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Author Ming, M.; XuFeng; Turghan, M.; Shoujin, Y. url 
  Title Report on Snow Leopard (Uncia uncia) Surveys in Tomur, Xinjiang, China 2004 Type Miscellaneous
  Year 2004 Publication Abbreviated Journal  
  Volume Issue Pages  
  Keywords snow leopard; Uncia uncia; survey; distribution; abundance; population size; Tomur; Xinjiang; P.R.China; 5710  
  Abstract The Snow Leopard (Uncia uncia) investigation in the Tomur area is the second step of the “Project of Snow Leopard Study in Xinjiang”. In this part of the project, we collected information on the distribution , abundance and population size of the snow leopard in this area. The investigation lasted for 3 weeks, between October 17 and November 7th, 2004. During the 22 days of field work, we surveyed 4 different places in Wensu County, Aksu District: e.g. Pochenzi and the Muzat River area, Bozdun and the Little Kuzbay River area, Yinyar and the Tomur River area, Taglak and the Qiong Tailan River area. The 4 main areas, along with a few other valleys, covered most of the Tomur National Conservation Zone. In total, we ran 42 transects. In 15 transects, we found signs left by snow leopards. We also collected 15 fecal samples for diet analysis. This time we interviewed nearly 90 local people from different nationalities: e.g. Han (Chinese), Uygur and Kyrgyz people, including herdsmen, geologists, mineworkers, drivers, veterinarians, businessmen, forest officials, soldiers and policemen. They provided us with an array of information on the historical and current distribution and abundance of the snow leopard in this area.  
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  Publisher Xinjiang Snow Leopard Group; Xinjiang Institute of Ecology and Geography; Chinese Academy of Science Place of Publication Xinjian, P.R. of China Editor  
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  Notes Approved no  
  Call Number SLN @ rana @ 52 Serial 677  
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Author McCarthy, K.; Fuller, T.; Ming, M.; McCarthy, T.; Waits, L.; Jumabaev, K. url 
  Title Assessing Estimators of Snow Leopard Abundance Type Miscellaneous
  Year 2008 Publication Journal of Widlife Management Abbreviated Journal  
  Volume 72 Issue 8 Pages 1826-1833  
  Keywords abundance; camera,capture-recapture,density,index,predator:prey ratios,techniques,Tien Shan,Uncia; leopard; SaryChat; sign surveys; Slims; snow; snow-leopard; snow leopard; Tomur  
  Abstract The secretive nature of snow leopards (Uncia uncia) makes them difficult to monitor, yet conservation efforts require accurate and precise methods to estimate abundance. We assessed accuracy of Snow Leopard Information Management System (SLIMS) sign surveys by comparing them with 4 methods for estimating snow leopard abundance: predator:prey biomass ratios, capture-recapture density estimation, photo-capture rate, and individual identification through genetic analysis. We recorded snow leopard sign during standardized surveys in the SaryChat Zapovednik, the Jangart hunting reserve, and the Tomur Strictly Protected Area, in the Tien Shan Mountains of Kyrgyzstan and China. During June-December 2005, adjusted sign averaged 46.3 (SaryChat), 94.6 (Jangart), and 150.8 (Tomur) occurrences/km. We used

counts of ibex (Capra ibex) and argali (Ovis ammon) to estimate available prey biomass and subsequent potential snow leopard densities of 8.7 (SaryChat), 1.0 (Jangart), and 1.1 (Tomur) snow leopards/100 km2. Photo capture-recapture density estimates were 0.15 (n = 1 identified individual/1 photo), 0.87 (n = 4/13), and 0.74 (n = 5/6) individuals/100 km2 in SaryChat, Jangart, and Tomur, respectively. Photo-capture rates

(photos/100 trap-nights) were 0.09 (SaryChat), 0.93 (Jangart), and 2.37 (Tomur). Genetic analysis of snow leopard fecal samples provided minimum population sizes of 3 (SaryChat), 5 (Jangart), and 9 (Tomur) snow leopards. These results suggest SLIMS sign surveys may be affected by observer bias and environmental variance. However, when such bias and variation are accounted for, sign surveys indicate relative abundances similar to photo rates and genetic individual identification results. Density or abundance estimates based on capture-recapture or ungulate biomass did not agree with other indices of abundance. Confidence in estimated densities, or even detection of significant changes in abundance of snow leopard, will require more effort and better documentation.
 
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  Notes Approved no  
  Call Number SLN @ rana @ 881 Serial 653  
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Author Schaller, G. url 
  Title Surveys of Mountain Wildlife in China, Report # 6 Type Miscellaneous
  Year 1987 Publication Abbreviated Journal  
  Volume Issue Pages 10  
  Keywords Xinjiang; Tian-Shan; Tomur-Feng; tibetan-plateau; Altun; surveys; methods; hunting; livestock; grazing; browse; 4200  
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  Notes Full Text Available at URL Approved no  
  Call Number SLN @ rana @ 408 Serial 854  
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Author Xu, F.; Ming, M.; Yin, S.-jing; Mardan url 
  Title Snow Leopard Survey in Tumor Nature Reserve, Xingjiang Type Miscellaneous
  Year 2005 Publication Sichuan Journal of Zoology Abbreviated Journal  
  Volume 24 Issue 4 Pages 608-610  
  Keywords snow; snow leopard; snow-leopard; leopard; survey; nature; reserve; national; Xinjiang; China; sign; big; cat; spray; distribution; population; habitat; Habitat selection; selection; river; area; Tomur; transects; transect; scrapes; scrape; feces; areas; valley  
  Abstract Snow leopard survey was conducted in Oct-Nov 2004 at Tumor National Natural Reserve, Xinjiang, China. Because of its special living style, the snow leopard is difficult to observe by sight. Signs left by snow leopard become a good index to prove the existance of the big cat. There are mainly five kinds of signs, footprints, fectes, claw rakes and urine spray. From them we can know the distribution, probably population and habitat selection of snow leopard. This time in Tumor we investigated 5 difference places: Pochenzi in Mozat River area, Boxidun in Little Kuzbay River area, Yinyer in Tomur River area, Kurgan and Taglak in Quiong Tailan River area. 42 transects were run in this trip and a total of 57 signs found. Among them, footprints amounted to 71.9%, scrapes 21.1%, and feces 7.0%. The results showed that the big cat existed in Yinyer, Kurgan and Taglak areas and liked to select their habitat in the valley and didn't like to live in barren areas.  
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  Notes Approved no  
  Call Number SLN @ rana @ 873 Serial 1034  
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Author Xu, F.; Ma, M.; Wu, Y.-Q. url 
  Title Winter Daily Activity Rhythm and Time Budget of Ibex(Capra ibex) Type Miscellaneous
  Year 2006 Publication Abbreviated Journal  
  Volume Issue Pages  
  Keywords activities; activity; capra ibex; Daily activity rhythms; ibex; Time budget; Tomor Protected Area; winter; Xinjiang  
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  Notes Approved no  
  Call Number SLN @ rana @ 868 Serial 1035  
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Author Xu, F.; Ma, M.; Wu, Y.-Q. url 
  Title Population density and habitat utilization of ibex in Tomur National Nature Reserve,Xinjiang,China Type Miscellaneous
  Year 2007 Publication Abbreviated Journal  
  Volume Issue Pages  
  Keywords densities; density; habitat; habitat utilization; ibex; national; nature; population; Population-Density; Tomur  
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  Notes Approved no  
  Call Number SLN @ rana @ 867 Serial 1037  
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Author Johansson, Torbjorn, A. Johansson, Orjan. McCarthy, Tom url 
  Title An Automatic VHF Transmitter Monitoring System for Wildlife Research Type Journal Article
  Year 2011 Publication Wildlife Society Bulletin Abbreviated Journal  
  Volume 9999 Issue Pages 1-5  
  Keywords automatic system, monitoring, pulse detection, trap-site transmitter, VHF transmitter monitoring  
  Abstract We describe an automated system for monitoring multiple very high frequency (VHF) transmitters, which are commonly employed in wildlife studies. The system consists of a microprocessor-controlled radio-frequency monitor equipped with advanced signal-processing capabilities that communicates with, and relays information to, a user interface unit at a different location. the system was designed for a capture-and-release snow leopard (Panthera uncia) study in Mongolia, where checking trap-site transmitters manually entailed climbing a hill with telemetry equipment several times each day and night. Here, it monitors the trap-site transmitters and actively produces an alarm when any of the traps have been triggered, or if the system has lost contact with any trap-transmitter. The automated system allowed us to constantly monitor transmitters from a research camp, and alerted us each time a trap was triggered. The system has been field-tested for 83 days from mid-September 2010 to mid-december 2010 in the Tost mountain range on the edge of Mongolia's Gobi desert. During this time, the system performed reliably, responding correctly to 45 manually generated alarms and 9 animal captures. The system considerably shortens the time the captured animals spend in traps, and also mitigates the need for manual trap-site transmitter monitoring, greatly reducing risk to the animal and the human effort involved.  
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  Notes Approved no  
  Call Number SLN @ rakhee @ Serial 1379  
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