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Kyes, R.; Chalise, M.K. |
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Title |
Assessing the Status of the Snow Leopard Population in Langtang National Park, Nepal |
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2005 |
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1-22 |
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status; snow; snow leopard; snow-leopard; leopard; population; Langtang; national; national park; National-park; park; Nepal; project; International; international snow leopard trust; International-Snow-Leopard-Trust; trust; program; biodiversity; research; study; Support; Islt; approach; Data; conservation; snow leopards; snow-leopards; leopards; survey; distribution; abundance; prey; prey species; prey-species; species; populations; programs; local; sign; pugmarks; scats; scat; primary; Himalayan; areas; area; Response; Pressure; domestic; domestic livestock; livestock; grazing |
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This project is part of an ongoing snow leopard study established in 2003 with support from the ISLT. The study involves a multifaceted approach designed to provide important baseline data on the status of the snow leopard population in Langtang National Park (LNP), Nepal and to generate long-term support and commitment to the conservation of snow leopards in the park. The specific aims include: 1) conducting a population survey of the snow leopards in LNP, focusing on distribution and abundance; 2) assessing the status of prey species populations in the park; and 3) providing educational outreach programs on snow leopard conservation for local school children (K-8) living in the park. During the 2004 study period, snow leopard signs were observed (including pugmarks and scats) although somewhat fewer than in 2003. Similarly, the average herd size of the snow leopards' primary prey species in LNP (the Himalayan thar) was a bit lower than in 2003. There is speculation that the thar populations and the snow leopards may be moving to more remotes areas of the park perhaps in response to increasing pressure from domestic livestock grazing. This possibility is being addressed during the 2005 study period. |
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Project funded by International Snow Leopard Trust Small Grants Program, 2004. University of Washington and Nepal Biodiversity Research Society/Tribhuvan University. |
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SLN @ rana @ 1072 |
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607 |
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Kydyraliev A.K. |
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Some animal species' habitat alteration in the Central Tien Shan |
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1970 |
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Part 1. |
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46-48 |
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Kyrgyzstan; tien shan; human influence; water conservation activity; decline; range; number; birds; mammals; game species; moral; argali; snow leopard.; 7540; Russian |
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Irrigation and drainage activity in Tien Shan led some bird species to disappear. Number of species to build their nests in tree holes has dropped. Mongolian sandpiper and black-bellied sand grouse disappeared in the steppe areas. Great bustard, formerly nesting in this area, can now be rarely seen only in migration. The direct anthropogenic influence resulted in shrinkage of game animal and bird populations such as moral, goitered gazelle, argali, snow leopard, and stone marten. |
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Full text available in RussianJournal Title: Influence of anthropogenic factors on the formation of zoogeographic complexes. The fifth inter-school zoogeographic conference. |
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SLN @ rana @ 732 |
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605 |
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Krever V. |
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Ecosystems of the High Mountains Species of Special Interest in Uzbekistan |
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1998 |
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55-59 |
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Central Asia; mountain ecosystem; fauna; vertebrates; endangered species; threats; protected areas network; snow leopard.; 7470; Russian |
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It gives description complexes of mountain ecosystems fauna of Central Asia, endangered vertebrates, main threats to biodiversity and existing protected areas network. Among the rare animal species of the alpine and subalpine meadows first of all should be listed the West Tien Shan endemic, the Menzbier's marmot (Marmota menzbien); the markhor wild goat which still inhabits the Vakhsh range in Tadjikistan; the dhole (Cyon alpinus) which is practically extinct; the Tien Shan bear (Ursus arctos isabellinus), and the snow leopard (Uncia uncia); among birds, the wlute-chested dove (Columba leuconota), sandgrouse (Syrrhaptes tibetanus, snowcocks (Tetraogallus tibetanus, T.altaicus) and bearded vulture (Gypaetus barbatus). |
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Full text available in RussianJournal Title: Biodiversity Conservation in Central Asia. An Analysis of Biodiversity and Current Threats and Initial Investment Portfolio. |
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SLN @ rana @ 725 |
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596 |
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Kreuzberg-Mukhina, E.; Bikova, E.; Esipov, A. |
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Regional Meeting on the Protection of Snow Leopard |
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Aksu-Jabagly; protected-area; parks; reserves; refuge; Kazakhstan; Kyrgyzstan; workshops; Nabu; Islt; irbis; Uzbekistan; Sacred-Earth-Network; Sen; Russia; conservation; habitat; poaching; bones; hunting; skins; pelts; fur; coats; medicine; trade; prey-species; status; kazakstan; protected; area; sacred; earth; network; prey; species; browse; aksu; jabagly; 3970 |
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Full Text at URL: Uzbekistan Zoological Society (Participants of the workshop) |
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SLN @ rana @ 5 |
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592 |
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Kovshar A.F. |
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Title |
Aksu Jabagly nature reserve |
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Miscellaneous |
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1969 |
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464-474 |
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Kazakhstan; Aksu Jabagly nature reserve; fauna; mammals; birds; reptiles; amphibians; fishes; snow leopard; prey species.; 7330; Russian |
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In territory of reserve and surrounding foothills 238 birds, 42 mammals, 9 reptiles, 2 amphibious and 2 fishes are registered. The mammal: argali, wild ibex, roe deer, red deer, a wild boar, snow leopard, steppe cat, a stone marten, ermine, red fox, badger, long-tailed marmot and Menzbier's marmot. Irbis is rare in reserve. Ibexes (numerous spesies) and wild sheep are main prey of the snow leopard. With the beginning of ibexes migration snow leopards follow them. |
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Full text available in RussianJournal Title: Protected areas of Soviet Union. |
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SLN @ rana @ 711 |
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578 |
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Kovshar A.F. |
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A problem of rare and endangered animal species in Kazakhstan |
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1982 |
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99-101 |
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Kazakhstan; rare species; Red Data book; mammals; birds; reptiles; amphibians; fishes; snow leopard; researching; conservation; hunting prohibition; habitat restoration; genome conservation.; 7350; Russian |
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The Red Book of the Kazakh SSR includes 91 rare and endangered vertebrate animal species: 30 mammal, 48 bird, eight reptile, one amphibian, and four fish species. 26 species (Menzbier's marmot, marten species, lynx, snow leopard, and other species) became rare because of a direct anthropogenic pressure. The prohibition of hunting, conservation and rehabilitation of their habitats, reproduction in enclosures and preservation of some species' genomes is a way that would conserve rare species, the authors believe. |
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Full text available in RussianJournal Title: Fauna of Kazakhstan and the conservation challenges. |
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SLN @ rana @ 713 |
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580 |
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Kovshar A.F. |
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Preservation of gene pool of rare and endangered animal species |
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1982 |
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100-107 |
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Kazakhstan; gene pool; rare species; mammals; ungulates; carnivores; snow leopard; rodents; birds; reptiles; amphibians; fishes.; 7360; Russian |
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The rare species are protected in six nature reserves in Kazakhstan, including 9 mammals, 29 birds, and one reptile species. More than 20 rare and endangered species inhabiting Kazakhstan cannot be met within the nature reserves. The point is to establish a network of state nature reserves, particularly in steppe and desert area of the country. |
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Full text available in RussianJournal Title: The nature conservation in Kazakhstan. |
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SLN @ rana @ 714 |
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581 |
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Kovshar A.F. |
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The conservation of gene pool of rare and endangered animal species in nature reserves of the Kazakh SSR |
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1984 |
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5-7 |
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Kazakhstan; endangered species; distribution; protected areas.; 7370; Russian |
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Five endangered predatory mammal species are protected in nature reserves of Kazakhstan. Of which snow leopard and stone marten can be met in all mountain nature reserves, while Tien Shan bear and Turkistan lynx in the Alma-Ata and Aksu-Djabagly nature reserves. |
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Full text available in RussianJournal Title: Study and protection of wildlife objects. |
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SLN @ rana @ 715 |
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582 |
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Kovshar A.F. |
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About representativeness of terrain vertebrate fauna in the Aksu Jabagly nature reserve for the whole West Tien Shan region |
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2001 |
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Vol.8. |
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97-99 |
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Kazakhstan; Aksu Jabagly nature reserve; mammals; endangered species; snow leopard.; 7380; Russian |
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Mammals inhabiting the Aksu Jabagly nature reserve make up 79.6 percent of the whole mammal fauna of the West Tien Shan. The following endangered species live in the area: argali, brown bear, dhole, Turkistan lynx, snow leopard, stone marten, porcupine, and free-toiled bat. Snow leopard deserves a special attention. |
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Full text available in RussianJournal Title: Biological diversity of the West Tien Shan (the Kazakhstan part). Proceedings of the Aksu Jabagly state nature reserve. |
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SLN @ rana @ 716 |
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583 |
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Kovshar A.F. |
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About the necessity to alter the border of Aksu Jabagly nature reserve |
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2001 |
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Vol. 8. |
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15-23 |
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Kazakhstan; Aksu Jabagly nature reserve; endemics; endangered species; widening; improvement of protection.; 7430; Russian |
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An extension of the Aksu Jabagly nature reserve is suggested in order to improve effectiveness of rare and endemic species conservation in the West Tien Shan. The existing area of the nature reserve is large enough for conservation and reproduction of most of the large mammal species such as ibex, bear, wild boar, snow leopard; the area is however insufficient for species such as Tien Shan argali, roe-deer, whose seasonal migrations extend beyond the area of the nature reserve, as well as Menzbier's marmot a rare endemic to the West Tien Shan, whose habitat is situated 10 15 km from the nature reserve. |
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Full text available in RussianJournal Title: Biological diversity of the West Tien Shan (the Kazakhstan part). Proceedings of the Aksu Jabagly state nature reserve. |
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SLN @ rana @ 721 |
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587 |
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Kovalev A.K. |
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Markhor in the Ramit nature reserve, Tajikistan |
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1990 |
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Vol.3. |
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247-248 |
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Tajikistan; Khazratishok ridge; Darvaza ridge; markhor; number; nature conservation; zakaznik; Ramit nature reserve; captive breeding; prey species; snow leopard.; 7320; Russian |
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The marchor habitat in Tajikistan is fragmented. The animals are reproduced in enclosures of the Ramit nature reserve and released into wildlife in Khel canyon. Two females were killed by snow leopard. |
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Full text available in RussianJournal Title: Nature reserves of the USSR present and future. |
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SLN @ rana @ 710 |
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577 |
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Koshkarev, E. |
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The snow leopard in its northeastern range |
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1996 |
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Cat News |
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25 |
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Russia; Panthera-uncia; home-range; distribution; endangered; threatened-species; Sayan; Zhombok-river -basin; browse; home range; home; range; threatened; species; zhombok river basin; zhombok; river; basin; panthera uncia; panthera; uncia; 680 |
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The author surveyed three sites in the central and eastern Sayan regions of Russia for snow leopards. In the Zhombolok River Basin of the Kropotkinskiy and Okinskiy Mountains, the author found seven snow leopard tracks, representing five or six individuals. In the Munku-Sardyk Peak area, one snow leopard track was found, and in the Tunkinskiy Ranffe area three tracks, representing at least two animals, were found. Other information is provided on local sightings. klf |
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AUTHOR ADDRESS: Inst. Biol., Irkutsk Univ., Russia
Document Type: English |
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SLN @ rana @ 286 |
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Koshkarev, E. |
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Snow leopard along the border of Russia and Mongolia |
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1998 |
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Cat News |
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28 |
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12-14 |
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behavior; census; survey methods; desert-habitat; distribution; ecosystems; endangered; threatened species; home-range; territory; mammals; montane; Russia; Mongolia; scat-analysis; tracks; tracking; status; Hovsogul; Sayan; siberia; Hovsogol; browse; survey; methods; desert; habitat; threatened; species; home; range; scat; analysis; 550 |
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The author discusses the distribution of snow leopards along the border of Russia and Mongolia. The range extension of the leopard indicates their ability to cross desert areas that separate mountain habitats.habitat; range extension; scat analysis; techniques; tracks/tracking | snow leopard |
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Full Text at URL: Inst. Biol., Irkutsk Univ., Russia , data base: Wildlife Review AbstractsDocument Type: English |
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SLN @ rana @ 339 |
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565 |
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Koshkarev, E. |
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Title |
Strategy of Snow Leopard Conservation in the Range |
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2002 |
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snow; leopard; uncia; conservation; poaching; protected; areas; range; population; protection; asia; endangered; species; 4990 |
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Title, Monographic: Proceedings of the Snow Leopard Survival SummitPlace of Meeting: Seattle,WA |
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SLN @ rana @ 485 |
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568 |
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Koshkarev E.P. |
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Title |
Key areas of snow leopard's habitat as main conservation objects |
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Miscellaneous |
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1990 |
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Part. 1. |
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97-98 |
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Kazakhstan; Southern Siberia; Central Asia; Talass ridge; Chatkal ridge; Zeravshan ridge; Hissar ridge; species range; key sites; snow leopard; nature reserves.; 7260; Russian |
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The most vulnerable key areas within the snow leopard habitat are East Kazakhstan (an area of 48,000 square km) with no protected areas network established, and South Siberia (131,000 square km), where snow leopard is protected in three nature reserves. These areas are distant from main part of the habitat, isolated and have more extreme conditions. In Central Asia's key area (213,000 square km) linked to a main Chinese-Afghani part of the habitat, snow leopard was found in 11 nature reserves and two national parks. For reliable protection of this species it would be expedient to strengthen the role of the mountain nature reserves by means of extension and amalgamation of the areas, and other measures. |
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Full text available in Russian
Journal Title: Environmental problems of wildlife protection. |
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SLN @ rana @ 704 |
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560 |
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Koshkarev E. |
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Title |
Critical Ranges as Centres of Biodiversity |
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Miscellaneous |
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1998 |
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N 14 |
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37-38 |
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Central Asia; biodiversity; rare species; species survival; snow leopard.; 7270; Russian |
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A high percentage of rare species in Central Asia experience limited conditions for distribution. Geographic centers with higher species diversity are generally constrained in terms of territory: they are formed when ranges overlap. But in Central Asia and along its borders with Russia, centers of biodiversity overlap at the very marginal edges of ranges. Central Asian species cross into Russian territory, where desert and steppe are replaced by thick forest. Here the northern borders of their ranges are sharply fragmented and isolated. Typical examples for Central Asia are the ranges of the cheetah (Acinonyx jubatus), Asian leopard (Panthera pardus caucasica), striped hyena (Hyaena hyaena), Bukhara deer (Census elaphus bactrianus), markhor (Capra falconeri), blue sheep (Pseudois nayauf) and argali (Ovis ammon). In Russia are the Altai subspecies of argali, the Siberian argali (O.a.ammon), the mountain goat (Capra sibirica), Mongolian gazelle (Procapra gutturosa), snow leopard (Uncia uncia), Pallas' cat (Felis manul), dhole (Cuon alpinus), grey marmot (Marmota baibacina), Mongolian marmot (M. sibirica) and tolai hare (Lepus tolai). Where the numbers o f individuals has fallen to extreme lows, the most effective mechanism for species survival may be supporting the integrity of ranges, in order to preserve population exchanges between neighboring groups. The geographic location of reserves and other protected territories is vitally important for the survival of Central Asian species, given the acute fragmentation of their ranges. These reserves should include significant, viable centers of population the key places. Wherever the creation of permanent protected territories is impossible, a new tactic must be found, such as introducing temporary limitations on the use of land for agriculture and hunting. But all protected territories, whether temporary or permanent, should be connected, forming a core and periphery. The marginal range areas must not be forgotten, if total protection of endangered populations is to be accomplished. |
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Full text available in RussianJournal Title: Russian Conservation News. |
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SLN @ rana @ 705 |
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555 |
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Korablev, M. P., Poyarkov, A. D., Karnaukhov, A. S., Zvychaynaya, E. Y., Kuksin, A. N., Malykh, S. V., Istomov, S. V., Spitsyn, S. V., Aleksandrov, D. Y., Hernandez-Blanco, J. A., Munkhtsog, B., Munkhtogtokh, O., Putintsev, N. I., Vereshchagin, A. S., Becmurody, A., Afzunov, S., Rozhnov, V. V. |
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Large-scale and fine-grain population structure and genetic diversity of snow leopards (Panthera uncia Schreber, 1776) from the northern and western parts of the range with an emphasis on the Russian population. |
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2021 |
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Conservation Genetics |
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Snow leopard, Panthera uncia, Microsatellites, Heterozygosity, Population structure, Noninvasive survey, Scat, Subspecies |
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The snow leopard (Panthera uncia Schreber, 1776) population in Russia and Mongolia is situated at the northern edge of the range, where instability of ecological conditions and of prey availability may serve as prerequisites for demographic instability and, consequently, for reducing the genetic diversity. Moreover, this northern area of the species distribution is connected with the western and central parts by only a few small fragments of potential habitats in the Tian-Shan spurs in China and Kazakhstan. Given this structure of the range, the restriction of gene flow between the northern and other regions of snow leopard distribution can be expected. Under these conditions, data on population genetics would be extremely important for assessment of genetic diversity, population structure and gene flow both at regional and large-scale level. To investigate large-scale and fine-grain population structure and levels of genetic diversity we analyzed 108 snow leopards identified from noninvasively collected scat samples from Russia and Mongolia (the northern part of the range) as well as from Kyrgyzstan and Tajikistan (the western part of the range) using panel of eight polymorphic microsatellites. We found low to moderate levels of genetic diversity in the studied populations. Among local habitats, the highest heterozygosity and allelic richness were recorded in Kyrgyzstan (He = 0.66 ± 0.03, Ho = 0.70 ± 0.04, Ar = 3.17) whereas the lowest diversity was found in a periphery subpopulation in Buryatia Republic of Russia (He = 0.41 ± 0.12, Ho = 0.29 ± 0.05, Ar = 2.33). In general, snow leopards from the western range exhibit greater genetic diversity (He = 0.68 ± 0.04, Ho = 0.66 ± 0.03, Ar = 4.95) compared to those from the northern range (He = 0.60 ± 0.06, Ho = 0.49 ± 0.02, Ar = 4.45). In addition, we have identified signs of fragmentation in the northern habitat, which have led to significant genetic divergence between subpopulations in Russia. Multiple analyses of genetic structure support considerable genetic differentiation between the northern and western range parts, which may testify to subspecies subdivision of snow leopards from these regions. The observed patterns of genetic structure are evidence for delineation of several management units within the studied populations, requiring individual approaches for conservation initiatives, particularly related to translocation events. The causes for the revealed patterns of genetic structure and levels of genetic diversity are discussed. |
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1633 |
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Kolosov A.M. |
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Central Asia |
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Miscellaneous |
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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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Kolbintsev V.G. |
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The role of the Aksu-Djabagly nature reserve in the vertebrate animals gene pool conservation |
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1990 |
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Part 3. |
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254-256 |
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Kazakhstan; Aksu-Jabagly nature reserve; gene pool; fauna; rare species; mammals; birds; snow leopard.; 7170; Russian |
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The Aksu-Djabagly nature reserve is a real guarantor for conservation of gene pool of five species Tien Shan bear, golden eagle, bearded vulture, Blue whistling thrush, and probably Central Asia stone marten. To strengthen the role of the nature reserve in the rare species conservation it is necessary to extend its area to a number of additional land plots belonging to forestries. |
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Full text available in RussianJournal Title: Nature reserves of the USSR future and present. |
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SLN @ rana @ 695 |
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543 |
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Koju, N. P., Gosai, K. R., Bashyal, B., Byanju, R., Shrestha, A., Buzzard, P., Beisch, W. B., Khanal, L. |
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Seasonal Prey Abundance and Food Plasticity of the Vulnerable Snow Leopard (Panthera uncia) in the Lapchi Valley, Nepal Himalayas |
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2023 |
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Animals |
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13 |
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3182 |
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1-16 |
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apex predator; flagship species; micro-histology; niche overlap; prey preference |
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Conservation strategies for apex predators, like the snow leopard (Panthera uncia), depend on a robust understanding of their dietary preferences, prey abundance, and adaptability to changing ecological conditions. To address these critical conservation concerns, this study presents a comprehensive evidence on prey availability and preferences for snow leopards in the Lapchi Valley in the Nepal Himalayas from November 2021 to March 2023. Field data were collected through the installation of twenty-six camera traps at 16 strategically chosen locations, resulting in the recording of 1228 events of 19 mammalian species, including domesticated livestock. Simultaneously, the collection of twenty snow leopard scat samples over 3800 m above sea level allowed for a detailed dietary analysis. Photo capture rate index and biomass composition analysis were carried out and seasonal prey availability and consumption were statistically analyzed. A total of 16 potential prey species for the snow leopard were documented during the study period. Himalayan musk deer (Moschus leucogaster) was the most abundant prey species, but infrequent in the diet suggesting that are not the best bet prey for the snow leopards. Snow leopards were found to exhibit a diverse diet, consuming eleven prey species, with blue sheep (Pseudois nayaur) being their most consumed wild prey and horses as their preferred livestock. The Pianka’s index of dietary niche overlap between the summer and winter seasons were 0.576, suggesting a pronounced seasonal variation in food preference corroborating with the prey availability. The scarcity of larger preys in winter is compensated by small and meso-mammals in the diet, highlighting the snow leopard’s capacity for dietary plasticity in response to the variation in resource availability. This research suggests for the utilization of genetic tools to further explore snow leopard diet composition. Additionally, understanding transboundary movements and conducting population assessments will be imperative for the formulation of effective conservation strategies. |
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SLN @ rakhee @ |
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1733 |
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Kogan M.I. |
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The Kazakh SSR. The Kyrgyz SSR. The Uzbek and Tajik SSR. The Turkmen SSR |
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1931 |
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47, 51-52,55-57, 59, 61-62. |
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Central Asia; game species; fur-trade; snow leopard.; 7160; Russian |
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It describes geographical, soil, climatic and hydrological features of Kazakhstan, Kyrgyzstan, Uzbekistan, and Tajikistan. Types of economic activities including fur-trade are described, too. Game preserves are classified, and list of game fauna species inhabiting these republics is given. Snow leopard lives in rocky mountains and is hunted very rarely. |
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Full text available in RussianJournal Title: Soviet Asia as a fur-trade region. |
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SLN @ rana @ 694 |
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540 |
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Knight, D. |
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Pipeline could ruin Siberian Plateau |
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2000 |
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Russia; siberia; pipeline; environmentalists; endangered-species; browse; endangered; species; 1000 |
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A proposed natural gas pipeline and accompanying road from southern Siberia to China would destroy the ecology of a plateau that is internationally recognized for its abundance of rare and endangered species, warn environmentalists meeting here this week. Known as the Ukok Plateau, this area near the intersection of Mongolia, China, Russia and Kazakhstan provides a critical habitat for one of the least studied predators in the world, the snow leopard, and many other endangered species including the argali mountain sheep, the black stork and the steppe eagle. |
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Journal Title: Inter Press Service |
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SLN @ rana @ 397 |
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538 |
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Klubnikin, K.; Annett, C.; Cherkasova, M.; Shishin, M.; Fotieva, I. |
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The sacred and the scientific: Traditional ecological knowledge in Siberian River conservation |
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2000 |
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Ecological-Applications. |
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10 |
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5 |
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1296-1306 |
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endangered-species; Human; Hominidae; Altaians; plant; Plantae; snow-leopard; Felidae; endemism; hydroelectric-dam; land-management; perestroika; species-diversity; traditional-ecological-knowledge; water-resource-management; snow leopard; browse; hydroelectric; dam; endangered; species; land; management; diversity; species diversity; traditional; ecological.; knowledge; water; resource; 30 |
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The Katun River originates in the steppe of the Altai Mountains in Siberia. One of the major headwaters of the Ob River, the Katun is considered central to the culture of the indigenous Altaians. The Katun Valley contains large numbers of important cultural sites, dating from the Neolithic and representing some of the earliest human settlement in Russia. Modern-day Altaians still observe traditional ceremonies honoring the river and springs throughout the watershed and utilize traditional ecological knowledge in their management of the land and water resources. Russian and international scientists have identified the Altai Mountains as a region of high plant diversity and endemism, and as important habitat for endangered species such as the snow leopard. The Katun River itself contains species of threatened and endangered fishes, and its headwaters are part of the unusual Mongolian ichthyofaunal province that is characterized by high levels of endemism. The same regions are considered by the Altaian people to be special or sacred and are recognized by Western scientists as having great value for conservation. During the era of perestroika, a hydroelectric dam was to be built on the Katun. The large dam, a vestige of the earlier Soviet plan for the Project of the Century, would have devastated significant agricultural, ecological, recreational, and cultural resources. The indigenous Altaian people would have lost much of their sacred and cultural landscape. The Katun dam project united indigenous people, well-known Siberian writers, and scientists in protest, which became so heated that it engaged the international community, with lasting effects on Russian society. The magnitude of the protest illustrates the importance of the Altai Mountain region to all of Russia. The active participation of indigenous Altaians reflected their traditional willingness to take action against political decisions that negatively impacted the environmental, cultural, and religious values of their homeland. Their involvement also reflected the new wave of awareness under perestroika that underscored a greater respect and autonomy for indigenous peoples in Russia. |
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Document Type: English
Call Number: QH540 .E273 |
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SLN @ rana @ 390 |
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537 |
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Khan, A. |
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Title |
Snow Leopard Occurrence in Mankial Valley, Swat: Final report |
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Report |
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2004 |
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1-17 |
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snow; snow leopard; snow-leopard; leopard; valley; Report; project; International; international snow leopard trust; International-Snow-Leopard-Trust; trust; program; ecosystem; habitat; species; plants; plant; Animals; Animal; birds; research; action; study; survey; Support; Islt; community; Organization; surveys; winter; information; local; sign; pugmarks; feces; scrapes; scrape; prey; prey species; prey-species; recent; population; markhor; hunting; Culture; Pressure; areas; area; feeding; livestock; burning; decline |
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Abstract |
Mankial is a sub-valley of the Swat Kohistan. Temperate ecosystem of the valley is intact to a greater extent, which provides habitat to a variety of species of plants, animals and birds. Snow leopard is reported from the valley. To confirm its occurrence, the HUJRA (Holistic Understanding for Justified Research and Action), conducted the study titled “Snow Leopard Survey in Mankial Valley, district Swat, NWFP”. The author provided technical support, while ISLT (The International Snow Leopard Trust) funded the project under its small grants program. The World Wide Fund for Nature-Pakistan (WWF-Pakistan) and the Mankial Community Organization (MCO) facilitated surveys under the project. Surveys revealed that Snow leopard visits parts of the Mankial valley in winter months. Information from the local community shows that Snow leopard remains in the Serai (an off-shoot of the Mankial Valley) from early winter to early spring. Intensive surveys of the prime snow leopard winter habitat in the valley found several snow leopard signs including pugmarks, feces, and scrapes. The study also found occurrence of prey species through indirect evidence though. However, information from the local community confirmed that in the recent past there was a good population of markhor in the valley, which is now reduced to less than 50, mostly due to hunting and habitat disturbance. Hunting is part of the local culture and lifestyle. During winter months hunting pressure is low, as most of the local community migrates to warmer plain areas than Mankial Valley. However, those who live in the area lop oak branches for feeding their livestock and cut trees for burning, in addition to hunting prey species of snow leopard. This has resulted in stunted oak vegetation in most of the lower reaches of the valley and decline of the markhor population. |
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Project funded by International Snow Leopard Trust Small Grants Program, 2003. |
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Call Number |
SLN @ rana @ 1069 |
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530 |
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Author ![sorted by Author field, descending order (down)](img/sort_desc.gif) |
Kazensky, C.A.; Munson, L.; Seal, U.S. |
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Title |
The effects of melengestrol acetate on the ovaries of captive wild felids |
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Journal Article |
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1998 |
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Journal-of-Zoo-and-Wildlife-Medicine |
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29 |
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1 |
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1-5 |
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Mga; zoo; felids; contraception; Melengestrol-acetate; ovaries; snow-leopard; Panthera-uncia; snow leopard; browse; uncia; panthera; melengestrol; acetate; 1260; effects; study; ovarian; Ovary; captive; wild; wild felid; Wild-Felid; species; Follicle; Cats; cat; recent; Ovulation; doses; Dose; action; Progestin; Disease; veterinary |
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Melengestrol acetate (MGA) is the most widely used contraceptive in zoo felids, but the mechanism of contraception and the pathologic effects have not been investigated. For this study, the effects of MGA on folliculogenesis were assessed, and the association of MGA with ovarian lesions was evaluated. Comparisons were made among the histopathologic findings in the ovaries from 88 captive wild felids (representing 15 species) divided into three groups: 37 currently contracepted with MGA, eight previously exposed to MGA, and 43 never contracepted. Ninety-one percent of the felids evaluated had tertiary follicles, and no differences were noted between contracepted and uncontracepted cats. Some MGA-contracepted cats also had corpora lutea indicating recent ovulation. These results indicate that folliculogenesis is not suppressed by current doses of MGA and ovulation occurred in some cats. Therefore, the contraceptive actions of MGA do not occur by suppressing folliculogenesis, and MGA-contracepted felids likely have endogenous estrogens that may confound progestin effects on the uterus. Cystic rete ovarii was the most common pathologic finding, but they were not more prevalent in MGA-contracepted cats. These findings indicate that MGA is not associated with ovarian disease, including ovarian cancer, in contrast to the uterine lesions noted in MGA-treated cats. |
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Document Type: English. Affiliation: Taylor Veterinary Hospital, Turlock , California 95382, USA |
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SLN @ rana @ 348 |
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527 |
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