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Author Jackson, R.; Ahlborn, G. url 
  Title The role of protected areas in Nepal in maintaining viable populations of snow leopards Type Journal Article
  Year 1990 Publication (up) Int.Ped.Book of Snow Leopards Abbreviated Journal  
  Volume 6 Issue Pages 51-69  
  Keywords Nepal; conservation; management; parks; park; reserve; refuge; protected-area; browse; protected area; protected; area; island-biology-theory; population-limits; habitat; suitability; 3040  
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  Notes Full text at URL Approved no  
  Call Number SLN @ rana @ 165 Serial 444  
Permanent link to this record
 

 
Author Blomqvist, L. url 
  Title Three decades of Snow Leopards Panthera uncia in Captivity Type Journal Article
  Year 1995 Publication (up) Int.Zoo Yearbook Abbreviated Journal  
  Volume 34 Issue Pages 178-185  
  Keywords zoo; population; status; genetics; captive-animal-care; propogation; captivity; fertility; recruitment; mortality; browse; captive; Animal; care; 1360  
  Abstract The author reports the status of the captive population of snow leopards over the last three decades. Genetic and demographic information is also provided. The captive population as of 1992 was 541 leopards. klf. I  
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  Notes Document Type: English Approved no  
  Call Number SLN @ rana @ 256 Serial 165  
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Author Poyarkov, A. D., Munkhtsog, B., Korablev, M. P., Kuksin, A. N., Alexandrov, D. Y., Chistopolova, M. D.,Hernandez-Blanco, J. A., Munkhtogtokh, O., Karnaukhov, A. S., Lkhamsuren, N., Bayaraa, M., Jackson, R. M., Maheshwari, A., Rozhnov, V. V. url 
  Title Assurance of the existence of a trans-boundary population of the snow leopard (Panthera uncia) at Tsagaanshuvuut – Tsagan- Shibetu SPA at the Mongolia-Russia border Type Journal Article
  Year 2020 Publication (up) Integrative Zoology Abbreviated Journal  
  Volume Issue 15 Pages 224-231  
  Keywords FST, home range, Panthera uncia, snow leopard, trans-boundary population  
  Abstract The existence of a trans-boundary population of the snow leopard (Panthera uncia) that inhabits the massifs of Tsagaanshuvuut (Mongolia) – Tsagan-Shibetu (Russia) was determined through non-invasive genetic analysis of scat samples and by studying the structure of territory use by a collared female individual. The genetic analysis included species identification of samples through sequencing of a fragment of the cytochrome b gene and individual identification using a panel of 8 microsatellites. The home range of a female snow leopard marked with a satellite Global Positioning System (GPS) collar was represented by the minimum convex polygon method (MCP) 100, the MCP 95 method and the fixed kernel 95 method. The results revealed insignificant genetic differentiation between snow leopards that inhabit both massifs (minimal fixation index [FST]), and the data testify to the unity of the cross-border group. Moreover, 5 common individuals were identified from Mongolian and Russian territories. This finding clearly shows that their home range includes territories of both countries. In addition, regular movement of a collared snow leopard in Mongolia and Russia confirmed the existence of a cross-border snow leopard group. These data support that trans-boundary conservation is important for snow leopards in both countries. We conclude that it is crucial for Russia to study the northern range of snow leopards in Asia.  
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  Notes Approved no  
  Call Number SLN @ rakhee @ Serial 1493  
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Author Blomqvist, L. url 
  Title The global snow leopard population in captivity 2001 Type Miscellaneous
  Year 2003 Publication (up) International Pedigree Book of Snow Leopards Abbreviated Journal  
  Volume 8 Issue Pages 21-24  
  Keywords captivity; global; population; snow leopard  
  Abstract  
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  Publisher Place of Publication Editor  
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  Series Editor Series Title Abbreviated Series Title  
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  Area Expedition Conference  
  Notes Approved no  
  Call Number SLN @ rana @ 919 Serial 171  
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Author Blomqvist, L. url 
  Title The 1979 world register for the captive population of snow leopards, Panthera uncia Type Book Chapter
  Year 1980 Publication (up) International Pedigree Book of Snow Leopards Abbreviated Journal  
  Volume Issue Pages 62-75  
  Keywords captive; captive-population; panthera uncia; snow leopard  
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  Corporate Author Thesis  
  Publisher Helsinki Zoo Place of Publication Helsinki Editor Blomqvist, L.  
  Language Summary Language Original Title  
  Series Editor Series Title Abbreviated Series Title  
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  Area Expedition Conference  
  Notes Approved no  
  Call Number SLN @ rana @ 997 Serial 150  
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Author Blomqvist, L. url 
  Title The 1981 annual report of the captive snow leopards (Panthera uncia) population Type Report
  Year 1982 Publication (up) International Pedigree Book of Snow Leopards Abbreviated Journal  
  Volume Issue Pages 41-47  
  Keywords captive; Panthera-uncia; panthera uncia; pedigree; population; snow leopard  
  Abstract  
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  Publisher Place of Publication Editor  
  Language Summary Language Original Title  
  Series Editor Series Title International Pedigree Book of Snow Leopards Abbreviated Series Title  
  Series Volume 3 Series Issue Edition  
  ISSN ISBN Medium  
  Area Expedition Conference  
  Notes Approved no  
  Call Number SLN @ rana @ 956 Serial 155  
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Author Freeman, H. url 
  Title The snow leopard, today and yesterday Type Book Chapter
  Year 1980 Publication (up) International Pedigree Book of Snow Leopards, Vol. 2 Abbreviated Journal  
  Volume 2 Issue Pages 37-43  
  Keywords captive; captive populations; captivity; International; pedigree; snow-leopard; snow-leopards; snow leopard; snow leopards; zoo  
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  Corporate Author Thesis  
  Publisher Helsinki Zoo Place of Publication Helsinki Editor Blomqvist, L.  
  Language Summary Language Original Title  
  Series Editor Series Title Abbreviated Series Title  
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  ISSN ISBN Medium  
  Area Expedition Conference  
  Notes Approved no  
  Call Number SLN @ rana @ 1049 Serial 316  
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Author Blomqvist, L. url 
  Title The 1978 register for the captive population of snow leopards, Panthera uncia Type Journal Article
  Year 1979 Publication (up) International Zoo News Abbreviated Journal  
  Volume 26 Issue 7-8 Pages 17-23  
  Keywords captive; captive-population; Panthera-uncia; panthera uncia; population; snow leopard  
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  Notes Approved no  
  Call Number SLN @ rana @ 955 Serial 147  
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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 2020 Publication (up) 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 Durbach, I., Borchers, D., Sutherland, C., Sharma, K. url 
  Title Fast, flexible alternatives to regular grid designs for spatial capture–recapture. Type Research Article
  Year 2020 Publication (up) Methods in Ecology and Evolution Abbreviated Journal  
  Volume Issue Pages 1-13  
  Keywords camera trap, population ecology,sampling, spatial capture-recapture, surveys  
  Abstract Spatial capture–recapture (SCR) methods use the location of

detectors (camera traps, hair snares and live-capture traps) and the

locations at which animals were detected (their spatial capture

histories) to estimate animal density. Despite the often large expense

and effort involved in placing detectors in a landscape, there has been

relatively little work on how detectors should be located. A natural

criterion is to place traps so as to maximize the precision of density

estimators, but the lack of a closed-form expression for precision has

made optimizing this criterion computationally demanding. 2. Recent

results by Efford and Boulanger (2019) show that precision can be well

approximated by a function of the expected number of detected

individuals and expected number of recapture events, both of which can

be evaluated at low computational cost. We use these results to develop

a method for obtaining survey designs that optimize this approximate

precision for SCR studies using count or binary proximity detectors, or

multi-catch traps. 3. We show how the basic design protocol can be

extended to incorporate spatially varying distributions of activity

centres and animal detectability. We illustrate our approach by

simulating from a camera trap study of snow leopards in Mongolia and

comparing estimates from our designs to those generated by regular or

optimized grid designs. Optimizing detector placement increased the

number of detected individuals and recaptures, but this did not always

lead to more precise density estimators due to less precise estimation

of the effective sampling area. In most cases, the precision of density

estimators was comparable to that obtained with grid designs, with

improvement in some scenarios where approximate CV(¬D) < 20% and density

varied spatially. 4. Designs generated using our approach are

transparent and statistically grounded. They can be produced for survey

regions of any shape, adapt to known information about animal density

and detectability, and are potentially easier and less costly to

implement. We recommend their use as good, flexible candidate designs

for SCR surveys when reasonable knowledge of model parameters exists. We

provide software for researchers to construct their own designs, in the

form of updates to design functions in the r package oSCR.
 
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  Area Expedition Conference  
  Notes Approved no  
  Call Number Serial 1618  
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