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Author |
Jackson, R. |
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Title |
Threatened Cats of Asia; Snow Leopard |
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1978 |
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Wildlife |
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20 |
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403-405 |
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asia; Nepal; browse; 3120 |
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SLN @ rana @ 42 |
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432 |
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Author |
Green, M.J.B. |
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Title |
Protecting the mountains of Central Asia and their snow leopard populations |
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Conference Article |
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1994 |
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223-239 |
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asia; conservation; distribution; status; habitat; predator; prey; herders; herder; livestock; management; protected- area; parks; park; reserve; refuge; Afghanistan; Bhutan; China; gansu; Qinghai; Sichuan; India; Sikkim; Nepal; Pakistan; Ussr; Russia; Soviet-Union; Kazakhstan; Kirghizia; Tajikistan; Uzbekistan; protected-area; kazakstan; Kirgizia; browse; protected; area; soviet; union; 2060 |
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International Snow Leopard Trust and Chicago Zoological Society |
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J.L.Fox; Du Jizeng |
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Full Text at URLTitle, Monographic: Proceedings of the Seventh International Snow Leopard Symposium. Place of Meeting: Xining, Qinghai, ChinaDate of Copyright: 1994 |
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Call Number |
SLN @ rana @ 218 |
Serial |
350 |
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Author |
Khanal, G., Poudyal, L. P., Devkota, B. P., Ranabhat, R., Wegge, P. |
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Title |
Status and conservation of the snow leopard Panthera uncia in Api Nampa Conservation Area, Nepal |
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Journal Article |
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Year |
2018 |
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Fauna & Flora International |
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1-8 |
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Keywords ![sorted by Keywords field, descending order (down)](img/sort_desc.gif) |
Api Nampa Conservation Area, bharal, Nepal, Panthera uncia, Pseudois nayaur, snow leopard |
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Abstract |
The snow leopard Panthera uncia is globally
threatened and reliable information on its abundance,
distribution and prey species is a prerequisite for its conservation.
In October-November 2014 we assessed the distribution
of the snow leopard in the recently established Api
Nampa Conservation Area in the Nepal Himalayas.
Within selected blocks we conducted sign surveys and
counted the number of bharal Pseudois nayaur, its principal
wild prey, along transects totalling 106 km.We recorded 203
putative snow leopard signs at an encounter rate of 1.91
signs/km. Generalized linear models of the number of
signs detected per transect showed that elevation had a positive
influence and human activities a negative influence on
sign encounter rate; prey abundance had only a weak positive
influence on sign encounter rate. Within the effectively
surveyed area of c. 2002 km2, we counted 527 bharal at an estimated
density of 2.28 animals/km2. Recruitment of bharal
was low, estimated at 48 kids/100 adult females, most likely a
result of poor or overgrazed rangeland. We estimate
the total number of bharal in this conservation area to be
.>1,000, a prey base that could sustain 6-9 snow leopards.
Based on our field observations, we identified human disturbance
and habitat degradation associated with extraction
of non-timber forest products, livestock grazing, and poaching
as the main threats to the snow leopard. Standardized
sign surveys, preferably supplemented by sampling with
remote cameras or with genetic analysis of scats would
provide robust baseline information on the abundance of
snow leopards in this conservation area. |
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SLN @ rakhee @ |
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1473 |
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Author |
Oli, M.K. |
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Title |
The ecology and conservation of the snow leopard (Panthera uncia) in the Annapurna Conservation Area, Nepal |
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Book Whole |
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Year |
1991 |
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Keywords ![sorted by Keywords field, descending order (down)](img/sort_desc.gif) |
annapurna; conservation; area; Annapurna-Conservation-Area; ecology; Nepal; parks; park; reserves; reserve; refuge; potected-area; protected; browse; 2390 |
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Ph.D. thesis |
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University of Edinburgh, Scotland. |
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Phil. thesis |
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Call Number |
SLN @ rana @ 183 |
Serial |
742 |
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Author |
Hunter, D.O. |
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Title |
GIS Tracks the Snow Leopard |
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Miscellaneous |
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Year |
1991 |
Publication |
Snow Line |
Abbreviated Journal |
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ix |
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3-5 |
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Keywords ![sorted by Keywords field, descending order (down)](img/sort_desc.gif) |
annapurna; chitral; Chundawat; Gis; Hemis; Hillard; Jackson; Ladakh; Mapping; Matthiessen; Nepal; Pakistan; Schaller; Tibet |
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International Snow Leopard Trust |
Place of Publication |
Seattle |
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Call Number |
SLN @ rana @ 461 |
Serial |
394 |
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Author |
Baral N.; Stern, M.; Heinen, J.T. |
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Title |
Integrated conservation and development project life cycles in the Annapurna Conservation Area, Nepal: Is development overpowering conservation? |
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Journal Article |
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2007 |
Publication |
Biodiversity Conservation |
Abbreviated Journal |
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16 |
Issue |
10 |
Pages |
2903-2917 |
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Keywords ![sorted by Keywords field, descending order (down)](img/sort_desc.gif) |
annapurna; Biodiversity conservation; community-based; conservation; Gender; management; Nepal; protected area; development; project; annapurna conservation area; Annapurna-Conservation-Area; area |
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Abstract |
The merits of integrated conservation and development projects (ICDPs), which aim to provide development incentives to citizens in return for conservation behaviors, have long been debated in the literature. Some of the most common critiques suggest that conservation activities tend to be strongly overpowered by development activities. We studied this assertion through participant observation and archival analysis of five Conservation Area Management Committees (CAMCs) in the Annapurna Conservation Area (ACA), Nepal. Committee activities were categorized as conservation activities (policy development and conservation implementation), development activities (infrastructure, health care, education, economic development, and sanitation), or activities related to institutional strengthening (administrative development and capacity building activities). Greater longevity of each ICDP was associated with greater conservation activity in relation to development activities. Project life cycles progressed from a focus on development activities in their early stages, through a transitional period of institutional strengthening, and toward a longer-term focus that roughly balanced conservation and development activities. Results suggest that the ICDP concept, as practiced in ACA, has been successful at building capacity for and interest in conservation amongst local communities. However, success has come over a period of nearly a decade, suggesting that prior conclusions about ICDP failures may have been based on unrealistic expectations of the time needed to influence behavioral changes in target populations. |
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Call Number |
SLN @ rana @ 938 |
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117 |
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Author |
Jackson, P. |
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Title |
The Snow Leopard: A Flagship for Biodiversity in the Mountains of Central Asia |
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Conference Article |
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1997 |
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3-7 |
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Keywords ![sorted by Keywords field, descending order (down)](img/sort_desc.gif) |
Afghanistan; Bhutan; China; India; kazakstan; Kyrgyzstan; Mongolia; Nepal; Pakistan; Russia; Tajikistan; Uzbekistan; ecology; distribution; parks; park; reserve; status; refuge; habitat; herders; biodiversity; herder; livestock; prey; protected-area; Kazakhstan; protected; area; browse; 2030 |
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Allied Press |
Place of Publication |
Lahore, Pakistan |
Editor |
R.Jackson |
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Full Text at URLTitle, Monographic: Eighth International Snow Leopard SymposiumPlace of Meeting: Islamabad, PakistanDate of Copyright: 1997 |
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SLN @ rana @ 314 |
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429 |
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Author |
Wolf, M.; Ale, S. |
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Title |
Signs at the Top: Habitat Features Influencing Snow Leopard Uncia Uncia Activity in Sagarmatha National Park, Nepal |
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Journal Article |
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2009 |
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Journal of Mammalogy |
Abbreviated Journal |
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90 |
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3 |
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604-611 |
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Keywords ![sorted by Keywords field, descending order (down)](img/sort_desc.gif) |
activity patterns,human activity,Nepal,predator-prey,sign data,Uncia uncia |
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We used logistic regression to examine factors that affected the spatial distribution of sign (scrapes, feces, footprints, spray or scent marks, and rubbing sites) in a newly reestablished population of snow leopards (Uncia uncia) in Sagarmatha (Mount Everest) National Park, Nepal. Our results indicate that terrain and human activity were the most important factors determining the spatial distribution of leopard activity, whereas presence of their major prey species (Himalayan tahr [Hemitragus jemlahicus]) had only a moderate effect. This suggests that localities at which these animals are active represent a trade-off between suitable habitat and avoidance of potential risk from anthropogenic origins. However, the influence of prey presence was likely underestimated because of the methodology used, and likely weighed in the trade-off as well. |
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Department of Biological Sciences (M/C 066), University of Illinois at Chicago, 845 West Taylor Street, 3352 SES, Chicago, IL 60607-7060, USA |
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SLN @ rana @ 1026 |
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1027 |
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Author |
Thapa, K. |
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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 |
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Report |
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2005 |
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1-19 |
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Keywords ![sorted by Keywords field, descending order (down)](img/sort_desc.gif) |
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 |
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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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Project funded by International Snow Leopard Trust Small Grants Program, 2005. Annapurna Conservation Area Project, Pokhara, Nepal. |
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SLN @ rana @ 1078 |
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959 |
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Author |
Ale, S.B.; Karky, B.S. |
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Title |
Observations on Conservation of Snow Leopards in Nepal |
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2002 |
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Keywords ![sorted by Keywords field, descending order (down)](img/sort_desc.gif) |
4880; bio; conservation; diversity; enclave; leopard; management; Nepal; poverty; protected; protection; religion; uncia |
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The wild populations of snow leopards are threatened in Nepal. For their effective conservation, this paper seeks to build a strategy based not only on protected enclaves but also on landscapes, using an integrated grass-roots approach that essentially reduces poverty and addresses the needs of human beings and that of wildlife. Also equally relevant in places with a strong hold by religious and cultural authorities in the decision-making processes is the recognition and possible integration of cultural and traditional belief systems in overall snow leopard conservation schemes. |
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Islt |
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Islt |
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English |
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Title, Monographic: Proceedings of the Snow Leopard Survival SummitPlace of Meeting: Seattle,WA |
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SLN @ rana @ 474 |
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57 |
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