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Author |
Wharton, D.; Mainka, S.A. |
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Title |
Captive Management of the Snow Leopard |
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Conference Article |
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1994 |
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Volume ![sorted by Volume (numeric) field, descending order (down)](img/sort_desc.gif) |
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135-148 |
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zoos; captivity; captive; management; husbandry; diet; social; behavior; housing; habitat; breeding; status; distribution; parasites; vaccination; quarantine; Disease; medical; veterinary; medicine; ceasarean; hand-rearing; browse; hand rearing; hand; rearing; 3550 |
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Islt |
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Usa |
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J.L.Fox; D.Jizeng |
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Full Text at URLTitle, Monographic: Seventh International Snow Leopard SymposiumPlace of Meeting: ChinaDate of Copyright: 1994 |
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SLN @ rana @ 265 |
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1017 |
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Author |
Xinchun, M. |
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Distribution in the wild and the captive raising of snow leopards in Xinjiang, China |
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1994 |
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157-162 |
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distribution; habitat; ibex; blue-sheep; argali; hides; skins; pelts; furs; coats; zoos; zoo; China; captivity; care; husbandry; feeding; diet; housing; Disease; blue; sheep; browse; 3770 |
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Islt |
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Usa |
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J.L.Fox; D.Jizeng |
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Full text at URLTitle, Monographic: Seventh International Snow Leopard SymposiumPlace of Meeting: ChinaDate of Copyright: 1994 |
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SLN @ rana @ 267 |
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1031 |
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Author |
Bogdanov O.P. |
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Title |
Snow leopard or irbis Uncia Uncia |
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Miscellaneous |
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1992 |
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Volume ![sorted by Volume (numeric) field, descending order (down)](img/sort_desc.gif) |
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76-80 |
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Ussr; Uzbekistan; Pamir; tien shan; Hissar ridge; Turkestan ridge; Chatkal ridge; juniper forest; snow leopard; species range; hunting; behavior; diet; reproductive activity; number; ibex; mountain sheep.; 6380; Russian |
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Snow leopard and its habitat within the USSR and Uzbek SSR are described. Its habitat in the Chatkal and Hissar ridges are described too. Given are data concerning alimentary biology, reproduction, and attitude to man. Female snow leopards become mature at the age of two three years, male at the age of four years. Reproduction occurs once every two years. Presumably, there are 10 animals in the country. Snow leopard is protected in four nature reserves in Uzbekistan and a number of nature reserves in neighbour countries. |
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Full text available in RussianJournal Title: Rare and endangered animals of Uzbekistan. Encyclopedic reference book. |
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SLN @ rana @ 616 |
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185 |
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Aryal, A. |
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Final Report On Demography and Causes of Mortality of Blue Sheep (Pseudois nayaur) in Dhorpatan Hunting Reserve in Nepal |
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Report |
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2009 |
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Volume ![sorted by Volume (numeric) field, descending order (down)](img/sort_desc.gif) |
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1-53 |
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Report; mortality; blue; blue sheep; blue-sheep; sheep; Pseudois; pseudois nayaur; Pseudois-nayaur; nayaur; Dhorpatan; hunting; reserve; Nepal; biodiversity; research; training; snow; snow leopard; snow-leopard; leopard; conservation; program; population; Population-Density; density; densities; change; Sex; study; area; High; poaching; Pressure; reducing; number; predators; predator; poison; wolf; wolves; canis; Canis-lupus; lupus; wild; wild boar; prey; prey species; prey-species; species; scats; scat; value; fox; cover; deer; diet; leopards; pika; snow leopards; snow-leopards; soil; Relationship |
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A total of 206 individual Blue sheep Pseudois nayaur were estimated in Barse and Phagune blocks of Dhorpatan Hunting Reserve (DHR) and population density was 1.8 Blue sheep/sq.km. There was not significant change in population density from last 4 decades. An average 7 animals/herd (SD-5.5) were classified from twenty nine herds, sheep per herds varying from 1 to 37. Blue sheep has classified into sex ratio on an average 75 male/100females was recorded in study area. The sex ratio was slightly lower but not significantly different from the previous study. Population of Blue sheep was seen stable or not decrease even there was high poaching pressure, the reason may be reducing the number of predators by poison and poaching which has
supported to increase blue sheep population. Because of reducing the predators Wolf Canis lupus, Wild boar population was increasing drastically in high rate and we can observed wild boar above the tree line of DHR. The frequency of occurrence of different prey species in scats of different predators shows that, excluding zero values, the frequencies of different prey species were no significantly different (ö2= 10.3, df = 49, p > 0.05). Most of the scats samples (74%) of Snow leopard, Wolf, Common Leopard, Red fox's cover one prey species while two and three species were present in 18% and 8%, respectively. Barking deer Muntiacus muntjak was the most frequent (18%) of total diet composition of common leopards. Pika Ochotona roylei was the most frequent (28%), and Blue sheep was in second position for diet of snow leopards which cover 21% of total diet composition. 13% of diet covered non-food item such as soil, stones, and vegetable. Pika was most frequent on Wolf and Red fox diet which covered 32% and 30% respectively. There was good positive relationship between the scat density and Blue sheep consumption rate, increasing the scat density, increasing the Blue sheep consumption rate. Blue sheep preference by different predators such as Snow leopard, Common leopard, Wolf and Red fox were 20%, 6%, 13% and 2% of total prey species respectively. |
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The Biodiversity Research and Training Forum (BRTF) Nepal. Email: savefauna@yahoo.com
Submitted to Snow Leopard Conservation Grants Program, USA. |
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Call Number |
SLN @ rana @ 1064 |
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104 |
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Anwar, M., Jackson, R., Nadeem, M., Janecka, J., Hussain, S., Beg, M., Muhammad, G., and Qayyum, M. |
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Food habits of the snow leopard Panthera uncia (Schreber, 1775) in Baltistan, Northern Pakistan |
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2011 |
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European Journal of Wildlife Research |
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3 March |
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1-7 |
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Himalayas, Karakoram, Scat, Diet, Hair, Livestock, Biomass |
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The snow leopard (Panthera uncia) inhabits the high, remote mountains of Pakistan from where very little information is available on prey use of this species. Our study describes the food habits of the snow leopard in the Himalayas and Karakoram mountain ranges in Baltistan, Pakistan. Ninety-five putrid snow leopard scats were collected from four sites in Baltistan. Of these, 49 scats were genetically confirmed to have originated from snow leopards. The consumed prey was identified on the basis of morphological characteristics of hairs recovered from the scats. It was found that most of the biomass consumed (70%) was due to domestic livestock viz. sheep (23%), goat (16%), cattle (10%), yak (7%), and cattle–yak hybrids (14%). Only 30% of the biomass was due to wild species, namely Siberian ibex (21%), markhor (7%), and birds (2%). Heavy predation on domestic livestock appeared to be the likely cause of conflict with the local inhabitants. Conservation initiatives should focus on mitigating this conflict by minimizing livestock losses. |
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Springer Berlin / Heidelberg |
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English |
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1612-4642 |
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SLN @ rana @ |
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1304 |
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Author |
Aromov B. |
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Title |
The Biology of the Snow Leopard in the Hissar Nature Reserve |
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Miscellaneous |
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1995 |
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Volume ![sorted by Volume (numeric) field, descending order (down)](img/sort_desc.gif) |
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108-109 |
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Uzbekistan; snow leopard; Hissar ridge; Hissar nature reserve; number; diet; breeding.; 6070; Russian; work; Data; biology; snow; snow-leopard; leopard; nature; reserve; snow leopards; snow-leopards; leopards; times; tracks; pugmarks; Feed; ibex; kills; kill; Age; records; predation; Case; horses; horse; marmot; Himalayan; domestic; goat; wild; wild boar; sheep; Cattle; attack |
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The work contains data on biology snow leopard in Hissar nature reserve, Uzbekistan. The number of snow leopards in this reserve has increased from two or four in 1981 to between 13 and 17 individuals in 1994. Since 1981, snow leopards have been sighted 72 times and their tracks or pugmarks 223 times. In the Hissar Nature Reserve snow leopards largely feed on ibex. Over a period of 14 years, 92 kills and remains of ibex aged from one to thirteen years of age have been examined. Other records of predation, by the number of events observed, include 33 cases of juvenile and mature horses, 25 long-tailed marmot (Marmota caudata). 18 Himalayan snowcock (Tetraogallus himalayemis), 17 domestic goat, 13 wild boar (Sus scrofa), five domestic sheep and three incidents involving cattle. Twenty-two attacks on domestic flocks were reported, and these occurred during both the daytime and at night. Snow leopards usually mate between the 20th of February and March 20th. The offspring are born in late April to May, and there are usually two per litter (23 encounters), although a single litter of three has also been recorded. |
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Full text available in RussianJournal Title: Proceeding of 8th International Snow Leopard Symposium Islamabad. |
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SLN @ rana @ 586 |
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99 |
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Aramov, B. |
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The Biology of the Snow Leopard in the Gissarsky Nature Reserve |
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1997 |
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Volume ![sorted by Volume (numeric) field, descending order (down)](img/sort_desc.gif) |
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108-109 |
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breeding; diet; predator; prey; reserve; reserves; park; parks; refuge; livestock; marmot; goat; sheep; horse; ibex; habitat; Gissarsky; Tajikistan; Russia; Ussr; Soviet-Union; behavior; wolves; Dogs; herder; herders; protected-area; browse; soviet; union; soviet union; 2820 |
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Islt |
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Lahore, Pakistan |
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Jackson, R. and A.A. |
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Full Text at URLTitle, Monographic: Eighth International Snow Leopard SymposiumPlace of Meeting: Islamabad. PakistanDate of Copyright: 1997 |
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Call Number |
SLN @ rana @ 302 |
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95 |
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Wu, D., Maming, R., Xu, G., Zhu X., Buzzard, P. |
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Relationship between ibex and snow leopard about food chain and population density in Tian Shan |
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2015 |
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Selevinia |
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Volume ![sorted by Volume (numeric) field, descending order (down)](img/sort_desc.gif) |
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186-190 |
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diet, ibex, snow leopard |
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Many studies have demonstrated that ibex (Capra sibirica) are the most frequently eaten prey of snow
leopards (Panthera uncia) in Xinjiang, the west of China. Thus, an understanding of interactions between these species may have significant management and conservation of implications for both. In this study, we provide information on ibex grouping and density over a 24 month period in the Tian Shan of Xinjiang, China. We then use ibex density to estimate the density of snow leopards. We observed ibex primarily in ewe-lamb groups (N=880), but ibex sexual segregation and grouping changed seasonally with more mixed-sex groups during the winter rut. We observed the most ibex in April 2014 and 2015 with an average of (2422 ± 119 ibex). Over the 1643 km2 study area we then estimated an ibex density of 154 ± 23 ibex /100 km2 from which we estimated a density of 1.31~2.58 snow leopards/100 km2. |
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SLN @ rakhee @ |
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1439 |
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Weiskopf, S. R., Kachel, S. M., McCarthy, K. P. |
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Title |
What Are Snow Leopards Really Eating? Identifying Bias in Food-Habit Studies |
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2016 |
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Wildlife Society Bulletin |
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1-8 |
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diet, DNA genotyping, feces, Panthera uncia, scat, snow leopard. Lack of |
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Declining prey populations are widely recognized as a primary threat to snow leopard (Panthera
uncia) populations throughout their range. Effective snow leopard conservation will depend upon reliable
knowledge of food habits. Unfortunately, past food-habit studies may be biased by inclusion of nontarget
species in fecal analysis, potentially misinforming managers about snow leopard prey requirements.
Differentiation between snow leopard and sympatric carnivore scat is now cost-effective and reliable using
genetics. We used fecal mitochondrial DNA sequencing to identify scat depositors and assessment bias in
snow leopard food-habit studies. We compared presumed, via field identification, and genetically confirmed
snow leopard scats collected during 2005 and 2012 from 4 sites in Central Asia, using standard forensic
microscopy to identify prey species. Field identification success varied across study sites, ranging from 21% to
64% genetically confirmed snow leopard scats. Our results confirm the importance of large ungulate prey for
snow leopards. Studies that fail to account for potentially commonplace misidentification of snow leopard
scat may mistakenly include a large percentage of scats originating from other carnivores and report
inaccurate dietary assessments. Relying on field identification of scats led to overestimation of percent
occurrence, biomass, and number of small mammals consumed, but underestimated values of these measures for large ungulates in snow leopard diet. This clarification suggests that the conservation value of secondary prey, such as marmots (Marmota spp.) and other small mammals, may be overstated in the literature; stable snow leopard populations are perhaps more reliant upon large ungulate prey than previously understood. |
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1445 |
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Khatoon, R., Hussain, I., Anwar, M., Nawaz, M. A. |
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Diet selection of snow leopard (Panthera uncia) in Chitral, Pakistan |
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2017 |
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Turkish Journal of Zoology |
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14 |
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914-923 |
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Snow leopard, conservation, seasonal variation, diet composition, Chitral, Pakistan |
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Snow leopard (Panthera uncia) is an elusive endangered carnivore found in remote mountain regions of Central Asia, with
sparse distribution in northern Pakistan, including Chitral and Baltistan. The present study determined the food habits of snow leopard,
including preferred prey species and seasonal variation in diet. Fifty-six scat samples were collected and analyzed to determine the
diet composition in two different seasons, i.e. summer and winter. Hair characteristics such as cuticular scale patterns and medullary
structure were used to identify the prey. This evidence was further substantiated from the remains of bones, claws, feathers, and other
undigested remains found in the scats. A total of 17 prey species were identified; 5 of them were large mammals, 6 were mesomammals,
and the remaining 6 were small mammals. The occurrence of wild ungulates (10.4%) in the diet was low, while livestock constituted a
substantial part (26.4%) of the diet, which was higher in summer and lower in winter. Mesomammals altogether comprised 33.4% of
the diet, with palm civet (Paguma larvata) as a dominant (16.8%) species, followed by golden marmot (Marmota caudate) (8.8%), which
was higher in winter. There was a significant difference in seasonal variation in domestic livestock and small mammals. The livestock
contribution of 26.4% observed in the present study indicates a significant dependence of the population on livestock and suggests
that the study area is expected to be a high-conflict area for snow leopards. The results of the current study would help improve the
conservation efforts for snow leopards, contributing to conflict resolution and effective management of this endangered cat. |
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1459 |
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