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Author Schmidt, A.M.; Hess, D.L.; Schmidt, M.J.; Smith, R.C.; Lewis, C.R.
Title Serum concentrations of oestradiol and progesterone, and sexual behaviour during the normal oestrous cycle in the leopard (Panthera pardus) Type Miscellaneous
Year 1988 Publication Journal of Reproductive Fertility Abbreviated Journal
Volume 82 Issue Pages 43-49
Keywords captive; Ovulation; Panthera pardus; Progesterone; Serum; sexual behaviour
Abstract (down) Three mature nulliparous female leopards were studied for 5 years. During three separate 6-month periods serum oestradiol and progesterone concentrations were measured at weekly intervals. Oestradiol was elevated over 21 pg/ml for 54 weeks during these 3 periods, and 36 oestradiol peaks (65\m=.\8\m=+-\6\m=.\3pg/ml (mean \m=+-\s.e.m.), range 21\p=n-\172pg/ml) were identified. Daily frequency of feline reproductive behaviours averaged over each week increased from 1\m=.\9\m=+-\0\m=.\2(n = 93) during weeks with low serum oestradiol concentrations (<21 pg/ml) to 5\m=.\3\m=+-\0\m=.\6(n = 54) during weeks when serum oestradiol concentrations (>21 pg/ml) were high. Increased serum progesterone concentrations (13\p=n-\98n/gml) were observed on 5 occasions in 2 leopards housed together. These presumptive luteal phases lasted from 1 to 5 weeks. Baseline progesterone values were 1\m=.\6\m=+-\0\m=.\4 ng/m(nl= 131). No progesterone increments were observed in isolated animals, and serum concentrations remained at baseline levels. These limited observations suggest that female leopards do not require intromission to induce ovulation and luteal function. The average interval between oestradiol peaks for cycles with no progesterone increment was 3\m=.\4weeks (range 1\p=n-\6weeks). The interval for the 3 complete cycles associated with elevated progesterone concentrations was 7\m=.\3weeks. Analysis of sexual behaviours over the 5-year study period revealed no evidence of seasonality in these

captive leopards.
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Notes Approved no
Call Number SLN @ rana @ 923 Serial 873
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Author Koshkarev E.P.
Title Geographic prerequisites for snow leopard conservation in the USSR Type Miscellaneous
Year 1990 Publication Abbreviated Journal
Volume Issue Pages 153-154
Keywords Pamir; Pamir-Alai; tien shan; Jungar Alatau; Tarbagatai; Saur; Altai; Sayans; snow leopard.; 7250; Russian
Abstract (down) Three key areas of the snow leopard habitat in the USSR are geographically segregated: Central Asia (Pamir, Tien Shan, Pamiro-Alai), East Kazakhstan (Jungar Alatau, Tarbagatai, Saur), and South Siberia (Altai, the Sayans), which are separated from one another. The fate of snow leopard in East Kazakhstan and South Siberia causes the most anxiety.
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Notes Full text available in RussianJournal Title: Proceedings of V Congress of all-Union mammalogy' society of the Academy of Science of the USSR. Approved no
Call Number SLN @ rana @ 703 Serial 559
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Author Murata, K.; Yanai, T.; Agatsuma, T.; Uni, S.
Title Dirofilaria immitis infection of a snow leopard (Uncia uncia) in a Japanese zoo with mitochondrial DNA analysis Type Miscellaneous
Year 2003 Publication The Journal of Veterinary Medical Science / the Japanese Society of Veterinary Science Abbreviated Journal
Volume 65 Issue Pages 945-947
Keywords Dirofilaria immitis,Japan,snow leopard
Abstract (down) Three dog heartworms (Dirofilaria immitis) were detected in the lumen of the right cardiac ventriculus and of the pulmonary artery of a captive female snow leopard (Uncia uncia) that died of pancreatic carcinoma at a zoo in Japan. Neither clinical respiratory nor circulatory symptoms caused by the heartworm infection were observed. The filarial worms were identified as D. immitis from the morphologic characteristics of the esophagus, the presence of faint longitudinal ridges on the cuticular surface, the situation of vulva posterior to the esophagus, and the measurements of the body. The heartworms from the snow leopard were identical to that of D. immitis from dogs in the sequence of the cytochrome oxidase I region in the mitochondrial DNA. This host record is the first of D. immitis in U. uncia.
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Notes Approved no
Call Number SLN @ rana @ 892 Serial 707
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Author Devyatkin G.V.
Title Snow leopard (Uncia uncia Schr.) in the Altai-Sayans ecologic region Type Miscellaneous
Year 1999 Publication Abbreviated Journal
Volume Issue Pages 71
Keywords Russia; Altai; snow leopard; distribution; number.; 6500; Russian
Abstract (down) Though snow leopard is widely distributed in the Altai-Sayans ecologic region (the Krasnoyarsk region, Khakasia, Tuva, the Altai), it is still a rare and understudied species. Its total population in Khakasia is 10-12 animals, in the Altai 60-70 animals.
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Notes Full text available in RussianJournal Title: 4th congress of mammalogists' society. Approved no
Call Number SLN @ rana @ 628 Serial 237
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Author Chernogaev E.A.
Title Materials on rare and protected species of the Kyzylsu nature reserve Type Miscellaneous
Year 1978 Publication Abbreviated Journal
Volume Issue Pages 39-40
Keywords Uzbekistan; Kyzylsu nature reserve; rare species; birds; mammals; snow leopard; poaching; human influence.; 6430; Russian
Abstract (down) This survey was being done (May, 1975 February, 1976) in the new Kyzylsu nature reserve, established in 1975. Before 1975, the anthropogenic pressure was mainly represented by overgrazing and unregulated hunting. Provided are data on bird species (bearded vulture, Himalayan vulture, griffon vulture, golden eagle, and Himalayan snow cock), mammal species (long-tailed marmot, Indian porcupine, brown bear, lynx, snow leopard, and Siberian ibex).
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Notes Full text available in RussianJournal Title: Protection of flora and fauna in Uzbekistan. Approved no
Call Number SLN @ rana @ 621 Serial 216
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Author Jackson, R.M.; Ahlborn, G.
Title Observations on the Ecology of Snow Leopard in West Nepal Type Conference Article
Year 1988 Publication Abbreviated Journal
Volume Issue Pages 65-87
Keywords Nepal; field study; predator; prey; home-range; habitat; tracking; trapping; radio-collars; behavior; activity; patterns; sign; scrapes; feces; marking; markings; browse; home range; home; range; radio; collar; radio collar; collars; radio collars; research; 1670
Abstract (down) This summary of a four year field study by Jackson and Ahlborn begging in 1982 and concluding in 1985, discusses behaviour, trapping and tracking techniques, home range, activity patterns, prey and habitat and survey methods.
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Publisher Snow Leopard Trust and Wildlife Institute of India Place of Publication India Editor H.Freeman
Language Summary Language Original Title
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Notes Full Text at URLTitle, Monographic: Fifth International Snow Leopard SymposiumPlace of Meeting: Srinagar, IndiaDate of Copyright: 1988 Approved no
Call Number SLN @ rana @ 117 Serial 478
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Author Thapa, K.
Title Is their any correlation between abundance of blue sheep population and livestock depredation by snow leopards in the Phu Valley, Manang District, Annapurna Conservation Area? Final report Type Report
Year 2005 Publication Abbreviated Journal
Volume Issue Pages 1-19
Keywords abundance; blue; blue sheep; blue-sheep; sheep; population; livestock; livestock depredation; livestock-depredation; depredation; snow; snow leopards; snow leopard; snow-leopards; snow-leopard; leopards; leopard; valley; Manang; annapurna; annapurna conservation area; Annapurna-Conservation-Area; conservation; area; Report; project; International; international snow leopard trust; International-Snow-Leopard-Trust; trust; program; Nepal
Abstract (down) This study was undertaken in the Phu valley of Manang district in the Annapurna Conservation Area, Nepal,

Spring, 2004 and 2005. I used the Snow Leopard Management Information System (“second order” survey technique), to determine

the relative abundance of snow leopards in delineated areas in Phu valley. Transects routes were plotted by

randomly selected feasible landforms such as along ridgelines, cliff bases and river bluffs where snow

leopards sign is likely to be found. Altogether, 16 transects (total length of 7.912 km) were laid down (mean

transect length=0.495 km). They revealed, 54 sign sites (both relic and non-relic) and altogether 88 signs (72

scrapes, 11 feces, 3 scent mark, 2 pugmarks and 1 hair) were recorded (6.8 site/km and 11.1 signs/km). There

were 61.1% non-relic and 38.9% relic sites. The density of snow leopards in Phu Valley may be 4-5 snow

leopards/100 kmý.It was found that the Ghyo block had the highest sign density (13.6 mean sign item/km)

and Phu block (9.8 mean sign item/km) and the lowest in Ngoru block (3.9 mean sign item/km.). For blue sheep, direct count method was applied from different appropriate vantage points (fixed-point

count). I counted total individuals in each herd and classified all individuals whenever possible, using 8 X24

binocular and 15-60x spotting scope. A total 37 blue sheep herds and 1209 individuals were observed in

192.25 kmý of the study area (blue sheep density, 6.3 kmý). Average herd size was 32.68. Herd size varied

from 1 to 103 animals (the largest so far recorded). The average sex ratio male to female for the entire survey

area was 0.67. Recruitment rate was 47.13. The ratio of yearlings to adult female was 0.45. In Ghyo block

had total 168 blue sheep (area, 44.08 km2 or 3.8/ km2 i.e. 137.2 kg/ kmý). Blue sheep density in Ngoru block

showed 4.7/km2 (area, 65.47 km2). Highest density of blue sheep among three blocks was recorded in Phu

block, 8.9/km2 (or 320 kg/km2) in its 82.70 km2 area. A standard questionnaire was designed, and interviews conducted for relevant information was collected on

livestock depredation patterns (total household survey). Out of 33 households surveyed, 30 reported that they

had livestock depredation by the snow leopard in 2004. Altogether 58 animals were reportedly lost to snow

leopards (3.1% of the total mortality). Out of the estimated standing available biomass (1, 83,483kg) in the

Phu valley at least 2220 kg or 1.3% of the total livestock biomass was consumed by snow leopards in the

year of our study (2004). It was estimated that in the Phu valley annually 1.8 animals were lost per household

to snow leopards. This means approx. Rs.413560 (US$ 5,908) is lost annually in the valley (US$

179/household/annum). Ghyo block, had the highest animals loss (53.4%), followed by Phu block (36.2%)

and Ngoru block (10.3%) to snow leopards. There is positive correlation among the densities of blue sheep, relative abundance of the snow leopard and

livestock depredation. Blue sheep is the main prey species of the snow leopard in Phu valley and its

conservation therefore matters to reduce livestock depredation. A general patterns appears here that shows

that blue sheep (prey) abundance determine snow leopard (predator) abundance and that livestock

depredation by snow leopards may be minimal where there is good population of blue sheep, and vice versa.
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Notes Project funded by International Snow Leopard Trust Small Grants Program, 2005. Annapurna Conservation Area Project, Pokhara, Nepal. Approved no
Call Number SLN @ rana @ 1078 Serial 959
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Author Thapa, K., Jackson, R., Gurung, L, Acharya, H. B., Gurung, R. K.,
Title Applying the double observer methodology for assessing blue sheep population size in Nar Phu valley, Annapurna Conservation Area, Nepal Type Journal Article
Year 2021 Publication Wildlife Biology Abbreviated Journal
Volume Issue Pages 1-11
Keywords blue sheep, density estimation, double observer counts, Nepal, Panthera uncia, prey abundance, Pseudois nayaur, snow leopard, viewshed mapping
Abstract (down) This study was undertaken in spring, 2019 to assess the applicability of the double-observer survey method for estimating blue sheep Pseudois nayaur abundance in Nar-Phu valley of Manang District located in Annapurna Conservation Area of northern Nepal. Since counting large mammals in rugged mountain habitat poses a special challenge, we tested the efficacy of the double observer method for generating robust population estimates for this important protected area. The overall detection probability for observers (O1 and O2) was 0.94 and 0.91 for a total of 106 groups comprised of 2059 individual blue sheep. We estimated the area’s blue sheep population at 2070 (SE ± 168.77; 95% CI 2059–2405) for the 246.2 km2 of sampled habitat. We determined blue sheep to be widely distributed within the study area with a mean density of 8.4 individuals per km2 based on a total study area of 246.2 km2. We discuss demographic population structure and identify limitations when applying the double observer approach, along with recommending viewshed mapping for ensuring more robust density estimates of mountain-dwelling ungulates like blue sheep or ibex that inhabit extremely heterogeneous terrain which strongly influences sighting distances and overall animal detection rates.
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Notes Approved no
Call Number SLN @ rakhee @ Serial 1666
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Author Tytar, V.; Hammer, M.
Title Expedition report: Mountain ghosts: snow leopards and other animals in the mountains of the Altai Republic, Central Asia Type Report
Year 2008 Publication Abbreviated Journal
Volume Issue Pages
Keywords Altai
Abstract (down) This study was part of an expedition to the Altai mountains in the Kosh Agach region of the Altai Republic, run by Biosphere Expeditions from 8 July to 17 August 2007. The aim was to continue a survey of snow leopard (Uncia uncia) in this area, as well as surveying the snow leopard's primary prey species, argali (Ovis ammon) and Siberian ibex (Capra sibirica), together with secondary prey species.

Using the Snow Leopard Information Management System (SLIMS) developed by the International Snow Leopard Trust (ISLT), presence/absence surveys (SLIMS form 1) of snow leopard and prey species were conducted throughout the study period across the entire survey area (approximately 200 square kilometers). In 2007 surveys were extended to areas away from the Tapduair massif site to the valley and surrounding ridges of Irbistu mountain. Interviews with local, semi-nomadic herders also formed an important part of the research procedure. The expedition also collected data for extended mammal, bird and plant inventories.

The decrease in numbers of the primary prey species observed recently makes it very likely that food availability is not in favour of the snow leopard in the study area. This is supported by the fact that in 2006 there were no records of snow leopard sign in the core area and in 2007 only a few were found.

Nevertheless, the study area retains its importance as a habitat for snow leopard and as a corridor for snow leopard dispersal. Unfortunately, privatisation of formerly common land is on the increase as is a lack of respect traditional land management practices, so the survey area urgently needs protection, but involving the local community and raising public awareness is vital if conservation initiatives are to succeed.
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Publisher Biosphere Expeditions Place of Publication Editor
Language Summary Language Original Title
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Notes Expedition dates: 8 July – 17 August 2007 Approved no
Call Number SLN @ rana @ Serial 1143
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Author McGregor, T..; Hammer, M.
Title Expedition report: Surveying snow leopards and other animals in the mountains of the Altai Republic, central Asia Type Report
Year 2005 Publication Abbreviated Journal
Volume Issue Pages 60
Keywords Altai, snow leopard
Abstract (down) This study was part of an expedition to the Altai mountains in the Kosh Agach region of the Altai Republic, run by Biosphere Expeditions from 6 July to 29 August 2003. The aim was to conduct the first survey of snow leopard (Uncia uncia) in this area, as well as surveying the snow leopard’s main prey species; in this case argali (Ovis amon) and Siberian ibex (Capra ibex sibirica) together with secondary prey species.

Using the Snow Leopard Information Management System (SLIMS) developed by the International Snow Leopard Trust (ISLT), presence/absence surveys (SLIMS form 1) of snow leopard and prey species were conducted throughout the study period across the entire survey area (approximately 200 sq km). Interviews with local, semi-nomadic herders also formed an important part of the research procedure. cat collected in the field was sent to Brunel University where it is awaiting DNA analysis. The expedition also collected data on local geology and generated mammal, bird and plant inventories.

Surveying a very large study area without snow cover made it difficult to find signs of snow leopard and primary prey species. Despite these constraints, snow leopard sign was found in each of the four two-week slots of the expedition. The field evidence indicated there was at least one resident adult. This, together with evidence from local people, confirmed the importance of the study area as a habitat for snow leopard and as a corridor for snow leopard dispersal. The survey area urgently needs protection but involving the local community is vital if conservation initiatives are to succeed.
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Publisher Biosphere Expeditions Place of Publication Editor
Language Summary Language Original Title
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Notes Expedition dates: 6 July – 29 August 2003 Approved no
Call Number SLN @ rana @ Serial 1147
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