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Author Anonymous
Title Livestock Predation Control Workshop Type Miscellaneous
Year 1999 Publication Abbreviated Journal
Volume Issue Pages
Keywords (down) Lahul-Spiti; Ladakh; Hemis; parks; reserves; refuge; protected-area; argali; abix; blue-sheep; wolves; distribution; status; population; poaching; hunting; trade; skins; livestock; pelts; coat; fur; bones; medicine; prey-depletion; herders; habitat; habitat-degradation; tourism; Tmi; Islt; predator; prey; conflict; compensation; trekking; blue; sheep; browse; protected; area; depletion; degradation; international snow leopard trust; 3940
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Area Expedition Conference
Notes Full Text at URLDate of Meeting: Ladakh (1999 Oct 6- Oct 10 ) Approved no
Call Number SLN @ rana @ 359 Serial 86
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Author Fox, J.L.
Title Snow Leopard Conservation and Related Developements in Ladakh Type Miscellaneous
Year 1995 Publication Abbreviated Journal
Volume xiii Issue Pages
Keywords (down) Ladakh; India; Transhimilaya; Hemis; Islt; tourism; treking; Chundawat; management; compensation; livestock; browse; 4580
Abstract
Address
Corporate Author Thesis
Publisher Islt Place of Publication Seattle Editor
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Notes Full text at URLJournal Title: Snowline Approved no
Call Number SLN @ rana @ 446 Serial 307
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Author Hussain, I.
Title Conserving Biodiversity through Institutional Diversity: Concept Paper Type Miscellaneous
Year 1999 Publication Abbreviated Journal
Volume Issue Pages
Keywords (down) Iunc; status; distribution; Baltistan; Pakistan; herders; farmers; conservation; killing; poaching; conflict; livestock; predator; prey; retaliatory-killing; economy; corral; capture; trapping; Project-snow-leopard; ecotourism; tourism; compensation; markhor; trekking; browse; retaliatory; 3910
Abstract
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Notes Full Text at URL Approved no
Call Number SLN @ rana @ 362 Serial 397
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Author International Snow Leopard Trust
Title International Snow Leopard Trust, Conservation and Education Program for 1999 Type Miscellaneous
Year 1999 Publication Abbreviated Journal
Volume Issue Pages
Keywords (down) 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
Abstract
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Language Summary Language Original Title
Series Editor Series Title Abbreviated Series Title
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Area Expedition Conference
Notes Full Text at URL Approved no
Call Number SLN @ rana @ 365 Serial 406
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Author Chen, P., Gao, Y., Lee, A. T. L., Cering, L., Shi, K., Clark, S. G.
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 Issue 197 Pages 18-26
Keywords (down) 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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Author Sangay, T.; Vernes, K.
Title Human-wildlife conflict in the Kingdom of Bhutan: Patterns of livestock predation by large mammalian carnivores Type Miscellaneous
Year 2008 Publication Biological Conservation Abbreviated Journal
Volume 141 Issue Pages 1272-1282
Keywords (down) bear; Bhutan; compensation; conflict; Himalayas; leopard; livestock; predation; snow leopard; tiger
Abstract We examined predation activity throughout Bhutan by tiger (Panthera tigris), common leopard (Panthera pardus), snow leopard (Uncia uncia) and Himalayan black bear (Ursus thibetanus) on a variety of livestock types using data gathered over the first two years (2003-2005) of a compensation scheme for livestock losses. One thousand three hundred and seventy five kills were documented, with leopards killing significantly more livestock (70% of all kills),

than tigers (19%), bears (8%) and snow leopards (2%). About 50% of livestock killing were of cattle, and about 33% were of horses, with tigers, leopards and snow leopards killing a significantly greater proportion of horses than predicted from availability. Examination of cattle kills showed that leopards killed a significantly greater proportion of smaller prey (e.g., calves), whereas tigers killed a significantly greater proportion of larger prey (e.g., bulls). Overall, livestock predation was greatest in summer and autumn which corresponded with a peak in cropping agriculture; livestock are turned out to pasture and forest during the cropping season, and subsequently, are less well guarded than at other times. Across Bhutan, high horse density and low cattle and yak density were associated with high rates of livestock attack, but no relationship was found with forest cover or human population density. Several northern districts were identified as 'predation hotspots', where proportions of livestock lost to predation were considerable, and the ratio of reported kills to relative abundance of livestock was high. Implications of our findings for mitigating livestock losses and for conserving large carnivores in Bhutan are discussed.
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Notes Approved no
Call Number SLN @ rana @ 903 Serial 842
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