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Author Filla, M., Lama, R. P., Ghale, T. R., Signer, J., Filla, T., Aryal, R. R., Heurich, M., Waltert, M., Balkenhol, N., Khorozyan, I. pdf 
  Title In the shadows of snow leopards and the Himalayas: density and habitat selection of blue sheep in Manang, Nepal Type Journal Article
  Year 2020 Publication Ecology and Evolution Abbreviated Journal  
  Volume 2021 Issue 11 Pages 108-122  
  Keywords Annapurna Conservation Area, bharal, Panthera uncia, predator-prey, Pseudois nayaur  
  Abstract (down) There is a growing agreement that conservation needs to be proactive and pay increased attention to common species and to the threats they face. The blue sheep (Pseudois nayaur) plays a key ecological role in sensitive high-altitude ecosystems of Central Asia and is among the main prey species for the globally vulnerable snow leopard (Panthera uncia). As the blue sheep has been increasingly exposed to human pressures, it is vital to estimate its population dynamics, protect the key populations, identify important habitats, and secure a balance between conservation and local livelihoods. We conducted a study in Manang, Annapurna Conservation Area (Nepal), to survey blue sheep on 60 transects in spring (127.9 km) and 61 transects in autumn (134.7 km) of 2019, estimate their minimum densities from total counts, compare these densities with previous estimates, and assess blue sheep habitat selection by the application of generalized additive models (GAMs). Total counts yielded minimum density estimates of 6.0–7.7 and 6.9–7.8 individuals/km2 in spring and autumn, respectively, which are relatively high compared to other areas. Elevation and, to a lesser extent, land cover indicated by the normalized difference vegetation index (NDVI) strongly affected habitat selection by blue sheep, whereas the effects of anthropogenic variables were insignificant. Animals were found mainly in habitats associated with grasslands and shrublands at elevations between 4,200 and 4,700 m. We show that the blue sheep population size in Manang has been largely maintained over the past three decades, indicating the success of the integrated conservation and development efforts in this area. Considering a strong dependence of snow leopards on blue sheep, these findings give hope for the long-term conservation of this big cat in Manang. We suggest that long-term population monitoring and a better understanding of blue sheep–livestock interactions are crucial to maintain healthy populations of blue sheep and, as a consequence, of snow leopards.  
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  Call Number SLN @ rakhee @ Serial 1683  
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Author Satimbekov R. url 
  Title Nature reserves of Kazakhstan and protection of rare predatory animal species Type Miscellaneous
  Year 1979 Publication Abbreviated Journal  
  Volume Issue Pages 64-65  
  Keywords Kazakhstan; protected areas; snow leopard.; 8090; Russian  
  Abstract (down) There are 20 snow leopards in the Aksu-Djabagly nature reserve, and three four families in the Alma-Ata nature reserve. Single snow leopards are known to be met in the Markakol nature reserve.  
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  Notes Full text available in RussianJournal Title: Ecologic fundamentals of protection and sustainable use of predatory mammals. Approved no  
  Call Number SLN @ rana @ 787 Serial 847  
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Author Woodroffe, R.; Ginsberg, J.R. url 
  Title Edge effects and the extinction of populations inside protected areas Type Journal Article
  Year 1998 Publication Science Washington D.C. Abbreviated Journal  
  Volume 280 Issue 5372 Pages 2126-2128  
  Keywords edge-effects; extinction; human-animal-conflict; mortality; population-size; protected-areas; browse; edge effects; Human; Animal; conflict; population; protected; area; 590  
  Abstract (down) Theory predicts that small populations may be driven to extinction by random fluctuations in demography and loss of genetic diversity through drift. However, population size is a poor predictor of extinction in large carnivores inhabiting protected areas. Conflict with people on reserve borders is the major cause of mortality in such populations, so that border areas represent population sinks. The species most likely to disappear from small reserves are those that range widely-and are therefore most exposed to threats on reserve borders-irrespective of population size. Conservation efforts that combat only stochastic processes are therefore unlikely to avert extinction.  
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  Notes Document Type: English Approved no  
  Call Number SLN @ rana @ 351 Serial 1028  
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Author Gaston, A.J.; Garson, P.J.; Hunter, M.L. url 
  Title The status and conservation of forest wildlife in Himachal Pradesh, Western Himalayas Type Journal Article
  Year 1983 Publication Biological Conservation Abbreviated Journal  
  Volume 27 Issue 4 Pages 291-314  
  Keywords Himachal; park; conservation; Himalayas; reserves; refuge; protected-area; browse; protected; area; 890  
  Abstract (down) The wildlife of temperate forest ecosystems in the Western Himalayas is threatened by destruction of habitat and hunting. Two species of pheasants occuring in the survey area (western tragopan Tragopan melanocephalus and cheer pheasant Catreus wallichi) are listed in the IUCN Red Data Book (1979). Small populations of both species were located and information on their habitat requirements was obtained. The status of most large mammal species appears to be precarious, with the populations encountered being small and fragmented. Species formerly common but now rare include Himalayan brown bear Ursus arctos, Himalayan tahr Hemitragus jemlahicus and musk deer Moschus moschiferus. The snow leopard Panthera uncia has disappeared completely from the area.-from Authors  
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  Notes Document Type: English Approved no  
  Call Number SLN @ rana @ 58 Serial 333  
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Author Bhatnagar, Y.V.; Mathur, V.B.; McCarthy, T. url 
  Title A Regional Perspective for Snow Leopard Conservation In the Indian Trans-Himalaya Type Conference Article
  Year 2002 Publication Abbreviated Journal  
  Volume Issue Pages  
  Keywords snow; leopard; India; indian; Himalaya; Himalayan; conservation; region; regional; climate; topography; flora; fauna; Tibet; tibetan; protected; area; planning; management; manage; biogeographic; gazelle; kiang; yak; predator; 4900  
  Abstract (down) The Trans-Himalaya is a vast biogeographic region in the cold and arid rain-shadow of

the Greater Himalaya and is spread over three Indian states. From the conservation

standpoint this region has several unique characteristics. Unlike most other

biogeographic regions of the country, it has wildlife, including large mammals, spread

over the entire region. Another feature is that the harsh climate and topography

provides limited agricultural land and pastures, all of which are currently utilized by

people. The harsh environment has given rise to a specialized assemblage of flora and fauna in

the region that include the endangered snow leopard, a variety of wild sheep and goat,

Tibetan antelope, Tibetan gazelle, kiang and wild yak. The snow leopard is one of the

most charismatic species of the Trans-Himalaya. This apex predator, with a wide

distribution, has ecological importance and international appeal, and is eminently

suitable to be used as both a 'flagship' and an 'umbrella species' to anchor and guide

conservation efforts in the Trans-Himalayan region. Among the 10 Biogeographic Zones in the country, the Trans-Himalaya has a

comparatively large Protected Area (PA) coverage, with over 15,000 km2 (8.2 %) of

the geographical area under the network. In spite of this, the bulk of the large mammal

populations still exist outside the PAs, which include highly endangered species such

as snow leopard, chiru, wild yak, Ladakh urial, kiang and brown bear. Given the sparse resource availability in the Trans-Himalaya and the existing human

use patterns, there are few alternatives that can be provided to resource dependent

human communities in and around PAs. The existing PAs themselves pose formidable

conservation challenges and a further increase in their extent is impractical. The

problem is further compounded by the fact that some of the large PAs have unclear

boundaries and include vast stretches that do not have any direct wildlife values. These

issues call for an alternative strategy for conservation of the Trans-Himalayan tracts

based on a regional perspective, which includes reconciling conservation with

development. In this paper we stress that conservation issues of this region, such as competition for

forage between wild and domestic herbivores and human-wildlife conflicts need to be

addressed in a participatory manner. We suggest an alternative scheme to look at the

zonation of existing PAs and also the Trans-Himalayan region as a whole, to facilitate

better conservation in the region. Also, we emphasize that there is a vital need for

additional resources and a formal setup for regional planning and management under a

centrally sponsored scheme such as the 'Project Snow Leopard'.
 
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  Notes Title, Monographic: Proceedings of the Snow Leopard Survival SummitPlace of Meeting: Seattle,WA Approved no  
  Call Number SLN @ rana @ 476 Serial 137  
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Author Koju. N. P, , Bashyal, B., Pandey, B. P., Shah, S. N., Thami, S. ,Bleisch, W. V. url 
  Title First camera-trap record of the snow leopard Panthera uncia in Gaurishankar Conservation Area, Nepal Type Journal Article
  Year 2020 Publication Oryx Abbreviated Journal  
  Volume Issue Pages 1-4  
  Keywords Camera trap, corridor, Gaurishankar Conser- vation Area, Nepal, Panthera uncia, prey abundance, transboundary, snow leopard  
  Abstract (down) The snow leopard Panthera uncia is the flagship species of the high mountains of the Himalayas. There is po- tentially continuous habitat for the snow leopard along the northern border of Nepal, but there is a gap in information about the snow leopard in Gaurishankar Conservation Area. Previous spatial analysis has suggested that the Lamabagar area in this Conservation Area could serve as a transbound- ary corridor for snow leopards, and that the area may con- nect local populations, creating a metapopulation. However, there has been no visual confirmation of the species in Lamabagar. We set !! infrared camera traps for " months in Lapchi Village of Gaurishankar Conservation Area, where blue sheep Pseudois nayaur, musk deer Moschus leucogaster and Himalayan tahr Hemitragus jemlahicus, all snow leopard prey species, had been observed. In November #$!% at &,!$$ m, ' km south-west of Lapchi Village, one camera recorded three images of a snow leopard, the first photographic evidence of the species in the Conservation Area. Sixteen other species of mammals were also recorded. Camera-trap records and sightings indicated a high abun- dance of Himalayan tahr, blue sheep and musk deer. Lapchi Village may be a potentially important corridor for snow leopard movement between the east and west of Nepal and northwards to Quomolongma National Park in China. However, plans for development in the region present in- creasing threats to this corridor. We recommend develop- ment of a transboundary conservation strategy for snow leopard conservation in this region, with participation of Nepal, China and international agencies.  
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  Notes Approved no  
  Call Number Serial 1622  
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Author Khanal, G., Poudyal, L. P., Devkota, B. P., Ranabhat, R., Wegge, P. url  doi
  Title Status and conservation of the snow leopard Panthera uncia in Api Nampa Conservation Area, Nepal Type Journal Article
  Year 2018 Publication Fauna & Flora International Abbreviated Journal  
  Volume Issue Pages 1-8  
  Keywords Api Nampa Conservation Area, bharal, Nepal, Panthera uncia, Pseudois nayaur, snow leopard  
  Abstract (down) The snow leopard Panthera uncia is globally

threatened and reliable information on its abundance,

distribution and prey species is a prerequisite for its conservation.

In October-November 2014 we assessed the distribution

of the snow leopard in the recently established Api

Nampa Conservation Area in the Nepal Himalayas.

Within selected blocks we conducted sign surveys and

counted the number of bharal Pseudois nayaur, its principal

wild prey, along transects totalling 106 km.We recorded 203

putative snow leopard signs at an encounter rate of 1.91

signs/km. Generalized linear models of the number of

signs detected per transect showed that elevation had a positive

influence and human activities a negative influence on

sign encounter rate; prey abundance had only a weak positive

influence on sign encounter rate. Within the effectively

surveyed area of c. 2002 km2, we counted 527 bharal at an estimated

density of 2.28 animals/km2. Recruitment of bharal

was low, estimated at 48 kids/100 adult females, most likely a

result of poor or overgrazed rangeland. We estimate

the total number of bharal in this conservation area to be

.>1,000, a prey base that could sustain 6-9 snow leopards.

Based on our field observations, we identified human disturbance

and habitat degradation associated with extraction

of non-timber forest products, livestock grazing, and poaching

as the main threats to the snow leopard. Standardized

sign surveys, preferably supplemented by sampling with

remote cameras or with genetic analysis of scats would

provide robust baseline information on the abundance of

snow leopards in this conservation area.
 
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  Call Number SLN @ rakhee @ Serial 1473  
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Author Sunquist, F. url 
  Title Where cats and herders mix. (snow leopards in Tibet and Mongolia) Type Journal Article
  Year 1997 Publication International Wildlife Abbreviated Journal  
  Volume 27 Issue 1 Pages 27-33  
  Keywords Mongolia; Tibet; herder; livestock; snow-leopard; predator; prey; World-Wildlife-Foundation; habitat; reserve; park; refuge; Pakistan; China; herders; parks; protected-area; snow leopard; browse; Wwf; world wildlife foundation; 1110; snow; leopard; range; territory; central; Central Asia; asia; Animal; region; conservation; wildlife; foundation; border; sheep; Baltistan; enclosures; area; home; snow leopards; snow-leopards; leopards; countries; country; Feed; Cats; cat; mountain; peoples; people  
  Abstract (down) The snow leopard inhabits a huge range of territory which encompasses some of Central Asia's most bleak and inhospitable terrains. The animal herders in these regions are desperately poor and yet they have agreed to cooperate with conservation groups in protecting the snow leopard. The World Wildlife Foundation has worked to create a refuge on the Pakistan-China border. Sheep herders near Askole, a village in the Baltistan region of northern Paksitan, drive their flocks past stone enclosures. The area is also home to snow leopards. With their natural prey dminished, leopards in 13 countries of central Asia occasionally feed on livestock, putting the cats on a collision course with mountain peoples.  
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  Notes COPYRIGHT 1997 National Wildlife Federation , Jan-Feb 1997 v27 n1 p26(8) Document Type: English Approved no  
  Call Number SLN @ rana @ 330 Serial 950  
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Author Chundawat, R.S.; Rawat G.S. url 
  Title Food Habits of Snow Leopard in Ladakh, India Type Miscellaneous
  Year 1990 Publication Abbreviated Journal  
  Volume Issue Pages 11  
  Keywords India; Ladakh; behavior; predator; prey; livestock; blue-sheep; ibex; ungulates; marmots; parks; refuge; protected-area; reserves; diet; habitat; scat; kills; blue; sheep; browse; protected; area; 970  
  Abstract (down) The snow leopard has remained little studied in the past, and most of the information available is either in the form of natural history or anecdotal notes. The inaccessibility of the terrain and its secretive habits make this one of the more difficult animals to study in the wild. In the past decade, several ecological surveys were conducted in India, Nepal, China and Mongolia, which gave us information on the status and distribution of snow leopard (Jackson, Mallon, Fox, Schaller, Chundawat) A detailed study in Nepal through light on its secretive habits ( Jackson and Ahlborn, 1989). Even then little is known about its feeding habits. The present paper discusses this aspect from a study which was part of a detailed study conducted on the ecology of snow leopard in India from October 1987 to Feburary 1990.  
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  Notes full text available at URL Approved no  
  Call Number SLN @ rana @ 305 Serial 223  
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Author Subbotin, A.E.; Istomov, S.V. url 
  Title The population status of snow leopards Uncia uncia (Felidae, Carnivora) in the western Sayan Mountain Ridge Type Journal Article
  Year 2009 Publication Doklady Biologicl Sciences Abbreviated Journal  
  Volume 425 Issue Pages 183-186  
  Keywords population; status; snow; snow leopards; snow leopard; snow-leopards; snow-leopard; leopards; leopard; uncia; Uncia uncia; Uncia-uncia; Felidae; Carnivora; Sayan; mountain; Russian; Test; species; cat; Russia; area; range; Data; study; activity; activities; behavior; habitats; habitat; humans; Human; number; description; Animal; structure  
  Abstract (down) The snow leopard (Uncia uncial Schreber, 1776) is the most poorly studied species of the cat family in the world and, in particular, in Russia, where the northern periphery of the species area (no more than 3% of it) is located in the Altai-Hangai-Sayan range [1]. It is generally known that the existing data on the Russian part of the snow leopard population have never been a result of targeted studies; at best, they have been based on recording the traces of the snow leopard vital activity [2]. This is explained by the snow leopard's elusive behavior, inaccessibility of its habitats for humans, and its naturally small total numbers in the entire species area. All published data on the population status of the snow leopard in Russia, from the first descriptions of the species [3-6] to the latest studies [7, 8] are subjective, often speculative, and are not confirmed by

quantitative estimates. It is obvious, however, that every accurate observation of this animal is of particular interest [9]. The purpose of our study was to determine the structure and size of the population group presumably inhabiting the Western Sayan mountain ridge at the northern boundary of the species area
 
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  Publisher Pleiades Publishing, Ltd. Place of Publication Editor  
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  ISSN 0012-4966 ISBN Medium  
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  Notes Original Russian test published in Doklady Akademii Nauk, Vol. 425, No.6, pp.846-849. Approved no  
  Call Number SLN @ rana @ 1005 Serial 941  
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