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Han, X. Miquelle, D. G., Zhang, E., Jones, M., and Jin, T.. |
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Title |
Far eastern leopard and Siberian tiger conservation measures. |
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Conference Article |
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2001 |
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102-103 |
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CCT, conservation, conservation needs, conservation strategy, distribution, Jilin Province, leopard, monitoring, Panthera pardus, Panthera tigris, poaching, recovery, Recovery plan, snow |
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Workshop to develop a recovery plan for the wild north China tiger population. October 20th to 23th, 2000, Harbin.
Like the Siberian Tiger, the Far Eastern Leopard is one of China's largest Felidae and lives mainly in the eastern mountains of Jilin Province. The number of leopards is very low and it is even more endangered than the tiger. There is a very close relationship between leopard and tiger conservation, especially in areas where overlap occurs. In these areas, special emphasis has to be placed on each of the species' specific conservation needs. There is urgent need to step up our efforts to study and monitor leopard populations and to develop a conservation strategy. This document contains information of the status and main threats of the Far Eastern leopard and makes recommendations on needed conservation measures. |
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U.S. Fish and Wildlife Service's Rhinoceros and Tiger Conservation Fund |
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Widlife Conservation Society |
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Harbin |
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English |
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SLN @ rana @ |
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1117 |
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Filla, M., Lama, R. P., Ghale, T. R., Filla, T., Heurich, M., Waltert, M., Khorozyan, I. |
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Title |
Blue sheep strongly affect snow leopard relative abundance but not livestock depredation in the Annapurna Conservation Area, Nepal |
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Journal Article |
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2022 |
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Global Ecology and Conservation |
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37 |
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e02153 |
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1-15 |
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Co-existence, Himalayan marmot, Human-wildlife conflict, Intervention strategy, Panthera uncia, Pseudois nayaur |
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Large carnivores play key roles in their ecosystems, but their protection is a major challenge in biodiversity conservation due to conflicts with human interests. The snow leopard (Panthera uncia) is the top predator of Asian high-altitude landscapes and faces various threats including wild prey depletion and illegal killings as a consequence of livestock depredation. As the interactions between snow leopards, wild prey, and livestock are still insufficiently understood, we studied the effects of 1) wild prey (blue sheep Pseudois nayaur and Himalayan marmots Marmota himalayana) and domestic prey on snow leopard relative abundance, and of 2) these ecological parameters and intervention applications on livestock depredation by snow leopards. In the Annapurna Conservation Area, Nepal, we monitored wildlife populations and livestock along transects (490.8 km) in 82 grid cells (4 ×4 km) in 2019 and 2021 and conducted questionnaire surveys to determine livestock depredation between 2018 and 2021 (n = 479 households). We applied generalized linear models (GLMs) and sample comparison testing to examine the effects of prey densities and other environmental and anthropogenic predictors on snow leopard relative abundance and livestock depredation. Blue sheep density strongly positively affected snow leopard relative abundance, which also increased with terrain ruggedness and decreased with increasing densities of livestock and the human population. The size of livestock holdings shaped depredation events of large livestock (yak, cattle and horse), whereas depredation events of sheep and goats, which accounted for most (68.6%) depredated animals, decreased with increasing human population density and marmot presence. The strong impact of blue sheep on snow leopard relative abundance supports demands for integrating this ungulate into conservation and management plans, including wild prey recovery and translocation. The rather weak evidence for effects of blue sheep on depredation events suggests that conflicts over livestock depredation by snow leopards would neither be inflicted nor solved by increasing wild prey abundance. This demonstrates the need to improve intervention strategies in the Annapurna region, such as predator-proofing corrals and optimizing daytime herding practices. We suggest further exploring the effects of marmots and other secondary prey on livestock depredation rates, and testing the suitability of additional interventions, e.g., dogs and deterrents, as conflict mitigation tools. Our results will support wildlife managers in setting conservation priorities to promote the long-term co-existence of local people and snow leopards. |
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SLN @ rakhee @ |
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1682 |
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Author ![sorted by Author field, descending order (down)](img/sort_desc.gif) |
Dexel, B. |
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Title |
Snow Leopard Conservation In Kyrgyzstan: Enforcement, Education and Research Activities By the German Society for Nature Conservation (NABU) |
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Conference Article |
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2002 |
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kyrgystan; fur; traders; enforcement; conservation; Nabu; snow; leopard; strategy; illegal; trade; bones; law; education; environmental; 4920 |
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Islt |
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Islt |
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Title, Monographic: Proceedings of the Snow Leopard Survival Summit
Place of Meeting: Seattle,WA |
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SLN @ rana @ 478 |
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239 |
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Burgener, N.; Gusset, M.; Schmid, H. |
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Frustrated appetitive foraging behavior, stereotypic pacing, and fecal glucocorticoid levels in snow leopards (Uncia uncia) in the Zurich Zoo |
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Miscellaneous |
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2008 |
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Journal of Applied Animal Welfare Science |
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11 |
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74-83 |
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behavior; captive; fecal; feeding strategy; physiological; snow leopard; zoo |
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This study hypothesized that permanently frustrated, appetitive-foraging behavior caused the stereotypic pacing regularly observed in captive carnivores. Using 2 adult female snow leopards (Uncia uncia), solitarily housed in the Zurich Zoo, the study tested this hypothesis experimentally with a novel feeding method: electronically controlled, time-regulated feeding boxes. The expected result of employing this active foraging device as a successful coping strategy was reduced behavioral and physiological measures of stress, compared with a control-feeding regime without feeding boxes. The study assessed this through behavioral observations and by evaluating glucocorticoid levels noninvasively from feces. Results indicated that the 2 snow leopards did not perform successful coping behavior through exercising active foraging behavior or through displaying the stereotypic pacing. The data support a possible explanation: The box-feeding method did not provide the 2 snow leopards with the external stimuli to satisfy their appetitive behavioral needs. Moreover, numerous other factors not necessarily or exclusively related to appetitive behavior could have caused and influenced the stereotypic pacing. |
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SLN @ rana @ 915 |
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202 |
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Author ![sorted by Author field, descending order (down)](img/sort_desc.gif) |
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Title |
Biological diversity conservation. National strategy and action plan of the Republic of Uzbekistan |
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Miscellaneous |
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1998 |
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Abbreviated Journal |
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34-35 |
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Uzbekistan; national strategy and action plan; biodiversity; endangered species; snow leopard; distribution; number; conservation measures.; 6280; Russian |
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The National strategy and action plan of the Republic of Uzbekistan was signed on April 1, 1998. Snow leopard was included in the list of rare and endangered animal species and referred to category 2 a rare, not endangered species. It is distributed in highlands of the West Tien Shan and Pamiro-Alay. Its population is 30-50 animals. Snow leopard is protected in the Chatkal, Gissar nature reserve, and Ugam-Chatkal national park. |
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Russian |
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Full text available in Russian |
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SLN @ rana @ 606 |
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17 |
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