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Author (up) Graham, L.H.; Goodrowe, K.L.; Raeside, J.I.; Liptrap, R.M. url 
  Title Non-invasive monitoring of ovarian function in several felid species by measurement of fecal estradiol-17-beta and progestins Type Journal Article
  Year 1995 Publication Zoo Biology Abbreviated Journal  
  Volume 14 Issue 3 Pages 223-237  
  Keywords Artificial-Breeding-Program; captive-management; Estradiol-17beta; Pregnancy; Progesterone; Progestin; sexual-behavior; genetics; zoo; medicine; veterinary; snow-leopard; feces; fecal-analysis; snow leopard; artificial; breeding; program; captive; management; Estradiol; 17beta; sexual; behavior; browse; snow; leopard; fecal; analysis; 1390  
  Abstract An extraction and assay procedure to measure fecal estradiol-17-beta and progestin concentrations in several cat species was developed and validated for use for noninvasive monitoring of ovarian function. Fecal samples were collected over a range of 3-20 months from female tigers (three), lions (three), snow leopards (three), cheetahs (two), caracals (two), and domestic cats (five). Samples were extracted with 90% methanol, lipids removed with petroleum ether, and the estradiol and progestins in the methanol measured by radioimmunoassay (RIA). High Performance Liquid Chromatography (HPLC) fractionation and subsequent RIA of the fractions indicated that the estradiol-17-beta antiserum cross-reacted primarily with estradiol-17-beta in the feces of lions and tigers and was assumed to be specific for estradiol-17-beta in the feces of other species as well. However, there were several immunoreactive compounds, presumably progesterone metabolites, excreted in the feces which varied both quantitatively and qualitatively among species. The behavior of tigers, lions, cheetahs, and caracals was visually monitored during the collection period and frequency of sexual behaviors was positively correlated with increases in fecal estradiol in all species observed. The mean fecal estradiol-17-beta peaks were as follows: tigers, 128.0 +- 13.1; lions, 186.0 +- 14.8; snow leopards, 136.7 +- 15.9; cheetahs, 140.9 +- 9.0; caracals, 24.5 +- 4.0; and domestic cats 158.9 +- 19.3 ng/gm. Fecal progestin concentrations rose significantly (P lt 0,001) only after breeding or during pregnancy and were as follows: tigers, 5.6 +- 0.6; lions, 1.9 +- 0.1; cheetahs, 8.4 +- 1.1; and caracals, 2.4 +- 0.4 mu-g/gm. Fecal progestins were elevated for one-half to two-thirds of the gestation length during presumed pseudopregnancy but remained elevated throughout successful pregnancies. These results suggest that ovarian function can be monitored noninvasively in the family Felidae by the measurement of fecal estradiol-17-beta and progestin concentrations.  
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  Notes Document Type: English Approved no  
  Call Number SLN @ rana @ 279 Serial 345  
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Author (up) Gronberg, E. url 
  Title Movement patterns of snow leopard (Panthera uncia) around kills based on GPS location clusters Type Report
  Year 2011 Publication Abbreviated Journal  
  Volume Issue Pages  
  Keywords snow leopard, Panthera, Mongolia, Snow Leopard Trust, predator, prey, kill, behavior  
  Abstract Research concerning movement patterns of wild animals has been advancing since GPS technology arrived. But studying the snow leopard (Panthera uncia) is still difficult because of the harsh territory it inhabits in Central Asia. This study took place in south Gobi, Mongolia, and aimed to estimate the time spent at kills and the maximum distance away from kills between visits. Snow leopards were monitored with GPS collars that took a location every five or seven hours. Potential kill sites were established by identifying clusters of GPS-locations in ArcGIS and visited in the field for confirmation. ArcGIS was used to calculate the distance between cluster and GPS-locations. I used two buffer zones (100 m and 500 m radius) to define the time snow leopards spent at kills. It was found that snow leopard age and prey category affected time spent at kills and also that snow leopard sex together with prey category affected the maximum distance moved away from kills between visits. Season had no significant effect on either time at kills or distance moved away from kills between visits. Snow leopards spent on average 3.2 days at their kills in the 100 m buffer zone and 3.5 days at their kills in the 500 m buffer zone. Subadults stayed longer at kills than adults and animals of both age categories spent longer time on larger prey. The mean maximum distance moved away from kills between visits was 179 m in the 100 m buffer zone and 252 m in the 500 m buffer zone. Female snow leopards moved further away from kills between visits than male snow leopards. Both the number of days spent on kills and maximum distance moved away from kills between visits increased when kills consisted of more than one animal. This study has provided some basic information on snow leopard behaviors around their kills but also highlights the need to monitor more snow leopards before more solid conclusions can be drawn as this study was based on based on a relatively small sample.  
  Address  
  Corporate Author Thesis Master's thesis  
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  Notes Swedish University of Agricultural Sciences, Faculty of Natural Resources and Agricultural Sciences, Department of Ecology, Grimsö Wildlife Research Station Approved no  
  Call Number SLN @ rana @ Serial 1301  
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Author (up) Gruisen, J.V. url 
  Title Interaction Between Wild Dogs and Snow Leopards in Ladakh Type Miscellaneous
  Year 1993 Publication Abbreviated Journal  
  Volume xi Issue Pages 8  
  Keywords Dogs; Ladakh; India; dhole; predation; scavenging; behavior; browse; 4650  
  Abstract  
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  Publisher Islt Place of Publication Seattle Editor  
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  Notes Full Text at URLJournal Title: Snow Line Approved no  
  Call Number SLN @ rana @ 452 Serial 357  
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Author (up) Guerrero, D. url 
  Title Animal behavior concerns & solutions: snow leopard (Uncia uncia) evaluation, zoo Type Journal Article
  Year 1998 Publication Anim.Keepers' Forum Abbreviated Journal  
  Volume 25 Issue 2 Pages 56-58  
  Keywords aggressive-behavior; behavior; captive-animal-care; diets; endangered; threatened-species; genetics; handling-methods; intraspecies-relationships; social-behavior; husbandry; zoos; snow leopard; aggressive; captive; Animal; care; threatened; species; handling; methods; intraspecies; relationships; social; browse; 1310  
  Abstract The author offers advice on how a captive-raised snow leopard cub could be acclimated to humans so it could be used as a zoo “ambassador”. The cub had negative experiences with humans and lacked socialization with other animals and conspecifics. Methods of avoiding and redirecting the cub's aggressive behavior are suggested. lgh.  
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  Notes Ark Anim., Inc., P.O. Box 1154, Escondido, CA 92033-1154. e-mail: arkabc@arkanimals.com Document Type: English Approved no  
  Call Number SLN @ rana @ 338 Serial 358  
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Author (up) Hansen, J. url 
  Title The snow leopard study, part one Type Miscellaneous
  Year 1980 Publication Abbreviated Journal  
  Volume Issue Pages 7  
  Keywords snow leopard, captivity, Brookfield Zoo, behavior  
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  Notes Approved no  
  Call Number SLN @ rana @ Serial 1212  
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Author (up) Hillard, D. url 
  Title Update on the Himalayan Snow Leopard Project Type Miscellaneous
  Year 1985 Publication Abbreviated Journal  
  Volume No. 8 Issue Pages  
  Keywords Nepal; Himalaya; Jackson; collars; research; telemetry; yeowls; roars; mating-call; Langu; cubs; radio; field-work; surveys; tracking; behavior; browse; 4830  
  Abstract  
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  Corporate Author Thesis  
  Publisher Islt Place of Publication Seattle Editor  
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  Area Expedition Conference  
  Notes Full Text at URLJournal Title: Snow Line Approved no  
  Call Number SLN @ rana @ 470 Serial 383  
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Author (up) Hunter, D. url 
  Title Mongolian-American Snow Leopard Project Type Miscellaneous
  Year 1996 Publication Snow Line Abbreviated Journal  
  Volume xiv Issue Pages 4-5  
  Keywords behavior; collars; desert; gobi; home-range; Islt; Macne; McCarthy; Mongolia; Munkhtsog; radio-collars; Satellite; Slims; telemetry; Wcs  
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  Publisher International Snow Leopard Trust Place of Publication Seattle Editor  
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  Notes Approved no  
  Call Number SLN @ rana @ 442 Serial 391  
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Author (up) Ishunin G.I. url 
  Title Irbis, or snow leopard Felis (Uncia) uncia S¤hr†b†a 1778 Type Miscellaneous
  Year 1961 Publication Abbreviated Journal  
  Volume Vol. 3. Issue Pages 127-131  
  Keywords Uzbekistan; snow leopard; taxonomy; distribution; behavior; practical use.; 6880; Russian  
  Abstract It describes diagnostic signs and taxonomy of snow leopard as well as its distribution, behavioral patterns and use in Uzbekistan. This predator inhabits the Ugam, Pskem, Chatkal, Turkistan, and Gissar ridges. It mainly preys on ibex, and marmots, vole-mouse, and snow-cocks. Sometimes it attacks domestic sheep. Snow leopard is of low commercial value. The cost of skin is 4 roubles 70 kopecks. Only a few skins are purchased.  
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  Notes Full text available in RussianJournal Title: Fauna of the Uzbek SSR. Mammals (predators and ungulates). Approved no  
  Call Number SLN @ rana @ 666 Serial 412  
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Author (up) Jack; Jill; Jackson, P.; Wharton, D.; Jackson, R. url 
  Title Snow leopard, Ucia uncia Type Miscellaneous
  Year Publication Abbreviated Journal  
  Volume Issue Pages  
  Keywords Slims; status; distribution; habitat; diet; China; Mongolia; Kyrgyzstan; discription; range; conservation; behavior; browse; 4040  
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  Notes Full Text at URL Approved no  
  Call Number SLN @ rana @ 4 Serial 426  
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Author (up) Jackson, R. url 
  Title The Snow Leopard Conservancy, Dedicated to demonstrating innovative, grassroots measures that lead local shepherds to become better stewards of the endangered snow leopard, its prey and habitat Type Miscellaneous
  Year 2000 Publication Abbreviated Journal  
  Volume Issue Pages  
  Keywords livestock-depredation; livestock; herders; conflict; Iucn; enclosures; pens; corrals; trap; poison; hunting; behavior; Ladakh; guard-dogs; Dogs; economics; incentives; compensation; depredation; guard; browse; 4060  
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  Notes Full Text at URL Approved no  
  Call Number SLN @ rana @ 377 Serial 465  
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