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Author Jackson, R. url 
  Title Linking Snow Leopard Conservation and People-Wildlife Conflict Resolution, Summary of a multi-country project aimed at developing grass-roots measures to protect the endangered snow leopard from herder retribution Type Journal Article
  Year 2000 Publication Cat News Abbreviated Journal  
  Volume 33 Issue Pages (down) 12-15  
  Keywords livestock-depredation; livestock; pastoralists; herders; Pakistan; Nepal; Tibet; Mongolia; India; protected-areas; parks; reserves; refuge; snow-leopard-incentive-program; economics; tourism; pens; corrals; enclosures; trapping; poisoning; killing; cubs; dens; retribution; behavior; predator; prey; Qomolangma; habitat; feces; fecal-analysis; compensation; Dogs; guard-dogs; religion; conservation; browse; depredation; snow; leopard; incentive; program; fecal; analysis; guard; Dog; 4000  
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  Notes Full Text at URL Approved no  
  Call Number SLN @ rana @ 375 Serial 464  
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Author Karki, A., Panthi, S. url 
  Title Factors affecting livestock depredation by snow leopards (Panthera uncia) in the Himalayan region of Nepal Type Journal Article
  Year 2021 Publication PeerJ Abbreviated Journal  
  Volume 9 Issue e11575 Pages (down) 1-14  
  Keywords Conflict,Habitat,Himalaya,Livestockdepredation,Modeling,Snowleopard,Wildlife management  
  Abstract The snow leopard (Panthera uncia) found in central Asia is classified as vulnerable species by the International Union for Conservation of Nature (IUCN). Every year, large number of livestock are killed by snow leopards in Nepal, leading to economic loss to local communities and making human-snow leopard conflict a major threat to snow leopard conservation. We conducted formal and informal stakeholder’s interviews to gather information related to livestock depredation with the aim to map the attack sites by the snow leopard. These sites were further validated by district forest office staffs to assess sources of bias. Attack sites older than 3 years were removed from the survey. We found 109 attack sites and visited all the sites for geo location purpose (GPS points of all unique sites were taken). We maintained at least a 100 m distance between attack locations to ensure that each attack location was unique, which resulted in 86 unique locations. A total of 235 km2 was used to define livestock depredation risk zone during this study. Using Maximum Entropy (MaxEnt) modeling, we found that distance to livestock sheds, distance to paths, aspect, and distance to roads were major contributing factors to the snow leopard’s attacks. We identified 13.64 km2 as risk zone for livestock depredation from snow leopards in the study area. Furthermore, snow leopards preferred to attack livestock near livestock shelters, far from human paths and at moderate distance from motor roads. These identified attack zones should be managed both for snow leopard conservation and livestock protection in order to balance human livelihoods while protecting snow leopards and their habitats.  
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  Notes Approved no  
  Call Number Serial 1640  
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Author Kachel, S., Anderson, K., Shokirov, Q. pdf 
  Title Predicting carnivore habitat use and livestock depredation risk with false-positive multi-state occupancy models Type Journal Article
  Year 2022 Publication Biological Conservation Abbreviated Journal  
  Volume 271 Issue 109588 Pages (down) 1-10  
  Keywords Bayesian hierarchical model,False-positive,Multi-state occupancy,Human-carnivore conflict,Livestock depredation,Snow leopard,Lynx,Wolf,Bear  
  Abstract The cycle of livestock depredation and retaliatory killing constitutes a major threat to large carnivores worldwide and imposes considerable hardships on human communities. Mitigation efforts are often undertaken with little knowledge of ecological underpinnings and patterns of depredation, limiting conservationists' ability to develop, prioritize, and evaluate solutions. Carnivore detection and depredation data from interviews in affected communities may help address this gap, but such data are often prone to false-positive uncertainty. To address these challenges in the Pamir Mountains of Tajikistan we collected snow leopard, lynx, wolf, and bear detection and depredation reports from local communities via semi-structured interviews. We used a novel hierarchical multi-species multi-state occupancy model that accounted for potential false-positives to investigate carnivore site use and depredation concurrently with respondents' apparent vulnerability to that risk. Estimated false-positive probabilities were small, but failure to account for them overstated site use probabilities and depredation risk for all species. Although individual vulnerability was low, depredation was nonetheless commonplace. Carnivore site use was driven by clear habitat associations, but we did not identify any clearly important large-scale spatial correlates of depredation risk despite considerable spatial variation in that risk. Respondents who sheltered livestock in household corrals reinforced with wire mesh were less likely to report snow leopard depredations. Reducing depredation and retaliation at adequately large scales in the Pamirs will likely require a portfolio of species-specific strategies, including widespread proactive corral improvements. Our approach expanded inference on the often-cryptic processes surrounding human-carnivore conflict even though structured wildlife data were scarce.  
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  Notes Approved no  
  Call Number SLN @ rakhee @ Serial 1681  
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Author Khatiwada, J.R. & Chalise, M.K. url 
  Title Status of snow leopard and conflict perception in Kangchenjunga Conservation Area, Eastern Nepal Type Journal Article
  Year 2006 Publication Nepalese Journal of Zoology Abbreviated Journal  
  Volume 1 Issue 1 Pages (down) 1-8  
  Keywords Uncia uncia, Kangchenjunga Conservation Area, livestock depredation, blue sheep  
  Abstract Kangchenjunga Conservation Area (KCA) is situated in the Taplejung district at the north-eastern region of Nepal. Livestock keeping is the main activity of people for making a living amidst a conflict with snow leopard (Uncia uncia). Each year snow leopard kills a number of livestock resulting significant economic losses for the poor people living in this remote area. Unless the people – snow leopard conflicts is well understood and appropriate conflict management activities are implemented, the long run co-existence between people and snow leopard –especially the existence of snow leopard in this part of the world–will be in question. This has now become an utmost important as the aspiration of the people for economic development has risen significantly and the area has been open to tourism. Study was done by counting snow leopard signs walking systematically in total 18 snow leopard sign transects covering 18.01 km in length in three sites, i.e. Lonak, Khambachen and Dudhpokhari of the Conservation Area. The average sign density was 12.63/km. The livestock depredation by snow leopard for one year (2005-06) was studied by interviewing the herders to understand the responsible and specific bio-physical and economic factors. The study revealed that sub-adult yaks were mostly hunted by snow leopard. Cattle's' winter (December-April) pastures are most vulnerable sites for predation. Presence of bushes, forest and boulders and rugged mountain crevices make good hides for snow leopard. The study also showed that a lax animal guarding system was significantly responsible for high livestock depredation by snow leopard. Blue sheep was observed by walking in selected trails and from vantage points. A total of 354 individual sheep of different age and sex of 14 different herds were recorded during the study period. The study showed that improvement in livestock guarding system should be adopted as the most important activity. However despite the importance of livestock in the KCA it is still not well understood why the herders neglect for proper livestock guarding. Proper guarding system required in winter pastures to reduce the depredation pressure.  
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  Notes September Approved no  
  Call Number SLN @ rana @ Serial 1319  
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Author Jackson, R. url 
  Title Threatened wildlife, crop, and livestock depredation and grazing in the Makalu-Barun Conservation Area Type Report
  Year 1990 Publication Abbreviated Journal  
  Volume Issue April Pages (down) 1-105  
  Keywords Nepal, Makalu-Barun Conservation Area, grazing, depredation  
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  Notes Approved no  
  Call Number SLN @ rana @ Serial 1170  
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Author Wangchuk, R.; Jackson, R. url 
  Title A Community-based Approach to Mitigating Livestock-Wildlife Conflict in Ladakh, India Type Report
  Year 2009 Publication Abbreviated Journal  
  Volume Issue Pages (down) 1-9  
  Keywords community-based; approach; conflict; Ladakh; India; livestock; livestock depredation; livestock-depredation; depredation; snow; snow leopard; snow-leopard; leopard; wolf; wolves; Himalayan; region; Jackson; kibber; Kibber Wildlife Sanctuary; wildlife; sanctuary; sanctuaries; loss; us; villagers; predation; establishment; surveys; survey; number; change; Animal; animal-husbandry; husbandry; system; 2000  
  Abstract Livestock depredation by snow leopard and wolf is widespread across the Himalayan region (Jackson et al. 1996, Jackson and Wangchuk 2001; Mishra 1997, Oli et al 1994). For example, in India's Kibber Wildlife Sanctuary, Mishra (1997) reported losses amounting to 18% of the livestock holdings and valued at about US $138 per household. The villagers claimed predation rates increased after establishment of the sanctuary, but

surveys indicated a dramatic increase in livestock numbers accompanying changes in animal husbandry systems (Mishra 2000).
 
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  Notes Approved no  
  Call Number SLN @ rana @ 1014 Serial 1005  
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Author ud Din, J. url 
  Title Assessing the Status of Snow Leopard in Torkhow Valley, District Chitral, Pakistan: Final Technical Report Type Report
  Year 2008 Publication Abbreviated Journal  
  Volume Issue Pages (down) 1-16  
  Keywords status; snow; snow leopard; snow-leopard; leopard; valley; chitral; Pakistan; Report; study; prey; Base; conflict; threats; threat; wildlife; sign; transect; surveys; survey; Slims; Data; number; snow leopards; snow-leopards; leopards; Animals; Animal; population; livestock; livestock depredation; livestock-depredation; depredation; area; Case; ungulates; ungulate; Himalayan; himalayan ibex; ibex; rut; using; prey species; prey-species; species; marmot; game; birds; carnivores; carnivore; wolf; wolves; jackal; fox; survival; retaliatory; retaliatory killing; retaliatory-killing; killing; poisoning; poaching; loss; habitat; habitat degradation; habitat-degradation; degradation; grazing; collection; awareness; Gis; map; staff; field; training; conservation; community; distribution; resource; project; network; program  
  Abstract This study was aimed at assessing the status of Snow leopard, its major prey base, and the extent of human-Snow leopard conflict and major threats to the wildlife in north Chitral (Torkhow valley) Pakistan. Snow leopard occurrence was conformed through sign transect surveys i.e. SLIMS. Based on the data collected the number of Snow leopards in this survey block (1022 Kmý) is estimated to be 2-3 animals. Comparing this estimate with the available data from other parts of the district the population of snow leopard in Chitral district was count to be 36 animals. Livestock depredation reports collected from the area reflect the existence of human-snow leopard conflict and 138 cases were recorded affecting 102 families (in a period of eight years, 2001-2008). Ungulates (Himalayan Ibex) rut season surveys were conducted in coordination with NWFP Wildlife department. A total of 429 animals were counted using direct count (point method) surveys. Other snow leopard prey species recorded include marmot, hare, and game birds. Signs of other carnivores i.e. wolf, jackal, and fox were also noticed. Major threats to the survival of wildlife especially snow leopard reckoned include retaliatory killing (Shooting, Poisoning), poaching, loss of natural prey, habitat degradation (over grazing, fodder and fuel wood collection), lack of awareness, and over population. GIS map of the study area was developed highlighting the area searched for Snow leopard and its prey species. Capacity of the Wildlife Department staff was built in conducting SLIMS and ungulate surveys through class room and on field training. Awareness regarding the importance of wildlife conservation was highlighted to the students, teachers and general community through lectures and distribution of resource materials developed by WWF-Pakistan.  
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  Notes Project funded by Snow Leopard Network's Snow Leopard Conservation Grant Program. Approved no  
  Call Number SLN @ rana @ 1065 Serial 978  
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Author Alexander, J., Chen, P., Damerell, P., Youkui, W., Hughes, J., Shi, K., Riordan, P. url 
  Title Human wildlife conflict involving large carnivores in Qilianshan, China and the minimal paw-print of snow leopards Type Journal Article
  Year 2015 Publication Biological Conservation Abbreviated Journal  
  Volume 187 Issue Pages (down) 1-9  
  Keywords Snow leopard Carnivores Livestock depredation Social attitudes China  
  Abstract In this paper, we assess local perceptions towards snow leopards in North West China using a framework

depicting key conflict domains. We describe the perceived threats posed to humans by the snow leopard

and set them within beliefs and attitudes towards other species within the large carnivore assemblage in

this region. Surveys were conducted in seven villages within Qilianshan National Nature Reserve, Gansu

Province, China, to document reports of snow leopard (Panthera uncia), grey wolf (Canis lupus), Eurasian

lynx (Lynx lynx) and brown bear (Ursus arctos) depredation of livestock, and local attitudes towards each

species. Questionnaire-based interviews were held with 60 households and 49 livestock herders. Herding

of yak, sheep and goats was found to be a common livelihood activity among households in all villages.

Herders reported losing livestock to all four carnivore species. Herders reported that depredation was the

most common event affecting livestock, compared with natural disasters or disease, and represented a

total loss of 3.6% of the livestock population during the previous year. Most (53%) depredation losses were

attributed to lynx, while snow leopards were held responsible for only 7.8% of depredation losses. The

reported impact of snow leopards on herding activities was relatively small and the majority of both

householders and herders expressed positive attitudes towards them and supported measures for their

protection. Households and herders held negative attitudes towards lynx, wolves and bears, however,

most likely due to their perceived threat to livestock and humans. Understanding community perceptions

of threats posed by wildlife is vital for gaining community support for, and engagement in, conflict

mitigation.
 
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  Notes Approved no  
  Call Number SLN @ rakhee @ Serial 1422  
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Author Thapa, K. url 
  Title Is their any correlation between abundance of blue sheep population and livestock depredation by snow leopards in the Phu Valley, Manang District, Annapurna Conservation Area? Final report Type Report
  Year 2005 Publication Abbreviated Journal  
  Volume Issue Pages (down) 1-19  
  Keywords abundance; blue; blue sheep; blue-sheep; sheep; population; livestock; livestock depredation; livestock-depredation; depredation; snow; snow leopards; snow leopard; snow-leopards; snow-leopard; leopards; leopard; valley; Manang; annapurna; annapurna conservation area; Annapurna-Conservation-Area; conservation; area; Report; project; International; international snow leopard trust; International-Snow-Leopard-Trust; trust; program; Nepal  
  Abstract This study was undertaken in the Phu valley of Manang district in the Annapurna Conservation Area, Nepal,

Spring, 2004 and 2005. I used the Snow Leopard Management Information System (“second order” survey technique), to determine

the relative abundance of snow leopards in delineated areas in Phu valley. Transects routes were plotted by

randomly selected feasible landforms such as along ridgelines, cliff bases and river bluffs where snow

leopards sign is likely to be found. Altogether, 16 transects (total length of 7.912 km) were laid down (mean

transect length=0.495 km). They revealed, 54 sign sites (both relic and non-relic) and altogether 88 signs (72

scrapes, 11 feces, 3 scent mark, 2 pugmarks and 1 hair) were recorded (6.8 site/km and 11.1 signs/km). There

were 61.1% non-relic and 38.9% relic sites. The density of snow leopards in Phu Valley may be 4-5 snow

leopards/100 kmý.It was found that the Ghyo block had the highest sign density (13.6 mean sign item/km)

and Phu block (9.8 mean sign item/km) and the lowest in Ngoru block (3.9 mean sign item/km.). For blue sheep, direct count method was applied from different appropriate vantage points (fixed-point

count). I counted total individuals in each herd and classified all individuals whenever possible, using 8 X24

binocular and 15-60x spotting scope. A total 37 blue sheep herds and 1209 individuals were observed in

192.25 kmý of the study area (blue sheep density, 6.3 kmý). Average herd size was 32.68. Herd size varied

from 1 to 103 animals (the largest so far recorded). The average sex ratio male to female for the entire survey

area was 0.67. Recruitment rate was 47.13. The ratio of yearlings to adult female was 0.45. In Ghyo block

had total 168 blue sheep (area, 44.08 km2 or 3.8/ km2 i.e. 137.2 kg/ kmý). Blue sheep density in Ngoru block

showed 4.7/km2 (area, 65.47 km2). Highest density of blue sheep among three blocks was recorded in Phu

block, 8.9/km2 (or 320 kg/km2) in its 82.70 km2 area. A standard questionnaire was designed, and interviews conducted for relevant information was collected on

livestock depredation patterns (total household survey). Out of 33 households surveyed, 30 reported that they

had livestock depredation by the snow leopard in 2004. Altogether 58 animals were reportedly lost to snow

leopards (3.1% of the total mortality). Out of the estimated standing available biomass (1, 83,483kg) in the

Phu valley at least 2220 kg or 1.3% of the total livestock biomass was consumed by snow leopards in the

year of our study (2004). It was estimated that in the Phu valley annually 1.8 animals were lost per household

to snow leopards. This means approx. Rs.413560 (US$ 5,908) is lost annually in the valley (US$

179/household/annum). Ghyo block, had the highest animals loss (53.4%), followed by Phu block (36.2%)

and Ngoru block (10.3%) to snow leopards. There is positive correlation among the densities of blue sheep, relative abundance of the snow leopard and

livestock depredation. Blue sheep is the main prey species of the snow leopard in Phu valley and its

conservation therefore matters to reduce livestock depredation. A general patterns appears here that shows

that blue sheep (prey) abundance determine snow leopard (predator) abundance and that livestock

depredation by snow leopards may be minimal where there is good population of blue sheep, and vice versa.
 
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  Notes Project funded by International Snow Leopard Trust Small Grants Program, 2005. Annapurna Conservation Area Project, Pokhara, Nepal. Approved no  
  Call Number SLN @ rana @ 1078 Serial 959  
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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 Issue Pages (down) 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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