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Author Changxi, X., Bai, D., Lambert, J. P., Li, Y., Cering, L., Gong, Z., Riordan, P., Shi, K. pdf 
  Title How Snow Leopards Share the Same Landscape with Tibetan Agro-pastoral Communities in the Chinese Himalayas Type Journal Article
  Year 2022 Publication Journal of Resources and Ecology Abbreviated Journal  
  Volume 13 Issue (down) 3 Pages 483-500  
  Keywords habitat use; landscape ecology; occupancy model; Qomolangma; Panthera uncia  
  Abstract The snow leopard (Panthera uncia) inhabits a human-altered alpine landscape and is often tolerated by residents in regions where the dominant religion is Tibetan Buddhism, including in Qomolangma NNR on the northern side of the Chinese Himalayas. Despite these positive attitudes, many decades of rapid economic development and population growth can cause increasing disturbance to the snow leopards, altering their habitat use patterns and ultimately impacting their conservation. We adopted a dynamic landscape ecology perspective and used multi-scale technique and occupancy model to better understand snow leopard habitat use and coexistence with humans in an 825 km2 communal landscape. We ranked eight hypothetical models containing potential natural and anthropogenic drivers of habitat use and compared them between summer and winter seasons within a year. HABITAT was the optimal model in winter, whereas ANTHROPOGENIC INFLUENCE was the top ranking in summer (AICcw≤2). Overall, model performance was better in the winter than in the summer, suggesting that perhaps some latent summer covariates were not measured. Among the individual variables, terrain ruggedness strongly affected snow leopard habitat use in the winter, but not in the summer. Univariate modeling suggested snow leopards prefer to use rugged land in winter with a broad scale (4000 m focal radius) but with a lesser scale in summer (30 m); Snow leopards preferred habitat with a slope of 22° at a scale of 1000 m throughout both seasons, which is possibly correlated with prey occurrence. Furthermore, all covariates mentioned above showed inextricable ties with human activities (presence of settlements and grazing intensity). Our findings show that multiple sources of anthropogenic activity have complex connections with snow leopard habitat use, even under low human density when anthropogenic activities are sparsely distributed across a vast landscape. This study is also valuable for habitat use research in the future, especially regarding covariate selection for finite sample sizes in inaccessible terrain.  
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  Call Number SLN @ rakhee @ Serial 1698  
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Author Murali, R., Redpath, S., Mishra, C. url 
  Title The value of ecosystem services in the high altitude Spiti Valley, Indian Trans-Himalaya Type Journal Article
  Year 2017 Publication Elsevier Abbreviated Journal  
  Volume Issue (down) 28 Pages 115-123  
  Keywords Ecosystem services, Pastoralists, Local communities, Provisioning services Economic valuation, Panthera uncia  
  Abstract The high mountain ranges of South and Central Asia are increasingly being exposed to large-scale development

projects. These areas are home to traditional pastoralist communities and internationally important

biodiversity including the endangered snow leopard Panthera uncia. Development projects rely on

economic cost-benefit analysis, but the ecosystem services in the high Himalayas are poorly understood

and are rarely accounted for. As a first step to fill this gap, we identified the main ecosystem services used

by local people in the Trans-Himalayan Spiti Valley (7591 km2), a region important for conservation of

snow leopards and high mountain biodiversity, and undertook an economic valuation. Stakeholders identified

a range of services, though these were dominated by provisioning services identified by 90% of

respondents. Only 5.4% of the respondents recognised regulatory services and 4.8% recognised cultural

services. The mean economic value of provisioning services was estimated at US$ 3622 ± 149 HH1

yr1, which was 3.8 times higher than the average annual household income. Our results underscore

the need to account for ecosystem services in the cost-benefit analyses of large-scale development projects

in addition to assessments of their environmental and social impact.


 
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  Call Number SLN @ rakhee @ Serial 1462  
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Author Johansson, O., Rauset, G. R., Samelius, G., McCarthy, T., Andren, H., Tumursukh, L., Mishra, C. url 
  Title Land sharing is essential for snow leopard conservation Type Journal Article
  Year 2016 Publication Biological Conservation Abbreviated Journal  
  Volume Issue (down) 203 Pages 1-7  
  Keywords Home range, LoCoH, Mongolia, Panthera uncial, Protected areas, Land sparing  
  Abstract Conserving large carnivores in an increasingly crowded planet raises difficult challenges. A recurring debate is whether large carnivores can be conserved in human used landscapes (land sharing) or whether they require specially designated areas (land sparing). Here we show that 40% of the 170 protected areas in the global range of the snow leopard (Panthera uncia) are smaller than the home range of a single adult male and only 4– 13% are large enough for a 90% probability of containing 15 or more adult females. We used data from 16 snow leopards equipped with GPS collars in the Tost Mountains of South Gobi, Mongolia, to calculate home range size and overlap using three different estimators: minimum convex polygons (MCP), kernel utility distributions (Kernel), and local convex hulls (LoCoH). Local convex hull home ranges were smaller and included lower proportions of unused habitats compared to home ranges based on minimum convex polygons and Kernels. Intra-sexual home range overlapwas low, especially for adult males, suggesting that snowleopards are territorial. Mean home range size based on the LoCoH estimates was 207 km2 ± 63 SD for adult males and 124 km2 ± 41 SD for adult females. Our estimates were 6–44 times larger than earlier estimates based on VHF technology when comparing similar estimators, i.e. MCP. Our study illustrates that protected areas alone will not be able to conserve predatorswith large home ranges and conservationists and managers should not restrict their efforts to land sparing.  
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  Call Number SLN @ rakhee @ Serial 1446  
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Author Jackson, R.; Ahlborn, G.   
  Title Snow leopards (Panthera- uncia) in Nepal – home range and movements Type Journal Article
  Year 1989 Publication National Geographic Research Abbreviated Journal  
  Volume 5 Issue (down) 2 Pages 161-175  
  Keywords Nepal; asia; home-range; movements; Panthera-uncia; snow-leopard; snow leopard; browse; home; range; home range; panthera; panthera uncia; uncia; 840  
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  Notes Addresses:JACKSON R, CALIF INST ENVIRONM STUDIES,SNOW LEOPARD PROJECT,910 K ST,DAVIS,CA 95616 Publisher:NATL GEOGRAPHIC SOC, WASHINGTON Document Type: English Approved no  
  Call Number SLN @ rana @ 128 Serial 441  
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Author Sharma, R. K., Bhatnagar, Y. V., Mishra, C. url 
  Title Does livestock benefit or harm snow leopards? Type Journal Article
  Year 201 Publication Biological Conservatio Abbreviated Journal  
  Volume Issue (down) 190 Pages 8-13  
  Keywords Panthera uncia, Trans-Himalaya, Pastoralism, Large carnivores, Livestock grazing, Co-existence  
  Abstract Large carnivores commonly prey on livestock when their ranges overlap. Pastoralism is the dominant land use type across the distributional range of the endangered snow leopard Panthera uncia. Snow leop- ards are often killed in retaliation against livestock depredation. Whether livestock, by forming an alter- native prey, could potentially benefit snow leopards, or, whether livestock use of an area is detrimental to snow leopards is poorly understood. We examined snow leopard habitat use in a multiple use landscape that was comprised of sites varying in livestock abundance, wild prey abundance and human population size. We photographically sampled ten sites (average size 70 sq. km) using ten camera traps in each site, deployed for a period of 60 days. Snow leopard habitat use was computed as a Relative Use Index based on the total independent photographic captures and the number of snow leopard individuals captured at each site. We quantified livestock abundance, wild prey abundance, human population size and terrain ruggedness in each of the sites. Key variables influencing snow leopard habitat use were identified using Information Theory based model selection approach. Snow leopard habitat use was best explained by wild prey density, and showed a positive linear relationship with the abundance of wild ungulates. We found a hump-shaped relationship between snow leopard habitat use and livestock stocking density, with an initial increase in habitat use followed by a decline beyond a threshold of livestock density. Our results suggest that in the absence of direct persecution of snow leopards, livestock grazing and snow leopard habitat use are potentially compatible up to a certain threshold of livestock density, beyond which habitat use declines, presumably due to depressed wild ungulate abundance and associated anthropogenic disturbance.  
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  Notes Approved no  
  Call Number SLN @ rakhee @ Serial 1426  
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Author Li, J., Lu, Z. url 
  Title Snow Leopard poaching and trade in China 2000-2013 Type Journal Article
  Year 2014 Publication Biological Conservation Abbreviated Journal  
  Volume Issue (down) 176 Pages 207-211  
  Keywords Bone, Pelt, Panthera uncial, Retaliatory killing, Sanjiangyuan  
  Abstract The snow leopard is a flagship species of the alpine ecosystem in the Central Asia, with China comprising

nearly 60% of the habitat and population. It was listed as endangered by IUCN and included in Appendix I

of CITES in the 1970s. Poaching for its fur and bones is a significant and increasing threat to snow leopards

globally. However, little detailed information is available on snow leopard poaching in China. Here,

we collected all reported cases of snow leopard poaching and trade in China 2000–2013. We found that

snow leopard parts were mainly traded in the major cities within their range provinces, but also began to

emerge in a few coastal cities after 2010. Household interviews in the Sanjiangyuan Region in Qinghai

Province showed that in this sub region alone, 11 snow leopards were killed annually, accounting for

about 1.2% of the estimated snow leopard population there.
 
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  Notes Approved no  
  Call Number SLN @ rakhee @ Serial 1410  
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Author Li, J., Lu, Z. url 
  Title Snow Leopard poaching and trade in China 2000-2013 Type Journal Article
  Year 2014 Publication Biological Conservation Abbreviated Journal  
  Volume Issue (down) 176 Pages 207-211  
  Keywords Bone, Pelt,Panthera uncial, Retaliatory killing, Sanjiangyuan  
  Abstract The snow leopard is a flagship species of the alpine ecosystem in the Central Asia, with China comprising

nearly 60% of the habitat and population. It was listed as endangered by IUCN and included in Appendix I

of CITES in the 1970s. Poaching for its fur and bones is a significant and increasing threat to snow leopards

globally. However, little detailed information is available on snow leopard poaching in China. Here,

we collected all reported cases of snow leopard poaching and trade in China 2000–2013. We found that

snow leopard parts were mainly traded in the major cities within their range provinces, but also began to

emerge in a few coastal cities after 2010. Household interviews in the Sanjiangyuan Region in Qinghai

Province showed that in this sub region alone, 11 snow leopards were killed annually, accounting for

about 1.2% of the estimated snow leopard population there.
 
  Address  
  Corporate Author Thesis  
  Publisher Place of Publication Editor  
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  Series Editor Series Title Abbreviated Series Title  
  Series Volume Series Issue Edition  
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  Area Expedition Conference  
  Notes Approved no  
  Call Number SLN @ rakhee @ Serial 1411  
Permanent link to this record
 

 
Author Li, J., Lu, Z. url 
  Title Snow Leopard poaching and trade in China 2000- 2013 Type Journal Article
  Year 2014 Publication Biological Conservation Abbreviated Journal  
  Volume Issue (down) 176 Pages 207-211  
  Keywords Bone Pelt, Panthera uncial, Retaliatory killing, Sanjiangyuan  
  Abstract The snow leopard is a flagship species of the alpine ecosystem in the Central Asia, with China comprising

nearly 60% of the habitat and population. It was listed as endangered by IUCN and included in Appendix I

of CITES in the 1970s. Poaching for its fur and bones is a significant and increasing threat to snow leopards

globally. However, little detailed information is available on snow leopard poaching in China. Here,

we collected all reported cases of snow leopard poaching and trade in China 2000–2013. We found that

snow leopard parts were mainly traded in the major cities within their range provinces, but also began to

emerge in a few coastal cities after 2010. Household interviews in the Sanjiangyuan Region in Qinghai

Province showed that in this sub region alone, 11 snow leopards were killed annually, accounting for

about 1.2% of the estimated snow leopard population there.


 
  Address  
  Corporate Author Thesis  
  Publisher Place of Publication Editor  
  Language Summary Language Original Title  
  Series Editor Series Title Abbreviated Series Title  
  Series Volume Series Issue Edition  
  ISSN ISBN Medium  
  Area Expedition Conference  
  Notes Approved no  
  Call Number SLN @ rakhee @ Serial 1412  
Permanent link to this record
 

 
Author Li, J., Lu, Z. url 
  Title Snow Leopard Poaching and Trade in China 2000-2013 Type Journal Article
  Year 2014 Publication Biological Conservation Abbreviated Journal  
  Volume Issue (down) 176 Pages 207-211  
  Keywords Bone, Pelt, Panthera uncial, Retaliatory killing, Sanjiangyuan  
  Abstract The snow leopard is a flagship species of the alpine ecosystem in the Central Asia, with China comprising

nearly 60% of the habitat and population. It was listed as endangered by IUCN and included in Appendix I

of CITES in the 1970s. Poaching for its fur and bones is a significant and increasing threat to snow leopards

globally. However, little detailed information is available on snow leopard poaching in China. Here,

we collected all reported cases of snow leopard poaching and trade in China 2000–2013. We found that

snow leopard parts were mainly traded in the major cities within their range provinces, but also began to

emerge in a few coastal cities after 2010. Household interviews in the Sanjiangyuan Region in Qinghai

Province showed that in this sub region alone, 11 snow leopards were killed annually, accounting for

about 1.2% of the estimated snow leopard population there.


 
  Address  
  Corporate Author Thesis  
  Publisher Place of Publication Editor  
  Language Summary Language Original Title  
  Series Editor Series Title Abbreviated Series Title  
  Series Volume Series Issue Edition  
  ISSN ISBN Medium  
  Area Expedition Conference  
  Notes Approved no  
  Call Number SLN @ rakhee @ Serial 1414  
Permanent link to this record
 

 
Author Chetri, M, Odden, M., Sharma, K., Flagstad, O., Wegge, P url 
  Title Estimating snow leopard density using fecal DNA in a large landscape in north-central Nepal Type Journal Article
  Year 2019 Publication Global Ecology and Conservation Abbreviated Journal  
  Volume Issue (down) 17 Pages 1-8  
  Keywords Panthera uncia, Density, Annapurna-Manaslu landscape, Noninvasive, Spatial scale  
  Abstract Although abundance estimates have a strong bearing on the conservation status of a

species, less than 2% of the global snow leopard distribution range has been sampled

systematically, mostly in small survey areas. In order to estimate snow leopard density

across a large landscape, we collected 347 putative snow leopard scats from 246 transects

(490 km) in twenty-six 5  5km sized sampling grid cells within 4393 km2 in Annapurna-

Manaslu, Nepal. From 182 confirmed snow leopard scats, 81 were identified as belonging

to 34 individuals; the remaining were discarded for their low (<0.625) quality index. Using

maximum likelihood based spatial capture recapture analysis, we developed candidate

model sets to test effects of various covariates on density and detection of scats on transects.

The best models described the variation in density as a quadratic function of

elevation and detection as a linear function of topography. The average density estimate of

snow leopards for the area of interest within Nepal was 0.95 (SE 0.19) animals per 100 km2

(0.66e1.41 95% CL) with predicted densities varying between 0.1 and 1.9 in different parts,

thus highlighting the heterogeneity in densities as a function of habitat types. Our density

estimate was low compared to previous estimates from smaller study areas. Probably,

estimates from some of these areas were inflated due to locally high abundances in overlap

zones (hotspots) of neighboring individuals, whose territories probably range far beyond

study area borders. Our results highlight the need for a large-scale approach in snow

leopard monitoring, and we recommend that methodological problems related to spatial

scale are taken into account in future snow leopard research.
 
  Address  
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  Series Editor Series Title Abbreviated Series Title  
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  Area Expedition Conference  
  Notes Approved no  
  Call Number SLN @ rakhee @ Serial 1478  
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