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Author |
Ahmad, A. |
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Title |
Protection of Snow Leopards through Grazier Communities:Some Examples from WWF-Pakistan's Projects in the Northern Areas |
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1994 |
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265-272 |
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conservation; Pakistan; Wwf; world-wildlife-fund; livestock; herders; herder; status; parks; park; reserve; refuge; protected-area; Dir; chitral; predator; prey; grazier; pelt; fur; coat; skin; poaching; Khunjerab; Marco-Polo-sheep; ibex; markhor; hunting; browse; protected; area; sheep; Marco-Polo; 2040 |
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Snow leopards occur near the snow line in northern Pakistan in the districts of Swat, Dir and Chitral of the Northwest Frontier Province (NWFP), Muzaffarabad district in Azad Kashmir and Gilgit and Baltistan districts in the Northern Areas. Although a number of protected areas are present in the form of national parks, wildlife sanctuaries and game reserves (Table 1) where legal protection is available to all wildlife species, including snow leopards, the status of this endangered species is not improving satisfactorily. The reasons are many and range from direct persecution by livestock owners to the less than strict management of protected areas.
Because of remote and inaccessible locations and lack of proper communication with local communities, government officials and nongovernmental organizations (NGOs) concerned with conservation find it difficult to obtain statistics on mortality of snow leopards. However, the killing of snow leopards is not uncommon. Because of the close and long-term association between local villagers and snow leopards, it is only through the support and cooperation of these peoples that protection of this endangered species can be assured against most of the existing threats. The effects of such cooperation has been clearly shown through some of the conservation projects of World Wildlife Fund (WWF) – Pakistan. Details of such projects and certain lessons that can be learned from these and similar projects are discussed in this paper. |
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International Snow Leopard Trust |
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Usa |
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J.L.Fox; D.Jizeng |
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English |
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Full text available at URLTitle, Monographic: Proceedings of the Seventh International Snow Leopard SymposiumPlace of Meeting: ChinaDate of Copyright: 1994 |
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Call Number |
SLN @ rana @ 209 |
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40 |
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Author |
Shafiq, M.M.; Abid, A. |
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Title |
Status of large mammal species in Khunjerab National Park |
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Year |
1998 |
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Pakistan Journal of Forestry |
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48 |
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1-4 |
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91-96 |
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Khunjerab-National-Park; large-mammals; endangered species; snow leopard; Uncia uncia; wolf; fox; ibex; sheep; bear; prey; predator; protected-area; Khunjerab; browse; national; park; large; mammals; endangered; species; uncia; protected; 560 |
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Study on the current status of large mammals species population was carried out in Khunjerab National Park, Northern Areas. The observation recorded showed that the population of Tibetan Red fox (Vulpes vulpes montana), Snow leopard (Uncia uncia), and Wolf (Canis lupus) have, though a bit, increased but are still in the rank of “Endangered”. While the population of Himalyan Ibex (Cpara ibex sibirica) is increasing more rapidly and their status is now “Common” in the Park. The limited population of Marcopolo sheep (Ovis ammon polii), Tibetan wild Ass (Equus hemionus kiang) and Brown bear (Urus arctos) is still under threat, and comes them under “Critical Endangered” category. |
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Document Type: English
Call Number: 634.909547 PA |
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SLN @ rana @ 342 |
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879 |
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Author |
Ferretti, F., Lovari, S. |
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Title |
Predation may counteract climatic change as a driving force for movements of mountain ungulates |
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Report |
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2016 |
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Behavioural-Processes |
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129 |
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101-104 |
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Climate change, Environmental change, Interspecific interactions, Large cats, Predator-prey interactions |
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Temperature variations are expected to influence altitudinal movements of mountain herbivores and, in
turn, those of their predators, but relevant information is scarce. We evaluated monthly relationships
between temperature and altitude used by a large mountain-dwelling herbivore, the Himalayan tahr
Hemitragus jemlahicus, and its main predator, the snow leopard Panthera uncia, in an area of central
Himalaya for five consecutive years (2006–2010). In contrast to expectations, there was no significant
direct relationship between altitude of tahr sightings and temperature. The mean altitude of tahr sightings
decreased by c. 200 m throughout our study. As expected, snow leopard movements tracked those of tahr,
although the core area of the snow leopard did not move downwards. Tahr remained the staple of the
snow leopard diet: we suggest that the former did not move upwards in reaction to higher temperature
to avoid encounters with the latter. Avoidance of competition with the larger common leopard Panthera
pardus at lower altitudes could explain why snow leopards did not shift their core area downwards.
Apparently, interspecific interactions (predation; competition) influenced movements of Himalayan tahr
and snow leopards more than climatic variations. |
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SLN @ rakhee @ |
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1441 |
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Author |
Jackson, R.M.; Ahlborn, G.; Gurung, M.; Ale, S. |
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Title |
Reducing livestock depredation losses in the Nepalese Himalaya |
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1996 |
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Proc.Vertebr.Pest Conf |
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17 |
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241-247 |
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damage; damage-by-wildlife; endangered; threatened species; livestock; mammals; management; predator-control; public-relations; wildlife; livestock-relationships; Nepal; asia; herders; conservation; Manang; Khangshar; depredation; conflict; predator; prey; browse; public; threatened; species; control; Relations; 700 |
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The authors investigated livestock depredation patterns of snow leopards on the northern slopes of the Himalayans near the villages of Manang and Khangshar, Nepal. Information is discussed on the relationships among livestock loss, endangered species management, public relations/conservation issues, and cooperative efforts among institutions involved in the decision making process. A plan is devised for alleviating livestock loss and protecting endangered species in the area. pcp |
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Full Text at URL: ADDRESS: Mountain Inst., Main & Dogwood St., Franklin, WV 26807//“Proceedings Seventeenth Vertebrate Pest Conference-March 5-7, 1996, Rohnert Park, California”; Timm, Robert M.; Crabb, A. Charles, editorsDocument Type: English |
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Call Number |
SLN @ rana @ 271 |
Serial |
480 |
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Author |
Zhiryakov V.A. |
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Title |
The influence of the predators on population trend of the ungulates in the Almaty nature reserve |
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Miscellaneous |
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Year |
1989 |
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199-201 |
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Kazakhstan; predators; ungulates; dencity; population trend; snow leopard.; 8770; Russian |
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The data on predators and ungulates population dynamics in Almaty Nature reserve (Kazakhstan) in 1983-1987s are given. The number of snow leopard is stable (3-5 individuals), the density is 0.06 indi/1000 ha. An insignificant increase of Siberian ibex' number (660 to 700) with density of 36 indi/1000 ha is recorded. |
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Full text available in RussianJournal Title: All-Union Conference on cadastre and censusing of the animals. |
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Call Number |
SLN @ rana @ 854 |
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1084 |
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Author |
Braden, K.E. |
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Title |
Economic Development in Six Regions of Snow Leopard Habitat in the U.S.S.R |
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Conference Article |
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Year |
1988 |
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227-246 |
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conservation; habitat; herders; livestock; sheep; goats; argali; herder; Russia; Soviet-Union; U.S.S.R.; Ussr; ungulates; ungulate; predator; prey; economics; economic; browse; soviet; union; 1800 |
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The Disappearance of traditional ungulate prey of the snow leopard may be contributing to its endangered status in the wild. Soviet biologists have noted that wild sheep are a primary prey of the snow leopard in the southern Russian union republic and the Central Asian union republic of the U.S.S.R. While poaching appears to have had some impact on the status of these sheep, econmic pressures may be contributing to their decrease. Evidence presented for KAzakhstan and three regions of the Russian republic demonstrates that commercial sheep and goat production appears to be growing at a very high pace in these areas, thus consumming habitat otherwise available for wild herds. |
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International Snow Leopard Trust and the Wildlife Institute of India |
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India |
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H.Freeman |
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Full Text at URLTitle, Monographic: Fifth International Snow Leopard SymposiumPlace of Meeting: Srinagar, IndiaDate of Copyright: 1988 |
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SLN @ rana @ 107 |
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194 |
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Author |
Sapozhnikov G.N. |
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Wild sheep in Tajikistan |
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Miscellaneous |
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1976 |
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199 p. |
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Tajikistan; urial; argali; taxonomy; morphology; variability; life history characteristics; distribution; number; diet; behavior; parasites; predators; snow leopard.; 8060; Russian |
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The monograph provides data concerning taxonomy, morphology, and age variability of wild sheep. There described distribution, number, population composition, behavioral patterns, reproduction, predators and parasites. Besides, a matter of conservation and sustainable use of the species is discussed. Together with wolf, snow leopard is called an enemy of O. o. vignei and argali (O. o. polii). |
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Full text available in Russian |
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SLN @ rana @ 784 |
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845 |
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Author |
Zhiryakov V.A. |
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Title |
Wolves' role in biocenosis of the Almaty nature reserve (North Tien Shan) |
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1990 |
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Vol. II. |
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278-279 |
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Kazakhstan; Almaty nature reserve; ungulates; number; livestock; red deer; roe deer; ibex; wild boar; predators; brown bear; wolf; snow leopard.; 8780; Russian |
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The quantity of ungulates is high in the nature reserve: moral (100-120), roe deer (500-650), Siberian ibex (660-700), and wild boar (50-80). Moreover some 5,000 heads of livestock (mostly sheep) are grazed in a buffer zone in summer. Among big predators (snow leopard, bear, lynx) wolf kills about 40 percent of ungulates. |
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Full text available in RussianJournal Title: Proceedings of V all-Union congress of mammalogy society of the Academy of Science of the USSR. |
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SLN @ rana @ 855 |
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1085 |
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McCarthy, K.; Fuller, T.; Ming, M.; McCarthy, T.; Waits, L.; Jumabaev, K. |
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Assessing Estimators of Snow Leopard Abundance |
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2008 |
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Journal of Widlife Management |
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72 |
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8 |
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1826-1833 |
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abundance; camera,capture-recapture,density,index,predator:prey ratios,techniques,Tien Shan,Uncia; leopard; SaryChat; sign surveys; Slims; snow; snow-leopard; snow leopard; Tomur |
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The secretive nature of snow leopards (Uncia uncia) makes them difficult to monitor, yet conservation efforts require accurate and precise methods to estimate abundance. We assessed accuracy of Snow Leopard Information Management System (SLIMS) sign surveys by comparing them with 4 methods for estimating snow leopard abundance: predator:prey biomass ratios, capture-recapture density estimation, photo-capture rate, and individual identification through genetic analysis. We recorded snow leopard sign during standardized surveys in the SaryChat Zapovednik, the Jangart hunting reserve, and the Tomur Strictly Protected Area, in the Tien Shan Mountains of Kyrgyzstan and China. During June-December 2005, adjusted sign averaged 46.3 (SaryChat), 94.6 (Jangart), and 150.8 (Tomur) occurrences/km. We used
counts of ibex (Capra ibex) and argali (Ovis ammon) to estimate available prey biomass and subsequent potential snow leopard densities of 8.7 (SaryChat), 1.0 (Jangart), and 1.1 (Tomur) snow leopards/100 km2. Photo capture-recapture density estimates were 0.15 (n = 1 identified individual/1 photo), 0.87 (n = 4/13), and 0.74 (n = 5/6) individuals/100 km2 in SaryChat, Jangart, and Tomur, respectively. Photo-capture rates
(photos/100 trap-nights) were 0.09 (SaryChat), 0.93 (Jangart), and 2.37 (Tomur). Genetic analysis of snow leopard fecal samples provided minimum population sizes of 3 (SaryChat), 5 (Jangart), and 9 (Tomur) snow leopards. These results suggest SLIMS sign surveys may be affected by observer bias and environmental variance. However, when such bias and variation are accounted for, sign surveys indicate relative abundances similar to photo rates and genetic individual identification results. Density or abundance estimates based on capture-recapture or ungulate biomass did not agree with other indices of abundance. Confidence in estimated densities, or even detection of significant changes in abundance of snow leopard, will require more effort and better documentation. |
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SLN @ rana @ 881 |
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653 |
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Prasad, S.N.; Chundawat, R.S.; Hunter, D.O.; Panwar, H.S.; Rawat, G.S. |
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Remote sensing snow leopard habitat in the trans-Himalaya of India using spatial models and satellite imagery preliminary results |
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1991 |
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519-523 |
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snow-leopard; Gis; cartographic-modelling; India; Ladakh; Zanskar; predation; habitat; prey; predator; blue-sheep; snow leopard; blue; sheep; browse; cartographic modelling; cartographic; modelling; 810 |
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The snow leopard (Panthera uncia) is a flagship species for conservation in the high mountain regions of central Asia. Data on snow leopard predation, habitat conditions and range of main prey species were gathered along with thematic maps of the study area for elevation, snow cover, sighting data, kill data, blue sheep use areas, and vegetation data. These data were entered into a GIS and used to help delineate surface features from a satellite image. Preliminary results show that general physiographic features of snow leopard habitat can be detected using satellite imagery and that GIS cartographic modeling techniques can improve this delineation. -from Authors |
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Buhyoff, G.J. |
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Title, Monographic: Resource Technology 90. Proc. second international symposium on advanced technology in natural resources management
Place of Meeting: Washington, DC |
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SLN @ rana @ 176 |
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792 |
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