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Author Forrest, J. L.,Wikramanayake, E., Shrestha, R., Areendran, G., Gyeltshen, K., Maheshwari, A., Mazumdar, S., Naidoo, R., Thapa, G. J., Thapa, K. url 
  Title Conservation and climate change: Assessing the vulnerability of snow leopard habitat to treeline shift in the Himalaya Type Journal Article
  Year 2012 Publication Biological Conservation Abbreviated Journal  
  Volume 150 Issue Pages 129-135  
  Keywords Snow leopard Climate adaptation Conservation planning Endangered species Climate change Himalaya  
  Abstract Climate change is likely to affect the persistence of large, space-requiring species through habitat shifts,

loss, and fragmentation. Anthropogenic land and resource use changes related to climate change can also

impact the survival of wildlife. Thus, climate change has to be integrated into biodiversity conservation

plans. We developed a hybrid approach to climate-adaptive conservation landscape planning for snow

leopards in the Himalayan Mountains. We first mapped current snow leopard habitat using a mechanistic

approach that incorporated field-based data, and then combined it with a climate impact model using a

correlative approach. For the latter, we used statistical methods to test hypotheses about climatic drivers

of treeline in the Himalaya and its potential response to climate change under three IPCC greenhouse gas

emissions scenarios. We then assessed how change in treeline might affect the distribution of snow leopard

habitat. Results indicate that about 30% of snow leopard habitat in the Himalaya may be lost due to a

shifting treeline and consequent shrinking of the alpine zone, mostly along the southern edge of the range

and in river valleys. But, a considerable amount of snow leopard habitat and linkages are likely to remain

resilient to climate change, and these should be secured. This is because, as the area of snow leopard habitat

fragments and shrinks, threats such as livestock grazing, retaliatory killing, and medicinal plant collection

can intensify. We propose this approach for landscape conservation planning for other species

with extensive spatial requirements that can also be umbrella species for overall biodiversity.

 2012 Elsevier Ltd. All rights reserved
 
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  Notes Approved no  
  Call Number SLN @ rakhee @ Serial 1385  
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Author Fox, J.L., Sinha, S.P., Chundawat, R.S. url 
  Title Activity patterns and habitat use of ibex in the Himalaya mountains of India Type Journal Article
  Year 1992 Publication Journal of Mammology Abbreviated Journal  
  Volume 73 Issue 3 Pages 527-534  
  Keywords Capra ibex, activity patterns, habitat use, Himalaya mountains, India  
  Abstract  
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  Notes Approved no  
  Call Number SLN @ rana @ Serial 1168  
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Author Hanson, J. H., Schutgens, M., Baral, N. url 
  Title What explains tourists support for snow leopard conservation in the Annapurna Conservation Area, Nepal? Type Journal Article
  Year Publication Human Dimensions of Wildlife Abbreviated Journal  
  Volume Issue Pages 1-15  
  Keywords Flagship species; Himalayas; knowledge-attitude-practice model; Panthera uncia; protected area management; tourism  
  Abstract Wildlife tourism is increasingly important for the conservation of

threatened species such as snow leopards. However, what tourists

know or value about snow leopards, and to what extent they support

the conservation of this species, has received limited empirical attention.

This paper investigates tourist knowledge about snow leopards,

beliefs and values toward the species, and support for its conservation

in the Annapurna Conservation Area of Nepal. Survey data were

collected from 406 foreign tourists between March and May 2014.

Although knowledge about snow leopards varied among respondents,

there was widespread support for their conservation.

Knowledge about snow leopards was best explained by education

level and environmental organization membership. Improved knowledge

about the species, and a variety of intrinsic conservation values,

were found to increase tourist support for snow leopard conservation.

These results provide important insights to help tailor tourism

initiatives to support the conservation of snow leopards.
 
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  Notes Approved no  
  Call Number SLN @ rakhee @ Serial 1474  
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Author Jackson, R., Ahlborn, G.G. url 
  Title Appendix: Snow leopard managment recommendations provided to HMG in: Himalayan Snow Leopard Project: Final Progress Report, Phase I. Report: 1-7. Himalayan Type Report
  Year 1986 Publication Abbreviated Journal  
  Volume Issue Pages 1-7  
  Keywords action plan, CCT, conservation, Himalaya, human wildlife conflict, hunting, livestock, local participation, local people, management/protected  
  Abstract Preliminary recommendations for the management of snow leopard and its prey are provided for the Langu Valley segment of the Shey-Pkoksundo National Park. Park-wide and country-wide conservation options and management recommendations await results of the surveys scheduled for 1987. The following management objectives are formulated: 1) Protection and ultimate restoration of all natural communities within the area 2) Special protection measures for snow leopard and musk deer (strict control of hunting and livestock grazing) 3) Secure natural resources around local villages 4) Respect traditional rights of villagers, while controlling high impact human activities 5) Secure cooperation of local people. These objectives are refined and recommendations for concrete conservation actions are made.

Notes: document is a part of the Himalayan Snow Leopard Project: Final Progress Report, Phase I
 
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  Notes Approved no  
  Call Number SLN @ rana @ Serial 1119  
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Author Jackson, R. url 
  Title Radio-tracking snow leopards in the Himalaya: a progress report Type Report
  Year 1984 Publication Abbreviated Journal  
  Volume Issue Pages  
  Keywords snow leopard, radio telemetry, Himalaya, Nepal  
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  Notes Approved no  
  Call Number SLN @ rana @ Serial 1261  
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Author Kohli, K., Sankaran, M., Suryawanshi, K. R., Mishra, C url 
  Title A penny saved is a penny earned: lean season foraging strategy of an alpine ungulate Type Journal Article
  Year 2014 Publication Animal Behaviour Abbreviated Journal  
  Volume Issue 92 Pages 93-100  
  Keywords blue sheep, grazing, herbivore, mountain ungulate, optimal foraging, Pseudois nayaur, trans-Himalaya  
  Abstract Lean season foraging strategies are critical for the survival of species inhabiting highly seasonal environments

such as alpine regions. However, inferring foraging strategies is often difficult because of

challenges associated with empirically estimating energetic costs and gains of foraging in the field. We

generated qualitative predictions for the relationship between daily winter foraging time, body size and

forage availability for three contrasting foraging strategies including time minimization, energy intake

maximization and net energy maximization. Our model predicts that for animals employing a time

minimization strategy, daily winter foraging time should not change with body size and should increase

with a reduction in forage availability. For energy intake maximization, foraging time should not vary

with either body size or forage availability. In contrast, for a net energy maximization strategy, foraging

time should decrease with increase in body size and with a reduction in forage availability. We contrasted

proportion of daily time spent foraging by bharal, Pseudois nayaur, a dimorphic grazer, across

different body size classes in two high-altitude sites differing in forage availability. Our results indicate

that bharal behave as net energy maximizers during winter. As predicted by the net energy maximization

strategy, daily winter foraging time of bharal declined with increasing body size, and was lower in the

site with low forage availability. Furthermore, as predicted by our model, foraging time declined as the

winter season progressed. We did not find support for the time minimizing or energy intake maximizing

strategies. Our qualitative model uses relative rather than absolute costs and gains of foraging which are

often difficult to estimate in the field. It thus offers a simple way to make informed inferences regarding

animal foraging strategies by contrasting estimates of daily foraging time across gradients of body size

and forage availability.
 
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  Notes Approved no  
  Call Number SLN @ rakhee @ Serial 1409  
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Author Lovari, S., Boesi, R., Minder, I., Mucci, N., Randi, E., Dematteis, A., and Ale, S. B. url 
  Title Restoring a keystone predator may endanger a prey species in a human-altered ecosystem: the return of the snow leopard to Sagarmatha National Park Type Journal Article
  Year 2009 Publication Animal Conservation Abbreviated Journal  
  Volume 12 Issue Pages 559-570  
  Keywords conservation, food habits, genetics, Hemitragus jemlahicus, Himalayan tahr, management, microsatellite, predation, presence, scat, scat analysis, snow leopard, Uncia uncia  
  Abstract Twenty-five years ago, the snow leopard Uncia uncia, an endangered large cat, was eliminated from what is now Sagarmatha National Park (SNP). Heavy hunting pressure depleted that area of most medium-large mammals, before it became a park. After three decades of protection, the cessation of hunting and the recovery of wild ungulate populations, snow leopards have recently returned (four individuals). We have documented the effects of the return of the snow leopard on the population of its main wild prey, the Himalayan tahr Hemitragus jemlahicus, a 'near-threatened' caprin. Signs of snow leopard presence were recorded and scats were collected along a fixed trail (130 km) to assess the presence and food habits of the snow leopard in the Park, from 2004 to 2006. Himalayan tahr, the staple of the diet, had a relative occurrence of 48% in summer and 37% in autumn, compared with the next most frequent prey, musk deer Moschus chrysogaster (summer: 20%; autumn: 15%) and cattle (summer: 15%; autumn: 27%). In early summer, the birth rate of tahr (young-to-female ratio: 0.8-0.9) was high. The decrease of this ratio to 0.1-0.2 in autumn implied that summer predation concentrated on young tahr, eventually altering the population by removing the kid cohort. Small populations of wild Caprinae, for example the Himalayan tahr population in SNP, are sensitive to stochastic predation events and may be led to almost local extinction. If predation on livestock keeps growing, together with the decrease of Himalayan tahr, retaliatory killing of snow leopards by local people may be expected, and the snow leopard could again be at risk of local extinction. Restoration of biodiversity through the return of a large predator has to be monitored carefully, especially in areas affected by humans, where the lack of important environmental components, for example key prey species, may make the return of a predator a challenging event.  
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  Notes Approved no  
  Call Number SLN @ rana @ Serial 1122  
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Author Maheshwari, A., Sharma, D., Sathyakumar, S. url 
  Title Snow Leopard (Panthera Uncia) surveys in the Western Himalayas, India Type Journal Article
  Year 2013 Publication Journal of Ecology and Natural Environmnet Abbreviated Journal  
  Volume 5 Issue 10 Pages 303-309  
  Keywords Conflict, Himalayas, livestock depredation, prey, snow leopard, habitat, Uttarakhand.  
  Abstract We conducted surveys above 3000 m elevation in eight protected areas of Uttarakhand and Himachal Pradesh. These surveys provide new information on snow leopard in Uttarakhand on the basis of indirect evidence such as pugmark and scat. Snow leopard evidence (n = 13) were found between 3190 and 4115 m elevation. On an average, scats (n = 09) of snow leopard were found for every 56 km walked and pugmarks (n = 04) for every 126 km walked. Altogether, about 39% of the evidence were found on the hill-slope followed by valley floor (30%), cliff (15%) and 8% from both stream bed and scree slope. Genetic analysis of the scats identified three different individuals by using snow leopard specific primers. Snow leopard-human conflicts were assessed through questionnaire based interviews of shepherds from Govind Pashu Vihar Wildlife Sanctuary, Askot Wildlife Sanctuary and Nanda Devi Biosphere Reserve areas of Uttarakhand. Surveys revealed that livestock depredation (mule, goat and sheep) is the only cause of snow leopard-human conflicts and contributed 36% of the diet of snow leopard. Blue sheep and rodents together comprised 36.4% of the total diet. We found that 68.1% of the surveyed area was used for pastoral activities in Uttarakhand and Himachal Pradesh and 12.3% area was under tourism, defence and developmental activities.  
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  Notes Approved no  
  Call Number SLN @ rakhee @ Serial 1401  
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Author Maheshwari, A., Sharma, D. url 
  Title Snow leopard conservation in Uttarakhand and Himachal Pradesh Type Report
  Year 2010 Publication Abbreviated Journal  
  Volume Issue Pages 1-70  
  Keywords Himalayan, Uttarakhand, Himachal Pradesh, WWF-India, survey, India  
  Abstract The Greater and Trans Himalayan regions of Uttarakhand and Himachal Pradesh have great potential in terms of wildlife (flora and fauna). This survey was the first ever survey for the snow leopard in Uttarakhand and some of the areas of Himachal Pradesh till date. It confirms the presence of snow leopard in Uttarakhand on the basis of indirect evidence. We could not find any evidence of snow leopard from surveyed areas in Himachal Pradesh – but it certainly does not mean that there are no snow leopards in the surveyed areas.

Areas above 3000m elevation were selected for this survey in 10 protected areas of both the states. Status and distribution of snow leopard was assessed through indirect evidence (n=13) found between 3190 and 4115m. On average, one indirect evidence of snow leopard was found for every 39km walked. About 39% of the evidence was found on the hill-slope followed by valley floor (30%), cliff (15%) and 8% from both stream bed and scree slope. Preferred mean slope was 28° (maximum 60°). Snow leopard-human conflicts were assessed through questionnaire surveys from Govind Pashu Vihar, Askot Wild Life Sanctuary and Dung (Munsiari) areas. They revealed that livestock depredation is the only component of conflict and contributed to 36% of the total diet (mule, goat and sheep) of snow leopard. Blue sheep and rodents together comprised 36.4% of the total diet.
 
  Address  
  Corporate Author WWF-India, New Dehli Thesis  
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  Notes January 2010. Species Conservation Programme. Approved no  
  Call Number SLN @ rana @ Serial 1094  
Permanent link to this record
 

 
Author Mishra, C., Suryawanshi, K. url 
  Title Managing conflicts over livestock depradation by Large Carnivores Type Book Chapter
  Year 2014 Publication SOUTH ASIAN ASSOCIATION FOR REGIONAL COOPERATION – Human-Wildlife Conflict in the Mountains of SAARC Region – Compilation of Successful Management Strategies and Practices Abbreviated Journal  
  Volume Issue Pages 27-47  
  Keywords Snow leopard Panthera uncia, wolf Canis lupus, Himalayas, Central Asia  
  Abstract Managing wildlife-caused damage to human interests has become an important aspect of contemporary conservation management. Conflicts between pastoralism and carnivore conservation over livestock depredation pose a serious challenge to endangered carnivores worldwide, and have become an important livelihood concern locally. Here, we first review the primary causes of these conflicts, their socio-ecological correlates, and commonly employed mitigation measures. We then describe a community-based program to manage conflicts over livestock depredation by snow leopards Panthera uncia and wolves Canis lupus. A threats-based conceptual model of conflict management is presented. Conflicts over livestock depredation are characterized by complex, multi-scale interactions between carnivore and livestock behavioral ecology, animal husbandry, human psyche, culture, world-views, and socio-economic and education levels of affected peoples. A diversity of commonly employed conflict-mitigation measures is available. They aim at (i) reducing livestock depredation through better livestock herding, use of physical, chemical or psychological barriers, removal of carnivores, and use of livestock guard animals, (ii) offsetting economic losses through damage compensation and insurance programmes, and (iii) increasing peoples’ tolerance of carnivores through indirect approaches such as conservation education and economic incentives. For effective management, conflicts need to be understood along two important dimensions, viz., the reality of damage caused to humans, and the psyche and perceptions of humans who suffer wildlife caused damage. The efficacy of commonly used mitigation measures is variable. A combination of measures that reduce the level of livestock depredation, share or offset economic losses, and improve the social carrying capacity for carnivores will be more effective in managing conflicts than standalone measures  
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  Notes Approved no  
  Call Number SLN @ rakhee @ Serial 1424  
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