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Author Johansson, O., Nyam, E., Lkhagvajav, P., Alexander, J. A., Samelius, G. pdf 
  Title Predation Patterns and Hunting Behaviour of Snow Leopards: Insights from an Ibex Hunt Type Journal Article
  Year (down) 2023 Publication Snow Leopard Reports Abbreviated Journal  
  Volume Issue Pages 6-9  
  Keywords ambush, Capra sibirica, kill site, mountain, Panthera uncia  
  Abstract The hunting behaviours of the snow leopard (Panthera uncia) are poorly understood. In this note, we describe the successful hunt of an adult male ibex (Capra sibirica) by a known male snow leopard in Tost Mountains, Mongolia. The hunt started in a mountain slope close to three large boulders and progressed downhill for 115 m until it concluded at the bottom of a drainage. By comparing the habitat where the ibex was killed to the kill sites of 158 ibex and 17 argali (Ovis ammon) that were killed by GPS-collared snow leopards, we demonstrate that the majority (62%) of these kills occurred in drainages. We propose that in successful hunts, snow leopards commonly ambush from above, causing prey individuals to typically flee downhill. Thereby the prey maintain their momentum and it is not until they are slowed down upon reaching the bottom of the drainage that the snow leopards are able to subdue them.  
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  Notes Approved no  
  Call Number SLN @ rakhee @ Serial 1730  
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Author Zhang, C., Ma, T., Ma, D. pdf 
  Title Status of the snow leopard Panthera uncia in the Qilian Mountains, Gansu Province, China Type Journal Article
  Year (down) 2023 Publication Oryx Abbreviated Journal  
  Volume Issue Pages 1-6  
  Keywords Camera trapping, China, density, Panthera uncia, Qilian Mountains, snow leopard, spatially explicit capture–recapture  
  Abstract Population density estimation is integral to the effective conservation and management of wildlife. The snow leopard Panthera uncia is categorized as Vulnerable on the IUCN Red List, and reliable information on its density is a prerequisite for its conservation and management. Little is known about the status of the snow leopard in the central and eastern Qilian Mountains, China. To address this, we estimated the population density of the snow leopard using a spatially explicit capture–recapture model based on camera trapping in Machang in the central and eastern Qilian Mountains during January–March 2019. We set up

40 camera traps and recorded 84 separate snow leopard captures over 3,024 trap-days. We identified 18 individual snow leopards and estimated their density to be 2.26/100 km. Our study provides baseline information on the snow leopard and the first population estimate for the species in the central and eastern Qilian Mountains.
 
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  Notes Approved no  
  Call Number SLN @ rakhee @ Serial 1725  
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Author Khanyari, M., Zhumabai uulu, K., Luecke, S., Mishra, C., Suryawanshi, K. url 
  Title Understanding population baselines: status of mountain ungulate populations in the Central Tien Shan Mountains, Kyrgyzstan Type Journal Article
  Year (down) 2020 Publication Mammalia Abbreviated Journal  
  Volume Issue Pages 1-8  
  Keywords conservation; human-use landscapes; hunting concession; mountain ungulates; population baselines; protected areas.  
  Abstract We assessed the density of argali (Ovis ammon) and ibex

(Capra sibirica) in Sarychat-Ertash Nature Reserve and its neighbouring

Koiluu valley. Sarychat is a protected area, while Koiluu is a human-use

landscape which is a partly licenced hunting concession for mountain

ungulates and has several livestock herders and their permanent

residential structures. Population monitoring of mountain ungulates can

help in setting measurable conservation targets such as appropriate

trophy hunting quotas and to assess habitat suitability for predators

like snow leopards (Panthera uncia). We employed the double-observer

method to survey 573 km2 of mountain ungulate habitat inside Sarychat

and 407 km2 inside Koiluu. The estimated densities of ibex and argali in

Sarychat were 2.26 (95% CI 1.47–3.52) individuals km-2 and 1.54 (95% CI

1.01–2.20) individuals km-2, respectively. Total ungulate density in

Sarychat was 3.80 (95% CI 2.47–5.72) individuals km-2. We did not record

argali in Koiluu, whereas the density of ibex was 0.75 (95% CI

0.50–1.27) individuals km-2. While strictly protected areas can achieve

high densities of mountain ungulates, multi-use areas can harbour

meaningful

though suppressed populations. Conservation of mountain ungulates and

their predators can be enhanced by maintaining Sarychat-like “pristine”

areas interspersed within a matrix of multi-use areas like Koiluu.
 
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  Notes Approved no  
  Call Number Serial 1610  
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Author Rovero, F., Augugliaro, C., Havmoller, R. W., Groff, C., Zimmerman, F., Oberosler, V., Tenan, S. url  doi
  Title Co-occurrence of snow leopard Panthera uncia, Siberian ibex Capra sibirica and livestock: potential relationships and effects Type Journal Article
  Year (down) 2018 Publication Oryx Abbreviated Journal  
  Volume Issue Pages 1-7  
  Keywords Altai mountains, camera trapping, human� wildlife conflict, Mongolia, occupancy, occurrence interactions, Siberian ibex, snow leopard  
  Abstract Understanding the impact of livestock on native

wildlife is of increasing conservation relevance. For the

Vulnerable snow leopard Panthera uncia, wild prey reduction,

intensifying human�wildlife conflicts and retaliatory

killings are severe threats potentially exacerbated by the

presence of livestock. Elucidating patterns of co-occurrence

of snow leopards, wild ungulate prey, and livestock, can be

used to assess the compatibility of pastoralism with conservation.

We used camera trapping to study the interactions of

livestock, Siberian ibex Capra sibirica and snow leopards in

a national park in the Altai mountains, Mongolia. We obtained

 detections of wild mammals and  of domestic

ungulates, dogs and humans. Snow leopards and Siberian

ibex were recorded  and  times, respectively. Co-occurrence

modelling showed that livestock had a higher estimated

occupancy (.) than ibex, whose occupancy was

lower in the presence of livestock (.) than in its absence

(.�. depending on scenarios modelled). Snow leopard

occupancy did not appear to be affected by the presence of

livestock or ibex but the robustness of such inference was

limited by uncertainty around the estimates. Although our

sampling at presumed snow leopard passing sites may have

led to fewer ibex detections, results indicate that livestock

may displace wild ungulates, but may not directly affect

the occurrence of snow leopards. Snow leopards could still

be threatened by livestock, as overstocking can trigger

human�carnivore conflicts and hamper the conservation

of large carnivores. Further research is needed to assess

the generality and strength of our results.
 
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  Call Number SLN @ rakhee @ Serial 1465  
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Author Kashkarov, E. url 
  Title THE SNOW LEOPARD OF KIRGIZIA: NATIONAL SHAME OR NATIONAL PRIDE Type Journal Article
  Year (down) 2017 Publication Abbreviated Journal  
  Volume Issue Pages 239-253  
  Keywords snow leopard, irbis, ibex, mountain sheep, conservation, range, reserve, monitoring, cameratrap, Sarychat, Kirgizia, Central Asia.  
  Abstract Article examines the problems existing in conservation of the snow leopard in Kirgizia after break-up of the

USSR. Unfortunate situation is common to most of the 14 countries in the snow leopard range, but seems

especially sharp to Kirgizia. Yet half of the century ago Kirgizia has had about 1.5 thousand of the snow

leopards, and today there remains no more than 1/10. In Soviet time Kirgizia was a global supplier of the

snow leopards for the zoo-export � to create a reserve number of endangered cats in captivity. Today, at

least half of the snow leopards in the Zoos of the world are individuals, caught in Kirgizia or their

descendants.

Since independence, Kirgizia has set new records. In Sarychat-Irtash reserve � the best for the snow

leopard in Central Asia, and probably in the whole range � this species was completely destroyed after 3

years of reserve opening... and 17 years later � revived... Situation comes presently back to the worst-case

scenario, and not only for the snow leopard. Author shows how work in this direction social and economic

levers, and what kind future he would like to see in Kirgizia, where he lived for 12 years and was at the

forefront of pioneering research of the snow leopard and its conservation.
 
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  Call Number SLN @ rakhee @ Serial 1454  
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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 (down) 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 LI. J, WANG. D, YIN. H,ZHAXI. D, JIAGONG. Z,SCHALLER. G. B,MISHRA. C,MCCARTHY. T. M, WANG. H,WU. L,XIAO. L,BASANG. L,ZHANG. Y,ZHOU. Y,LU. Z url 
  Title Role of Tibetan Buddhist Monasteries in Snow Leopard Conservation Type Journal Article
  Year (down) 2013 Publication Conservation Biology Abbreviated Journal  
  Volume 00 Issue Pages 1-8  
  Keywords conservation strategy, distribution, MaxEnt, nature reserve, Panthera uncia, sacred mountain  
  Abstract The snow leopard (Panthera uncia) inhabits the rugged mountains in 12 countries of Central Asia,

including the Tibetan Plateau. Due to poaching, decreased abundance of prey, and habitat degradation, it was listed as endangered by the International Union for Conservation of Nature in 1972. Current conservation strategies, including nature reserves and incentive programs, have limited capacities to protect snow leopards. We investigated the role of Tibetan Buddhist monasteries in snow leopard conservation in the Sanjiangyuan region in China’s Qinghai Province on the Tibetan Plateau. From 2009 to 2011, we systematically surveyed snow leopards in the Sanjiangyuan region. We used the MaxEnt model to determine the relation of their presence to environmental variables (e.g., elevation, ruggedness) and to predict snow leopard distribution. Model results showed 89,602 km2 of snow leopard habitat in the Sanjiangyuan region, of which 7674 km2 lay within Sanjiangyuan Nature Reserve’s core zones. We analyzed the spatial relation between snow leopard habitat and Buddhist monasteries and found that 46% of monasteries were located in snow leopard habitat and 90% were within 5 km of snow leopard habitat. The 336 monasteries in the Sanjiangyuan region could protect more snow leopard habitat (8342 km2) through social norms and active patrols than the nature reserve’s core zones. We conducted 144 household interviews to identify local herders’ attitudes and behavior toward snow leopards and other wildlife. Most local herders claimed that they did not kill wildlife, and 42% said they did not kill wildlife because it was a sin in Buddhism. Our results indicate monasteries play an important role in snow leopard conservation. Monastery-based snow leopard conservation could be extended to other Tibetan Buddhist regions that in total would encompass about 80% of the global range of snow leopards.
 
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  Notes Approved no  
  Call Number SLN @ rakhee @ Serial 1400  
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Author Ming, M.; Baowen, H.; Yu, M.; McCarthy, T.   
  Title Survey on Bird Species and Analysis on Bird Diversity in the Central Kunlun Mountains in the Early Winter Type Journal Article
  Year (down) 2010 Publication Arid Zone Research Abbreviated Journal  
  Volume 27 Issue 2 Pages 227-232  
  Keywords survey; species; analysis; diversity; central; Kunlun; mountains; mountain; winter  
  Abstract  
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  Notes Approved no  
  Call Number SLN @ rana @ 1098 Serial 687  
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Author Mongolian Biosphere & Ecology Association url 
  Title Mongolian Biosphere & Ecology Association Report March 2010 Type Manuscript
  Year (down) 2010 Publication Abbreviated Journal  
  Volume Issue Pages  
  Keywords nature; tourism; surveys; survey; snow; snow leopards; snow leopard; snow-leopards; snow-leopard; leopards; leopard; attack; domestic; Animals; Animal; illegal; illegal hunting; hunting; territory; province; 2010; hunt; 1990; movements; movement; pasture; desert; number; species; birds; river; mountain; hunters; hunter; recent; government; structure; management; national; central; people; Report; gobi; Gobi Desert; reproduction; Adult; meat; food; ibex; wild; wild sheep; sheep; marmot; nutrition; schools; population; use; local; big; big game; big-game; game; 310; mountains; wolves; wolf; Seasons; times; zones; global; Mongolia; 40; history; ecology  
  Abstract In accordance with order of the Ministry of Nature and Tourism,

zoologists of our association have made surveys in three ways such as

reasons why snow leopards attack domestic animals, “Snow leopard” trial

operation to count them and illegal hunting in territories of Khovd,

Gobi-Altai, Bayankhongor, Uvurkhangai and Umnugobi provinces from

September 2009 to January 2010. As result of these surveys it has made

the following conclusions in the followings: Reason to hunt them illegally: the principal reason is that

administrative units have been increased and territories of

administrative units have been diminished. There have been four

provinces in 1924 to 1926, 18 since 1965, 21 since 1990. Such situation

limits movements of herdsmen completely and pastures digressed much than

ever before. As result of such situation, 70% of pastures become desert.

Such digression caused not only heads of animals and also number of

species. Guarantee is that birds such as owls, cuckoo, willow grouse in

banks of Uyert river, Burkhanbuudai mountain, located in Biger soum,

Gobi-Altai province, which are not hunted by hunters, are disappearing

in the recent two decades. For that reason we consider it is urgently

necessary for the government to convert administrative unit structures

into four provinces. This would influence herdsmen moving across

hundreds km and pastures could depart from digression.

Second reason: cooperative movement won. The issues related to management and strengthening of national

cooperatives, considered by Central Committee of Mongolian People's

Revolutionary Party in the meeting in March 1953 was the start of

cooperatives' movement. Consideration by Yu. Tsedenbal, chairman of

Ministers Council, chairman of the MPRP, on report “Result of to unify

popular units and some important issues to maintain entity management of

agricultural cooperatives” in the fourth meeting by the Central

Committee of Mongolian People's Revolutionary Party /MPRP/ on December

16-17, 1959, proclaimed complete victory of cooperative. At the end of

1959, it could unify 767 small cooperative into 389 ones, unify 99.3 %

of herdsmen and socialize 73.3 % of animals. The remaining of animals

amount 6 million 163 thousands animals, and equals to 26.7% of total

animals. This concerned number of animals related to the article

mentioned that every family should have not more that 50 animals in

Khangai zone and not more 75 animals in Gobi desert. It shows that such

number could not satisfy needs of family if such number is divided into

five main animals in separating with reproduction animals and adult

animals. So herdsmen started hunt hoofed animals secretly and illegally

in order to satisfy their meat needs. Those animals included main food

of snow leopard such as ibex, wild sheep, and marmot. Third reason is that the state used to hunt ibex, which are main

nutrition of snow leopards, every year. The administrative unit of the

soum pursued policy to hunt ibex in order to provide meat needs of

secondary schools and hospitals. That's why this affected decrease of

ibex population. Preciously from 1986 to 1990 the permissions to hunt

one thousands of wild sheep and two thousands of ibexes were hunt for

domestic alimentary use every year. Not less than 10 local hunters of every soum used to take part in big

game of ibexes. Also they hunted many ibexes, chose 3-10 best ibexes and

hid them in the mountains for their consummation during hunting.

Fourth reason: hunting of wolves. Until 1990 the state used to give

prizes to hunter, who killed a wolf in any seasons of the year. Firstly

it offered a sheep for the wolf hunter and later it gave 25 tugrugs /15

USD/. Every year, wolf hunting was organized several times especially

picking wolf-cubs influenced spread and population of wolves. So snow

leopard came to the places where wolves survived before and attack

domestic animals. Such situation continued until 1990. Now population of

ibexes has decreased than before 1990 since the state stopped hunting

wolves, population of wolves increased in mountainous zones. We didn't

consider it had been right since it was natural event. However

population of ibexes decreased. Fifth reason: Global warming. In recent five years it has had a drought

and natural disaster from excessive snow in the places where it has

never had such natural disasters before. But Mongolia has 40 million

heads of domestic animals it has never increased like such quantity in

its history before. We consider it is not incorrect that decrease of

domestic animals could give opportunities to raise population of wild

animals. Our next survey is to make attempt to fix heads of snow leopards

correctly with low costs.
 
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  Notes Approved no  
  Call Number SLN @ rana @ 1100 Serial 705  
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Author Jegal, A.; Kashkarov, E.; Matyushkin E.N. url 
  Title Simple method to distinguish tracks of snow leopard and lynx Type Manuscript
  Year (down) 2010 Publication Abbreviated Journal  
  Volume Issue Pages  
  Keywords tracks; snow; snow leopard; snow-leopard; leopard; Lynx; gobi; Altai; mountain; range; mountains; region; distribution; Case; local; hunters; hunter; Animals; Animal  
  Abstract In the Mongolian and Gobi Altai mountain ranges and also in some other mountains in this region, the

distribution of the snow leopard and Eurasian lynx overlaps. In some cases, local hunters cannot

distinguish the tracks of both these animals. Therefore we outline a simple method to distinguish tracks of

the snow leopard and lynx.
 
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  Notes Two English translations of article are provided. Approved no  
  Call Number SLN @ rana @ 1101 Serial 491  
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