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Author Farrington, J., Tsering, D. url 
  Title Human-snow leopard conflict in the Chang Tang region of Tibet, China Type Journal Article
  Year 2019 Publication Biological Conservation Abbreviated Journal  
  Volume 237 Issue Pages 504-513  
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  Abstract In April 2006, the authors conducted a preliminary human-wildlife conflict survey of 300 livestock herders in Shainza, Nyima, and Tsonyi Counties in northern Tibet's sparsely-populated Chang Tang region. This survey revealed a widespread but previously undocumented problem of snow leopard predation on livestock. In June and July 2007, an exploratory human-snow leopard conflict survey of 234 herders in the above counties found that 65.8% of respondents had experienced conflict with snow leopards in the form of livestock kills, with 77.3% of the most recent incidents occurring in the previous five years. These incidents were concentrated in winter and spring and a surprising 39.6% of incidents occurred during the day, often with herders present. Fifteen exploratory snow leopard sign transects totaling 14.85 km were conducted. Abundant snow leopard scrapes as well as pug marks were found, confirming the presence of these secretive cats. A total of 521 blue sheep were counted on and off sign transects indicating widespread availability of wild snow leopard prey. The recent surge in reported snow leopard conflict is likely due to increasing human and livestock populations, establishment of two multiple-use nature reserves accompanied by improved enforcement of wildlife protection laws, and a regional gun and trap ban launched in 2001. However, retaliatory killing of snow leopards in the survey area continues to be a potential threat. Therefore, measures are needed to reduce livestock kills by snow leopards, including corral improvements, improved guarding, establishment of livestock compensation schemes, and educating herders about snow leopard behavior.  
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  Call Number SLN @ rakhee @ Serial 1600  
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Author Farrington, J., Tsering, D. url 
  Title Snow leopard distribution in the Chang Tang region of Tibet, China Type Journal Article
  Year 2020 Publication Global Ecology and Conservation Abbreviated Journal  
  Volume 23 Issue Pages  
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  Abstract In 2006 and 2007, the authors conducted human-wildlife conflict surveys in the Tibet Autonomous Region’s (TAR) Shainza, Nyima, and Tsonyi Counties, located in the TAR’s remote Chang Tang region. At this time, prior knowledge of the snow leopard in this vast 700,000 km2 region was limited to just eight firsthand snow leopard sign and conflict location records and 15 secondhand records. These surveys revealed a previously undocumented and growing problem of human-snow leopard conflict. The 2007 survey also yielded 39 new snow leopard conflict incident locations and 24 new snow leopard sign locations. Next, snow leopard telephone interviews and mapping exercises were conducted with Tibet Forestry Bureau staff that yielded an additional 63 and 144 new snow leopard conflict and sighting location records, respectively. These 270 new snow leopard location records, together with 39 records collected by other observers from 1988 to 2009, were compiled into a snow leopard distribution map for the Chang Tang. This effort greatly expanded knowledge of the snow leopard’s distribution in this region which remains one of the least understood of the snow leopard’s key range areas. New knowledge gained on snow leopard distribution in the Chang Tang through this exercise will help identify human-snow leopard conflict hot spots and inform design of human-snow leopard conflict mitigation and conservation strategies for northwest Tibet. Nevertheless, extensive additional field verification work will be required to definitively delineate snow leopard distribution in the Chang Tang. Importantly, since 2006, a number of major transportation infrastructure projects have made the Chang Tang more accessible, including paving of highways, new railroads, and new airports. This has led to a greatly increased number of tourists visiting western Tibet, particularly Mt. Kailash and Lake Manasarovar. At the same time, large areas of the Chang Tang have been fenced for livestock pastures as part of government initiatives to allocate pasturelands to individual families. All three of these developments have a large potential to cause disturbance to snow leopards and their prey species, including by hindering their movements and degrading their habitat. Therefore, future conservation measures in the Chang Tang will need to insure that development activities and the growing number of visitors to the Chang Tang do not adversely affect the distribution of snow leopards and their prey species or directly degrade their habitat.  
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  Call Number SLN @ rakhee @ Serial 1601  
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Author Pal, R., Bhattacharya, T., Sathyakumar, S. url 
  Title Woolly flying squirrel Eupetaurus Cinereus: A new addition to the diet of snow leopard Panthera Uncia Type Short Note
  Year 2020 Publication Journal Bombay Natural History Society Abbreviated Journal  
  Volume 117 Issue Pages  
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  Call Number Serial 1606  
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Author Watts, S. W., McCarthy, T. M., Namgail, T. url 
  Title Modelling potential habitat for snow leopards (Panthera uncia) in Ladakh, India Type Research Article
  Year 2019 Publication Plos One Abbreviated Journal  
  Volume Issue Pages 1-14  
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  Abstract The snow leopard Panthera uncia is an elusive species

inhabiting some of the most remote and inaccessible tracts of Central

and South Asia. It is difficult to determine its distribution and

density pattern, which are crucial for developing conservation

strategies. Several techniques for species detection combining camera

traps with remote sensing and geographic information systems have been

developed to model the habitat of such cryptic and low-density species

in challenging terrains. Utilising presence-only data from camera traps

and direct observations, alongside six environmental variables

(elevation, aspect, ruggedness, distance to water, land cover, and prey

habitat suitability), we assessed snow leopard habitat suitability

across Ladakh in northern India. This is the first study to model snow

leopard distribution both in India and utilising direct observation

data. Results suggested that elevation and ruggedness are the two most

influential environmental variables for snow leopard habitat

suitability, with highly suitable habitat having an elevation range of

2,800 m to 4,600 m and ruggedness of 450 m to 1,800 m. Our habitat

suitability map estimated approximately 12% of Ladakh’s geographical

area (c. 90,000 km2) as highly suitable and 18% as medium suitability.

We found that 62.5% of recorded livestock depredation along with over

half of all livestock corrals (54%) and homestays (58%) occurred within

highly suitable snow leopard habitat. Our habitat suitability model can

be used to assist in allocation of conservation resources by targeting

construction of livestock corrals to areas of high habitat suitability

and promoting ecotourism programs in villages in highly suitable snow

leopard habitat.
 
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  Call Number Serial 1608  
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Author Krofel, M., Groff, C., Oberosler, V., Augugliaro, C., Rovero, F. url 
  Title Snow leopard (Panthera uncia) predation and consumption of an adult yak in the Mongolian Altai. Type Note
  Year 2021 Publication Ethology Ecology & Evolution Abbreviated Journal EEE  
  Volume Issue Pages 1-8  
  Keywords (up)  
  Abstract The snow leopard (Panthera uncia) is an apex predator of mountainous ecosystems in Central Asia, characterised by relatively long feeding times and low kill rates (Johansson et al. 2015; Mallon et al. 2016). Predation is mainly focused on wild ungulates and the vast majority of animals killed by snow leopards are smaller than 100 kg (Lovari et al. 2013). Throughout most of their range, Siberian ibex (Capra sibirica), blue sheep (Pseudois nayaur), and argali (Ovis ammon) represent the most important prey (Hunter 2015). These species weigh up to 180 kg, which was suggested to be near the maximum limit of the prey size that snow leopard can handle (i.e. about 3 times its size) (e.g. Schaller 1977; Hunter 2015). Accordingly, researchers generally assume that prey like adult yaks (Bos grunniens) with an average body weight of 250 kg (Bagchi & Mishra 2006), are too large to be killed by snow leopards (e.g. Devkota et al. 2013; Chetri et al. 2017). In contrast, local livestock herders report that snow leopard can also kill larger prey, including adult yaks (e.g. Li et al. 2013; Suryawanshi et al. 2013), but confirmed records of snow leopard killing prey of this size appear to be lacking in the literature. We also have very limited knowledge about the consumption of snow leopard kills, and the scavengers, including conspecifics, that are using them (Fox & Chundawat 2016; Schaller 2016). Here we report on a predation event and the following consumption process of a snow leopard kill, a free-roaming adult female yak, which we studied in 2019 using snow tracking, direct observation and camera trapping in the Mongolian Altai.  
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  Call Number Serial 1634  
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Author Sharma, R. K., Singh, R. url 
  Title Over 100 Years of Snow Leopard Research: A Spatially Explicit Review of the State of Knowledge in the Snow Leopard Range. Type Technical Report WWF
  Year 2021 Publication Research Gate Abbreviated Journal  
  Volume May 2021 Issue May 2021 Pages 1-43  
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  Abstract Executive Summary: Evolved to live in some of the world’s highest and harshest habitats, the elusive and rare snow leopards (Panthera uncia) are undisputed icons of High Asia. Across their distributional range in Central and South Asia, the snow leopard’s habitat spans diverse landscapes, with livestock herding being the most dominant form of land use. As a result, areas inhabited by snow leopards and people often overlap, creating challenges as well as opportunities for their conservation. Snow leopard conservation has received increasing attention in the past two decades and global interest in protecting this unique high-mountain cat continues to rise. However, effective and efficient snow leopard conservation initiatives require multi-dimensional research and collaboration among a diverse array of actors. National governments in snow leopard range, for instance, have repeatedly pledged their support for the conservation of the animal and the breathtaking landscapes they inhabit. These landscapes house an array of unique high-altitude wildlife and provide homes and life-sustaining natural resources to hundreds of millions of people. The mountains of High Asia also form the headwaters of 20 major river basins, an important water source for 22 countries (Sindorf et al., 2014). More than 2 billion people live in these basins which overlap the snow leopard range. Given the growing interest in and commitment towards conservation of snow leopards and their habitats, it is crucial to examine the depth and breadth of knowledge currently available to inform conservation efforts and identify gaps in that knowledge. We reviewed over 100 years of published research on snow leopards to examine its temporal and spatial trends across an array of thematic areas. Snow leopard research intensified in the 1970s and studies on snow leopards have continued to increase exponentially since then. However, just four hotspots of snow leopard research (sites with continued multi-year research) have emerged, with less than 23% of the snow leopard range being researched. Nepal, India and China have conducted the most snow leopard research, followed by Mongolia and Pakistan. Our analysis revealed that snow leopard research was highly focussed on ecological research followed by studies on human-wildlife conflict. Most ecological studies focused on estimating the number and distribution of snow leopards and prey species. However, conservationists have surveyed less than 3% of the snow leopard range using rigorous and scientifically acceptable abundance estimation approaches. The lack of attention to the human dimensions of conservation was particularly stark, especially given that the majority of the snow leopard range is inhabited by local communities dependent on livestock herding. More importantly, very few studies evaluated the effectiveness of conservation actions. A lack of evidence demonstrating and quantifying the impacts of conservation interventions is a significant knowledge gap in snow leopard research. In this review, we identify and suggest the high-priority research necessary for effective conservation planning for snow leopards and their multiple-use habitat in High Asia.  
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  Call Number Serial 1636  
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Author Shrestha, B., Kindlmann, P. url 
  Title Implications of landscape genetics and connectivity of snow leopard in the Nepalese Himalayas for its conservation. Type Scientific Report
  Year 2020 Publication Nature Research Abbreviated Journal  
  Volume 10 Issue 19853 Pages 1-11  
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  Abstract The snow leopard is one of the most endangered large mammals.

Its population, already low, is declining, most likely due to the

consequences of human activity, including a reduction in the size and

number of suitable habitats. With climate change, habitat loss may

escalate, because of an upward shift in the tree line and concomitant

loss of the alpine zone, where the snow leopard lives. Migration between

suitable areas, therefore, is important because a decline in abundance

in these areas may result in inbreeding, fragmentation of populations,

reduction in genetic variation due to habitat fragmentation, loss of

connectivity, bottlenecks or genetic drift. Here we use our data

collected in Nepal to determine the areas suitable for snow leopards, by

using habitat suitability maps, and describe the genetic structure of

the snow leopard within and between these areas. We also determine the

influence of landscape features on the genetic structure of its

populations and reveal corridors connecting suitable areas. We conclude

that it is necessary to protect these natural corridors to maintain the

possibility of snow leopards' migration between suitable areas, which

will enable gene flow between the diminishing populations and thus

maintain a viable metapopulation of snow leopards.
 
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  Call Number Serial 1628  
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Author Hameed, S., Din, J. U., Ali, H., Kabir, M., Younas, M., Rehman, E. U., Bari, F., Hao, W., Bischof, R., Nawaz, M. A. url 
  Title Identifying priority landscapes for conservation of snow leopards in Pakistan Type Journal Article
  Year 2020 Publication Plos One Abbreviated Journal  
  Volume Issue Pages 1-20  
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  Abstract Pakistan’s total estimated snow leopard habitat is about

80,000 km2 of which about half is considered prime habitat. However,

this preliminary demarcation was not always in close agreement with the

actual distribution the discrepancy may be huge at the local and

regional level. Recent technological developments like camera trapping

and molecular genetics allow for collecting reliable presence records

that could be used to construct realistic species distribution based on

empirical data and advanced mathematical approaches like MaxEnt. The

current study followed this approach to construct an accurate

distribution of the species in Pakistan. Moreover, movement corridors,

among different landscapes, were also identified through circuit theory.

The probability of habitat suitability, generated from 98 presence

points and 11 environmental variables, scored the snow leopard’s assumed

range in Pakistan, from 0 to 0.97. A large portion of the known range

represented low-quality habitat, including areas in lower Chitral, Swat,

Astore, and Kashmir. Conversely, Khunjerab, Misgar, Chapursan, Qurumber,

Broghil, and Central Karakoram represented high-quality habitats.

Variables with higher contributions in the MaxEnt model were

precipitation during the driest month (34%), annual mean temperature

(19.5%), mean diurnal range of temperature (9.8%), annual precipitation

(9.4%), and river density (9.2). The model was validated through

receiver operating characteristic (ROC) plots and defined thresholds.

The average test AUC in Maxent for the replicate runs was 0.933 while

the value of AUC by ROC curve calculated at 0.15 threshold was 1.00.

These validation tests suggested a good model fit and strong predictive

power. The connectivity analysis revealed that the population in the

Hindukush landscape appears to be more connected with the population in

Afghani- stan as compared to other populations in Pakistan. Similarly,

the Pamir-Karakoram population is better connected with China and

Tajikistan, while the Himalayan population was connected with the

population in India. Based on our findings we propose three model

landscapes to be considered under the Global Snow Leopard Ecosystem

Protection Program (GSLEP) agenda as regional priority areas, to

safeguard the future of the snow leopard in Pakistan and the region.

These landscapes fall within mountain ranges of the Himalaya, Hindu Kush

and Karakoram-Pamir, respectively. We also identified gaps in the

existing protected areas network and suggest new protected areas in

Chitral and Gilgit-Baltistan to protect critical habitats of snow

leopard in Pakistan.
 
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  Call Number Serial 1617  
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Author Sharma, R. K., Sharma, K., Borchers, D., Bhatnagar, Y V., Suryawanshi, K. R., Mishra, C. url 
  Title Spatial variation in population-density of snow leopards in a multiple use landscape in Spiti Valley, Trans-Himalaya Type Research Article
  Year 2021 Publication PloS One Abbreviated Journal  
  Volume Issue Pages 1-14  
  Keywords (up)  
  Abstract The endangered snow leopard Panthera uncia occurs in human use landscapes in the mountains of South and Central Asia. Conservationists generally agree that snow leopards must be conserved through a land-sharing approach, rather than land-sparing in the form of strictly protected areas. Effective conservation through land-sharing requires a good understanding of how snow leopards respond to human use of the landscape. Snow leopard density is expected to show spatial variation within a landscape because of variation in the intensity of human use and the quality of habitat. However, snow leopards have been difficult to enumerate and monitor. Variation in the density of snow leopards remains undocumented, and the impact of human use on their populations is poorly understood. We examined spatial variation in snow leopard density in Spiti Valley, an important snow leopard landscape in India, via spatially explicit capture-recapture analysis of camera trap data. We camera trapped an area encompassing a minimum convex polygon of 953 km2. Our best model estimated an overall density of 0.5 (95% CI: 0.31–0.82) mature snow leopards per 100 km2. Using AIC, our best model showed the density of snow leopards to depend on estimated wild prey density, movement about activity centres to depend on altitude, and the expected number of encounters at the activity centre to depend on topography. Models that also used livestock biomass as a density covariate ranked second, but the effect of livestock was weak. Our results highlight the importance of maintaining high density pockets of wild prey populations in multiple-use landscapes to enhance snow leopard conservation.  
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  Call Number Serial 1637  
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Author Lewis, M., Songster, E.E. url 
  Title Studying the snow leopard: reconceptualizing conservation across the China–India border Type Journal Article
  Year 2016 Publication British Journal for the History of Science Abbreviated Journal BJHS  
  Volume Themes 1 Issue 1 Pages 169-198  
  Keywords (up)  
  Abstract The snow leopard is a highly charismatic megafauna that elicits admiration, concern and donations from individuals and NGOs in the West. In its home territories, however, it is a threat to local communities’ livestock and a potential source of income for its pelt and parts. Conservation and study are further challenged by its range; snow leopards traverse the borders separating China, India and ten other countries with long histories of tension with each other as well as internal political and economic struggles. This transnational animal provides an ideal case study for the consideration of transnational conservation science in the recent past.  
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  Notes Approved no  
  Call Number Serial 1638  
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