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Author Zhirjakov, V.A. url 
  Title On the ecology of the snow leopard in the Zailisky-Alatau (Northern Tien Shan) Type Journal Article
  Year 1990 Publication Int Ped Book of Snow Leopards Abbreviated Journal  
  Volume 6 Issue (up) Pages 25-30  
  Keywords Tien-Shan; ecology; China; browse; Kazakhstan; Russia; Soviet-Union; distribution; population; prey; behavior; food-habits; scat-analysis; 3240  
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  Notes Full text available at URL Approved no  
  Call Number SLN @ rana @ 168 Serial 1078  
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Author Zhiryakov V.A. url 
  Title The influence of large predators on wild mammal populations in the Almaty nature reserve Type Miscellaneous
  Year 1979 Publication Abbreviated Journal  
  Volume Issue (up) Pages 37-39  
  Keywords Kazakhstan; Almaty nature reserve; Animals; predators; snow leopard; wolf; preys.; 8760; Russian  
  Abstract There are following large predators in the Almaty nature reserve: wolf (5-6), snow leopard (single occasions), Turkistan lynx (single occasions), and Tien Shan brown bear (15-20). The share of wild mammals (roe-deer, ibex, wild boar, argali, gazelle, moral, and badger) being eaten by predators is 18.2 percent, about 60 percent of the entire prey falling to the share of wolf.  
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  Notes Full text available in RussianJournal Title: Ecologic fundamentals of protection and sustainable use of predatory mammals. Approved no  
  Call Number SLN @ rana @ 853 Serial 1083  
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Author Zhiryakov V.A. url 
  Title Ecology and behavior of the Snow leopard in Kazakhstan Type Miscellaneous
  Year 2002 Publication Abbreviated Journal  
  Volume N 1-4. Issue (up) Pages 184-199  
  Keywords Kazakhstan; distribution; number; density; population size; habitats; marking; Migration; diet; prey species; hunting; faeces; Sex; Age; population dynamics; reproductive activity; competitors; mortality; snow leopard.; 8810; Russian  
  Abstract The data on spreading, numbers and population density of snow leopard in Kazakhstan are given in this article. The total number of the snow leopard in Kazakhstan is evaluated in 100-110 individuals. The everywhere occurred numbers' reduction under the influence of the anthropogenic factors is observed. The snow leopard' inhabitation area varies from 20 to 120 square kilometers depending on its regions. Sex and composition of the population and its aggregative behavior are given. The dynamics of numbers and mortality are estimated.  
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  Notes Full text available in Russian.Journal Title: Selevinia. The zoological journal of Kazakhstan. Approved no  
  Call Number SLN @ rana @ 858 Serial 1087  
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Author Zhiryakov V.A. url 
  Title Snow leopard in the Almaty nature reserve. Short messages about snow leopards Type Miscellaneous
  Year 1986 Publication Abbreviated Journal  
  Volume Issue (up) Pages 51-54  
  Keywords Kazakhstan; Almaty nature reserve; snow leopard; preys; ungulates; rodents; ibex; number.; 8790; Russian  
  Abstract Snow leopard is a common species for the Almaty nature reserve due to numerous wild ungulates, particularly ibexes (about 600 ibexes at a density of 32 animals per 1,000 ha) inhabiting the area. According to the data of 1982 there were 0.5 footprints of snow leopard per 10 km of transect. The remains of ibex, roe deer, squirrel, gray vole mouse and birds were found in faeces of snow leopards. Snow leopard attacks their prey unexpectedly, being in wait for it in such places where prey is difficult to escape from. When hunt is successful the prey is killed almost instantly. Snow leopard feeds upon the same prey for several days.  
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  Notes Full text available in RussianJournal Title: Rare animals of Kazakhstan. Approved no  
  Call Number SLN @ rana @ 856 Serial 1088  
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Author Jackson, R., Hunter, D.O. url 
  Title Snow leopard Survey and conservation handbook (First edition) Type Report
  Year 1995 Publication Abbreviated Journal  
  Volume Issue (up) Pages 1-120  
  Keywords CCT, census, conservation, habitat, method, monitoring, prey, snow leopard, survey, Uncia uncia  
  Abstract The objectives of this handbook (First edition) are to provide standard procedures for conducting snow leopard status and distribution surveys; suggest uniform methods for assessing the status and relative abundance of large prey species (ungulates such as blue sheep, argali, markhor, Himalayan tahr, urial, ibex, red deer, and roe deer); offer guidance in evaluating habitat quality and identifying the major environmental factors affecting species welfare; and provide standard forms for reporting the results of these field surveys, and a process for feeding information developed by the International Snow Leopard Trust into Snoe Leopard Information Management System (SLIMS).  
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  Corporate Author International Snow Leopard Trust Thesis  
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  Notes Approved no  
  Call Number SLN @ rana @ Serial 1120  
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Author Sharma, S., Thapa, K., Chalise, M., Dutta, T., Bhatnagar, Y.V., McCarthy, T. url 
  Title The snow leopard in Himalaya: A step towards their conservation by studying their distribution, marking habitat selection, coexistence with other predators, and wild prey-livestock-predator interaction Type Journal Article
  Year 2006 Publication Conservation Biology in Asia Abbreviated Journal  
  Volume Issue (up) Pages 184-196  
  Keywords Himalaya, Nepal, ecology, snow leopard, Uncia uncia, prey, livestock, predator  
  Abstract Snow leopard (Uncia uncial) is a flagship species of the Himalaya. Very few studies have been done on the ecology of this species in the Himalaya. This paper presents an overview of four studies conducted on snow leopards in Nepal and India, dealing with various aspects of snow leopard ecology including their status assessment, making behaviour, habitat selection, food habits, and impact on livestock. The information generated by these studies is useful in planning effective conservation and management strategies for this endangered top predator of high mountains.  
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  Notes Paper 12; From: Pages 184-196 of Conservation Biology in Asia (2006) McNeely, J.A., T. M. McCarthy, A. Smith, L.Olsvig-Whittaker, and E.D. Wikramanayake (editors). Published by the Society for Conservation Biology Asia Section and Resources Himalaya, Kathmandu, Nepal, 455 pp. Approved no  
  Call Number SLN @ rana @ Serial 1130  
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Author Gronberg, E. url 
  Title Movement patterns of snow leopard (Panthera uncia) around kills based on GPS location clusters Type Report
  Year 2011 Publication Abbreviated Journal  
  Volume Issue (up) Pages  
  Keywords snow leopard, Panthera, Mongolia, Snow Leopard Trust, predator, prey, kill, behavior  
  Abstract Research concerning movement patterns of wild animals has been advancing since GPS technology arrived. But studying the snow leopard (Panthera uncia) is still difficult because of the harsh territory it inhabits in Central Asia. This study took place in south Gobi, Mongolia, and aimed to estimate the time spent at kills and the maximum distance away from kills between visits. Snow leopards were monitored with GPS collars that took a location every five or seven hours. Potential kill sites were established by identifying clusters of GPS-locations in ArcGIS and visited in the field for confirmation. ArcGIS was used to calculate the distance between cluster and GPS-locations. I used two buffer zones (100 m and 500 m radius) to define the time snow leopards spent at kills. It was found that snow leopard age and prey category affected time spent at kills and also that snow leopard sex together with prey category affected the maximum distance moved away from kills between visits. Season had no significant effect on either time at kills or distance moved away from kills between visits. Snow leopards spent on average 3.2 days at their kills in the 100 m buffer zone and 3.5 days at their kills in the 500 m buffer zone. Subadults stayed longer at kills than adults and animals of both age categories spent longer time on larger prey. The mean maximum distance moved away from kills between visits was 179 m in the 100 m buffer zone and 252 m in the 500 m buffer zone. Female snow leopards moved further away from kills between visits than male snow leopards. Both the number of days spent on kills and maximum distance moved away from kills between visits increased when kills consisted of more than one animal. This study has provided some basic information on snow leopard behaviors around their kills but also highlights the need to monitor more snow leopards before more solid conclusions can be drawn as this study was based on based on a relatively small sample.  
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  Corporate Author Thesis Master's thesis  
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  Notes Swedish University of Agricultural Sciences, Faculty of Natural Resources and Agricultural Sciences, Department of Ecology, Grimsö Wildlife Research Station Approved no  
  Call Number SLN @ rana @ Serial 1301  
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Author Johansson, O., McCarthy, T., Samelius, G., Andren, H., Tumursukh, L., Mishra, C. url 
  Title Snow leopard predation in a livestock dominated landscape in Mongolia Type Journal Article
  Year 2015 Publication Biological Conservation Abbreviated Journal  
  Volume 184 Issue (up) Pages 251-258  
  Keywords Gobi desert, GPS collar, Kill rate, Panthera uncial, Prey choice, Wildlife conflict  
  Abstract Livestock predation is an important cause of endangerment of the snow leopard (Panthera uncia) across

its range. Yet, detailed information on individual and spatio-temporal variation in predation patterns of

snow leopards and their kill rates of livestock and wild ungulates are lacking.

We collared 19 snow leopards in the Tost Mountains, Mongolia, and searched clusters of GPS positions

to identify prey remains and estimate kill rate and prey choice.

Snow leopards killed, on average, one ungulate every 8 days, which included more wild prey (73%) than

livestock (27%), despite livestock abundance being at least one order of magnitude higher. Predation on

herded livestock occurred mainly on stragglers and in rugged areas where animals are out of sight of herders.

The two wild ungulates, ibex (Capra ibex) and argali (Ovis ammon), were killed in proportion to their

relative abundance. Predation patterns changed with spatial (wild ungulates) and seasonal (livestock)

changes in prey abundance. Adult male snow leopards killed larger prey and 2–6 times more livestock

compared to females and young males. Kill rates were considerably higher than previous scat-based estimates, and kill rates of females were higher than kill rates of males. We suggest that (i) snow leopards

prey largely on wild ungulates and kill livestock opportunistically, (ii) retaliatory killing by livestock herders

is likely to cause greater mortality of adult male snow leopards compared to females and young

males, and (iii) total off-take of prey by a snow leopard population is likely to be much higher than previous

estimates suggest.
 
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  Call Number SLN @ rakhee @ Serial 1420  
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Author Tumursukh, L., Suryawanshi, K. R., Mishra, C., McCarthy, T. M., Boldgiv, B. url 
  Title Status of the mountain ungulate prey of the Endangered snow leopard Panthera uncia in the Tost Local Protected Area, South Gobi, Mongolia Type Journal Article
  Year 2015 Publication Oryx Abbreviated Journal  
  Volume Issue (up) Pages 1-6  
  Keywords Argali, Central Asia, double-observer survey, ibex, Panthera uncia, snow leopard, ungulate prey  
  Abstract The availability of wild prey is a critical predictor of carnivore density. However, few conservation pro- grammes have focused on the estimation and monitoring of wild ungulate populations and their trends, especially in the remote mountains of Central Asia. We conducted double-observer surveys to estimate the populations of ibex Capra sibirica and argali Ovis ammon in the mountain- ous regions of Tost Local Protected Area, South Gobi prov- ince, Mongolia, which is being considered for designation as a Nature Reserve. We also conducted demographic surveys of the more abundant ibex to examine their sex-ratio and the survival of young during –. The estimated ibex population remained stable in  and  and the es- timated argali population increased from  in  to  in . The biomass of wild ungulates was c. % that of live- stock. Mortality in young ibex appeared to increase after weaning, at the age of  months. We estimated the popula- tion of wild ungulates was sufficient to support – adult snow leopards Panthera uncia. The adult snow leopard population in our study area during –, estimated independently using camera-trap-based mark–recapture methods, was –. Based on our results we identify the Tost Local Protected Area as an important habitat for the conservation of these ungulates and their predator, the Endangered snow leopard, and recommend elevation of its status to a Nature Reserve.  
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  Call Number SLN @ rakhee @ Serial 1425  
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Author Suryawanshi, K. R., Redpath, S. M., Bhatnagar, Y. V., Ramakrishnan, U., Chaturvedi, V., Smout, S. C., Mishra, C. url 
  Title Impact of wild prey availability on livestock predation by snow leopards Type Journal Article
  Year Publication Royal Society Open Science Abbreviated Journal  
  Volume Issue (up) Pages 1-11  
  Keywords apparent competition, apparent facilitation, conservation conflicts, indirect interactions, predator� prey interactions, snow leopard  
  Abstract An increasing proportion of the world�s poor is rearing livestock today, and the global livestock population is growing. Livestock predation by large carnivores and their retaliatory

killing is becoming an economic and conservation concern. A common recommendation for carnivore conservation and for reducing predation on livestock is to increase wild prey populations based on the assumption that the carnivores will consume this alternative food. Livestock predation, however, could either reduce or intensify with increases in wild prey depending on prey choice and trends in carnivore abundance. We show that the extent of livestock predation by the endangered snow leopard Panthera uncia

intensifies with increases in the density of wild ungulate prey, and subsequently stabilizes. We found that snow leopard density, estimated at seven sites, was a positive linear function of the density of wild ungulates�the preferred prey�and showed no discernible relationship with livestock density. We also found that modelled livestock predation increased with livestock density. Our results suggest that snow leopard conservation would benefit from an increase in wild ungulates, but that would intensify the problem of livestock predation for pastoralists. The potential benefits of increased wild prey abundance in reducing livestock predation

can be overwhelmed by a resultant increase in snow leopard populations. Snow leopard conservation efforts aimed atfacilitating increases in wild prey must be accompanied by greater assistance for better livestock

protection and offsetting the economic damage caused by carnivores.
 
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  Notes Approved no  
  Call Number SLN @ rakhee @ Serial 1452  
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