eelpout (Zoarces viviparus) from the White Sea and the Baltic Sea. Cytobios, 68: 29–36. K– 81 Klinkhardt, M.B. (1993) Cytogenetics of the herring (Clupea harengus L.). 1 Karyotypes of North European stocks. Cytobios, 75: 113–128. K– 82 Klinkhardt, M.B. (1993) Cytogenetics of the herring (Clupea harengus L.). 2 Karyotypes of White Sea herring groups. Cytobios, 75: 149–156. K– 83 Klinkhardt, M.B. (1994) Karyotypic divergence between species of Gadidae (Pisces, Gadiformes). Cytobios, 77: 207–214. K– 84 Kobayasi, H. (1971) A cytological study on gynogenesis of the triploid ginbuna (Carassius auratus langsdorfii fi ). Zool. Mag. Japan, 80: 316–322. (In Japanese with English abstract)
References
253
K– 85 Kobayasi, H., Ochi, H. and Takeuchi, N. (1973) Chromosome studies of the silver crucian carps (Carassius auratus gibelio) from the valley of the Amur river, and their progenies. Japan Women’s Univ. J., 20: 83–88. (In Japanese with English summary) K– 86 Kobayasi, H., Ochi, H. and Takeuchi, N. (1973) Chromosome studies in the genus Carassius: comparison of C. auratus grandoculis, C. auratus buergeri, and C. auratus langsdorfii fi . Japan. J. Ichthyol., 20: 7–12. (In Japanese with English abstract) K– 87 Kobayasi, H. and Nakamura, S. (1974) Comparative studies of the erythrocytes between the diploid and the triploid funa, Carassius auratus. Japan Women’s Univ. J., 21: 155–163. (In Japanese) K– 88 Kobayasi, H. and Kimura, Y. (1975) On the chromosomes of leucocytes from Japanese and European eels (Anguilla). Japan Women’s Univ. J., 22: 169–174. (In Japanese with English summary) K– 89 Kobayasi, H. (1975) Some tissue culture methods for chromosome studies of freshwater fishes. Japan Women’s Univ. J., 22: 159–167. (In Japanese with English summary) K– 90 Kobayasi, H. and Nakano, K. (1976) Morphological and cytological studies in backcross hybrids of F1 fishes between the ginbuna (Carassius auratus langsdorfii fi ) female and the carp (Cyprinus carpio) male. Japan Women’s Univ. J., 23: 113–122. (In Japanese with English summary) K– 91 Kobayasi, H. (1976) Comparative study of karyotypes in the small and large races of spinous loaches (Cobitis biwae). Zool. Mag. Japan, 85: 84–87. (In Japanese with English abstract) K– 92 Kobayasi, H., Nakano, K. and Nakamura, M. (1977) On the hybrids, 4n ginbuna (Carassius auratus langsdorfii fi ) × kinbuna (C. auratus subsp.), and their chromosomes. Bull. Japan. Soc. Sci. Fish., 43: 31–37. K– 93 Kobayasi, H. (1977) A chromosome study on Anguilla marmorata Quoy et Gaimard. Japan Women’s Univ. J., 24: 135–137. (In Japanese with English summary) K– 94 Kobayasi, H. (1982) The distribution of polyploid funa (Carassius auratus) in and around Japan. Japan Women’s Univ. J., 29: 145–161. (In Japanese with English summary) K– 95 Kobayasi, H. (1985) The distribution of polyploid funa (Carassius auratus) in and around Japan and their origin. Mar. Sci. Monthly, 17(2): 75–81. (In Japanese) K– 96 Kong, X.Y., Yu, Z.I., Xie, Z.Y. and Xu, W.W. (1994) Studies on karyotype and Ag-NOR banding of Platycephalus indicus (LINNAEUS). J. Ocean Univ. Qingdao, 24(3): 344–348. (In Chinese with English abstract) K– 97 Koref-Santibanez, S., Paepke, H. and Tjio, H. (1991) Karyotypes of the species of the genus Macropodus Lac. (Pisces, Anabantoidei). Zool. Anz., 227: 271–278. K– 98 Kornfi field, I., Ritte, U., Richler, C. and Wahrman, J. (1979) Biochemical and cytological differentiation among cichlid fishes fi of the sea of Galilee. Evolution, 33: 1–14. K– 99 Kornfi field, I. (1981) Distribution of constitutive heterochromatin and the evolution of sex chromosomes in Fundulus. Copeia, 1981: 916–918. K– 100 Korth, J.W. and Fitzsimons, J.M. (1987) Karyology of three species of eastern North American atherinid fishes. Copeia, 1987: 505–509. K– 101 Krishna, G. and Lakra, W.S. (1994) Karyotype of a marine catfish, fi Arius caelatus (Ariidae, Siluriformes). Chrom. Inform. Serv., 56: 10–12. K– 102 Krishnaja, A.P. and Rege, M.S. (1980) Some observations on the chromosomes of certain teleosts using a simple method. Ind. J. Exp. Biol., 18: 268–270. fi popuK– 103 Krishnaja, A.P. and Rege, M.S. (1983) A cytogenetic study on the Gambusia affinis lation from India. Cytologia, 48: 47–49. K– 104 Krysanov, E.Yu. and Elovenko, V.N. (1981) Structural peculiarities of the karyotype of the Amur “sleeper” Perccottus glehni (Eleotridae) in different parts of its range. J. Ichthyol., 21(5): 124–127.
254
References
K– 105 Kawahara, R., Miya, M., Mabuchi, K., Lavoué, S., Inoue, J.G., Satoh, T.P., Kawaguchi, A. and Nishida, M. (2008) Interrelationships of the 11 gasterosteiform families (sticklebacks, pipefi fishes, and their relatives): a new perspective based on whole mitogenome sequences from 75 higher teleosts. Mol. Phylogenet. Evol., 46: 224–236. K– 106 Krysanov, E.Yu. (1992) Aneuploidy in postnatal ontogenesis of fi fishes. Acta Zool. Fennica, 191: 177–182. K– 107 Krysanov, E.Yu. and Golubtsov, A.S. (1993) Karyotypes of three Garra species from Ethiopia. J. Fish Biol., 42: 465–467. K– 108 Krysanov, E.Yu. and Golubtsov, A.S. (1996) Karyotypes of some Ethiopian Barbus and Varicorhinus from the Nile basin including Lake Tana morphotypes. Folia Zool., 45 (suppl. 1): 67–75. K– 109 Krysanov, E.Yu. (1999) Karyotypes of Varicorhinus capoeta and Barbus goktschaicus (Cypriniformes) from Lake Sevan, Armenia. J. Ichthyol., 39(2): 187–189. K– 110 Krysanov, E.Yu. and Golubtsov, A.S. (2001) Karyotypes of eight species of the African climbing gouramies of the genera Ctenopoma and Microctenopoma (Anabantidae, Perciformes) with comments on their phylogenetic relationships. J. Ichthyol., 41: 698–702. K– 111 Kushwaha, B., Srivastava, S.K., Nagpure, N.S., Ogale, S.N. and Ponniah, A.G. (2001) Cytogenetic studies in two species of mahseer, Tor khudree and Tor mussullah (Cyprinidae, Pisces) from India. Chrom. Sci., 5: 47–50. K– 112 Kusunoki, T., Arai, K. and Suzuki, R. (1994) Production of viable gynogens without chromosome duplication in the spinous loach Cobitis biwae. Aquaculture, 119: 11–23. *K–113 Kossowski, C., Bracamonte, N.O. and Velazko, J.Q. (1983) Cariotipo del hibrido de Calossoma macropomus (Hembra)(Cuvier) 1818 × Mylossoma duriventris (Macho)(Cuvier) 1818 y sus progenitores (Pisces, Cypriniformes, Characidae). Acta Cient. Venezolana, 34: 173–175. (After K-114) K– 114 Klinkhardt, M.B., Tesche, M. and Greven, H. (1995) Database of fi fish chromosomes. Westarp Wissenschaften, Magdeburg. K– 115 Kobayasi, H., Kawashima, Y. and Takeuchi, N. (1970) Comparative chromosome studies in the genus Carassius, especially with a finding of polyploidy in the ginbuna (C. auratus langsdorfii fi ). Japan. J. Ichthyol., 17: 153–160. (In Japanese with English abstract) K– 116 Kim, I.S. and Lee, J.H. (1990) Diploid-triploid hybrid complex of the spined loach Cobitis sinensis and C. longicorpus (Pisces: Cobitidae). Korean J. Ichthyol., 2: 203–210. (In Korean with English abstract) K– 117 Kobayasi, H. (1980) Distribution in Japan of polyploid funa (Carassius auratus) and Cobitis. Animals and Nature, 10(13): 14–18. (In Japanese) K– 118 Kim, D.S. and Park, I.S. (1990) Chromosomal polymorphism of Coho salmon, Oncorhynchus kisutch. Korean J. Ichthyol., 2: 211–216. K– 119 Kalous, L., Doadrio, I., Rábová, M. and Ráb, P. (2008) Note on the karyotype and NOR phenotype of the cyprinid fish fi Parachondrostoma arrigonis. Cybium, 32: 211–215. K– 120 Kornfi field, I. (1984) Descriptive genetics of cichlid fishes. In: Turner, B.J. ed. Evolutionary genetics of fishes. fi Plenum Press, New York, pp. 591–616. K– 121 Kavalco, K.F., Brandão, K.O., Pazza, R. and Almeida-Toledo, L.F. (2009) Astyanax hastatus Myers, 1928 (Teleostei, Characidae): a new species complex within the genus Astyanax? Genet. Mol. Biol., 32: 477–483. K– 122 Karel, H., Vetessˇnik, L., Lusk, S., Mendel, J. and Papoussek, I. (2007) The X1X1X2X2/X1X2Y multiple sex chromosome system in the Zingel zingell (Pisces: Perciformes) from the Morava river (Czech Republic). Caryologia, 60: 222–225. K– 123 Kakagawa, S.M.H., Portela-Castro, M.A.L.B. and Martins-Santos, I.C. (2007) A study of nucleolus organizing regions by Ag-staining, in situ hybridization and chromomycin A3 techniques in Tilapia rendalli (Cichlidae, Perciformes) of the River Iguaçu basin, Paraná, Brazil. Cytologia, 72: 373–378.
References
255
K– 124 Kobayasi, H. and Kawashima, Y. (1972) On the chromosomes of all-female population in fi . Japan Women’s Univ. J., 19: 259–263. the ginbuna, Carassius auratus langsdorfii K– 125 Kim, E.M., An, H.S. and Park, I.S. (2007) Cytogenetic study of Pleuronectes obscurus, Konosirus punctatus and Pseudoblennius percoides. J. Fish. Sci. Technol., 10: 24–29. K– 126 Kavalco, K.F., Pazza, R. and Almeida-Toledo, L.F. (2009) Astyanax bockmanni Vari and Castro, 2007: an ambiguous karyotype in the Astyanax genus. Genetica, 136: 135–139. K– 127 Kim, S.Y., Park, J.Y. and Kim, I.S. (1999) Chromosomes of spined loach, Iksookimia yongdokensis (Pisces: Cobitidae) from Korea. Korean J. Ichthyol., 11: 172–176. (In Korean with English abstract) K– 128 Kim, I.S. and Kim, E.J. (2008) Karyotype of dwarf loach, Kichulchoia brevifasciata (Pisces: Cobitidae) from Korea. Korean J. Ichthyol., 20: 61–65. K– 129 Kim, I.S., Park, J.Y. and Nalbant, T.T. (1999) The Far-East species of the genus Cobitis with the description of three new taxa (Pisces: Ostariophysi: Cobitidae). Travaux Mus. Natl. Hist. Nat. “Grigore Antipa”, 41: 373–391. K– 130 Kottelat, M. and Freyhof, J. (2007) Handbook of European freshwater fi fishes. Publications Kottelat, Cornol, Switzerland. K– 131 Klinkhardt, M. (1992) Chromosome structures of four Norwegian gobies (Gobiidae, Teleostei) and a hypothetical model of their karyo-evolution. Chromatin, 1: 169–183. flesus und Limanda limanda *K–132 Klinkhardt, M. (1993) Zur Zytogenetik von Platichthys fl (Pleuronectidae, Teleostei) und Karyoevolution der Pleuronectiformes. Z. Fischkunde, 2: 65–75. (After K-114) *K–133 Knezevic, B., Kavaric, M. and Fontana, F. (1976) Chromosome morphology off Pachychilon pictum (Heckel et Kner) (Cyprinidae, Pisces) from Shadar Lake. Poljoprivreda i Sumarstvo, 22: 85–89. (After K-114) *K–134 Koref-Santibanez, S. and Paepke, H.J. (1994) Karyotypes of the Trichogasterinae Liem (Teleostei, Anabantoidei). Abstr. VIII Congr. Soc. Europ. Ichthyol., Oviedo, p. 55. (After K-114) K– 135 Koehler, M.R., Dehm, D., Guttenbach, M., Nanda, I., Haaf, T., Molina, W.F., Galetti Jr., P.M. and Schmid, M. (1997) Cytogenetics of the genus Leporinus (Pisces, Anostomidae). 1. Karyotype analysis, heterochromatin distribution and sex chromosomes. Chrom. Res., 5: 12–22. K– 136 Khuda-Bukhsh, A.R. and Das, J.K. (2007) Cytogenetic analyses in eight species of teleostean fishes fi (Pisces): karyotypes, multiple Ag-NORs, sex chromosomes. Res. Rev. BioSciences (India), 1: 47–52. K– 137 Kumar, R., Kushwaha, B., Nagpure, N.S., Behera, B.K., Srivastava, S.K. and Lakra, W.S. (2009) Physical mapping of rRNA gene in endangered fish fi Osteobrama belangeri (Valenciennes, 1844) (Family: Cyprinidae). Ind. J. Exp. Biol., 47: 597–601. K– 138 Kushwaha, B., Kumar, R., Nagpure, N.S., Behera, B.K. and Lakra, W.S. (2008) Chromosome banding in two freshwater gouramies from north eastern India. Nucleus, 51: 61–72. K– 139 Khuda-Bukhsh, A.R. and Nayak, K. (1990) Karyotypic studies in six species of brackish water fishes from India. La Kromosomo, II, 58: 1955–1960. K– 140 Kojima, N.F., Kojima, K.K., Kobayakawa, S., Higashide, N., Hamanaka, C., Nitta, A., Koeda, I., Yamaguchi, T., Shichiri, M., Kohno, S. and Kubota, S. (2010) Whole chromosome elimination and chromosome terminus elimination both contribute to somatic differentiation in Taiwanese hagfish fi Paramyxine sheni. Chrom. Res., 18: 383–400. K– 141 Kohn, M., Högel, J., Vogel, W., Minich, P., Kehrer-Sawatzki, H., Graves, J.A.M. and Hameister, H. (2006) Reconstruction of a 450-My-old ancestral vertebrate protokaryotype. Trends Genet., 22: 203–210.
256 [L] L– L– L– L–
L–
L–
L– L– L–
L– L– L– L–
L– L–
L– L– L– L– L–
L–
References
1 Lakra, W.S. and Rishi, K.K. (1991) Chromosomes of Indian fi fishes: an annotated list. Ind. J. Anim. Sci., 61: 342–349. 2 Lakra, W.S. and Krishna, G. (1994) G-banded karyotypes of three species of Indian major carps. Chrom. Inform. Serv., 57: 23–25. 3 Lakra, W.S. and Krishna, G. (1995) Karyology of grey mullet, Mugil cephalus (Teleostei, Mugiliformes) from India. Chrom. Inform. Serv., 58: 17–18. 4 Lakra, W.S. (1996) Cytogenetic studies on endangered fi fish species: 1 Karyotypes of three species of mahseers, Tor putitora, T. torr and T. khudree (Cyprinidae: Pisces). Cytobios, 85: 205–218. 5 Laliberte, M.F., Lafaurie, M., Lambert, J.C. and Ayraud, N. (1979) Etude preliminaire du caryotype de “Mullus barbatus Linne”. Rapp. Comm. Int. Mer. Médit., 25/26: 125–130. 6 Law, W.M., Ellender, R.D., Wharton, J.H. and Middlebrooks, B.L. (1978) Fish cell culture: properties of a cell line from the sheepshead, Archosargus probatocephalus. J. Fish. Res. Board Can., 35: 470–473. 7 Le Comber, S.C. and Smith, C. (2004) Polyploidy in fishes: fi patterns and processes. Biol. J. Linn. Soc., 82: 431–442. 8 Lee, M.H. and Loh, P.C. (1975) Some properties of an established fish fi cell line from the marine fish, Caranx mate (Omaka). Proc. Soc. Exper. Biol. Med., 150: 40–48. 9 Lee, G.Y., So, J.N. and Kim, S.Z. (1982) Chromosomes and arm number of the acheilognathine fishes fi (Cyprinidae) in Korea. Basic Sci. Rev., Jeonbug Natn. Univ., 5: 61–69. (In Korean with English abstract) 10 Lee, G.Y. (1982) Karyotypes of the acheilognathine fishes (Cyprinidae) in Korea (I). Ann. Rep. Biol. Res., Jeonbug Natn. Univ., 3: 19–24. (In Korean with English abstract) 11 Lee, G.Y. (1983) Karyotypes of the acheilognathine fi fishes (Cyprinidae) in Korea (II). Ann. Rep. Biol. Res., Jeonbug Natn. Univ., 4: 1–9. (In Korean with English abstract) 12 Lee, G.Y., Jang, S.I. and Yun, M.J. (1986) Karyotypes of nine species in the family Cyprinidae fishes from Korea. Korean J. Limnol., 19: 59–69. (In Korean with English abstract) 13 Lee, G.Y., Jang, S.I., Yun, M.J., So, J.N., Jeon, S.R., Kang, Y.H., Itai, T. and Kimizuka, Y. (1987) Karyotypes of four species in genus Moroco (Pisces: Cyprinidae) from Korea and Japan. Korean J. Limnol., 20: 49–60. (In Korean with English abstract) 14 Lee, G.Y., Jang, S.I., Yun, M.J. and So, J.N. (1987) Karyotypes of sixteen species of gobiid fishes from Korea. Basic Sci. Rev., Jeonbug Natn. Univ., 10: 1–14. 15 Lee, H.Y., Yu, C.H., Jeon, S.K. and Lee, H.S. (1983) The karyotype analysis on 29 species of fresh water fish fi in Korea. Bull. Inst. Basic. Sci., Inha Univ., 4: 79–86. (In Korean with English abstract) 16 Legendre, P. and Steven, D.M. (1969) Dénombrement des chromosomes chez quelques cyprins. Naturaliste can., 96: 913–918. 17 LeGrande, W.H. (1975) Karyology of six species of Louisiana flatfi fl fishes (Pleuronectiformes: Osteichthyes). Copeia, 1975: 516–522. 18 LeGrande, W.H. and Fitzsimons, J.M. (1976) Karyology of the mullets Mugil curema and M. cephalus (Perciformes: Mugilidae) from Louisiana. Copeia, 1976: 388–391. 19 LeGrande, W.H. (1980) The chromosome complement of Arius felis (Siluriformes, Ariidae). Japan. J. Ichthyol., 27: 82–84. 20 LeGrande, W.H. and Cavender, T.M. (1980) The chromosome complement of the stonecat madtom, Noturus flavus fl (Siluriformes: Ictaluridae), with evidence for the existence of a possible chromosomal race. Copeia, 1980: 341–344. 21 LeGrande, W.H. (1981) Chromosomal evolution in North American catfishes fi (Siluriformes: Ictaluridae) with particular emphasis on the madtoms, Noturus. Copeia, 1981: 33–52.
References
257
L– 22 LeGrande, W.H., Dunham, R.A. and Smitherman, R.O. (1984) Karyology of three species of catfi fishes (Ictaluridae: Ictalurus) and four hybrid combinations. Copeia, 1984: 873–878. L– 23 LeGrande, W.H. and Fitzsimons, J.M. (1988) Chromosome numbers of some Gulf coast sciaenid fishes. Copeia, 1988: 491–493. L– 24 Lavoué, S., Miya, M., Poulsen, J.Y., Møller, P.R. and Nishida, M. (2008) Monophyly, phylogenetic position and inter-familial relationships of the Alepocephaliformes (Teleostei) based on whole mitogenome sequences. Mol. Phylogenet. Evol., 47: 1111–1121. L– 25 Levan, A., Fredga, K. and Sandberg, A.A. (1964) Nomenclature for centromeric position on chromosomes. Hereditas, 52: 201–220. L– 26 Levin, C.B. and Foster, N.R. (1972) Cytotaxonomic studies in Cyprinodontidae: multiple sex chromosomes in Garmanella pulchra. Notulae Naturae, 446: 1–5. L– 27 Li, K., Li, Y.C. and Zhou, T. (1983) A comparative study of the karyotypes in two species of mud loaches. Zool. Res., 4(1): 75–81. (In Chinese with English abstract) L– 28 Li, K., Li, Y.C., Zhou, M. and Zhou, T. (1983) Studies on the karyotypes of Chinese cyprinid fishes. II. Karyotypes of four species of Xenocyprininae. Acta Zool. Sinica, 29: 207–213. (In Chinese with English abstract) L– 29 Li, K., Gui, J.F., Hong, Y.H., Li, Y.C. and Zhou, T. (1984) Studies on the karyotypes of Chinese cyprinid fishes. fi V. Karyotypes of species of gobionine fishes. J. Wuhan Univ. (Nat. Sci.), 1984: 113–122. (In Chinese with English abstract) L– 30 Li, K., Li, Y.C. and Zhou, T. (1985) Cytological evidence for sex determination in Leiobagrus marginatus. Hereditas (Beijing), 7(3): 23–24. (In Chinese) L– 31 Li, K., Li, Y.C. and Zhou, T. (1985) Studies on the karyotypes and C-banding patterns of three species in Channidae (Pisces). Acta Genet. Sinica, 12: 470–477. (In Chinese with English abstract) L– 32 Li, K., Li, Y.C., Gui, J.F., Xie, X.Z. and Zhou, T. (1986) Studies on the karyotypes of Chinese cyprinid fishes. fi IX. Karyotypes of nine species of Abramidinae and one species of Xenocyprininae. Acta Hydrobiol. Sinica, 10: 189–193. (In Chinese) L– 33 Li, M.F. and Clyburne, S. (1977) New cell line from the marine lumpfish, fi Cyclopterus lumpus. J. Fish. Res. Board Can., 34: 134–139. L– 34 Lockwood, S.F., Seavey, B.T., Dillinger Jr., R.E. and Bickham, J.W. (1991) Variation in DNA content among age classes of broad whitefish fi (Coregonus nasus) from the Sagavanirktok River delta. Can. J. Zool., 69: 1335–1338. L– 35 Li, S.S., Wang, R.F., Liu, G.Z., Wang, Y.X. and Li, C.Y. (1981) A karyotype study of Coreglanis kishinouyei and Euchiloglanis davidi. Trans. Chinese Ichthyol. Soc., 2: 153– 156. (In Chinese with English abstract) L– 36 Li, S.S., Wang, R.F., Liu, G.Z., Wang, Y.X. and Li, C.Y. (1981) Investigation on karyotype in Liobagrus marginatus. Hereditas (Beijing), 3(1): 23–24. (In Chinese) L– 37 Li, S.S., Wang, R.F., Liu, G.Z., Wang, Y.X. and Li, C.Y. (1983) A karyotypical study of Myxocyprinus asiaticus (Bleeker). Zool. Res., 4: 182. (In Chinese) L– 38 Li, S.S., Wang, R.F., Liu, G.Z., Wang, Y.X. and Li, C.Y. (1983) A karyotype study of eight species of teleost fishes. Hereditas (Beijing), 5(4): 25–28. (In Chinese) L– 39 Li, Y.C., Li, K. and Zhou, T. (1982) A study of the karyotype of the rice-field fi eel. J. Wuhan Univ. (Nat. Sci.), 1982(1): 55–58, 116. (In Chinese with English abstract) L– 40 Li, Y.C., Li, K. and Zhou, T. (1983) Studies on the karyotypes of Chinese cyprinid fishes. fi I. Karyotypes of ten species of Abramidinae. Acta Genet. Sinica, 10(3): 216–222. (In Chinese with English abstract) L– 41 Li, Y.C., Li, K. and Zhou, T. (1983) Cellular DNA content of fourteen species of freshwater fishes. Acta Genet. Sinica, 10(5): 384–389. (In Chinese with English abstract) L– 42 Li, Y.C., Li, K., Hong, Y.H., Gui, J.F. and Zhou, T. (1985) Studies on the karyotypes of Chinese cyprinid fishes. VII. Karyotypic analyses of seven species in the subfamily
258
L– 43
L– 44
L– 45
L– 46
L– 47
L– 48 L– 49 L– 50 L– 51
L– 52 L– 53 L– 54 L– 55
L– 56
L– 57 L– 58 L– 59 L– 60 L– 61
References
Leuciscinae with a consideration for the phylogenetic relationships of some cyprinid fishes concerned. Acta Genet. Sinica, 12(5): 367–372. (In Chinese with English fi abstract) Li, Y.C., Li, K., Jiang, J.Q., Sun, Q.P. and Zhou, T. (1986) Studies on the karyotypes of Chinese cyprinid fishes. X. Karyotypes of five species of Barbinae and four species of Gobioninae. Zool. Res., 7(2): 183–189. (In Chinese with English abstract) Li, Y.C. and Li, K. (1987) Karyotypes of Opsariichthys bidens and Misgurnus anguillicaudatus (Pisces), with a consideration of the relationship between polymorphism of chromosome number and taxonomy of fish. fi J. Wuhan Univ. (Nat. Sci.), 1987(1): 107– 112, 132. (In Chinese with English abstract) Li, Y.C., Li, K., Gui, J.F. and Zhou, T. (1987) Studies on the karyotypes of Chinese cyprinid fishes XI. Karyotypes of two species of Schizothoracinae and three species of Gobiofi botinae. Acta Hydrobiol. Sinica, 11: 184–186. (In Chinese) Li, Y.C. and Gold, J.R. (1991) Cytogenetic studies in North American minnows (Cyprinidae). XXII. Chromosomal nucleolar organizer regions in the genus Pimephales. Can. J. Zool., 69: 2826–2830. Li, X.Q. and Peng, Y.D. (1994) Studies on karyotype of Epinephelus fasciatomaculatus and Epinephelus fasciatus. J. Zhanjiang Fish. Coll., 1994(2): 22–26. (In Chinese with English abstract) Libertini, A. and Meneghetti, F. (1998) Chromosome complement, Ag-NOR and C-banding in Dentex dentex L. (Sparidae, Perciformes). Chrom. Sci., 2: 117–118. Lieder, U. (1963) Über den gegenwärtigen Stand und die Methodik der Chromosomenuntersuchungen bei Fischen. Z. Fisch., 11: 673–684. Lieppman, M. and Hubbs, C. (1969) A karyological analysis of two cyprinid fishes, fi Notemigonus crysoleucas and Notropis lutrensis. Texas Rep. Biol. Med., 27: 427–435. Lima, N.R.W. and Galetti Jr., P.M. (1990) Chromosome characterization of the fish fi Trichogenes longipinnis. A possible basic karyotype of Trichomycteridae. Brazil. J. Genet., 13: 239–245. Lin, Y. and Ojima, Y. (1987) Studies on developing high resolution BG- and B-banding in fish chromosomes. La Kromosomo, II, 47/48: 1551–1556. Ling, J.X. (1982) Studies on the karyotypes of eight species of fish. fi J. Wuhan Univ. (Nat. Sci.), 1982(2): 109–112, 121–122. (In Chinese with English abstract) Liu, J. and Tian, M.C. (1996) A karyotype study on the mullet fish fi (Mugil cephalus). Chinese J. Zool., 31(1): 6–7. (In Chinese with English abstract) Liu, J.D., Yi, M.S., Zhao, G., Zhou, F., Wang, D.Q. and Yu, Q.X. (2002) Sex chromosomes in the spiny eel (Mastacembelus aculeatus) revealed by mitotic and meiotic analysis. Cytogenet. Genome Res., 98: 291–297. Liu, L.G., Zhao, J., Chen, X.L., Dong, C.W. and Cui, M. (2004) Karyotypic analysis from two clones of gynogenetic Pengze crucian carp (Carassius auratus of Pengze). Acta Genet. Sinica, 31: 780–786. (In Chinese with English abstract) Liu, L.S., Yang, J.H., Lin, J.H. and Hong, M.X. (1991) A study on the karyotype of Sparus latus. Chinese J. Zool., 26(1): 14–16. (In Chinese) Liu, L.Y. (1980) On karyotype of the grass-carp, Ctenopharyngodon idellus. Acta Zool. Sinica, 26: 126–131. (In Chinese with English abstract) Liu, L.Y. (1981) Karyotype analysis of Aristichthys nobilis by the leucocyte culture method. J. Beijing Normal Univ. (Nat. Sci.), 3: 79–83. (In Chinese with English abstract) Liu, L.Y. (1981) Karyotype analysis of Hypophthalmichthys molitrix. Acta Genet. Sinica, 8(3): 251–255. (In Chinese with English abstract) Liu, L.Y. (1983) Studies on the chromosome G-banding patterns in rice-field fi eels (Monopterus albus Zuiew). Acta Genet. Sinica, 10(3): 230–234. (In Chinese with English abstract)
References
L– 62
L– 63
L– 64
L– 65 L– 66
L– 67
L– 68 L– 69 L– 70
L– 71 L– 72
L– 73 L– 74 L– 75 L– 76 L– 77 L– 78
L– 79 L– 80 L– 81
L– 82
259
Liu, L.Y. (1984) Sister chromatid differentiation (SCD), sister chromatid exchanges (SCE) and dottid chromosomes (DC) in rice-fi field eel (Monopterus albus Zuiew). J. Beijing Normal Univ. (Nat. Sci.), 3: 85–90. (In Chinese with English abstract) Liu, S.Y. (1987) Studies on cytogenetics of Ctenopharyngodon idellus, Megalobrama terminalis and their triploid F1 hybrid. Acta Hydrobiol. Sinica, 11: 52–58. (In Chinese with English abstract) Liu, S.Y. and Li, S.W. (1987) On the erythrocyte nucleus size and DNA contents of Ctenopharyngodon idellus, Megalobrama terminalis and F1 hybrid of the triploid. Acta Genet. Sinica, 14(2): 142–148. (In Chinese with English abstract) Lodi, E. and Marchionni, V. (1980) Chromosome complement of the masked loach Sabanejewia larvata (De Fil.) (Pisces, Osteichthyes). Caryologia, 33: 435–440. Lodi, E. and Marchionni, V. (1980) The karyotypes of Gambusia affinis fi holbrooki Gir. from Viverone Lake (Italy) and from an artifi ficial lake of Nicosia (Cyprus). Atti Soc. Ital. Sci. nat. Museo civ. Stor. nat. Milano, 121: 211–220. López, J.R., Alvarez, M.C., Thode, G. and Martinez, G. (1989) Karyotype divergence in Symphodus melops and Symphodus roissali (Labridae, Perciformes): C-banded and Ag-NOR karyotypes. Genome, 32: 35–39. Lou, Y., Zhang, K., Wu, Y. and Wang, Y. (1983) Studies on karyotype of black carp (Mylopharyngodon piceus). J. Fish. China, 7: 77–81. (In Chinese with English abstract) Lou, Y.D. (1997) Progress of fish karyotype studies in China. J. Fish. China, 21 (suppl.): 82–96. (In Chinese) Loudenslager, E.J. and Thorgaard, G.H. (1979) Karyotypic and evolutionary relationships of the Yellowstone (Salmo clarki bouvieri) and West-slope (S. c. lewisi) cuttthroat trout. J. Fish. Res. Board Can., 36: 630–635. Lourerio, M.A., Caetano, L.G. and Dias, A.L. (2000) Cytogenetic characterization of two species of the genus Crenicichla (Pisces, Cichlidae). Cytologia, 65: 57–63. Lozano, R., Ruiz Rejón, C. and Ruiz Rejón, M. (1991) An analysis of coho salmon chromatin by means of C-banding, AG- and fluorochrome staining, and in situ digestion with restriction endonucleases. Heredity, 66: 403–409. Lu, R.H., Li, Y.J. and Xu, K.S. (1984) A chromosome study of Megalobrama amblycephala Yih. Oceanol. Limnol. Sinica, 15: 487–492. (In Chinese with English abstract) Lueken, W. (1962) Chromosomenzahl bei Orestias (Pisces, Cyprinodontidae). Mitt. Hamburg. Zool. Mus. Inst., 60: 195–198. Lueken, W. and Foerster, W. (1969) Chromosomenuntersuchungen bei Fischen mit einer vereinfachten Zellkulturtechnik. Zool. Anz., 183: 168–176. Luo, J.L., Wang, Z.X., Lin, S.P. and Yang, J.H. (1986) Studies on the karyotype of Clarias fuscus. J. Fish. China, 10: 441–446. (In Chinese with English abstract) Lee, G.Y. (1984) Karyotypes of seven species of the Gobioninae fishes (Cyprinidae) in Korea. Korean J. Limnol., 17(3/4): 81–88. (In Korean with English abstract) Ludwig, A., Belfiore, fi N.M., Pitra, C., Svirsky, V. and Jenneckens, I. (2001) Genome duplication events and functional reduction of ploidy levels in sturgeon (Acipenser, Huso and Scaphirhynchus). Genetics, 158: 1203–1215. Lee, G.Y. (1986) Karyotypes of the family Gobiidae fi fishes in Korea (I). Korean J. Limnol., 19: 49–57. (In Korean with English abstract) Lee, G.Y (1986) Karyotypes of the family Gobiidae fishes fi from Korea. Zool. Sci., 3: 1115. Li, C.L., Cao, F.J., Liu, C.W. and Huang, X.H. (2005) Studies on the karyotypes off Lutjanus johni, Lutjanus russelli and Lutjanus vitta. Mar. Sci. Bull., 24(5): 23–26. (In Chinese with English abstract) Lamatsch, D.K., Steinlein, C., Schmid, M. and Schartl, M. (2000) Noninvasive determination of genome size and ploidy level in fishes by flow cytometry: detection of triploid Poecilia formosa. Cytometry, 39: 91–95.
260
References
L– 83 Libertini, A., Mandrioli, M., Colomba, M.S., Bertotto, D., Francescon, A. and Vitturi, R. (2002) A cytogenetic study of the common sole, Solea solea, from the northern Adriatic Sea. Chrom. Sci., 6: 63–66. L– 84 Liu, S.M., Sezaki, K., Hashimoto, K., Kobayasi, H. and Nakamura, M. (1978) Simplified fi techniques for determination of polyploidy in ginbuna Carassius auratus langsdorfi. Bull. Japan. Soc. Sci. Fish., 44: 601–606. L– 85 Leite, M.F. and Maistro, E.L. (2004) The karyotype of Apareiodon affinis fi (Pisces, Teleostei, Characiformes) from Sapucai River, Minas Gerais, Brazil. Cytologia, 69: 319–322. L– 86 Lajus, D.L. (2007) Chromosomal analysis in population structuring and stock identificafi tion: Robertsonian polymorphism in the White Sea herring (Clupea pallasi marisalbi). In: Pisano, E., Ozouf-Costaz, C., Foresti, F. and Kapoor, B.G. eds. Fish cytogenetics. Science Publishers, Enfi field, pp. 261–287. *L– 87 Lajus, D.L. (1992) Khromosomnye nabory 13 vidov ryb Belogo morja. Problemy izuchenija, ratsional’nogo ispol’zovanija okhrany prirodnykh resursov Belogo morja. Reg. Konf. Thes. Dokl. Petrozavodsk, pp. 179–180. (After K-114) L– 88 Lajus, D.L. (2001) Chromosomal polymorphism of the White Sea fi fishes. Abstract volume of the 10th European Congress of Ichthyology, Prague, p. 63. L– 89 Larissa, P.B., Giuliano-Caetano, L. and Dias, A.L. (2008) Karyotype similarities among two populations of Geophagus brasiliensis (Perciformes, Cichlidae) from the Tibagi river basin/PR/Brazil. Caryologia, 61: 135–138. L– 90 Lopes, P.A., Alberdi, A.J., Dergam, J.A. and Fenocchio, A.S. (1998) Cytotaxonomy of Hoplias malabaricus (Osteichthyes, Erythrinidae) in the Aguapey River (Province of Corrientes, Argentina). Copeia, 1998: 485–487. L– 91 Leggatt, R.A. and Iwama, G.K. (2003) Occurrence of polyploidy in the fi fishes. Rev. Fish Biol. Fish., 13: 237–246. [M] M– 1 Mabuchi, K. and Nakabo, T. (1997) Revision of the genus Pseudolabrus (Labridae) from the East Asian waters. Ichthyol. Res., 44: 321–334. M– 2 Mabuchi, K., Arai, R. and Nishida, M. (2002) Karyotypes and nuclear DNA contents of two Pseudolabrus species from the southern coast of Japan. Japan. J. Ichthyol., 49: 87–95. M– 3 Machordom, A. and Doadrio, I. (2001) Evolutionary history and speciation modes in the cyprinid genus Barbus. Proc. R. Soc. Lond., B, 268: 1297–1306. M– 4 Madeira, J.M., Collares-Pereira, M.J. and Elvira, B. (1992) Cytotaxonomy of Iberian loaches with some remarks on the karyological evolution of both families (Pisces, Cobitidae, Homalopteridae). Caryologia, 45: 273–281. M– 5 Magtoon, W. and Uwa, H. (1985) Karyotype evolution and relationship of a small ricefish, fi Oryzias minutillus, from Thailand. Proc. Japan Acad., Ser. B, 61: 157–160. M– 6 Magtoon, W. (1986) Distribution and phyletic relationships of Oryzias fishes in Thailand. In: Uyeno, T., Arai, R., Taniuchi, T. and Matsuura, K. eds. Indo-Pacific fi fish biology. Ichthyological Society of Japan, Tokyo, pp. 859–866. M– 7 Magtoon, W. and Donsakul, T. (1987) Karyotypes of pangasiid catfishes, fi Pangasius sutchi and P. larnaudii, from Thailand. Japan. J. Ichthyol., 34: 396–398. M– 8 Magtoon, W. and Arai, R. (1988) Karyotypes of bagrid catfishes, fi Mystus wyckii and Bagroides macracanthus, from Thailand. Bull. Natn. Sci. Mus. Tokyo, (A), 14: 113–117. M– 9 Magtoon, W. and Arai, R. (1989) Karyotypes of fi five Puntius species and one Cyclocheilichthys species (Pisces, Cyprinidae) from Thailand. Bull. Natn. Sci. Mus. Tokyo, (A), 15: 167–175.
References
M– 10
M– 11
M– 12 M– 13
M– 14 M– 15 M– 16 M– 17
M– 18
M– 19 M– 20 M– 21 M– 22 M– 23 M– 24 M– 25 M– 26 M– 27 M– 28 M– 29 M– 30
M– 31
M– 32
261
Magtoon, W. and Arai, R. (1990) Karyotypes of three cyprinid fishes, fi Osteochilus hasselti, O. vittatus, and Labiobarbus lineatus, from Thailand. Japan. J. Ichthyol., 36: 483– 487. Magtoon, W., Nadee, N., Higashitani, T., Takata, K. and Uwa, H. (1992) Karyotype evolution and geographical distribution of the Thai-medaka, Oryzias minutillus, in Thailand. J. Fish Biol., 41: 489–497. Magtoon, W. and Arai, R. (1993) Karyotypes and distribution of nucleolus organizer regions in cyprinid fishes from Thailand. Japan. J. Ichthyol., 40: 77–85. Maistro, E.L., Oliveira, C. and Foresti, F. (2002) Cytogenetic analysis of A- and B-chromosomes of Rhamdia hilarii (Teleostei, Pimelodidae): C-banding, silver nitrate and CMA3 staining and restriction endonuclease banding. Cytologia, 67: 25–31. Makino, S. (1937) Notes on the chromosomes of some teleost fishes. fi Zool. Mag. Japan, 49: 75–76. Makino, S. (1941) A karyological study of gold-fish fi of Japan. Cytologia, 12: 96–111. Makoedov, A.N. (1987) The problem of stability of karyotype characters in the grayling fishes. Tsitologiya, 29: 490–496. (In Russian with English abstract) fi Mabuchi, K., Miya, M., Azuma, Y. and Nishida, M. (2007) Independent evolution of the specialized pharyngeal jaw apparatus in cichlid and labrid fishes. fi BMC Evol. Biol., 2007, 7: 10. Maldonado-Monroy, M.C., Uribe-Alcocer, M., Arreguin-Espinosa, J. and Castro-Perez, A. (1985) Karyological studies on Dormitator maculatus Bloch and Gobiomorus dormitorr Lacépède (Gobiidae: Perciformes). Cytologia, 50: 663–669. Mandrioli, M., Cuoghi, B., Marini, M. and Manicardi, G.C. (2000) Cytogenetic analysis of the pufferfish fi Tetraodon fl fluviatilis (Osteichthyes). Chrom. Res., 8: 237–242. Manna, G.K. and Prasad, R. (1971) A new perspective in the mechanism on evolution of chromosome in fishes. Proc. First All Ind. Congr. Cytol. Genet., 1971: 237–240. Manna, G.K. and Prasad, R. (1973) Chromosomes in three species of fi fish (Channa). Nucleus, 16: 150–157. Manna, G.K. and Prasad, R. (1974) Somatic and germinal chromosomes of the tropical perch, Anabas testudineus (Bloch). Ind. J. Zool., 2: 11–14. Manna, G.K. and Prasad, R. (1974) Cytological evidence for two forms of Mystus vittatus (Bloch) as two species. Nucleus, 17: 4–8. Manna, G.K. and Prasad, R. (1974) Chromosome analysis in three species of fishes fi belonging to family Gobiidae. Cytologia, 39: 609–618. Manna, G.K. and Khuda-Bukhsh, A.R. (1974) Somatic chromosomes of two hybrid carps. Chrom. Inform. Serv., 16: 26–28. Manna, G.K. and Prasad, R. (1977) Chromosome analysis in five fi species of fresh water fishes. Nucleus, 20: 264–271. fi Manna, G.K. and Khuda-Bukhsh, A.R. (1977) Karyomorphology of cyprinid fishes fi and cytological evaluation of the family. Nucleus, 20: 119–127. Manna, G.K. and Khuda-Bukhsh, A.R. (1978) Karyomorphological studies in three species of teleostean fishes. fi Cytologia, 43: 69–73. Manna, G.K. (1984) Progress in fish cytogenetics. Nucleus, 27: 203–231. Manosroi, J., Meng-Umphan, K., Meevatee, U. and Manosroi, A. (2003) Chromosomal karyotyping from peripheral blood lymphocytes of the Mekong giant catfish fi (Pangasianodon gigas, Chevey). Asian Fish. Sci., 16: 241–246. Mao, L.J., Yang, L.B. and Qin, K.J. (1993) Karyotype studies on Ernogrammus hexagrammus. J. Ocean Univ. Qingdao, 23(4): 40–44. (In Chinese with English abstract) Mao, L.J., Yang, L.B. and Qin, K.J. (1993) Karyotypes of two gobiid species. J. Dalian Fish. College, 8(1): 1–7. (In Chinese)
262
References
M– 33 Mao, L.J. and Jin, X.M. (1994) Analysis of chromosome karyotype of Enedrias nebulosus. J. Dalian Fish. College, 9(4): 32–35. (In Chinese with English abstract) M– 34 Mao, L.J. and Qiu, P. (1996) Karyotype of Alectrias benjamini. J. Dalian Fish. College, 11(3): 37–41. (In Chinese) M– 35 Mao, L.J., Li, Y.J. and Qu, L. (1999) Analysis of karyotype of Chaenogobius annularis. J. Ocean Univ. Qingdao, 29(1): 42–46. (In Chinese with English abstract) M– 36 Mao, L.J. and Li, Y.J. (2002) Karyotype analyses of five fi species of marine fishes. J. Dalian Fish. Univ., 17(2): 108–113. (In Chinese with English abstract) M– 37 Margarido, V.P. and Galetti Jr., P.M. (1996) Chromosome studies in fi fish of the genus Brycon (Characiformes, Characidae, Bryconinae). Cytobios, 85: 219–228. M– 38 Marian-Krasznai, T. and Krasznai, Z. (1978) Zytologische Untersuchungen bei der Familie Cyprinidae (Pisces). Biol. Zentralbl., 97: 205–214. M– 39 Martinez, G., Thode, G., Alvarez, M.C. and López, J.R. (1989) C-banding and Ag-NOR reveal heterogeneity among karyotypes of serranids (Perciformes). Cytobios, 58: 53–60. M– 40 Martinez, P., Viñas, A., Bouza, C., Arias, J., Amaro, R. and Sánchez, L. (1991) Cytogenetical characterization of hatchery stocks and natural populations of sea and brown trout from northwestern Spain. Heredity, 66: 9–17. M– 41 Martins, I.C., Portella-Castro, A.L.B. and Julio Jr., H.F. (1995) Chromosome analysis of 5 species of the Cichlidae family (Pisces-Perciformes) from the Parana River. Cytologia, 60: 223–231. M– 42 Martins, C., Giuliano-Caetano, L. and Dias, A.L. (1996) Occurrence of a B chromosome in Cyphocharax modesta (Pisces, Curimatidae). Cytobios, 85: 247–253. M– 43 Martins, C. and Galetti Jr., P.M. (1997) Narrow chromosome diversity in fish of the genus Schizodon (Characiformes, Anostomidae). Cytobios, 92: 139–147. M– 44 Martins, C., Venere, P.C., Mestriner, C.A., Cestari, M.M., Ferreira, R. and Galetti Jr., P.M. (2000) Chromosome relationships between Anostomidae and Chilodontidae fi fish (Characiformes). Cytologia, 65: 153–160. M– 45 Martins, M.J., Collares-Pereira, M.J., Cowx, I.G. and Coelho, M.M. (1998) Diploids v. triploids of Rutilus alburnoides: spatial segregation and morphological differences. J. Fish Biol., 52: 817–828. M– 46 Martins-Santos, I.C., Julio Jr., H.F. and Burin, I. (1996) Karyotypic studies of four species of the Sorubiminae subfamily (Pisces, Siluriformes). Caryologia, 49: 73–80. M– 47 Matoso, D.A., Vicari, M.R., de Almeida, M.C., Shibatta, O.A., Moreira-Filho, O., Bertollo, L.A.C. and Artoni, R.F. (2002) Karyotypic studies in the Characidae fish, genus Astyanax. An endemic and highly isolated population of Astyanax sp. Cytologia, 67: 123–128. M– 48 Matsuda, M. (1985) Karyotype of Acrossocheilus hexagonolepis (Cyprinidae). Ann. Rep. Biwako Bunkakan, 3: 1–3. (In Japanese) M– 49 Matsuda, M. (1988) Karyotype of Pseudorasbora pumila subsp. (Cyprinidae). Ann. Rep. Biwako Bunkakan, 6: 31–33. (In Japanese) M– 50 Matsuda, M. and Saitoh, K. (1989) Karyotype of a Japanese cyprinid fish, fi Aphyocypris chinensis. Ann. Rep. Biwako Bunkakan, 7: 21–23. (In Japanese) M– 51 Matsumiya, T., Sakamoto, K. and Nishikawa, S. (1980) Chromosomes of four species of the family Hexagrammidae (Scorpaeniformes). Japan. J. Ichthyol., 27: 273–276. M– 52 Matsuo, T. (1998) Karyotypes of the Oxudercinae (Teleostei, Gobiidae). Unpublished Master Thesis, Faculty of Fisheries, Nagasaki University. (In Japanese) M– 53 Mayers, L.J. and Roberts, F.L. (1969) Chromosomal homogeneity of fi five populations of alewives, Alosa pseudoharengus. Copeia, 1969: 313–317. M– 54 Mayr, B., Ráb, P. and Kalat, M. (1986) NORs and counterstain-enhanced fl fluorescence studies in Cyprinidae of different ploidy level. Genetica, 69: 111–118.
References
263
M– 55 Mayr, B., Ráb, P. and Kalat, M. (1986) Localisation of NORs and counterstain-enhanced fluorescence studies in Salmo gairdneri and Salmo trutta (Pisces, Salmonidae). Theor. fl Appl. Genet., 71: 703–707. M– 56 Mayr, B., Kalat, M. and Ráb, P. (1990) Sequential counterstain-enhanced fl fluorescence chromosome banding in the fish fi Anguilla anguilla. Caryologia, 43: 277–281. M– 57 Mazic, E.Y. and Toktosunov, A.T. (1984) The karyotypes of three species of loaches of the genus Nemachilus Hasselt (Cypriniformes, Cobitidae). Tsitologiya, 26: 960–962. (In Russian with English summary) M– 58 Mazic, E.Y., Toktosunov, A.T. and Gnidenko, S.M. (1986) Comparative karyological analysis of the daces (Leuciscus, Cypriniformes, Cyprinidae) from the northern TienShan. Zool. Zhurnal, 65: 1350–1355. (In Russian with English summary) M– 59 Mazic, E.Y. and Toktosunov, A.T. (1986) Karyotype of the Amu Darya trout Salmo trutta oxianus (Salmoniformes, Salmonidae) from the Kyzylsu River. Zool. Zhurnal, 65: 1582– 1586. (In Russian with English summary) M– 60 Mazik, E.J., Toktosunov, A.T. and Ráb, P. (1989) Karyotype study of four species of the genus Diptychus (Pisces, Cyprinidae), with remarks on polyploidy of schizothoracine fishes. Folia Zool., 38: 325–332. fi M– 61 McPhail, J.D. and Jones, R.L. (1966) A simple technique for obtaining chromosomes from teleost fishes. fi J. Fish. Res. Board Can., 23: 767–768. M– 62 Merrilees, M.J. (1975) Karyotype of Galaxias maculatus from New Zealand. Copeia, 1975: 176–178. M– 63 Mestriner, C.A., Galetti Jr., P.M., Valentini, S.R., Ruiz, I.R.G., Abel, L.D.S., Moreira-Filho, O. and Camacho, J.P.M. (2000) Structural and functional evidence that a B chromosome in the characid fish Astyanax scabripinnis is an isochromosome. Heredity, 85: 1–9. M– 64 Mészáros, B. and Kató, I. (1976) On the evolution of fishes fi as seen from a karyological point of view. Acta Biol. Debrecina, 13: 255–274. (In Hungarian with English abstract) M– 65 Michele, J.L. and Takahashi, C.S. (1977) Comparative cytology of Tilapia rendalli and Geophagus brasiliensis (Cichlidae, Pisces). Cytologia, 42: 535–537. M– 66 Michele, J.L., Takahashi, C.S. and Ferrari, I. (1977) Karyotypic study of some species of the family Loricariidae (Pisces). Cytologia, 42: 539–546. M– 67 Miller, I.N. (2000) Karyotype of the Far Eastern sculpin Myoxocephalus stelleri from Peter the Great Bay, Sea of Japan. Biol. Morya, 26: 121–124. (In Russian with English abstract) M– 68 Miller, R.R. and Walters, V. (1972) A new genus of cyprinodontid fi fish from Nuevo Leon, Mexico. Contri. Sci. Nat. Hist. Mus. Los Angeles County, 233: 1–13. M– 69 Miller, R.R. (1979) Ecology, habits and relationships of the Middle American Cuatro Ojos, Anableps dowi (Pisces: Anablepidae). Copeia, 1979: 82–91. M– 70 Miller, R.R. and Uyeno, T. (1980) Allodontichthys hubbsi, a new species of goodeid fish fi from southwestern Mexico. Occ. Pap. Mus. Zool. Univ. Michigan, 692: 1–13. M– 71 Miller, R.R. (1972) Classifi fication of the native trouts of Arizona with the description of a new species, Salmo apache. Copeia, 1972: 401–422. M– 72 Miller, R.R. and Fitzsimons, J.M. (1971) Ameca splendens, a new genus and species of goodeid fish fi from western México, with remarks on the classifi fi cation of the Goodeidae. Copeia, 1971: 1–13. M– 73 Mitrofanov, Y.A., Otradnova, V.V. and Pokozy, N.V. (1977) On the karyotype of the Oncorhynchus keta × O. gorbusha hybrid. Tsitologiya, 19: 798–808. (In Russian with English summary) M– 74 Miyazawa, C.S. and Galetti Jr., P.M. (1994) First cytogenetical studies in Characidium species (Pisces: Characiformes, Characidiinae). Cytologia, 59: 73–79. M– 75 Mizoguchi, S.M.H.N. and Martins-Santos, I.C. (1997) Macro- and microchromosomes B in females of Astyanax scabripinnis (Pisces, Characidae). Hereditas, 127: 249–253.
264
References
M– 76 Mizoguchi, S.M.H.N. and Martins-Santos, I.C. (1998) Activation patterns of the nucleolar organizer region in Astyanax scabripinnis (Pisces, Characidae). Cytologia, 63: 259–265. M– 77 Molina, W.F., Schmid, M. and Galetti Jr., P.M. (1998) Heterochromatin and sex chromosomes in the neotropical fish genus Leporinus (Characiformes, Anostomidae). Cytobios, 94: 141–149. M– 78 Molina, W.F., Maia-Lima, F.A. and Affonso, P.R.A.M. (2002) Divergence between karyotypical pattern and speciation events in Serranidae fish (Perciformes). Caryologia, 55: 299–305. M– 79 Molina, W.F. and Galetti Jr., P.M. (2004) Karyotypic changes associated to the dispersive potential on Pomacentridae (Pisces, Perciformes). J. Exp. Mar. Biol. Ecol., 309: 109–119. M– 80 Molina, W.F. (2005) Intraspecifi fic karyotypical diversity in brackish water fishes of the Eleotridae family (Pisces, Perciformes). Cytologia, 70: 39–45. M– 81 Morr´an, P., Pendás, A.M., Garcia-Vázquez, E. and Linde, A.R. (1989) Chromosomal and morphological analysis of two populations of Salmo trutta sbp. fario employed in repopulation. J. Fish Biol., 35: 839–843. M– 82 Moreira-Filho, O., Bertollo, L.A.C. and Galetti Jr., P.M. (1980) Evidences for a multiple fi (Pisces, Parsex chromosome system with female heterogamety in Apareiodon affinis odontidae). Caryologia, 33: 83–91. M– 83 Moreira-Filho, O., Bertollo, L.A.C. and Galetti Jr., P.M. (1985) Karyotypic study of some species of family Parodontidae (Pisces-Cypriniformes). Caryologia, 38: 47– 55. M– 84 Moreira-Filho, O., Bertollo, L.A.C. and Galetti Jr., P.M. (1993) Distribution of sex chromosome mechanisms in neotropical fish and description of a ZZ/ZW system in Parodon hilarii (Parodontidae). Caryologia, 46: 115–125. M– 85 Moreira-Filho, O., Fenocchio, A.S., Pastori, M.C. and Bertollo, L.A.C. (2001) Occurrence of a metacentric macrochromosome B in different species of the genus Astyanax (Pisces, Characidae, Tetragonopterinae). Cytologia, 66: 59–64. M– 86 Morelli, S., Bertollo, L.A.C., Foresti, F., Moreira Filho, O. and Almeida Toledo, S. (1983) Cytogenetic considerations on the genus Astyanax (Pisces, Characidae). I. Karyotypic variability. Caryologia, 36: 235–244. M– 87 Morelli, S., Bertollo, L.A.C. and Moreira Filho, O. (1983) Cytogenetic considerations on the genus Astyanax (Pisces, Characidae). II. Occurrence of natural triploidy. Caryologia, 36: 245–250. M– 88 Morescalchi, A., Hureau, J.C., Olmo, E., Ozouf-Costaz, C., Pisano, E. and Stanyon, R. (1992) A multiple sex-chromosome system in Antarctic ice-fishes. fi Polar Biol., 11: 655–661. M– 89 Morescalchi, A., Morescalchi, M.A., Odierna, G., Stingo, V. and Capriglione, T. (1996) Karyotype and genome size of zoarcids and notothenioids (Teleostei, Perciformes) from the Ross Sea: cytotaxonomic implications. Polar Biol., 16: 559–564. M– 90 Morgan II, R.P., Goodfellow Jr., W.L. and Hocutt, C.H. (1984) Karyotype of Nocomis micropogon, Rhinichthys cataractae and their supposed hybrid, “Rhinichthys bowersi” (Pisces: Cyprinidae). Copeia, 1984: 990–992. M– 91 Muramoto, J., Ohno, S. and Atkin, N.B. (1968) On the diploid state of the fish fi order Ostariophysi. Chromosoma, 24: 59–66. M– 92 Muramoto, J. (1969) On the chromosomes of Parasilurus asotus (Linné). Chrom. Inform. Serv., 10: 18–19. M– 93 Muramoto, J. and Igarashi, K. (1969) A preliminary note on the chromosomes and enzymatic patterns of three forms of sticklebacks. J. Fac. Sci. Hokkaido Univ., Ser. Zool., 17: 266–270.
References
265
M– 94 Muramoto, J., Igarashi, K., Itoh, M. and Makino, S. (1969) A study of the chromosomes and enzymatic patterns of sticklebacks of Japan. Proc. Japan Acad., 45: 803–807. M– 95 Muramoto, J., Azumi, J. and Fukuoka, H. (1974) Karyotypes of 9 species of the Salmonidae. Chrom. Inform. Serv., 17: 20–23. M– 96 Muramoto, J. (1975) A note on triploidy of the funa (Cyprinidae, Pisces). Proc. Japan Acad., 51: 583–587. M– 97 Murofushi, M. and Yosida, T.H. (1979) Cytogenetical studies on fishes, fi II. Karyotypes of four carangid fishes. fi Japan. J. Genet., 54: 367–370. M– 98 Murofushi, M. and Yosida, T.H. (1979) Cytogenetical studies on fishes, I. Karyotypes of four filefi fishes. Japan. J. Genet., 54: 191–195. M– 99 Murofushi, M. and Aoki, H. (1979) Karyological study in Scomber japonicus. Rep. Mishima Res. Inst. Sci. Liv., Nihon Univ., 2: 37–40. (In Japanese with English abstract) M–100 Murofushi, M., Oikawa, S., Nishikawa, S. and Yosida, T.H. (1980) Cytogenetical studies on fishes, III. Multiple sex chromosome mechanism in the filefi fish, Stephanolepis cirrhifer. Japan. J. Genet., 55: 127–132. M–101 Murofushi, M., Oishi, M. and Nawa, N. (1980) Karyological studies in Apogon semilineatus. Rep. Mishima Res. Inst. Sci. Liv., Nihon Univ., 3: 47–50. (In Japanese with English abstract) M–102 Murofushi, M., Oishi, M. and Nawa, N. (1980) Karyological studies in Luciogobius guttatus. Rep. Mishima Res. Inst. Sci. Liv., Nihon Univ., 3: 51–52. (In Japanese with English abstract) M–103 Murofushi, M. and Nawa, N. (1981) A karyological study in yellowstriped butter fi fish Labracoglossa argentiventris Peters. Rep. Mishima Res. Inst. Sci. Liv., Nihon Univ., 4: 25–28. (In Japanese) M–104 Murofushi, M. (1982) A karyological study of two beryciform fishes. fi Rep. Mishima Res. Inst. Sci. Liv., Nihon Univ., 5: 17–20. (In Japanese with English abstract) M–105 Murofushi, M., Nishikawa, S. and Yosida, T.H. (1983) Cytogenetical studies on fi fishes. V. Multiple sex chromosome mechanism (XX-Y) found in two dragonet fishes. fi Proc. Japan Acad., Ser. B, 59: 58–61. M–106 Murofushi, M., Nishikawa, S. and Yosida, T.H. (1983) Cytogenetical studies on fishes, IV. Karyotypes of six species in the sparoid fishes. Japan. J. Genet., 58: fi 361–367. M–107 Murofushi, M., Nishikawa, S. and Yosida, T.H. (1984) Cytogenetical studies on fishes, fi IX. Karyological comparison of two species in snipefishes. fi Japan. J. Genet., 59: 155–158. M–108 Murofushi, M. and Yosida, T.H. (1984) Cytogenetical studies on fishes. fi VIII. XX-Y sex chromosome mechanism newly found in the snake eel, Muraenichthys gymnotus (Anguilliformes, Pisces). Proc. Japan Acad., Ser. B, 60: 21–23. M–109 Murofushi, M., Nishikawa, S. and Yosida, T.H. (1984) Cytogenetical studies on fishes, fi VII. Karyological comparison of two species in the sandperch fishes. fi La Kromosomo, II, 35/36: 1122–1125. M–110 Murofushi, M., Nishikawa, S. and Yosida, T.H. (1984) Cytogenetical studies on fishes, fi VI. Karyological comparison of four species in the dragonet fish. fi La Kromosomo, II, 34: 1079–1084. M–111 Murofushi, M. (1986) A study of karyotype classifi fication and karyotype evolution in marine teleosts. Rep. Mishima Res. Inst. Sci. Liv., Nihon Univ., 9: 95–157. (In Japanese with English abstract) M–112 Murofushi, M., Nakatsubo, T. and Smith, P.J. (1989) Karyological study on the New Zealand leatherjacket, Parika scaber, fi fish of the order Tetraodontiformes. Bull. Biogeogr. Soc. Japan, 44: 35–38.
266
References
M–113
Maistro, E.L., Jesus, C.M., Oliveira, C., Moreira-Filho, O. and Foresti, F. (2004) Cytogenetic analysis of A-, B-chromosomes and ZZ/ZW sex chromosomes of Characidium gomesi (Teleostei, Characiformes, Crenuchidae). Cytologia, 69: 181–186. Maddock, M.B. and Schwartz, F.J. (1996) Elasmobranch cytogenetics: methods and sex chromosomes. Bull. Mar. Sci., 58: 147–155. Morescalchi, M.A., Rocco, L. and Stingo, V. (2002) Cytogenetic and molecular studies in a lungfish, fi Protopterus annectens (Osteichthyes, Dipnoi). Gene, 295: 279–287. Miller, P.J. and El-Tawil, M.Y. (1974) A multidisciplinary approach to a new species of Gobius (Teleostei: Gobiidae) from southern Cornwall. J. Zool. Lond., 174: 539–574. Murakami, M. (2006) The origins of the gynogenetic triploid ginbuna (Japanese silver crucian carp, Carassius auratus langsdorfi). Fish Genet. Breed. Sci., 35: 87–92. (In Japanese with English abstract) Murofushi, M., Yoda, K. and Deguchi, Y. (1987) Karyological study of four species in scorpionfi fishes. Rep. Mishima Res. Inst. Sci. Liv., Nihon Univ., 10: 37–42. (In Japanese with English abstract) Morishima, K. and Arai, K. (2006) Natural clonal lines, polyploidy and atypical reproduction in the loach, Misgurnus anguillicaudatus. Fish Genet. Breed. Sci., 35: 93–100. (In Japanese with English abstract) Mank, J.E. and Avise, J.C. (2006) Phylogenetic conservation of chromosome numbers in Actinopterygiian fishes. fi Genetica, 127: 321–327. Molina, W.F. and Bacurau, T.O.F. (2006) Structural and numerical chromosome diversification in marine Perciformes (Priacanthidae and Gerreidae). Cytologia, 71: 237–242. fi Mazzei, F., Ghigliotti, L., Bonillo, C., Coutanceau, J-P., Ozuouf-Costaz, C. and Pisano, E. (2004) Chromosomal patterns of major and 5S ribosomal DNA in six icefish fi species (Perciformes, Notothenioidei, Channichthyidae). Polar Biol., 28: 47–55. Mazzei, F., Ghigliotti, L., Lecointre, G., Ozuouf-Costaz, C., Coutanceau, J-P., Detrich III, W. and Pisano, E. (2006) Karyotypes of basal lineages in notothenioid fishes: the genus Bovichtus. Polar Biol., 29: 1071–1076. Mazzei, F., Ghigliotti, L., Coutanceau, J-P., Detrich III, H.W., Prirodina, V., OzuoufCostaz, C. and Pisano, E. (2008) Chromosomal characteristics of the temperate notothenioid fish Eleginops maclovinus (Cuvier). Polar Biol., 31: 629–634. Majumdar, K.C. and McAndrew, B.J. (1986) Relative DNA content of somatic nuclei and chromosomal studies in three genera, Tilapia, Sarotherodon, and Oreochromis of the tribe Tilapiini (Pisces, Cichlidae). Genetica, 68: 175–188. Morescalchi, A., Pisano, E., Stanyon, R. and Morescalchi, M.A. (1992) Cytotaxonomy of Antarctic teleosts of the Pagothenia/Trematomus complex (Nototheniidae, Perciformes). Polar Biol., 12: 553–558. Morescalchi, M.A., Liguori, I., Rocco, L., Archimandritis, A. and Stingo, V. (2008) Karyotypic characterization and genomic organization of the 5S rDNA in Polypterus senegalus (Osteichthyes, Polypteridae). Genetica, 132: 179–186. Martinez, E.R.M., Oliveira, C. and Foresti, F. (2004) Cytogenetic analyses of Pseudopimelodus mangurus (Teleostei: Siluriformes: Pseudopimelodidae). Cytologia, 69: 419–424. Margarido, V.P. and Moreira-Filho, O. (2008) Karyotypic differentiation through chromosome fusion and number reduction in Imparfinis fi hollandi (Ostariophysi, Heptapteridae). Genet. Mol. Biol., 31(1) (suppl.): 235–238. Martins, C. and Galetti Jr., P.M. (2001) Organization of 5S rDNA in species of the fi fish Leporinus: two different genomic locations are characterized by distinct nontranscribed spacers. Genome, 44: 903–910. Moreira-Filho, O., Galetti Jr., P.M. and Bertollo, L.A.C. (2004) B chromosomes in the fish fi Astyanax scabripinnis (Characidae, Tetragonopterinae): an overview in natural populations. Cytogenet. Genome Res., 106: 230–234.
M–114 M–115 M–116 M–117
M–118
M–119
M–120 M–121 M–122
M–123
M–124
M–125
M–126
M–127
M–128
M–129
M–130
M–131
References
267
M–132 Medrano, L., Bernardi, G., Couturier, J., Dutrillaux, B. and Bernardi, G. (1988) Chromosome banding and genome compartmentalization in fishes. fi Chromosoma, 96: 178–183. M–133 Mirsky, A.E. and Ris, H. (1951) The desoxyribonucleic acid content of animal cells and its evolutionary signifi ficance. J. General Physiol., 34: 451–462. M–134 Miyaki, K., Tabeta, O. and Kayano, H. (1995) Karyotypes in six species of pufferfishes fi genus Takifugu (Tetraodontidae, Tetraodontiformes). Fish. Sci., 61: 594–598. M–135 Maistro, E.L., Foresti, F., Oliveira, C. and Almeida-Toledo, L.F. (1992) Occurrence of macro B chromosomes in Astyanax scabripinnis paranae (Pisces, Characiformes, Characidae). Genetica, 87: 101–106. M–136 Mazzuchelli, J. and Martins, C. (2009) Genomic organization of repetitive DNAs in the cichlid fish fi Astronotus ocellatus. Genetics, 136: 461–469. M–137 Martinez, P., Castro, J., Pardo, B.G., Bouza, C., Hermida, M. and Vilas, R. (2009) High Ag-NOR-site variation associated to a secondary contact in brown trout from the Iberian Peninsula. Genetica, 136: 419–427. M–138 Miya, M., Takeshima, H., Endo, H., Ishiguro, N.B., Inoue, J.G., Mukai, T., Satoh, T.P., Yamaguchi, M., Kawaguchi, A., Mabuchi, K., Shirai, S.M. and Nishida, M. (2003) Major patterns of higher teleostean phylogenies: a new perspective based on 100 complete mitochondrial DNA sequences. Mol. Phylogenet. Evol., 26: 121–138. M–139 Miya, M., Satoh, T.P. and Nishida, M. (2005) The phylogenetic position of toadfishes fi (order Batrachoidiformes) in the higher ray-finned fi fish as inferred from partitioned Bayesian analysis of 102 whole mitochondrial genome sequences. Biol. J. Linn. Soc., 85: 289–306. M–140 Miya, M., Holocroft, N.I., Satoh, T.P., Yamaguchi, M., Nishida, M. and Wiley, E.O. (2007) Mitochondrial genome and a nuclear gene indicate a novel phylogenetic position of deep-sea tube-eye fish (Stylephoridae). Ichthyol. Res., 54: 323–332. M–141 Monteiro, R., Carvalho, C. and Collares-Pereira, M.J. (2009) Karyotype and genome size of Iberochondrostoma almacai (Teleostei, Cyprinidae) and comparison with the sisterspecies I. lusitanicum. Genet. Mol. Biol., 32: 268–275. M–142 Martinez, E.R.M., Nirchio, M., Granado, A., Foresti, F. and Oliveira, C. (2008) Cytogenetic analysis of three catfish fi species of the family Pseudopimelodidae (Teleostei, Siluriformes). Genet. Mol. Biol., 31: 692–696. M–143 Molina, W.F. and Galetti Jr., P.M. (2002) Robertsonian rearrangements in the reef fi fish Chromis (Perciformes, Pomacentridae) involving chromosomes bearing 5S rRNA genes. Genet. Mol. Biol., 25: 373–377. M–144 Milhomem, S.S.R., Souza, A.C.P., Nascimento, A.L., Carvalho Jr., J.R., Feldberg, E., Pieczarka, J.C. and Nagamichi, C.Y. (2008) Cytogenetic studies in fishes of the genera Hassar, Platydoras and Opsodoras (Doradidae, Siluriformes) from Jari and Xingú rivers, Brazil. Genet. Mol. Biol., 31 (suppl.): 256–260. M–145 Molina, W.F. and Galetti Jr., P.M. (2004) Multiple pericentric inversions and chromosomal divergence in the reef fishes fi Stegastes (Perciformes, Pomacentridae). Genet. Mol. Biol., 27: 543–548. M–146 Mesquita, D.R., Porto, J.I.R. and Feldberg, E. (2008) Chromosomal variability in the wild ornamental species of Symphysodon (Perciformes: Cichlidae) from Amazon. Neotrop. Ichthyol., 6: 181–190. M–147 Marques, D.K., Venere, P.C. and Galetti Jr., P.M. (2006) Chromosomal characterization of the bonytongue Arapaima gigas (Osteoglossiformes: Arapaimidae). Neotrop. Ichthyol., 4: 215–218. M–148 Marcon, J.L., Feldberg, E., Porto, J.I.R. and Affonso, E.G. (1992) Estudos fi fisiologicos e citogeneticos em peixes do genero Dianema (Siluriformes, Callichthyidae) da Amazonia Central. IV. Simp. Citogenet. Evol. e Aplic. de Peixes Neotropicais, Rio de Janeiro, RJ, p. 34 (abstract). (In Portuguese)
268
References
*M–149
Martins-Santos, I.C., Silva, A.L.B. and Julio, H.F. (1990) Estudio cromossômico de Aequidens plagiozonatus (Perciformes, Cichlidae) do Rio Paraná. III. Simp. Citogenet. Evol. e Aplic. de Peixes Neotropicais, Botucatu, SP, p. 40 (abstract). (After K-114) Miller, R.R. and Echelle, A.A. (1975) Cyprinodon tularosa, a new cyprinodontid fish from the Tularosa basin, New Mexico. Southwest. Nat., 19: 365–377. (After K-114) Margarido, V.P. and Galetti Jr., P.M. (1999) Heterochromatin patterns and karyotype relationships within and between the genera Brycon and Salminus (Pisces, Characidae). Genet. Mol. Biol., 22: 357–361. Mestriner, C.A., Bertollo, L.A.C. and Galetti Jr., P.M. (1995) Chromosome banding and synaptonemal complexes in Leporinus lacustris (Pisces, Anostomidae): analysis of a sex system. Chrom. Res., 3: 440–443. Molina, W.F., Margarido, V.P. and Galetti Jr., P.M. (2007) Natural triploidy in Leporinus cf. elongatus bearing sex chromosomes. Genet. Mol. Biol., 30: 567–569. Martins, C. and Galetti Jr., P.M. (1998) Karyotype similarity between two sympatric Schizodon fish species (Anostomidae, Characiformes) from the Paraguay River basin. Genet. Mol. Biol., 21: 355–360. Margarido, V.P. and Galetti Jr., P.M. (2000) Amplification fi of a GC-rich heterochromatin in the freshwater fish Leporinus desmotes (Characiformes, Anostomidae). Genet. Mol. Biol., 23: 569–573. Molina, W.F. and Galetti Jr., P.M. (2007) Early replication banding in Leporinus species (Osteichthyes, Characiformes) bearing differentiated sex chromosomes (ZW). Genetica, 130: 153–160. Moraes, V.P.O., Cereali, S.S., Froehlich, O. and Dias, A.L. (2007) Cytogenetic characterization of Rhamdia quelen (Siluriformes, Heptapteridae) from the Bodoquena Plateau, Mato Grosso do Sul, Brazil. Genet. Mol. Res., 6: 627–633. Moraes, V.P.O., Souza Carneiro, J. and Dias, A.L. (2009) B chromosomes in four different populations of Rhamdia quelen (Siluriformes, Heptapteridae): a comparative study of frequency and distribution. Folia Biol. (Krakow), 57: 165–169. Mizoguchi, S.M.H.K., Portela-Castro, A.L.B. and Martins-Santos, I.C. (2007) Cytogenetic characterization of Crenicichla (Pisces, Perciformes, Cichlidae) of the Iguaçu River. Genet. Mol. Res., 6: 650–656. Mani, I., Kumar, R., Singh, M., Kushwaha, B., Nagpure, N.S., Srivastava, P.K., Murmu, K., Rao, D.S.K. and Lakra, W.S. (2009) Karyotypic diversity and evolution of seven mahseer species (Cyprinidae) from India. J. Fish Biol., 75: 1079–1091. Mazzuchelli, J., Swarça, A.C. and Dias, A.L. (2007) Structural chromosome polymorphism in a Pimelodus maculatus La Cepède, 1803 population (Siluriformes, Pimelodidae) from the Paranapanema River basin, PR, Brazil. Brazil. J. Biol., 67 (special number): 631–637. Mishra, A. (1998) Gadusia variegata, Gonialosa manmina, Gagata cenia. In: Ponniah, A.G. and John, G. eds. Fish chromosome atlas. National Bureau of Fish Genetic Resources, Lucknow, India, pp. 14–17, 202–203. Meyer, M.K. and Förster, W. (1983) Eine neue Ilyodon-Art aus Guerrero, Mexico (Osteichthyes, Goodeidae). Zool. Abhand. Staat. Mus. Tier. Dresden, 38: 257–263. Mariotto, M., Artoni, R.F. and Miyazawa, C.S. (2004) Occurrence of sexual chromosome, of the type ZZ/ZW, in Ancistrus cf. dubius (Loricariidae, Ancistrinae) of the Paraguay river basin, Mato Grosso, Brazil. Caryologia, 57: 327–331. Mariotto, S. and Miyazawa, C.S. (2006) Ancistrus cf. dubius (Siluriformes, Ancistrinae), a complex of species. 1. Chromosomic characterization of four populations and occurrence of sexual chromosomes of type XX/XY, in the Pantanal basin of Mato Grosso, Brazil. Caryologia, 59: 299–304.
*M–150
M–151
M–152
M–153 M–154
M–155
M–156
M–157
M–158
M–159
M–160
M–161
M–162
M–163 M–164
M–165
References
269
M–166 Magtoon, W. and Arai, R. (1994) Karyotypes of five fi Rasbora species and one Danio species (Cyprinidae) from Thailand. Proc. 4th Indo-Pacific fi Fish Conference, Bangkok, pp. 484–496. *M–167 Mendonca, A.C.S., Molina, W.F., Gurgel, H.C.B. and Dias, A.L. (1990) Dados preliminares sobre os cromossomos de Metynnis cf. roosevelti (Eigenmann, 1915) (Characidae, Myleinae) da Lagoa Redonda, Rio Grande do Norte. III Simp. Citogenet. Evol. E Aplic. de Peixes Neotropicais, Botucatu, SP, p. 7 (abstract). (After K-114) M–168 Maia, T.P. de A., Giuliano-Caetano, L., Rodriguez, M.S., Rubert, M., Takagui, F.H. and Dias, A.L. (2010) Chromosomal banding in three species of the genus Rineloricaria (Siluriformes, Loricariidae, Loricariinae). Ichthyol. Res., 57: 209–213. M–169 Moysés, C.B., Daniel-Silva, M.F.Z., Lopes, C.E. and Almeida-Toledo, L.F. (2010) Cytotypespecifi fic ISSR profi files and karyotypes in the Neotropical genus Eigenmannia (Teleostei: Gymnotiformes). Genetica, 138: 179–189. [N] N– 1 Nadamitsu, S. (1974) Karyological studies of two types of gobioid fish, fi “Yoshinobori”. Bull. Hiroshima Women’s Univ., 9: 3–9. N– 2 Nascimento, A.L., Souza, A.C.P., Feldberg, E., Cavalho Jr., J.R., Barros, R.M.S., Pieczarka, J.C. and Nagamachi, C.Y. (2006) Cytogenetic analysis on Pterophyllum scalare (Perciformes, Cichlidae) from Jari river, Pará state. Caryologia, 59: 138–143. N– 3 Nagpure, N.S., Kushwaha, B., Srivastava, S.K. and Ponniah, A.G. (2000) Karyomorphology of African catfish fi Clarias gariepinus (Clariidae). Chrom. Sci., 4: 43–44. N– 4 Nagpure, N.S., Kushwaha, B., Srivastava, S.K. and Ponniah, A.G. (2001) Comparative cytogenetic studies in Indian major carps Labeo rohita, Catla catla and Cirrhinus mrigala (Cyprinidae, Pisces). Chrom. Sci., 5: 153–158. N– 5 Nagy, A., Rajki, K., Horváth, L. and Csányi, V. (1978) Investigation on carp, Cyprinus carpio L. gynogenesis. J. Fish Biol., 13: 215–224. N– 6 Nakai, Y., Kubota, S. and Kohno, S. (1991) Chromatin diminution and chromosome elimination in four Japanese hagfish fi species. Cytogenet. Cell Genet., 56: 196–198. N– 7 Nakatsubo, T. and Murofushi, M. (1997) Karyological study of ocean sun fish fi Mola mola. In: Zhou, Y.Q. Zhou, H.Q., Yao, C.Q., Lu, Y., Hu, F.Y., Chi, H. and Din, F.H. eds. The fourth Asian fi fisheries forum. China Ocean Press, pp. 388–389. N– 8 Nakayama, C.M., Feldberg, E. and Bertollo, L.A.C. (2008) Mapping of ribosomal genes and chromosomal markers in three species of the genus Serrasalmus (Characidae, Serrasalminae) from the Amazon basin. Genet. Mol. Biol., 31: 868–873. N– 9 Nakayama, C., Jégu, M., Porto, J.I.R. and Feldberg, E. (2001) Karyological evidence for a cryptic species of piranha within Serrasalmus rhombeus (Characidae, Serrasalminae) in the Amazon. Copeia, 2001: 866–869. N– 10 Nakayama, I. and Chourrout, D. (1993) Uniparental reproduction demonstrates the inheritance of Robertsonian variations in the rainbow trout, Oncorhynchus mykiss. Copeia, 1993: 553–557. N– 11 Naran, D. (1997) Cytogenetic studies of Pseudobarbus and selected Barbus (Pisces: Cyprinidae) of southern Africa. M. Sc. Thesis, Rhodes Univ., 223 pp. N– 12 Natarajan, R. and Subrahmanyam, K. (1968) A preliminary study on the chromosomes off Tilapia mossambica (Peters). Curr. Sci., 37: 262–263. N– 13 Natarajan, R. and Subrahmanyam, K. (1974) A karyotype study of some teleosts from Portonovo waters. Proc. Ind. Acad. Sci., Sec. B, 79: 173–196. N– 14 Navarrete, M.C. and Julio Jr., H.F. (1997) Cytogenetic analysis of four curimatids from the Paraguay basin, Brazil (Pisces: Characiformes: Curimatidae). Cytologia, 62: 241–247.
270
References
N– 15 Nayak, K. and Khuda-Bukhsh, A.R. (1987) Chromosomes of two species of fi fishes Apocryptes (Gobiidae: Pisces). Environ. Ecol., 5: 371–373. N– 16 Nayak, K. and Khuda-Bukhsh, A.R. (1987) Karyotypes of two species of fishes. fi Environ. Ecol., 5: 318–320. N– 17 Nayak, K. and Khuda-Bukhsh, A.R. (1988) Karyomorphology of a crocodile fi fish Platycephalus tuberculatus (Platycephalidae, Pisces). J. Inland Fish. Soc. India, 20(2): 35–37. N– 18 Nayak, K. and Khuda-Bukhsh, A.R. (1991) Chromosome complements in Mugil corsula (Mugilidae, Pisces) with reference to somatic C-band localization. Nat. Acad. Sci. Letters, 14(4): 195–196. N– 19 Nayyar, R.P. (1966) Karyotype studies in thirteen species of fishes. fi Genetica, 37: 78–92. N– 20 Néo, D.M., Moreira Filho, O. and Camacho, J.P.M. (2000) Altitudinal variation for B chromosome frequency in the characid fish fi Astyanax scabripinnis. Heredity, 85: 136–141. N– 21 Nielsen, J.L. and Sage, G.K. (2001) Microsatellite analyses of the trout of northwest Mexico. Genetica, 111: 269–278. N– 22 Nikolskii, G.V. and Vasiliev, V.P. (1973) On several regularization in the distribution of chromosomes in fishes. fi Vopr. Ichthyol., 13: 3–22. (In Russian) N– 23 Nirchio, M., Gomez, J.A. and Villalaz, J. (2001) Cariotipo del pez sapo Batrachoides pacifici fi (Batrachoididae: Teleostei) de la costa del Pacifico fi de Panamá. Saber, Univ. Oriente, Venezuela, 13: 81–83. (In Spanish with English abstract) N– 24 Nirchio, M., Turner, B.J., Pérez, J.E., Gaviria, J.I. and Cequea, H. (2002) Karyotypes of three species of toadfish fi (Batrachoididae: Teleostei) from Venezuela. Sci. Mar., 66: 1–4. N– 25 Nirchio, M., Fenocchio, A.S., Swarça, A.C., Pérez, J.E., Granado, A., Estrada, A. and Ron, E. (2003) Cytogenetic characterization of hybrids offspring between Colossoma macropomum (Cuvier, 1818) and Piaractus brachypomus (Cuvier, 1817) from Caicara del Orinoco, Venezuela. Caryologia, 56: 405–411. N– 26 Nirchio, M., Fenocchio, A.S., Swarça, A.C. and Pérez, J.E. (2004) Karyology of the toadfish fi Porichthys plectrodon (Jordan and Gilbert, 1882) (Batrachoididae) from Margarita Island, Venezuela. Mar. Biol., 146: 161–165. N– 27 Nirchio, M., Fenocchio, A.S., Swarça, A.C., Dias, A.L., Giuliano-Caetano, L., Ron, E., Gaviria, J.I. and Pérez, J.E. (2004) Cytogenetic characterization of Thalassophryne maculosa Günther, 1861 (Pisces: Batrachoididae) from Margarita Island, Venezuela. Caribbean J. Sci., 40: 218–222. N– 28 Nishikawa, S., Amaoka, K. and Karasawa, T. (1971) On the chromosomes of two species of eels (Anguilla). Chrom. Inform. Serv., 12: 27–28. N– 29 Nishikawa, S. and Karasawa, T. (1972) A comparative studies of the chromosomes in Japanese fishes–I. fi A study of the somatic chromosomes of three species of scups. J. Shimonoseki Univ. Fish., 20: 235–240. (In Japanese with English abstract) N– 30 Nishikawa, S., Amaoka, K. and Karasawa, T. (1973) A preliminary study on the chromosomes of Cichlasoma citrinella (Cichlidae; Pisces). Chrom. Inform. Serv., 14: 32–33. N– 31 Nishikawa, S., Amaoka, K. and Nakanishi, K. (1974) A comparative study of chromosomes of twelve species of gobioid fishes in Japan. Japan. J. Ichthyol., 21: 61–71. N– 32 Nishikawa, S. and Sakamoto, K. (1977) Comparative studies on the chromosomes in Japanese fishes–III. Somatic chromosomes of three anguilliform fishes. J. Shimonoseki Univ. Fish., 25: 193–196. (In Japanese with English abstract) N– 33 Nishikawa, S., Honda, M. and Wakatsuki, A. (1977) Comparative studies on the chromosomes in Japanese fishes–II. Chromosomes of eight species in scorpionfi fishes. J. Shimonoseki Univ. Fish., 25: 187–191. (In Japanese with English abstract) N– 34 Nishikawa, S. and Sakamoto, K. (1978) Comparative studies on the chromosomes in Japanese fishes–V. fi Somatic chromosomes in Japanese blennioid fish, Dictyosoma burgeri Van der Hoven. J. Shimonoseki Univ. Fish., 27: 119–121. (In Japanese with English abstract)
References
N– 35
N– 36 N– 37 N– 38 N– 39 N– 40
N– 41 N– 42 N– 43 N– 44 N– 45 N– 46 N– 47 N– 48
N– 49 N– 50 N– 51
N– 52
N– 53 N– 54
N– 55
N– 56
271
Nishikawa, S. and Sakamoto, K. (1978) Comparative studies on the chromosomes in Japanese fishes–IV. fi Somatic chromosomes of two lizardfi fishes. J. Shimonoseki Univ. Fish., 27: 113–117. (In Japanese with English abstract) Nishikawa, S. and Sakamoto, K. (1982) The karyotype of a hexagrammid, Hexagrammos otakii (Pisces: Scorpaeniformes). Chrom. Inform. Serv., 33: 17–18. Nogusa, S. (1960) A comparative study of the chromosomes in fishes fi with particular considerations on taxonomy and evolution. Mem. Hyogo Univ. Agricul., 3: 1–62. Nowruzfashkhami, M.R., Pourkazemi, M. and Baradarannoveiri, S. (2000) Chromosome study of Persian sturgeon Acipenser persicus B. Cytologia, 65: 197–202. Nygren, A., Nilsson, B. and Jahnke, M. (1968) Cytological studies in Atlantic salmon (Salmo salar). Ann. Acad. Reg. Sci. Upsalien., 12: 21–52. Nygren, A., Edlund, P., Hirsch, U. and Åhsgren, L. (1968) Cytological studies in perch (Perca fluviatilis fl L.), pike (Esox lucius L.), pike-perch (Lucioperca lucioperca L.), and ruff (Acerina cernua L.). Hereditas, 59: 518–524. Nygren, A., Nilsson, B. and Jahnke, M. (1971) Cytological studies in Thymallus thymallus and Coregonus albula. Hereditas, 67: 269–274. Nygren, A., Nilsson, B. and Jahnke, M. (1971) Cytological studies in the smelt (Osmerus eperlanus L.). Hereditas, 67: 283–286. Nygren, A., Nilsson, B. and Jahnke, M. (1971) Cytological studies in Hypotremata and Pleurotremata (Pisces). Hereditas, 67: 275–282. Nygren, A., Nilsson, B. and Jahnke, M. (1971) Cytological studies in Salmo trutta and Salmo alpinus. Hereditas, 67: 259–268. Nygren, A., Leijon, U., Nilsson, B. and Jahnke, M. (1971) Cytological studies in Coregonus from Sweden. Ann. Acad. Reg. Sci. Upsalien., 15: 5–20. Nygren, A. and Jahnke, M. (1972) Microchromosomes in primitive fishes. fi Swedish J. Agric. Res., 2: 229–238. Nygren, A. and Jahnke, M. (1972) Cytological studies in Myxine glutinosa (Cyclostomata) from the Gullmaren Fjord in Sweden. Swedish J. Agric. Res., 2: 83–88. Nygren, A., Nilsson, B. and Jahnke, M. (1972) Cytological studies in Atlantic salmon from Canada, in hybrids between Atlantic salmon from Canada and Sweden and in hybrids between Atlantic salmon and sea trout. Hereditas, 70: 295–306. Nygren, A., Bergkvist, G., Windahl, T. and Jahnke, G. (1974) Cytological studies in Gadidae (Pisces). Hereditas, 76: 173–178. Nygren, A., Andersson, J., Jonsson, L. and Jahnke, G. (1975) Cytological studies in Cyprinidae (Pisces). Hereditas, 81: 165–172. Nygren, A., Nyman, L., Svensson, K. and Jahnke, G. (1975) Cytological and biochemical studies in back-crosses between the hybrid Atlantic salmon × sea trout and its parental species. Hereditas, 81: 55–62. Nirchio, M., Cervigón, F., Porto, J.I.R., Pérez, J.E., Gómez, J.A. and Villalaz, J. (2003) Karyotype supporting Mugil curema Valenciennes, 1836 and Mugil gaimardianus Desmarest, 1831 (Mugilidae: Teleostei) as two valid nominal species. Sci. Mar., 67: 113–115. Nirchio, M., Ron, E. and Rossi, A.R. (2005) Karyological characterization of Mugil trichodon Poey, 1876 (Pisces: Mugilidae). Sci. Mar., 69: 525–530. Nagata, Y., Nagata, A., Fujioka, Y. and Sakai, H. (1994) A karyotype study on two species of Zacco (type A, type B) (Pisces, Cyprinidae) from Yamaguchi Prefecture. J. Shimonoseki Univ. Fish., 43: 17–20. (In Japanese with English abstract) Nagpure, N.S., Kumar, R., Srivastava, S.K., Kushwaha, B., Singh, P.J., Gopalakrishnan, A. and Baseer, V.S. (2005) A report on high number of chromosomes in three endemic fish species from the Western Ghats of India. Nucleus, 48: 165–170. fi Nagpure, N.S., Kushwaha, B., Srivastava, S.K., Kumar, R., Gopalakrishnan, A., Baseer, V.S. and Verma, M.S. (2003) Characterization of three endemic fish species from Western Ghats using cytogenetic markers. Nucleus, 46: 110–114.
272
References
N– 57 Nagpure, N.S., Kumar, R., Srivastava, S.K., Gopalakrishnan, A., Verma, M.S. and Baseer, V.S. (2004) Cytogenetic studies of fish fi species Horabagrus nigricollaris, Puntius denisonii and Puntius sarana subnasutus endemic to the Western Ghats. Nucleus, 47: 143–148. N– 58 Nagpure, N.S., Kumar, R., Verma, M.S., Srivastava, S.K., Anna Mercy, T.V., Gopalakrishnan, A. and Basheer, V.S. (2004) Characterization of fi fish, Pristolepis marginata Jerdon using cytogenetic markers. J. Cytol. Genet., 5 (NS): 167–172. N– 59 Nirchio, M., Gaviria, J.I., Oliveira, C., Ferreira, I.A. and Martins, C. (2007) Cytogenetic analysis of three species of the genus Haemulon (Teleostei: Haemulinae) from Margarita Island, Venezuela. Genetica, 131: 135–140. N– 60 Nirchio, M., Granado, A., Ron, E. and Pérez, J.E. (2002) Karyotype and nucleolar organizer regions in Serrasalmus rhombeus (Serrasalminae) from Caicara del Orinoco, Venezuela. Interciencia, 27: 676–678. N– 61 Nirchio, M., Cequea, H. and Turner, B.J. (2003) Karyotypic characterization and nucleolus organizer regions in Cyprinodon dearborni (Meek, 1909) from Venezuela. Interciencia, 28: 352–354. N– 62 Nakai, Y., Kubota, S., Goto, Y., Ishibashi, T., Davison, W. and Kohno, S. (1995) Chromosome elimination in three Baltic, south Pacific fi and north-east Pacifi fic hagfi fish species. Chrom. Res., 3: 321–330. N– 63 Naran, D., Skelton, P.H. and Villet, M.H. (2006) Karyology of the redfi fin minnows, genus Pseudobarbus Smith, 1841 (Teleostei: Cyprinidae): one of the evolutionarily tetraploid lineages of South African barbines. Afr. Zool., 41: 178–182. N– 64 Nirchio, M., Oliveira, C., Ferreira, I.A., Martins, C., Rossi, A.R. and Sola, L. (2009) Classical and molecular cytogenetic characterization of Agonostomus monticola, a primitive species of Mugilidae (Mugiliformes). Genetica, 135: 1–5. N– 65 Nagpure, N.S., Kumar, R., Srivastava, S.K., Kushwaha, B., Gopalakrishnan, A. and Basheer, V.S. (2006) Cytogenetic characterization of two marine ornamental fi fishes, Chaetodon collare and Stegastes insularis. J. Mar. Biol. Ass. India, 48: 267–269. N– 66 Nirchio, M., Oliveira, C., Ferreira, I.A., Pérez, J.E., Gaviria, J.I., Harrison, I., Rossi, A.R. and Sola, L. (2007) Comparative cytogenetic and allozyme analysis of Mugil rubrioculus and M. curema (Teleostei: Mugilidae) from Venezuela. Interciencia, 32: 757–762. N– 67 Naran, D., Skelton, P.H. and Villet, M.H. (2007) Karyology of three evolutionarily hexaploid southern African species of yellowfish, fi Labeobarbus Rüppel, 1836 (Cyprinidae). African Zool., 42: 254–260. N– 68 Nelson, J.S. (2006) Fishes of the World. Fourth edition. John Wiley & Sons, New Jersey, USA. N– 69 Nirchio, M., Oliveira, C., Ferreira, I.A., Granado, A. and Ron, E. (2007) Extensive polymorphism and chromosomal characteristics of ribosomal DNA in the characid fish fi Triportheus venezuelensis (Characiformes, Characidae). Genet. Mol. Biol., 30: 25–30. N– 70 Nirchio, M., Rondón, R., Oliveira, C., Ferreira, I.A., Martins, C., Pérez, J., Sola, L. and Rossi, A.R. (2008) Cytogenetic studies in three species of Lutjanus (Perciformes: Lutjanidae: Lutjaninae) from the Isla Margarita, Venezuela. Neotrop. Ichthyol., 6: 101–108. N– 71 Nakayama, C.M., Porto, J.I.R. and Feldberg, E. (2002) A comparative cytogenetic study of five fi piranha species (Serrasalmus, Serrasalminae) from the Amazonian basin. Genetica, 114: 231–236. N– 72 Nagpure, N.S., Kumar, R., Kushwaha, B., Srivastava, S.K., Sigh, P.J. and Lakra, W.S. (2006) Karyological studies of fish fi species Garra surendranathanii and Barilius gatensis from the Western Ghats of India. Nucleus, 49: 171–175. N– 73 Nagpure, N.S., Kumar, R., Srivastava, S.K., Gopalakrishnan, A., Basheer, V.S. and Kapoor, D. (2006) Cytogenetic studies of two cyprinids Garra mullya and Barilius bakeri from the Western Ghats of India. J. Cytol. Genet., 7 (NS): 69–77.
References
273
N– 74 Nirchio, M., Cipriano, R., Cestari, M. and Fenocchio, A. (2005) Cytogenetical and morphological features reveal signifi ficant differences among Venezuelan and Brazilian samples of Mugil curema (Teleostei: Mugilidae). Neotrop. Ichthyol., 3: 107–110. N– 75 Nakatani, Y., Takeda, H., Kohara, Y. and Morishita, S. (2007) Reconstruction of the vertebrate ancestral genome reveals dynamic genome reorganization in early vertebrates. Genome Res., 17: 1254–1265. N– 76 Nirchio, M., Oliveira, C., Ferreira, D.C., Rondón, R., Pérez, J.E., Hett, A.K., Rossi, A.R. and Sola, L. (2009) Cytogenetic characterization of Rhomboplites aurorubens and Ocyurus chrysurus, two monotypic genera of Lutjaninae from Cubagua Island, Venezuela, with a review of the cytogenetics of Lutjanidae (Teleostei: Perciformes). Neotrop. Ichthyol., 7: 587–594. N– 77 Naruse, K., Tanaka, M., Mita, K., Shima, A., Postlethwait, J. and Mitani, H. (2004) A medaka gene map: the trace of ancestral vertebrate proto-chromosomes revealed by comparative gene mapping. Genome Res., 14: 820–828. [O] O– 1
O–
2
O–
3
O–
4
O–
5
O–
6
O–
7
O–
8
O–
9
O– 10
O– 11 O– 12
O– 13
O– 14
Oberdorff, T., Ozouf-Costaz, C. and Agnese, J.F. (1990) Chromosome banding in African catfi fishes: nucleolar organizer regions in five species of the genus Synodontis and one of the genus Hemisynodontis (Pisces, Mochokidae). Caryologia, 43: 9–16. Oellermann, L.K. and Skelton, P.H. (1990) Hexaploidy in yellowfish fi species (Barbus, Pisces, Cyprinidae) from southern Africa. J. Fish Biol., 37: 105–115. Ohno, S., Stenius, C., Faisst, E. and Zenzes, M.T. (1965) Post-zygotic chromosomal rearrangements in rainbow trout (Salmo irideus Gibbons). Cytogenetics, 4: 117–129. Ohno, S. and Atkin, N.B. (1966) Comparative DNA values and chromosome complements of eight species of fi fishes. Chromosoma, 18: 455–466. Ohno, S., Muramoto, J., Christian, L. and Atkin, N.B. (1967) Diploid-tetraploid relationship among Old-World members of the fish fi family Cyprinidae. Chromosoma, 23: 1–9. Ohno, S., Wolf, U. and Atkin, N.B. (1968) Evolution from fish to mammals by gene duplication. Hereditas, 59: 169–187. Ohno, S., Muramoto, J., Stenius, C., Christian, L., Kittrell, W.A. and Atkin, N.B. (1969) Microchromosomes in holocephalian, chondrostean and holostean fi fishes. Chromosoma, 26: 35–40. Ohno, S., Muramoto, J., Klein, J. and Atkin, N.B. (1969) Diploid-tetraploid relationship in clupeoid and salmonoid fish. In: Darlington, C.D. and Lewis, K.R. eds. Chromosomes today. Vol. 2. Oliver & Boyd, Edinburgh, pp. 139–147. Ohno, S. (1970) The enormous diversity in genome sizes of fi fish as a refl flexion of nature’s extensive experiments with gene duplication. Trans. Amer. Fish. Soc., 99: 120–130. Ohno, S., Christian, L., Romero, M., Dofuku, R. and Ivey, C. (1973) On the question of American eels, Anguilla rostrata versus European eels, Anguilla anguilla. Experientia, 29: 891. Ohno, S. (1974) Animal cytogenetics. Vol. 4: Chordata 1. Protochordata, Cyclostomata and Pisces. Gebrueder Borntraeger, Berlin. Ojima, Y., Hitotsumachi, S. and Makino, S. (1966) Cytogenetic studies in lower vertebrates. I. A preliminary report on the chromosomes of the funa (Carassius auratus) and gold-fi fish (a revised study). Proc. Japan Acad., 42: 62–66. Ojima, Y. and Hitotsumachi, S. (1967) Cytogenetic studies in lower vertebrates. IV. A note on the chromosomes of the carp (Cyprinus carpio) in comparison with those of the funa and the goldfish fi (Carassius auratus). Japan. J. Genet., 42: 163–167. Ojima, Y. and Hitotsumachi, S. (1969) Cytogenetical studies in loaches (Pisces, Cobitidae). Zool. Mag. Japan, 78: 139–141. (In Japanese with English abstract)
274
References
O– 15 Ojima, Y. and Hitotsumachi, S. (1969) The karyotype of the medaka, Oryzias latipes. Chrom. Inform. Serv., 10: 15–16. O– 16 Ojima, Y., Hayashi, M. and Ueno, K. (1970) Cytogenetic studies in lower vertebrates, IX. A study of the chromosomes of five species of cyprinid fishes of Japan. Chrom. Inform. Serv., 11: 27–29. O– 17 Ojima, Y., Hitotsumachi, S. and Hayashi, M. (1970) A blood culture method for fish fi chromosomes. Japan. J. Genet., 45: 161–162. O– 18 Ojima, Y., Hayashi, M. and Ueno, K. (1972) Cytogenetic studies in lower vertebrates. X. Karyotype and DNA studies in 15 species of Japanese Cyprinidae. Japan. J. Genet., 47: 431–440. O– 19 Ojima, Y., Takayama, S. and Yamamoto, K. (1972) Chromosome preparation from cultured scale epithelium of teleost fi fish. Japan. J. Genet., 47: 445–446. O– 20 Ojima, Y., Ueno, K. and Hayashi, M. (1973) Karyotypes of the acheilognathine fi fishes (Cyprinidae) of Japan with a discussion of phylogenetic problems. Zool. Mag. Japan, 82: 171–177. (In Japanese with English abstract) O– 21 Ojima, Y., Hayashi, M. and Ueno, K. (1975) Triploidy appeared in the back-cross offspring from funa-carp crossing. Proc. Japan Acad., 51: 702–706. O– 22 Ojima, Y., Ueno, K. and Hayashi, M. (1976) A review of the chromosome numbers in fishes. La Kromosomo, II, 1: 19–47. fi O– 23 Ojima, Y. and Asano, N. (1977) A cytological evidence for gynogenetic development of fi ). Proc. Japan Acad., Ser. B, 53: 138–142. the ginbuna (Carassius auratus langsdorfii O– 24 Ojima, Y. and Ueda, T. (1978) New C-banded marker chromosomes found in carp-funa hybrids. Proc. Japan Acad., Ser. B, 54: 15–20. O– 25 Ojima, Y. and Makino, S. (1978) Triploidy induced by cold shock in fertilized eggs of the carp. Proc. Japan Acad., Ser. B, 54: 359–362. O– 26 Ojima, Y., Ueda, T. and Narikawa, T. (1979) A cytogenetic assessment on the origin of the gold-fish. fi Proc. Japan Acad., Ser. B, 55: 58–63. O– 27 Ojima, Y. and Kashiwagi, E. (1979) A karyotype study of eleven species of labrid fi fishes from Japan. Proc. Japan Acad., Ser. B, 55: 280–285. O– 28 Ojima, Y. and Takai, A. (1979) The occurrence of spontaneous polyploid in the Japanese common loach, Misgurnus anguillicaudatus. Proc. Japan Acad., Ser. B, 55: 487–491. O– 29 Ojima, Y. and Takai, A. (1979) Further cytogenetical studies on the origin of the goldfish. Proc. Japan Acad., Ser. B, 55: 346–350. fi O– 30 Ojima, Y. and Yamano, T. (1980) The assignment of the nucleolar organizer in the chromosomes of the funa (Carassius, Cyprinidae, Pisces). Proc. Japan Acad., Ser. B, 56: 551–556. O– 31 Ojima, Y. and Kashiwagi, E. (1980) Further studies of the chromosomes of the Labridae (Pisces). A preliminary note. Proc. Japan Acad., Ser. B, 56: 328–331. O– 32 Ojima, Y. and Yamamoto, T. (1980) A chromosome study of the holostean long nose gar, Lepisosteus osseus. Chrom. Inform. Serv., 28: 7–8. O– 33 Ojima, Y., Maeki, K., Takayama, S. and Nogusa, S. (1963) A cytotaxonomic study on the Salmonidae. Nucleus, 6: 91–98. O– 34 Ojima, Y. and Kurishita, A. (1980) A new method to increase the number of mitotic cells in the kidney tissue for fish fi chromosome studies. Proc. Japan Acad., Ser. B, 56: 610–615. O– 35 Ojima, Y. and Takai, A. (1981) A karyotype study of colored-carp (Cyprinus carpio). A preliminary report. Proc. Japan Acad., Ser. B, 57: 7–12. O– 36 Ojima, Y. and Kashiwagi, E. (1981) Chromosomal evolution associated with Robertsonian fusion in the genus Dascyllus (Chrominae, Pisces). Proc. Japan Acad., Ser. B, 57: 368–370. O– 37 Ojima, Y. (1982) Evolution of the sex chromosomes in Pisces. A review. La Kromosomo, II, 27/28: 849–859. (In Japanese)
References
275
O– 38 Ojima, Y. (1982) Methods in fish cytogenetics. Nucleus, 25: 1–7. O– 39 Ojima, Y. and Ueda, H. (1982) A karyotypical study of the conger eel (Conger myriaster) in in vitro cells, with special regard to the identification fi of the sex chromosome. Proc. Japan Acad., Ser. B, 58: 56–59. O– 40 Ojima, Y., Ueda, H. and Takai, A. (1984) Sex chromosome differentiation in Parapercis sexfasciata (Perciformes, Pisces). Proc. Japan Acad., Ser. B, 60: 137–140. O– 41 Ojima, Y. and Kojima, T. (1985) Chromosomal polymorphisms in Apogonidae fi fishes. Proc. Japan Acad., Ser. B, 61: 79–82. O– 42 Ojima, Y., Takarada, Y. and Takai, A. (1986) Microcell-mediated transfer of fish fi chromosomes into mouse cells. Proc. Japan Acad., Ser. B, 62: 91–94. O– 43 Ojima, Y. and Kikuno, T. (1986) A heteromorphic chromosome of Beryx splendens, Berycidae (Pisces). Proc. Japan Acad., Ser. B, 62: 317–320. O– 44 Ojima, Y., Nakanishi, Y. and Takai, A. (1986) Chromosomal studies of cultured cells from the hybrids between Huso huso and Acipenser ruthenus. Proc. Japan Acad., Ser. B, 62: 87–90. O– 45 Ojima, Y. (1987) The origin of natural monument, scarlet crucian carp (hibuna) in the Harutori Lake, Kushiro, Hokkaido, Japan. Proc. Japan Acad., Ser. B, 63: 365–368. O– 46 Ojima, Y. and Kikuno, T. (1987) Karyotypes of a gobiesociform and two perciform fishes fi (Teleostei). Proc. Japan Acad., Ser. B, 63: 201–204. O– 47 Ojima, Y., Takai, A. and Yamamoto, K. (1988) Production and chromosomal features of triploid hybrids between Rhodeus ocellatus ocellatus and Acheilognathus limbatus (Cyprinidae, Pisces). Proc. Japan Acad., Ser. B, 64: 225–228. O– 48 Ojima, Y. and Yamamoto, K. (1990) Cellular DNA contents of fi fishes determined by flow cytometry. La Kromosomo, II, 57: 1871–1888. O– 49 Ojima, Y. (1983) Fish cytogenetics. In: Sharma, A.K. and Sharma, A. eds. Chromosomes in evolution of eukaryotic groups. Vol. I. CRC press, Florida, pp. 111–145. O– 50 Oliveira, C., Almeida-Toledo, L.F., Foresti, F., Britsky, H.A. and Toledo-Filho, S.A. (1988) Chromosome formulae of neotropical freshwater fi fishes. Brazil. J. Genet., 11: 577–624. O– 51 Oliveira, C., Almeida-Toledo, L.F., Foresti, F. and Toledo-Filho, S.A. (1988) Supernumerary chromosomes, Robertsonian rearrangement and multiple NORs in Corydoras aeneus (Pisces, Siluriformes, Callichthyidae). Caryologia, 41: 227–236. O– 52 Oliveira, C., Almeida-Toledo, L.F. and Toledo-Filho, S.A. (1990) Comparative cytogenetic analysis of three cytotypes of Corydoras nattereri (Pisces, Siluriformes, Callichthyidae). Cytologia, 55: 21–26. O– 53 Oliveira, C., Andreata, A.A., Almeida-Toledo, L.F. and Toledo-Filho, S.A. (1991) Karyotype and nucleolus organizer regions of Pyrrhulina cf. australis (Pisces, Characiformes, Lebiasinidae). Brazil. J. Genet., 14: 685–690. O– 54 Oliveira, C., Almeida-Toledo, L.F., Mori, L. and Toledo-Filho, S.A. (1992) Extensive chromosomal rearrangements and nuclear DNA content changes in the evolution of the armoured catfi fishes genus Corydoras (Pisces, Siluriformes, Callichthyidae). J. Fish Biol., 40: 419–431. O– 55 Oliveira, C., Almeida-Toledo, L.F., Mori, L. and Toledo-Filho, S.A. (1993) Cytogenetic and DNA content studies of armoured catfi fishes of the genus Corydoras (Pisces, Siluriformes, Callichthyidae) from the southeast coast of Brazil. Brazil. J. Genet., 16: 617–629. O– 56 Oliveira, C., Almeida-Toledo, L.F., Mori, L. and Toledo-Filho, S.A. (1993) Cytogenetic and DNA content in six genera of the family Callichthyidae (Pisces, Siluriformes). Caryologia, 46: 171–188. O– 57 Oliveira, C., Torres, R.A., Favorito, S. and Foresti, F. (1997) Cytogenetic studies of Mastacembelus armatus (Pisces, Mastacembelidae). Cytobios, 92: 83–89. O– 58 Oliveira, C., Saboya, S.M.R., Foresti, F., Senhorini, J.A. and Bernardino, G. (1997) Increased B chromosome frequency and absence of drive in the Prochilodus lineatus. Heredity, 79: 473–476.
276
References
O– 59
Oliveira, C. and Wright, J.M. (1998) Molecular cytogenetic analysis of heterochromatin in the chromosomes of tilapia, Oreochromis niloticus (Teleostei: Cichlidae). Chrom. Res., 6: 205–211. Oliveira, C. and Gosztonyi, A.E. (2000) A cytogenetic study of Diplomystes mesembrinus (Teleostei, Siluriformes, Diplomystidae) with a discussion of chromosome evolution in siluriforms. Caryologia, 53: 31–37. Olmo, E., Stingo, V., Odierna, G. and Capriglione, T. (1980) Cryptic polyploidy in sharks and rays as revealed by DNA renaturation kinetics. Acad. Nat. Lincei, ser. 8, 68: 555–560. Olmo, E., Stingo, V., Odierna, G. and Capriglione, T. (1982) Sequence organization in the DNA of three selachians. Experientia, 38: 339–340. Osinov, A.G., Vasilieva, E.D. and Vasiliev, V.P. (1983) Hybrid origin of unisexual triploid form of the genus Cobitis (Cobitidae, Pisces). Dokl. Akad. Sci. USSR, 272: 716–718. (In Russian) Ostberg, C.O. and Thorgaard, G.H. (1999) Geographic distribution of chromosome and microsatellite DNA polymorphisms in Oncorhynchus mykiss native to western Washington. Copeia, 1999: 287–298. Ota, K., Kobayashi, T., Ueno, K. and Gojobori, T. (2000) Evolution of heteromorphic sex chromosomes in the order Aulopiformes. Gene, 259: 25–30. Oyhenart-Perera, M.F., Luengo, J.A. and Brum-Zorrilla, N. (1975) Estudio, citogenetico de Cichlasoma facetum (Jenyns) y Crenicichla sexatilis (Linn.) (Teleostei, Cichlidae). Rev. Biol. Uruguay, 3: 29–36. Ozouf-Costaz, C. and Bazignan, M.D. (1987) Chromosome relationships among 15 species of Nototheniidae. Proc. 5th Congr. Europ. Ichthyologists, pp. 413–419. Ozouf-Costaz, C. (1987) Karyotypes of Chaenodraco wilsoni and Chionodraco myersi (Channichthyidae) from Prydz Bay, Antarctica. Copeia, 1987: 503–505. Ozouf-Costaz, C., Teugels, G.G. and Legendre, M. (1990) Karyological analysis of three strains of the African catfi fish, Clarias gariepinus (Clariidae), used in aquaculture. Aquaculture, 87: 271–277. Ozouf-Costaz, C., Hureau, J.C. and Beaunier, M. (1991) Chromosome studies on fish fi of the suborder Notothenioidei collected in the Weddell Sea during Epos 3 Cruise. Cybium, 15: 271–289. Ozouf-Costaz, C., Pisano, E., Thaeron, C. and Hureau, J.-C. (1997) Antarctic fish fi chromosome banding: significance fi for evolutionary studies. Cybium, 21: 399–409. Oliveira, C., Alves, A.L. and Foresti, F. (2006) The karyotype of Scoloplax distolothrix (Teleostei: Siluriformes: Scoloplacidae). Cytologia, 71: 257–259. Ojima, Y. (1983) Fish Cytogenetics. Suikosha, Tokyo. (In Japanese) Olmo, E., Stingo, V., Cobror, O., Capriglione, T. and Odierna, G. (1982) Repetitive DNA and polyploidy in selachians. Comp. Biochem. Physiol., 73B: 739–745. Osinov, A.G., Vasilieva, Y.D. and Vasiliev, V.P. (1990) The problem of reticulate speciation in vertebrates: diploid-triploid-tetraploid complexes in the genus Cobitis (Cobitidae). II. Characteristics of the triploid form. J. Ichthyol., 30(4): 59–67. Oliveira, C. and Almeida Toledo, L.F. (2006) Evidence of an XX/XY sex chromosome system in the fish fi Dormitator maculatus (Teleostei, Eleotrididae). Genet. Mol. Biol., 29: 653–655. Ocalewicz, K., Hliwa, P., Krol, J., Rábová, M., Stabinski, R. and Ráb, P. (2007) Karyotype and chromosomal characteristics of Ag-NOR sites and 5S rDNA in European smelt, Osmerus eperlanus. Genetica, 131: 29–35. Oliveira, C., Nirchio, M., Granado, Á. and Levy, S. (2003) Karyotypic characterization of Prochilodus mariae, Semaprochilodus kneri and S. laticeps (Teleostei: Prochilodontidae) from Caicara del Orinoco, Venezuela. Neotrop. Ichthyol., 1: 47–52.
O– 60
O– 61
O– 62 O– 63
O– 64
O– 65 O– 66
O– 67 O– 68 O– 69
O– 70
O– 71 O– 72 O– 73 O– 74 O– 75
O– 76
O– 77
O– 78
References
O– 79
O– 80
O– 81
*O– 82
*O– 83
O– 84
O– 85
O– 86
[P] P–
P–
P–
P–
P– P– P– P– P–
277
Oliveira, R.R., Souza, I.L. and Venere, P.C. (2006) Karyotype description of three species of Loricariidae (Siluriformes) and occurrence of the ZZ/ZW sexual system in Hemiancistrus spilomma Cardoso & Lucinda, 2003. Neotrop. Ichthyol., 4: 93–97. Oliveira, R.R., Feldberg, E., Anjos, M.B. and Zuanon, J. (2007) Karyotype characterization and ZZ/ZW sex chromosome heteromorphism in two species of the catfish fi genus Ancistrus Kner, 1854 (Siluriformes: Loricariidae) from the Amazon basin. Neotrop. Ichthyol., 5: 301–306. Oliveira, C., Foresti, F. and Pedroso, G. (1992) Análise da distribuiçao da heterocromatina constitutiva em Salminus maxillosus (Dourado) e S. hilarii (Tabarana). IV. Simp. Citogenet. Evol. e Aplic. de Peixes Neotropicais, Rio de Janeiro, RJ, p. 27 (abstract). (In Portuguese) Oliveira, M.I.B., Sanguino, E.C.B. and Falcao, J.N. (1992) Estudos citogenéticos em Pyrrhulina sp. (Teleostei, Characiformes, Lebiasinidae). IV. Simp. Citogenet. Evol. E Aplic. De Peixes Neotropicais, Rio de Janeiro, RJ, p. 13 (abstract). (After K-114) Ozouf-Costaz, C., Parrent, M., Teugels, G.G. and Van der Berg, E. (1994) Further karyological data on African clariid catfi fishes (Ostariophysi, Siluroidei). Abstr. VIII Congr. Soc. Europ. Ichthyol., Oviedo, p. 56. (After K-114) Oliveira, R.R., Feldberg, E., Dos Anjos, M.B. and Zuanon, J. (2008) Occurrence of multiple sexual chromosomes (XX/XY1Y2 and Z1Z1Z2Z2/Z1Z2W1W2) in catfi fishes of the genus Ancistrus (Siluriformes: Loricariidae) from the Amazon basin. Genetica, 134: 243–249. Oliveira, R.R., Feldberg, E., Dos Anjos, M.B. and Zuanon, J. (2009) Mechanisms of chromosomal evolution and its possible relation to natural history characteristics in Ancistrus catfi fishes (Siluriformes: Loricariidae). J. Fish Biol., 75: 2209–2225. Oliveira, C., Almeida-Toledo, L.F. and Foresti, F. (2007) Karyotypic evolution in neotropical fishes. In: Pisano, E., Ozouf-Costaz, C., Foresti, F. and Kapoor, B.G. eds. Fish cytogenetics. Science Publishers, Enfield, fi pp. 111–164.
1 Pacheco, R.B., Giuliano-Caetano, L. and Dias, A.L. (2001) Cytotypes and multiple NORs in an Astyanax altiparanae population (Pisces, Tetragonopterinae). Chrom. Sci., 5: 109–114. 2 Paintner-Marques, T.R., Giuliano-Caetano, L. and Dias, A.L. (2002) Karyotypic diversity in a Bryconamericus aff. exodon population (Characidae, Tetragonopterinae). Cytologia, 67: 397–402. 3 Palazón, J.L., Nirchio, M. and Sarasquete, C. (2003) Conventional karyotype and nucleolar organiser regions of the toadfish fi Halobatrachus didactylus (Schneider, 1801) (Pisces: Batrachoididae). Sci. Mar., 67: 445–449. 4 Pan, W.M. (1996) The karyotype and the rate of chromosome spontaneous generation aberration of Sebasticus marmoratus Cuvier and Valenciennes. J. Fish. China, 20: 175– 177. (In Chinese) 5 Petrov, D.A. (2001) Evolution of genome size: new approaches to an old problem. Trends Genet., 17(1): 23–28. 6 Park, E.H. (1974) A list of the chromosome numbers of fi fishes. College Rev. College Liberal Arts Sci., Seoul Natn. Univ., 20: 346–372. 7 Park, E.H. and Kang, Y.S. (1976) Karyotype conservation and difference in DNA amount in anguilloid fishes. fi Science, 193: 64–66. 8 Park, E.H. and Park, S.D. (1979) A culture technique using marine fish kidney to obtain chromosomes. J. Fish. Res. Board Can., 36: 458–461. 9 Park, E.H. and Kang, Y.S. (1979) Karyological confirmation fi of conspicuous ZW sex chromosomes in two species of Pacifi fic anguilloid fishes (Anguilliformes: Teleostomi). Cytogenet. Cell Genet., 23: 33–38.
278
References
P– 10
Park, E.H. and Grimm, H. (1981) Distribution of C-band heterochromatin in the ZW sex chromosomes of European and American eels (Anguillidae, Teleostomi). Cytogenet. Cell Genet., 31: 167–174. Park, E.H. and Kang, Y.S. (1981) Karyotype and genome size of two variants of mandarine fish, Siniperca scherzeri (Teleostei; Serranidae). Korean J. Genet., 3: 63–68. Park, I.S., Kim, C.H. and Kim, D.S. (1999) Karyotypes and cellular DNA contents of two species in the genus, Lateolabrax from Korea. Fish. Sci., 65: 488–489. Passakas, T. (1976) Further investigations on the chromosomes of Anguilla anguilla. Folia Biol. (Krakow), 24: 239–244. Passakas, T. (1981) Comparative studies on the chromosomes of the European eel (Anguilla anguilla L.) and the American eel (Anguilla rostrata Le Sueur). Folia Biol. (Krakow), 29: 41–57. Pastori, M.C., Cano, J., Bertollo, C. and Fenocchio, A.S. (1998) Cytogenetic study of two species of needlefi fish (Belonidae) from Argentina. Ital. J. Zool., 65 suppl.: 57–60. Patro, R. and Prasad, R. (1979) Chromosomes of six marine percoids from the Indian Sea. Ind. Biologist, 11: 9–12. Patro, R. and Prasad, R. (1981) Chromosomal studies in five fi Indian flatfi fishes. Copeia, 1981: 498–503. Paugy, D., Guégan, J.F. and Agnèse, J.F. (1990) Three simultaneous and independent approaches to the characterization of a new species of Labeo (Teleostei, Cyprinidae) from West Africa. Can. J. Zool., 68: 1124–1131. Pauls, E. and Bertollo, L.A.C. (1983) Evidence for a system of supernumerary chromosomes in Prochilodus scrofa Steindachner, 1881 (Pisces, Prochilodontidae). Caryologia, 36: 307–314. Pauls, E. and Bertollo, L.A.C. (1990) Distribution of a supernumerary chromosome system and aspects of karyotypic evolution in the genus Prochilodus (Pisces, Prochilodontidae). Genetica, 81: 117–123. Pazza, R. and Júlio Jr., H.F. (2003) Occurrence of three sympatric cytotypes of Hoplias malabaricus (Pisces, Erythrinidae) in the Upper Paraná River foodplain (Brazil). Cytologia, 68: 159–163. Pen nˇ az, M., Ráb, P. and Prokessˇ, M. (1979) Cytological analysis, gynogenesis and early development of Carassius auratus gibelio. Acta Sci. Nat. Brno, 13(7): 1–33. Perry, J., Slater, H.R. and Choo, K.H.A. (2004) Centric fi fission—simple and complex mechanisms. Chrom. Res., 12: 627–640. Pezold, F. (1984) Evidence for multiple sex chromosomes in the freshwater goby, Gobionellus shufeldti (Pisces: Gobiidae). Copeia, 1984: 235–238. Pfi fister, S.C., Moreira Filho, O. and Bertollo, L.A.C. (1997) Cytogenetic studies in Orthospinus francisensis (Pisces, Characidae, Stethaprioninae) and some considerations about karyotype evolution of the group. Cytobios, 91: 97–101. Phan, V.N., Gomes, V. and Suzuki, H. (1986) Estudos citogenéticos de peixes Antárticos. I. Cariótipos de Notothenia gibberifrons (Lönnberg, 1905), Trematomus bernacchii (Boulenger, 1902) e T. hansoni (Boulenger, 1902) (Perciformes, Nototheniidae). An. Acad. Brasil. Cienc., 58 (suppl.): 23–27. (In Portuguese with English summary) Phan, V.N., Gomes, V., Suzuki, H. and Rocha Passos, M.J.A.C. (1987) Karyotypes of two Antarctic fishes, Notothenia gibberifrons and Notothenia coriiceps neglecta. Japan. J. Ichthyol., 33: 384–387. Phillips, R.B., Zajicek, K.D. and Utter, F.M. (1985) Q band chromosomal polymorphisms in chinook salmon (Oncorhynchus tshawytscha). Copeia, 1985: 273–278. Phillips, R.B. and Kapuscinksi, A.R.D. (1987) A Robertsonian polymorphism in pink salmon (Oncorhynchus gorbuscha) involving the nucleolar organizer region. Cytogenet. Cell Genet., 44: 148–152.
P– 11 P– 12 P– 13 P– 14
P– 15 P– 16 P– 17 P– 18
P– 19
P– 20
P– 21
P– 22 P– 23 P– 24 P– 25
P– 26
P– 27
P– 28 P– 29
References
P– 30
P– 31 P– 32 P– 33
P– 34 P– 35 P– 36
P– 37 P– 38
P– 39
P– 40
P– 41 P– 42
P– 43
P– 44 P– 45
P– 46
P– 47
P– 48
279
Phillips, R.B., Pleyte, K.A. and Hartley, S.E. (1988) Stock-specific fi differences in the number and chromosome positions of the nucleolar organizer regions in arctic char (Salvelinus alpinus). Cytogenet. Cell Genet., 48: 9–12. Phillips, R.B., Pleyte, K.A. and Ihssen, P.E. (1989) Patterns of chromosomal nucleolar organizer region (NOR) variation in fishes of the genus Salvelinus. Copeia, 1989: 47–53. Phillips, R.B., Zajicek, K.D. and Ihssen, P.E. (1989) Population differences in chromosome-banding polymorphisms in lake trout. Trans. Amer. Fish. Soc., 118: 64–73. Phillips, R.B., Reed, K.M. and Ráb, P. (1996) Revised karyotypes and chromosome banding of coregonid fishes fi from the Laurentian Great Lakes. Can. J. Zool., 74: 323–329. Phillips, R.B. and Ráb, P. (2001) Chromosome evolution in the Salmonidae (Pisces): an update. Biol. Rev., 76: 1–25. Pijnacker, L.P. and Ferwerda, M.A. (1995) Zebrafish fi chromosome banding. Genome, 38: 1052–1055. Pisano, E., Ghigliotti, L., Mazzei, F. and Ozouf-Costaz, C. (2003) Cytogenetic features of Notothenia angustata Hutton, 1875, an Antarctic fish living in non-Antarctic waters. In: Huiskes, A.H.L., Gieskes, W.W.C., Rozema, J., Schorno, R.M.L., van der Vies, S.M. and Wolff, W.J. eds. Antarctic biology in a global context. Backhuys Publisher, Leiden, pp. 117–120. Popov, P. and Zekov, A. (1985) A study on the karyotype of Tinca tinca. Anim. Sci., 22: 43–49. (In Russian with English summary) Portela, A.L.B.S., Galetti Jr., P.M. and Bertollo, L.A.C. (1988) Considerations on the chromosome evolution of Tetragonopterinae (Pisces, Characidae). Brazil. J. Genet., 11: 307–316. Portela-Castro, A.L.B. and Júlio Jr., H.F. (2002) Karyotype relationships among species of subfamily Tetragonopterinae (Pisces, Characidae): cytotaxonomy and evolution aspects. Cytologia, 67: 329–336. Porto, J.I.R., Feldberg, E., Falcão, J.N. and Nakayama, C.M. (1993) Cytogenetic studies in Hemiodontidae (Ostariophysi, Characiformes) fishes fi from the Central Amazon. Cytologia, 58: 397–402. Porto-Foresti, F., Oliveira, C. and Foresti, F. (2000) Chromosomes and nuclear DNA content of Diplectrum radiale (Perciformes, Serranidae). Chrom. Sci., 4: 95–97. Porto-Foresti, F., Andreata, A.A., Oliveira, C. and Foresti, F. (2000) The karyotype of Pseudoplatystoma fasciatum (Teleostei, Siluriformes) from the Rio Paraguay basin. Chrom. Sci., 4: 99–102. Porto-Foresti, F., Oliveira, C. and Foresti, F. (2005) First chromosome characterization in the neotropical eel, Gymnothorax ocellatus (Pisces, Muraenidae). Cytologia, 70: 283–286. Post, A. (1965) Vergleichende Untersuchungen der Chromosomenzahlen bei Susswasser-Teleosteern. Z. Zool. Syst. Evol.-Forsch., 3: 47–93. Post, A. (1972) Ergebnisse der Forschungsreisen des FFS “Walther Herwig” nach Südamerika. XXIV. Die Chromosomenzahlen einiger atlantischer Myctophidenarten (Osteichthyes, Myctophoidei, Myctophidae). Arch. FischWiss., 23: 89–93. Post, A. (1974) Ergebnisse der Forschungsreisen des FFS “Walther Herwig” nach Südamerika. XXXIV. Die Chromosomen von drei Arten aus der Familie Gonostomatidae (Osteichthyes, Stomiatoidei). Arch. FischWiss., 25: 51–55. Powers, P.K. and Gold, J.R. (1992) Cytogenetic studies in North American minnows (Cyprinidae). XX. Chromosomal NOR variation in the genus Luxilus. Copeia, 1992: 332–343. Prasad, R. and Manna, G.K. (1974) Somatic and germinal chromosomes of a live-fish, fi Heteropneustes fossilis (Bloch). Caryologia, 27: 217–223.
280
References
P– 49 Prasad, R. and Manna, G.K. (1976) Chromosomes of the fi fishes, Tilapia mossambica and Notopterus notopterus. Chrom. Inform. Serv., 21: 11–13. P– 50 Prirodina, V.P. (1978) Karyotype of the New Zealand spiny dogfish fi of the genus Squalus L. (fam. Squalidae). In: Skarlato, O.A., Andoiyashev, A.P., Barsukov, V.V., Dorofeeva, E.A., Korovina, V.M. and Neelov, A.V. eds. Morphology and systematics of fish. fi Akademiya Nauk SSSR, Leningrad, pp. 53–56. (In Russian) P– 51 Prirodina, V.P. (1984) Karyotypes of three species of the nototheniid fishes. fi Biol. Morya, Vladivostok, 1984(3): 74–76. (In Russian) P– 52 Prirodina, V.P. and Neyelov, A.V. (1984) Karyotypes in two species of the genus Notothenia s. str. (fam. Nototheniidae) from the West Antarctica. Trudy Zool. Inst., 127: 32–37. (In Russian) P– 53 Phillips, R.B. (2007) Application of fl fluorescence in situ hybridization (FISH) to genome mapping in fishes. fi In: Pisano, E., Ozouf-Costaz, C., Foresti, F. and Kapoor, B.G. eds. Fish cytogenetics. Science Publishers, Enfield, fi pp. 455–471. P– 54 Phillips, R.B. and Ihssen, P.E. (1985) Chromosome banding in salmonid fi fish: nucleolar organizer regions in Salmo and Salvelinus. Can. J. Genet. Cytol., 27: 433–440. P– 55 Prirodina, V.P. (1986) Karyotype of Cottoperca gobio (Bovichthyidae, Notothenioidei) as compared to karyotypes of other Notothenioidei. Morphology and distribution of fishes of the Southern Ocean. Proc. Zool. Inst. Leningrad, 153: 67–71. (In Russian) P– 56 Prirodina, V.P. and Ozouf-Costaz, C. (1995) Description of karyotypes of species of Harpagifer (Harpagiferidae, Notothenioidei) from the South Orkney Islands and Macquarie Island. J. Ichthyol., 35(9): 341–344. P– 57 Prirodina, V.P. (1995) Chromosomal complement of Artedidraco mirus and Pogonophryne dolichobranchiata (Artedidraconidae, Notothenioidei) from the Scotia Sea. J. Ichthyol., 35(9): 395–399. P– 58 Pisano, E., Ozouf-Costaz, C., Hureau, J-C. and Williams, R. (1995) Chromosome differentiation in the subantarctic Bovichtidae species Cottoperca gobio (Günther, 1861) and Pseudaphritis urvillii (Valenciennes, 1832) (Pisces, Perciformes). Antarctic Sci., 7: 381–386. P– 59 Potter, I.C., Robinson, E.S. and Walton, S.M. (1968) The mitotic chromosomes of the lamprey Mordacia mordax (Agnatha: Petromyzonidae). Experientia, 24: 966– 967. P– 60 Potter, I.C. and Rothwell, B. (1970) The mitotic chromosomes of the lamprey, Petromyzon marinus L. Experientia, 26: 429–430. P– 61 Pie, M.R., Torres, R.A. and Brito, D.M.A. (2007) Evolution of genome size in fishes: fi a phylogenetic test of the Hinegardner and Rosen hypothesis. Genetica, 131: 51–58. P– 62 Phillips, R.B., DeKoning, J., Morasch, M.R., Park, L.K. and Devlin, R.H. (2007) Identificafi tion of the sex chromosome pair in chum salmon (Oncorhynchus keta) and pink salmon (Oncorhynchus gorbuscha). Cytogenet. Genome Res., 116: 298–304. P– 63 Pardo, B.G., Bouza, C., Castro, J., Martinez, P. and Sánchez, L. (2001) Localization of ribosomal genes in Pleuronectiformes using Ag-, CMA3-banding and in situ hybridization. Heredity, 86: 531–536. P– 64 Pleyte, K.A., Phillips, R.B. and Hartley, S.E. (1989) Q-band chromosomal polymorphisms in arctic char (Salvelinus alpinus). Genome, 32: 129–133. P– 65 Portela-Castro, A.L.B., Julio Jr., H.F., Santos, I.C.M. and Pavanelli, C.S. (2008) Occurrence of two cytotypes in Bryconamericus aff. iheringii (Characidae): karyotype analysis by C- and G-banding and replication bands. Genetica, 133: 113–118. P– 66 Pazza, R. and Kavalco, K.F. (2007) Chromosomal evolution in the neotropical characin Astyanax (Teleostei, Characidae). Nucleus, 50: 523–547. P– 67 Park, I.S., Kim, H.B. and Lee, Y.D. (1995) Karyotypic analysis of four labrid fishes fi from Korea. Korean J. Ichthyol., 7: 79–83.
References
281
P– 68 Park, I.S. and Lee, C.L. (1996) Cytogenetic analysis of bagrid catfish, fi Pseudobagrus fulvidraco (Teleostomi: Siluriformes). Korean J. Ichthyol., 8(2): 10–15. P– 69 Park, I.S., Choi, Y., Kim, Y.H., Nam, Y.K. and Kim, D.S. (2000) Flow cytometric and cytogenetic studies in Rhynchocypris oxycephalus and R. steindachneri. J. Aquaculture (Korea), 13: 193–196. (In Korean with English abstract) P– 70 Park, I.S. and Lee, J.S. (2005) Cytogenetical study of fi fishes from coastal area in Jo Island, Busan, Korea. I. Parapercis sexfasciata (Temminck et Schlegel), Sebastiscus marmoratus (Cuvier) and Pleuronectes yokohamae (Günther). Korean J. Ichthyol., 27: 41–45. P– 71 Park, M.K., Kim, I.S. and Park, J.Y. (2006) Morphological characters and geographical distributions of Korean ricefish fi (Pisces, Adrianichthyidae), Oryzias. Korean J. Ichthyol., 18: 163–169. P– 72 Pedersen, R.A. (1971) DNA content, ribosomal gene multiplicity, and cell size in fi fish. J. Exp. Zool., 177: 65–78. P– 73 Portela-Castro, A.L.B., Júlio Jr., H.F. and Nishiyama, P.B. (2001) New occurrence of fi (Pisces, Characidae) from the microchromosomes B in Moenkhausia sanctaefilomenae Paraná River of Brazil: analysis of the synaptonemal complex. Genetica, 110: 277–283. P– 74 Post, A. (1973) Chromosomes of two fish-species of the genus Diretmus (Osteichthyes, Beryciformes: Diretmidae). In: Schröder, J.H. ed. Genetics and mutagenesis of fi fish. Springer, Berlin, pp. 103–111. P– 75 Putnam, N.H. and 36 others (2008) The amphioxus genome and the evolution of the chordate karyotype. Nature, 453: 1064–1072. P– 76 Pereira, C., Neto, A. and Collares-Pereira, M.J. (2009) Cytogenetic survey of species of two distinct genera of Iberian nases (Cyprinidae, Leuciscinae) that hybridize extensively in nature. I. Evidence of a similar and conserved chromosome pattern with some few species-specific fi markers at macro-structural level. Genetica, 137: 285–291. P– 77 Peres, M., Adriano, W., Bertollo, L.A.C. and Moreira-Filho, O. (2007) Karyotypic characterization of two species of the genus Serrapinnus (Characiformes, Characidae), with the description of a structural polymorphism in S. heterodon. Caryologia, 60: 319–324. P– 78 Phillips, R.B., Morasch, M.R., Wheeler, P.A. and Thorgaard, G.H. (2005) Rainbow trout (Oncorhynchus mykiss) of Idaho and Alaskan origin (2n = 58) share a chromosome fusion relative to trout of California origin (2n = 60). Copeia, 2005: 661–664. P– 79 Pazza, R., Kavalco, K.F. and Bertollo, L.A.C. (2006) Chromosome polymorphism in Astyanax fasciatus (Teleostei, Characidae). 1. Karyotype analysis, Ag-NORs and mapping of the 18S and 5S ribosomal genes in sympatric karyotypes and their possible hybrid forms. Cytogenet. Genome Res., 112: 313–319. P– 80 Pazza, R., Kavalco, S.A.F., Penteado, P.R., Kavalco, K.F. and Almeida-Toledo, L.F. (2008) The species complex Astyanax fasciatus Cuvier (Teleostei, Characiformes)—A multidisciplinary approach. J. Fish Biol., 72: 2002–2010. P– 81 Pastori, M.C., Fenocchio, A.S. and Lopez, P.A. (1997) First description of microchromosome in the Anostomidae fish fi Schizodon nasutus from Argentina. Brazil. J. Genet., 20: 425–427. P– 82 Porto-Foresti, F., Oliveira, C., Maistro, E.L. and Foresti, F. (1997) Estimated frequency of B-chromosomes and population density of Astyanax scabripinnis paranae in a small stream. Brazil. J. Genet., 20: 377–380. P– 83 Pauls, E., Affonso, P.R.A.M., Netto, M.R.C.B. and Pacheco, M.L. (1996) Supernumerary chromosomes on marine fish Upeneus parvus (Poey 1853, Mullidae) from Atlantic Ocean. Arch. Zootec., 45: 295–299. *P– 84 Prado, C.H.B.A. and Galetti jr., P.M. (1986) Consideraçoes iniciais sobre a estrutura cromossomica no gênero Pigocentrus (Serrasalminae, Characiformes). I. Simp.
282
P– 85
*P– 86
*P– 87
P– 88
P– 89 P– 90
P– 91
P– 92 P– 93 P– 94
P– 95
P– 96 P– 97
References
Citogenet. Evol. e Aplic. de Peixes Neotropicais, Sao Carlos, SP, p. 56 (abstract). (After K-114) Porto, J.I.R. and Feldberg, E. (1992) Comparative cytogenetic study of the armored catfishes of the genus Hoplosternum (Siluriformes, Callichthyidae). Brazil. J. Genet., 15: fi 359–367. Pedraca, E.B., Valentim, F.C. and Feldberg, E. (1994) Caracterizaçao cromossômica no gênero Plagioscion (Perciformes, Sciaenidae) da Bacia Amazônica Central. V. Simp. Citogenet. Evol. e Aplic. de Peixes Neotropicais, Botucatu, SP, p. 48 (abstract). (After K-114) Peixoto, R.M. and Erdtmann, B. (1988) Estudio citigenéticos no gênero Gymnogeophagus (Pisces, Perciformes, Cichlidae). II. Simp. Citogenet. Evol. e Aplic. de Peixes Neotropicais, Sao Carlos, SP, p. 27 (abstract). (After K-114) Porto, J.I.R., Feldberg, E., Nakayama, C.M. and Falcao, J.N. (1992) A checklist of chromosome numbers and karyotypes of Amazonian freshwater fishes. Rev. Hydrobiol. Trop., 25: 287–299. Porto, J.I.R. and Feldberg, E. (1993) Is Callichthys Linné (Ostariophysi, Siluriformes, Callichthyidae) a monotypic genus? Acta Amazonica, 23: 311–314. Paintner-Marques, T.R., Giuliano-Caetano, L. and Dias, A.L. (2003) Cytogenetic characterization of a population of Bryconamericus aff. iheringii (Characidae, Tetragonopterinae). Genet. Mol. Biol., 26: 145–149. Peres, W.A.M., Buckup, P.A., Kantek, D.L.Z., Bertollo, L.A.C. and Moreira-Filho, O. (2009) Chromosomal evidence of downstream dispersal of Astyanax fasciatus (Characiformes, Characidae) associated with river shed interconnection. Genetica, 137: 305–311. Prasad, R. (1998) Clarias batrachus. In: Ponniah, A.G. and John, G. eds. Fish chromosome atlas. National Bureau of Fish Genetic Resources, Lucknow, India, pp. 214–215. Phillips, R.B. (1983) Chromosomal location of nucleolar organizer regions (NORs) in salmonids. Genetica, 104, no. 1, pt. 2, supplement: s56–s57. Pisano, E., Mazzei, F., Derome, N., Ozouf-Costaz, C., Hureau, J.-C. and di Prisco, G. (2001) Cytogenetics of the bathydraconid fish fi Gymnodraco acuticeps (Perciformes, Notothenioidei) from Terra Nova Bay, Ross Sea. Polar Biol., 24: 846–852. Poletto, A.B., Ferreira, I. and Martins, C. (2010) The B chromosomes of the African cichlid fish Haplochromis obliquidens harbour 18S rRNA gene copies. BMC Genetics, 2010, 11: 1. Ponniah, A.G. and John, G. (eds). (1998) Fish chromosome atlas. National Bureau of Fish Genetic Resources (NBFGR), special publication, no. 1. Lucknow, India, pp. 323 pp. Peichel, C.L., Ross, J.A., Matson, C.K., Dickson, M., Grimwood, J., Schmutz, J., Myers, R.M., Mori, S., Schluter, D. and Kingsley, D.M. (2004) The master sex-determination locus in threespine sticklebacks is on a nascent Y chromosome. Curr. Biol., 14: 1416–1424.
[R] R– 1 Ráb, P. (1981) Karyotype of European catfish fi Silurus glanis (Siluridae, Pisces), with remarks on cytogenetics of siluroid fishes. fi Folia Zool., 30: 271–286. R– 2 Ráb, P. (1981) Karyotype of European mudminnow, Umbra krameri. Copeia, 1981: 911–913. R– 3 Ráb, P. (1981) Evolutionary polyploidy of fishes. fi In: Pen nˇáz, M. and Prokessˇ, H. eds. Tropical problems of ichthyology. Proc. Symp. Trop. Prob. Ichthyol., Brno, pp. 107–111. R– 4 Ráb, P. (1981) Karyotypes of two African barbels Barbus bariloides and Barbus holotaenia. Folia Zool., 30: 181–190. R– 5 Ráb, P. (1982) Chromosome study of the Danube salmon Hucho hucho (Pisces, Salmonidae). Folia Zool., 31: 181–190.
References
R– R– R– R– R– R– R–
R–
R–
R–
R– R– R– R–
R– R–
R– R– R– R–
R– R–
283
6 Ráb, P., Liehman, P. and Prokes, M. (1983) Karyotype off Cichlasoma tetracanthum (Pisces, Cichlidae) from Cuba. Folia Zool., 32: 185–188. 7 Ráb, P. (1984) Chromosome study of four poeciliid fi fishes from Cuba. Folia Zool., 33: 229–234. 8 Ráb, P. (1985) Karyotype of the Danube goby, Proterorhinus marmoratus (Pisces, Gobiidae). Folia Zool., 34: 329–334. 9 Ráb, P. (1986) Karyotype of the European burbot, Lota lota (L.) (Gadidae). J. Ichthyol., 1986(2): 127–131. 10 Ráb, P. (1986) A note on the karyotype of the sterlet, Acipenser ruthenus (Pisces, Acipenseridae). Folia Zool., 35: 73–78. 11 Ráb, P., Roth, P. and Mayr, B. (1987) Karyotype study of eight species of European percid fishes (Pisces, Percidae). Caryologia, 40: 307–318. 12 Ráb, P. and Mayr, B. (1987) Chromosome banding studies in European esocoid fishes: fi localization of nucleolar organizer regions in Umbra krameri and Esox lucius. Copeia, 1987: 1062–1067. 13 Ráb, P. and Roth, P. (1989) Chromosome studies in European leuciscine fi fishes (Pisces, Cyprinidae). Aneuploidy due to a B-chromosome in Rutilus rutilus. Folia Zool., 38: 333–337. 14 Ráb, P., Pokorny, J. and Roth, P. (1989) Chromosome studies of the common carp, Cyprinus carpio. I. Karyotype of Amurian carp, C. carpio haematopterus. Caryologia, 42: 27–36. 15 Ráb, P. and Roth, P. (1989) Chromosome studies of European leuciscine fishes fi (Pisces: Cyprinidae). Karyotype of Rutilus pigus virgo and R. rutilus. Folia Zool., 38: 239–245. 16 Ráb, P., Roth, P. and Arefjev, V.A. (1990) Chromosome studies of European leuciscine fishes (Pisces, Cyprinidae). Karyotype of Aspius aspius. Caryologia, 43: 249–255. fi 17 Ráb, P. (1991) Fish cytogenetics and its application in fish reproductive biology. Bull. Inst. Zool. Academia Sinica, Monograph, 16: 357–373. 18 Ráb, P., Mayr, B. and Roth, P. (1991) Chromosome banding study of European catfish, fi Silurus glanis (Pisces, Siluridae). Genetica, 83: 153–157. 19 Ráb, P., Roth, P. and Vasiljeva, E.D. (1991) Chromosome banding study of the golden loach, Sabanejewia auratus balcanica from Slovakia (Cobitidae). Japan. J. Ichthyol., 38: 141–146. 20 Ráb, P. (1991) The karyotype of the cyprinid fi fish Pseudaspius leptocephalus. Japan. J. Ichthyol., 38: 329–331. 21 Ráb, P., Machordom, A., Perdices, A. and Guegan, J.-F. (1995) Karyotypes of three « small » Barbus species (Cyprinidae) from Republic of Guinea (Western Africa) with a review on karyology of African small Barbus. Caryologia, 48: 299–307. 22 Ráb, P. and Collares-Pereira, J. (1995) Chromosomes of European cyprinid fi fishes (Cyprinidae, Cypriniformes): a review. Folia Zool., 44: 193–214. 23 Ráb, P., Karakousis, Y., Rábová, M. and Economidis, P.S. (1996) Banded karyotype of the cyprinid fish fi Leuciscus borysthenicus. Ichthyol. Res., 43: 463–468. 24 Ráb, P., Karakousis, Y. and Rábová, M. (1996) Karyotype, NOR phenotype and C-banding study of Barbus cyclolepis from Greece. Folia Zool., 45 (suppl. 1): 77–83. 25 Ráb, P., Rábová, M., Economidis, P.S. and Triantaphyllidis, C. (2000) Banded karyotype of the Greek endemic cyprinid fish, fi Pachychilon macedonicum. Ichthyol. Res., 47: 107–110. 26 Ráb, P., Machordom, A., Rábová, M. and Doadrio, I. (2000) Karyotype of African bariliine fish Raiamas steindachneri (Osteichthyes, Cyprinidae). Folia Zool., 49: 75–80. 27 Rachlin, J.W., Beck, A.P. and O’Connor, J.M. (1978) Karyotypic analysis of the Hudson river striped bass, Morone saxatilis. Copeia, 1978: 343–345.
284
References
R– 28
Radda, A.C. and Scheel, J.J. (1974) Aphyosemion puerzli nov. spec. und Aphyosemion robertsoni nov. spec., zwei neue Rivulinen aus Kamerun. Aquarium J., 4(3): 33–41. Radda, A. (1975) Studien zur Cytogenetik, Taxonomie und Verbreitung der « GardneriGruppe » der Gattung Aphyosemion (Osteichthyes, Cyprinodontidae) aus dem südlichen Westkamerun. Nat. Hist. Mus. Stadt Bern, Jahrbuch, 5: 189–199. Radda, A.C. and Scheel, J.J. (1975) Neue Formen der Gattung Aphyosemion Myers aus dem südwestlichen Kamerun. Aquarium, 69: 97–103. Rafique, fi M., Ahmad, M. and Saeed-Ul-Haque (2000) Comparative karyomorphology of three fish species belonging to the genus Barilius (Cyprinidae) from Pakistan. Pakistan J. Zool., 32: 337–342. Raicu, P. and Taisescu, E. (1972) Misgurnus fossilis, a tetraploid fish species. J. Heredity, 63: 92–94. Raicu, P., Taisescu, E. and Cristian, A. (1972) Diploid chromosome complement of the carp. Cytologia, 37: 355–358. Raicu, P., Taisescu, E. and Bana a aˇrescu, P. (1973) A comparative study of the karyotype in the genus Gobio (Pisces, Cyprinidae). Cytologia, 38: 731–736. Raicu, P. and Taisescu, E. (1977) Cytogenetic study in Salmo irideus and S. trutta fario. Cytologia, 42: 311–314. Raicu, P., Taisescu, E. and Bana a aˇrescu, P. (1981) Carassius carassius and C. auratus, a pair of diploid and tetraploid representative species (Pisces, Cyprinidae). Cytologia, 46: 233–240. Ramirez, S.A. (1980) A modifi fied technique for fish karyotype analysis using scale epithelium. Copeia, 1980: 543–545. Ratty, F.J., Song, Y.C. and Laurs, R.M. (1986) Chromosomal analysis of albacore, Thunnus alalunga, and yellowfin, fi Thunnus albacares, and skipjack, Katsuwonus pelamis, tuna. Fish. Bull., 84: 469–476. Ravedutti, C.G. and Júlio Jr., H.F. (2001) Cytogenetic analysis of three species of the neotropical family Auchenipteridae (Pisces, Siluriformes) from the Paraná River basin, Brazil. Cytologia, 66: 65–70. Refstie, T., Vassvik, V. and Gjedrem, T. (1977) Induction of polyploidy in salmonids by cytochalasin B. Aquaculture, 10: 65–74. Regan, J.D., Sigel, M.M., Lee, W.H., Llamas, K.A. and Beasley, A.R. (1968) Chromosomal alterations in marine fish cells in vitro. Can. J. Genet. Cytol., 10: 448–453. Ren, X.H., Cui, J.X. and Yu, Q.X. (1991) The heterogeneities of heterochromatins and NORs in the genomes of Chinese cyprinid fishes. Cytologia, 56: 673–677. Ren, X.H. and Yu, X.J. (1993) Characterization of nucleolar organizer regions of twelve species of Chinese cyprinid fishes. Caryologia, 46: 201–207. Rio, G.J., Magnavita, F.J., Rubin, J.A. and Beckert, W.H. (1973) Characteristics of an established goldfish fi Carassius auratus (L.) cell line. J. Fish Biol., 5: 315–321. Rishi, K.K. (1973) A preliminary report on the karyotypes of eighteen marine fi fishes. Res. Bull. Panjab Univ., (N.S.), 24(3/4): 161–162. Rishi, K.K. (1973) Somatic karyotypes of three teleosts. Genen Phaenen, 16(3): 101–107. Rishi, K.K. (1975) Somatic and meiotic chromosomes of Trichogaster fasciatus (Bl. & Sch.) (Teleostei, Perciformes: Osphronemidae). Genen Phaenen, 18: 49–53. Rishi, K.K. and Gaur, P. (1976) Cytological female heterogamety in jet-black molly, Mollienesia sphenops. Curr. Sci., 45: 669–670. Rishi, K.K. (1976) Mitotic and meiotic chromosomes of a teleost, Callichrous bimaculatus (Bloch) with indications of male heterogamety. Cien. Cultura, 28: 1171–1173. Rishi, K.K. (1976) Karyotypic studies on four species of fishes. fi Nucleus, 19: 95–98.
R– 29
R– 30 R– 31
R– 32 R– 33 R– 34 R– 35 R– 36
R– 37 R– 38
R– 39
R– 40 R– 41 R– 42 R– 43 R– 44 R– 45 R– 46 R– 47 R– 48 R– 49
R– 50
References
R– 51 R– 52 R– 53 R– 54 R– 55 R– 56 R– 57 R– 58
R– 59 R– 60 R– 61 R– 62 R– 63 R– 64 R– 65 R– 66 R– 67 R– 68
R– 69
R– 70
R– 71 R– 72
R– 73
285
Rishi, K.K., Sharma, M.P. and Mankotia, R. (1977) Somatic chromosomes of three Indian teleosts. Matsya, 3: 6–9. Rishi, K.K. (1978) Chromosomal homogeneity in two Indian catfishes. fi Geobios, 5: 121–123. Rishi, K.K. (1978) Giemsa-banding in fi fish chromosomes. Curr. Sci., 47: 393–394. Rishi, K.K. (1979) Somatic G-banded chromosomes of Colisa fasciatus (Perciformes: Belontidae) and confirmation fi of female heterogamety. Copeia, 1979: 146–149. Rishi, K.K. (1981) Chromosomal studies on four cyprinid fishes. Intl. J. Acad. Ichthyol., 2: 1–4. Rishi, K.K., Haobam, M.S. and Singh, J. (1981) A new karyotype in a teleost fi fish. Curr. Sci., 50: 244–245. Rishi, K.K. and Singh, J. (1982) Karyological studies on five fi estuarine fishes. Nucleus, 25: 178–180. Rishi, K.K. and Singh, J. (1983) Karyological studies on two Indian estuarine catfishes, fi Plotosus caninus Ham. and Pseudeutropius atherinoides (Bloch). Caryologia, 36: 139–144. Rishi, K.K., Singh, J. and Haobam, M.S. (1983) Karyological study on a marine catfish, fi Arius dussumieri (Val.) (Ariidae: Siluriformes). Chrom. Inform. Serv., 34: 7–9. Rishi, K.K. and Singh, J. (1983) Chromosomes of Notopterus notopterus (Pallas) (Notopteridae: Clupeiformes). Chrom. Inform. Serv., 34: 9–10. Rishi, K.K. and Singh, J. (1983) Chromosomal analysis of the Indian silurid, Wallago attu (Schneider) (family: Siluridae). Chrom. Inform. Serv., 34: 10–11. Rishi, K.K., Singh, J. and Kaul, M.M. (1983) Chromosomal analysis of Schizothoraichthys progastus (McClell.) (Cyprinidae: Cypriniformes). Chrom. Inform. Serv., 34: 12–13. Rishi, K.K. and Haobam, M.S. (1984) Karyological analysis of two marine fishes. fi Perspect. Cytol. Genet., 4: 425–428. Rishi, K.K. and Haobam, M.S. (1984) Karyotypic study on two freshwater mud-eels. Perspect. Cytol. Genet., 4: 429–432. Rishi, K.K. and Haobam, M.S. (1984) Karyotypes of three forms of fi fishes having high chromosome number. Intl. J. Acad. Ichthyol., 5: 139–144. Rishi, K.K. and Haobam, M.S. (1984) Somatic chromosomes in a marine fish, fi Megalops cyprinoides (Broussonet) (Megalopidae: Elopiformes). Chrom. Inform. Serv., 36: 22–24. Rishi, K.K. and Mandhan, R.P. (1990) Analysis of C-banded heterochromatin in the chromosomes of Labeo rohita (Ham.) (Cyprinidae). Chrom. Inform. Serv., 48: 3–4. Rishi, K.K., Mandhan, R.P. and Lakra, W.S. (1991) Ag-NOR location in the karyotype of Anabas testudineus (Bloch) (Anabantidae, Perciformes, Pisces). Chrom. Inform. Serv., 52: 34–35. Rishi, K.K. and Manjusha (1991) Ag-NOR study in the chromosomes of Heteropneustes fossilis (Bloch) (Heteropneustidae, Siluriformes, Pisces). Chrom. Inform. Serv., 50: 17–18. Rishi, K.K., Rishi, S., Mandhan, R.P. and Thind, A.D.K. (1993) Ag-NOR localization and C-heterochromatin in Channa punctatus (Bloch) (Ophiocephalidae: Teleostei). Chrom. Inform. Serv., 55: 7–9. Rishi, K.K. and Shashikala (1994) High chromosome numbers in two Indian hill-stream cyprinids—Tor torr and Tor putitora. Chrom. Inform. Serv., 57: 25–26. Rishi, K.K. and Thind, A.D.K. (1994) C-heterochromatin and NOR-localization in the chromosomes of Notopterus notopterus (Notopteridae: Clupeiformes: Osteichthyes). Chrom. Inform. Serv., 57: 20–21. Rishi, K.K., Shashikala and Rishi, S. (1997) Karyotype analysis by restriction enzyme banding in two Indian fishes, fi Channa punctatus (Ophiocephalidae) and Labeo dero (Cyprinidae). Chrom. Sci., 1: 105–107.
286
References
R– 74
Rishi, K.K., Shashikala and Rishi, S. (1998) Karyotype study on six Indian hill-stream fishes. Chrom. Sci., 2: 9–13. fi Rishi, K.K. and Rishi, S. (1981) Giemsa banding in fish fi chromosomes. Perspect. Cytol. Genet., 3: 103–106. Rishi, S., Gill, P.P.K. and Rishi, K.K. (1994) C-banding and Ag-NOR staining in the spiny eel, Macrognathus aculeatus (Bloch) (Mastacembelidae, Mastacembeliformes). Chrom. Inform. Serv., 57: 22–23. Rishi, S., Gill, P.K. and Rishi, K.K. (1997) Karyotypic studies in eight species of fi fishes belonging to family Belontiidae (Pisces, Perciformes). Chrom. Sci., 1: 55–59. Rishi, S., Gill, P.K. and Rishi, K.K. (2001) Heterochromatin localization in the chromosomes of five belontid fishes (Belontiidae, Perciformes). Chrom. Sci., 5: 35–38. Rivlin, K.A., Dale, G. and Rachlin, J.W. (1986) Karyotypic analysis of three species of cardinal fish (Apogonidae) and its implications for the taxonomic status of the genera Apogon and Phaeoptyx. Ann. New York Acad. Sci., 463: 211–213. Roberts, F.L. (1964) A chromosome study of twenty species of Centrarchidae. J. Morphol., 115: 401–409. Roberts, F.L. (1965) A chromosome study of Gambusia affinis fi holbrookii. Copeia, 1965: 238–239. Roberts, F.L. (1966) Cell culture of fi fibroblasts from Clupea harengus gonads. Nature, 212: 1592–1593. Roberts, F.L. (1970) Atlantic salmon (Salmo salar) chromosomes and speciation. Trans. Amer. Fish. Soc., 99: 105–111. Robinson, E.S. and Potter, I.C. (1969) Meiotic chromosomes of Mordacia praecox and a discussion of chromosome numbers in lampreys. Copeia, 1969: 824–828. Robinson, E.S., Potter, I.C. and Webb, C.J. (1974) Homogeneity of Holarctic lamprey karyotypes. Caryologia, 27: 443–454. Robinson, E.S. and Potter, I.C. (1981) The chromosomes of the southern hemispheric lamprey, Geotria australis Gray. Experientia, 37: 239–240. Rocco, L., Morescalchi, M.A., Costagliola, D. and Stingo, V. (2002) Karyotype and genome characterization in four cartilaginous fishes. fi Gene, 295: 289–298. Rocco, L., Costagliola, D., Fiorillo, M., Tinti, F. and Stingo, V. (2005) Molecular and chromosomal analysis of ribosomal cistrons in two cartilaginous fish, fi Taeniura lymma and Raja montagui (Chondrichthyes, Batoidea). Genetica, 123: 245–253. Rodorigues-Daga, R., Amores, A. and Thode, G. (1993) Karyotype and nucleolus organizer regions in Epinephelus caninus (Pisces, Serranidae). Caryologia, 46: 71–76. Rong, S.B., Zhang, T.G., Zhang, W.H. and Chen, J.D. (1991) The karyotype of Gymnothorax reevesi. Tropic Oceanology, 10(2): 98–100. (In Chinese with English abstract) Ross, M.R. (1973) A chromosome study of five fi species of etheostomine fishes (Percidae). Copeia, 1973: 163–165. Rossi, A.R., Crosetti, D., Gornung, E. and Sola, L. (1996) Cytogenetic analysis of global populations off Mugil cephalus (striped mullet) by different staining techniques and fl fluorescent in situ hybridization. Heredity, 76: 77–82. Rossi, A.R., Gornung, E., Crosetti, D., De Innocentiis, S. and Sola, L. (2000) Cytogenetic analysis of Oedalechilus labeo (Pisces: Mugilidae), with a report of NOR variability. Mar. Biol., 136: 159–162. Rossi, A.R., Gornung, E., Sola, L. and Nirchio, M. (2005) Comparative molecular cytogenetic analysis of two congeneric species, Mugil curema and M. liza (Pisces, Mugiliformes), characterized by significant fi karyotype diversity. Genetica, 125: 27–32. Rudek, Z. (1974) Karyological investigations of two forms of Vimba vimba (Linnaeus 1758) occurring in Poland. Folia Biol. (Krakow), 22: 211–215.
R– 75 R– 76
R– 77 R– 78 R– 79
R– 80 R– 81 R– 82 R– 83 R– 84 R– 85 R– 86 R– 87 R– 88
R– 89 R– 90
R– 91 R– 92
R– 93
R– 94
R– 95
References
287
R– 96 Ruiz-Carus, R. and Uribe-Alcocer, M. (2003) Karyotype analysis of Eucinostomus argenteus, E. gula, E. harengulus, and Eugerres plumierii (Teleostei, Gerreidae) from Florida and Puerto Rico. Environ. Biol. Fishes, 67: 269–276. R– 97 Rukhkyan, R.G. and Arakelyan, G.L. (1980) Karyological bases of hybrid origin of Sevan whitefi fish Coregonus lavaretus. In: Kirpichnikov, V.S. ed. Karyological variability, mutagenesis and gynogenesis in fishes. fi Inst. Cytol. Acad. Sci. USSR, Leningrad, pp. 34–42. (In Russian with English summary) R– 98 Rukhkyan, R.G. (1982) A comparative analysis of the karyotypes of the Sevan trout Salmo ischchan Kessler. Tsitologiya, 24: 66–77. (In Russian with English summary) R– 99 Rukhkyan, R.G. (1984) The origin and speciation of the Alabalakh trout (genus Salmo, Salmonidae) in the light of its karyological peculiarities. J. Ichthyol., 24(2): 146–151. R– 100 Russo, C., Rocco, L., Stingo, V., Aprea, G. and Odierna, G. (1999) A cytogenetic analysis of Gambusia holbrooki (Cyprinodontiformes, Poecilidae) from the River Sarno. Ital. J. Zool., 66: 291–296. R– 101 Rock, J., Eldridge, M., Champion, A., Johnston, P. and Joss, J. (1996) Karyotype and nuclear DNA content of the Australian lungfish, fi Neoceratodus forsteri (Ceratodidae: Dipnoi). Cytogenet. Cell Genet., 73: 187–189. R– 102 Ruma, F., Ahmed, A.T.A. and Alam, S.S. (2006) Karyotype analysis of Channa punctata Bloch and Channa orientalis Schneider with Giemsa, CMA and DAPI. Cytologia, 71: 425–430. R– 103 Ryazanova, I.N. (2005) Karyotype of the snow sculpin Myoxocephalus brandti Steindachner (Cottidae) from Peter the Great Bay, Sea of Japan. Russian J. Mar. Biol., 31: 238–242. R– 104 Rabova, M., Ráb, P. and Ozouf-Costaz, C. (2001) Extensive polymorphism and chromosomal characteristics of ribosomal DNA in a loach fish, Cobitis vardarensis (Ostariophysi, Cobitidae) detected by different banding techniques and fluorescence fl in situ hybridization (FISH). Genetica, 111: 413–422. R– 105 Ren, X.H., Cui, J. and Yu, Q. (1992) Chromosomal heterochromatin differentiation of cyprinid fishes. fi Genetica, 87: 47–51. R– 106 Ron, E. and Nirchio, M. (2005) Cytogenetic characterization of Haemulon fl flavolineatum Desmarest, 1823 (Pisces: Haemulidae) from Margarita Island, Venezuela. Bol. Inst. Oceanogr., Univ. Oriente, 44: 35–40. (In Spanish with English abstract) R– 107 Roncati, H.A., Pastori, M.C. and Fenocchio, A.S. (2007) Cytogenetic studies and evolutive considerations on fishes fi of the family Cichlidae (Perciformes) from Parana River (Argentina). Cytologia, 72: 379–384. R– 108 Rodrigues, M.M., Baroni, S. and Almeida-Toledo, L.F. (2007) Karyological characterization of four marine fish species, genera Trachinotus and Selene (Perciformes: Carangidae), from the southeast Brazilian coast. Cytologia, 72: 95–99. R– 109 Rivlin, K.A., Rachlin, J.W. and Dale, G. (1987) Intraspecific fi chromosomal variation in Apogon binotatus (Perciformes: Apogonidae) from the Florida Keys and St. Croix. Ann. New York Acad. Sci., 494: 263–265. R– 110 Rivlin, K.A., Rachlin, J.W. and Warkentine, B.E. (1988) G-banding of the chromosomes of Apogon maculatus and A. pseudomaculatus (Perciformes: Apogonidae). Ann. New York Acad. Sci., 529: 160–163. R– 111 Rocha, É.C. and Molina, W.F. (2008) Cytogenetic analysis in western Atlantic snappers (Perciformes, Lutjanidae). Genet. Mol. Biol., 31: 461–467. R– 112 Rocco, L., Liguori, I., Costagliola, D., Morescalchi, M.A., Tinti, F. and Stingo, V. (2007) Molecular and karyological aspects of Batoidea (Chondrichthyes, Elasmobranchi) phylogeny. Gene, 389: 80–86. R– 113 Ryazanova, I.N. (2007) Karyotype of the sculpin Myoxocephalus jaok (Pisces: Cottidae) from Peter the Great Bay, Sea of Japan. Russian J. Mar. Biol., 33: 267–270.
288
References
R– 114
R– 115
R– 116 R– 117 R– 118
R– 119
R– 120
R– 121
*R–122
*R–123
R– 124
*R–125
[S] S–
1
S–
2
S–
3
S–
4
S–
5
S–
6
S–
7
Ryazanova, I.N., Borisenko, S.A. and Frolov, S.V. (2008) Comparative analysis of the karyotype of the sculpin Myoxocephalus ochotensis (Pisces: Cottidae) from the Odyan Bay of the Sea of Okhotsk. Russian J. Mar. Biol., 34: 195–198. Ráb, P. and Crossman, E.J. (1994) Chromosomal NOR phenotypes in North American pikes and pickerels, genus Esox, with notes on the Umbridae (Euteleostei: Esocae). Can. J. Zool., 72: 1951–1956. Robinson, E.S., Potter, I.C. and Atkin, N.B. (1975) The nuclear DNA content of lampreys. Experientia, 31: 912–913. Ravi, V. and Venkatesh, B. (2008) Rapidly evolving fish genomes and teleost diversity. Curr. Opinion Genet. Develop., 18: 544–550. Rocco, L. (2007) Molecular markers in cartilaginous fish cytogenetics. In: Pisano, E., Ozouf-Costaz, C., Foresti, F. and Kapoor, B.G. eds. Fish cytogenetics. Science Publishers, Enfi field, pp. 473–490. Rubert, M., Zawadzki, C.H. and Giuliano-Caetano, L.(2008) Cytogenetic characterization of Hypostomus nigromaculatus (Siluriformes: Loricariidae). Neotrop. Ichthyol., 6: 93–100. Ráb, P., Rábová, M., Reed, K.M. and Phillips, R.B. (1999) Chromosomal characteristics of ribosomal DNA in the primitive semionotiform fish, fi longnose gar Lepisosteus osseus. Chrom. Res., 7: 475–480. Ráb, P., Karakousis, Y. and Peios, C. (1994) Karyotype of Silurus aristotelis with reference to the cytotaxonomy of the genus Silurus (Pisces, Siluridae). Folia Zool., 43: 75–81. Rishi, S., Rishi, K.K. and Thind, A.D.K. (1994) NOR studies in six species of the genus Mystus (Bagridae, Osteichthyes). Abstr. VIII Congr. Soc. Europ. Ichthyol., Oviedo, p. 59. (After K-114) Reggi, R., Perico, E., Suminsky, M. and Camillo, J.C.A. (1986) Estudos citogeneticos em Papa-Terra, Menticirrhus litoralis (Perciformes, Sciaenidae). I. Simp. Citogenet. Evol. e Aplic. de Peixes Neotropicais, Sao Carlos, SP, p. 57 (abstract). (After K-114) Ribeiro, L.B., Matoso, D.A., Almeida, M.C., Vicari, M.R., Moraes-Neto, A., Svidnicki, M.C.C.M. and Artoni, R.F. (2008) Karyotypic variability in Iheringichthys labrosus (Teleostei, Pimelodidae) from the Tibagi River basin (Paraná State, Brazil). Genet. Mol. Res., 7: 718–724. Raghunath, P. and Prasad, R. (1980) Chromosomes of six marine percoids from the Indian Sea. Ind. Biologist, 11: 9–12. (After A-124)
Safar, P., Mahmood, K., Bahram, K. and Masoud, S. (2000) Karyological study of two populations of Capoeta capoeta from North Iran. Caryologia, 65: 231–234. Sahoo, P.K., Barat, A. and Ponniah, A.G. (1997) Replication banding in Channa punctatus (Channidae, Pisces). Chrom. Sci., 1: 123–125. Saitoh, K., Takai, A. and Ojima, Y. (1984) Chromosomal study on the three local races of the striated spined loach (Cobitis taenia striata). Proc. Japan Acad., Ser. B, 60: 187–190. Saitoh, K. (1989) Multiple sex-chromosome system in a loach fish. Cytogenet. Cell Genet., 52: 62–64. Sakamoto, K. and Nishikawa, S. (1980) Chromosomes of three fl flatfi fishes (Pleuronectiformes). Japan. J. Ichthyol., 27: 268–272. Salas, E. and Boza, J. (1991) Citotaxonomia comparativa de tres especies de Cichlasoma (Pisces: Cichlidae) nativas de Costa Rica. Rev. Biol. Trop., 39: 219–224. Salekhova, L.P. and Vasiliev, V.P. (1980) Ecological and karyological evidence of species independence of Spicara fl flexuosa Raf., and Spicara maena (L.) (Fam. Centracanthidae).
References
S–
8
S–
9
S– 10 S– 11
S– 12 S– 13
S– 14
S– 15 S– 16 S– 17 S– 18
S– 19 S– 20 S– 21 S– 22 S– 23 S– 24 S– 25 S– 26 S– 27
S– 28
289
In: Kirpichnikov, V.S. ed. Karyological variability, mutagenesis and gynogenesis in fishes. Inst. Cytol. Acad. Sci. USSR, Leningrad, pp. 50–54. (In Russian with English fi summary) Salvador, L.B. and Moreira-Filho, O. (1992) B chromosomes in Astyanax scabripinnis (Pisces, Characidae). Heredity, 69: 50–56. Salvadori, S., Coluccia, E., Cannas, R., Cau, A. and Deiana, A.M. (2003) Replication banding in two Mediterranean moray eels: chromosomal characterization and comparison. Genetica, 119: 253–258. Sánchez, S. and Fenocchio, A.S. (1996) Karyotypic analysis in three populations of the South-American eel like fi fish Synbranchus marmoratus. Caryologia, 49: 65–71. Sánchez, S. and Fenocchio, A.S. (1996) Karyotypic studies and cytotaxonomic considerations on Callichthys callichthys (Pisces, Siluroidei) from Argentina. Cytologia, 61: 247–252. Sánchez, S. and Jorge, L.C. (1999) A new report of the ZZ/ZW sex chromosome system in the genus Triportheus (Pisces, Triporthinae). Cytologia, 64: 395–400. Sasaki, M. and Hitotsumachi, S. (1967) Notes on the chromosomes of a fresh water lamprey, Entosphenus reissneri (Cyclostomata). Chrom. Inform. Serv., 8: 22– 24. Sasaki, M., Hitotsumachi, S., Makino, S. and Terao, T. (1968) A comparative study of the chromosomes in the chum salmon, the kokanee salmon and their hybrids. Caryologia, 21: 389–394. Sasaki, T. and Sakamoto, K. (1977) Karyotype of the rockfish, fi Sebastes taczanowskii (Steindachner). Chrom. Inform. Serv., 22: 7–8. Sawada, Y. and Sakamoto, K. (1980) Chromosomes of a rare callionymid, Draculo mirabilis. Japan. J. Ichthyol., 26: 367–368. Sawada, Y. (1976) Chromosomes of Leptobotia curta (Cobitidae, Cypriniformes). Japan. J. Ichthyol., 23: 175–177. Scheel, J.J. (1966) Taxonomic studies of African and Asian tooth-carps (Rivulinae) based on chromosome numbers, haemoglobin patterns, some morphological traits and crossing experiments. Vidensk. Medd. Dansk naturh. Foren., 129: 123–148. Scheel, J.J. (1968) Zoogeographie und verwandtschaftliche Beziehungen von Rivulinae des Atlantischen Afrika, 1–3. Aquarien Terrarien, 15: 1–4, 6–12. Scheel, J.J. (1968) Zoogeographie und verwandtschaftliche Beziehungen von Rivulinae des Atlantischen Afrika IV. Aquarien Terrarien, 15: 118–121, 156–158, 200. Scheel, J.J. (1968) Zoogeographie und verwandtschaftliche Beziehungen von Rivulinae des Atlantischen Afrika 6. Aquarien Terrarien, 15: 201. Scheel, J.J. (1968) Zoogeographie und verwandtschaftliche Beziehungen von Rivulinae des Atlantischen Afrika 7. Aquarien Terrarien, 15: 226–227. Scheel, J.J. (1968) Zoogeographie und verwandtschaftliche Beziehungen von Rivulinae des Atlantischen Afrika 8. Aquarien Terrarien, 15: 304–305. Scheel, J.J. (1972) Rivuline karyotypes and their evolution (Rivulinae, Cyprinodontidae, Pisces). Z. Zool. Syst. Evol. Forsch., 10: 180–209. Scheel, J.J. (1972) Cichlid chromosomes: the nominal genus Pelmatochromis. Advanced Aquarists Mag., 1972, May: 6–7. Scheel, J.J. (1972) Rivulin chromosomes: The genus Pterolebias Garman. Advanced Aquarists Mag., 1972, May: 4–5. Scheel, J.J., Simonsen, V. and Gyldenholm, A.O. (1972) The karyotypes and some electrophoretic patterns of fourteen species of the genus Corydoras. Z. Zool. Syst. Evol. Forsch., 10: 144–152. Scheel, J.J. (1972) Cytotaxonomic studies: the Aphyosemion elegans group. Z. Zool. Syst. Evol. Forsch., 10: 122–127.
290
References
S– 29
Scheel, J.J. (1972) Die Chromosomen der drei Neon-Tetras. Aquarien Terrarien, 19(9): 307–309. Scheel, J.J. (1973) Fish chromosomes and their evolution. Internal Report of Danmarks Akvarium, Charlottenlund, Denmark. (After O-50) Scheel, J.J. and Radda, A.C. (1974) Beschreibung zweier neuer Cyprinodontidae aus dem tropischen Afrika. Aquaria, 21: 157–162. Scheel, J.J. (1974) Rivuline studies. Taxonomic studies of rivuline cyprinodonts from tropical Atlantic Africa (Rivulinae, Cyprinodontidae, Atheriniformes, Pisces). Ann. Mus. Royal Afr. Centrale, 211: 1–150. Scheel, J.J. (1975) A review of Aphyosemion arnoldi and its allied. BKA-Killi News, May, 13 pp. Scheel, J.J. (1975) A review of the Aphyosemion scheeli group. BKA-Killi News, Oct. 4 pp. Scheel, J.J. (1975) The karyotypic variation in Aphyosemion. BKA-Killi News, June, 4 pp. Scheel, J.J. (1975) A review of Aphyosemion gardneri and its allied. BKA-Killi News, Aug. 13 pp. Scheel, J.J. (1973) A review of Aphyosemion calliurum (Blgr.). AKA-KN, 6(8): 5–14. Scheel, J.J. and Radda, A.C. (1974) Description of two new Cyprinodontidae from tropical Africa. BKA-Killi News, Dec. 6 pp. Schmidtke, J., Schmitt, E., Matzke, E. and Engel, W. (1979) Non-repetitive DNA sequence divergence in phylogenetically diploid and tetraploid teleostean species of the family Cyprinidae and the order Isospondyli. Chromosoma, 75: 185–198. Schwartz, F.J. and Maddock, M.B. (1986) Comparisons of karyotypes and cellular DNA contents within and between major lines of elasmobranchs. In: Uyeno, T., Arai, R., Taniuchi, T. and Matsuura, K. eds. Indo-Pacific fi fish biology. Ichthyological Society of Japan, Tokyo, pp. 148–157. Schwartz, F.J. and Maddock, M.B. (2002) Cytogenetics of the elasmobranchs: genome evolution and phylogenetic implications. Mar. Freshwater Res., 53: 491–502. Setzer, P.Y. (1970) An analysis of a natural hybrid swarm by means of chromosome morphology. Trans. Amer. Fish. Soc., 99: 139–146. Severin, S.O. (1979) The karyotype of the European grayling, Thymallus thymallus. J. Ichthyol., 19 (2): 44–49. Severin, S.O. and Zinov’yev, Y.A. (1982) Karyotypes of isolated populations of Thymallus arcticus from the Ob River basin. J. Ichthyol., 22(1): 13–22. Severin, S.O. (1985) Karyological analysis of three populations of grayling, Thymallus thymallus, in the Kama basin. J. Ichthyol., 25(6): 135–146. Shan, S.X. and Jiang, Y.G. (1988) Karyotype studies of crucian carp, Carassius auratus gibelio. Acta Hydrobiol. Sinica, 12: 381–384. (In Chinese) Salvadori, S., Cau, A., Coluccia, E., Milia, A. and Deiana, A.M. (1994) Karyotype, C- and G-banding, and nucleolar organizer regions of Conger congerr (Osteichthyes, Anguilliformes). Boll. Zool., 61: 59–63. Sharma, K.K. and Sharma, O.P. (1995) Somatic and meiotic chromosomes of Amblyceps mangois (Siluriformes: Amblyceptidae). Chrom. Inform. Serv., 58: 20–21. Sharma, O.P. and Agarwal, A. (1981) The somatic and meiotic chromosomes of Puntius conchonius (Cyprinidae) from the Jammu and Kashmir state, India. Genetica, 56: 235–237. Sharma, O.P. and Tripathi, N.K. (1981) Somatic and meiotic chromosomes of a fresh water teleost Barilius bendelisis (Pisces: Cyprinidae). Chrom. Inform. Serv., 31: 20–22. Sharma, O.P. and Tripathi, N.K. (1981) Studies on the somatic and meiotic chromosomes of a fresh water teleost Xenentodon cancila (Belonidae: Pisces). Chrom. Inform. Serv., 30: 11–13.
*S– 30 S– 31 S– 32
S– 33 S– 34 S– 35 S– 36 S– 37 S– 38 S– 39
S– 40
S– 41 S– 42 S– 43 S– 44 S– 45 S– 46 S– 47
S– 48 S– 49
S– 50
S– 51
References
S– 52
S– 53 S– 54 S– 55 S– 56 S– 57 S– 58
S– 59 S– 60
S– 61
S– 62
S– 63 S– 64
S– 65 S– 66
S– 67
S– 68
S– 69
S– 70 S– 71
291
Sharma, O.P. and Tripathi, N.K. (1981) Chromosome number and karyotype of the catfish fi Gagata viridescens (Siluridae) from Jammu (J & K), India. Chrom. Inform. Serv., 30: 13–15. Sharma, O.P. and Tripathi, N.K. (1982) Somatic and germ cell chromosomes of Gambusia affinis fi holbrooki. Chrom. Inform. Serv., 32: 24–25. Sharma, O.P. and Tripathi, N.K. (1984) Studies on the chromosomes of Nandus nandus and Badis badis from the J and K State, India. Cytologia, 49: 73–79. Sharma, O.P. and Tripathi, N.K. (1986) Karyotypic diversity in genus Mystus (Bagridae: Pisces). Cytologia, 51: 1–9. Sharma, O.P. and Tripathi, N.K. (1986) On the chromosomes of two cyprinid fishes. fi Chrom. Inform. Serv., 41: 12–15. Sharma, O.P. and Tripathi, N.K. (1988) Female heterogamety in two teleostean fi fishes. Cytologia, 53: 81–86. Sharma, O.P., Sharma, K.K., Tripathi, N.K. and Gupta, S.C. (1995) Localization of C-heterochromatin in two cyprinid fishes fi Puntius ticto and Schizothorax niger. Chrom. Inform. Serv., 58: 19–20. Sharpnack, L.A. and Fitzsimons, J.M. (1980) Karyology of four species of cyprinodont fishes from the Louisiana Gulf Coast. Proc. Louisiana Acad. Sci., 43: 39–45. Shelenkova, N.Y. (1986) Karyotypes of two isolated populations of the sockeye salmon Oncorhynchus nerka Walb. Tsitologiya, 28: 735–739. (In Russian with English summary) Shelenkova, N.Y. (1987) A study of karyotypes of two Pacific fi salmon species, Oncorhynchus nerka Walbaum and O. kisutch W., by the C-banding method. Tsitologiya, 29: 100–104. (In Russian with English summary) Shen, J.B., Fan, Z.T. and Wang, G.R. (1983) Karyotype studies of male triploid crucian carp (Fangzheng crucian carp) in Heilongjiang. Acta Genet. Sinica, 10(2): 133–136. (In Chinese with English abstract) Shen, J.B., Fan, Z.T. and Wang, G.R. (1983) Karyotype of Pseudobagrus fulvidraco. Hereditas (Beijing), 5(2): 23–24. (In Chinese) Shen, J.B., Wang, G.R. and Fan, Z.T. (1983) The ploidy of crucian carp and its geographical distribution in Heilongjiang main river. J. Fish. China, 7(2): 87–94. (In Chinese with English abstract) Shen, J.B., Wang, G.R., Fan, Z.T. and Li, J. (1984) Chromosome numbers of 16 fi fishes from Heilongjiang Province, China. Zool. Res., 5(1) suppl.: 90. (In Chinese) Shen, J.B., Fan, Z.T., Li, S.W., Cheng, R.X. and Xue, S.B. (1984) Comparative studies of the somatic cell and spermatozoon DNA contents and ploidy of Fangzheng crucian carp and Zha-long Lake goldfish. fi Acta Zool. Sinica, 30: 7–13. (In Chinese with English abstract) Shi, A.J., Feng, K.M., Hu, G.Z. and Xie, S.R. (1986) Comparison between artificially fi induced Cyprinus carpio gynogenetic offspring and their parents with reference to karyotype and enzymic histochemistry. Acta Hydrobiol. Sinica, 10: 127–134. (In Chinese) Shichiri, M., Kikuma, Y., Kuo, C.-H., Liu, L.-L., Kubota, S. and Kohno, S. (1997) Chromosome elimination and germ line-restricted microchromosomes in Paramyxine sheni from Taiwan. Chrom. Sci., 1: 49–53. Shimabukuro-Dias, C.K., Oliveira, C. and Foresti, F. (2004) Karyotype valiability in eleven species of the catfish fi genus Corydoras (Siluriformes: Callichthyidae). Ichthyol. Explor. Freshwaters, 15: 135–146. Shinderite, V.S. and Vasiliev, V.P. (1976) The karyotype of the Vimba Vimba vimba. Vopr. Ichthyol., 16: 366–369. (In Russian) Simon, R.C. (1963) Chromosome morphology and species evolution in the five fi North American species of Pacific fi salmon (Oncorhynchus). J. Morphol., 112: 77–95.
292
References
S– 72 Skvortsova, T.A. (1975) Chromosome complexes of the White Sea herring (Clupea harengus pallasi n. maris-albi Berg) and the Baltic herring (Clupea harengus harengus n. membras L.). Issled. Fauny Morei, 16: 104–108. (In Russian) S– 73 Smith, M.L. and Miller, R.R. (1987) Allotoca goslinei, a new species of goodeid fish fi from Jalisco, Mexico. Copeia, 1987: 610–616. S– 74 Sobita, N., Bhagirath, T.H. and Dhananjoy, C.H. (2004) Chromosome complements of a cyprinid fish fi Puntius manipurensis. Nucleus, 47: 59–63. S– 75 Sofradzzˇ ija, A., Berberovicc´, Lj. and Pavlovicc , B. (1972) Chromosome number in the cells of the testes of Paraphoxinus pstrossi Steind. Genetika, Acta Biol. Iugoslavica, 4: 17–23. (In Serbo-Croatian with English summary) S– 76 Sofradzzˇija, A. and Berberovicc´, Lj. (1973) The chromosome number of Barbus meridionalis petenyi Heckel (Cyprinidae, Pisces). Bull. Sci. Yougoslavie, Sec. A, 18: 77–78. S– 77 Sofradzzˇ ija, A., Hadzz iselimovicc´, R. and Maricc´, C. (1975) Basic data about the chromosome complement of Rhodeus sericeus amarus (Bloch 1782), Cyprinidae, Pisces. Bull. Sci. Yougoslavie, Sec. A, 20: 7–8. S– 78 Sofradzzˇija, A. and Berberovicc´, Lj. (1975) Basic data about chromosome complement of the species Gobio gobio (Linaeus, 1758), Cyprinidae, Pisces. Ichthyologia, 7: 53–59. (In Serbo-Croatian with English summary) S– 79 Sofradzzˇ ija, A. (1977) Caryology and cytotaxonomy of the Leuciscus species from the waters in Bosnia and Herzegovina. God. Biol. Inst. Univ. Sarajevu, 30: 113–211. (In SerboCroatian with English summary) S– 80 Sofradzzˇ ija, A., Berberovicc´, Lj. and Hadzz iselimovicc´, R. (1978) Chromosome sets of Carassius carassius and Carassius auratus gibelio. Ichthyologia, 10: 135–142. (In Serbo-Croatian with English summary) S– 81 Sofradzzˇija, A. and Berberovicc´, Lj. (1978) Diploid-triploid sexual dimorphism in Cobitis taenia taenia L. (Cobitidae, Pisces). Genetika, Acta Biol. Iugoslavica, 10: 389–397. (In Serbo-Croatian with English summary) S– 82 Sofradzzˇija, A., Berberovicc´, Lj. and Hadzz iselimovicc´, R. (1979) Chromosome complements of Alburnus alburnus (L. 1758) and Alburnoides bipunctatus (Bloch, 1782), Cyprinidae, Pisces. Ichthyologia, 11: 33–41. (In Serbo-Croatian with English summary) S– 83 Sofradzzˇ ija, A. and Vukovicc , T. (1979) Chromosome complement of Nemachilus barbatulus (Linnaeus, 1758), Cobitidae, Pisces. Ichthyologia, 11: 43–49. (In Serbo-Croatian with English summary) S– 84 Sofradzzˇija, A., Berberovicc´, Lj. and Sahinovicc , N. (1979) The chromosomes of [Scardinius erythrophthalmus (L. 1758)], Cyprinidae, Pisces. Radovi Anubih, 63: 131–142. (In Serbo-Croatian with English summary) S– 85 Sofradzzˇ ija, A. and Hadzz iselimovicc´, R. (1981) Chromosome complement of the species Chondrostoma nasus (Cyprinidae, Pisces). God. Biol. Inst. Univ. Sarajevu, 34: 107–115. (In Serbo-Croatian with English summary) S– 86 Sofradzzˇ ija, A. (1985) Cytogenetic investigations on Adriatic fishes Uranoscopus scaber L., Solea lutea (Risso) and Serranus scriba (L.). Biljessˇke notes, Inst. Oceanograf. Ribarstyo, Yugoslavija, 64: 1–8. (In Serbo-Croatian with English summary) S– 87 Sola, L., Gentili, G. and Cataudella, S. (1980) Eel chromosomes: cytotaxonomical interrelationships and sex chromosomes. Copeia, 1980: 911–913. S– 88 Sola, L., Cataudella, S. and Capanna, E. (1981) New developments in vertebrate cytotaxonomy. III. Karyology of bony fi fishes: a review. Genetica, 54: 285–328. S– 89 Sola, L., Natili, G.L. and Cataudella, S. (1989) Chromosome variability in introduced whitefi fishes (genus Coregonus) from two lakes in central Italy. Copeia, 1989: 189–192. S– 90 Sola, L., Bressanello, S., Rossi, A.R., Iaselli, V., Crosetti, D. and Cataudella, S. (1993) A karyotype analysis of the genus Dicentrarchus by different staining techniques. J. Fish Biol., 43: 329–337.
References
293
S– 91 Sola, L., Cipelli, O., Gornung, E., Rossi, A.R., Andaloro, F. and Crosetti, D. (1997) Cytogenetic characterization of the greater amberjack, Seriola dumerili (Pisces: Carangidae), by different staining techniques and fluorescence fl in situ hybridization. Mar. Biol., 128: 573–577. S– 92 Sola, L, Marzovillo, M., Rossi, A.R., Gornung, E., Bressanello, S. and Turner, B.J. (1997) Cytogenetic analysis of a self-fertilizing fi fish, Rivulus marmoratus: remarkable chromosomal constancy over a vast geographic range. Genome, 40: 945–949. S– 93 Sola, L., Gornung, E., Naoi, H., Gunji, R., Sato, C., Kawamura, K., Arai, R. and Ueda, T. (2003) FISH-mapping of 18S ribosomal RNA genes and telomeric sequences in the Japanese bitterlings Rhodeus ocellatus kurumeus and Tanakia limbata (Pisces, Cyprinidae) reveals signifi ficant cytogenetic differences in morphologically similar karyotypes. Genetica, 119: 99–106. S– 94 Son, Y.M. and Lee, J.H. (1989) Karyotypes of genus Liobagrus (Pisces: Amblycipitidae) in Korea. Korean J. Ichthyol., 1: 64–72. S– 95 Song, Y.C., Ratty, F.J. and Laurs, R.M. (1986) Transmission electron microscope observations of C-banded skipjack tuna chromosomes. J. Fish Biol., 28: 419–424. S– 96 Song, Y.C. (1987) Studies on karyotypes and C-banding patterns of three fish fi species in Scombridae. Oceanol. Limnol. Sinica, 18: 352–356. (In Chinese with English abstract) S– 97 Song, Z. and Zan, R.G. (1985) Morphological changes of chromosomes during the embryo development of fishes. Acta Biol. Exp. Sinica, 18: 77–87. (In Chinese with English abstract) S– 98 Souza, I.L., Moreira-Filho, O. and Bertollo, L.A.C. (1995) Karyotypic characterization of Aphyocharax difficilis fi (Pisces, Characidae): C-banding, Ag-NORs and occurrence of diplochromosomes. Cytobios, 83: 33–39. S– 99 Souza, I.L. and Moreira-Filho, O. (1995) Cytogenetic diversity in the Astyanax scabripinnis species complex (Pisces, Characidae). I. Allopatric distribution in a small stream. Cytologia, 60: 1–11. S– 100 Souza, I.L., Moreira-Filho, O. and Bertollo, L.A.C. (1995) Cytogenetic diversity in the Astyanax scabripinnis (Pisces, Characidae) complex. II. Different cytotypes living in sympatry. Cytologia, 60: 273–281. S– 101 Souza, I.L., Galián, J., Rúa, P.D.L., Bertollo, L.A.C. and Moreira-Filho, O. (2001) Nonrandom distribution of the GC-rich heterochromatin and nucleolar rDNA sites on Astyanax scabripinnis chromosomes. Cytologia, 66: 85–91. S– 102 Souza, L., Giuliano-Caetano, L. and Dias, A.L. (2003) Karyotypic study of three species of Pimelodus (Pisces, Pimelodidae) from the Paraguai river basin. Cytologia, 68: 345–350. S– 103 Sriramulu, V. (1959) A note on the chromosomes of Oryzias melastigma (McClelland). Curr. Sci., 1959: 117–118. S– 104 Srivastava, M.D.L. and Das, B. (1968) Somatic chromosomes of Clarias batrachus (L.) (Clariidae: Teleostomi). Caryologia, 21: 349–352. S– 105 Srivastava, M.D.L. and Das, B. (1969) Somatic chromosomes of teleostean fish. fi J. Heredity, 60(2): 57–58. S– 106 Stange, E.A.R. and Almeida-Toledo, L.F. (1993) Supernumerary B chromosomes restricted to males in Astyanax scabripinnis (Pisces, Characidae). Brazil. J. Genet., 16: 601–615. S– 107 Starmach, J. (1967) Die Chromosomen von Cottus poecilopus Heckel und Cottus gobio L. Acta Hydrobiol., 9: 301–307. S– 108 Stevenson, M.M. (1981) Karyomorphology of several species of Cyprinodon. Copeia, 1981: 494–498. S– 109 Sato, L.R., Oliveira, C. and Foresti, F. (2004) Karyotype description of five fi species of Trichomycterus (Teleostei: Siluriformes: Trichomycteridae). Genet. Mol. Biol., 27: 45–50.
294
References
S– 110 Sá-Gabriel, L.G. and Molina, W.F. (2005) Karyotype diversification fi in fishes of the Balistidae, Diodontidae and Tetraodontidae (Tetraodontiformes). Caryologia, 58: 229–237. S– 111 Stingo, V. (1979) New developments in vertebrate cytotaxonomy. II. The chromosomes of the cartilaginous fishes. fi Genetica, 50: 227–239. S– 112 Stingo, V., du Buit, M. and Odierna, G. (1980) Genome size of some selachian fishes. fi Boll. Zool., 47: 129–137. S– 113 Stingo, V. and Capriglione, T. (1986) DNA and chromosomal evolution in cartilaginous fish. In: Uyeno, T., Arai, R., Taniuchi, T. and Matsuura, K. eds. Indo-Pacifi fi fic fish biology. Ichthyological Society of Japan, Tokyo, pp. 140–147. S– 114 Stingo, V., Rocco, L., Odierna, G. and Bellitti, M. (1995) NOR and heterochromatin analysis in two cartilaginous fishes by C-, Ag- and RE (restriction endonuclease)banding. Cytogenet. Cell Genet., 71: 228–234. S– 115 Stingo, V. and Rocco, L. (2001) Selachian cytogenetics: a review. Genetica, 111: 329–347. S– 116 Subrahmanyam, K. and Natarajan, R. (1970) A study on the somatic chromosomes of Therapon Cuvier (Teleostei: Perciformes). Proc. Ind. Acad. Sci., 72B: 288–294. S– 117 Subrahmanyam, K. (1970) Effect of rotenone on fi fish chromosomes. J. Annamalai Univ. Sci., 28: 243–245. S– 118 Subrahmanyam, K. and Ramamoorthi, K. (1971) A karyotype study in the estuarine worm eel, Moringua linearis (Gray). Sci. Culture, 37: 201–202. S– 119 Suciu, R. and Ráb, P. (1992) A note on the karyotype of Percarina demidoffi (Pisces, Percidae). Folia Zool., 41: 93–95. S– 120 Sumner, A.T. (1972) A simple technique for demonstrating centromeric heterochromatin. Exp. Cell Res., 75: 304–306. S– 121 Sun, G.I. and Liu, L. (1990) The karyotype in embryos of the icefish, fi Neosalanx taihuensis Chen. J. Fish. China, 14: 357–358. (In Chinese) S– 122 Suzuki, T. (1996) Hypseleotris cyprinoides. In: Fisheries Agency of Japan ed. Basic data on rare Japanese wild aquatic species. (III). Nihonsuisanshigenhogokyokai, Tokyo, pp. 215–221. (In Japanese) S– 123 Suzuki, A. and Taki, Y. (1981) Karyotype of tetraploid origin in a tropical Asian cyprinid, Acrossocheilus sumatranus. Japan. J. Ichthyol., 28: 173–176. S– 124 Suzuki, A. and Taki, Y. (1982) Karyotype of a noemacheiline loach, Lefua echigonia. Japan. J. Ichthyol., 29: 303–304. S– 125 Suzuki, A., Taki, Y. and Urushido, T. (1982) Karyotypes of two species of Arowana, Osteogrossum bicirrhosum and O. ferreirai. Japan. J. Ichthyol., 29: 220–222. S– 126 Suzuki, A. and Taki, Y. (1986) Chromosomes and DNA values of two cyprinid fishes fi of the subfamily Barbinae. Japan. J. Ichthyol., 32: 459–462. S– 127 Suzuki, A. and Taki, Y. (1988) Karyotype and DNA content in the cyprinid Catlocarpio siamensis. Japan. J. Ichthyol., 35: 389–391. S– 128 Suzuki, A. and Yamanaka, K. (1988) Chromosomes of an African lungfish, fi Protopterus annectens. Proc. Japan Acad., Ser. B, 64: 119–121. S– 129 Suzuki, A., Taki, Y., Takeda, M. and Akatsu, S. (1988) Multiple sex chromosomes in a monodactylid fish. fi Japan. J. Ichthyol., 35: 98–101. S– 130 Suzuki, A., Takeda, M., Tanaka, H. and Yoo, M.S. (1988) Chromosomes of Scatophagus argus and Selenotoca multifasciata (Scatophagidae). Japan. J. Ichthyol., 35: 102–104. S– 131 Suzuki, A., Yamanaka, K., Urushido, T. and Kondo, N. (1988) A banding chromosome study of African fish fi family Polypteridae (Pisces: Polypteriformes). Proc. Japan Acad., Ser. B, 64: 299–302. S– 132 Suzuki, A., Yamanaka, K., Urushido, T. and Kondo, N. (1989) N-banding chromosomes of two polypterids, Polypterus senegalus and Calamoichthys calabaricus (Polypteriformes, Pisces). Chrom. Inform. Serv., 46: 23–25.
References
295
S– 133 Suzuki, A. (1989) Chromosomes of European rudd, Scardinius erythrophthalmus (Cypriniformes, Pisces). Chrom. Inform. Serv., 46: 21–23. S– 134 Suzuki, A. and Takeda, M. (1991) A preliminary report on the stickleback species, Pungitius pungitius (Linnaeus) and Pungitius sp. sensu Nakamura (Musashitomiyo) of the family Gasterosteidae. Chrom. Inform. Serv., 50: 37–41. S– 135 Suzuki, A. and Hirata, J. (1991) Chromosomes and DNA contents of Amia calva. Chrom. Inform. Serv., 50: 34–37. S– 136 Suzuki, A. (1991) Chromosomes of a Chinese cyprinid fi fish, Puntius semifasciolatus. Chrom. Inform. Serv., 51: 8–10. S– 137 Suzuki, A. (1992) Chromosomes and DNA studies of eight species in the family Cobitidae (Pisces, Cypriniformes). La Kromosomo, II, 67/68: 2275–2282. S– 138 Suzuki, A. (1992) Karyotype and DNA contents of the Chinese catostomid fish, fi Myxocyprinus asiaticus. Chrom. Inform. Serv., 53: 25–27. S– 139 Suzuki, A. and Taki, Y. (1992) Karyological and cytochemical studies of Pseudogastromyzon myersi and Homaloptera hoffmanni in the order Cypriniformes. Chrom. Inform. Serv., 52: 32–34. S– 140 Suzuki, A. and Tonosaki, H. (1993) Tandem translocation chromosomes in Allocyttus verrucossus (Pisces; Zeiformes). Bull. Biogeograph. Soc. Japan, 48: 69–72. S– 141 Suzuki, A., Taki, Y., Mochizuki, M. and Hirata, J. (1995) Chromosomal speciation in Eurasian and Japanese Cyprinidae (Pisces, Cypriniformes). Cytobios, 83: 171–186. S– 142 Suzuki, A. and Tonosaki, H. (1995) Karyotypes by Ag-NOR staining in three species of pleuronectid fishes. fi Chrom. Inform. Serv., 59: 11–12. S– 143 Suzuki, A. (1996) Chromosomal evolution of the suborder Cyprinoidei, with special reference to topical problems of phylogenetic relationships of their families. Cytobios, 87: 169–179. S– 144 Suzuki, A. and Taki, Y. (1996) Tetraploidization in the cobitid subfamily Botinae (Pisces, Cypriniformes). Cytobios, 85: 229–245. S– 145 Suzuki, A. (2003) Cytogenetical studies on three species of Noemacheilinae and Gastromyzoninae fishes (Cobitidae; Cypriniformes). Folia Biol. (Krakow), 51 (suppl.): 125–128. S– 146 Swarça, A.C., Giuliano-Caetano, L. and Dias, A.L. (1999) Cytogenetic characterization through chromosomic banding of Pinirampus pirinampu (Pisces, Pimelodidae) from the Tibagi river basin PR/Brazil. Caryologia, 52: 31–35. S– 147 Swarça, A.C., Giuliano-Caetano, L., Vanzela, A.L.L. and Dias, A.L. (2001) Heteromorphism of rDNA size in Pinirampus pirinampu (Pisces: Pimelodidae) detected by in situ hybridization. Cytologia, 66: 275–278. S– 148 Swarça, A.C., Cestari, M.M., Giuliano-Caetano, L. and Dias, A.L. (2001) Cytogenetic characterization of the large South American siluriform fish fi species Zungaro zungaro (Pisces, Pimelodidae). Chrom. Sci., 5: 51–55. S– 149 Swarça, A.C., Vidotto, A.P. and Dias, A.L. (2003) Cytogenetic characterization of Pimelodella aff. avanhandavae (Siluriformes, Pimelodidae) from Tibagi River (Paraná State, Brazil). Caryologia, 56: 421–425. S– 150 Swarça, A.C., Fenocchio, A.S., Cestari, M.M. and Dias, A.L. (2005) Karyotype divergence among populations of giant catfish fi Pseudoplatystoma corruscans (Teleostei: Pimelodidae) indicates higher species diversity. Ichthyol. Explor. Freshwaters, 16: 325–330. S– 151 Swarup, H. (1959) Production of triploidy in Gasterosteus aculeatus (L.). J. Genet., 56: 129–142. S– 152 Scheel, J.J. (1972) The chromosomes of the third neon tetra. TFH, 1972, July: 60–65. S– 153 Scheel, J.J. and Christensen, B. (1970) The chromosomes of the two common neon tetras. TFH, 19(2): 24–31. S– 154 Stivari, M.K. and Martins-Santos, I.C. (2004) Karyotype diversity in two populations of Rhamdia quelen (Pisces, Heptapteridae). Cytologia, 69: 25–34.
296
References
S– 155 Sánchez, S., Laudicina, A. and Jorge, L.C. (2004) A new report of multiple sex chromosome system in the order Gymnotiformes (Pisces). Cytologia, 69: 155–160. S– 156 Sekiya, S. and Honma, Y. (1975) Morphological and cytological studies on the ironfish fi occurring in Niigata and Sado Island. Proc. Japan. Soc. Syst. Zool., 11: 53–60. (In Japanese with English abstract) S– 157 Slechtova, V., Bohlen, J., Freyhof, J. and Ráb, P. (2006) Molecular phylogeny of the Southeast Asian freshwater fish family Botiidae (Teleostei: Cobitoidea) and the origin of polyploidy in their evolution. Mol. Phylogenet. Evol., 39: 529–541. S– 158 Scheel, J.J. (1990) Atlas of killifishes fi of the Old World. T.F.H. Publications, Neptune, NJ, USA. S– 159 Scheel, J.J. (1975) Rivulins of the Old World. T.F.H. Publications, Neptune, NJ, USA. S– 160 Smith, M.L. and Miller, R.R. (1980) Allotoca maculata, a new species of goodeid fish fi from western México, with comments on Allotoca dugesi. Copeia, 1980: 408–417. S– 161 Schultz, R.J. (1967) Gynogenesis and triploidy in the viviparous fish fi Poeciliopsis. Science, 157: 1564–1567. S– 162 Stevenson, M.M. (1975) A comparative chromosome study of the pupfi fish genus Cyprinodon (Teleostei: Cyprinodontidae). Unpubl. Ph D Diss., University of Oklahoma, Norman, USA. S– 163 Santini, F., Harmon, L.J., Carnevale, G. and Alfaro, M.E. (2009) Did genome duplication drive the origin of teleosts? A comparative study of diversifi fication in ray-fi finned fishes. BMC Evol. Biol., 2009, 9: 194. doi: 10.1186/1471–2148–9-194. S– 164 Schmid, M., Ziegler, C.G., Steinlein, C., Nanda, I. and Schartl, M. (2006) Cytogenetics of the bleak (Alburnus alburnus), with special emphasis on the B chromosomes. Chrom. Res., 14: 231–242. S– 165 Swarça, A.C., Fenocchio, A.S., Cestari, M.M., Bertollo, L.A.C. and Dias, A.L. (2006) Heteromorphic sex chromosome system with an exceptionally large Y chromosome in a catfish fi Steindachneridion sp. (Pimelodidae). Cytogenet. Genome Res., 112: 325–328. S– 166 Swarça, A.C., Giuliano-Caetano, L. and Dias, A.L. (2000) Cytogenetics of species of the families Pimelodidae and Rhamdiidae (Siluriformes). Genet. Mol. Biol., 23: 589–593. S– 167 Sideleva, V.G., Prirodina, V.P. and Khanayev, I.V. (1995) Karyotypes of benthic Lake Baikal cottoids, with remarks about karyological evolution in relation to bathymeric distribution. J. Ichthyol., 35(9): 295–304. S– 168 Sideleva, V.G. (2003) The endemic fi fish of Lake Baikal. Buckhuys Publishers, Leiden. S– 169 Swarça, A.C., Fenocchio, A.S., Cestari, M.M. and Dias, A.L. (2003) Analysis of heterochromatin by combination of C-banding and CMA3 and DAPI staining in two fish fi species (Pimelodidae, Siluriformes). Genetica, 119: 87–92. S– 170 Sola, L., Natili, G.L. and Cataudella, S. (1988) Cytogenetical characterization of Odontesthes bonariensis (Pisces, Atherinidae), an Argentine species introduced in Italy. Genetica, 77: 217–224. S– 171 Sahoo, P.K., Nanda, P. and Barat, A. (2007) Karyotypic diversity among three species of Garra (family Cyprinidae) from River Dikrong, Arunachal Pradesh, India. Cytologia, 72: 259–263. S– 172 Sonnenberg, R. (2007) Two new species of Chromaphyosemion (Cyprinodontiformes: Nothobranchiidae) from the coastal plain of Equatorial Guinea. Ichthyol. Explor. Freshwaters, 18: 359–373. S– 173 Sahoo, P.K., Nanda, P. and Barat, A. (2007) Karyotypic analysis of Neolissocheilus hexagonolepis (McClelland), Puntius ticto (Ham.) and P. chola (Ham.) (family: Cyprinidae, Pisces). Cytologia, 72: 409–413. S– 174 Souza, I.L., Venere, P.C. and Moreira-Filho, O. (2007) Constitutive heterochromatin and Ag-NOR polymorphisms in the small characid fish fi Astyanax scabripinnis (Jenyns, 1842). Cytologia, 72: 63–69.
References
S– 175
S– 176 S– 177 S– 178 S– 179 S– 180
S– 181 S– 182
S– 183 S– 184 S– 185 S– 186
S– 187
S– 188
S– 189
S– 190
S– 191 *S–192
*S–193 *S–194
297
Sobita, N. and Bhagirath, T. (2007) Colisa fasciata (Schneider) (Perciformes, Anabantoidei, Belontidae) karyotype is divergent and ZW sex chromosomes are allocyclic and asynaptic. Nucleus, 50: 45–49. Scheel, J.J. (1969) Notes on the taxonomy of Austrofundulus dolichopterus and other annual rivuline species of the New World. JAKA, 6(1): 8–16. Subrahmanyam, K. (1969) A karyotypic study of the estuarine fish fi Boleophthalmus boddaerti (Pallas) with calcium treatment. Curr. Sci., 18: 437–439. Sena, D.C.S. and Molina, W.F. (2007) Robertsonian rearrangements and pericentric inversions in Scaridae fish fi (Perciformes). Genet. Mol. Res., 6: 575–580. Sola, L., Nirchio, M. and Rossi, A.R. (2008) The past and the future of cytogenetics of Mugilidae: an updated overview. Bol. Inst. Oceanogr. Venezuela, 47: 27–33. Swarça, A.C., Fenocchio, A.S. and Dias, A.L. (2007) An update cytogenetic review for species of the families Pseudopimelodidae, Pimelodidae and Heptapteridae (Pisces, Siluriformes). Suggestion of a cytotaxonomical classifi fication. Caryologia, 60: 338–348. Sá-Gabriel, L.G. and Molina, W.F. (2004) Sex chromosomes in Stephanolepis hispidus (Monacanthidae, Tetraodontiformes). Cytologia, 69: 447–452. Salvadori, S., Coluccia, E., Cannas, R., Cau, A. and Deiana, A.M. (2009) A ZZ-ZW sex chromosome system in the finless fi eel Dalophis imberbis (Anguilliformes, Ophichthidae). Genetica, 135: 283–288. Schultz, R.J. (1971) Special adaptive problems associated with unisexual fishes. fi Amer. Zool., 11: 351–360. Scheel, J.J. (1982, personal communication) Stingo, V., Capriglione, T., Rocco, L., Improta, R. and Morescalchi, A. (1989) Genome size and A-T rich DNA in selachians. Genetica, 79: 197–205. Scavone, M.D.P. and Júlio Jr., H.F. (1995) Cytogenetic analysis and heterochromatin distribution in ZZ/ZW sex chromosomes of the mailed catfish fi Loricariichthys platymetopon (Loricariidae: Siluriformes). Braz. J. Genet., 18: 31–35. Sola, L., Rossi, A.R., Iaselli, V., Rasch, E.M. and Monaco, P.J. (1992) Cytogenetics of bisexual/unisexual species of Poecilia. II. Analysis of heterochromatin and nucleolar organizer regions in Poecilia mexicana mexicana by C-banding and DAPI, quinacrine, chromomycin A3, and silver staining. Cytogenet. Cell Genet., 60: 229–235. Sola, L., Bressanello, S., Rasch, E.M. and Monaco, P.J. (1993) Cytogenetics of bisexual/ unisexual species of Poecilia. IV. Sex chromosomes, sex chromatin composition and Ag-NOR polymorphisms in Poecilia latipinna: a population from Mexico. Heredity, 70: 67–71. Singh, M., Kumar, R., Nagpure, N.S., Kushwaha, B., Gond, I. and Lakra, W.S. (2009) Chromosomal localization of 18S and 5S rDNA using FISH in the genus Torr (Pisces, Cyprinidae). Genetica, 137: 245–252. Shimabukuro-Dias, C.K., Oliveira, C. and Foresti, F. (2004) Cytogenetic analysis of five fi species of the subfamily Corydoradinae (Teleostei: Siluriformes: Callichthyidae). Genet. Mol. Biol., 27: 549–554. Smith, E.M. and Gregory, T.R. (2009) Patterns of genome size diversity in the ray-finned fi fishes. Hydrobiologia, 625: 1–25. fi Stange, E.A.R., Silva, V.E. and Dutra, S.V. (1986) Citogenética no género Astyanax (Pisces, Characidae) das bacias dos rios Benevente e Jucu. I Simp. Citogenet. Evol. e Aplic. de Peixes Neotropicais, Sao Carlos, SP, p. 58 (abstract). (After K-114) Skelton, P.H. and Naran, D. (1995) Polyploidy in southern African barbine cyprinids. Abstr. VIII Congr. Soc. Europ. Ichthyol., Oviedo, p. 62. (After K-114) Simovic, S.Z., Markovic, G.S. and Simonovic, P.D. (1994) New data of the chromosome complements of the five fi species of family Cyprinidae. Abstr. VIII Congr. Soc. Europ. Ichthyol., Oviedo, p. 62. (After K-114)
298
References
S– 195 Sofradzzˇ ija, A. (1984) First data on the chromosomes of the three Adriatic fish species (Scorpaena porcus, S. ustulata and Corvina nigra). Ichthyologia, 16: 57–61. (In SerboCroatian with English summary) *S–196 Stange, E.A.R. and Passamani, M. (1986) Caracterizaçao cromossômica de Awaous tajasica (Lichtenstein, 1822) (Pisces, Gobiidae). I. Simp. Citogenet. Evol. e Aplic. de Peixes Neotropicais, Sao Carlos, SP, p. 59 (abstract). (After K-114) S– 197 Souza, L., Swarca, A.C. and Dias, A.L. (2004) Analysis of the nucleolus organizer regions in 5 species of the genus Pimelodus (Siluriformes, Pimelodidae), using AgNO3, CMA3 and FISH with the 18S rDNA probe. Caryologia, 57: 145–151. S– 198 Stolf, R., Swarca, A.C., Giuliano-Caetano, L. and Dias, A.L. (2004) Analyses of karyotype fi aff. schubarti (Siluriformes, Pimelodidae) and nucleolus organizer regions of Imparfinis of the Tibagi river basin, Paraná, Brazil. Caryologia, 57: 348–352. S– 199 Swarça, A.C., Fenocchio, A.S., Cestari, M.M. and Dias, A.L. (2005) First chromosome data on Steindachneridion scripta (Pisces, Siluriformes, Pimelodidae) from Brazilian rivers: Giemsa, CBG, G-, and RE banding. Genet. Mol. Res., 4: 734–741. S– 200 Swarça, A.C., Fenocchio, A.S., Cestari, M.M. and Dias, A.L. (2008) Analyses of the structure of NORs in two species of South American Sorubiminae fishes fi (Siluriformes) by means of several cytogenetic techniques. Folia Biol. (Krakow), 56: 31–35. S– 201 Santi-Rampazzo, A.P., Nishiyama, P.B., Ferreira, P.E.B. and Martins-Santos, I.C. (2007) Cytogenetic analysis and description of the sexual chromosome determination system ZZ/ZW of species of the fish genus Serrapinnus (Characidae, Cheirodontinae). Genet. Mol. Res., 6: 504–509. *S–202 Sharma, O.P. and Tripathi, N.K. (1984) Somatic chromosome analysis of Wallago attu, a siluroid fish from Jammu (J & K), India. Perspect. Cytol. Genet., 4: 437–439. (After P-96) S– 203 Singh, M., Kumar, R., Nagpure, N.S., Kushwaha, B., Mani, I., Chauhan, U.K. and Lakra, W.S. (2009) Population distribution of 45S and 5S rDNA in golden mahseer, Tor putitora: population-specific fi FISH marker. J. Genet., 88: 315–320. S– 204 Shields, B.A., Guise, K.S. and Underhill, J.C. (1990) Chromosomal and mitochondrial DNA characterization of a population of dwarf cisco (Coregonus artedii) in Minnesota. Can. J. Fish. Aquat. Sci., 47: 1562–1569. S– 205 Sato, Y. and Nishida, M. (2010) Teleost fish with specifi fic genome duplication as unique models of vertebrate evolution. Environ. Biol. Fishes, 88: 169–188. S– 206 Silva, D.S., Milhomem, S.S.R., Pieczarka, J.C. and Nagamachi, C.Y. (2009) Cytogenetic studies in Eigenmannia virescens (Sternopygidae, Gymnotiformes) and new inferences on the origin of sex chromosomes in the Eigenmannia genus. BMC Genetics, 2009, 10: 74. S– 207 Schultz, R.J. (1961) Reproductive mechanism of unisexual and bisexual strains of the viviparous fish fi Poeciliopsis. Evolution, 15: 302–325. [T] T–
T–
T– T–
1
Takahashi, J. and Oka, M. (1976) Karyotypes and electrophoretic patterns of hemoglobins in loaches of the genus Cobitis. Japan. J. Ichthyol., 23: 114–117. (In Japanese with English abstract) 2 Takai, A. and Ojima, Y. (1982) The assignment of the nucleolus organizer regions in the chromosomes of the carp, the funa and their hybrids (Cyprinidae, Pisces). Proc. Japan Acad., Ser. B, 58: 303–306. 3 Takai, A. and Ojima, Y. (1983) Tetraploidy appeared in the offspring of triploid Ginbuna, Carassius auratus langsdorfii fi (Cyprinidae, Pisces). Proc. Japan Acad., Ser. B, 59: 347–350. 4 Takai, A. and Ojima, Y. (1984) Some features on the nucleolus organizer regions in the chromosomes of the cyprinid fishes. A preliminary report. Proc. Japan Acad., Ser. B, 60: 410–413.
References
T– T–
T–
T– T– T– T– T– T–
T– T–
T– T– T– T– T– T–
T–
T– T–
T– T–
299
5 Takai, A. and Ojima, Y. (1985) Karyotypic studies of five species of Anguilliformes (Pisces). Proc. Japan Acad., Ser. B, 61: 253–256. 6 Takai, A. and Ojima, Y. (1986) Some features on nucleolus organizer regions in fi fish chromosomes. In: Uyeno, T., Arai, R., Taniuchi, T. and Matsuura, K. eds. Indo-Pacific fi fish biology. Ichthyological Society of Japan, Tokyo, pp. 899–909. fi 7 Takai, A. and Ojima, Y. (1987) Comparative studies of karyotypes and distributions of nucleolus organizer regions in pomacentrid fishes. fi I. Proc. Japan Acad., Ser. B, 63: 17–20. 8 Takai, A., Kikuno, T. and Ojima, Y. (1987) Karyotype, C-bands and NORs in Anago anago (Congridae, Pisces). Chrom. Inform. Serv., 42: 30–32. 9 Takai, A. and Ojima, Y. (1987) Comparative chromosomal studies in three balistid fishes. fi La Kromosomo, II, 47/48: 1545–1550. 10 Takai, A. and Ojima, Y. (1988) Karyotype and banding analyses in a balisted fish, fi Balistoides viridescens “gomamongara”. Chrom. Inform. Serv., 45: 25–27. 11 Takai, A. and Ojima, Y. (1988) Chromosomal distribution of nucleolus organizer regions in six species of Rhodeinae (Cyprinidae, Pisces). Proc. Japan Acad., Ser. B, 64: 229–232. 12 Takai, A. and Ojima, Y. (1988) Chromosomal distribution of C-banded heterochromatin in cyprinid fishes. fi Proc. Japan Acad., Ser. B, 64: 49–52. 13 Takai, A. and Ojima, Y. (1989) Conventional and C-banding karyotypes and electrophoretic pattern of muscle protein in fish fi of genus Carassius from Ishigaki Island (Cyprinidae, Pisces). La Kromosomo, II, 54: 1782–1786. 14 Takai, A. and Ojima, Y. (1990) A comparative study of chromosomal C-band distribution in the carp, the funa and their hybrids. Chrom. Inform. Serv., 49: 8–10. 15 Takai, A. and Ojima, Y. (1990) Characteristics of chromosomes and electrophoretic patterns of muscle protein and lactate dehydrogenase in fish fi of genus Carassius (Cypriniformes). Cytologia, 55: 255–263. 16 Takai, A. and Ojima, Y. (1991) Comparative studies of karyotypes and distribution of nucleolus organizer regions in pomacentrid fish. 2. Cytobios, 65: 199–205. 17 Takai, A. and Ojima, Y. (1992) Chromosomal distribution of nucleolus organizer regions in Japanese cyprinid fish. Cytobios, 71: 7–17. 18 Takai, A. and Ojima, Y. (1993) G-banding chromosomes of Chinese crucian carp from cultured fin fi cells. Cytologia, 58: 211–215. 19 Takai, A. and Ojima, Y. (1995) Chromosome evolution associated with Robertsonian rearrangements in pomacentrid fish (Perciformes). Cytobios, 84: 103–110. 20 Takai, A. and Ojima, Y. (1995) A chromosomal study of a serranid fish, fi Chromileptes altivelis (Perciformes), using fin fi cultures. Chrom. Inform. Serv., 59: 9–10. 21 Takai, A. and Ueno, K. (1997) Karyotypes and chromosomal distribution of constitutive heterochromatin and nucleolus organizer regions in three kyphosid fi fish (Perciformes). Cytobios, 89: 141–148. 22 Takai, A. and Ojima, Y. (1998) C-banded karyotype and nucleolus organizer regions of a notopterid fish, fi Notopterus chitala (Notopteridae, Osteoglossiformes). Chrom. Sci., 2: 35–38. 23 Takai, A. and Ojima, Y. (1999) Constitutive heterochromatin distribution in the chromosomes of pomacentrid fishes (Perciformes). Cytologia, 64: 87–91. 24 Takai, A., Yoshikawa, T. and Ojima, Y. (2002) C-banded karyotype and nucleolus organizer regions in a discus fi fish, Symphysodon aequifasciata axelrodi (Cichlidae, Perciformes). Chrom. Sci., 6: 53–55. 25 Takarada, Y., Ojima, Y. and Takai, A. (1989) Establishment of a fi fish cell line transformed by MNNG, RFM. Proc. Japan Acad., Ser. B, 65: 108–111. 26 Takarada, Y., Ojima, Y. and Takai, A. (1989) Gene mapping of the gold-fish fi using mousefish cell hybrids. Chrom. Inform. Serv., 47: 30–32.
300
References
T– 27 Tatewaki, R., Kagohashi, Y. and Kitada, J.-I. (1999) High incidence of NOR associations in metaphases of Lateolabrax latus (Perciformes, Pisces). Chrom. Sci., 3: 75–77. T– 28 Taylor, K.M. (1967) The chromosomes of some lower chordates. Chromosoma, 21: 181–188. T– 29 Teugels, G.G., Ozouf-Costaz, C., Legendre, M. and Parrent, M. (1992) A karyological analysis of the artifi ficial hybridization between Clarias gariepinus (Burchell, 1822) and Heterobranchus longifilis fi Valenciennes, 1840 (Pisces; Clariidae). J. Fish Biol., 40: 81–86. T– 30 Thode, G., Cano, J. and Alvarez, M.C. (1983) Association of nucleolus organizer chromosomes shown by silver staining in Gobius fallax. J. Heredity, 74: 480–482. T– 31 Thode, G. and Alvarez, M.C. (1983) The chromosome complements of two species of Gobius (Teleostei, Perciformes). Experientia, 39: 1312–1314. T– 32 Thode, G., Cano, J. and Alvarez, M.C. (1983) A karyological study on four species of Mediterranean gobiid fishes. Cytologia, 48: 131–138. T– 33 Thode, G., Giles, V. and Alvarez, M.C. (1985) Multiple chromosome polymorphism in Gobius paganellus (Teleostei, Perciformes). Heredity, 54: 3–7. T– 34 Thode, G., Alvarez, M.C., Garcia, E. and Giles, V. (1985) Variations in C-banding patterns and DNA values in two scorpion-fishes fi (Scorpaena porcus and S. notata, Teleostei). Genetica, 68: 69–74. T– 35 Thode, G., Alvarez, M.C., Giles, V. and Garcia, E. (1985) Chromosome complement, C-banding and Ag-NOR location in Ophysurus serpens (Ophichthidae, Auguilliformes). Cytobios, 43: 73–77. T– 36 Thode, G. (1987) Karyotype analysis of the clingfish, fi Lepadogaster candollei Risso (Gobiesociformes). Cytobios, 51: 163–169. T– 37 Thode, G., Martinez, G., Ruiz, J.L. and Lopéz, J.R. (1988) A complex chromosomal polymorphism in Gobius fallax (Gobiidae, Perciformes). Genetica, 76: 65–71. T– 38 Thode, G., Amores, A. and Martinez, G. (1994) The karyotype of Balistes carolinensis Gmelin (Pisces, Tetraodontiformes), a specialized species. Caryologia, 47: 257–263. T– 39 Thompson, K.W. (1976) Some aspects of chromosomal evolution of the Cichlidae (Teleostei: Perciformes) with emphasis on Neotropical forms. Unpublished Ph. D. Dissertation, The University of Texas at Austin. T– 40 Thompson, K.W., Hubbs, C. and Edwards, R.J. (1978) Comparative chromosome morphology of the blackbasses. Copeia, 1978: 172–175. T– 41 Thompson, K.W. (1979) Cytotaxonomy of 41 species of neotropical Cichlidae. Copeia, 1979: 679–691. T– 42 Thompson, K.W. (1981) Karyotypes of six species of African Cichlidae (Pisces: Perciformes). Experientia, 37: 351–352. T– 43 Thompson, K.W. (1991) Cytotaxonomy of the Bantam sunfish fi Lepomis symmetricus (Centrarchidae). I. Robertsonian variation in a population from the Yazoo river basin in Mississippi (U.S.A.). Caryologia, 44: 109–114. T– 44 Thorgaard, G.H. (1976) Robertsonian polymorphism and constitutive heterochromatin distribution in chromosomes of the rainbow trout (Salmo gairdneri). Cytogenet. Cell Genet., 17: 174–184. T– 45 Thorgaard, G.H. (1977) Heteromorphic sex chromosomes in male rainbow trout. Science, 196: 900–902. T– 46 Thorgaard, G.H. (1978) Sex chromosomes in the sockeye salmon: a Y-autosome fusion. Can. J. Genet. Cytol., 20: 349–354. T– 47 Thorgaard, G.H. (1983) Chromosomal differences among rainbow trout populations. Copeia, 1983: 650–662. T– 48 Torres, R.A., Foresti, F. and Oliveira, C. (2002) Occurrence of karyotypical mosaicism in Trichomycterus paolence (Teleostei, Trichomycteridae). Caryologia, 55: 283–287.
References
301
T– 49 Tripathi, N.K. and Das, C.C. (1980) Chromosomes in three species of Asian catfish. fi Copeia, 1980: 916–918. T– 50 Tripathi, N.K. and Das, C.C. (1981) The karyotype of Trichogaster fasciatus (Osphranemidae, Pisces). Curr. Sci., 20: 916–917. T– 51 Tripathi, N.K. and Sharma, O.P. (1986) Karyotypic studies on an air breathing fish, fi Heteropneustes fossilis (Heteropneustidae: Siluridae). Chrom. Inform. Serv., 40: 14–16. T– 52 Tripathi, N.K. and Sharma, O.P. (1987) Cytological studies on six cyprinid fishes. fi Genetica, 73: 243–246. T– 53 Tripathi, N.K. and Das, C.C. (1988) Karyotypes of fi five Indian perciform fishes. Copeia, 1988: 231–233. T– 54 Tsingenopoulos, C. and Karakousis, Y. (1996) Phylogenetic relationships of Leuciscus keadicus, an endemic cyprinid species from Greece, with other Greek species in the genus Leuciscus. Folia Zool., 45: 87–93. T– 55 Tsigenopoulos, C.S., Ráb, P., Naran, D. and Berrebi, P. (2002) Multiple origins of polyploidy in the phylogeny of southern African barbs (Cyprinidae) as inferred from mtDNA markers. Heredity, 88: 466–473. T– 56 Turner, B.J. and Liu, R.K. (1977) Extensive interspecifi fic genetic compatibility in the New World killifish fi genus Cyprinodon. Copeia, 1977: 259–269. T– 57 Turner, B.J., Grudzien, T.A., Adkisson, K.P. and Worrell, R.A. (1985) Extensive chromosomal divergence within a single river basin in the goodeid fi fish, Ilyodon furcidens. Evolution, 39: 122–134. T– 58 Turner, B.J., Diffoot, N. and Rasch, E.M. (1992) The callichthyid catfish fi Corydoras aeneus is an unresolved diploid-tetraploid sibling species complex. Ichthyol. Explor. Freshwaters, 3: 17–23. T– 59 Tsigenopoulos, C.S. and Berrebi, P. (2000) Molecular phylogeny of north Mediterranean freshwater barbs (genus Barbus: Cyprinidae) inferred from cytochrome b sequences: biogeographic and systematic implications. Mol. Phylogenet. Evol., 14: 165–179. T– 60 Taki, Y., Urushido, T., Suzuki, A. and Serizawa, C. (1977) A comparative chromosome study of Puntius (Cyprinidae: Pisces). I. Southeast Asian species. Proc. Japan Acad., Ser. B, 53: 231–235. T– 61 Taki, Y. and Suzuki, A. (1977) A comparative chromosome study of Puntius (Cyprinidae: Pisces). II. Indian and Ceylonese species. Proc. Japan Acad., Ser. B, 53: 282–286. T– 62 Turner, B.J. (1974) Genetic divergence of Death Valley pupfish fi species: biochemical versus morphological evidence. Evolution, 28: 281–294. T– 63 Thacker, C.E. (2009) Phylogeny of Gobioidei and placement within Acanthomorpha, with a new classification fi and investigation of diversifi fication and character evolution. Copeia, 2009: 93–104. T– 64 Terashima, H. and Ida, H. (1991) Karyotypes of three species of the family Cottidae (Scorpaeniformes). Japan. J. Ichthyol., 37: 358–362. T– 65 Taylor, J.S., Braasch, I., Frickey, T., Meyer, A. and Peer, Y.V. de (2003) Genome duplication, a trait shared by 22,000 species of ray-finned fi fish. Genome Res., 13: 382–390. T– 66 Tsukamoto, R.Y., Okazaki, I., Sakai, K., Strussmann, C.A., Takashima, F., Sato, Y., Shirahata, Y. and Sugiyama, H. (1993) Sex chromosomes of Arctoscopus japonicus (Trichodontidae, Perciformes). Advance Abstracts for the spring meeting of Japan Fisheries Society in 1993, p. 337. T– 67 Takai, A. and Izutsu, H. (2008) Diversified fi chromosomal characteristics in Centropyge fishes (Pomacanthidae, Perciformes). Hydrobiologia, 603: 15–23. fi T– 68 Tinni, S.R., Jessy, N.S., Hasan, M.M., Mustafa, Md.G. and Alam, S.S. (2007) Comparative karyotype analysis with differential staining in two forms of Anabas testudineus Bloch. Cytologia, 72: 71–75.
302
References
T– 69 Torres, R.A., Foresti, F. and Oliveira, C. (1998) Comparative cytogenetic studies in allopatric populations of Trichomycterus paolence Eigenmann, 1918 from southeastern Brazil (Siluriformes, Trichomycteridae). Cytologia, 63: 107–114. T– 70 Takai, A. and Kosuga, S. (2008, (2007)) Karyotypes and banded chromosomal features in two anemonefi fishes (Pomacentridae, Perciformes). Chrom. Sci., 10: 71– 74. T– 71 Torres, R.A., Motta, T.S., Nardino, D., Adam, M.L. and Ribeiro, J. (2008) Chromosomes, RAPDs and evolutionary trends of the Neotropical fish fi Mimagoniates microlepis (Teleostei: Characidae: Glandulocaudinae) from coastal and continental regions of the Atlantic forest, southern Brazil. Acta Zool., 89: 253–259. T– 72 Tiersch, T.R., Chandler, R.W., Kallman, K.D. and Wachtel, S.S. (1989) Estimation of nuclear DNA content by flow cytometry in fishes of the genus Xiphophorus. Comp. Biochem. Physiol., 94B: 465–468. T– 73 Tiersch, T.R., Chandler, R.W., Wachtel, S.S. and Elias, S. (1989) Reference standards for flow cytometry and application in comparative studies of nuclear DNA content. Cytofl metry, 10: 706–710. T– 74 Tiersch, T.R. and Chandler, R.W. (1989) Chicken erythrocytes as an internal reference for analysis of DNA content by flow cytometry in grass carp. Trans. Amer. Fish. Soc., 118: 713–717. T– 75 Torres, R.A., Roper, J.J., Foresti, F. and Oliveira, C. (2005) Surprising genomic diversity in the Neotrop. fish fi Synbranchus marmoratus (Teleostei: Synbranchidae): how many species? Neotropical Ichthyol., 3: 277–284. T– 76 Terencio, M.L., Schneider, C.H., Gross, M.C., Silva, A.M., Feldberg, E. and Porto, J.I.R. (2008) Comparative cytogenetics of Carnegiella marthae and Carnegiella strigata (Characiformes, Gasteropelecidae) and description of a ZZ/ZW sex chromosome system. Genet. Mol. Biol., 31 (suppl.): 231–234. T– 77 Torres-Mariano, A.R. and Morelli, S. (2008) B chromosomes in a population of Astyanax eigenmanniorum (Characiformes, Characidae) from the Araguari river basin (Uberlândia, MG, Brazil). Genet. Mol. Biol., 31 (suppl.): 246–249. T– 78 Treco, F.R., Malabarba, L.R., Giuliano-Caetano, L. and Dias, A.L. (2008) Cytogenetic study of two species of the family Pimelodidae (Siluriformes) collected in lago Guaiba, Rio Grande do Sul, Brazil. Neotrop. Ichthyol., 6: 87–92. T– 79 Takai, A. (2007) Chromosomal distribution of C-banded heterochromatin and Agstained nucleolus organizer regions in two moray eels (Muraenidae, Anguilliformes). Chrom. Sci., 10: 15–19. T– 80 Takahashi, E.K., Giuliano-Caetano, L. and Dias, A.L. (1994) Variabilidade cariotipica em Astyanax bimaculatus (Pisces, Tetragonopterinae) coletado no ribeirão três bocas— Londrina, PR. V. Simp. Citogenet. Evol. e Aplic. de Peixes Neotropicais, Botucatu, SP, p. 53 (abstract). (In Portuguese) T– 81 Treco, F.R. and Dias, A.L. (2009) Karyotypes of two species of the genus Pimelodus (Siluriformes, Pimelodidae). Folia Biol. (Krakow), 57: 43–48. T– 82 Teribele, R., Gravena, W., Carvalho, K., Giuliano-Caetano, L. and Dias, A.L. (2008) Karyotypic analysis in two species of fishes of the family Curimatidae: AgNO3, CMA3 and FISH with 18S probe. Caryologia, 61: 211–215. T– 83 Tatewaki, R. and Kitada, J. (1994) Ag-NORs of the two species of Lateolabrax (Perciformes, Pisces). Chrom. Inform. Serv., 57: 18–19. T– 84 Takai, A. (2010, personal communication) T– 85 Takehana, Y., Hamaguchi, S. and Sakaizumi, M. (2008) Different origins of ZZ/ZW sex chromosomes in closely related medaka, Oryzias javanicus and O. hubbsi. Chrom. Res., 16: 801–811.
References
[U] U– 1 U–
2
U–
3
U–
4
U–
5
U–
6
U–
7
U–
8
U–
9
U– 10 U– 11
U– 12
U– 13 U– 14 U– 15 U– 16
U– 17
U– 18
U– 19 U– 20 U– 21
303
Ueda, T. and Ojima, Y. (1978) Differential chromosomal characteristics in the funa subspecies (Carassius). Proc. Japan Acad., Ser. B, 54: 283–288. Ueda, T. and Ojima, Y. (1983) Karyotypes with C-banding patterns of two species in the genus Salvelinus of the family Salmonidae. Proc. Japan Acad., Ser. B, 59: 343–346. Ueda, T., Ojima, Y., Kato, T. and Fukuda, Y. (1983) Chromosomal polymorphisms in the rainbow trout (Salmo gairdneri). Proc. Japan Acad., Ser. B, 59: 168–171. Ueda, T. and Ojima, Y. (1983) Geographic and chromosomal polymorphisms in the Iwana (Salvelinus leucomaenis). Proc. Japan Acad., Ser. B, 59: 259–262. Ueda, T. and Ojima, Y. (1984) Sex chromosomes in the kokanee salmon Oncorhynchus nerka. Bull. Japan. Soc. Sci. Fish., 50: 1495–1498. Ueda, T. and Ojima, Y. (1984) Sex chromosomes in the rainbow trout Salmo gaidneri. Bull. Japan. Soc. Sci. Fish., 50: 1499–1504. Ueda, T. and Ojima, Y. (1984) Cytogenetical characteristics of the progeny from the heteroploidy in the rainbow trout. Proc. Japan Acad., Ser. B, 60: 183–186. Ueda, T., Ojima, Y. and Naka, K. (1985) Chromosomal polymorphisms in the Biwa trout (Salmonidae) with an increase or decrease in constitutive heterochromatin. Proc. Japan Acad., Ser. B, 61: 483–485. Ueda, T. and Kobayashi, J. (1988) The relation between the sex chromosome and the gonadal development in the triploid rainbow trout, Salmo gairdneri. Chrom. Inform. Serv., 44: 8–10. Ueda, T. and Kobayashi, J. (1988) Heteroploidy induced by production of triploids in the kokanee, Oncorhynchus nerka. Chrom. Inform. Serv., 44: 7–8. Ueda, T. and Kobayashi, J. (1990) Disappearance of Ag-NORs originated from maternal species in hybrids between female Atlantic salmon and male brown trout. Chrom. Inform. Serv., 49: 25–26. Ueda, T., Hayashi, M., Koide, N., Sofuni, T. and Kobayashi, J. (1991) Preliminary examination of the mutagenicity test using embryo cells of rose bitterling, Rhodeus ocellatus ocellatus. Chrom. Inform. Serv., 51: 12–14. Ueda, T. and Kobayashi, J. (1991) Chromosomal polymorphisms in oily bitterling Acheilognathus limbatus. Chrom. Inform. Serv., 50: 13–14. Ueda, T., Fukuda, H. and Kobayashi, J. (1991) Karyological study of the Dolly Varden Salvelinus malma from Alaska. Japan. J. Ichthyol., 37: 354–357. Ueda, T., Sato, R., Iwata, M., Komaru, A. and Kobayashi, J. (1991) The viable 3.5n trouts produced between diploid females and allotriploid males. Japan. J. Genet., 66: 71–75. Ueda, T., Onozaki, H. and Hayashi, F. (1994) Tetraploid hybrids between female Rhodeus o. ocellatus and male Rhodeus atremius. Bull. Dept. Educ. Utsunomiya Univ., 44: 65–72. (In Japanese with English abstract) Ueda, T. and Takahashi, Y. (1995) Chromosomal studies of three kinds of hybrids in acheilognathin fishes. Bull. Dept. Educ. Utsunomiya Univ., 45: 59–63. (In Japanese with English abstract) Ueda, T., Arai, R., Akai, Y., Ishinabe, T. and Wu, H.L. (1996) Karyological study of a bitterling Rhodeus atremius (Teleostei: Cyprinidae) collected in Zhejiang, China. Cytobios, 86: 265–268. Ueda, T. (1996) The possible induction of androgenetic diploid rainbow trout by an application of heat-shock. Chrom. Inform. Serv., 61: 12–13. Ueda, T. (1996) Chromosome aberrations in salmonid fish embryos using prolongedstored eggs in coelomic fluid. fl Chrom. Inform. Serv., 61: 13–15. Ueda, T. (1996) Chromosomal aberrations induced by retention of cyprinid fish fi unfertilized eggs in freshwater. Cytologia, 61: 423–430.
304
References
U– 22 Ueda, T., Mashiko, N., Takizawa, H., Akai, Y., Ishinabe, T., Arai, R. and Wu, H. (1997) Ag-NOR variation in chromosomes of Chinese bitterlings, Rhodeus lighti and Tanakia himantegus (Cypriniformes, Cyprinidae). Ichthyol. Res., 44: 302–305. U– 23 Ueda, T. and Naoi, H. (1999) BrdU-4Na-EDTA-Giemsa band karyotypes of 3 small freshwater fish, fi Danio rerio, Oryzias latipes, and Rhodeus ocellatus. Genome, 42: 531– 535. U– 24 Ueda, T., Naoi, H. and Arai, R. (2001) Flexibility on the karyotype evolution in bitterlings (Pisces, Cyprinidae). Genetica, 111: 423–432. U– 25 Ueno, K. (1974) Chromosomal polymorphism and variant of isozymes in geographical populations of Pseudobagrus aurantiacus, Bagridae. Japan. J. Ichthyol., 21: 158–164. U– 26 Ueno, K. (1976) Chromosomes of bitterlings. Tansuigyo, 2(1): 134–138. (In Japanese) U– 27 Ueno, K. and Ojima, Y. (1976) Diploid-tetraploid complexes in the genus Cobitis (Cobitidae, Cyprinida). Proc. Japan Acad., Ser. B, 52: 446–449. U– 28 Ueno, K. and Ojima, Y. (1977) Chromosome studies of two species of the genus Coreoperca (Pisces: Perciformes), with reference to the karyotypic differentiation and evolution. Proc. Japan Acad., Ser. B, 53: 221–225. U– 29 Ueno, K., Iwai, S. and Ojima, Y. (1980) Karyotypes and geographical distribution in the genus Cobitis (Cobitidae). Bull. Japan. Soc. Sci. Fish., 46: 9–18. (In Japanese with English abstract) U– 30 Ueno, K. (1981) Karyotypes of Cobitidae. Mar. Sci. Monthly, 13(1): 60–70. (In Japanese) U– 31 Ueno, K. and Arimoto, B. (1982) Induction of triploids in Rhodeus ocellatus ocellatus by cold shock treatment of fertilized eggs. Experientia, 38: 544–546. U– 32 Ueno, K. (1984) Induction of triploid carp and their haematological characteristics. Japan. J. Genet., 59: 585–591. U– 33 Ueno, K. and Ojima, Y. (1984) A chromosome study of nine species of Korean cyprinid fish. Japan. J. Ichthyol., 31: 338–344. fi U– 34 Ueno, K. (1985) Karyotypes of bagrid catfishes fi in Japan and Korea. Mar. Sci. Monthly, 17(2): 102–108. (In Japanese) U– 35 Ueno, K., Senou, H. and Kim, I.S. (1985) A chromosome study of five fi species of Korean cobitid fish. Japan. J. Genet., 60: 539–544. U– 36 Ueno, K., Ikenaga, Y. and Kariya, H. (1986) Potentiality of application of triploidy to the culture of Ayu, Plecoglossus altivelis Temminck et Schlegel. Japan. J. Genet., 61: 71–77. U– 37 Ueno, K., Nagase, A. and Ye, Y.J. (1988) Tetraploid origin of the karyotype of the Asian sucker, Myxocyprinus asiaticus. Japan. J. Ichthyol., 34: 512–514. U– 38 Ueno, K. and Ojima, Y. (1991) Notes on the chromosomes of Girella melanichthys and Lutjanus russelli (Pisces, Perciformes). Chrom. Inform. Serv., 52: 3–5. U– 39 Ueno, K. and Jarayabhand, P. (1991) Karyotypes of a serranid, Epinephelus malabaricus and a centropomid, Psammoperca waigiensis (Pisces, Perciformes). Chrom. Inform. Serv., 51: 23–25. U– 40 Ueno, K., Ye, Y.J. and Umeoka, T. (1992) A comparative study of chromosomes in the cyprinid fish fi genera Gnathopogon and Squalidus of Japan. Bull. Japan. Soc. Sci. Fish., 58: 1273–1277. (In Japanese with English abstract) U– 41 Ueno, K. and Kang, J.H. (1992) Multiple sex chromosomes in the redfin fi velvetfi fish, Hypodytes rubripinnis. Japan. J. Ichthyol., 39: 170–173. U– 42 Ueno, K. and Takai, A. (1997) Nucleolus organizer regions detected on three chromosome pairs in Thalassoma cupido (Pisces: Perciformes). Fish. Sci., 63: 476–477. U– 43 Ueno, K. and Takai, A. (2000) Chromosome evolution involving Robertsonian rearrangements in Xyrichthys fish (Labridae, Perciformes). Cytobios, 103: 7–15. U– 44 Ueno, K., Ota, K. and Kobayashi, T. (2001) Heteromorphic sex chromosomes of lizardfish fi (Synodontidae): focus on the ZZ-ZW1W2 system in Trachinocephalus myops. Genetica, 111: 133–142.
References
305
U– 45 Uribe-Alcocer, M., Arreguin-Espinosa, J., Torres-Padilla, A. and Castro-Pérez, A. (1983) Los cromosomas de Dormitator latifrons (Pisces: Gobiidae). An. Inst. Cienc. Mar Limnol. Univ. Nal. Autón. México, 10: 23–30. (In Spanish with English abstract) U– 46 Uribe-Alcocer, M. and Ramirez-Escamilla, A. (1989) Comparación citogenética entre las especies del género Dormitatorr (Pisces: Gobiidae). An. Inst. Cienc. Mar Limnol. Univ. Nal. Autón. México, 16: 75–80. (In Spanish with English abstract) U– 47 Uribe-Alcocer, M. and Arreguin-Espinosa, J. (1989) Los cromosomas de los peces Oreochromis urolepishornorumy Oreochromis mossambicus(Pisces: Cichlidae).An. Inst. Cienc. Mar Limnol. Univ. Nal. Autón. México, 16: 189–198. (In spanish with English abstract) U– 48 Uribe-Alcocer, M., Nader-Garcia, B. L. and Valdés-Morales, N. (1992) Karyotypes of two cichlid fishes fi from Mexico, Cichlasoma ellioti and C. trimaculatum. Japan. J. Ichthyol., 39: 174–177. U– 49 Uribe-Alcocer, M., Tellez-Vargas, C. and Diaz-Jaimes, P. (1999) Chromosomes of Cichlasoma istlanum (Perciformes: Cichlidae) and karyotype comparison of two presumed subspecies. Rev. Biol. Trop., 47: 1051–1059. U– 50 Uribe-Alcocer, M., Olvera-Garcia, H. and Diaz-Jaimes, P. (2002) Karyotype analysis in three species of the genus Chirostoma (Atheriniformes: Atherinidae). Ichthyol. Res., 49: 85–88. U– 51 Urushido, T., Takahashi, E. and Taki, Y. (1975) Karyotypes of three species of fi fishes in the order Osteoglossiformes. Chrom. Inform. Serv., 18: 20–22. U– 52 Urushido, T., Takahashi, E., Taki, Y. and Kondo, N. (1977) A karyotype study of polypterid fishes, with notes on their phyletic relationship. Proc. Japan Acad. Ser. B, 53: 95–98. U– 53 Uwa, H., Iwamatsu, T. and Ojima, Y. (1981) Karyotype and banding analyses of Oryzias celebensis (Oryziatidae, Pisces) in cultured cells. Proc. Japan Acad., Ser. B, 57: 95–99. U– 54 Uwa, H. and Ojima, Y. (1981) Detailed and banding karyotype analyses of the medaka, Oryzias latipes in cultured cells. Proc. Japan Acad., Ser. B, 57: 39–43. U– 55 Uwa, H. and Iwata, A. (1981) Karyotype and cellular DNA content of Oryzias javanicus (Oryziatidae, Pisces). Chrom. Inform. Serv., 31: 24–26. U– 56 Uwa, H., Iwata, A., Iwamatsu, T. and Ojima, Y. (1982) Chromosomal study of three species of the medaka, genus Oryzias. Medaka, 1: 11. U– 57 Uwa, H., Tanaka, K. and Formacion, M.J. (1982) Karyotype and banding analyses of the Hainan medaka, Oryzias curvinotus (Pisces). Chrom. Inform. Serv., 33: 15–17. U– 58 Uwa, H., Iwamatsu, T. and Saxena, O.P. (1983) Karyotype and cellular DNA content of the Indian ricefish, fi Oryzias melastigma. Proc. Japan Acad., Ser. B, 59: 43–47. U– 59 Uwa, H. (1986) Karyotype evolution and geographical distribution in the ricefi fish, genus Oryzias (Oryziidae). In: Uyeno, T., Arai, R., Taniuchi, T. and Matsuura, K. eds. IndoPcifi fic fish biology. Ichthyological Society of Japan, Tokyo, pp. 867–876. U– 60 Uwa, H. and Magtoon, W. (1986) Description and karyotype of a new ricefish, fi Oryzias mekongensis, from Thailand. Copeia, 1986: 473–478. U– 61 Uwa, H. and Jeon, S.R. (1987) Karyotypes in two divergent groups of a ricefish, fi Oryzias latipes, from Korea. Korean J. Limnol., 20: 139–147. (In Korean with English abstract) U– 62 Uwa, H. and Parenti, L.R. (1988) Morphometric and meristic variation in ricefishes, fi genus Oryzias: a comparison with cytogenetic data. Japan. J. Ichthyol., 35: 159–166. U– 63 Uwa, H., Wang, R.F. and Chen, Y.R. (1988) Karyotypes and geographical distribution of ricefi fishes from Yunnan, southwestern China. Japan. J. Ichthyol., 35: 332–340. U– 64 Uyeno, T. and Miller, R.R. (1971) Multiple sex chromosomes in a Mexican cyprinodontid fish. Nature, 231: 452–453. U– 65 Uyeno, T. and Miller, R.R. (1972) Second discovery of multiple sex chromosomes among fishes. Experientia, 28: 223–225. U– 66 Uyeno, T. and Smith, G.R. (1972) Tetraploid origin of the karyotype of catostomid fishes. fi Science, 175: 644–646.
306
References
U– 67 Uyeno, T. (1972) Chromosomes of offspring resulting from crossing coho salmon and brook trout. Japan. J. Ichthyol., 19: 166–171. U– 68 Uyeno, T. (1973) A comparative study of chromosomes in the teleostean fish fi order Osteoglossiformes. Japan. J. Ichthyol., 20: 211–217. U– 69 Uyeno, T. and Miller, R.R. (1973) Chromosomes and the evolution of the plagopterin fishes (Cyprinidae) of the Colorado river system. Copeia, 1973: 776–782. fi U– 70 Uyeno, T., Miller, R.R. and Fitzsimons, J.M. (1983) Karyology of the cyprinodontid fi fishes of the Mexican family Goodeidae. Copeia, 1983: 497–510. U– 71 Ueda, T., Iijima, K., Naoi, H., Arai, R., Ishinabe, T. and Jeon, S.R. (2006) Karyotypes of three Tanakia bitterlings (Pisces, Cyprinidae) from East Asia. Cytologia, 71: 251–255. U– 72 Ueda, T. (1985) Chromosomes of salmonid fishes. fi Mar. Sci. Monthly, 17(2): 95–101. (In Japanese) U– 73 Ueda, T. and Kobayashi, J. (1990) Karyotype differentiation of Atlantic salmon, Salmo salar; especially the sequential karyotype change. La Kromosomo, II, 58: 1967–1972. U– 74 Uwa, H. (1992) Live specimens of ricefishes fi and relatives suborder Adrianichthyoidei maintained in Shinshu University: a list with karyotypic data. Medaka, 4: 41–44. U– 75 Uwa, H. (1992) Karyotype evolution of ricefishes fi in Sulawesi. In: Uwa, H. and Soeroto, B. eds. Phylogeny and species differentiation of Adrianichthyoidei in Indonesia. Interim report. Japan, pp. 145–148. (In Japanese with English abstract) U– 76 Uwa, H. (1991) Cytosystematic study of the Hainan medaka, Oryzias curvinotus, from Hong Kong (Teleostei: Oryziidae). Ichthyol. Explor. Freshwaters, 1: 361–367. U– 77 Ueda, T. and Ojima, Y. (1984) Karyological characteristics of the brown trout, the Japanese char and their hybrids. Proc. Japan Acad., Ser. B, 60: 249–252. U– 78 Ueda, T., Sawada, M. and Kobayashi, J. (1987) Cytogenetical characteristics of the embryos between diploid female and triploid male in rainbow trout. Japan. J. Genet., 62: 461–465. U– 79 Ueno, K. and Takai, A. (2008) Multiple sex chromosome system of X1X1X2X2/X1X2Y type in lutjanid fish, fi Lutjanus quinquelineatus (Perciformes). Genetica, 132: 35–41. U– 80 Ueda, T. (2007) Chromosomal differentiation in bitterlings (Pisces, Cyprinidae). In: Pisano, E., Ozouf-Costaz, C., Foresti, F. and Kapoor, B.G. eds. Fish cytogenetics. Science Publishers, Enfi field, pp. 3–16. U– 81 Ueda, T. (2010, personal communication) U– 82 Uribe-Alcocer, M. and Diaz-Jaimes, P. (1996) Chromosome complements of Gobionellus microdon and Eleotris picta collected in Mexico. J. Fish Biol., 48: 796–798. U– 83 Ueno, K. and Kang. J.H. (1992) Distribution of heterochromatin and nucleolar organizer regions in the chromosomes of two girellid and three kyphosid fishes. fi Advance abstracts for the 25th annual meeting, 1992, The Ichthyological Society of Japan, Tokyo, p. 46. (In Japanese) [V] V– 1 Van de Peer, Y., Taylor, J.S. and Meyer, A. (2003) Are all fishes ancient polyploids? J. Structural Functional Genomics, 3: 65–73. V– 2 Vasiliev, V.P. (1975) Karyotypes of different forms of the Kamchatka trout, Salmo mykiss and the rainbow trout, Salmo gairdneri. J. Ichthyol., 15(6): 889–900. V– 3 Vasiliev, V.P., Makeeva, A.P. and Ryabov, I.N. (1975) On the triploidy of remote hybrids of carp (Cyprinus carpio L.) with other representatives of Cyprinidae. Genetika, 11: 49–56. (In Russian with English summary) V– 4 Vasiliev, V.P. (1978) Chromosome polymorphism in Spicara smaris (Pisces, Centracanthidae). Zool. Zhurnal, 57: 1276–1279. (In Russian with English summary) V– 5 Vasiliev, V.P. (1978) Karyotypes of 5 species of fi fishes (Pisces) from the Black Sea. Tsitologiya, 20: 1092–1094. (In Russian with English summary)
References
V–
V– V–
V–
V– V– V–
V– V– V– V–
V–
V– V– V–
V–
V– V–
V–
307
6 Vasiliev, V.P., Makeeva, A.P. and Ryabov, I.N. (1978) The study of chromosome complexes in cyprinid fish and their hybrids. Genetika, 14: 1453–1460. (In Russian with English summary) 7 Vasiliev, V.P. (1979) On the role of karyotypes in the whole complex of isolating mechanisms in fishes. fi J. General Biol., 40: 623–628. (In Russian with English summary) 8 Vasiliev, V.P. and Polykarpova, L.K. (1980) The karyotypes of the Black Sea species of the genera Crenilabrus and Symphodus (Perciformes, Labridae) and the evidence of natural hybridization between C. ocellatus and C. quinquemaculatus. Zool. Zhurnal, 59: 1334–1342. (In Russian with English summary) 9 Vasiliev, V.P., Sokolov, L.I. and Serebryakova, E.V. (1980) Karyotype of the Lena River Siberian sturgeon Acipenser baeri Brandt and some aspects of the karyotype evolution in Acipenseriformes. Vopr. Ichthyol., 20: 814–822. (In Russian) 10 Vasiliev, V.P. and Sokolov, L.I. (1980) A method of studying karyotypes in the Chondrostei. Tsitologiya, 22: 1106–1109. (In Russian with English summary) 11 Vasiliev, V.P. (1980) The selective mortality of different chromosome morphs in Spicara fl flexuosa Raf. Genetica, 52/53: 327–331. 12 Vasiliev, V.P., Ivanov, V.N. and Polykarpova, L.K. (1980) Frequencies of chromosomal fl Raf., Centracanthimorphs in various size groups of Black Sea bass (Spicara flexuosa dae). In: Kirpichnikov, V.S. ed. Karyological variability, mutagenesis and gynogenesis in fishes. Inst. Cytol. Acad. Sci. USSR, Leningrad, pp. 43–49. (In Russian with English summary) 13 Vasiliev, V.P. (1980) Chromosome numbers in fish-like fi vertebrates and fish. J. Ichthyol., 1980(3): 1–38. 14 Vasiliev, V.P. and Vorobieva, E.I. (1981) Evolutionary aspect of natural hybrid fi fishes. God. Biol. Inst. Univ. Saraevu, 34: 171–194. (In Russian) 15 Vasiliev, V.P. and Vasilieva, Y.D. (1982) New diploid-polyploid complex in fi fish. Dokl. Akad. Nauk SSSR, 266: 250–252. (In Russian) 16 Vasiliev, V.P. (1982) Evolutionary aspects of the karyotypic diversity and the problem of stasipatric speciation in fishes. J. General Biol., 43: 455–469. (In Russian with English summary) 17 Vasiliev, V.P., Vasilieva, Y.D. and Osinov, A.G. (1983) The first fi evidence favourable for the basic hypothesis of reticulated speciation in vertebrates. Dokl. Akad. Nauk SSSR, 271: 1009–1012. (In Russian) 18 Vasiliev, V.P. and Grigoryan, K.A. (1990) Broad chromosome polymorphism in the Caucasus river goby. Dokl. Akad. Nauk SSSR, 311: 1509–1511. (In Russian) 19 Vasiliev, V.P. (1990) Diploid-triploid complex in the genus Cobitis (Pisces, Cobitidae). Dokl. Akad. Nauk SSSR, 312: 249–252. (In Russian) 20 Vasiliev, V.P., Vasilieva, Y.D. and Osinov, A.G. (1991) The problem of reticulate species formation in vertebrates of the diploid-triploid-tetraploid complex in the genus Cobitis (Cobitidae). IV. Tetraploid form. J. Ichthyol., 31(2): 21–35. 21 Vasiliev, V.P. and Vasilieva, Y.D. (1992) Karyological evidence of the separate species status of Neogobius kessleri (Günther) and Neogobius gorlap Iljin (Pisces, Gobiidae). Dokl. Akad. Nauk SSSR, 324: 898–900. (In Russian) 22 Vasiliev, V.P. and Grigoryan, K.A. (1993) Karyology of the Gobiidae. J. Ichthyol., 33(2): 1–16. 23 Vasiliev, V.P. and Grigoryan, K.A. (1994) Chromosome polymorphism and karyological relations of gobies of the group Neogobius cephalarges Pallas—Neogobius platyrostris Pallas (Gobiidae). Russian J. Genet., 30: 1087–1094. 24 Vasilieva, Y.D., Osinov, A.G. and Vasiliev, V.P. (1989) On the problem of reticular speciation in vertebrates: diploid-triploid-tetraploid complex in the genus Cobitis (Cobitidae). I. Diploid species. Vopr. Ichthyol., 29: 705–717. (In Russian)
308
References
V– 25 Vasilieva, Y.D., Collares-Pereira, M.J. and Madeira, J. (1992) Variability, divergence, and taxonomy of loach on the Iberian Peninsula. J. Ichthyol., 32(4): 69–84. V– 26 Vasilieva, Y.D. and Ráb, P. (1992) Golden spiny loach, Sabanejewia aurata (Cobitidae), from the Laborec River. Vopr. Ichthyol., 32(2): 176–181. (In Russian) V– 27 Vasilieva, Y.D. and Vasiliev, V.P. (1994) On the systematics of Caucasian gobies (Gobiidae): craniological and karyological analyses and distribution by biotope of some populations from the Black Sea and Caspian basins. Vopr. Ichthyol., 34(2): 187–194. (In Russian) V– 28 Vasilieva, Y.D., Vasiliev, V.P. and Skomorokhov, M.O. (2003) Loaches (Misgurnus, Cobitidae) of Asiatic Russia: II. Morphology, synonymy, diagnoses, karyology, biology, and distribution. J. Ichthyol., 43: 501–510. V– 29 Vega, L., Diaz, E., Cross, I. and Rebordinos, L. (2002) Cytogenetic and isozymatic characterization of the sole Solea senegalensis Kaup, 1858. Bol. Inst. Espanol Oceanogr., 18: 245–250. (In Spanish with English abstract) V– 30 Venere, P.C. and Galetti Jr., P.M. (1985) Natural triploidy and chromosome B in the fish Curimata modesta (Curimatidae, Characiformes). Brazil. J. Genet., 8: 681– 687. V– 31 Venere, P.C. and Galetti Jr., P.M. (1995) Multiple longitudinal bands in fish fi chromosomes: comparison of structural G-banding and replication R bands among curimatids. Cytobios, 84: 71–78. V– 32 Venere, P.C., Pfi fister, S.C., Moreira-Filho, O. and Galetti Jr., P.M. (1997) Chromosomal characterization in Characinae and Cynopotaminae (Pisces, Characidae). Cytobios, 92: 123–131. V– 33 Verma, G.K. (1968) Studies on the structure and behaviour of chromosomes of certain fresh water and marine gobiid fi fishes. Ann. Nat. Acad. Sci. India, 1968: 178. V– 34 Vervoort, A. (1979) Karyotype and DNA content of Phractolaemus ansorgei Blgr. (Teleostei: Gonorynchiformes). Experientia, 35: 479–480. V– 35 Vervoort, A. (1980) The karyotypes of seven species of Tilapia (Teleostei: Cichlidae). Cytologia, 45: 651–656. V– 36 Vervoort, A. (1980) Karyotype of Caecobarbus geertsi Boulenger, (Teleostei: Cyprinidae). Nucleus, 23: 76–77. V– 37 Vervoort, A. (1980) Karyotypes and nuclear DNA contents of Polypteridae (Osteichthyes). Experientia, 36: 646–647. V– 38 Vervoort, A. (1980) Tetraploidy in Protopterus (Dipnoi). Experientia, 36: 294–295. V– 39 Vicente, V.E., Moreira-Filho, O. and Camacho, J.P.M. (1996) Sex-ratio distortion associated with the presence of a B chromosome in Astyanax scabripinnis (Teleostei, Characidae). Cytogenet. Cell Genet., 74: 70–75. V– 40 Viktorovsky, R.M. (1978) The evolution of karyotypes in chars of the genus Salvelinus. Tsitologiya, 20: 833–838. (In Russian with English summary) V– 41 Viktorovsky, R.M. and Maximova, T.G. (1978) Chromosomal complex of Coregonus ussuriensis and some aspects of the evolution of karyotypes of Coregonidae. Tsitologiya, 20: 967–970. (In Russian with English summary) V– 42 Viktorovsky, R.M. and Ermolenko, L.N. (1982) The chromosomal complexes of Coregonus nasus and C. lavaretus and the problem of the Coregonus karyotype divergence. Tsitologiya, 24: 797–801. (In Russian with English summary) V– 43 Viktorovsky, R.M., Ermolenko, L.N., Makoedov, A.N., Frolov, S.V. and Shevchishin, A.A. (1983) Karyotype divergence in the genus Coregonus. Tsitologiya, 25: 1309–1315. (In Russian with English summary) V– 44 Viktorovsky, R.M., Makoedov, A.N. and Shevchishin, A.A. (1985) The chromosomal sets of Brachymystax lenok and Hucho taimen and the divergency of the salmonid genera. Tsitologiya, 27: 703–709. (In Russian with English summary)
References
309
V– 45 Vissotto, P.C., Foresti, F. and Oliveira, C. (1997) A ZZ/ZW sex chromosome system in Imparfinis fi mirini (Pisces, Siluriformes). Cytologia, 62: 61–66. V– 46 Vissotto, P.C., Foresti, F. and Oliveira, C. (1999) Karyotype description of five fi species of Pimelodidae (Teleostei, Siluriformes). Chrom. Sci., 3: 1–7. V– 47 Vissotto, P.C., Foresti, F. and Oliveira, C. (1999) Supernumerary chromosomes in two species of the family Pimelodidae (Teleostei, Siluriformes). Chrom. Sci., 3: 9–13. V– 48 Vissotto, P.C., Foresti, F. and Oliveira, C. (2001) Karyotypic characterization of two fi (Teleostei, Siluriformes, Heptapteridae). Chrom. Sci., 5: species of the genus Imparfinis 97–103. V– 49 Vitturi, R., Carbone, P., Catalano, E. and Macaluso, M. (1984) Chromosome polymorphism in Gobius paganellus Linneo 1758 (Pisces, Gobiidae). Biol. Bull., 167: 658–668. V– 50 Vitturi, R., Carbone, P., Macaluso, M. and Catalano, E. (1986) Karyotypic variability in the gadid fish, fi Gaidropsarus mediterraneus (Linnaeus, 1758). Copeia, 1986: 826–829. V– 51 Vitturi, R., Carbone, P., Catalano, E. and Macaluso, M. (1986) Karyotypes of five fi species of Blennioidea (Pisces, Perciformes). Caryologia, 39: 273–279. V– 52 Vitturi, R., Mazzola, A., Macaluso, M. and Catalano, E. (1986) Chromosomal polymorphism associated with Robertsonian fusion in Seriola dumerili (Risso, 1810) (Pisces: Carangidae). J. Fish Biol., 26: 529–534. V– 53 Vitturi, R., Catalano, E., Macaluso, M. and Zava, B. (1986) Karyotypes of nine species of the family Labridae (Pisces, Perciformes). Biol. Zentralbl., 105: 519–530. V– 54 Vitturi, R. (1988) Karyotype analysis and evidence for Robertsonian fusion in Trigla lucerna L. and Helicolenus dactylopterus (Delar.) (Pisces, Scorpaeniformes). Biol. Zentralbl., 107: 553–558. V– 55 Vitturi, R. and Catalano, E. (1988) Karyotype of Carapus acus (Brünnich, 1768) (Pisces, Carapidae). Caryologia, 41: 131–135. V– 56 Vitturi, R. and Catalano, E. (1988) Karyotypes in two species of the genus Hippocampus (Pisces: Syngnathiformes). Mar. Biol., 99: 119–121. V– 57 Vitturi, R., Zava, B., Catalano, E., Maiorca, A. and Macaluso, M. (1988) Karyotypes in five Mediterranean teleostean fishes. Biol. Zentralbl., 107: 339–344. fi V– 58 Vitturi, R., Catalano, E., Maiorca, A. and Carollo, T. (1988) Karyological studies in Coris julis (Pisces, Labridae). Genetica, 76: 219–223. V– 59 Vitturi, R. and Catalano, E. (1989) Multiple chromosome polymorphism in the gobiid fi Gobius niger jozo L. 1758 (Pisces, Gobiidae). Cytologia, 54: 231–235. fish V– 60 Vitturi, R., Catalano, E., Lo Conte, M.R. and Spampinato, P. (1989) Ag-NORs and C-banding pattern of the labrid species Xyrichthys novacula (L.) (Pisces, Perciformes). Biol. Zentralbl., 108: 263–266. V– 61 Vitturi, R., Mazzola, A. and Catalano, E. (1990) Karyotype analysis, Ag-NORs and C-bands location in Pagellus bogaraveo (Brünnich 1768) (Pisces, Sparidae). Biol. Zentralbl., 109: 223–226. V– 62 Vitturi, R. and Rasotto, M.B. (1990) Karyotype analysis of Cottus gobio L. (Pisces, Cottidae). Cytobios, 62: 81–86. V– 63 Vitturi, R., Mazzola, A., Catalano, E. and Lo Conte, M.R. (1990) Karyotype analysis, nucleolar organizer regions (NORs), and C-banding pattern of Dicentrarchus labrax (L.) and Dicentrarchus punctatus (Bloch, 1792) (Pisces, Perciformes) with evidence of chromosomal structural polymorphism. Cytologia, 55: 425–430. V– 64 Vitturi, R., Catalano, E. and Lafargue, F. (1991) Evidence for heteromorphic sex chromosomes in Zeus faber (Pisces, Zeiformes): nucleolus organizer regions and C-banding pattern. Cytobios, 68: 37–43. V– 65 Vitturi, R., Catalano, E. and Colombera, D. (1992) Karyotype analyses of the teleostean fi Balistes carolinensis and Lophius piscatorius suggest the occurrence of two different fish karyoevolutional pathways. Biol. Zentralbl., 111: 215–222.
310
References
V– 66 Vitturi, R., Catalano, E. and Barbieri, R. (1992) Karyological and molecular characterization of Mullus surmuletus and Mullus barbatus (Pisces, Mullidae). Cytologia, 57: 65–74. V– 67 Vitturi, R. and Lafargue, F. (1992) Karyotype analyses reveal inter-individual polymorphism and association of nucleolus-organizer-carrying chromosomes in Capros aper (Pisces: Zeiformes). Mar. Biol., 112: 37–41. V– 68 Vitturi, R., Colombera, D. and Catalano, E. (1993) Intra-populational chromosome polymorphisms in four teleost species. Cytobios, 75: 171–182. V– 69 Vitturi, R., Catalano, E., Colomba, M.S., Montagnino, L. and Pellerito, L. (1995) Karyotype analysis of Aphanius fasciatus (Pisces, Cyprinodontiformes): Ag-NORs and C-band polymorphisms in four populations from Sicily. Biol. Zentralbl., 114: 392–402. V– 70 Vitturi, R., Libertini, A., Campolmi, M., Calderazzo, F. and Mazzola, A. (1998) Conventional karyotype, nucleolar organizer regions and genome size in fi five Mediterranean species of Syngnathidae (Pisces, Syngnathiformes). J. Fish Biol., 52: 677–687. V– 71 Völker, M., Ráb, P. and Kullmann, H. (2005) Karyotype differentiation in Chromaphyosemion killifishes fi (Cyprinodontiformes, Nothobranchiidae). I: Chromosome banding patterns of C. alpha, C. kouamense and C. lugens. Genetica, 125: 33–41. V– 72 Vasiliev, V.P. (1985) Evolutionary karyology of fishes. Publishing House Nauka, Moscow. (In Russian) V– 73 Vinogradov, A.E. (2004) Evolution of genome size: multilevel selection, mutation bias or dynamical chaos? Curr. Opinion Genet. Develop., 14: 620–626. V– 74 Vasiliev, V.P. (1975) Karyotypes of some forms of arctic char Salvelinus alpinus (L.) from the Kamchatka water bodies. Vopr. Ichthyol., 15: 417–430. (In Russian) V– 75 Vitturi, R. and Catalano, E. (1988) Karyotypic variability associated with Robertsonian fusion in two species of the family Ophidiidae (Pisces, Perciformes). Boll. Zool., 55: 55–58. V– 76 Vila, I. (2006) A new species of killifi fish in the genus Orestias (Teleostei: Cyprinodontidae) from the southern high Andes, Chile. Copeia, 2006: 472–477. V– 77 Valentim, F.C.S., Falcão, J.N., Porto, J.I.R. and Feldberg, E. (2006) Chromosomes of three freshwater stingrays (Rajiformes Potamotrygonidae) from the Rio Negro basin, Amazon, Brazil. Genetica, 128: 33–39. V– 78 Valcarcel, A., Brunner, P. and Maggese, M.C. (1993) B-chromosome polymorphism in the South American catfi fish, Rhamdia sapo. Aquaculture, 110: 111–118. V– 79 Völker, M., Ráb, P. and Kullmann, H. (2007) Banded karyotypes of Chromaphyosemion poliaki and C. volcanum (Cyprinodontiformes, Nothobranchiidae), with a discussion of the validity of C. poliaki. Ichthyol. Explor. Freshwaters, 18: 1–8. V– 80 Völker, M., Sonnenberg, R., Ráb, P. and Kullmann, H. (2006) Karyotype differentiation fishes (Cyprinodontiformes, Nothobranchiidae). II: Cytogein Chromaphyosemion killifi netic and mitochondrial DNA analyses demonstrate karyotype differentiation and its evolutionary direction in C. riggenbachi. Cytogenet. Genome Res., 115: 70–83. V– 81 Völker, M., Sonnenberg, R., Ráb, P. and Kullmann, H. (2007) Karyotype differentiation in Chromaphyosemion killifishes fi (Cyprinodontiformes, Nothobranchiidae). III: Extensive karyotypic variability associated with low mitochondrial haplotype differentiation in C. bivittatum. Cytogenet. Genome Res., 116: 116–126. V– 82 Vasilieva, Y.D., Vasiliev, V.P. and Boltachev, A.R. (2005) Taxonomic relationships of gudgeons (Gobio, Gobioninae, Cyprinidae) of Crimea. J. Ichthyol., 45: 730–743. V– 83 Vasilieva, Y.D., Vasiliev, V.P. and Kuga, T.I. (2004) On taxonomy of gudgeons of the genus Gobio (Gobioninae, Cyprinidae) of Europe: a new gudgeon species Gobio kubanicus from the basin of the Kuban river. J. Ichthyol., 44: 716–731. V– 84 Vasconcelos, C. and Martins-Santos, I.C. (2000) Chromosome polymorphism in species of the Pimelodidae family (Pisces, Siluriformes). Hereditas, 132: 103–109.
References
311
V– 85 Vieira Lacerda, M.C. and Maistro, E.L. (2007) Cytogenetic analysis of three sympatric Gymnotus species (Teleostei: Gymnotidae) from the Fundo stream, MG, Brazil. Cytologia, 72: 89–93. V– 86 Vinogradov, A.E. (1998) Genome size and GC-percent in vertebrates as determined by flow cytometry: the triangular relationship. Cytometry, 31: 100–109. fl V– 87 Vicari, M.R., Artoni, R.F., Moreira-Filho, O. and Bertollo, L.A.C. (2006) Basic and molecular cytogenetics in freshwater Cichlidae (Osteichthyes, Perciformes). Karyotypic conservationism and divergence. Caryologia, 59: 260–266. V– 88 Vasiliev, V.P., Vasilieva, Y.D. and Osinov, A.G. (1990) Reticulate evolution in vertebrates: the diploid-triploid-tetraplod complex in the genus Cobitis (Cobitidae). III. Origin of the triploid form. J. Ichthyol., 30(6): 22–31. V– 89 Vasiliev, V.P., Osinov, A.G. and Vasilieva, Y.D. (1991) Reticulate species formation in vertebrates: the diploid-triploid-tetraploid complex in the genus Cobitis (Cobitidae). V. Origin of even-polyploid species. J. Ichthyol., 31(4): 22–36. V– 90 Venere, P.C., Souza, I.L., Martins, C. and Oliveira, C. (2008) Occurrence of ZZ/ZW sex chromosomes in Thoracocharax stellatus fi fish (Characiformes, Gasteropelecidae) from the Araguaia River, South America. Genetica, 133: 109–112. V– 91 Vicari, M.R., Artoni, R.F., Moreira-Filho, O. and Bertollo, L.A.C. (2008) Diversification fi of a ZZ/ZW sex chromosome system in Characidium fish (Crenuchidae, Characiformes). Genetica, 134: 311–317. V– 92 Venere, P.C., Souza, I.L., Silva, L.K.S., Dos Anjos, M.B., De Oliveira, R.R. and Galetti Jr., P.M. (2008) Recent chromosome diversification fi in the evolutionary radiation of the freshwater fish fi family Curimatidae (Characiformes). J. Fish Biol., 72: 1976–1989. V– 93 Venere, P.C. and Galetti Jr., P.M. (1989) Chromosome evolution and phylogenetic relationships of some neotropical Characiformes of the family Curimatidae. Braz. J. Genet., 12: 17–25. V– 94 Venere, P.C., Miyazawa, C.S. and Galetti Jr., P.M. (1999) New cases of supernumerary chromosomes in characiform fishes. fi Genet. Mol. Biol., 22: 345–349. V– 95 Vidotto, A.P., Swarça, A.C., Fenocchio, A.S. and Dias, A.L. (2004) Cytogenetic studies in three Pimelodella meeki polulations (Pisces, Pimelodidae) from Tibagi River basin (Brazil). J. Heredity, 95: 517–520. V– 96 Vitturi, R., Libertini, A., Mazzola, A., Colomba, M.S. and Sara, G. (1996) Characterization of mitotic chromosomes of four species of the genus Diplodus: karyotypes and chromosomal nucleolar organizer region phenotypes. J. Fish Biol., 49: 1128–1137. V– 97 Völker, M., Ráb, P. and Kullman, H. (2008) Karyotype differentiation in Chromaphyosemion killifishes fi (Cyprinodontiformes, Nothobranchiidae): patterns, mechanisms, and evolutionary implications. Biol. J. Linn. Soc., 94: 143–153. V– 98 Vasiliev, V.P. and Vasilieva, Y.D. (2008) Comparative karyology of species of the genera Misgurnus and Cobitis (Cobitidae) from the Amur river basin in connection with their taxonomic relations and the evolution of karyotypes. J. Ichthyol., 48: 1–13. V– 99 Vasiliev, V.P. and Vasilieva, Y.D. (2008) Comparative karyological analysis of mud loach and spined loach species (genera Misgurnus and Cobitis) from the Far East region of Russia. Folia Zool., 57: 51–59. V– 100 Vitturi, R., Catalano, E. and Colombera, D. (1993) Chromosome analysis of Bothus podas (Pisces, Pleuronectiformes) from the Mediterranean Sea. J. Fish Biol., 43: 221–227. V– 101 Vinogradov, A.E. (2005) Genome size and chromatin condensation in vertebrates. Chromosoma, 113: 362–369. V– 102 Vasiliev, V.P., Vinogradov, A.E., Rozanov, Y.M. and Vasilieva, Y.D. (1999) Cellular DNA content in different forms of the bisexual-unisexual complex of spined loaches of the genus Cobitis and in Luther’s spined loach C. lutheri (Cobitidae). J. Ichthyol., 39: 377–383.
312
References
V– 103 Vasilieva, Y.D. and Vasiliev, V.P. (1995) Systematics of Caucasian freshwater gobies (Gobiidae) in the light of contemporary data, with a description of a new species, Neogobius rhodioni, sp. nov. J. Ichthyol., 35(2): 139–157. V– 104 Vitturi, R., Catalano, E., Lo Conte, M.R., Alessi, A.M., Amico, F.P. and Colombera, D. (1991) Intra-populational and intra-individual mosaicisms of Uranoscopus scaberr L. (Perciformes, Uranoscopidae). Heredity, 67: 325–330. V– 105 Vitturi, R., Mazzola, A., Catalano, E. and Lo Conte, M.R. (1992) Karyotype characterization of four Mediterranean sparid fish (Pisces, Perciformes) using conventional and banding techniques. Cytobios, 72: 107–115. V– 106 Vasconcelos, A.J.M. and Molina, W.F. (2009) Cytogenetical studies in five fi Atlantic Anguilliformes fishes. fi Genet. Mol. Biol., 32: 83–90. V– 107 Vicari, M.R., Almeida, M.C., Bertollo, L.A.C., Moreira-Filho, O. and Artoni, R.F. (2006) Cytogenetic analysis and chromosomal characteristics of the polymorphic 18S rDNA in the fi fish Prochilodus lineatus (Characiformes, Prochilodontidae). Genet. Mol. Biol., 29: 621–625. *V–108 Vasiliev, V.P. and Vasilieva, Y.D. (1994) The karyological diversity in spined loaches from genera Cobitis and Sabanjewia. Abstr. VIII Congr. Soc. Europ. Ichthyol., Oviedo, p. 67. (After K-114) V– 109 Venere, P.C., Ferreira, I.A., Martins, C. and Galetti Jr., P.M. (2004) A novel ZZ/ZW sex chromosome system for the genus Leporinus (Pisces, Anostomidae, Characiformes). Genetica, 121: 75–80. V– 110 Van Eenennaam, A.L., Murray, J.D. and Medrano, J.F. (1998) Synaptonemal complex analysis in spermatocytes of white sturgeon, Acipenser transmontanus Richardson (Pisces, Acipenseridae), a fi fish with a very high chromosome number. Genome, 41: 51–61. V– 111 Vila, I., Scott, S., Lam, N., Iturra, P. and Méndez, M.A. (2010) Karyological and morphological analysis of divergence among species of the killifi fish genus Orestias (Teleostei: Cyprinodontidae) from the southern Altiplano. In: Nelson, J.S., Schultze, H.P. and Wilson, M.V.H. eds. Origin and phylogenetic interrelationships of teleosts. Verlag Dr. Friedrich Pfeil, München, pp. 471–480. [W] W– 1 Wang, C.Y. and Li, Y.L. (1982) Studies on the karyotype of goldfish fi (Carassius auratus). I. A comparative study of the chromosomes in crucian and red dragon-eye goldfish. fi Acta Genet. Sinica, 9(3): 238–242. (In Chinese with English abstract) W– 2 Wang, C.Y. and Li, Y.L. (1987) Studies on the karyotype of Xiji colour-crucian carp (Carassius auratus). Hereditas (Beijing), 9(2): 25–26. (In Chinese) W– 3 Wang, D.X., Wang, J., Guo, F., Liang, J.R. and Qin, Y.X. (2002) Study on the karyotype in Nibea miichtheoides. Marine Sciences (Beijing), 26(11): 68–70. (In Chinese with English abstract) W– 4 Wang, J. and Ojima, Y. (1988) Fish gene mapping using mouse-fish fi cell hybrids. Proc. Japan Acad., Ser. B, 64: 53–56. W– 5 Wang, J. and Ojima, Y. (1989) Isolation and characterization of a BUdR-resistant fish fi cell line. Proc. Japan Acad., Ser. B, 65: 112–115. W– 6 Wang, J.X. and Zhao, X.F. (1993) Chromosome study of three species of tetraodontiform fishes. Zool. Res., 14: 345–346. (In Chinese) W– 7 Wang, J.X., Zhao, X.F., Wang, X.M. and Tian, M.C. (1994) Karyotype analysis for seven species of clupeiform and perciform fishes. fi Zool. Res., 15: 76–79. (In Chinese with English abstract) W– 8 Wang, J.X., Zhao, X.F., Fan, C.L. and Sun, X.Y. (1994) Studies on karyotypes of two species of scorpaeniform fi fishes. Chinese J. Zool., 29(4): 14–17. (In Chinese)
References
313
W– 9 Wang, R.F., Shi, L.M. and He, W.S. (1985) Studies on nucleolus organizer regions in several species of carp (Cyprinus) by silver-staining. Zool. Res., 6: 391–398. (In Chinese with English abstract) W– 10 Wang, R.F., Shi, L.M. and He, W.S. (1988) A comparative study of the Ag-NORs of Carassius auratus from different geographic districts. Zool. Res., 9: 165–169. (In Chinese with English abstract) W– 11 Wang, R.F., Shi, L.M. and He, W.S. (1989) The karyotype of Carassius auratus from Er Hai Lake. Zool. Res., 10: 169–170. (In Chinese) W– 12 Wang, R.F., He, W.S. and Wu, S.F. (1997) Study on the karyotype and banding of Semilabeo prochilus (Pisces). Zool. Res., 18: 411–414. (In Chinese with English abstract) W– 13 Wang, S.F., Wang D.X., Su Y.Q. and Wang J. (2003) The karyotype of Nibea diacanthus. J. Xiamen Univ. (Nat. Sci.), 42: 682–684. (In Chinese with English abstract) W– 14 Wang, X. and Shen, J.B. (1989) The study on the karyotypes of the fishes in the Heilongjiang River system I. The chromosome numbers and karyotypes of 11 species of Gobioninae. Hereditas (Beijing), 11(3): 23–25. (In Chinese) W– 15 Wang, Z.X., Zhang, J.X. and Jin, G.Q. (1986) Study on the incompatibility of fish hybridization. Acta Hydrobiol. Sinica, 10: 171–179. (In Chinese with English abstract) W– 16 Warkentine, B.E., Smith, C.L. and Rachlin, J.W. (1987) A reevaluation of the karyotype of the Atlantic silverside, Menidia menidia. Copeia, 1987: 222–224. W– 17 Wasko, A.P. and Galetti Jr., P.M. (1998) Karyotype diversity in the neotropical fish fi Bryconamericus (Characidae, Tetragonopterinae). Cytobios, 94: 185–193. W– 18 Wasko, A.P. and Galetti Jr., P.M. (1999) Extensive NOR variability in fishes fi of the genus Bryconamericus (Characidae). Cytologia, 64: 63–67. W– 19 Wasko, A.P., Cesar, A.C.G., Martins, C. and Galetti Jr., P.M. (2001) A ZZ/ZW sex chromosome system in Cheirodontinae fi fish. Chrom. Sci., 5: 145–148. W– 20 Webb, C.J. (1974) Fish chromosomes: a display by scanning electron microscopy. J. Fish Biol., 6: 99–100. W– 21 Webb, C.J. (1980) Systematics of the Pomatoschistus minutus complex (Teleostei: Gobioidei). Phil. Trans. R. Soc., (B), 291: 201–241. W– 22 Webb, C.J. (1986) Karyology of the Indo-Pacific fi Parioglossus raoi (Herre) (Teleostei: Gobioidei) from Fiji. Aust. J. Mar. Freshw. Res., 37: 347–351. W– 23 Webb, C.J. (1986) Karyology of Pomatoschistus microps (Teleostei: Gobioidei). J. Mar. Biol. Ass. U.K., 66: 259–266. W– 24 Wharton, J.H., Ellender, R.D., Middlebrooks, B.L., Stocks, P.K., Lawler, A.R. and Howse, H.D. (1977) Fish culture: characteristics of a cell line from the silver perch, Bairdiella chrysura. In Vitro, 13: 389–397. W– 25 Wickbom, T. (1945) Cytological studies on Dipnoi, Urodela, Anura, and Emys. Hereditas, 31: 241–346. W– 26 Wildrick, D.M., Kim, I.S. and Greenfi field, D.W. (1985) A unique gambusiine karyotype and its relevance to the systematics of the Gambusia punctata species group. Copeia, 1985: 1053–1056. W– 27 Wolters, W.R., Chrisman, C.L. and Libey, G.S. (1981) Lymphocyte culture for chromosomal analyses of channel catfish, fi Ictalurus punctatus. Copeia, 1981: 503–504. W– 28 Woznicki, P., Jankun, M. and Luczynski, M. (1997) Chromosome studies in brown trout (Salmo trutta m. fario) from Poland: hypothetical evolution of the 11th, 12th and 14th chromosome pairs in the Salmo karyotype. Cytobios, 91: 207–214. W– 29 Woznicki, P., Jankun, M., Kucharczyk, D., Boron, A. and Luczynski, M. (1999) Cytogenetic characterization of sea trout (Salmo trutta) from Poland. Copeia, 1999: 501–505. W– 30 Wu, G.M., Xin, C.B. and Chen, Y.L. (1986) A comparative study on the karyotypes of four species of catfish. fi Acta Genet. Sinica, 13(3): 213–220. (In Chinese with English abstract)
314
References
W– 31 Wu, G.M., Zhu, X.P., Hu, G. and Luo, J.R. (1991) The karyotype off Puntius gonionotus (Cyprinidae). Chinese J. Zool., 26(1): 20–21. (In Chinese) W– 32 Wu, Y.P., Ye, Y.Z. and Wu, Q.J. (2000) Studies on the induction of allotriploid using heat shock in zebrafi fish, Brachydanio frankei and Brachydanio rerio. Oceanol. Limnol. Sinica, 31: 465–470. (In Chinese with English abstract) W– 33 Wu, Z.A. and Yan, H.Y. (1980) Cytogenetic studies on fishes. II. Karyotype analysis of Cyprinus carpio and Carassius auratus by peripheral blood lymphocyte culture. Acta Genet. Sinica, 7(4): 370–375. (In Chinese with English abstract) W– 34 Wu, Z.A. and Yan, H.Y. (1981) Cytogenetical studies on fishes. I. The karyotype of Rhodeus sinensis. Sinozool., 1981(1): 167–172. (In Chinese with English abstract) W– 35 Wildekamp, R.H., Shidlovskiy, K.M. and Watters, B.R. (2009) Systematics of the Nothobranchius melanospilus species group (Cyprinodontiformes: Nothobranchiidae) with description of two new species from Tanzania and Mozambique. Ichthyol. Explor. Freshwaters, 20: 237–254. W– 36 Winkler, F.M., Garcia-Melys, D. and Palma-Rojas, C. (2004) Karyotypes of three South East Pacific fi flounder species of the family Paralichthyidae. Aquacult. Res., 35: 1295–1298. W– 37 Woods, I.G., Wilson, C., Friedlander, B., Chang, P., Reyes, D.K., Nix, R., Kelly, P.D., Chu, F., Postlethwait, J.H. and Talbot, W.S. (2005) The zebrafish fi gene map defi fines ancestral vertebrate chromosomes. Genome Res., 15: 1307–1314. [X] X– 1 Xiao, H., Zhang, R.D., Feng, J.G., Ou, Y.M., Li, W.X., Chen, S.Y. and Zan, R.G. (2002) Nuclear DNA content and ploidy of seventeen species of fishes fi in Sinocyclocheilus. Zool. Res., 23: 195–199. (In Chinese with English abstract) X– 2 Xu, K.S., Su, Z.J. and Bai, G.S. (1986) A karyotype study of Acipenser sinensis Gray. Zool. Res., 7: 262. (In Chinese) X– 3 Xu, D.D., You, F., Wu, Z.H., Li, J., Ni, J., Xiao, Z.Z., Zhang, P.J. and Xu, Y.L. (2009) Genetic characterization of asymmetric reciprocal hybridization between the flatfi fl fishes Paralichthys olivaceus and Paralichthys dentatus. Genetica, 137: 151–158. [Y] Y– 1 Yabu, H. and Ishii, K. (1980) Chromosomes of flatfi fl fish Glyptocephalus stelleri (Schmidt). Chrom. Inform. Serv., 29: 16. Y– 2 Yabu, H. and Ishii, K. (1981) Chromosomes in Pacific fi saury, Cololabis saira. Bull. Japan. Soc. Sci. Fish., 47: 559. Y– 3 Yabu, H. and Ishii, K. (1982) Nuclear divisions in Pacifi fic pomfret Brama japonica Hilgendorf. Bull. Japan. Soc. Sci. Fish., 48: 505–507. Y– 4 Yabu, H. and Ishii, K. (1984) Chromosomes of the great blue shark Prionace glauca (Linnaeus). Bull. Japan. Soc. Sci. Fish., 50: 7–10. Y– 5 Yamada, J. (1967) An observation of the chromosomes in the embryonic cells of a goby, Chaenogobius urotaenia (Hilgendorf). Bull. Fac. Fish. Hokkaido Univ., 18: 183– 187. Y– 6 Yamaha, E., Kimura, S., Tanaka, M., Sakao, S., Fujimoto, T. and Arai, K. (2002) Haploiddiploid mosaic embryos in cuttthroat trout, Oncorhynchus clarki. Fish Genet. Breed. Sci., 32: 121–126. (In Japanese with English abstract) Y– 7 Yamamoto, K. and Ojima, Y. (1973) A PHA-culture method for cells from the renal tissue of teleosts. Japan. J. Genet., 48: 235–238. Y– 8 Yamazaki, F. (1971) A chromosome study of the ayu, a salmonoid fish. fi Bull. Japan. Soc. Sci. Fish., 37: 707–710.
References
Y–
Y– Y–
Y–
Y– Y– Y– Y–
Y– Y–
Y–
Y–
Y–
Y– Y– Y– Y–
Y–
[Z] Z–
315
9 Yamazaki, F., Onozato, H. and Arai, K. (1981) The chopping method for obtaining permanent chromosome preparation from embryos of teleost fishes. fi Bull. Japan. Soc. Sci. Fish., 47: 963. 10 Yang, H.Y. (1982) Studies of the karyotype of Siniperca chuatsi. Acta Genet. Sinica, 9(2): 143–146. (In Chinese with English abstract) 11 Yang, H.Y. (1991) Chromosome G-band patterns of grass carp (Ctenopharyngodon idellus) and blunt-snout bream (Megalobrama amblycephala). Acta Zool. Sinica, 37: 431–437. (In Chinese with English abstract) 12 Yi, Y.L., Chen, H.X. and Chen, M.R. (1984) Distribution of constitutive heterochromatin in the genome of the symbranchoid eel, Monopterus albus. Acta Hydrobiol. Sinica, 8: 245–247. (In Chinese) 13 Yin, H.B., Sun, Z.W. and Pan, W.Z. (1996) The karyotype study on triploid catfish fi (Silurus asotus). J. Fish. China, 20: 178–182. (In Chinese) 14 Yu, X.J., Zhou, T., Li, K., Li, Y.C. and Zhou, M. (1987) On the karyosystematics of cyprinid fishes and a summary of fish chromosome studies in China. Genetica, 72: 225–235. fi 15 Yu, X.J., Zhou, T, Li, Y.C., Li, K. and Zhou, M. (1989) Chromosomes of Chinese freshwater fishes. Science Press, Beijing. (In Chinese) 16 Yu, X.Y., Li, Y.C. and Zhou, T. (1990) Karyotype studies of cyprinid fi fishes in China. Comparative study of the karyotypes of 8 species of schizothoracine fishes. fi J. Wuhan Univ. (Nat. Sci.), 1990(2): 97–104. (In Chinese with English abstract) 17 Yu, X.Y. and Yu, X.J. (1990) A schizothoracine fish fi species, Diptychus dipogon, with a very high number of chromosomes. Chrom. Inform. Serv., 48: 17–18. 18 Yu, Z.I., Kong, X.Y., Feng, D.Y. and Xie, Z.Y. (1992) Studies on the karyotypes of Sebastes schlegeli (Hilgendorf) and Hexagrammos otakii Jordan et Starks. J. Ocean Univ. Qingdao, 22(2): 118–124. (In Chinese with English abstract) 19 Yu, Z.I., Kong, X.Y., Xie, Z.Y. and Wang, Y.Y. (1993) Studies on the karyotypes and Ag-NOR banding of Pagrosomus majorr and Sparus macrocephalus. J. Ocean Univ. Qingdao, 23(3): 107–115. (In Chinese with English abstract) 20 Yu, Z.I., Kong, X.Y. and Xie, Z.Y. (1995) Studies on karyotypes of fishes fi of economic importance in coastal waters of Shandong Peninsula. J. Fish. Sci. China, 2(2): 1–6. (In Chinese with English abstract) 21 Yu, Z.I., Kong, X.Y., Xie, Z.Y. and Dai, J.X. (1996) Studies on the chromosomes of five fi species of marine fish. fi J. Ocean Univ. Qingdao, 26(1): 44–48. (In Chinese with English abstract) 22 Yokoyama, T., Ebitani, N. and Kubo, T. (1992) Karyotypes and banding patterns in eight species of the scopionfi fish (Scorpaenidae). Zool. Sci., 9: 1210. 23 Yüksel, E. and Gaffarogg˘ lu, M. (2008) The analysis of nucleolar organizer regions in Chalcalburnus mossulensis (Pisces: Cyprinidae). J. FisheriesSciences.com, 2(3): 587–591. 24 Yüksel, E. and Gaffarogg˘ lu, M. (2008) NOR phenotype off Cyprinion macrostomus (Osteichthyes, Cyprinidae). J. FisheriesSciences.com, 2(2): 114–117. 25 Yang, P.H., Wang, X.Y., Wu, W.X., Xie, C.H., Li, M.J. and Zhang, Q. (2007) Chromosome fi karyotype analysis of Carassius auratus var. Dongtingking and cultivar identification. Freshwater Fish., 37(3): 3–7. (In Chinese with English abstract) 26 Yin, S.W., Liao, J.Q., Deng, Q., Chen, G.H. and Liu, W.C. (2008) Karyotype of the hybrid F1 of snapper (Lutjanus erythropterus male × L. sebae female) and their parents. Fish. Sci. (China), 27: 171–174. (In Chinese with English abstract)
1
Zan, R.G. and Song, Z. (1979) Analysis and comparison between the karyotypes of Ctenopharyngodon idellus and Megalobrama amblycephala. Acta Genet. Sinica, 6(2): 205– 210. (In Chinese with English abstract)
316 Z–
Z– Z–
Z–
Z– Z– Z–
Z–
Z– Z–
Z–
Z–
Z– Z– Z–
Z– Z–
Z–
References
2 Zan, R.G. and Song, Z. (1980) Analysis and comparison between the karyotypes of Cyprinus carpio and Carassius auratus as well as Aristichthys nobilis and Hypophthalmichthys molitrix. Acta Genet. Sinica, 7(1): 72–77. (In Chinese with English abstract) 3 Zan, R.G. and Song, Z. (1980) Studies of the karyotypes of eight species of fi fishes in Cyprinus and Anabarilius. Zool. Res., 1: 141–150. (In Chinese with English abstract) 4 Zan, R.G. (1982) Studies of sex chromosomes and C-banding karyotypes of two forms of Carassius auratus in Kunming Lake. Acta Genet. Sinica, 9(1): 32–39. (In Chinese with English abstract) 5 Zan, R.G., Song, Z. and Liu, W.G. (1984) Studies of karyotypes of seven species of fi fishes in Barbinae, with a discussion on identification fi of fish polyploids. Zool. Res., 5(1) suppl.: 82–90. (In Chinese with English abstract) 6 Zan, R.G., Liu, W.G. and Song, Z. (1985) Tetraploid-hexaploid relationship in Schizothoracinae. Acta Genet. Sinica, 12(2): 137–142. (In Chinese with English abstract) 7 Zan, R.G. (1985) Fish polyploidy and its role in the evolution of fishes. fi J. Yunnan Univ., 7(2): 235–243 and 7(3): 331–338. (In Chinese with English abstract) 8 Zan, R.G., Song, Z. and Liu, W.G. (1986) Studies on karyotypes and nuclear DNA contents of some cyprinoid fishes, fi with notes on fish polyploids in China. In: Uyeno, T., Arai, R., Taniuchi, T. and Matsuura, K. eds. Indo-Pacific fi fish biology. Ichthyological Society of Japan, Tokyo, pp. 877–885. 9 Zelinsky, Yu.P., Svimonishvii, T.N. and Gorodilov, J.N. (1980) Karyotypes of Atlantic salmon (Salmo salarr L.) populations from Keret’ and Pechora Rivers. In: Kirpichnikov, V.S. ed. Karyological variability, mutagenesis and gynogenesis in fishes. Inst. Cytol. Acad. Sci. USSR, Leningrad., pp. 10–15. (In Russian with English summary) 10 Zelinsky, Yu.P. (1980) A chromosomal analysis of the Atlantic salmon population in the Ladoga Lake. Zool. Zhurnal, 59: 1260–1263. (In Russian with English summary) 11 Zelinsky, Yu.P. and Medvedeva, I.M. (1985) Analysis of chromosomal variability and polymorphism in Atlantic salmon, Salmo salar, of Lake Onega. J. Ichthyol., 25(2): 70–77. 12 Zelinsky, Yu.P., Dmitrenko, Y.Y. and Pervozvanskiy, V.Y. (1992) Evaluation of genome interaction from growth characteristics and karyological and morphological characters in triploid hybrids between wild goldfi fish and carp reared in Karelia. Vopr. Ichthyol., 32: 103–110. (In Russian) 13 Zelinsky, Yu.P. and Makhrov, A.A. (2001) Chromosomal variability, genome reorganization in phylogeny, and the systematics of Salmo and Parasalmo species (Salmonidae). J. Ichthyol., 41: 209–216. 14 Zenzes, M.T. and Voiculescu, I. (1975) C-banding patterns in Salmo trutta, a species of tetraploid origin. Genetica, 45: 531–536. 15 Zhang, H.Q. and Li, Q.W. (1991) First report of karyotypes of 5 marine fi fish species. J. Liaoning Normal Univ. (Nat. Sci.), 14(3): 263–264. (In Chinese) 16 Zhang, J.X., Liu, X.F., Wang, Z.X. and Jin, G.Q. (1984) A comparative study on the karyotypes among the hybrid fish fi (Sinilabeo decorus tungtingg male × Cirrhinus molitorella female) and its parental fishes. Acta Hydrobiol. Sinica, 8: 313–320. (In Chinese with English abstract) 17 Zhang, J.X. and Wang, Z.X. (1987) Studies on the karyotype of Leuciscus waleckii (Dybowski). Acta Hydrobiol. Sinica, 11: 367–370. (In Chinese) 18 Zhang, K.J., Gao, J., Zhang, J.L., He, Y.M. and Wang, W.S. (1995) Study on karyotypes of hybrid crucian carp (white crucian carp × scattered mirror carp) and its parents. J. Fish. China, 19: 305–309. (In Chinese with English abstract) 19 Zhang, Q.Q. and Arai, K. (1999) Distribution and reproductive capacity of natural triploid individuals and occurrence of unreduced eggs as a cause of polyploidization in the loach, Misgurnus anguillicaudatus. Ichthyol. Res., 46: 153–161.
References
317
Z– 20 Zhang, S.M. (1990) Karyotypic studies in two species of Chanda (Centropomidae: Pisces). Chrom. Inform. Serv., 49: 7–8. Z– 21 Zhang, S.M., Zheng, Y., Yao, H. and Zhang, X.Z. (1992) Nucleolar organizer regions in four species of fishes. fi Chrom. Inform. Serv., 53: 6–8. Z– 22 Zhang, S.M. and Zeng, Y. (1993) Ag-NORs of three cyprinid fishes. fi Chrom. Inform. Serv., 54: 19–20. Z– 23 Zhao, J.L. (2000) A survey of karyotype study of marine and brackish water fish fi in China. J. Shanghai Fish. Univ., 9(4): 344–347. (In Chinese) Z– 24 Zhou, J.S., Shen, J.B. and Liu, M.H. (1983) A cytological study on the gynogenesis of Fangzheng crucian carp of Heilongjiang Province. Acta Zool. Sinica, 29: 11–16. (In Chinese with English abstract) Z– 25 Zhou, M., Kang, Y., Li, Y.C. and Zhou, T. (1988) Studies on the silver-stained karyotypes of 7 species in Cyprinidae (Pisces). Zool. Res., 9: 225–229. (In Chinese with English abstract) Z– 26 Zhou, M., Li, Y.C., Zhou, T. and Yu, X.J. (1989) A BrdU-BSG method for G-banding in fish chromosomes and an idiogram of G-banded karyotype of silver carp. Acta Genet. fi Sinica, 16(3): 184–187. (In Chinese with English abstract) Z– 27 Zhou, T., Ling, J.X. and Yang, Y.Q. (1980) The karyotype of black carp (Mylopharyngodon piceus (Rich)). J. Wuhan Univ. (Nat. Sci.), 1980(4): 112–116. (In Chinese with English abstract) Z– 28 Zhou, T. (1984) Chromosome studies in Chinese fresh-water fishes. Zool. Res., 5 (suppl.): 38–51. Z– 29 Zhu, X.P., Wu, G.M., Hu, G. and Luo, J.R. (1990) The karyotype of Leptobarbus hoeveni (Cyprinidae). Hereditas (Beijing), 12(3): 20–21. (In Chinese) Z– 30 Zhu, X.P., Liu, Y.H., Chen, Y.L., Wei, Q.F. and Zhang, S.A. (2003) Morphological characters and karyotype of Oxyeleotris marmoratus Bleeker. J. Fish. Sci. China, 10(1): 85–86. (In Chinese with English abstract) Z– 31 Zhuang, J.S. and Liu, L.Y. (1982) Karyotype analysis of the snake-head Ophiocephalus argus. J. Beijing Normal Univ. (Nat. Sci.), 1982(3): 81–83. (In Chinese with English abstract) Z– 32 Zou, S.M., Li, S.F., Zhao J.L., Cai W.Q. and Liu J.F. (2003) Karyotype of Pseudosciaena crocea in Guanjingyang of Fujian. J. Shanghai Fish. Univ., 12: 179–181. (In Chinese) Z– 33 Zelinsky, Yu.P. (1976) Chromosome complexes in the Atlantic salmon Salmo salarr L. from the non-anadromous population of Lake Kujto (the White Sea basin). Vopr. Ichthyol., 16: 1119–1124. (In Russian) Z– 34 Zhu, H.P., Ma, D.M. and Gui, J.F. (2006) Triploid origin of the gibel carp as revealed by 5S rDNA localization and chromosome painting. Chrom. Res., 14: 767–776. Z– 35 Zhou, L.Q., Yang, A.G., Liu, X.Z., Du, W. and Zhuang, Z.M. (2005) The karyotype of the tonguefish fi Cynoglossus semilaevis. J. Fish. China, 29: 417–419. (In Chinese) Z– 36 Zhou, L. and Gui, J.F. (2002) Karyotypic diversity in polyploid gibel carp, Carassius auratus gibelio Bloch. Genetica, 115: 223–232. Z– 37 Zhao, X.F., Wang, J.X., Yang, Q. and Zhang, J.L. (1994) Karyotype analysis of five fi species of marine fishes. Zool. Res., 15 (suppl.): 103–106. (In Chinese with English abstract) Z– 38 Zhang, D.H. (2007) The karyotypes, C-bands and Ag-NORs of Ctenogobius giurinus. Freshwater Fish., 37(2): 16–19. (In Chinese with English abstract) Z– 39 Zhou, B.C., Shu, H., Liu, F., Cai, X.Y., Tan, J.H. and Zhang, H.F. (2009) Karyotypes in three marine important fish fi species. Fish. Sci., 28: 325–328. (In Chinese with English abstract) *Z– 40 Zanandrea, G. and Capanna, E. (1964) Contributo alla cariologia del genere Lampetra. Boll. Zool., 31: 669–677. (After K-114) Z– 41 Zoch, P.K., Hanks, B.G. and Gold, J.R. (1989) The standard and NOR-stained karyotype of Rivulus agilae (Rivulidae: Teleostei). Texas J. Sci., 41: 104–106.
Journal List
Acad. Nat. Lincei, ser. 8 = Atti della Accademia Nazionale dei Lincei, Serie Ottava (Roma) Acta Amazonica Acta Biol. Colombiana = Acta Biologica Colombiana (Bogotá) Acta Biol. Debrecina = Acta Biologica Debrecina (Debrecen, Hungary) Acta Biol. Exp. Sinica = Acta Biologiae Experimentalis Sinica Acta Biol. Iugoslavica = Acta Biologica Iugoslavica Acta Cient. Venezolana = Acta Cientifica fi Venezolana Acta Genet. Sinica = Acta Genetica Sinica Acta Hydrobiol. = Acta Hydrobiologica Acta Hydrobiol. Sinica = Acta Hydrobiologica Sinica Acta Sci. Nat. Brno = Acta Scientiarm Naturalium Academiae Scientiarum Bohemoslovacae Brno, Nova series Acta Zool. = Acta Zoologica (Stockholm) Acta Zool. Fennica = Acta Zoologica Fennica (Helsinki) Acta Zool. Sinica = Acta Zoologica Sinica Acta Zootax. Sinica = Acta Zootaxonomica Sinica Advanced Aquarists Mag. = Advanced Aquarists Magazine Afr. Zool. = African Zoology AKA-KN = American Killifi fish Association-Killie Notes Amer. Natur. = The American Naturalist Amer. Zool. = American Zoologist An. Acad. Brasil. Cienc. = Anais da Academia Brasileira de Ciencia (Rio de Janeiro) An. Inst. Cienc. Mar Limnol. Univ. Nal. Autón. México = Anales del Instituto do Ciencias del Mar y Limnologia, Universidad Nacional Autónoma de México Anim. Sci. = Animal Science (Sofi fia) Animals and Nature = The Nature and Animals (Tokyo) Ann. Acad. Reg. Sci. Upsalien. = Annales Academiæ Regiæ Scientiarum Upsaliensis Ann. Mus. Royal Afr. Centrale = Annales. Musee Royal de l’Afrique Centrale Ann. Nat. Acad. Sci. India = Annals of the National Academy of Sciences India Ann. New York Acad. Sci. = Annals of the New York Academy of Sciences Ann. Rep. Biol. Res., Jeonbug Natn. Univ. = Annual Report of Biological Research, Jeonbug National University (Korea) Ann. Rep. Biwako Bunkakan = Annual Report of the Biwako Bunkakan (Japan) Antarctic Sci. = Antarctic Science Aquaculture Aquacult. Res. = Aquaculture Research Aquaria Aquarien Terrarien = Aquarien und Terrarien 318
Journal List
319
Aquarium Aquarium-J. = The Aquarium Journal Arch. FischWiss. = Archiv für Fischereiwissenschaft Arch. Zootec. = Archivos de Zootecnia Arquivos Mus. Bocage = Arquivos do Museu Bocage Asian Fisheries Science (Manila) Atti Soc. Ital. Sci. nat. Museo civ. Stor. nat. Milano = Atti della Società Italiano di Scienze Naturali e del Museo Civico di Storia Naturale di Milano Aust. J. Mar. Freshw. Res. = Australian Journal of Marine and Freshwater Research Basic Sci. Rev., Jeonbug Natn. Univ. = Basic Science Review, Jeonbug National University (Korea) Bilješke notes, Inst. Oceanograf. Ribarstyo, Yugoslavija = Bilješke Notes. Instituto za Oceanografi fiju i Ribarstyo, Jugoslavija Biochem. Syst. Ecol. = Biochemical Systematics and Ecology Biol. Bratislava = Biologia, Bratislava Biol. Bull. = Biological Bulletin Biol. J. Linn. Soc. = Biological Journal of the Linnean Society Biol. Morya = Biologiya Morya Biol. Rev. = Biological Review of the Cambridge Philosophical Society Biol. Zentralbl. = Biologisches Zentralblatt BKA-Killi News = British Killifi fish Association-Killi News BMC Evol. Biol. = BMC Evolutionary Biology BMC Genetics Bol. Inst. Espanol Oceanogr. = Boletin del Instituto Español de Oceanografia fi Bol. Inst. Oceanogr. Univ. Oriente = Boletin del Instituto Oceanografico, fi Universidad de Oriente, Venezuela Bol. Inst. Pesca = Boletim do Instituto de Pesca Boll. Zool. = Bollettino di Zoologia Bolm Inst. Oceanogr. S Paulo = Boletim do Instituto Oceanografica. fi São Paulo Brazil. Archiv. Biol. Technol. = Brazilian Archives of Biology and Technology Brazil. J. Biol. = Brazilian Journal of Biology Brazil. J. Genet. = Brazilian Journal of Genetics Bull. Aichi Univ. Educ. (Nat. Sci.) = Bulletin of Aichi University of Education (Natural History) (Japan) Bull. Biogeogr. Soc. Japan = Bulletin of the Biogeographical Society of Japan Bull. Dept. Educ. Utsunomiya Univ. = Bulletin of the Department of Education, Utsunomiya University (Japan) Bull. Fac. Educ. Yamaguchi Univ. = Bulletin of the Faculty of Education, Yamaguchi University (Japan) Bull. Fac. Fish. Hokkaido Univ. = Bulletin of the Faculty of Fisheries, Hokkaido University (Japan) Bull. Fr. Pêche Piscic. = Bulletin Français de la Pêche et de la Pisciculture Bull. Hiroshima Women’s Univ. = Bulletin of the Hiroshima Women’s University (Japan) Bull. Inst. Basic. Sci., Inha Univ. = Bulletin of the Institute for Basic Science, Inha University (Korea) Bull. Inst. Zool. Academia Sinica, Monograph = Bulletin of the Institute of Zoology, Academia Sinica, Monograph Bull. Japan. Soc. Sci. Fish. = Bulletin of the Japanese Society of Scientific fi Fisheries Bull. Korean Fish. Soc. = Bulletin of the Korean Fisheries Society Bull. Mar. Sci. = Bulletin of Marine Science Bull. Natl. Res. Inst. Aquaculture = Bulletin of National Research Institute of Aquaculture (Japan) Bull. Natn. Sci. Mus. Tokyo = Bulletin of the National Science Museum, Tokyo
320
Journal List
Bull. Natn. Sci. Mus. Tokyo, (A) = Bulletin of the National Science Museum, Tokyo. Series A (Zoology) Bull. Sci. Yougoslavie, Sec. A = Bulletin Scientifi fique, Yougoslavie. Section A Bull. Soc. Hist. Nat. Toulouse = Bulletin de la Société d’Histoire Naturelle de Toulouse Calif. Fish Game = California Fish and Game Can. J. Fish. Aquat. Sci. = Canadian Journal of Fisheries and Aquatic Sciences Can. J. Genet. Cytol. = Canadian Journal of Genetics and Cytology Can. J. Zool. = Canadian Journal of Zoology Caribbean J. Sci. = Caribbean Journal of Science Caryologia Chinese J. Zool. = Chinese Journal of Zoology Chrom. Inform. Serv. = Chromosome Information Service Chrom. Res. = Chromosome Research Chrom. Sci. = Chromosome Science Chromatin Chromosoma Cien. Cultura = Ciência e Cultura College Rev. College Liberal Arts Sci., Seoul Natn. Univ. = College Review of College of Liberal Arts and Sciences, Seoul National University (Korea) Comp. Biochem. Physiol. = Comparative Biochemistry and Physiology Contri. Sci. Nat. Hist. Mus. Los Angeles County = Contribution in Science. Los Angeles County Museum of Natural History Copeia Curr. Biol. = Current Biology Curr. Opinion Genet. Develop. = Current Opinion in Genetics and Development Curr. Sci. = Current Sciences (India) Cybium Cybium, 3rd ser. Cytobios Cytogenet. Cell Genet. = Cytogenetics and Cell Genetics Cytogenet. Genome Res. = Cytogenetic and Genome Research Cytogenetics Cytologia Cytometry Dokl. Akad. Sci. USSR = Doklady Akademii Nauk SSSR Doklady Acad. Sci. Ukrain. SSR, Ser. B = Doklady Academii Nauk Ukrainskoy SSR, Ser. B Dokl. Biol. Sci. = Doklady Biological Sciences Doñana, Acta Vertebrata = Doñana - Acta Vertebrata Environ. Biol. Fishes = Environmental Biology of Fishes Environ. Ecol. = Environment and Ecology Evolution Exp. Cell Res. = Experimental Cell Research Experientia Fish Genet. Breed. Sci. = Fish Genetics and Breeding Science Fish. Bull. = Fishery Bulletin Fish. Sci. = Fisheries Science (Tokyo) Fish. Sci. (China) = Fisheries Science (China)
Journal List
Folia Biol. (Krakow) = Folia Biologica (Kraków) Folia Zool. = Folia Zoologica (Brno) Freshwater Fish. = Freshwater Fisheries (China) Fujian Fish. = Fujian Fisheries (China) Gayana Gene Genen Phaenen Genet. Mol. Biol. = Genetics and Molecular Biology (Brazil) Genet. Mol. Res. = Genetics and Molecular Research (Brazil) Genet. Res. Camb. = Genetical Research, Cambridge Genet. Sel. Evol. = Genetics Selection Evolution Genetica Genetics Genetika = Russian Journal of Genetics Genetika, Acta Biol. Iugoslavica = Acta Biologica Iugoslavica, serija F, Genetika (Beograd) Genome Genome Res. = Genome Research Geobios God. Biol. Inst. Univ. Saraevu = Godišnjaka Biološkog Instituta Univerziteta u Sarajevu Hereditas Hereditas (Beijing) Heredity Hydrobiol. J. = Hydrobiological Journal (Gidrobiologichesky Zhurnal) Hydrobiologia Ichthyol. Explor. Freshwaters = Ichthyological Exploration of Freshwaters Ichthyol. Res. = Ichthyological Research (Japan) Ichthyologia = Acta Biologica Iugoslavica, Serija E, Ichthyologia Iden = Iden (Tokyo) In Vitro Ind. Biologist = Indian Biologist Ind. J. Anim. Sci. = Indian Journal of Animal Sciences Ind. J. Exp. Biol. = Indian Journal of Experimental Biology Ind. J. Zool. = Indian Journal of Zoology Ind. Vet. J. = Indian Veterinary Journal (Madras) Interciencia (Caracas) Intl. J. Acad. Ichthyol. = International Journal of Academy of Ichthyology (U.P., India) Issled. Fauny Morei = Issledovaniia Fauny Morei Ital. J. Zool. = The Italian Journal of Zoology J. Annamalai Univ. Sci. = Journal of the Annamalai University. Part B, Science (India) J. Aquaculture = Journal of Aquaculture (Korea) J. Beijing Normal Univ. (Nat. Sci.) = Journal of Beijing Normal University (Natural Science) J. Cytol. Genet. = The Journal of Cytology and Genetics (India) J. Dalian Fish. Univ. = Journal of Dalian Fisheries University (China) J. Dalian Fish. College = Journal of Dalian Fisheries College (China) J. Exp. Mar. Biol. Ecol = Journal of Experimental Marine Biology and Ecology. J. Exp. Zool. = The Journal of Experimental Zoology
321
322
Journal List
J. Fac. Sci. Hokkaido Univ., Ser. Zool. = Journal of the Faculty of Science, Hokkaido University, Ser. 6, Zoology (Japan) J. Fish Biol. = Journal of Fish Biology J. Fish. China = Journal of Fisheries of China J. Fish. Res. Board Can. = Journal of the Fisheries Research Board of Canada J. Fish. Sci. China = Journal of Fishery Sciences of China J. Fish. Sci. Technol. = Journal of Fisheries Science and Technology (Korea) J. FischeriesSciences.com = Journal of FischeriesSciences.com J. General Biol. = Journal of General Biology J. General Physiol. = The Journal of General Physiology J. Genet. = Journal of Genetics J. Heredity = The Journal of Heredity J. Ichthyol. = Journal of Ichthyology J. Inland Fish. Soc. India = Journal of the Inland Fisheries Society of India J. Liaoning Normal Univ. (Nat. Sci.) = Journal of Liaoning Normal University (Natural Science) (China) J. Mar. Biol. Ass. India = Journal of the Marine Biological Association of India J. Mar. Biol. Ass. U.K. = Journal of Marine Biological Association of the United Kingdom J. Morphol. = Journal of Morphology J. Ocean Univ. Qingdao = Journal of Ocean University of Qingdao (China) J. Shanghai Fish. Univ. = Journal of Shanghai Fisheries University (China) J. Shimonoseki Univ. Fish. = Journal of Shimonoseki University of Fisheries (Japan) J. Structural Functional Genomics = Journal of Structural and Functional Genomics J. Wuhan Univ. (Nat. Sci.) = Journal of Wuhan University (Natural Science Edition) (China) J. Xiamen Univ. (Nat. Sci.) = Journal of Xiamen University (Natural Science) (China) J. Yunnan Univ. = Journal of Yunnan University (China) J. Zhanjiang Fish. Coll. = Journal of Zhanjiang Fisheries College (China) J. Zhejiang College Fish. = Journal of Zhejiang College of Fisheries (China) J. Zool. Lond. = Journal of Zoology, London J. Zool. Syst. Evol. Res. = Journal of Zoological Systematics and Evolutionary Research Japan Women’s Univ. J. = Journal of Japan Women’s University Japan. J. Genetics = Japanese Journal of Genetics Japan. J. Ichthyol. = Japanese Journal of Ichthyology Korean J. Genet. = Korean Journal of Genetics Korean J. Ichthyol. = The Korean Journal of Ichthyology Korean J. Limnol. = Korean Journal of Limnology Korean J. Zool. = Korean Journal of Zoology La Kromosomo La Kromosomo, II = La Kromosomo, Series II Lat. Am. J. Aquat. Res. = Latin American Journal of Aquatic Research Life Sci. Adv. = Life Science Advances (India) Mar. Biol. = Marine Biology Mar. Freshwater Res. = Marine and Freshwater Research Mar. Sci. Monthly = Marine Sciences, Monthly (Tokyo) Mar. Sci. Bull. = Marine Science Bulletin (China) Marine Sciences (Beijing) Matsya (India) Medaka = The Fish Biology Journal Medaka (Japan)
Journal List
323
Mem. Hyogo Univ. Agricul. = Memoirs of the Hyogo University of Agriculture (Japan) Mitt. Hamburg. Zool. Mus. Inst. = Mitteilungen aus dem Hamburgischen Zoologischen Museum und Institut Mol. Phylogenet. Evol. = Molecular Phylogenetics and Evolution Nat. Acad. Sci. India, Ann. Num. = National Academy of Sciences India, Ann. Num. Nat. Acad. Sci. Letters = National Academy Science Letters (Allahabad, India) Nat. Hist. Mus. Stadt Bern, Jahrbuch = Naturhistorisches Museum der Stadt Bern, Jahrbuch Naturalia = Naturalia, São Paulo Naturaliste can. = Le Naturaliste Canadien Nature Neotrop. Ichthyol. = Neotropical Ichthyology Notulae Naturae = Notulae Naturae of the Academy of Natural Sciences of Philadelphia Nucleus = The Nucleus Occ. Pap. Calif. Acad. Sci. = Occasional Papers of the California Academy of Sciences Occ. Pap. Mus. Zool. Univ. Michigan = Occasional Papers of the Museum of Zoology, University of Michigan Oceanol. Limnol. Sinica = Oceanologia et Limnologia Sinica Oikos Pakistan J. Zool. = Pakistan Journal of Zoology Perspect. Cytol. Genet. = Perspectives in Cytology and Genetics (New Delhi) Phil. Trans. R. Soc. London, (B) = Philosophical Transactions of the Royal Society of London, Ser. B Physiol. Ecol. Japan = Physiology and Ecology Japan Polar Biol. = Polar Biology Postilla Proc. Ind. Acad. Sci., Sec. B = Proceedings of the Indian Academy of Sciences, Section B Proc. Japan Acad. = Proceedings of the Japan Academy Proc. Japan Acad., Ser. B = Proceedings of the Japan Academy. Ser. B, Physical and Biological Sciences Proc. Japan. Soc. Syst. Zool. = Proceedings of the Japanese Society of Systematic Zoology Proc. Louisiana Acad. Sci. = Proceedings of the Louisiana Academy of Sciences Proc. Nat. Acad. Sci. India = Proceedings of the National Academy of Sciences, India Proc. R. Soc. Lond., B = Proceedings of the Royal Society of London. Series B, Biological Sciences Proc. Soc. Exper. Biol. Med. = Proceedings of the Society for Experimental Biology and Medicine Proc. Zool. Inst. Leningrad = Proceedings of the Zoological Institute, Leningrad Proc. Zool. Soc. Calcutta = Proceedings of the Zoological Society, Calcutta Progress Modern Biol. = Progress of Modern Biology (Uspekhi Sovremennoi Biologii) Progressive Fish-Culturist = The Progressive Fish-Culturist (Washington, D.C.) Radovi Anubih Rapp. Comm. Int. Mer. Médit. = Rapport du Commission International de la Mer Méditerranee Rep. Mishima Res. Inst. Sci. Liv., Nihon Univ. = Report of the Mishima Research Institute of Sciences for Living, Nihon University (Japan) Res. Bull. (N.S.) Panjab Univ. = Research Bulletin (N.S.) of the Panjab University (India) Res. Rev. BioSciences (India) = Research and Reviews in BioSciences (India) Rev. Biol. Trop. = Revista de Biologia Tropical (San José)
324
Journal List
Rev. Biol. Uruguay = Revista de Biologia del Uruguay Rev. Fish Biol. Fish. = Reviews in Fish Biology and Fisheries Rev. fr. Aquariol. = Revue Française D’aquariologie Rev. Hydrobiol. Trop. = Revista Hydrobiologia Tropical Russian J. Genet. = Russian Journal of Genetics Russian J. Mar. Biol. = Russian Journal of Marine Biology Saber, Univ. Oriente, Venezuela = Saber, Universidad de Oriente, Venezuela Sci. Culture = Science and Culture (Calcutta) Sci. Rep. Res. Inst. Evol. Biol. = Science Report of the Research Institute of Evolutionary Biology (Tokyo) Sci. Mar. = Scientia Marina Science Sinozool. = Sinozoologia Southwest. Nat. = The Southwestern Naturalist Stain Technol. = Stain Technology Swedish. J. Agric. Res. = Swedish Journal of Agricultural Research Tansuigyo (Osaka) Texas J. Sci. = The Texas Journal of Science Texas Rep. Biol. Med. = Texas Reports on Biology and Medicine TFH = Tropical Fish Hobbyist Theor. Appl. Genet. = Theoretical and Applied Genetics Trans. Amer. Fish. Soc. = Transactions of the American Fisheries Society Trans. Chinese Ichthyol. Soc. = Transactions of the Chinese Ichthyological Society Travaux Mus. Natl. Hist. Nat. “Grigore Antipa” = Travaux du Museum National d’Histoire Naturelle “Grigore Antipa” Trends Genet. = Trends in Genetics Tropic Oceanology (Beijing) Trudy Zool. Inst. = Trudy Zoologicheskogo Instituta Tsitol. Genet. = Tsitologiya i Genetika Tsitologiya Turk. J. Biol. = Turkish Journal of Biology Turk. J. Zool. = Turkish Journal of Zoology Veterinar. Arhiv = Veterinarski Arhiv Vidensk. Medd. Dansk naturh. Foren. = Videnskabelige Meddelelser fra Dansk Naturhistorisk Forening Vie Milieu = Vie et Milieu Vopr. Ichthyol. = Voprosy Ikhtiologii Z. Binnenfisch. fi = Zeitschrift für die Binnenfi fischerei Z. Fisch. = Zeitschrift für Fischerei Z. Fischkunde = Zeitschrift für Fischkunde Z. Zool. Syst. Evol.-Forsch. = Zeitschrift für Zoologische Systematik und Evolutionsforschung Zool. Abhand. Staat. Mus. Tier. Dresden = Zoologische Abhandlungen Staatliches Museum für Tierkunde in Dresden Zool. Anz. = Zoologischer Anzeiger Zool. Mag. Japan = Zoological Magazine, Japan Zool. Orientalis = Zoologica Orientalis Zool. Res. = Zoological Research (Kunming, China) Zool. Sci. = Zoological Science (Japan) Zool. Zhurnal = Zoologicheskii Zhurnal
Index
Abbottina, 56 Aboma, 201 Abramis, 61, 62 Abramites, 78 Abudefduf, f 185, 186 Abyssocottidae, 19, 162 Abyssocottus, 162 Acantharchus, 165 Acanthobrama, 61, 72 Acanthocobitis, 77 Acanthogobius, 201 Acanthopagrus, 176 Acanthophthalmus, 76 Acanthopsis, 74 Acanthopterygii, 3, 5, 17 Acanthorhodeus, 45 Acanthuridae, 22, 204 Acanthuroidei, 22, 204 Acanthurus, 204 Acarichthys, 179 Acentrogobius, 198 Acerina, 172 Acestrorhynchidae, 13, 78 Acestrorhynchus, 78 Acheilognathinae, 12, 45 Acheilognathus, 45, 46 Achiridae, 23, 211 Achiropsettidae, 23 Achirus, 211 Achondrostoma, 6, 61 Acipenser, 27, 37 Acipenseridae, 11, 37 ACIPENSERIFORMES, 6, 11, 37 Acrocheilus, 65 Acropomatidae, 19 Acrossocheilus, 47, 50
Actinopterygii, 1, 4, 6, 11, 25, 36 Adamas, 141 Adinia, 147 Adioryx, 153 Adrianichthyidae, 17, 135 Adrianichthyinae, 17 Adrianichthyoidei, 17, 135 Aequidens, 179–181 African Cichlidae, 21, 182 Ageneiosus, 97 Agonidae, 19, 162 Agonostomus, 133 Agonus, 162 Agrammus, 160 Aidablennius, 194 Ailia, 113 Akysidae, 14 Albulidae, 11 ALBULIFORMES, 3, 6, 11 Albuloidei, 11 Alburnoides, 61 Alburnus, 2, 61 Alcichthys, 160 Alectis, 164 Alectrias, 189 Alepes, 164 Alepisauridae, 16 Alepisauroidei, 16 Alepocephalidae, 15 Alepocephaloidei, 15 Alestiidae, 13, 78 Alloconger, 41 Allocyttus, 153 Allodontichthys, 148 Alloophorus, 148 Allotoca, 148
Alopiidae, 9 Alosa, 43 Alosinae, 12, 43 Alphestes, 175 Amanses, 213 Amarsipidae, 22 Ambassidae, 19, 163 Ambassis, 163 Ambloplites, 165 Amblyceps, 96 Amblycipitidae, 14, 96 Amblyglyphidodon, 185 Amblygobius, 198 Amblyopinae, 22, 204 Amblyopsidae, 16 Amblypharyngodon, 68 Amblyraja, 33 Ameca, 148 Ameiurus, 105 American Cichlidae, 21, 179 Amia, 38 Amiidae, 11, 38 AMIIFORMES, 11, 38 Ammocrypta, 172 Ammodytidae, 21, 193 Amphichthys, 155 Amphigonopterus, 184 Amphiliidae, 14 Amphilophus, 179 Amphipnous, 156 Amphiprion, 184 Amphiprioninae, 21, 184 Anabantidae, 23, 206 Anabantinae, 206 Anabantoidei, 22, 206 Anabarilius, 52 Anabas, 206 325
326
Index
Anablepidae, 17, 146 Anableps, 146 Anaecypris, 61 Anago, 41 Anarhichadidae, 21 Ancherythroculter, 52 Anchoa, 44 Ancistrinae, 14, 106 Ancistrus, 106, 107 Anguilla, 40 Anguillidae, 11, 40 ANGUILLIFORMES, 7, 11, 40 Anguilloidei, 11, 40 Anisotremus, 167 Anodus, 94 Anomalochromis, 182 Anomalopidae, 18 Anoplogaster, 152 Anoplogasteridae, 18, 152 Anoplopomatidae, 19, 159 Anoplopomatoidei, 19, 159 Anoptichthys, 85 Anostomidae, 13, 78 Anostomus, 78 Antennariidae, 23, 212 Antennarius, 212 Aorichthys, 99 Apareiodon, 95 Apeltes, 154 Aphanius, 146 Aphia, 198 Aphredoderidae, 16, 131 Aphredoderus, 131 Aphyocharacinae, 13, 80 Aphyocharax, 80 Aphyocypris, 52 Aphyolebias, 144 Aphyonidae, 17 Aphyosemion, 137–144 Apistinae, 19 Apistogramma, 179 Aploactinidae, 19 Aplocheilichthyinae, 17, 150 Aplocheilichthys, 150 Aplocheilidae, 17, 137 Aplocheiloidei, 17, 137 Aplocheilus, 137, 141 Aplodactylidae, 19 Aplodinotus, 174 Apocryptei, 203 Apocryptes, 203
Apocryptodon, 203 Apogon, 163 Apogonidae, 19, 163 Apteronotidae, 15, 118 Apteronotus, 118 Arapaima, 39 Archiaphyosemion, 140 Archocentrus, 179 Archoplites, 165 Archosargus, 176 Arctoscopus, 194 Argentina, 119 Argentinidae, 15, 119 ARGENTINIFORMES, 7, 15, 119 Argentinoidei, 15 Argonectes, 94 Argyropelecus, 128 Argyrosomus, 174 Ariidae, 7, 14, 97 Ariommatidae, 22 Ariopsis, 97 Ariosoma, 41 Aristichthys, 59 Arius, 97 Arnoldichthys, 78 Arothron, 213, 214 Arripidae, 19 Artedidraco, 190 Artedidraconidae, 7, 21, 190 Artedius, 160 Asian Cichlidae, 21, 182 Aspidoparia, 68 Aspidoras, 100 Aspius, 61 Aspredinidae, 14, 97 Asprocottus, 162 Astatotilapia, 182 Astroblepidae, 14 Astroconger, 41 Astronotus, 179 Astyanax, 84–86 Ataeniobius, 149 Ateleopodidae, 16 ATELEOPODIFORMES, 3, 6, 16 Atherina, 134 Atherinidae, 17, 134 ATHERINIFORMES, 17, 134 Atherinoidei, 17, 134 Atherinopsidae, 17, 134
Atherinopsinae, 134 Atherinopsoidei, 17, 134 Atherion, 134 Atherionidae, 17, 134 Atropus, 164 Atrosalarias, 194 Atule, 164 Auchenipteridae, 14, 97 Auchenipterus, 97 Auchenoglanididae, 14 Aulonocara, 182 Aulopidae, 16 AULOPIFORMES, 16, 129 Aulopyge, 47 Aulorhynchidae, 18 Aulostomidae, 18 Australoheros, 179 Austrofundulus, 144, 146 Austroglanidae, 14 Austrolebias, 144, 145 Auxis, 205 Awaous, 201 Azuma, 189 Badinae, 170 Badis, 170 Bagre, 97 Bagrichthys, 97 Bagridae, 14, 97 Bagroides, 97 Bairdiella, 174 Balantiocheilos, 47 Balistapus, 212 Balistes, 212 Balistidae, 23, 212 Balistoidei, 23, 212 Balistoides, 212 Balitoridae, 7, 13, 77 Balitorinae, 13, 77 Ballerus, 61, 62 Banjosidae, 19 Barbatula, 77 Barbinae, 7, 12, 47 Barbodes, 47, 50, 51 Barbonymus, 47 Barbourisiidae, 18 Barbus, 47–51 Barilius, 68 69 Baryancistrus, 107 Basilichthys, 134 Bathyclupeidae, 19
Index
Bathydraco, 190 Bathydraconidae, 21, 190 Bathygobius, 198 Bathylaconidae, 15 Bathylagidae, 119 Bathylaginae, 119 Bathylagoides, 119 Bathylagus, 119 Bathylutichthyidae, 19 Bathymasteridae, 21, 189 Bathysauridae, 16 Bathysauroididae, 16 Bathysauropsidae, 16 Batrachocottus, 160 Batrachoides, 155 Batrachoididae, 7, 18, 155 BATRACHOIDIFORMES, 7, 18, 155 Batrachops, 181 Beaufortia, 77 Bedotia, 134 Belligobio, 56 Belonidae, 17, 136 BELONIFORMES, 17, 135 Belonoidei, 17, 136 Belontiidae, 206 Bembridae, 19 Benthophilus, 198 Bergiaria, 111 Berycidae, 18, 152 BERYCIFORMES, 18, 152 Berycoidei, 18, 152 Beryx, 152 Betta, 207 Blenniidae, 22, 194 Blennioidei, 22, 194 Blennius, 194, 195 Blicca, 62 Bodianus, 186 Boesemania, 174 Boleophthalmi, 204 Boleophthalmus, 204 Bolinichthys, 130 Bonapartia, 128 Boops, 177 Bostrichthys, 197 Bostrychus, 197 Bothidae, 23, 210 Bothus, 210 Botia, 73, 74 Botiinae, 7, 13, 73
Boulengerella, 91 Bovichthyidae, 190 Bovichtidae, 21, 190, 193 Bovichtus, 190 Brachaeluridae, 9 Brachionichthyidae, 23 Brachychalcinus, 84 Brachydanio, 69 Brachygalaxias, 120 Brachygobius, 201 Brachyhypopomus, 118 Brachymystax, 15, 122 Brama, 164 Bramidae, 19, 164 Bregmacerotidae, 16 Brevoortia, 43 Brochiloricaria, 109 Brochis, 100 Brycon, 80, 81 Bryconamericus, 86, 87 Bryconella, 87 Bryconinae, 13, 80 Bryconops, 87 Bujurquina, 179 Bullockia, 115 Bunocephalus, 97 Butinae, 22, 197 Bythitidae, 17 Bythitoidei, 17 Caecobarbus, 48 Caenotropus, 90 Caesionidae, 19 Calamoichthys, 36 Callanthiidae, 19 Callichrous, 114 Callichthyidae, 7, 14, 99 Callichthyinae, 14, 99 Callichthys, 14, 99 Callionymidae, 22, 196 Callionymoidei, 22, 196 Callionymus, 196 Callopanchax, 140 Callorhinchidae, 9 Calophysus, 111 Calotomus, 189 Campostoma, 65 Cantherhines, 213 Canthigaster, 213 Canthophrys, 74 Capoeta, 48, 49, 51
Caproidae, 23, 208 Caproidei, 23, 208 Capros, 208 Caquetaia, 179 Caracanthidae, 19 Carangidae, 20, 164 Carangoides, 164 Caranx, 164 Carapidae, 17, 132 Carapus, 132 Carasobarbus, 49 Carassioides, 53 Carassius, 27, 53–55 Carcharhinidae, 9, 31 CARCHARHINIFORMES, 9, 31 Carcharhinus, 31 Carcharias, 30 Carcharodon, 30 Caristiidae, 20 Carnegiella, 93, 94 Carpiodes, 72 Caspiosoma, 198 Catathyridium, 211 Cathorops, 97 Catla, 49 Catlocarpio, 49 Catoprion, 82 Catostomidae, 7, 13, 72 Catostomus, 72 Caulophrynidae, 23 Centracanthidae, 20, 165 Centrarchidae, 20, 165, 178 Centrarchus, 165 Centriscidae, 18 Centrogeniidae, 20 Centrolophidae, 22 Centrophoridae, 10 Centrophrynidae, 23 Centropomidae, 20, 166 Centropomus, 166 Centropristes, 176 Centropyge, 173 Cephaloscyllium, 31 Cephalosilurus, 113 Cepolidae, 20 Ceratiidae, 23 Ceratodontidae, 24, 215 CERATODONTIFORMES, 6, 24, 215 Ceratodontoidei, 24, 215
327
328
Index
Ceratoscopelus, 130 Cerdalidae, 22 Cetomimidae, 18 Cetopsidae, 14 Cetopsorhamdia, 103 Cetorhinidae, 9 Chacidae, 14 Chaenobryttus, 165 Chaenocephalus, 191 Chaenodraco, 191 Chaenogobius, 201, 202 Chaenopsidae, 22 Chaetobranchopsis, 179 Chaetodon, 166 Chaetodontidae, 20, 166 Chagunius, 49 Chalcalburnus, 62 Chalceinae, 13, 81 Chalceus, 81 Champsocephalus, 191 Champsodontidae, 21 Chanda, 163 Chandidae, 163 Chanidae, 12, 44 Channa, 208 Channichthyidae, 7, 21, 191 Channichthys, 191 Channidae, 23, 208 Channoidei, 23, 208 Chanodichthys, 52 Chanoidei, 12, 44 Chanos, 44 Chapalichthys, 149 Characidae, 7, 13, 80 Characidium, 90, 91 CHARACIFORMES, 3, 7, 13, 78 Characinae, 81 Characodon, 149 Characoidei, 13, 78 Charax, 81 Chasmichthys, 201 Chaudhuriidae, 18 Chaunacidae, 23 Cheilinus, 186 Cheilio, 186 Cheilodactylidae, 20 Cheilopogon, 136 Cheiloprion, 185 Cheimarrhichthyidae, 21 Cheirodon, 81, 82, 88 Cheirodontinae, 13, 81
Chela, 69 Chelaethiops, 69 Chelidonichthys, 159 Chelon, 133 Chelonodon, 214 Chiasmodontidae, 21 Chilodontidae, 13, 90 Chilodus, 90 Chilomycterus, 214 Chimaera, 30 Chimaeridae, 9, 30 CHIMAERIFORMES, 6, 9, 30 Chionobathyscus, 191 Chionodraco, 191 Chirocentridae, 12 Chirolophis, 189 Chironemidae, 20 Chirostoma, 134 Chitala, 39 Chlamydoselachidae, 9, 32 Chlamydoselachus, 32 Chlopsidae, 12 Chlorophthalmidae, 16, 129 Chlorophthalmoidei, 16, 129 Chlorophthalmus, 129 Chloroscombrus, 164 Chlorurus, 189 Choerodon, 186 Chondrichthyes, 1, 9, 25, 30 Chondrostei, 1, 4, 6, 11 Chondrostoma, 6, 62, 63, 65 Chorinemus, 164 Chromaphyosemion, 137–141 Chromidotilapia, 182 Chromileptes, 175 Chrominae, 21, 184 Chromis, 184, 185 Chromobotia, 73 Chrosomus, 65 Chrysiptera, 185 Chrysophrys, 178 Chuanchia, 70 Cichla, 179, 180 Cichlasoma, 179–182 Cichlidae, 3, 21, 179 Cirrhilabrus, 186 Cirrhinus, 59 Cirrhitidae, 20 Citharichthys, 209 Citharidae, 23 Citharinidae, 13
Citharinoidei, 13 Cladistia, 1, 4, 6, 11 Clarias, 102 Clariidae, 14, 102 Claroteidae, 14 Cleisthenes, 209 Cleithracara, 180 Clinidae, 22, 195 Clinitrachus, 195 Clinocottus, 160 Clupanodon, 44 Clupea, 43 Clupeidae, 12, 43 CLUPEIFORMES, 12, 43 Clupeinae, 12, 43 Clupeoidei, 12, 43 Clupisoma, 113 Cobitidae, 7, 13, 73 Cobitinae, 74 Cobitis, 7, 13, 74–76 Cobitoidea, 7, 13, 72 COELACANTHIFORMES, 6, 24, 215 Coilia, 44 Coilinae, 44 Colisa, 206, 207 Colocongridae, 12 Cololabias, 136 Colossoma, 82, 83 Comephoridae, 19, 161 Comephorus, 161 Conger, 41 Congiopodidae, 19 Congridae, 12, 41 Congroidei, 12, 41 Conidens, 196 Conodon, 167 Conorhynchos, 113 Conorhynchus, 113 Copeina, 94 Copella, 94 Coraglanis, 115 Coregoninae, 15, 121 Coregonus, 121, 122 Coreius, 56 Coreobagrus, 97 Coreoleuciscus, 56, 57 Coreoperca, 171 Coreosiniperca, 171 Corica, 43 Coris, 186, 187
Index
Corumbataia, 107 Corvina, 174 Corydoradinae, 14, 100 Corydoras, 14, 100–102 Corymbophanes, 108 Coryphaenidae, 20 Coryphoblennius, 194 Cottidae, 19, 160 Cottinella, 162 Cottocomephorus, 160 Cottoidei, 19, 160 Cottoperca, 190 Cottus, 160, 161 Couesius, 65 Cranoglanididae, 14, 102 Cranoglanis, 102 Creediidae, 21 Crenicara, 181 Crenicichla, 180, 181 Crenilabrus, 188 Crenuchidae, 13, 90 Crossocheilus, 59 Cryodraco, 191 Cryptacanthodidae, 21 Ctenobrycon, 87 Ctenochaetus, 204 Ctenogobius, 201–203 Ctenolabrus, 187 Ctenoluciidae, 13, 91 Ctenolucius, 91 Ctenopharyngodon, 71 Ctenopoma, 206 Ctenopominae, 206 Ctenops, 206 Ctenoscopelus, 130 Culaea, 154 Culter, 53 Cultrinae, 12, 52 Curimata, 91 Curimatella, 91 Curimatidae, 7, 13, 91 Curimatopsis, 91 Cycleptus, 72 Cyclocheilichthys, 49 Cyclopteridae, 19, 162 Cyclopterus, 162 Cyematidae, 12 Cyematoidei, 12 Cygnodraco, 190 Cynodontidae, 13 Cynoglossidae, 23, 211
Cynoglossus, 211 Cynolebias, 144, 145 Cynopoecilus, 145 Cynopotamus, 81, 87 Cynoscion, 174 Cyphocharax, 91, 92 Cyphocottus, 162 Cyprinella, 65, 66 Cyprinidae, 7, 12, 45 CYPRINIFORMES, 3, 7, 12, 45 Cyprininae, 12, 53 Cyprinion, 49 Cyprinodon, 146, 147 Cyprinodontidae, 17, 146 CYPRINODONTIFORMES, 3, 17, 137 Cyprinodontinae, 146 Cyprinodontoidei, 17, 146 Cyprinoidea, 12, 45 Cyprinus, 27, 55, 56 Cypselurus, 136 Cyttidae, 18 Cyttoidei, 18 Dactylopteridae, 19, 157 Dactylopteroidei, 19, 157 Dactylopterus, 157 Dactyloscopidae, 22 Dalatiidae, 10 Dallia, 15, 128 Dalophis, 42 Danio, 69 Danioninae, 13, 68 Dascyllus, 185 Dasson, 195 Dasyatidae, 10, 34 Dasyatis, 34 Delminichthys, 62 Dendrochirus, 158 Dentex, 177 Denticipitidae, 12 Denticipitoidei, 12 Derichthyidae, 12 Dermogenys, 136 Deuterodon, 87 Devario, 69 Diademichthys, 196 Dianema, 14, 99 Diaphus, 130 Diapterus, 166 Dicentrarchus, 170
329
Diceratiidae, 23 Dichistiidae, 20 Dicrossus, 181 Dictyosoma, 189 Dinolestidae, 20 Dinopercidae, 20 Diodon, 214 Diodontidae, 23, 214 Dionda, 66 Diplectrum, 176 Diplodus, 177 Diplomystes, 103 Diplomystidae, 14, 103 Diplophidae, 15 Dipturus, 33 Diptychus, 70 Diretmidae, 18, 152 Diretmus, 152 Dischistodus, 185 Discogobio, 59 Dissostichus, 192 Distichodontidae, 13 Distoechodon, 72 Doradidae, 7, 14, 103 Doras, 103 Dormitator, 197 Dorosoma, 44 Dorosomatinae, 12, 44 Doryichthys, 154 Draconettidae, 22 Draculo, 196 Drepaneidae, 20 Echelus, 42 Echeneidae, 20, 166 Echiichthys, 193 Echinorhinidae, 9 ECHINORHINIFORMES, 3, 6, 9 Eigenmannia, 118, 119 Elasmobranchii, 1, 4, 6, 9 Elassoma, 178 Elassomatidae, 21, 178 Elassomatoidei, 21, 178 Electrona, 130 Electrophorus, 117 Eleginopidae, 21, 191 Eleginops, 191 Eleginus, 131 Eleotridae, 22, 197 Eleotrinae, 22, 197
330
Index
Eleotriodes, 201 Eleotris, 197, 201 Eleutherochir, 196 Eleutheronema, 173 Elopichthys, 62 Elopidae, 11, 40 ELOPIFORMES, 11, 40 Elops, 40 Embiotoca, 184 Embiotocidae, 21, 184 Emmelichthyidae, 20 Enchelycore, 41 Enedrias, 189 Engraulidae, 12, 44 Engraulinae, 44 Engraulis, 44 Enneacanthus, 165 Enoplosidae, 20 Entosphenus, 29 Ephippidae, 22, 204 Epibulus, 187 Epiceratodus, 215 Epigonidae, 20 Epinephelinae, 175 Epinephelus, 175, 176 Epiplatys, 141 Eptatretinae, 8, 28 Eptatretus, 28 Eremophilus, 115 Erethistidae, 14, 103 Ereuniidae, 19 Ericymba, 67 Erilepis, 159 Erimyzon, 72 Ernogrammus, 189 Erpetoichthys, 36 Erythrinidae, 14, 92 Erythrinus, 92, 93 Erythroculter, 52, 53 Esocidae, 15, 128 ESOCIFORMES, 7, 15, 128 Esomus, 69 Esox, 128 Etheostoma, 172 Etmopteridae, 10, 32 Etmopterus, 32 Etroplus, 182 Etropus, 209 Euchiloglanis, 115 Eucinostomus, 166 Euclichthyidae, 16
Eudontomyzon, 29 Eugerres, 167 Eupallasella, 62, 63 Eupomacentrus, 186 Eurasian Leuciscinae, 61 Eurypharyngidae, 12 Eutropiichthys, 113 Evermannellidae, 16 Evynnis, 177 Exocoetidae, 17, 136 Exocoetoidei, 136 Exodon, 81 Exoglossum, 66 Exostoma, 115 Favonigobius, 198 Fenerbahce, 141 Fistulariidae, 18 Fluta, 156 Foerschichthys, 141 Folifer, 49 Fugu, 214 Fundulidae, 17, 147 Fundulopanchax, 141, 142 Fundulosoma, 143 Fundulus, 147, 148 Gadidae, 16, 131 GADIFORMES, 16, 131 Gadinae, 16, 131 Gadus, 131 Gagata, 115 Gaidropsarus, 132 Galaxias, 120 Galaxiidae, 15, 120 Galeichthys, 97 Galeocerdo, 31 Galeocharax, 81 Galeorhininae, 9 Gambusia, 150 Garmanella, 147 Garra, 59, 60 Gasteropelecidae, 14, 93 Gasteropelecus, 94 Gasterosteidae, 18, 154 GASTEROSTEIFORMES, 3, 18, 154 Gasterosteoidei, 18, 154 Gasterosteus, 154 Gastrophysus, 214 Gazza, 168
Gempylidae, 22 Genidens, 97 Geophagus, 181, 182 Geotria, 29 Geotriidae, 8, 29 Gephyrocharax, 82 Gerlachea, 190 Gerreidae, 20, 166 Gerres, 167 Gibberichthyidae, 18 Gigantactinidae, 23 Giganturidae, 16 Giganturoidei, 16 Gila, 66 Gillichthys, 202 Ginglymostomatidae, 9 Girardinichthys, 149 Girardinus, 150 Girella, 168 Girellinae, 168 Glandulocauda, 82 Glandulocaudinae, 13, 82 Glanidium, 97 Glaridichthys, 150 Glaucosomatidae, 20 Glossogobius, 198 Glyphidodontops, 185 Glyptocephalus, 209 Glyptoperichthys, 109 Glyptosterninae, 15, 115 Glyptosternon, 115 Glyptothorax, 115 Gnathanacanthidae, 19 Gnatholebias, 145 Gnathonema, 39 Gnathonemus, 39 Gnathopogon, 57, 59 Gobiesocidae, 22, 196 Gobiesocoidei, 22, 196 Gobiidae, 22, 198 Gobiinae, 22, 198 Gobio, 57, 58 Gobiobotia, 56 Gobiobotinae, 13, 56 Gobiodon, 198 Gobioidei, 22, 197 Gobioides, 204 Gobiomorus, 197 Gobionellinae, 22, 201 Gobionellus, 201, 202 Gobioninae, 7, 13, 56
Index
Gobionotothen, 192 Gobiopsis, 198 Gobiosoma, 198 Gobius, 198–201 Gobiusculus, 200 Gogangra, 115 Gomphosus, 187 Gonialosa, 44 Gonoproktopterus, 49, 57 Gonorynchidae, 12 GONORYNCHIFORMES, 6, 12, 44 Gonorynchoidei, 12 Gonostoma, 128 Gonostomatidae, 15, 128 Gonostomatoidei, 15, 128 Goodea, 149 Goodeidae, 17, 148 Goodeinae, 148 Grammatidae, 20 Grammicolepididae, 18 Grundulus, 81 Gudusia, 43 Gymnachirus, 211 Gymnammodytes, 193 Gymnarchidae, 11 Gymnocanthus, 161 Gymnocephalus, 172 Gymnocorymbus, 87 Gymnocypris, 70 Gymnodiptychus, 70 Gymnogeophagus, 181 Gymnogobius, 202 Gymnothorax, 41 Gymnotidae, 15, 117 GYMNOTIFORMES, 15, 117 Gymnotoidei, 15, 117 Gymnotus, 117 Gymnura, 34 Gymnuridae, 10, 34 Gyrinocheilidae, 13, 72 Gyrinocheilus, 72 Haemulidae, 20, 167 Haemulon, 167 Halichoeres, 187 Halobatrachus, 155 Halosauridae, 11 Hapalogenys, 167 Haplochromis, 182 Harengula, 43
Harpagifer, 191 Harpagiferidae, 21, 191 Harttia, 109 Hasemania, 87 Hassar, 103 Hatcheria, 115 Helicolenus, 157 Helostoma, 206 Helostomatidae, 23, 206 Hemiancistrus, 107 Hemibagrus, 97, 98 Hemibalistes, 212 Hemibarbus, 57 Hemichromis, 182 Hemiculter, 53 Hemiculterella, 53 Hemigaleidae, 9 Hemigrammocypris, 69 Hemigrammus, 87, 88 Hemigymus, 187 Hemihaplochromis, 182 Hemimyzon, 77 Hemiodontidae, 14, 94 Hemiodus, 94 Hemipsilichthys, 110 Hemipteronotus, 187, 188 Hemiramphidae, 17, 136 Hemiramphus, 136 Hemiscylliidae, 9 Hemisorubim, 111 Hemisynodontis, 111 Hemitremia, 66 Hemitripteridae, 19, 162 Hemitripterus, 162 Heniochus, 166 Hepsetidae, 14 Heptapteridae, 14, 103 Heptapterus, 103 Heptranchias, 32 Heptranchiidae, 9, 32 Herichthys, 181 Herklotsichthys, 43 Heros, 181 Herotilapia, 181 Hesperoleucus, 66 Heterenchelyidae, 11 Heterobranchus, 102 Heterochromis, 183 Heterodontidae, 9, 30 HETERODONTIFORMES, 9, 30
331
Heterodontus, 30 Heteromycteris, 211 Heteropneustes, 105 Heteropneustidae, 14, 105 Heterotis, 39 Hexagrammidae, 19, 160 Hexagrammoidei, 19, 160 Hexagrammos, 160 Hexanchidae, 9 HEXANCHIFORMES, 9, 32 Hexatrygonidae, 10 Himantolophidae, 23 Hiodon, 38 Hiodontidae, 11, 38 HIODONTIFORMES, 11, 38 Hippocampinae, 154 Hippocampus, 18, 154 Hippoglossina, 209 Hippoglossus, 209 Hisonotus, 107 Hispidoberycidae, 18 Histrio, 212 Hitiodraco, 190 Holacanthus, 173 Hollandichthys, 88 Holocentridae, 18, 153 Holocentroidei, 18, 153 Holocentrus, 153 Holocephali, 1, 4, 6, 9 Hologymnosus, 187 Holoshestes, 82 Holostei, 1, 4, 6, 11 Homaloptera, 77 Homalopteridae, 77 Hoplerythrinus, 93 Hoplias, 93 Hoplichthyidae, 19 Hoplosternum, 14, 100 Hoplostethus, 152 Horabagrus, 98 Horaichthyinae, 17 Hubbsina, 149 Hucho, 15, 122, 123 Huigobio, 57 Huso, 37 Hybognathus, 66 Hybopsis, 65–67 Hydrolagus, 30 Hygophum, 130 Hypentelium, 72 Hyphessobrycon, 82, 87–89
332
Index
Hypoatherina, 134 Hypoclinemus, 211 Hypodytes, 158 Hypomesinae, 15, 120 Hypomesus, 120 Hypophthalmichthyinae, 13, 59 Hypophthalmichthys, 59 Hypopomidae, 15, 118 Hypopomus, 118 Hypoptopomatinae, 14, 107 Hypoptychidae, 18 Hypopygus, 118 Hyporhamphus, 136 Hypostominae, 14, 106, 108 Hypostomus, 108, 109 Hypselecara, 181 Hypseleotris, 197 Hypselobarbus, 49 Hypsibarbus, 49 Iberochondrostoma, 6, 62 Iberocypris, 62 Icelus, 161 Ichthyomyzon, 29 Icosteidae, 22 Icosteoidei, 22 Ictaluridae, 14, 105 Ictalurus, 105 Ictiobus, 72 Iguanodectes, 82 Iguanodectinae, 13, 82 Iheringichthys, 111, 112 Iksookimia, 75 Ilyodon, 149 Imparfinis fi , 103, 104 Indostomidae, 18 Inegocia, 159 Inermiidae, 20 Inimicus, 159 Inpaichthys, 80 Ipnopidae, 16 Isbrueckerichthys, 110 Ischikauia, 53 Istiblennius, 194 Istiophoridae, 22 Jinshaia, 77 Johnius, 174 Jordanella, 147 Julidochromis, 183
Kareius, 209 Kathala, 174 Katsuwonus, 205 Kichulchoia, 76 Kneriidae, 12 Knerioidei, 12, 44 Knodus, 89 Konosirus, 44 Koreocobitis, 76 Kosswigichthys, 146 Kraemeriidae, 22 Krobia, 181 Kronichthys, 110 Kryptolebias, 145 Kryptopterus, 114 Kuhlia, 167 Kuhliidae, 20, 167 Kurtidae, 22, 204 Kurtoidei, 22, 204 Kurtus, 204 Kyphosidae, 20, 168 Kyphosinae, 168 Kyphosus, 168 Labeo, 60, 61 Labeobarbus, 49 Labeoninae, 13, 59 Labeotropheus, 183 Labidesthes, 134 Labiobarbus, 61 Labracoglossa, 168 Labridae, 21, 186 Labrisomidae, 22, 196 Labrisomus, 196 Labroidei, 3, 21, 179 Labroides, 187 Labrus, 187 Lactariidae, 20 Lactoria, 213 Laetacara, 181 Lagocephalus, 214 Lagodon, 177 Laguvia, 103 Lamnidae, 9, 30 LAMNIFORMES, 9, 30 Lampadena, 130 Lampanyctus, 130 Lampetra, 29 Lampiella, 107 Lampridae (Lamprididae), 16 LAMPRIFORMES, 3, 6, 16
Lamprologus, 183 Larimichthys, 174 Lateolabrax, 170 Lates, 168 Latidae, 20, 168 Latimeria, 215 Latimeriidae, 24, 215 Latridae, 20 Lavinia, 66 Lebiasinidae, 14, 94 Lebistes, 151 Lefua, 77 Leiocassis, 98, 99 Leiognathidae, 20, 168 Leiognathus, 168 Leiostomus, 174 Leocottus, 161 Lepadichthys, 196 Lepadogaster, 196 Lepidocephalichthys, 76 Lepidomeda, 66 Lepidonotothen, 192 Lepidophanes, 130 Lepidosiren, 215 Lepidosirenidae, 24, 215 Lepidosirenoidei, 24, 215 Lepidozyginae, 21 Lepisosteidae, 11, 38 LEPISOSTEIFORMES, 7, 11, 38 Lepisosteus, 38 Lepomis, 165, 166 Leporellus, 78 Leporinus, 78–80 Leptobarbus, 49 Leptobotia, 73 Leptobotiinae, 7, 13, 73 Leptobramidae, 20 Leptochariidae, 9 Leptocypris, 69 Leptodoras, 103 Leptoscopidae, 21 Lethenteron, 29 Lethrinidae, 20, 168 Lethrinus, 168 Leucaspius, 62 Leuciscinae, 7, 13, 61 Leuciscus, 6, 62–65 Leuroglossus, 119 Limanda, 209, 210 Limia, 150
Index
Limnocottus, 162 Lindbergichthys, 192 Linophrynidae, 23 Liobagrus, 96 Liopsetta, 210 Liparidae, 19 Lipolagus, 119 Lipophrys, 194 Liposarcus, 109 Lithogeneinae, 14 Lithognathus, 177 Liza, 133 Lobianchia, 130 Lobotidae, 20, 168 Lobotus, 168 Lophichthyidae, 23 Lophiidae, 23, 212 LOPHIIFORMES, 23, 212 Lophiosilurus, 113 Lophius, 212 Lophotidae, 16 Loricaria, 109 Loricariichthys, 109 Loricariidae, 7, 14, 106 Loricariinae, 14, 109 Lota, 131 Lotinae, 16, 131 Luciobarbus, 49 Luciobrama, 63 Luciocephalinae, 206 Luciocephalus, 206 Luciogobius, 202 Lucioperca, 172, 173 Luciopimelodus, 112 Lumpenus, 189 Lutjanidae, 20, 169 Lutjanus, 169 Luvaridae, 22 Luxilus, 66 Lycodichthys, 189 Lythrurus, 66, 67 Macrhybopsis, 67 Macrognathus, 155 Macropodus, 207 Macropodusinae, 207 Macroramphosidae, 18, 154 Macroramphosus, 154 Macrotocinclus, 107 Macrouridae, 16 Malacanthidae, 20
Malapteruridae, 14 Mallotus, 120 Marcusenius, 39 Margariscus, 67 Markiana, 89 Marosatherina, 134 Mastacembelidae, 18, 155 Mastacembeloidei, 18, 155 Mastacembelus, 155 Meda, 67 Megachasmidae, 9 Megalamphodus, 88, 89 Megalancistrus, 107 Megalaspis, 164 Megalebias, 145 Megalechis, 14, 100 Megalobrama, 53 Megalomycteridae, 18 Megalonema, 112 Megalopidae, 11, 40 Megalops, 40 Megaprotodon, 166 Megupsilon, 147 Melamphaes, 152 Melamphaidae, 18, 152 Melanocetidae, 23 Melanochromis, 183 Melanonidae, 16 Melanotaenia, 134 Melanotaeniidae, 17, 134 Melichthys, 212 Membras, 134 Menidae, 20 Menidia, 134 Menidiinae, 134 Menticirrhus, 174 Merlucciidae, 17 Mesogobius, 200 Mesonauta, 181 Metriaclima, 183 Metynnis, 82, 83 Meuschenia, 213 Microcanthinae, 168 Microcanthus, 168 Microchirus, 211 Microctenopoma, 206 Microdesmidae, 22 Microgeophagus, 181 Microglanis, 113 Microlepidogaster, 107 Micromesistius, 131
333
Micrometrus, 184 Micronemacheilus, 77 Micropanchax, 150 Micropercops, 197 Microphis, 154 Microphysogobio, 56 Micropogonias, 174 Micropterus, 166 Microschemobrycon, 81 Microspathodon, 185 Microstomatidae, 7, 15, 119 Microstomus, 210 Mimagoniates, 82 Minytrema, 72 Mirapinnidae, 18 Misgurnus, 76 Mitsukurinidae, 9 Mobula, 35 Mobulinae, 10, 35 Mochokidae, 14, 111 Moenkhausia, 89 Mogurnda, 197 Mola, 214 Molidae, 23, 214 Mollienesia, 151 Monacanthidae, 23, 213 Monocentridae, 18, 152 Monocentris, 152 Monodactylidae, 20, 169 Monodactylus, 169 Monognathidae, 12 Monopterus, 19, 156 Mordacia, 29 Mordaciidae, 8, 29 Moridae, 17 Moringua, 41 Moringuidae, 11, 41 Mormyridae, 11, 39 Moroco, 63 Morone, 170 Moronidae, 20, 170 Morulius, 61 Moxostoma, 72 Mugil, 133 Mugilidae, 17, 133 MUGILIFORMES, 17, 133 Mugilogobius, 202 Mullidae, 20, 170 Mulloidichthys, 170 Mullus, 170 Muraena, 41
334
Index
Muraenesocidae, 12, 42 Muraenesox, 42 Muraenichthys, 42 Muraenidae, 7, 12, 41 Muraenoidei, 12, 41 Muraenolepididae, 17, 131 Muraenolepis, 131 Mustelus, 31 Mycteroperca, 176 Myctophidae, 7, 16, 130 MYCTOPHIFORMES, 7, 16, 130 Myctophum, 130 Mylesinus, 83 Myleus, 83 Myliobatidae, 10, 35 MYLIOBATIFORMES, 10, 34 Myliobatinae, 10, 35 Myliobatis, 35 Myliobatoidei, 10, 34 Mylopharodon, 67 Mylopharyngodon, 71 Myloplus, 83 Mylossoma, 83 Myoxocephalus, 161 Myrichthys, 42 Myripristis, 153 Myrocongridae, 12 Myrophinae, 42 Mystacoleucus, 49 Mystus, 97–99 Myxine, 27, 28 Myxini, 1, 4, 8, 28 Myxinidae, 8, 28 MYXINIFORMES, 6, 8, 28, Myxininae, 8, 28 Myxocyprinus, 72, 73 Nandidae, 20, 170 Nandinae, 171 Nandus, 171 Nangra, 115 Nannacara, 181 Nannobrachium, 130 Nannobrycon, 94 Nannostomus, 94, 95 Narcine, 10, 33 Narcinidae, 10, 33 Narke, 10, 33 Navodon, 213 Nectamia, 163
Neetroplus, 181 Nemacheilinae, 13, 77 Nemacheilus, 77 Nemadoras, 103 Nemapteryx, 97 Nematistiidae, 20 Nematobrycon, 81 Nematocentris, 134 Nematogenyidae, 14 Nematolebias, 145 Nemichthyidae, 12 Nemipteridae, 20 Neoceratiidae, 23 Neoceratodus, 215 Neoditrema, 184 Neoglyphidodon, 185 Neogobius, 200 Neolamprologus, 183 Neolissochilus, 49, 50 Neoophorus, 148 Neopagetopsis, 191 Neoplecostominae, 14, 110 Neoplecostomus, 110 Neopterygii, 1, 4, 7, 11 Neosalanx, 120 Neoscopelidae, 16, 130 Neotropius, 113 Nerophis, 18, 154 Nettastomatidae, 12 Netuma, 97 Nibea, 174, 175 Nimbapanchax, 142, 143 Niwaella, 76 Nocomis, 67 Nomeidae, 22 Normanichthyidae, 19 Normanichthyoidei, 19 North American Leuciscinae, 65 Notacanthidae, 11 Notacanthoidei, 11 Notarius, 97 Notemigonus, 67 Nothobranchiidae, 17, 137 Nothobranchius, 143 Notocheiridae, 17 Notograptidae, 20 Notopteridae, 11, 39 Notopterus, 39 Notorynchidae, 9, 32 Notorynchus, 32
Notoscopelus, 130 Notosudidae, 16 Notothenia, 192 Nototheniidae, 21, 192 Notothenioidei, 21, 190 Notropis, 65–67 Noturus, 105, 106 Novaculichthys, 187 Novumbra, 15, 128 Oblada, 177 Ochetobius, 63 Ocynectes, 161 Ocyurus, 169 Odacidae, 21 Odontamblyopus, 204 Odontaspididae, 9, 30 Odontesthes, 134 Odontobutidae, 22, 197 Odontobutis, 197 Odontostilbe, 81, 82 Odonus, 212 Oedalechilus, 133 Ogcocephalidae, 23 Oligocottus, 161 Oligosarcus, 89 Olivaichthys, 103 Omobranchus, 194 Ompok, 114 Oncorhynchus, 2, 15, 27, 123–125 Oneirodidae, 23 Onigocia, 159 Onychostoma, 50 Ophichthidae, 12, 42 Ophichthinae, 42 Ophichthus, 42 Ophidiidae, 17, 132 OPHIDIIFORMES, 17, 132 Ophidioidei, 17, 132 Ophidion, 132 Ophiocara, 197 Ophiocephalus, 208 Ophioscion, 174 Ophisternon, 156 Ophisurus, 42 Opisthoproctidae, 15 Opistognathidae, 20 Oplegnathidae, 20, 171 Oplegnathus, 171 Opsariichthys, 69
Index
Opsodoras, 103 Opsopoeodus, 67 Orectolobidae, 9 ORECTOLOBIFORMES, 3, 9 Oreochromis, 183 Oreosomatidae, 18, 153 Orestias, 147 Orthodon, 68 Orthopristis, 167 Orthospinus, 84 Oryzias, 135 Oryziinae, 17, 135 Osmeridae, 15, 120 OSMERIFORMES, 7, 15, 120 Osmerinae, 15, 120 Osmerus, 120 Osphronemidae, 23, 206 Osphronemus, 207 Osteichthyes, 11, 25, 36 Osteobrama, 53 Osteochilichthys, 61 Osteochilus, 61 Osteoglossidae, 11, 39 OSTEOGLOSSIFORMES, 7, 11, 39 Osteoglossum, 39 Ostraciidae, 23, 213 Ostracion, 213 Ostracoberycidae, 20 Otocinclus, 107 Otolithes, 174 Otolithoides, 175 Oxudercinae, 22, 203 Oxydoras, 103 Oxyeleotris, 197 Oxygymnocypris, 70 Oxymonacanthus, 213 Oxynotidae, 10, 32 Oxynotus, 32 Pachycara, 189 Pachychilon, 63 Pachypanchax, 137 Pachyurus, 175 Padogobius, 200 Pagellus, 177 Pagetopsis, 191 Pagothenia, 192, 193 Pagrosomus, 177 Pagrus, 177, 178 Panaque, 107
Panchax, 139 Pangasianodon, 111 Pangasiidae, 14, 111 Pangasius, 111 Pangio, 76 Pantodon, 39 Pantodontidae, 11, 39 Papiliochromis, 181 Papyrocranus, 39 Parablennius, 194, 195 Parabotia, 73, 74 Parabramis, 53 Parabrotulidae, 17 Paracanthobrama, 57 Paracanthopterygii, 3, 5, 16 Paracentropistis, 176 Paracentropogon, 158 Parachaenichthys, 190 Parachanna, 208 Paracheilognathus, 45, 46 Paracheirodon, 82 Parachondrostoma, 6, 63 Parachromis, 181 Paracobitis, 77 Paracottus, 161 Paraglyphidodon, 185, 186 Paragoniatinae, 13, 82 Parahucho, 15, 123 Paralepididae, 16 Paraleucogobio, 57 Paralichthodidae, 23 Paralichthyidae, 23, 209 Paralichthys, 209 Paralipophrys, 195 Parambassis, 163 Paramisgurnus, 76 Paramonacanthus, 213 Paramugil, 133 Paramyxine, 28 Paranibea, 175 Paranotothenia, 192 Parapelecus, 53 Parapercidae, 193 Parapercis, 193 Paraphoxinus, 62, 63, 65 Parapimelodus, 112 Paraplagusia, 211 Parapocryptes, 203 Parapteronotus, 118 Parasalmo, 124 Parascylliidae, 9
335
Parasilurus, 114 Parasinilabeo, 61 Paratrygon, 35 Parauchenipterus, 97 Paraulopidae, 16 Parazenidae, 18 Pareiorhaphis, 110 Pareiorhina, 108, 111 Pareques, 175 Parika, 213 Parioglossus, 198 Pariolius, 103, 104 Parodon, 95 Parodontidae, 14, 95 Paroligosarcus, 89 Parophidion, 132 Parosphromenus, 207 Parotocinclus, 108 Parupeneus, 170 Parvilux, 130 Pataecidae, 19 Patagonotothen, 192 Paulicea, 113 Pegasidae, 18 Pegusa, 211 Pelecus, 63 Pellonulinae, 12 Pelmatochromis, 182–184 Pelteobagrus, 98, 99 Pelvicachromis, 183 Pempheridae, 20, 171 Pempheris, 171 Pentacerotidae, 20 Perca, 172 Percarina, 172 Perccottus, 197 Percichthyidae, 20, 171 Percidae, 20, 172 PERCIFORMES, 3, 7, 19, 163 Perciliidae, 20 Percina, 172 Percocypris, 50 Percoidei, 19, 163 Percophidae, 21 Percopsidae, 16 PERCOPSIFORMES, 6, 16, 131 Perilampus, 69 Periophthalmini, 203 Periophthalmodon, 203 Periophthalmus, 203 Peristediidae, 19
336
Index
Petroleuciscus, 6, 63 Petromyzon, 29 Petromyzontida, 1, 4, 6, 29 Petromyzontidae, 8, 29 PETROMYZONTIFORMES, 6, 8, 29 Petroscirtes, 195 Phaeoptyx, 163 Phalloceros, 150 Phallostethidae, 17 Phenacobius, 68 Phenacogaster, 81 Pholidae, 21, 189 Pholidichthyidae, 22 Pholidichthyoidei, 22 Pholis, 189 Phosichthyidae, 16 Phosichthyoidei, 16 Photopectoralis, 168 Phoxinellus, 63 Phoxinus, 63, 65 Phractolaemidae, 12, 44 Phractolaemus, 44 Phycidae, 17, 132 Phycis, 132 Piabina, 89 Piaractus, 83 Pimelodella, 104 Pimelodidae, 14, 104, 111 Pimelodus, 112 Pimephales, 68 Pinguipedidae, 21, 193 Pinirampus, 112 Pisodonophis, 42 Pisoo*p4donophis, 42 Plagiognathops, 72 Plagioscion, 175 Plagopterus, 68 Platax, 204 Platichthys, 210 Platycephalidae, 19, 159 Platycephaloidei, 19, 159 Platycephalus, 159 Platydoras, 103 Platypharodon, 70 Platyrhinidae, 10, 34 Platyrhinoidei, 10, 34 Platyrhinoidis, 34 Platysmacheilus, 57 Platytroctidae, 15 Plecoglossinae, 15, 120
Plecoglossus, 120 Plecostomus, 108 Plectroglyphidodon, 185, 186 Plesiobatidae, 10 Plesiopidae, 20, 173 Plesiops, 173 Pleuragramma, 192 Pleurogrammus, 160 Pleuronectes, 209, 210 Pleuronectidae, 23, 209 PLEURONECTIFORMES, 23, 209 Pleuronectoidei, 23, 209 Pleuronichthys, 210 Plicofollis, 97 Plotosidae, 7, 14, 113 Plotosus, 113 Poecilia, 151 Poeciliidae, 17, 150 Poeciliinae, 17, 150 Poeciliopsis, 151 Poecilobrycon, 94, 95 Poecilopsettidae, 23 Pogonias, 175 Pogonichthys, 68 Pogonophryne, 190 Pogonopoma, 109 Pollachius, 131 Polycentridae, 20, 173 Polycentrus, 173 POLYMIXIIFORMES, 3, 6, 16 Polymixiidae, 16 Polynemidae, 20, 173 Polyodon, 37 Polyodontidae, 11, 37 Polyprionidae, 20 Polypteridae, 11, 36 POLYPTERIFORMES, 6, 11, 36 Polypterus, 36 Pomacanthidae, 20, 173 Pomacanthus, 173 Pomacentridae, 21, 184 Pomacentrinae, 21, 185 Pomacentrus, 186 Pomadasyidae, 167 Pomadasys, 167 Pomatomidae, 20, 174 Pomatomus, 174 Pomatoschistus, 200, 201 Pomoxis, 166 Poptella, 84
Porichthys, 155 Poromitra, 152 Poropanchax, 150 Poropuntius, 50 Potamorhina, 92 Potamorrhaphis, 136 Potamotrygon, 35 Potamotrygonidae, 10, 35 Priacanthidae, 20, 174 Priacanthus, 174 Prietella, 106 Prionace, 31 Prionobrama, 82 Prionodraco, 190 Prionotus, 159 Prionurus, 204 Pristella, 82 Pristidae, 10 PRISTIFORMES, 3, 10 Pristigasteridae, 12 Pristiophoridae, 10 PRISTIOPHORIFORMES, 3, 6, 10 Pristipoma, 167 Pristobrycon, 83, 84 Pristolepidinae, 171 Pristolepis, 171 Probarbus, 50 Probolodus, 82 Procatopodinae, 17, 150 Procatopus, 150 Prochilodontidae, 7, 14, 95 Prochilodus, 95, 96 Procottus, 162 Procypris, 56 Profundulidae, 17 Proloricaria, 109 Proscylliidae, 9 Prosopium, 122 Protacanthopterygii, 5 Proterorhinus, 201 Protomyctophum, 130 Protonibea, 175 Protopteridae, 24, 215 Protopterus, 24, 215 Psammoperca, 168 Psectrogaster, 92 Psetta, 209 Psettina, 210 Psettodidae, 23 Psettodoidei, 23
Index
Pseudambassis, 163 Pseudanos, 80 Pseudaphritidae, 21, 193 Pseudaphritis, 193 Pseudapocryptes, 203 Pseudaspius, 63 Pseudecheneis, 115 Pseudeutropius, 113 Pseudobagrus, 98, 99 Pseudobalistes, 212 Pseudobarbus, 50 Pseudobathylagus, 119 Pseudoblennius, 161 Pseudobrama, 72 Pseudocarchariidae, 9 Pseudochaenichthys, 191 Pseudochondrostoma, 6, 63 Pseudochromidae, 21 Pseudodoras, 103 Pseudogastromyzon, 77 Pseudogobio, 57, 58 Pseudohemiculter, 53 Pseudolabrus, 3, 187 Pseudolaguvia, 103 Pseudolaubuca, 53 Pseudoperilampus, 45, 46 Pseudopimelodidae, 14, 113 Pseudopimelodus, 113 Pseudoplatystoma, 112, 113 Pseudopleuronectes, 210 Pseudopristella, 89 Pseudopungtungia, 58 Pseudorasbora, 58 Pseudorhombus, 209 Pseudoscaphirhynchus, 37 Pseudosciaena, 174 Pseudotocinclus, 108 Pseudotothyris, 108 Pseudotrematomus, 192, 193 Pseudotriacanthus, 212 Pseudotriakidae, 9 Pseudotrichonotidae, 16 Pseudotropheus, 183 Pseudotylosurus, 136 Psilodraco, 190 Psilorhynchidae, 13, 72 Psilorhynchus, 72 Psychrolutidae, 19 Pteragogus, 187 Ptereleotridae, 22, 198 Pterodoras, 103
Pterogobius, 202 Pterois, 19, 158 Pterolebias, 144, 145 Pteronotropis, 68 Pterophyllum, 181, 182 Pterygoplichthys, 109 Ptilichthyidae, 21 Ptychobarbus, 70 Ptychocheilus, 68 Pungitius, 154 Pungtungia, 58 Puntioplites, 50 Puntius, 47, 49–51 Pygocentrus, 83 Pylodictis, 106 Pyrrhulina, 95 Quietula, 202 Quintana, 151 Rachovia, 145 Rachycentridae, 21 Racovitzia, 190 Radiicephalidae, 16 Raiamas, 69 Raja, 33 Rajidae, 10, 33 RAJIFORMES, 10, 33 Raniceps, 131 Ranicipitinae, 16, 131 Rasbora, 69, 70 Rasborinae, 7, 13, 68 Regalecidae, 16 Remora, 166 Repomucenus, 196 Retropinnidae, 15 Rhabdosargus, 178 Rhamdella, 104 Rhamdia, 104, 105 Rhamphichthyidae, 15, 118 Rhamphichthys, 118 Rhamphocottidae, 19 Rhincodontidae, 9 Rhinecanthus, 212 Rhinelepis, 109 Rhinichthys, 68 Rhinidae, 10 Rhinobatidae, 10, 33 Rhinobatos, 33 Rhinochimaeridae, 9 Rhinodoras, 103
337
Rhinogobio, 58 Rhinogobius, 202, 203 Rhinomugil, 133 Rhinoptera, 35 Rhinopterinae, 10, 35 Rhizoprionodon, 31 Rhodeus, 45, 46 Rhodoniichthys, 202 Rhomboplites, 169 Rhombosoleidae, 23 Rhombus, 209 Rhyacichthyidae, 22 Rhynchobatidae, 10 Rhynchocypris, 63 Rhynchopelates, 178 Rhynchorhamphus, 136 Rhytiodus, 80 Richardsonius, 68 Rineloricaria, 109, 110 Rita, 99 Rivulidae, 17, 144 Rivulus, 145, 146 Roeboides, 81 Rohtee, 53 Roloffia fi , 140, 143, 144 Romanogobio, 58 Rondeletiidae, 18 Ronquilus, 189 Rostrogobio, 58 Rudarius, 213 Rutilus, 61–64 Sabanejewia, 76 Saccopharyngidae, 12 SACCOPHARYNGIFORMES, 3, 6, 12 Saccopharyngoidei, 12 Salangichthys, 120 Salanginae, 15, 120 Salaria, 195 Salarias, 195 Salminus, 81 Salmo, 15, 27, 123–127 Salmonidae, 15, 121 SALMONIFORMES, 7, 15, 121 Salmoninae, 15, 122 Salmostoma, 70 Salmothymus, 125 Salvelinus, 15, 126, 127 Salvethymus, 127
338
Index
Samaridae, 23 Sander, 172, 173 Sarcocheilichthys, 58 Sarcopterygii, 1, 5, 24, 215 Sardinella, 43 Sardinops, 43 Sargocentron, 153 Sarotherodon, 183, 184 Sarpa, 178 Satanoperca, 182 Saurida, 129 Saurogobio, 58, 59 Scaphirhynchus, 37 Scardinius, 64 Scaridae, 7, 21, 189 Scartelaos, 204 Scartella, 195 Scarus, 189 Scatophagidae, 22, 205 Scatophagus, 205 Schilbeidae, 14, 113 Schindleriidae, 22 Schistura, 77 Schizocypris, 70 Schizodon, 80 Schizopyge, 70 Schizopygopsis, 70 Schizothoracinae, 7, 13, 70 Schizothoraichthys, 70, 71 Schizothorax, 70, 71 Schultzites, 89 Sciadeichthys, 97 Sciades, 97 Sciaena, 175 Sciaenidae, 21, 174 Sciaenops, 175 Scleromystax, 102 Scleropages, 39 Scoloplacidae, 14, 114 Scoloplax, 114 Scomber, 205 Scomberesocidae, 17, 136 Scomberoides, 164 Scombridae, 22, 205 Scombroidei, 22, 205 Scombrolabracidae, 22 Scombrolabracoidei, 22 Scombropidae, 21 Scopelarchidae, 16 Scopelengys, 130 Scopeloberyx, 152
Scopelogadus, 152 Scophthalmidae, 23, 209 Scophthalmus, 209 Scorpaena, 19, 158 Scorpaenidae, 19, 157 SCORPAENIFORMES, 19, 157 Scorpaeninae, 19, 158 Scorpaenodes, 158 Scorpaenoidei, 19, 157 Scorpaenopsis, 158 Scorpidinae, 168 Scriptaphyosemion, 143, 144 Scyliorhinidae, 9, 31 Scyliorhinus, 27, 31 Scytalinidae, 21 Sebastes, 157 Sebastinae, 19, 157 Sebastiscus, 157 Sebastolobus, 157 Securicula, 70 Selar, 164 Selene, 164 Selenotoca, 205 Semaprochilodus, 96 Semilabeo, 61 Semotilus, 67, 68 Seriola, 164 Serranidae, 21, 170, 175 Serraninae, 176 Serranus, 176 Serrapinnus, 82 Serrasalminae, 13, 82 Serrasalmus, 83, 84 Serrivomeridae, 12 Sicydiinae, 22, 203 Sicyopterus, 203 Sideria, 41 Siganidae, 22, 205 Siganus, 205 Sigmops, 128 Sillaginidae, 21, 176 Sillago, 176 Siluridae, 14, 114 SILURIFORMES, 3, 7, 14, 96 Silurus, 114 Sinibotia, 73 Sinibrama, 53 Sinilabeo, 61 Siniperca, 171 Sinobdella, 155 Sinocyclocheilus, 51
Sinohomaloptera, 77 Sisoridae, 15, 115 Sisorinae, 15, 115 Skiffia fi , 149 Solea, 211 Soleidae, 23, 211 Solenostomidae, 18 Somileptes, 74 Somniosidae, 10 Sorubim, 113 Sparidae, 21, 176 Sparisoma, 189 Sparus, 177, 178 Sperata, 99 Sphaeramia, 163 Sphaerichthys, 206 Sphoeroides, 214 Sphyraena, 205 Sphyraenidae, 22, 205 Sphyrna, 31 Sphyrnidae, 9, 31 Spicara, 165 Spinibarbus, 51 Spirinchus, 120 Squalidae, 10, 32 Squalidus, 59 Squaliforma, 109 SQUALIFORMES, 10, 32 Squaliobarbinae, 13, 71 Squaliobarbus, 71 Squalius, 6, 64, 65 Squalus, 32 Squatina, 32 Squatinidae, 10, 32 SQUATINIFORMES, 10, 32 Stegastes, 186 Stegostomatidae, 9 Steindachneridion, 113 Steindachnerina, 92 Stenobrachius, 130 Stenodus, 122 Stephanoberycidae, 18 STEPHANOBERYCIFORMES, 6, 18, 152 Stephanolepis, 213 Sternoptychidae, 15, 128 Sternoptychinae, 128 Sternoptyx, 128 Sternopygidae, 15, 118 Sternopygoidei, 15, 118 Sternopygus, 119
Index
Stethaprioninae, 13, 84 Stethojulis, 187 Stichaeidae, 21, 189 Stigmatogobius, 203 Stizostedion, 172, 173 Stomiidae, 16 STOMIIFORMES, 15, 128 Stromateidae, 22 Stromateoidei, 22 Strongylura, 136 Sturisoma, 110 Stylephoridae, 16 Sufflamen fl , 212 Symbolophorus, 130 Symphodus, 188 Symphurus, 211 Symphysanodontidae, 21 Symphysodon, 182 Synanceiinae, 19, 159 Synaphobranchidae, 12, 42 Synaphobranchus, 42 Synbranchidae, 7, 19, 156 SYNBRANCHIFORMES, 7, 18, 155 Synbranchoidei, 19, 156 Synbranchus, 19, 156 Syncrossus, 73 Synechogobius, 201 Syngnathidae, 7, 18, 154 Syngnathinae, 154 Syngnathoidei, 18, 154 Syngnathus, 18, 154 Synodontidae, 16, 129 Synodontis, 111 Synodontoidei, 16, 129 Synodus, 129 Tachysurus, 99 Taeniura, 34 Takifugu, 214 Tanakia, 46, 47 Tanichthys, 70 Teleostei, 1, 4, 6, 11 Telestes, 6, 65 Terapon, 178 Teraponidae, 178 Terapontidae, 21, 178 Terranatos, 146 Tetrabrachiidae, 23 Tetragonopterinae, 13, 84 Tetragonopterus, 89
Tetragonuridae, 22 Tetraodon, 213, 214 Tetraodontidae, 23, 213 TETRAODONTIFORMES, 23, 212 Tetraodontoidei, 23, 213 Tetraroge, 158 Tetraroginae, 19, 158 Thalassoma, 188 Thalassophryne, 155 Thamnaconus, 213 Thaumatichthyidae, 23 Thayeria, 90 Theragra, 131 Therapon, 178 Thoracocharax, 94 Thorichthys, 182 Thrissina, 44 Thryssa, 44 Thunnus, 205 Thymallinae, 15, 122 Thymallus, 27, 122 Thysanophrys, 159 Thysochromis, 184 Tilapia, 183, 184 Tinca, 27, 71, 72 Tincinae, 13, 71 Tor, 49, 52 Torpedinidae, 10, 33 TORPEDINIFORMES, 10, 33 Torpedo, 33 Toxotidae, 21 Trachelyopterus, 97 Trachichthyidae, 18, 152 Trachichthyoidei, 18, 152 Trachidermis, 161 Trachinidae, 21, 193 Trachinocephalus, 129 Trachinoidei, 21, 193 Trachinotus, 164 Trachinus, 193 Trachipteridae, 16 Trachurus, 164 Trachydoras, 103 Trematomus, 192, 193 Triacanthidae, 23, 212 Triacanthodidae, 23 Triacanthodoidei, 23 Triacanthus, 212 Triakidae, 9, 31 Triakinae, 9
Triakis, 31 Tribolodon, 65 Trichiuridae, 22 Trichodontidae, 21, 194 Trichogaster, 206, 207 Trichogenes, 115 Trichomycteridae, 15, 115 Trichomycterus, 115, 116 Trichonotidae, 21 Trichopodus, 207 Tridentiger, 203 Trigla, 159 Triglidae, 19, 159 Trigloporus, 159 Triglopsis, 161 Trigonostigma, 70 Trinectes, 211 Triodontidae, 23 Triphoturus, 130 Triplophysa, 77 Triportheus, 90 Triporthinae, 13, 90 Tripterygiidae, 22 Trisopterus, 131 Tristramella, 184 Tropidophoxinellus, 62 Trypauchen, 204 Tukugobius, 202 Tylochromis, 184 Tylosurus, 136 Uaru, 182 Umbra, 15, 128 Umbridae, 7, 15, 128 Umbrina, 175 Upeneus, 170 Upsilodinae, 14, 111 Upsilodus, 111 Uranoscopidae, 21, 194 Uranoscopus, 194 Urolophidae, 10, 35 Urolophus, 35 Urotrygonidae, 10 Vaillantella, 77 Vaillantellidae, 13, 77 Valamugil, 133 Valencia, 147, 151 Valenciennea, 201 Valenciidae, 17, 151 Vandellia, 116
339
340
Index
Vanmanenia, 77 Varicorhinus, 49, 50, 52 Veliferidae, 16 Verasper, 210 Vimba, 65 Wallago, 114 Wertheimeria, 103 Xenentodon, 136 Xenisthmidae, 22 Xenocyprinae, 13, 72 Xenocypris, 72 Xenomystus, 39 Xenoophorus, 149
Xenophallus, 151 Xenotaenia, 149 Xenotoca, 149 Xiphiidae, 22 Xiphophorus, 151 Xyrichthys, 188 Xystreurys, 209 Yasuhikotakia, 73 Yongeichthys, 201 Zacco, 70 Zanclidae, 22 Zanobatidae, 10 Zanobatoidei, 10
Zaproridae, 21 Zebrias, 211 Zeidae, 18, 153 ZEIFORMES, 18, 153 Zeioidei, 18, 153 Zeniontidae, 18 Zeus, 153 Zingel, 173 Zoarces, 189 Zoarchias, 189 Zoarcidae, 7, 21, 189 Zoarcoidei, 21, 189 Zoogoneticus, 149 Zosterisessor, 201 Zungaro, 113