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Author |
Wharton, D.; Mainka, S.A. |
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Title |
Snow leopards, livestock management |
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Unsupported: Pamphlet |
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1986 |
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snow; snow leopards; snow leopard; snow-leopards; snow-leopard; leopards; leopard; livestock; management; Chinese; global |
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Xinjiang Conservation Fund & International Snow Leopard Trust |
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China |
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In Chinese. Supported by the Global Greengrant Fund, www.greengrants.org. |
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SLN @ rana @ 1082 |
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1015 |
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Author |
Wikramanayake, E.; Moktan, V.; Aziz, T.; Khaling, S.; Khan, A.; Tshering, D. |
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Title |
The WWF Snow Leopard Action Strategy for the Himalayan Region |
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Miscellaneous |
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2006 |
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Volume ![sorted by Volume (numeric) field, ascending order (up)](img/sort_asc.gif) |
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1-21 |
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behaviour; biodiversity; conservation; ecology; Himalayan; protected area; snow leopard; strategy; Wwf |
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As a 'flagship' and 'umbrella' species the snow leopard can be a unifying biological feature to
raise awareness of its plight and the need for conservation, which will benefit other facets of Himalayan
biodiversity as well. Some studies of snow leopards have been conducted in the Himalayan region. But,
because of its elusive nature and preference for remote and inaccessible habitat, knowledge of the
ecology and behaviour of this mystical montane predator is scant. The available information, however,
suggests that snow leopards occur at low densities and large areas of habitat are required to conserve
a viable population. Thus, many researchers and conservationists have advocated landscape-scale
approaches to conservation within a regional context, rather than focusing on individual protected areas.
While the issues are regional, the WWF's in the region have developed 5-year strategic actions and
activities, using the regional strategies as a touchstone, which will be implemented at national levels.
The WWF's will develop proposals based on these strategic actions, with estimated budgets, for use by
the network for funding and fund-raising. WWF also recognizes the need to collaborate and coordinate
within the network and with other organizations in the region to achieve conservation goals in an
efficient manner, and will form a working group to coordinate activities and monitor progress. |
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Report 1-23. |
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Call Number |
SLN @ rana @ 921 |
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1022 |
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Author |
Xu, F.; Ming, M.; Yin, S.-jing; Munkhtsog, B. |
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Title |
Autumn Habitat Selection by Snow Leopard (Uncia uncia) in Beita Mountain, Xinjiang, China |
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Miscellaneous |
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2006 |
Publication |
Zoological Research |
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Volume ![sorted by Volume (numeric) field, ascending order (up)](img/sort_asc.gif) |
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221-224 |
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habitat; Habitat selection; selection; snow; snow leopard; snow-leopard; leopard; uncia; Uncia uncia; Uncia-uncia; mountain; Xinjiang; China; Chinese; Altay; mountain system; system; 30; transects; transect; surveys; survey; study; area; analysis; primary; factor; 200; 600; Base; valley; Forest; region; south; grazing; status; topography |
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Habitat selection of Snow Leopard ( Unica unica) in Beita Mountain of the Altay Mountain system in northeast Xinjiang was conducted from September to October 2004. Six habitat features of 59 sites used by Snow Leopard and 30 random plots were measured by locating 15 transects surveys in the study area . Vanderploge and Scaviaps selectivity index was used to assess Snow Leopardps selection for the different habitat parameters. Principal Component Analysis was used as the primary factor . The results indicated that Snow Leopard preferred the altitude between 2000 – 2 200 m and avoided 2 600 – 3 000 m ; selected cliff base , ridgeline and avoided hillside and valley bottom ; utilized the shrub and rejected the forest ; selected the nongrazing area and avoided the slightly broken region ; preferred north orientation and rejected the south orientation. The results show that grazing status , vegetation type , topography and the ruggedness are the primary factors for the habitat selection of Snow Leopard. |
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Full text available in Chinese |
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Call Number |
SLN @ rana @ 872 |
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1039 |
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Author |
Yachontov A.A. |
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Title |
The cats – Felidae |
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Miscellaneous |
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1970 |
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Volume ![sorted by Volume (numeric) field, ascending order (up)](img/sort_asc.gif) |
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277-280 |
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Ussr; Felidae; snow leopard; identification features; life-history; habitats; diet; distribution.; 8580; Russian |
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It describes Felidae family species (lion, tiger, leopard, snow leopard, lynx, cheetah): identification features, life-history characteristics, type of habitat, diet and distribution. |
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Full text available in RussianJournal Title: Zoology for teacher. |
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SLN @ rana @ 835 |
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1042 |
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Author |
Yakhontov A.A. |
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Title |
Fauna of mountains |
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Miscellaneous |
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1950 |
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Volume ![sorted by Volume (numeric) field, ascending order (up)](img/sort_asc.gif) |
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60-61 |
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Uzbekistan; mountains; fauna; mammals; snow leopard.; 8570; Russian |
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Ibex, whose population has reduced due to over-hunting, inhabits the alpine meadow zone in Uzbekistan. Ibex had entirely disappeared in some areas. Wild sheep, a common inhabitant of the alpine zone, has drastically decreased in number. Marhur can still be found in the mountains of Kugitang and Babatang. Wild sheep is a common species for the alpine zone. Predator animals such as snow leopard, bear, and sometimes wolf and fox can be found in this zone. A typical inhabitant of highlands is marmot an object of fur-trade. |
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Full text available in RussianJournal Title: Uzbekistan. Economic and geographic characteristics. |
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SLN @ rana @ 834 |
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1043 |
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Author |
Yang, Q. |
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Further study on the geographical distribution and conservation of snow leopard in Qinghai, P.R. China |
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Miscellaneous |
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1992 |
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Volume ![sorted by Volume (numeric) field, ascending order (up)](img/sort_asc.gif) |
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1-7 |
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China; conservation; distribution; Qinghai; snow leopard; survey |
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Northwest Plateau Institute of Biology, Academia sinica, Xining, Qinghai, P.R. China 810001 |
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Call Number |
SLN @ rana @ 920 |
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1049 |
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Author |
Yanushevich A.I. |
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Title |
Status of hunting industry in Kyrgyzstan |
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Miscellaneous |
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1969 |
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Volume ![sorted by Volume (numeric) field, ascending order (up)](img/sort_asc.gif) |
Part. II. |
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110-113 |
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Kyrgyzstan; game species; fur-trade; snow leopard.; 8600; Russian |
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In Kyrgyz SSR, there are 26 fur animal species, including three acclimatized, six wild ungulate and 70 bird species. They all can serve as objects of commercial and sport hunting. 56 snow leopards, 120 wild boars, 96 roe-deers, 121 ibexes, and 14 argalis were caught 1962 1967. A majority of the animals were exported from the country. The Kyrgyz SSR is one of the main suppliers of snow leopards, hunting for which for the sake of its fur-skin is prohibited. |
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Full text available in RussianJournal Title: Proceedings of conference “Capacity and production of game preserves in the USSR”. |
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SLN @ rana @ 837 |
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1053 |
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Author |
Yanushevich A.I. |
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To be protected by the Red Data Book |
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Miscellaneous |
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1977 |
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37-39 |
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Kyrgyzstan; Red Data book; birds; mammals; snow leopard.; 8610; Russian |
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The Red Data Book of the USSR includes 111 mammal species and 67 bird species. The following species inhabit or from time to time come into Kyrgyzstan: free-toiled bat, Menzbier's marmot, red dog, Tien Shan brown bear, marbled polecat, Central Asia otter, Turkistan lynx, manul, snow leopard, antelope, Tien-Shan wild sheep, and bison; Dalmatian pelican, rose pelican, black stork, flamingo, bar-headed goose, white-headed duck, osprey, short-toed eagle, tawny eagle, imperial eagle, golden eagle, white-tailed eagle, Pallas's sea eagle, bearded vulture, Himallayan griffon, Sociable plover, Saker falcon, Peregrine falcon, great bustard, houbara, little bustard, etc. |
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Full text available in RussianJournal Title: Nature and man. |
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SLN @ rana @ 838 |
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1054 |
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Yanushevich A.I. |
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Title |
Mammals of Kyrgyzstan |
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Miscellaneous |
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1972 |
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Volume ![sorted by Volume (numeric) field, ascending order (up)](img/sort_asc.gif) |
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377-380 |
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Kyrgyzstan; snow leopard; taxonomy; distribution; habitats; number; life history characteristics; practical use.; 8640; Russian |
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A description of snow leopard, its taxonomy, distribution, habitat, number, behavior, food, reproduction, parasites, infections, and practical importance is given. In Kyrgyzstan, irbis was found in the Chatkal, Kyrgyz, Talas ridges, and Terskei Alatoo. An official annual snow leopard hunting rate ranged from 10 (1955) to 54 skins (in 1936) in 1930-s through 1950-s. 17 snow leopards were caught for the purpose of zoo-export only in 1965-1966. Its skin has no special value and is used by local people for decoration of dwellings and making collars. |
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Full text available in Russian |
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SLN @ rana @ 841 |
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1055 |
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McCarthy, T.; Murray, K.; Sharma, K.; Johansson, O. |
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Preliminary results of a long-term study of snow leopards in South Gobi, Mongolia |
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2010 |
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Cat News |
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Volume ![sorted by Volume (numeric) field, ascending order (up)](img/sort_asc.gif) |
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53 |
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15-19 |
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snow leopard, Mongolia, monitor, population, Panthera, Snow Leopard Trust, Snow Leopard Conservation Fund, South Gobi, ecology, radio collar, GPS-satellite collar, home range, camera trapping, fecal genetics, occupancy modeling |
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Snow leopards Panthera uncia are under threat across their range and require urgent conservation actions based on sound science. However, their remote habitat and cryptic nature make them inherently difficult to study and past attempts have provided insufficient information upon which to base effective conservation. Further, there has been no statistically-reliable and cost-effective method available to monitor snow leopard populations, focus conservation effort on key populations, or assess conservation impacts. To address these multiple information needs, Panthera, Snow Leopard Trust, and Snow Leopard Conservation Fund, launched an ambitious long-term study in Mongolia’s South Gobi province in 2008. To date, 10 snow leo-pards have been fitted with GPS-satellite collars to provide information on basic snow leopard ecology. Using 2,443 locations we calculated MCP home ranges of 150 – 938 km2, with substantial overlap between individuals. Exploratory movements outside typical snow leopard habitat have been observed. Trials of camera trapping, fecal genetics, and occupancy modeling, have been completed. Each method ex-hibits promise, and limitations, as potential monitoring tools for this elusive species. |
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1151 |
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