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Author International Snow Leopard Trust url 
  Title International Snow Leopard Trust, Conservation and Education Program for 1999 Type Miscellaneous
  Year 1999 Publication Abbreviated Journal  
  Volume (down) Issue Pages  
  Keywords education; conservation; livestock; corrals; pens; predator; prey; poaching; hunting; depredation; Dna; Mongolia; Macne; Slims; gobi; Tibet; Qomolangma; Nepal; Bhutan; China; Afghanistan; India; Pakistan; Wwf; browse; 4030  
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  Area Expedition Conference  
  Notes Full Text at URL Approved no  
  Call Number SLN @ rana @ 365 Serial 406  
Permanent link to this record
 

 
Author Jackson, R. url 
  Title Managing people-wildlife conflict in Tibet's Qomolangma National Nature Preserve Type Miscellaneous
  Year 1999 Publication Abbreviated Journal  
  Volume (down) Issue Pages  
  Keywords Qomolangma; livestock; Tibet; predator; predation; prey; protected-areas; parks; reserves; conflict; corrals; pens; depredation; livestock-depredation; browse; livestock depredation; protected; area; areas; protected area; protected areas; 4020  
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  Notes Full Text at URLMay 6, 1999Rodney M. Jackson (Author)Contact and Mailing Address: 18030 Comstock Ave,Sonoma, CA 95476Phone (707) 935-3851; Fax 933-9618; E-mail: rodjackson@mountain.org Author's Title: Senior Program Associate for Ecology and Biodiversity Conservation, The Mountain Institute, Dogwood and Main Streets, Franklin, WV 26807; and Conservation Director, International Snow Leopard Trust, Suite 325, 4649 Sunnyside Ave., North, Seattle, WA 98103 Title: Managing people-wildlife conflict in Tibet's Qomolangma National Nature Preserve Key Words: crop damage, wildlife depredation, conflict resolution, Tibet Subject: Managing conflict in protected areasPresentation Type: Oral paper Approved no  
  Call Number SLN @ rana @ 364 Serial 462  
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Author Jackson, R. url 
  Title The Snow Leopard Conservancy, Dedicated to demonstrating innovative, grassroots measures that lead local shepherds to become better stewards of the endangered snow leopard, its prey and habitat Type Miscellaneous
  Year 2000 Publication Abbreviated Journal  
  Volume (down) Issue Pages  
  Keywords livestock-depredation; livestock; herders; conflict; Iucn; enclosures; pens; corrals; trap; poison; hunting; behavior; Ladakh; guard-dogs; Dogs; economics; incentives; compensation; depredation; guard; browse; 4060  
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  Notes Full Text at URL Approved no  
  Call Number SLN @ rana @ 377 Serial 465  
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Author Miller, D.J.; Jackson, R. url 
  Title Livestock and Snow Leopards:making room for competing users on the Tibetian Plateau Type Conference Article
  Year 1994 Publication Abbreviated Journal  
  Volume (down) Issue Pages 315-328  
  Keywords livestock; Tibet; herder; herders; predator; prey; protected-areas; parks; reserves; refuge; Tibetian-Plateau; ungulates; wild-yak; blue-sheep; pika; marmots; gazelle; antelope; Qomolangma; Namcha-Barwa; Chang-Tang; habitat; grazing; wolves; pens; enclosures; bounties; bounty; pelts; skins; coats; furs; poisoning; medicine; bones; land-use; conservation; ecology; blue; sheep; browse; tibetian; plateau; wild; yak; namcha; barwa; change; tang; land use; land; 2800  
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  Publisher Islt Place of Publication Usa Editor J.L.Fox; D.Jizeng  
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  Notes Full Text at URLTitle, Monographic: Seventh International Snow Leopard SymposiumPlace of Meeting: ChinaDate of Copyright: 1994 Approved no  
  Call Number SLN @ rana @ 244 Serial 676  
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Author Shrestha, B. url 
  Title Prey Abundance and Prey Selection by Snow Leopard (uncia uncia) in the Sagarmatha (Mt. Everest) National Park, Nepal Type Report
  Year 2008 Publication Abbreviated Journal  
  Volume (down) Issue Pages 1-35  
  Keywords project; snow; snow leopard; snow-leopard; leopard; network; conservation; program; prey; abundance; selection; uncia; Uncia uncia; Uncia-uncia; Sagarmatha; national; national park; National-park; park; Nepal; resource; predators; predator; ecological; impact; region; community; structure; number; research; population; status; density; densities; wild; prey species; prey-species; species; Himalayan; tahr; musk; musk-deer; deer; game; birds; diet; livestock; livestock depredation; livestock-depredation; depredation; awareness; co-existence; ungulates; ungulate; Human; using; areas; area; monitoring; transect; Hair; identification; scat; attack; patterns; sighting; 1760; populations; birth; Male; Female; young; domestic; domestic livestock; 120; scats; yak; Dog; pika; wildlife; Seasons; winter; horse; study; cover; land; predation; Pressure; development; strategy; threatened; threatened species; threatened-species; conflicts; conflict; people; control; husbandry; compensation; reintroduction; blue; blue sheep; blue-sheep; sheep; free ranging  
  Abstract Predators have significant ecological impacts on the region's prey-predator dynamic and community structure through their numbers and prey selection. During April-December 2007, I conducted a research in Sagarmatha (Mt. Everest) National Park (SNP) to: i) explore population status and density of wild prey species; Himalayan tahr, musk deer and game birds, ii) investigate diet of the snow leopard and to estimate prey selection by snow leopard, iii) identify the pattern of livestock depredation by snow leopard, its mitigation, and raise awareness through outreach program, and identify the challenge and opportunities on conservation snow leopard and its co-existence with wild ungulates and the human using the areas of the SNP. Methodology of my research included vantage points and regular monitoring from trails for Himalayan tahr, fixed line transect with belt drive method for musk deer and game birds, and microscopic hair identification in snow leopard's scat to investigate diet of snow leopard and to estimate prey selection. Based on available evidence and witness accounts of snow leopard attack on livestock, the patterns of livestock depredation were assessed. I obtained 201 sighting of Himalayan tahr (1760 individuals) and estimated 293 populations in post-parturient period (April-June), 394 in birth period (July -October) and 195 November- December) in rutting period. In average, ratio of male to females was ranged from 0.34 to 0.79 and ratio of kid to female was 0.21-0.35, and yearling to kid was 0.21- 0.47. The encounter rate for musk deer was 1.06 and density was 17.28/km2. For Himalayan monal, the encounter rate was 2.14 and density was 35.66/km2. I obtained 12 sighting of snow cock comprising 69 individual in Gokyo. The ratio of male to female was 1.18 and young to female was 2.18. Twelve species (8 species of wild and 4 species of domestic livestock) were identified in the 120 snow leopard scats examined. In average, snow leopard predated most frequently on Himalayan tahr and it was detected in 26.5% relative frequency of occurrence while occurred in 36.66% of all scats, then it was followed by musk deer (19.87%), yak (12.65%), cow (12.04%), dog (10.24%), unidentified mammal (3.61%), woolly hare (3.01%), rat sp. (2.4%), unidentified bird sp. (1.8%), pika (1.2%), and shrew (0.6%) (Table 5.8 ). Wild species were present in 58.99% of scats whereas domestic livestock with dog were present in 40.95% of scats. Snow leopard predated most frequently on wildlife species in three seasons; spring (61.62%), autumn (61.11%) and winter (65.51%), and most frequently on domestic species including dog in summer season (54.54%). In term of relative biomass consumed, in average, Himalayan tahr was the most important prey species contributed 26.27% of the biomass consumed. This was followed by yak (22.13%), cow (21.06%), musk deer (11.32%), horse (10.53%), wooly hare (1.09%), rat (0.29%), pika (0.14%) and shrew (0.07%). In average, domestic livestock including dog were contributed more biomass in the diet of snow leopard comprising 60.8% of the biomass consumed whilst the wild life species comprising 39.19%. The annual prey consumption by a snow leopard (based on 2 kg/day) was estimated to be three Himalayan tahr, seven musk deer, five wooly hare, four rat sp., two pika, one shrew and four livestock. In the present study, the highest frequency of attack was found during April to June and lowest to July to November. The day of rainy and cloudy was the more vulnerable to livestock depredation. Snow leopard attacks occurred were the highest at near escape cover such as shrub land and cliff. Both predation pressure on tahr and that on livestock suggest that the development of effective conservation strategies for two threatened species (predator and prey) depends on resolving conflicts between people and predators. Recently, direct control of free – ranging livestock, good husbandry and compensation to shepherds may reduce snow leopard – human conflict. In long term solution, the reintroduction of blue sheep at the higher altitudes could also “buffer” predation on livestock.  
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  Notes Project funded by Snow Leopard Network's Snow Leopard Conservation Grant Program. Forum of Natural Resource Managers, Nepal. Approved no  
  Call Number SLN @ rana @ 1076 Serial 887  
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Author Chen, P., Gao, Y., Lee, A. T. L., Cering, L., Shi, K., Clark, S. G. url 
  Title Human–carnivore coexistence in Qomolangma (Mt. Everest) Nature Reserve, China: Patterns and compensation Type Journal Article
  Year 2016 Publication Biological Conservation Abbreviated Journal  
  Volume (down) Issue 197 Pages 18-26  
  Keywords Conflict Compensation Human–carnivore coexistence Management Predation patterns Qomolangma Nature Reserve  
  Abstract Livestock depredation by large carnivores is frequently reported in Qomolangma (Mt. Everest) National Nature Reserve, Tibet Autonomous Region of China. Seeking to minimize conflicts, we assessed depredation patterns and ways to upgrade the compensation program. We gathered 9193 conflict records over 2011–2013 to determine the extent and tempo-spatial patterns of the depredation.Weinterviewed 22 local officials and 94 residents to learn their views on depredations and to assess the adequacy of compensation. Data showed that wolves (Canis lupus), lynx (Lynx lynx), and snowleopards (Panthera uncia)were themajor livestock predators. Total livestock

loss accounted for 1.2% of the entire stockholding (n=846,707) in the region. Wolves and lynx tended to take sheep and goats,whereas snowleopards favored yaks and cattle in relation to their proportional abundance. Predation mostly occurred in March through July. Livestock depredation by all predators when combined was best explained by terrain ruggedness and density of small- and large-bodied livestock. Temporal and spatial predation patterns variedamong carnivores.Most respondents (74%) attributed depredation causes to an increase in carnivore abundance. Only 7% blamed lax livestock herding practice for predation losses. Five percent said that

predation was the result of livestock population increases, while 11% had no idea. The compensation scheme was found to be flawed in all aspects—predation verification, application procedure, compensation standard, operational resource allocation, making payment, and other problems. To enhance management for human–carnivore coexistence, we recommend a problem-oriented, integrated, adaptive approach that targets the complex social context of the conflict and addresses the interconnected functions of decision-making process.
 
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  Notes Approved no  
  Call Number SLN @ rakhee @ Serial 1435  
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