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Abdunazarov B.B. |
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Title ![sorted by Title field, descending order (down)](img/sort_desc.gif) |
Composition, structure and population of rare terrene vertebrate animals and their conservation perspectives in the nature reserves of Uzbekistan |
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Miscellaneous |
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1990 |
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182-184 |
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Uzbekistan; protected areas; vertebrates; endangered species; snow leopard.; 5800; Russian |
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An attempt of analyzing the role of Uzbekistan' nature reserves in conservation of gene pool of the rare and endangered terrene vertebrate fauna is done. Of 21 rare vertebrate species, 11 mammal species, eight nesting bird species and two reptile species were detected to inhabit seven nature reserves. This makes up 36.2 percent within the total number of species included in the Red Data Book of the Uzbek SSR or 3.7 percent of the country's fauna. Single snow leopards were found in the Chatkal and Hissar nature reserves. Data of the species inhabiting the Zaamin nature reserve needs to be verified. |
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Russian |
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Full text available in RussianJournal Title: The nature reserves of the USSR the present and future. |
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SLN @ rana @ 560 |
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27 |
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Bohnett, E., Holmberg, J., Faryabi, S. P., An, L., Ahmad, B., Rashid, W., Ostrowski, S. |
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Title ![sorted by Title field, descending order (down)](img/sort_desc.gif) |
Comparison of two individual identification algorithms for snow leopards (Panthera uncia) after automated detection |
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Journal Article |
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2023 |
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Ecological Informatics |
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77 |
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102214 |
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1-14 |
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Keywords |
Background subtraction, Deep learning, Hotspotter, Individual identification, PIE v2, Snow leopards |
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Photo-identification of individual snow leopards (Panthera uncia) is the primary data source for density estimation via capture-recapture statistical methods. To identify individual snow leopards in camera trap imagery, it is necessary to match individuals from a large number of images from multiple cameras and historical catalogues, which is both time-consuming and costly. The camouflaged snow leopards also make it difficult for machine learning to classify photos, as they blend in so well with the surrounding mountain environment, rendering applicable software solutions unavailable for the species. To potentially make snow leopard individual identification available via an artificial intelligence (AI) software interface, we first trained and evaluated image classification techniques for a convolutional neural network, pose invariant embeddings (PIE) (a triplet loss network), and compared the accuracy of PIE to that of the HotSpotter algorithm (a SIFT-based algorithm). Data were acquired from a curated library of free-ranging snow leopards taken in Afghanistan between 2012 and 2019 and from captive animals in zoos in Finland, Sweden, Germany, and the United States. We discovered several flaws in the initial PIE model, such as a small amount of background matching, that was addressed, albeit likely not fixed, using background subtraction (BGS) and left-right mirroring (LR) techniques which demonstrated reasonable accuracy (Rank 1: 74% Rank-5: 92%) comparable to the Hotspotter results (Rank 1: 74% Rank 2: 84%)The PIE BGS LR model, in conjunction with Hotspotter, yielded the following results: Rank-1: 85%, Rank-5: 95%, Rank-20: 99%. In general, our findings indicate that PIE BGS LR, in conjunction with HotSpotter, can classify snow leopards more accurately than using either algorithm alone. |
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SLN @ rakhee @ |
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1723 |
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Gripenberg, U. |
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Title ![sorted by Title field, descending order (down)](img/sort_desc.gif) |
Comparison of chromosome banding patterns in the snow leopard (Panthera uncial) and in other felids |
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Unsupported: Serial (Book, Monograph) |
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1982 |
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135-138 |
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Banding; Chromosome; felids; International; patterns; pedigree; snow leopard |
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International Pedigree Book of Snow Leopards |
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3 |
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SLN @ rana @ 966 |
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353 |
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Author |
Ahmad, A. |
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Title ![sorted by Title field, descending order (down)](img/sort_desc.gif) |
Community-Based Natural Resources Management in Northern Pakistan |
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Conference Article |
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1997 |
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Abbreviated Journal |
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148-154 |
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conservation; livestock; Wwf; Pakistan; herders; herder; snow-leopard; management; Marco-Polo-sheep; grazing; ibex; park; parks; reserve; reserves; refuge; Khunjerab; hunting; hunter; skin; pelt; fur; coat; protected-area; snow leopard; browse; 2950 |
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Islt |
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Lahore, Pakistan |
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R.Jackson and A.Ahmad |
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English |
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Full text at URLTitle, Monographic: Eighth International Snow Leopard SymposiumPlace of Meeting: Islamabad, IndiaDate of Copyright: 1997 |
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SLN @ rana @ 299 |
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41 |
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Young, J. C., Alexander, J. S., Bijoor, A., Sharma, D., Dutta, A., Agvaantseren, B., Mijiddorj, T. N., Jumabay, K., Amankul, V., Kabaeva, B., Nawaz, A., Khan, S., Ali, H., Rullman, J. S., Sharma, K., Murali, R., Mishra, C. |
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Title ![sorted by Title field, descending order (down)](img/sort_desc.gif) |
Community-Based Conservation for the Sustainable Management of Conservation Conflicts: Learning from Practitioners |
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2021 |
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Sustainability |
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13 |
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1-20 |
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community-based conservation; snow leopards; participation; conflict; narratives; story- telling; conflict management |
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We explore the role of community-based conservation (CBC) in the sustainable management of conservation conflicts by examining the experiences of conservation practitioners trying to address conflicts between snow leopard conservation and pastoralism in Asian mountains. Practitioner experiences are examined through the lens of the PARTNERS principles for CBC (Presence, Aptness, Respect, Transparency, Negotiation, Empathy, Responsiveness, and Strategic Support) that represent an inclusive conservation framework for effective and ethical engagement with local communities. Case studies from India, Kyrgyzstan, Mongolia, and Pakistan show that resilient relationships arising from respectful engagement and negotiation with local communities can provide a strong platform for robust conflict management. We highlight the heuristic value of documenting practitioner experiences in on-the-ground conflict management and community-based conservation efforts. |
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1641 |
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Jackson, R. |
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Title ![sorted by Title field, descending order (down)](img/sort_desc.gif) |
Community Participation: Tools and Examples |
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2000 |
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1-9 |
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community; workshop; wildlife; India; us; Himalayan; biodiversity; project; snow; snow leopard; snow-leopard; leopard; trust; management; planning; trans-himalayan; transhimalayan; protected; protected areas; protected area; protected-areas; protected-area; areas; area; 2000; leh; Ladakh |
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In response to dwindling wildlife populations and habitat, governments established national parks and protected areas, often with little input from people living in the immediate area. In some cases communities were relocated, but in most they are left to pursue traditional agricultural and pastoral livelihoods under a new set of rules. Important questions of land tenure remained unresolved, with a “fences and fines” approach to protected area management (Stolton and Dudley 1999). |
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Management Planning Workshop for the Trans-Himalayan Protected Areas, 25-29 August, 2000, Leh, Ladak |
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Workshop sponsored by the Wildlife Institute of India, US Fish and Wildlife Service Himalayan Biodiversity project, andInternational Snow Leopard Trust |
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SLN @ rana @ 1020 |
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467 |
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Vannelli, K., Hampton, M. P., Namgail, T., Black, S. A. |
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Title ![sorted by Title field, descending order (down)](img/sort_desc.gif) |
Community participation in ecotourism and its effect on local
perceptions of snow leopard (Panthera uncia) conservation |
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Journal Article |
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2019 |
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Human Dimensions of Wildlife |
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1-14 |
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Instrumental value; snow leopard; perceptions; ecotourism; human–wildlife conflict |
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Local support and involvement is often essential for effective
wildlife conservation. This study assessed the impact of local
involvement in ecotourism schemes on perceptions of wildlife, promotion
of conservation action, types of values that communities placed on
wildlife, and contexts in which wildlife are considered to be most
valuable. The study used qualitative semi-structured interviews
conducted in seven villages in Ladakh, India, which is an important
region of snow leopard (Panthera uncia) habitat. Results indicated that
in these communities, ecotourism-based interventions encourage more
positive perceptions of wildlife species, in particular the snow
leopard. Achieving change in community perceptions of wildlife is key
when implementing ecotourism schemes to enable more effective
conservation, as well as generating local awareness and value for
wildlife toward problematic keystone species such as the snow leopard,
which are frequently the focus of human-wildlife conflict. |
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1607 |
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Rovero, F., Augugliaro, C., Havmoller, R. W., Groff, C., Zimmerman, F., Oberosler, V., Tenan, S. |
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Co-occurrence of snow leopard Panthera uncia, Siberian ibex Capra sibirica and livestock: potential relationships and effects |
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Journal Article |
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2018 |
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Oryx |
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1-7 |
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Altai mountains, camera trapping, human� wildlife conflict, Mongolia, occupancy, occurrence interactions, Siberian ibex, snow leopard |
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Abstract |
Understanding the impact of livestock on native
wildlife is of increasing conservation relevance. For the
Vulnerable snow leopard Panthera uncia, wild prey reduction,
intensifying human�wildlife conflicts and retaliatory
killings are severe threats potentially exacerbated by the
presence of livestock. Elucidating patterns of co-occurrence
of snow leopards, wild ungulate prey, and livestock, can be
used to assess the compatibility of pastoralism with conservation.
We used camera trapping to study the interactions of
livestock, Siberian ibex Capra sibirica and snow leopards in
a national park in the Altai mountains, Mongolia. We obtained
 detections of wild mammals and  of domestic
ungulates, dogs and humans. Snow leopards and Siberian
ibex were recorded  and  times, respectively. Co-occurrence
modelling showed that livestock had a higher estimated
occupancy (.) than ibex, whose occupancy was
lower in the presence of livestock (.) than in its absence
(.�. depending on scenarios modelled). Snow leopard
occupancy did not appear to be affected by the presence of
livestock or ibex but the robustness of such inference was
limited by uncertainty around the estimates. Although our
sampling at presumed snow leopard passing sites may have
led to fewer ibex detections, results indicate that livestock
may displace wild ungulates, but may not directly affect
the occurrence of snow leopards. Snow leopards could still
be threatened by livestock, as overstocking can trigger
human�carnivore conflicts and hamper the conservation
of large carnivores. Further research is needed to assess
the generality and strength of our results. |
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SLN @ rakhee @ |
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1465 |
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Li, J., McCarthy, T. M., Wang, H., Weckworth, B. V., Shaller, G. B., Mishra, C., Lu, Z., Beissinger, S. R |
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Title ![sorted by Title field, descending order (down)](img/sort_desc.gif) |
Climate refugia of snow leopards in High Asia |
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Journal Article |
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2016 |
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Biological Conservation |
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203 |
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188-196 |
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Snow leopard, Habitat, Climate change, Refugia, High Asia, Conservation |
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Abstract |
Rapidwarming in High Asia is threatening its unique ecosystemand endemic species, especially the endangered
snow leopard (Panthera uncia). Snow leopards inhabit the alpine zone between snow line and tree line, which
contracts and expands greatly during glacier-interglacial cycles. Here we assess impacts of climate change on
global snow leopard habitat from the last glacial maximum (LGM; 21 kyr ago) to the late 21st century. Based
on occurrence records of snow leopards collected across all snow leopard range countries from 1983 to 2015,
we built a snow leopard habitat model using the maximum entropy algorithm (MaxEnt 3.3.3k). Then we
projected this model into LGM, mid-Holocene and 2070. Analysis of snow leopard habitat map from LGM to
2070 indicates that three large patches of stable habitat have persisted from the LGM to present in the Altai,
Qilian, and Tian Shan-Pamir-Hindu Kush-Karakoram mountain ranges, and are projected to persist through the
late 21st century. These climatically suitable areas account for about 35% of the snow leopard's current extent,
are large enough to support viable populations, and should function as refugia for snow leopards to survive
through both cold and warm periods. Existence of these refugia is largely due to the unique mountain environment
in High Asia, which maintains a relatively constant arid or semi-arid climate. However, habitat loss leading
to fragmentation in the Himalaya and Hengduan Mountains, as well as increasing human activities, will present
conservation challenges for snow leopards and other sympatric species. |
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SLN @ rakhee @ |
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1449 |
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Kichloo, M. A., Sharma, K., Sharma, N. |
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Title ![sorted by Title field, descending order (down)](img/sort_desc.gif) |
Climate casualties or human disturbance? Shrinking distribution of the three large carnivores in the Greater Himalaya |
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Journal Article |
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2023 |
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Springer – Climatic Change |
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176 |
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118 |
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1-17 |
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Snow leopard · Common leopard · Asiatic black bear · Climate change · Multi- season occupancy analysis · Local ecological knowledge · Imperfect detection |
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Abstract |
Mammalian carnivores are key to our understanding of ecosystem dynamics, but most of them are threatened with extinction all over the world. Conservating large carnivores is often an arduous task considering the complex relationship between humans and carnivores, and the diverse range and reasons of threats they face. Climate change is exacerbating the situation further by interacting with most existing threats and amplifying their impacts. The Mountains of Central and South Asia are warming twice as rapidly as the rest of the northern hemisphere. There has been limited research on the effect of climate change and other variables on large carnivores. We studied the patterns in spatio-temporal distribution of three sympatric carnivores, common leopard, snow leopard, and Asiatic black bear in Kishtwar high altitude National Park, a protected area in the Great Himalayan region of Jammu and Kashmir. We investigated the effects of key habitat characteristics as well as human disturbance and climatic factors to understand the spatio-temporal change in their distributions between the early 1990s and around the year 2016–2017. We found a marked contraction in the distribution of the three carnivores between the two time periods. While snow leopard shifted upwards and further away from human settlements, common leopard and Asiatic black bear suffered higher rates of local extinctions at higher altitudes and shifted to lower areas with more vegetation, even if that brought them closer to settlements. We also found some evidence that snow leopards were less likely to have faced range contraction in areas with permanent glaciers. Our study underscores the importance of climate adaptive conservation practices for long-term management in the Greater Himalaya, including the monitoring of changes in habitat, and space-use patterns by human communities and wildlife. |
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1724 |
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Worley, M.B. |
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Title ![sorted by Title field, descending order (down)](img/sort_desc.gif) |
Chronic liver disease in snow leopards: A possible viral etiology |
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Book Chapter |
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1982 |
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International Pedigree Book of Snow Leopards, Vol. 3 |
Abbreviated Journal |
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3 |
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131-133 |
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captive; Chronic; Disease; etiology; International; Liver; pedigree; snow-leopard; snow-leopards; snow leopard; snow leopards; veterinary; Viral; zoo |
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Helsinki Zoo |
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Helsinki |
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Blomqvist, L. |
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SLN @ rana @ 1046 |
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1030 |
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Soderlund, V. |
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Title ![sorted by Title field, descending order (down)](img/sort_desc.gif) |
Chromosome studies in the snow leopard (Panthera uncia): preliminary report |
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Book Chapter |
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1980 |
Publication |
International Pedigree Book of Snow Leopards |
Abbreviated Journal |
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2 |
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168-182 |
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Chromosome; Panthera-uncia; panthera uncia; snow leopard |
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Helsinki Zoo |
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Helsinki |
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Blomqvist, L. |
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SLN @ rana @ 983 |
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905 |
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Ming, M.; Yun, G.; Bo, W. |
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Title ![sorted by Title field, descending order (down)](img/sort_desc.gif) |
Chinese snow leopard team goes into action |
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Journal Article |
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2008 |
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Man & the Biosphere |
Abbreviated Journal |
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54 |
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6 |
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18-25 |
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Chinese; snow; snow leopard; snow-leopard; leopard; action; China; country; countries; number; snow leopards; snow-leopards; leopards; survey; research; recent; Xinjiang; ecology; tracking; Animal; field; Kunlun; camera; capture; Animals; survival |
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China, the world's most populous country, also contains the largest number of Snow Leopards of any country in the world. But the survey and research of the snow leopard had been very little for the second half of the 20th century. Until recent years, the members of Xinjiang Snow Leopards Group (XSLG/SLT/XFC) , the Xinjiang Institute of Ecology and Geography, Chinese Academy of Sciences have been tracking down the solitary animal. The journal reporter does a face-to-face interview with professor Ma Ming who is a main responsible expert of the survey team. By the account of such conversation, we learn the achievements, advances and difficulty of research of snow leopards in the field, Tianshan and Kunlun, Xinjiang, the far west China, and we also know that why the team adopt the infrared camera to capture the animals. Last but not least professor talked about the survival menace faced by the Snow Leopards in Xinjiang. |
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China |
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In Chinese; Edited by this magazine <Man & the Biosphere> |
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SLN @ rana @ 978 |
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685 |
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Author |
Esipov V.M. |
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Title ![sorted by Title field, descending order (down)](img/sort_desc.gif) |
Chatkal nature reserve |
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Miscellaneous |
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1969 |
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486-494 |
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Uzbekistan; Western Tien Shan; Chatkal nature reserve; establishment; soil; climate; physiographic factors; altitude zones; flora; fauna; snow leopard.; 6550; Russian |
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Presented is history of the Chatkal nature reserve's establishment, physic and geographic description, types of soils, climate, altitude zones, flora and fauna, historical monuments. Snow leopard is quiet rare species in nature reserve. Last years irbis's tracks and voice have been recorded in highly mountain sites of Maidantal part of Chatkal nature reserve. |
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Full text available in RussianJournal Title: Nature reserves of the USSR. |
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SLN @ rana @ 633 |
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262 |
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Author |
Esipov V.M. |
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Chatkal mountain-forest nature reserve |
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Miscellaneous |
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1979 |
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64-68 |
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Uzbekistan; Chatkal nature reserve; establishment; flora; fauna; researching; rare species; snow leopard.; 6570; Russian |
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It described history of the Chatkal nature, flora and fauna, scientific and conservation activities. Snow leopard, brown bear, Menzbier's marmot, golden eagle, snake-eagle and lammergeyer inhabited in nature reserve. These species included in Red data book. |
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Full text available in RussianJournal Title: Hunter and fisherman of Uzbekistan. |
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SLN @ rana @ 635 |
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264 |
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Esipov V.M. |
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Chatkal biosphere nature reserve. Buffer zones needed badly |
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1990 |
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Vol.1. |
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294-296 |
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Uzbekistan; Western Tien Shan; Chatkal nature reserve; fauna; snow leopard; poaching; human influence; protection.; 6590; Russian |
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Briefly presented is history of the Chatkal nature reserve's establishment, protected flora and fauna, and intense economic activity impact on wildlife of the protected area. |
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Full text available in RussianJournal Title: Nature reserves of the USSR. |
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SLN @ rana @ 637 |
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266 |
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Janecka, J. E., Jackson, R., Munkhtsog, B., Murphy, W. J. |
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Characterization of 9 microsatellites and primers in snow leopards and a species-specific PCR assay for identifying noninvasive samples |
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2014 |
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Conservation Genetic Resource |
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6 |
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2 |
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369:373 |
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Microsatellites,Cytochrome b, Snow Leopard, Noninvasive genetics, Individual identification |
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Molecular markers that can effectively identify noninvasively collected samples and provide genetic
information are critical for understanding the distribution, status, and ecology of snow leopards (Panthera uncia). However, the low DNA quantity and quality in many
noninvasive samples such as scats makes PCR amplification and genotyping challenging. We therefore designed primers for 9 microsatellites loci previously isolated in the
domestic cat (Felis catus) specifically for snow leopard studies using noninvasive samples. The loci showed moderate levels of variation in two Mongolian snow leopard
populations. Combined with seven other loci that we previously described, they have sufficient variation (He = 0.504, An = 3.6) for individual identification and
population structure analysis. We designed a species species specific PCR assay using cytochrome b for identification of unknown snow leopard samples. These molecular markers
facilitate in depth studies to assess distribution, abundance, population structure, and landscape connectivity of this endangered species.
endangered species |
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SLN @ rakhee @ |
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1427 |
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Janecka, J. E., Jackson, R., Munkhtsog, B., Murphy, W. J. |
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Characterization of 9 microsatellites and primers in snow leopards and a species-specific PCR assay for identifying noninvasive samples |
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2014 |
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Conservation Genetic Resource |
Abbreviated Journal |
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6 |
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2 |
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369:373 |
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Microsatellites,Cytochrome b, Snow Leopard, Noninvasive genetics, Individual identification |
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Molecular markers that can effectively identify noninvasively collected samples and provide genetic
information are critical for understanding the distribution, status, and ecology of snow leopards (Panthera uncia). However, the low DNA quantity and quality in many
noninvasive samples such as scats makes PCR amplification and genotyping challenging. We therefore designed primers for 9 microsatellites loci previously isolated in the
domestic cat (Felis catus) specifically for snow leopard studies using noninvasive samples. The loci showed moderate levels of variation in two Mongolian snow leopard
populations. Combined with seven other loci that we previously described, they have sufficient variation (He = 0.504, An = 3.6) for individual identification and
population structure analysis. We designed a species species specific PCR assay using cytochrome b for identification of unknown snow leopard samples. These molecular markers
facilitate in depth studies to assess distribution, abundance, population structure, and landscape connectivity of this endangered species. |
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SLN @ rakhee @ |
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1428 |
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Freeman, H. |
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Characteristics of the social behavior in the snow leopard |
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Book Chapter |
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1982 |
Publication |
International Pedigree Book of Snow Leopards, Vol. 3 |
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3 |
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117-120 |
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behavior; International; pedigree; snow leopard; social; social-behavior |
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Helsinki Zoo |
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Helsinki |
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Blomqvist, L. |
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SLN @ rana @ 1029 |
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318 |
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Pal, R., Panwar, A., Goyal, S. P., Sathyakumar, S. |
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Changes in ecological conditions may influence intraguild competition: inferring interaction patterns of snow leopard with co-predators |
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Journal Article |
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2022 |
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PeerJ |
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10 |
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e14277 |
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1-26 |
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Common leopard, Woolly wolf, Occupancy, Interspecific interactions, Temporal overlap, Scat analysis |
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Background: Large-scale changes in habitat conditions due to human modifications and climate change require management practices to consider how species communities can alter amidst these changes. Understanding species interactions across the gradient of space, anthropogenic pressure, and season provide the opportunity to anticipate possible dynamics in the changing scenarios. We studied the interspecific interactions of carnivore species in a high-altitude ecosystem over seasonal (summer and winter) and resource gradients (livestock grazing) to assess the impact of changing abiotic and biotic settings on coexistence.
Methods: The study was conducted in the Upper Bhagirathi basin, Western Himalaya, India. We analyzed around 4 years of camera trap monitoring data to understand seasonal spatial and temporal interactions of the snow leopard with common leopard and woolly wolf were assessed in the greater and trans-Himalayan habitats, respectively. We used two species occupancy models to assess spatial interactions, and circadian activity patterns were used to assess seasonal temporal overlap amongst carnivores. In addition, we examined scats to understand the commonalities in prey selection.
Results: The result showed that although snow leopard and wolves depend on the same limited prey species and show high temporal overlap, habitat heterogeneity and differential habitat use facilitate co-occurrence between these two predators. Snow leopard and common leopard were spatially independent in the summer. Conversely, the common leopard negatively influences the space use of snow leopard in the winter. Limited prey resources (lack of livestock), restricted space (due to snow cover), and similar activity patterns in winter might result in strong competition, causing these species to avoid each other on a spatial scale. The study showed that in addition to species traits and size, ecological settings also play a significant role in deciding the intensity of competition between large carnivores. Climate change and habitat shifts are predicted to increase the spatial overlap between snow leopard and co-predators in the future. In such scenarios, wolves and snow leopards may coexist in a topographically diverse environment, provided sufficient prey are available. However, shifts in tree line might lead to severe competition between common leopards and snow leopards, which could be detrimental to the latter. Further monitoring of resource use across abiotic and biotic environments may improve our understanding of how changing ecological conditions can affect resource partitioning between snow leopards and predators. |
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SLN @ rakhee @ |
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1701 |
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Anonymous |
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Central Asian Republic Snow Leopard Specialists Plan Joint Conservation Strategy |
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Kazakhstan; Kyrgyzstan; Uzbekistan; Russia; Asia-Irbis; protected-areas; parks; reserves; refuge; Tajikistan; poaching; habitat; habitat-degradation; trade; skins; pelts; coat; fur; bones; medicine; status; hunting; ibex; marmots; Islt; Gyssar; Nabu; Wwf; kazakstan; browse; protected; area; degradation; world wildlife fund; international snow leopard trust; asia; irbis; 3950 |
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Full text at URL |
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SLN @ rana @ 1 |
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75 |
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Puzanov I.I. |
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Central Asia sub-area |
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Miscellaneous |
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1938 |
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Central Asia; fauna; snow leopard.; 8020; Russian |
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The author describes fauna of the Central Asia sub-area. Snow leopard is a typical inhabitant of the sub-area highlands. |
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Full text available in RussianJournal Title: Zoogeography. |
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SLN @ rana @ 780 |
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797 |
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Flora and Fauna International |
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Central Asia Snow Leopard Workshop |
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2006 |
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Central Asia; Central Asia Snow Leopard Workshop; June 2006; Report; snow leopard; workshop; central; asia; snow; snow-leopard; leopard |
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Meeting report for the Central Asia Snow Leopard Workshop, held in Bishkek in June 2006. |
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BISHKEK, 19-21 JUNE 2006. Meeting Report |
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SLN @ rana @ 878 |
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Ammosov, B. |
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Central Asia mountains. Snow leopard or irbis |
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1973 |
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Central Asia; natural zones; snow leopard; distribution; habitats; number; trade.; 6010; Russian |
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All natural zones are represented in the mountains of Central Asia: deserts, semi-deserts, steppes, meadows, forests and shrubs, sub-alpine zones, alpine zones. Irbis (snow leopard) is a typical inhabitant of highlands. In the USSR, snow leopard is distributed in the mountains of Central Asia and southern Siberia. Outside the country this species is met in the Himalayas, Tibet, mountains of Mongolia. It is rare everywhere. The annual world trade is less than 1,000 animals. Being a non-numerous species, it causes negligible damage to farming and hunting industry. |
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Full text available in RussianJournal Title: Hunting industry of the USSR. |
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SLN @ rana @ 580 |
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69 |
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Kolosov A.M. |
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Central Asia |
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1975 |
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93-104 |
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Central Asia; mountain system; species composition; distribution; number; habitats; rare species; endemics; game species; mammals; snow leopard.; 7190; Russian |
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It describes a mammal species composition in the mountain ecosystems of Central Asia Kopetdag, Hissaro-Alai and Pamir, Tien Shan, and Tarbagatai ridge. Data on distribution and population number is presented. |
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Full text available in RussianJournal Title: Protection and enrichment of the USSR fauna. |
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no |
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SLN @ rana @ 697 |
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546 |
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