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Author |
Abdunazarov B.B. |
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Title |
A role of the Hissar nature reserve in conservation of rare and endangered animals |
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Miscellaneous |
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1995 |
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126 |
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Uzbekistan; Hissar nature reserve; vertebrates; snow leopard; 5810; Russian |
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Abstract ![sorted by Abstract field, ascending order (up)](img/sort_asc.gif) |
Two amphibian species, 11 reptiles, 205 bird species (52 percent of which are nesting species) and 32 mammal species were reported to inhabit the Hissar nature reserve. The following rare species were recorded to inhabit the nature reserve: Tien Shan brown bear, Central Asian otter, Turkistan lynx, snow leopard, black stork, golden eagle, bearded vulture, black vulture, Himalayan griffon, saker falcon, and Central Asian cobra. |
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Full text available in RussianJournal Title: The organism and environment. Materials of the second national symposium. |
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SLN @ rana @ 561 |
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26 |
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Author |
Schaller, G.B. |
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Title |
On the behaviour of Blue Sheep (Pseudois nayaur) |
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Journal Article |
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1972 |
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Journal of Bombay Natural Historical Society |
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69 |
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523-537 |
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predator; prey; hunting; scat; blue-sheep; Nepal; blue; sheep; browse; 2230 |
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Two or three snow leopards hunted in the study area in eastern Nepal. Describes content of some snow leopard scat |
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SLN @ rana @ 24 |
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862 |
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Author |
Barnett, K.C.; Lewis, J.C.M. |
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Title |
Multiple ocular colobomas in the snow leopard (Uncia uncia) |
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Miscellaneous |
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2002 |
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Veterinary Ophthalmology |
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5 |
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197-199 |
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captive; Coloboma; cub; eyelid; ocular fundus; snow leopard; Uncia uncia |
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Abstract ![sorted by Abstract field, ascending order (up)](img/sort_asc.gif) |
Two singleton female snow leopard cubs are reported with bilateral central upper lid colobomas. In addition, one cub had a coloboma of the fundus in one eye extending from the lower optic disc region. Surgical treatment by wedge resection was successful in both cases. Details of ocular colobomas in the other snow leopards reported in the literature are described and it is suggested that the exact etiology of the condition in this species may be discovered by further study of similar colobomas in the domestic cat. |
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SLN @ rana @ 913 |
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119 |
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Schmidt, R.E.; Eisenbrandt, D.L.; Hubbard, G.B. |
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Title |
Tyzzer's disease in snow leopards |
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Journal Article |
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1984 |
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J Comp Pathol |
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94 |
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1 |
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165-167 |
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Animal; Animals; Newborn; zoo; Bacillus; Bacterial; Infections; pathology; veterinary; Carnivora; Liver; browse; 330 |
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Abstract ![sorted by Abstract field, ascending order (up)](img/sort_asc.gif) |
Tyzzer's disease was diagnosed histologically in 2 litters of newborn snow leopard kittens. The gross and histological lesions were similar to those reported in domestic cats and other animals. No signs of illness was noted in either of the snow leopard dams. |
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0021-9975 |
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Document Type: eng |
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SLN @ rana @ 67 |
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875 |
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Author |
Bekenov A.B. |
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About the IUCN categories and criteria for animals inclusion in Red Data Books and lists (project INTAS 99-1483) |
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Miscellaneous |
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2002 |
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67-71 |
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Kazakhstan; Red Data book; categories of threat; assessment; snow leopard.; 6220; Russian |
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Abstract ![sorted by Abstract field, ascending order (up)](img/sort_asc.gif) |
Uncia uncia in Kazakhstan is defined as EN C 2a(i); D1. The International Red List (2000) attributes this species to EN C 2a, which is an example of concurrence in the assessments at regional and global levels. |
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Full text available in RussianJournal Title: Zoological studies in Kazakhstan. |
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SLN @ rana @ 600 |
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127 |
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Author |
Xu, F.; Ming, M.; Yin, S.-jing; Chundawat R.S.; Marden; Nui, Y. |
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Title |
Preliminary Study on the Habitat Selection of Uncia uncia |
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Miscellaneous |
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2006 |
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23 |
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471-473 |
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study; habitat; Habitat selection; selection; uncia; Uncia uncia; Uncia-uncia; Chinese; research; large; species; extinction; Felidae; central; mountains; mountain; Xinjiang; Tianshan Mountains; Altay; national; nature; reserve; fieldwork; sign; grazing; status; Test; analysis; primary; factor; topography; valley |
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Abstract ![sorted by Abstract field, ascending order (up)](img/sort_asc.gif) |
Uncia uncia is one of the rare large species on the brink of extinction in Felidae in the world, and inhabit only the Central Asian mountains. It is said that there are currently only 4500-7300 Uncia uncia surviving. During the period from September 2004 to July 2005, the habitat selection of Uncia uncia was investigated in some mountains in Xinjiang, including the eastern Tianshan Mountains, Beita Mountains, Altay Mounts and Mount Tumor National Nature Reserve. In several months of fieldwork, we got 171 sign samples of Uncia uncia and 123 random samples in total. Five habitat features, i.e., the elevation, topographic features, vegetation type, grazing status and ruggedness, are selected to compare the difference of selectivity of the Uncia uncia habitat selection. The Chi-square goodness-of-fit test and the binomial test are used to check the significance of Uncia uncia habitat selection, and the principal component analysis is used to find the primary factors in in the selection. The result s are as follows : (1) Uncia uncia selected all kinds of the habitat types , especially the elevation , topography , vegetation types and ruggedness ; (2) Ruggedness and the vegetation types are the preliminary factors for the habitat selection. Topography is the secondary factor ; (3) Uncia uncia prefer to inhabit in the rugged habitat s with moderate shrubberies , and they also like to leave signs in valley bottoms rather than hillsides. |
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Full text available in ChineseName of periodical: Arid Zone Research |
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SLN @ rana @ 871 |
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1036 |
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WWF Mongolia |
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Mobile Training Team Report on Strengthening of Cooperation/Partnership among Law Enforcement Agencies for Reduction and Elimination of Environmental Violations and Crimes |
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Report |
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2008 |
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1-40 |
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Abstract ![sorted by Abstract field, ascending order (up)](img/sort_asc.gif) |
Under a joint Decision No: 102/132 by Minister of Justice and Internal Affairs (Ts. Munkh-orgil) and Minister of Nature and Environment (G. Shiilegdamba) dated on April 03, 2008 (Annex1), mobile training “Increased Participation of Law Enforcement Agencies in Reduction of Illegal Wildlife Product Trade” for law enforcement agencies was organized with WWF funding on 11-25 April, 2008. Training was organized in border points in Borshoo in Uvs Aimag, Tsagaan Nuur of Bayan-ulgii Aimag, Yarant in Khovd Aimag and Burgastai in Govi-altai Aimag. This mobile training was jointly organized by the Crime Prevention Coordination Council of the Ministry of Justice and Internal Affairs, the Frontier Defense Department of Frontier Troop Headquarter Management Board of General Office of Frontier Inspection of General Office of Frontier Defense, the State Frontier Specialized Agency at the SSIA, the General Police Office, University of Customs Economics, and Mongolian National Committee of CITES, WWF Mongolia, local office (Uvs Aimag) of Community based Biodiversity Conservation of Altai Sayan Eco-Region Project, and anti-poaching team “Ireves”. Overall, training was focused on how to detect and arrest illegal network of wildlife and its product trades, how to take preventive measures from such illegal actions, and how the law enforcement agencies should cooperate. While trainers tried to teach the topics in simple and clear understandable ways as much as possible, trainees endeavored how to get common understanding on the aspects and assist in decision making concerning the respective illegal actions.
This report entirely covers the results of training on increased participation of law enforcement agencies, particularly the law enforcement agencies operating in the vicinity of State border areas in reduction and elimination of illegal wildlife and its products. As a campaign “Prevention from environmental violations” was announced in April, 2008, some other public events e.g. workshops and seminars, and open forum discussions on national television were jointly organized with local offices of the National Committee of Crime Prevention in the Uvs, Khovd, and Govi-altai Aimags, where training was held. Training organized at the State border points (4) abovementioned was attended by over 120 individuals and workshops and discussions held in Uvs, Khovd, Bayan-ulgii and Govi-altai Aimags were attended by about 110 participants. One of advantages of training and discussions was that they were open to multiple parties/stakeholders and enabled them to learn more and exchange their views/opinions as well as cooperate. |
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WWF Mongolia |
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WWF Mongolia |
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Mongolia |
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1103 |
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Jackson, R., Hillard, D. |
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Title |
Non-invasive Monitoring to Support Local Stewardship of Snow Leopards and Their Prey: Annual progress report summary |
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2003 |
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1-6 |
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Abstract ![sorted by Abstract field, ascending order (up)](img/sort_asc.gif) |
Under this grant awarded by The Leonard X. Bosack and Bette M. Kruger Foundation through the auspices of Cat Action Treasury, SLC set out to accomplish the following outcomes in our Stewardship Program:
As of July 1, 2003 we completed the following major activities:
* Tested and compared different remote sensor and camera configurations to determine which is most reliable at “capturing” passing snow leopards;
* Investigated sampling strategies and camera trap placement with respect to snow leopard travel patterns and marking behavior;
* Compared different survey methods: direct (non-invasive capture of photos and DNA material contained in hairs), and indirect (sign transects and presence/absence surveys under the standard SLIMS protocol);
* Assessed the attitude of local people toward snow leopards, wolves and other wildlife as well as their perceptions of benefits and costs associated with the Hemis National Park, in order to craft more effective conservation and park management measures.
These activities mesh with SLC’s ongoing program of predator-proofing livestock corrals in settlements of the Hemis National Park, as well as outside protected areas (including Zanskar, Lingshed and Kanji. For each village’s corrals that are improved, we estimate that five or more snow leopards are saved from retaliatory killing by shepherds who lose valuable livestock.
Our program in assisting villagers to gain supplementary income from tourism-related activities is gaining strength, with trainings in 10 settlements this spring. SLC brought staff of KCC, the Khangchenjunga Conservation Committee, a local NGO based in Sikkim to assist in the skills training and to exchange ideas and experiences from other areas.
Following on from the groundwork laid during the first Bosack-Kruger grant to SLC, we launched a major initiative in collaboration with the Mountain Institute, the Himalayan Homestay program. Funding for this is being provided by UNESCO.
For further information on these and other snow leopard conservation efforts, see our newly designed web-page.
The following paragraphs summarize our accomplishments to date, supported by this grant. For detailed information, please consult the following reports, which are being mailed under separate cover:
1) “Local People’s Attitudes toward Wildlife Conservation in Hemis National Park with Special Reference to the Conservation of Large Predators” (prepared by Rodney Jackson, Rinchen Wangchuk and Jigmet Dadul)
2) “Non-Invasive Monitoring to Support Stewardship of Snow Leopards and Their Prey:
Evaluation of Remote Camera Traps for Censusing Snow Leopards” (prepared by Rodney Jackson and Jerry Roe). |
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Submitted to: The Leonard X. Bosack and Bette M. Kruger Charitable Foundation; submitted by the Snow Leopard Conservancy |
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SLN @ rana @ |
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1337 |
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Johansson, O., Alexander, J. S., Lkhagvajav, P., Mishra, C., Samelius, G. |
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Title |
Natal dispersal and exploratory forays through atypical habitat in the mountain-bound snow leopard |
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2024 |
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Ecology |
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2024 |
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e4264 |
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1-4 |
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connectivity, Gobi Desert, landscape permeability, Mongolia, Panthera uncia, resistance, steppe |
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Abstract ![sorted by Abstract field, ascending order (up)](img/sort_asc.gif) |
Understanding how landscapes affect animal movements is key to effective conservation and management (Rudnick et al., 2012; Zeller et al., 2012). Movement defines animal home ranges, where animals generally access resources such as food and mates, and also their dispersal and exploratory forays. These movements are important for individual survival and fitness through genetic exchange within and between populations and for colonization of unoccupied habitats (Baguette et al., 2013; MacArthur & Wilson, 1967). Dispersal and exploratory movements typically occur when young animals leave their natal range and establish more permanent home ranges (Greenwood, 1980; Howard, 1960). In mammals, natal dispersal of males is usually more frequent and happens over greater distances compared with that of females (Clobert et al., 2001; Greenwood, 1980). |
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1742 |
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Hacker, C., Atzeni, L., Munkhtsog, B., Munkhtsog, B., Galsandorj, N., Zhang, Y., Liu, Y., Buyanaa, C., Bayandonoi, G., Ochirjav, M., Farrington, J. D., Jevit, M., Zhang, Y., Wu, L. Cong, W., Li, D., Gavette, C., Jackson, R., Janecka, J. E. |
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Genetic diversity and spatial structures of snow leopards (Panthera uncia) reveal proxies of connectivity across Mongolia and northwestern China |
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2022 |
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Landscape Ecology |
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1-19 |
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Admixture · Central Asia · Connectivity · Habitat Modeling · Landscape Genetics · Noninvasive Genetics · MEM · Spatial Structures |
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Abstract ![sorted by Abstract field, ascending order (up)](img/sort_asc.gif) |
Understanding landscape connectivity and population genetic parameters is imperative for threatened species management. However, such information is lacking for the snow leopard (Panthera uncia). This study sought to explore hierarchical snow leopard gene flow patterns and drivers of genetic structure in Mongolia and China. A total of 97 individuals from across Mongolia and from the north-eastern edge of the Qinghai-Tibetan Plateau in Gansu Province to the middle of Qinghai Province in China were genotyped across 24 microsatellite loci. Distance-based frameworks were used to determine a landscape scenario best explaining observed genetic structure. Spatial and non-spatial methods were used to investigate fine-scale autocorrelation and similarity patterns as well as genetic structure and admixture. A genetic macro-division between populations in China and Mongolia was observed, suggesting that the Gobi Desert is a substantial barrier to gene flow. However, admixture and support for a resistance-based mode of isolation suggests connective routes that could facilitate movement. Populations in Mongolia had greater connectivity, indicative of more continuous habitat. Drivers of genetic structure in China were difficult to discern, and fine-scale sampling is needed. This study elucidates snow leopard landscape connectivity and helps to prioritize conservation areas. Although contact zones may have existed and occasional crossings can occur, establishing corridors to connect these areas should not be a priority. Focus should be placed on maintaining the relatively high connectivity for snow leopard populations within Mongolia and increasing research efforts in China. |
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1717 |
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