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Author Alexander, J. S., Agvaantseren, B., Gongor, E., Mijiddorj, T. N., Piaopiao, T., Stephen Redpath, S., Young, J., Mishra, C. url 
  Title Assessing the Effectiveness of a Community-based Livestock Insurance Program Type Journal Article
  Year 2021 Publication Environmental Management Abbreviated Journal  
  Volume Issue Pages  
  Keywords Large carnivores, Snow leopard conservation, Human-wildlife conflicts, Livestock insurance, Community conservation, Human-wildlife co-existence, Snow leopard  
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  Call Number Serial 1635  
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Author 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. url 
  Title 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. Type Journal Article
  Year 2021 Publication Conservation Genetics Abbreviated Journal  
  Volume Issue Pages  
  Keywords Snow leopard, Panthera uncia, Microsatellites, Heterozygosity, Population structure, Noninvasive survey, Scat, Subspecies  
  Abstract 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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  Call Number Serial 1633  
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Author Singh, R., Krausman, P. R., Pandey, P., Maheshwari, A., Rawal, R. S., Sharma, S., Shekhar, S. url 
  Title Predicting Habitat Suitability of Snow Leopards in the Western Himalayan Mountains, India Type Journal Article
  Year 2020 Publication Biology bulletin Abbreviated Journal  
  Volume 47 Issue 6 Pages 655-664  
  Keywords biogeographic distribution, climate, endangered cat, MaxEnt, snow leopard  
  Abstract The population of snow leopard (Panthera uncia) is declining

across their range, due to poaching, habitat fragmentation, retaliatory

killing, and a decrease of wild prey species. Obtaining information on

rare and cryptic predators living in remote and rugged terrain is

important for making conservation and management strategies. We used the

Maximum Entropy (MaxEnt) ecological niche modeling framework to predict

the potential habitat of snow leopards across the western Himalayan

region, India. The model was developed using 34 spatial species

occurrence points in the western Himalaya, and 26 parameters including,

prey species distribution, temperature, precipitation, land use and land

cover (LULC), slope, aspect, terrain ruggedness and altitude. Thirteen

variables contributed 98.6% towards predicting the distribution of snow

leopards. The area under the curve (AUC) score was high (0.994) for the

training data from our model, which indicates pre- dictive ability of

the model. The model predicted that there was 42432 km2 of potential

habitat for snow leop- ards in the western Himalaya region. Protected

status was available for 11247 km2 (26.5%), but the other 31185 km2

(73.5%) of potential habitat did not have any protected status. Thus,

our approach is useful for predicting the distribution and suitable

habitats and can focus field surveys in selected areas to save

resources, increase survey success, and improve conservation efforts for

snow leopards.
 
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  Call Number Serial 1629  
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Author Augugliaro, C., Christe, P., Janchivlamdan, C., Baymanday, H., Zimmermann, F. url 
  Title Patterns of human interaction with snow leopard and co-predators in the Mongolian western Altai: Current issues and perspectives Type Journal Article
  Year 2020 Publication Global Ecology and Conservation Abbreviated Journal  
  Volume 24 Issue Pages 1-21  
  Keywords Depredation Human-carnivores interaction Mongolian altai Snow leopard Wolf Wolverine  
  Abstract Large carnivores can cause considerable economic damage,

mainly due to livestock depredation. These conficts instigate negative

attitude towards their conservation, which could in the extreme case

lead to retaliatory killing. Here we focus on the snow leopard (Panthera

uncia), a species of conservation concern with particularly large

spatial requirements. We conducted the study in the Bayan Olgii

province, one of the poorest provinces of Mongolia, where the majority

of the human population are traditional herders. We conducted a survey

among herders (N 261) through a semi-structured questionnaire with the

aim to assess: the current and future herding practices and prevention

measures, herders’ perceptions and knowledge of the environmental

protection and hunting laws; the perceived livestock losses to snow

leopard, wolf (Canis lupus), and wolverine (Gulo gulo), as well as to

non-predatory factors; the key factors affecting livestock losses to

these three large carnivores; and, finally, the attitudes towards these

three large carnivores. Non-predatory causes of mortality were slightly

higher than depredation cases, representing 4.5% and 4.3% of livestock

holdings respectively. While no depredation of livestock was reported

from wolverines, snow leopard and wolf depredation made up 0.2% and 4.1%

of total livestock holdings, respectively. Herders’ attitudes towards

the three large carnivores were negatively affected by the magnitude of

the damages since they had a positive overall attitude towards both snow

leopard and wolverine, whereas the attitude towards wolf was negative.

We discuss conservation and management options to mitigate herder-snow

leopard impacts. To palliate the negative consequences of the increasing

trend in livestock numbers, herd size reduction should be encouraged by

adding economic value to the individual livestock and/or by promoting

alternative income and/or ecotourism. Furthermore, co-management between

government and stakeholders would help tackle this complex problem, with

herders playing a major role in the development of livestock management

strategies. Traditional practices, such as regularly shifting campsites

and using dogs and corrals at night, could reduce livestock losses

caused by snow leopards.
 
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  Notes Approved no  
  Call Number Serial 1627  
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Author Sharma, K., Fiechter, M., George, T., Young, J., Alexander, J. S., Bijoor, Suryawanshi, K., Mishra, C. url 
  Title Conservation and people: Towards an ethical code of conduct for the use of camera traps in wildlife research Type Journal Article
  Year 2020 Publication Ecological Solutions and Evidence Abbreviated Journal  
  Volume Issue Pages 1-6  
  Keywords camera trap, code of conduct, ethics, human rights, law, PARTNERS principles for community- based conservation, privacy, snow leopard  
  Abstract 1. Camera trapping is a widely employed tool in wildlife

research, used to estimate animal abundances, understand animal

movement, assess species richness and under- stand animal behaviour. In

addition to images of wild animals, research cameras often record human

images, inadvertently capturing behaviours ranging from innocuous

actions to potentially serious crimes.

2. With the increasing use of camera traps, there is an urgent need to

reflect on how researchers should deal with human images caught on

cameras. On the one hand, it is important to respect the privacy of

individuals caught on cameras, while, on the other hand, there is a

larger public duty to report illegal activity. This creates ethical

dilemmas for researchers.

3. Here, based on our camera-trap research on snow leopards Panthera

uncia, we outline a general code of conduct to help improve the practice

of camera trap based research and help researchers better navigate the

ethical-legal tightrope of this important research tool.
 
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  Call Number Serial 1626  
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Author Esson, C. , Skerratt, L. F. , Berger, L. , Malmsten, J., Strand, T. , Lundkvist, A., Järhult, J. D., Michaux, J., Mijiddorj, T. N., , Bayrakçısmith, R., Mishra, C., Johansson, O url 
  Title Health and zoonotic Infections of snow leopards Panthera unica in the South Gobi desert of Mongolia Type Journal Article
  Year 2019 Publication Infection Ecology & Epidemiology Abbreviated Journal  
  Volume 9 Issue 1604063 Pages 1-11  
  Keywords Snow leopard; zoonoses; conservation; one health; Mongolia; ticks  
  Abstract Background: Snow leopards, Panthera uncia, are a threatened apex predator, scattered across the mountains of Central and South Asia. Disease threats to wild snow leopards have not been investigated.

Methods and Results: Between 2008 and 2015, twenty snow leopards in the South Gobi desert of Mongolia were captured and immobilised for health screening and radio-collaring. Blood samples and external parasites were collected for pathogen analyses using enzyme- linked immunosorbent assay (ELISA), microscopic agglutination test (MAT), and next- generation sequencing (NGS) techniques. The animals showed no clinical signs of disease, however, serum antibodies to significant zoonotic pathogens were detected. These patho- gens included, Coxiella burnetii, (25% prevalence), Leptospira spp., (20%), and Toxoplasma gondii (20%). Ticks collected from snow leopards contained potentially zoonotic bacteria from the genera Bacillus, Bacteroides, Campylobacter, Coxiella, Rickettsia, Staphylococcus and Streptococcus.

Conclusions: The zoonotic pathogens identified in this study, in the short-term did not appear to cause illness in the snow leopards, but have caused illness in other wild felids. Therefore, surveillance for pathogens should be implemented to monitor for potential longer- term disease impacts on this snow leopard population.
 
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  Call Number Serial 1625  
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Author Tiwari, M. P., Devkota, B. P., Jackson, R. M., Chhetri, B. B. K., Bagale, S. url 
  Title What Factors Predispose Households in Trans-Himalaya (Central Nepal) to Livestock Predation by Snow Leopards? Type Journal Article
  Year 2020 Publication Animals Abbreviated Journal  
  Volume 10 Issue 2187 Pages 1-14  
  Keywords human-snow leopard conflict; livestock predation; Narphu valley; trans-Himalaya  
  Abstract Livestock depredation across the trans-Himalaya causes

significant economic losses to pastoralist communities. Quantification

of livestock predation and the assessment of variables associated with

depredation are crucial for designing effective long-term mitigation

measures. We investigated the patterns and factors of livestock

depredation by snow leopards (Panthera uncia) using semi-structured

questionnaires targeting herders in the Narphu valley of the Annapurna

Conservation Area, Nepal. During the two years (2017/18 and 2018/19),

73.9% of the households interviewed (n = 65) lost livestock to snow

leopards, with an annual average loss of two livestock per household. Of

the total depredation attributed to snow leopards, 55.4% were yak

(mainly female: 79%), 31.7% goat, 6.8% sheep, 3.2% horse and 2.8%

cattle. Results from applying Generalized Linear Mixed Models (GLMMs)

revealed the total number of livestock owned and the number of larger

bodied livestock species as the main explanatory covariates explaining

livestock depredation. Forty-one (41%) of all herders considered snow

leopard’s preference for domestic livestock as the main factor in

livestock predation, whereas only 5% perceived poor herding practice as

the main reason for the loss. Our study found poor and changing herding

practices in the valley, whereby 71% herders reported careful herding as

a solution to snow leopard depredation, and 15% of herders considered

the complete extermination of snow leopards as the best solution to the

problem. Tolerance levels and awareness among herders towards snow

leopard conservation is increasing, mainly due to the Buddhist religion

and strict law enforcement within this protected area. We recommend the

effective implementation of a community-based livestock insurance scheme

to compensate the economic loss of herders due to predation and improved

herding practices as the recommended mitigation measures for ensuring

livestock security and snow leopards’ conservation in the valley.
 
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  Call Number Serial 1624  
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Author url 
  Title Snow Leopard Survival Summit Group Photograph Type Unsupported: Slide
  Year 2002 Publication Abbreviated Journal  
  Volume Issue Pages  
  Keywords snow; snow leopard; snow-leopard; Snow-Leopard-Survival-Summit; leopard; survival; seattle  
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  Notes Photograph of participants in 21-25 May 2002 Snow Leopard Survival Summit, Seattle, Washington, USA. Approved no  
  Call Number SLN @ rana @ 1080 Serial 20  
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Author Anandakrishnan, M.B. url 
  Title The snow leopard: Elusive and endangered Type Journal Article
  Year 1998 Publication The Environmental Magazine Abbreviated Journal  
  Volume 9 Issue 5 Pages 18-19  
  Keywords Himalayan; poaching; tourism; development; Nepal; asia; snow-leopard; snow leopard; browse; 1070  
  Abstract The snow leopard has never been common, but there may be fewer than 4,000 left in its Himalayan habitat, and poaching and tourism-related development in the region could drive its numbers down further.  
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  Notes Copyright Earth Action Network, Inc. Sep/Oct 1998 Document Type: English Approved no  
  Call Number SLN @ rana @ 352 Serial 71  
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Author Andriuskevicius, A. url 
  Title Occurrance of Snow Leopards in the Soviet Union Type Journal Article
  Year 1980 Publication International Pedigree Book of Snow Leopards Abbreviated Journal  
  Volume 2 Issue Pages 59-69  
  Keywords 2290; area; areas; browse; distribution; park; parks; protected; protected-area; protected area; protected areas; refuge; reserve; reserves; Russia; snow-leopard; snow-leopards; snow leopard; snow leopards; soviet; Soviet-Union; soviet union; status; U.S.S.R.; union; Ussr  
  Abstract Outlines status and distribution of snow leopard in USSR, including comments on reserves created for the species.  
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  Notes Approved no  
  Call Number SLN @ rana @ 51 Serial 73  
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