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Author (down) Bannikov A.G.
Title Snow leopard (irbis). Felis uncia Type Miscellaneous
Year 1973 Publication Abbreviated Journal
Volume Issue Pages 44
Keywords Ussr; snow leopard; distribution; life history; threats.; 6150; Russian
Abstract Irbis is distributed in highlands of Kazakhstan, Kyrgyzstan, Tajikistan, and Altai. It preys mainly on wild sheep and ibex, marmots, pica, snow-cock, rarer other ungulates, rodents and birds. Sometimes it attacks domestic sheep. At the beginning of spring this species is on heat, gestation period being 90 100 days. Female bears two three (to five) cubs. The litter splits in one year. The animal sheds hair twice a year. It has a low population and therefore hunting for snow leopard is prohibited.
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Notes Full text available in RussianJournal Title: Game animals and birds of the USSR. Reference book and identifier. Approved no
Call Number SLN @ rana @ 593 Serial 114
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Author (down) Bannikov A.G.
Title Genus Panthera Type Miscellaneous
Year 1971 Publication Abbreviated Journal
Volume Issue Pages 366 370
Keywords Ussr; panthera; snow leopard; distribution; preys; reproduction.; 6140; Russian
Abstract It gives the description of genus Panthera: lion, tiger, leopard, jaguar and snow leopard. The mountains of Central Asia and South Siberia limit the habitat of snow leopard in the USSR. This species is also distributed in the Himalayas, Tibet, and mountains of Mongolia. In summer, it lives at 3,660 3,970 m above sea level, while in winter, following the ungulates; snow leopard descends to 1,800 m. In the Himalayas, it ascends up to 5,500 m above sea level in summer. In Djungar and Talas Ala-Tau, snow leopard keeps at 600 1,200 m. It takes refuge in caves and cracks of rocks. Snow leopard is mostly active in twilights and night, rarer in daylight, and preys on ungulates, hares, marmots, and others. The coupling period is winter or early spring. A gestation is about 90 days. It has 3 5 cubs in a litter.
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Notes Full text available in RussianJournal Title: Life of animals. Vertebrates. Approved no
Call Number SLN @ rana @ 592 Serial 115
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Author (down) Bajimaya, S.
Title Snow leopard manual: field study techniques for the kingdom of Nepal Type Report
Year 2001 Publication Abbreviated Journal
Volume Issue Pages 1-77
Keywords field study; Nepal; snow leopard; techniques
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Publisher WWF Nepal Program Place of Publication Kathmandu, Nepal Editor
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Notes Approved no
Call Number SLN @ rana @ 950 Serial 109
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Author (down) Baidavletov R.J.
Title Large predators of the Kazakhstan Altai and their importance for hunting industry Type Miscellaneous
Year 2002 Publication Abbreviated Journal
Volume Issue Pages 79-81
Keywords Kazakhstan; Altai; large predators; snow leopard; distribution; number; preys.; 6110; Russian
Abstract Fauna of large predatory mammals in the Kazakhstan Altai is represented by five species: wolf, bear, glutton, lynx, and snow leopard. Snow leopard inhabits the Sarymsakty and Tarbagai ridges and South Altai. This species is observed to regularly penetrate into the Kutun and Kurchum ridges. Its habitat covers an area of 1,800 sq. km, its population being 14-16 animals. The population density is 0.7 1.0 animals per 100 sq. km. A hunting area of a female animal with two cubs is 45 85 sq. km; a male 120 sq. km. Snow leopard main preys on ibex (41.1 percent), roe-deer (31.0 percent), and moral (13.8 percent); in summer on gray marmot (28.6 percent). Snow leopard is also known to prey on hares, birds, argali, and elks.
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Notes Full text available in RussianJournal Title: Zoological studies in Kazakhstan. Approved no
Call Number SLN @ rana @ 590 Serial 107
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Author (down) Bagchi, S.; Mishra, C.; Bhatnagar, Y.
Title Conflicts between traditional pastoralism and conservation of Himalayan ibex (Capra sibirica) in the Trans-Himalayan mountains Type Journal Article
Year 2004 Publication Animal Conservation Abbreviated Journal
Volume 7 Issue Pages 121-128
Keywords conflicts; traditional pastoralism; himalayan ibex; ibex; capra sibirica; trans-himalayan mountains; pin valley national park; spiti region; non-metric multidimensional scaling; snow leopard; wolf; wild dog; Lynx; wild ass; Tibetan argali; Tibetan antelope; Tibetan gazelle; urial; bharal; Pin River; pin valley; Parahio; goat; sheep; Cattle; horses; yaks; donkeys; diet; free-ranging horses; herded horses; grazing; 5290
Abstract There is recent evidence to suggest that domestic livestock deplete the density and diversity of wild herbivores in the cold deserts of the Trans-Himalaya by imposing resource limitations. To ascertain the degree and nature of threats faced by Himalayan ibex (Capra sibirica) from seven livestock species, we studied their resource use patterns over space, habitat and food dimensions in the pastures of Pin Valley National Park in the Spiti region of the Indian Himalaya. Species diet profiles were obtained by direct observations. We assessed the similarity in habitat use and diets of ibex and livestock using Non-Metric Multidimensional Scaling. We estimated the influence of the spatial distribution of livestock on habitat and diet choice of ibex by examining their co-occurrence patterns in cells overlaid on the pastures. The observed co-occurrence of ibex and livestock in cells was compared with null-models generated through Monte Carlo simulations. The results suggest that goats and sheep impose resource limitations on ibex and exclude them from certain pastures. In the remaining suitable habitat, ibex share forage with horses. Ibex remained relatively unaffected by other livestock such as yaks, donkeys and cattle. However, most livestock removed large amounts of forage from the pastures (nearly 250 kg of dry matter/day by certain species), thereby reducing forage availability for ibex. Pertinent conservation issues are discussed in the light of multiple-use of parks and current socio-economic transitions in the region, which call for integrating social and ecological feedback into management planning.
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Notes Document Type: English Approved no
Call Number SLN @ rana @ 514 Serial 106
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Author (down) Bagchi, S., Mishra, C., Bhatnagar, Y.V., McCarthy, T.
Title Out of Steppe? Pastoralism and ibex conservation in Spiti. Type Report
Year 2002 Publication CERC Technical Report No. 7 Abbreviated Journal
Volume Issue Pages
Keywords steppe, snow leopard, pastoral, conservation, ibex, Spiti, India
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Corporate Author Nature Conservation Foundation, India; Wildlife Institute of India, International Snow Leopard Trust, Seattle Thesis
Publisher Place of Publication Editor
Language English Summary Language Original Title
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Notes Approved no
Call Number SLN @ rana @ Serial 1274
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Author (down) Bacha, M.S.
Title Snow leopard recovery program for Kishtwar High Altitude National Park Jammu and Kashmir State 1986-7 to 1989-90 Type Report
Year 1990 Publication Abbreviated Journal
Volume Issue Pages 1-58
Keywords Jammu; Kashmir; national park; protection; recovery; snow leopard; wildlife
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Publisher Place of Publication Srinagar, Kashmir Editor
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Notes Department of Wildlife Protection, Jammu and Kashmir State, Srinagar. Report prepared by Research Officer Mr. M. Shafi Bacha. Approved no
Call Number SLN @ rana @ 946 Serial 105
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Author (down) Augugliaro, C., Christe, P., Janchivlamdan, C., Baymanday, H., Zimmermann, F.
Title Patterns of human interaction with snow leopard and co-predators in the Mongolian western Altai: Current issues and perspectives Type Journal Article
Year 2020 Publication Global Ecology and Conservation Abbreviated Journal
Volume 24 Issue Pages 1-21
Keywords Depredation Human-carnivores interaction Mongolian altai Snow leopard Wolf Wolverine
Abstract Large carnivores can cause considerable economic damage,

mainly due to livestock depredation. These conficts instigate negative

attitude towards their conservation, which could in the extreme case

lead to retaliatory killing. Here we focus on the snow leopard (Panthera

uncia), a species of conservation concern with particularly large

spatial requirements. We conducted the study in the Bayan Olgii

province, one of the poorest provinces of Mongolia, where the majority

of the human population are traditional herders. We conducted a survey

among herders (N 261) through a semi-structured questionnaire with the

aim to assess: the current and future herding practices and prevention

measures, herders’ perceptions and knowledge of the environmental

protection and hunting laws; the perceived livestock losses to snow

leopard, wolf (Canis lupus), and wolverine (Gulo gulo), as well as to

non-predatory factors; the key factors affecting livestock losses to

these three large carnivores; and, finally, the attitudes towards these

three large carnivores. Non-predatory causes of mortality were slightly

higher than depredation cases, representing 4.5% and 4.3% of livestock

holdings respectively. While no depredation of livestock was reported

from wolverines, snow leopard and wolf depredation made up 0.2% and 4.1%

of total livestock holdings, respectively. Herders’ attitudes towards

the three large carnivores were negatively affected by the magnitude of

the damages since they had a positive overall attitude towards both snow

leopard and wolverine, whereas the attitude towards wolf was negative.

We discuss conservation and management options to mitigate herder-snow

leopard impacts. To palliate the negative consequences of the increasing

trend in livestock numbers, herd size reduction should be encouraged by

adding economic value to the individual livestock and/or by promoting

alternative income and/or ecotourism. Furthermore, co-management between

government and stakeholders would help tackle this complex problem, with

herders playing a major role in the development of livestock management

strategies. Traditional practices, such as regularly shifting campsites

and using dogs and corrals at night, could reduce livestock losses

caused by snow leopards.
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Notes Approved no
Call Number Serial 1627
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Author (down) Atzeni, L., Wang, J., Riordan, P., Shi, K., Cushman, S. A.
Title Landscape resistance to gene flow in a snow leopard population from Qilianshan National Park, Gansu, China Type Journal Article
Year 2023 Publication Landscape Ecology Abbreviated Journal
Volume Issue Pages
Keywords Landscape genetics · MLPE · Gene flow · Genetic distance · Isolation by distance · Isolation by resistance · Landscape resistance · Snow leopard · Principal component analysis
Abstract Context: The accurate estimation of landscape resistance to movement is important for ecological understanding and conservation applications. Rigorous estimation of resistance requires validation and optimization. One approach uses genetic data for the optimization or validation of resistance models. Objectives We used a genetic dataset of snow leopards from China to evaluate how landscape genetics resistance models varied across genetic distances and spatial scales of analysis. We evaluated whether landscape genetics models were superior to models of resistance derived from habitat suitability or isolation-by-distance.

Methods: We regressed genetically optimized, habitat-based, and isolation-by-distance hypotheses against genetic distances using mixed effect models. We explored all subset combinations of genetically optimized variables to find the most supported resistance scenario for each genetic distance.

Results: Genetically optimized models always out-performed habitat-based and isolation-by-distance hypotheses. The choice of genetic distances influenced the apparent influence of variables, their spatial scales and their functional response shapes, producing divergent resistance scenarios. Gene flow in snow leopards was largely facilitated by areas of intermediate ruggedness at intermediate elevations corresponding to small-to-large valleys within and between the mountain ranges.

Conclusions: This study highlights that landscape genetics models provide superior estimation of functional dispersal than habitat surrogates and suggests that optimization of genetic distance should be included as an optimization routine in landscape genetics, along with variables, scales, effect size and functional response shape. Furthermore, our study provides new insights on the ecological conditions that promote gene flow in snow leopards, which expands ecological knowledge, and we hope will improve conservation planning.
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Notes Approved no
Call Number SLN @ rakhee @ Serial 1720
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Author (down) Atzeni, L., Cushman, S. A., Bai, D., Wang, J., Chen, P., Shi, K., Riordan, P.
Title Meta-replication, sampling bias, and multi-scale model selection: A case study on snow leopard (Panthera uncia) in western China. Type Journal Article
Year 2020 Publication Ecology and Evolution Abbreviated Journal
Volume Issue Pages 1-27
Keywords MaxEnt, meta-replication, multi-scale, Panthera uncia, sampling bias, scale selection, snow leopard, species distribution model
Abstract Replicated multiple scale species distribution models (SDMs)

have become increasingly important to identify the correct variables

determining species distribution and their influences on ecological

responses. This study explores multi-scale habitat relationships of the

snow leopard (Panthera uncia) in two study areas on the Qinghai–Tibetan

Plateau of western China. Our primary objectives were to evaluate the

degree to which snow leopard habitat relationships, expressed by

predictors, scales of response, and magnitude of effects, were

consistent across study areas or locally landcape-specific. We coupled

univariate scale optimization and the maximum entropy algorithm to

produce multivariate SDMs, inferring the relative suitability for the

species by ensembling top performing models. We optimized the SDMs based

on average omission rate across the top models and ensembles’ overlap

with a simulated reference model. Comparison of SDMs in the two study

areas highlighted landscape-specific responses to limiting factors.

These were dependent on the effects of the hydrological network,

anthropogenic features, topographic complexity, and the heterogeneity of

the landcover patch mosaic. Overall, even accounting for specific local

differences, we found general landscape attributes associated with snow

leopard ecological requirements, consisting of a positive association

with uplands and ridges, aggregated low-contrast landscapes, and large

extents of grassy and herbaceous vegetation. As a means to evaluate the

performance of two bias correction methods, we explored their effects on

three datasets showing a range of bias intensities. The performance of

corrections depends on the bias intensity; however, density kernels

offered a reliable correction strategy under all circumstances. This

study reveals the multi-scale response of snow leopards to environmental

attributes and confirms the role of meta-replicated study designs for

the identification of spatially varying limiting factors. Furthermore,

this study makes important contributions to the ongoing discussion about

the best approaches for sampling bias correction.
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Notes Approved no
Call Number Serial 1616
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