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Author |
Jackson, R.; Ahmad, A. |
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Title |
Introduction to the Proceedings (8th Snow Leopard Symp) |
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Conference Article |
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Year |
1997 |
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Abbreviated Journal |
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ix-x |
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Keywords |
Pakistan; livestock; herders; herder; snow-leopard; predator; predation; prey; habitat; status; distribution; snow leopard; browse; 2020 |
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Publisher |
Allied Press |
Place of Publication |
Lahore, Pakistan |
Editor |
R.Jackson; A.Ahmad |
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Full Text at URLTitle, Monographic: Eighth International Snow Leopard SymposiumPlace of Meeting: Islamabad, PakistanDate of Copyright: 1977 |
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Call Number |
SLN @ rana @ 315 |
Serial |
456 |
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Author |
Jackson, R.; Zongyi, W.; Xuedong, L.; Yun, C. |
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Title |
Snow Leopards in the Qomolangma Nature Preserve of Tibet Autonomous Region |
Type |
Conference Article |
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Year |
1994 |
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Pages |
85-95 |
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Keywords |
Qomolangma; protected-area; parks; preserves; refuge; Nepal; Tibet; China; field-study; blue-sheep; scrapes; sprays; scat; feces; pug-marks; sign; transects; interviews; herders; livestock; predation; predator; traps; trapping; habitat; status; distribution; threats; hunting; pelts; skins; fur; coats; poaching; bones; medicine; Cites; conflict; trade; conservation; management; protected area; protected; area; areas; protected areas; field study; field; study; pug marks; blue; sheep; browse; pug; marks; 3490 |
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Islt |
Place of Publication |
Usa |
Editor |
J.L.Fox; D.Jizeng |
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Full Text at URLTitle, Monographic: Seventh International Snow Leopard SymposiumPlace of Meeting: ChinaDate of Copyright: 1994 |
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Call Number |
SLN @ rana @ 231 |
Serial |
452 |
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Author |
Jackson, R. |
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Title |
Second SLIMS Workshop Held |
Type |
Miscellaneous |
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Year |
1994 |
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Volume |
xii |
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Keywords |
Chitral-Gol; Pakistan; Slims; surveys; research; Project-snow-leopard; teqniques; conflict-resolution; training; browse; 4590 |
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Islt |
Place of Publication |
Seattle, WA |
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Full Text at URLJournal Title: Snowline |
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Call Number |
SLN @ rana @ 273 |
Serial |
453 |
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Author |
Ahlborn, G., Jackson, R. |
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Title |
A survery of Sagarmatha National Park and the endangered Snow Leopard |
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Report |
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1-23 |
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Abstract ![sorted by Abstract field, ascending order (up)](img/sort_asc.gif) |
A survey was undertaken of selected parts of Sagarmatha National Park to determine whether snow leopard was present, using techniques developed during a recent in-depth study of the species in west Nepal, using radio-telemetry. Although the species was considered to have been extirpated from the park in the 1970's, occasional reports have originated from trekkers who reported “seeing a snow leopard near Mount Everest (Sagarmatha)”. |
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English |
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no |
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Call Number |
SLN @ rana @ |
Serial |
1340 |
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Author |
Jackson, R. |
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Title |
Snow Cats of Nepal's Langue Gorge |
Type |
Journal Article |
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Year |
1987 |
Publication |
Animal Kingdom |
Abbreviated Journal |
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Volume |
4 |
Issue |
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Pages |
44-53 |
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Keywords |
Nepal; tracking; home-range; habitat; home range; home; range; browse; 3630; snow; Cats; cat; gorge |
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Abstract ![sorted by Abstract field, ascending order (up)](img/sort_asc.gif) |
Anecdotal account with some general research results of a four year tracking study of the snow leopard in Nepal's Langu valley |
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no |
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Call Number |
SLN @ rana @ 111 |
Serial |
439 |
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Author |
Mallon, D. P., Jackson, R. M. |
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Title |
A downlist is not a demotion: Red List status and reality |
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Journal Article |
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Year |
2017 |
Publication |
Oryx |
Abbreviated Journal |
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Pages |
1-5 |
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Keywords |
Cryptic, IUCN Red List, Panthera uncia, population estimate, snow leopard, species assessment |
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Abstract ![sorted by Abstract field, ascending order (up)](img/sort_asc.gif) |
Assessments of biodiversity status are needed to
track trends, and the IUCN Red List has become the accepted
global standard for documenting the extinction
risk of species. Obtaining robust data on population size is
an essential component of any assessment of a species� status,
including assessments for the IUCN Red List. Obtaining
such estimates is complicated by methodological and
logistical issues, which are more pronounced in the case of
cryptic species, such as the snow leopard Panthera uncia.
Estimates of the total population size of this species have,
to date, been based on little more than guesstimates, but a
comprehensive summary of recent field research indicates
that the conservation status of the snow leopard may be
less dire than previously thought. A revised categorization,
from Endangered to Vulnerable, on the IUCN Red List was
proposed but met some opposition, as did a recent, similar
recategorization of the giant panda Ailuropoda melanoleuca.
Possible factors motivating such attitudes are discussed.
Downlisting on the IUCN Red List indicates that the species
concerned is further from extinction, and is always to be
welcomed, whether resulting from successful conservation
intervention or improved knowledge of status and trends.
Celebrating success is important to reinforce the message
that conservation works, and to incentivize donors. |
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Call Number |
SLN @ rakhee @ |
Serial |
1460 |
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Author |
Jackson, R.; Roe, J.; Wangchuk, R.; Hunter, D. |
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Title |
Estimating Snow Leopard Population Abundance Using Photography and Capture-Recapture Techniques |
Type |
Miscellaneous |
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Year |
2006 |
Publication |
Wildlife Society Bulletin |
Abbreviated Journal |
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Volume |
34 |
Issue |
3 |
Pages |
772-781 |
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Keywords |
abundance; camera trapping; capture rates; dentistry; identification; India; photography; snow leopard; Uncia uncia |
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Abstract ![sorted by Abstract field, ascending order (up)](img/sort_asc.gif) |
Conservation and management of snow leopards (Uncia uncial) has largely relied on anecdotal evidence and presence-absence data due to their cryptic nature and the difficult terrain they inhabit. These methods generally lack the scientific rigor necessary to accurately estimate population size and monitor trends. We evaluated the use of photography in capture-mark-recapture (CMR) techniques for estimating snow leopard population abundance and density within Hemis National Park, Ladakh, India. We placed infrared camera traps along actively used travel paths, scent-sprayed rocks, and scrape sites within 16-30 kmý sampling grids in successive winters during January and March 2003-2004. We used head-on, oblique, and side-view camera configurations to obtain snow leopard photographs at varying body orientations. We calculated snow leopard abundance estimates using the program CAPTURE. We obtained a total of 66 and 49 snow leopard captures resulting in 8.91 and 5.63 individuals per 100 trap nights during 2003 and 2004, respectively. We identified snow leopards based on the distinct pelage patters located primarily on the forelimbs, flanks, and dorsal surface of the tail. Capture probabilities ranged from 0.33 to 0.67. Density estimates ranged from 8.49 (SE+0.22) individuals per 100 kmý in 2003 to 4.45 (SE+0.16) in 2004. We believe the density disparity between years is attributable to different trap density and placement rather than to an actual decline in population size. Our results suggest that photographic capture-mark-recapture sampling may be a useful tool for monitoring demographic patterns. However, we believe a larger sample size would be necessary for generating a statistically robust estimate of population density and abundance based on CMR models. |
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no |
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Call Number |
SLN @ rana @ 912 |
Serial |
476 |
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Permanent link to this record |
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Author |
Ahlborn, G.; Jackson, R.M. |
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Title |
Marking in Free-Ranging Snow Leopards in West Nepal: A preliminary assesment |
Type |
Conference Article |
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Year |
1988 |
Publication |
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Abbreviated Journal |
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Pages |
25-49 |
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Keywords |
Nepal; sign; markings; scrapes; spray; scat; habitat; status; behavior; browse; 1630 |
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Abstract ![sorted by Abstract field, ascending order (up)](img/sort_asc.gif) |
Describes and Quantifies snow leopard marking behaviour, based primarily on sign, gatherd during a four year study in Nepal. Emphasis is on scrapes and spray markings, detailing their frequency of occurence realtive to habitat characteristics and season. Both sexes mark intensively, sign abundance is associated with intensity of use, and sign is concentrated along breaks in terrain. |
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Snow Leopard Trust and the Wildlife Institute of India |
Place of Publication |
India |
Editor |
H.Freeman |
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English |
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Notes |
Full Text at URLTitle, Monographic: Fifth International Snow Leopard SymposiumPlace of Meeting: Shrinagar, IndiaDate of Copyright: 1988 |
Approved |
no |
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Call Number |
SLN @ rana @ 102 |
Serial |
37 |
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Author |
Jackson, R. |
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Title |
Aboriginal hunting in West Nepal with reference to musk deer (Moschus moschiferous) and the snow leopard (Panthera uncia) |
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Journal Article |
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Year |
1979 |
Publication |
Biol.Conservation |
Abbreviated Journal |
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16 |
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63-72 |
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Nepal; hunting; poaching; predator; prey; browse; 3720 |
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Abstract ![sorted by Abstract field, ascending order (up)](img/sort_asc.gif) |
Describes local hunting methods,economics of hunting and estimated impact on snow leopard populations. Comments on conservation measures taken by government of Nepal |
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SLN @ rana @ 55 |
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433 |
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Author |
Jackson, R.M. |
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Title |
Home Range, Movements and Habitat use of Snow Leopard (Uncia uncia) in Nepal |
Type |
Book Whole |
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Year |
1996 |
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233 pp |
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Nepal; blue-sheep; predator; prey; home-range; behavior; capture; telemetry; habitat; marking; activity; movement; tracking; blue; sheep; browse; home range; home; range; 990 |
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Abstract ![sorted by Abstract field, ascending order (up)](img/sort_asc.gif) |
Home ranges for five radio-tagged snow leopards (Uncia uncia) inhabiting prime habitat in Nepal Himalaya varied in size from 11-37 km2. These solitary felids were crepuscular in activity, and although highly mobile, nearly 90% of all consecutive day movements involved a straight line distance of 2km or less. No seasonal difference in daily movement or home range boundry was detected. While home ranges overlapped substancially, use of common core spaces was temporally seperated, with tagged animals being located 1.9 km or more apart during the smae day. Spatial analysis indicated that 47-55% of use occured within only 6-15% of total home area. The snow leopards shared a common core use area, which was located at a major stream confuence in an area where topography, habitat and prey abundance appeared to be more favorable. A young female used her core area least, a female with two cubs to the greatest extent. the core area was marked significantly more with scrapes, Faeces and other sighn than non-core sites, suggesting that social marking plays an important role in spacing individuals. Snow leopards showed a strong preference for bedding in steep, rocky or broken terrain, on or close to a natural vegetation or landform edge. linear landform features, such as a cliff or major ridgeline, were preferred for travelling and day time resting. This behavior would tend to place a snow leopard close to its preferred prey, blue sheep (Psuedois nayaur), which uses the same habitat at night. Marking was concetrated along commonly travelled routes, particularly river bluffs, cliff ledges and well defined ridgelines bordering stream confluences--features that were most abundant within the core area. Such marking may facilitate mutual avoidance, help maintain the species' solitary social structure, and also enable a relatively high density of snow leopard, especially within high-quality habitat. |
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Ph.D. thesis |
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University of London |
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University of London |
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Date of Copyright: 1996 |
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SLN @ rana @ 275 |
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481 |
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Author |
Jackson, R. |
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Title |
Pakistan's Community-based Trophy Hunting Programs and Their Relationship to Snow Leopard Conservation |
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2004 |
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Pakistan; community-based; hunting; programs; program; Relationship; snow; snow leopard; snow-leopard; leopard; conservation; network |
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Abstract ![sorted by Abstract field, ascending order (up)](img/sort_asc.gif) |
In June-July 2004, the Snow Leopard Conservancy (SLC) recently conducted field visits to three important snow leopard sites in Pakistan's Northern Areas: Hushey and Skoyo villages in Baltistan and the Khunjerab Village Organization (KVO) in Gojal. The purpose was to launch environmentally appropriate small-scale, village-based conservation and depredation alleviation initiatives aimed at protecting snow leopards, prey species, their habitats and associated mountain biodiversity, while benefiting humans at the same time. |
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For consideration by The Snow Leopard Network (SLN) Committee on Position Statements |
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SLN @ rana @ 1024 |
Serial |
472 |
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Author |
Jackson, R. |
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Title |
Community Participation: Tools and Examples |
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Conference Article |
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2000 |
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1-9 |
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Keywords |
community; workshop; wildlife; India; us; Himalayan; biodiversity; project; snow; snow leopard; snow-leopard; leopard; trust; management; planning; trans-himalayan; transhimalayan; protected; protected areas; protected area; protected-areas; protected-area; areas; area; 2000; leh; Ladakh |
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Abstract ![sorted by Abstract field, ascending order (up)](img/sort_asc.gif) |
In response to dwindling wildlife populations and habitat, governments established national parks and protected areas, often with little input from people living in the immediate area. In some cases communities were relocated, but in most they are left to pursue traditional agricultural and pastoral livelihoods under a new set of rules. Important questions of land tenure remained unresolved, with a “fences and fines” approach to protected area management (Stolton and Dudley 1999). |
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Management Planning Workshop for the Trans-Himalayan Protected Areas, 25-29 August, 2000, Leh, Ladak |
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Workshop sponsored by the Wildlife Institute of India, US Fish and Wildlife Service Himalayan Biodiversity project, andInternational Snow Leopard Trust |
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Call Number |
SLN @ rana @ 1020 |
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467 |
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Permanent link to this record |
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Author |
Jackson, R.; Ahlborn G.; Ale S.; Gurung D.; Gurung M.; Yadav |
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Title |
Reducing Livestock Depredation in the Nepalese Himalaya: Case of the Annapurna Conservation Area |
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Miscellaneous |
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1994 |
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Abbreviated Journal |
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reducing; livestock; depreadation; nepalese; Himalaya; annapurna conservation area; 2090 |
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Abstract ![sorted by Abstract field, ascending order (up)](img/sort_asc.gif) |
In the Nepalese Himalaya, conflict with rural communities due to livestock predation to large carnivores like snow leopard, common leopard, wolf and wild dog has risen sharply in recent years. This increase is attributed to a number of factors, including implementation and enforcement of wildlife protection laws (which have permitted a recovery in carnivore numbers), the creation of protected areas (which serve as refuges from which predators can populate the surrounding area), the depletion of natural prey due to poaching and loss of habitat, and lax livestock herding practices. However, little information is presently available upon which to design remedial programs. U.S. AID provided research funding for an in-depth assessment of snow leopard predation in the Annapurna Conservation Area (ACAP), an new innovative approach to nature conservation. Baseline information on livestock numbers and mortality were gathered during household interviews, followed by field surveys to assess animal husbandry systems, map pastures, establish periods of use and estimate stocking rates, and to characterize habitat using randomly located plots. Data substantiate the existence of depredation “hotspots”, where high loss occurs, in some cases exceeding 14% to 20% of the livestock population over a short period. Losses varied seasonally, and from year to year. Small-bodied stock like goat and sheep were more vulnerable than large-bodied stock like yak, although horses were especially vulnerable. Factors most closely associated with predation included lack of guarding (or very lax supervision), especially during the daytime, and repeated use of pastures where livestock depredators were known to be actively hunting. Herders usually reacted to repeated depredation incidents by attempting to trap or shoot the suspected culprit until losses declined to an acceptable level. As large carnivore populations become increasingly fragmented and genetically isolated, new management strategies are urgently needed, especially within the buffer zones and intervening corridors between separated parks and reserves. People reside within nearly all Himalayan protected areas, and such issues as loss of livestock and competition between wildlife and livestock cannot be avoided. A plan is offered for alleviating livestock loss in the Annapurna Conservation Area that involves local institutions in decision-making, rewards sound husbandry practices, strengthens indigenous institutions, without further eroding ACAP’s unique biological diversity and diverse carnivore population. The authors believe these measures and ideas could be fruitfully extended to other parts of the Himalaya. |
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Unpublished Report prepared for U.S. Agency for International Development, King Mahendra Trust for Nature Conservation. BioSystems Analysis, Tiburon, California. |
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SLN @ rana @ 219 |
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451 |
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Tiwari, M. P., Devkota, B. P., Jackson, R. M., Chhetri, B. B.
K., Bagale, S. |
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Title |
What Factors Predispose Households in Trans-Himalaya (Central
Nepal) to Livestock Predation by Snow Leopards? |
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Journal Article |
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2020 |
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Animals |
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10 |
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2187 |
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1-14 |
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human-snow leopard conflict; livestock predation; Narphu valley; trans-Himalaya |
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Abstract ![sorted by Abstract field, ascending order (up)](img/sort_asc.gif) |
Livestock depredation across the trans-Himalaya causes
significant economic losses to pastoralist communities. Quantification
of livestock predation and the assessment of variables associated with
depredation are crucial for designing effective long-term mitigation
measures. We investigated the patterns and factors of livestock
depredation by snow leopards (Panthera uncia) using semi-structured
questionnaires targeting herders in the Narphu valley of the Annapurna
Conservation Area, Nepal. During the two years (2017/18 and 2018/19),
73.9% of the households interviewed (n = 65) lost livestock to snow
leopards, with an annual average loss of two livestock per household. Of
the total depredation attributed to snow leopards, 55.4% were yak
(mainly female: 79%), 31.7% goat, 6.8% sheep, 3.2% horse and 2.8%
cattle. Results from applying Generalized Linear Mixed Models (GLMMs)
revealed the total number of livestock owned and the number of larger
bodied livestock species as the main explanatory covariates explaining
livestock depredation. Forty-one (41%) of all herders considered snow
leopard’s preference for domestic livestock as the main factor in
livestock predation, whereas only 5% perceived poor herding practice as
the main reason for the loss. Our study found poor and changing herding
practices in the valley, whereby 71% herders reported careful herding as
a solution to snow leopard depredation, and 15% of herders considered
the complete extermination of snow leopards as the best solution to the
problem. Tolerance levels and awareness among herders towards snow
leopard conservation is increasing, mainly due to the Buddhist religion
and strict law enforcement within this protected area. We recommend the
effective implementation of a community-based livestock insurance scheme
to compensate the economic loss of herders due to predation and improved
herding practices as the recommended mitigation measures for ensuring
livestock security and snow leopards’ conservation in the valley. |
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Wangchuk, R.; Jackson, R. |
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A Community-based Approach to Mitigating Livestock-Wildlife Conflict in Ladakh, India |
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2009 |
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community-based; approach; conflict; Ladakh; India; livestock; livestock depredation; livestock-depredation; depredation; snow; snow leopard; snow-leopard; leopard; wolf; wolves; Himalayan; region; Jackson; kibber; Kibber Wildlife Sanctuary; wildlife; sanctuary; sanctuaries; loss; us; villagers; predation; establishment; surveys; survey; number; change; Animal; animal-husbandry; husbandry; system; 2000 |
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Livestock depredation by snow leopard and wolf is widespread across the Himalayan region (Jackson et al. 1996, Jackson and Wangchuk 2001; Mishra 1997, Oli et al 1994). For example, in India's Kibber Wildlife Sanctuary, Mishra (1997) reported losses amounting to 18% of the livestock holdings and valued at about US $138 per household. The villagers claimed predation rates increased after establishment of the sanctuary, but
surveys indicated a dramatic increase in livestock numbers accompanying changes in animal husbandry systems (Mishra 2000). |
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SLN @ rana @ 1014 |
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1005 |
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Jackson, R., Wangchuk, R. |
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Linking Snow Leopard Conservation and People-Wildlife Conflict Resolution: Grassroots Measures to Protect the Endangered Snow Leopard from Herder Retribution |
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2001 |
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Endangered Species UPDATE |
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18 |
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4 |
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138-141 |
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Livestock depredation has become a significant problem across the snow leopard's (Panthera uncia) range in Central Asia, being most severe in and near protected areas. Such predation, especially incidents of “surplus killing,” in which five to 100 or more sheep and goats are lost in a single night, almost inevitably leads herders to retaliate by killing rare or endangered carnivores like snow leopard, wolf, and lynx. Ironically, such loss can be avoided by making the night-time enclosures predator-proof, improving animal husbandry techniques, educating herders on wildlife conservation and the importance of protecting the natural prey base, and by providing economic incentives like handicrafts skills training and marketing, along with carefully planned ecotourism trekking and guiding. The author explores innovative conservation initiatives in the Himalaya (Ladakh and Tibet) and Mongolia, which also build local capacity, self-reliance, and stewardship for nature using Appreciative Participatory Planning and Action, or APPA, techniques. The most sound conservation investments are those contingent upon establishing direct linkages with biodiversity protection, ensuring co-financing and reciprocal responsibility for project activities, encouraging the full participation of all stakeholders, and assuring regular monitoring and evaluation of the village-based agreements (embodied in Action Plans). |
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1335 |
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Jackson, R.; Wangchuk, R.; Hillard, D. |
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Grassroots Measures to Protect the Endangered Snow Leopard from Herder Retribution: Lessons Learned from Predator-Proofing Corrals in Ladahh |
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2002 |
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snow; leopard; livestock; depredation; herder; conflict; Ladakh; predator; protection; predation; protected; uncia; 4960 |
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Abstract ![sorted by Abstract field, ascending order (up)](img/sort_asc.gif) |
Livestock depredation is an increasingly contentious issue across the range of the
endangered snow leopard (Uncia uncia). Depredation is most severe in or near protected areas
offering core habitat for this cat. “Surplus killing,” in which as many as 100 sheep and goats have
been killed in a single night, inevitably results in attempts at retaliatory killing of predators by
herders suffering significant loss. Ironically, such predation by snow leopard, wolf, or lynx can be
avoided by adequately predator-proofing nighttime enclosures. Predation on the open range is far
more difficult to address, but may be reduced to acceptable levels through improved day-time
guarding of livestock, educating herders on the importance of protecting the predator's natural prey
base, and by providing economic incentives to help offset unavoidable loss.
This paper describes community-based initiatives being undertaken in India's Hemis National Park
aimed at predator-proofing livestock corrals and encouraging local herders to become more effective
stewards of the snow leopard, its prey and habitat. A highly participatory, 4-step process known as
Appreciative Participatory Planning and Action (APPA) provides the primary mechanism for
assisting communities to develop Action Plans to reduce livestock depredation losses, increase
household incomes, and strengthen environmental stewardship. Herders are informed about the
Snow Leopard Stewardship program and conditions for a successful outcome. The team, comprised
of local people, NGO staff, facilitators and government officials, first identifies the root causes for
depredation (Discovery). Under the next phase, Dreaming, participants envision how their village
might appear if depredation losses were reduced to acceptable levels, household incomes increased,
and snow leopards fully protected. This provides a good basis upon which to collaboratively devise
actions for addressing the community's concerns (Design). Delivery involves implementing actions
under the overall Action Plan, as well as specific measures that can be acted upon immediately. The
community is encouraged to use simple but realistic indicators for monitoring the project's
effectiveness.
In Lessons Learned to Date, we highlight the importance of providing meaningful community
involvement from inception through project implementation and monitoring. The use of APPA
greatly increases ownership, communal empowerment and self-reliance, and local people's
willingness to protect wildlife. The Snow Leopard Conservancy believes that the most effective
conservation actions will be contingent upon (1) establishing direct linkages with biodiversity
protection; (2) ensuring reciprocal co-financing and commensurate responsibility from the
community; (3) encouraging full participation from all stakeholders irrespective of their gender, age
or economic status; and (4) ensuring regular monitoring and evaluation under an agreed-to Action
Plan that sets forth the responsibilities, contributions and obligations of each partner. |
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Title, Monographic: Proceedings of the Snow Leopard Survival SummitPlace of Meeting: Seattle,WA |
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SLN @ rana @ 482 |
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468 |
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Jackson, R. |
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Snow Leopards, Local People and Livestock Losses: Finding solutions using Appreciative Participatory Planning and Action (APPA) in the Markha Valley of Hemis National Park, Ladakh, October 6-26, 1999 |
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1999 |
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Cat News |
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31 |
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Autumn |
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22-23 |
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snow; snow leopards; snow leopard; snow-leopards; snow-leopard; leopards; leopard; local; local people; people; livestock; loss; using; participatory; planning; action; valley; Hemis; national; national park; National-park; park; Ladakh |
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Livestock depredation is emerging as a significant issue across the Himalaya, including the Hemis National Park (HNP) in Ladakh. Some consider that this protected area harbors the best snow leopard population in India, but local herders perceive the endangered snow leopard as a serious threat to their livelihood. |
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SLN @ rana @ 1018 |
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463 |
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Author |
Janecka, J. E., Jackson, R., Munkhtsog, B., Murphy, W. J. |
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Characterization of 9 microsatellites and primers in snow leopards and a species-specific PCR assay for identifying noninvasive samples |
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2014 |
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Conservation Genetic Resource |
Abbreviated Journal |
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6 |
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2 |
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369:373 |
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Microsatellites,Cytochrome b, Snow Leopard, Noninvasive genetics, Individual identification |
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Molecular markers that can effectively identify noninvasively collected samples and provide genetic
information are critical for understanding the distribution, status, and ecology of snow leopards (Panthera uncia). However, the low DNA quantity and quality in many
noninvasive samples such as scats makes PCR amplification and genotyping challenging. We therefore designed primers for 9 microsatellites loci previously isolated in the
domestic cat (Felis catus) specifically for snow leopard studies using noninvasive samples. The loci showed moderate levels of variation in two Mongolian snow leopard
populations. Combined with seven other loci that we previously described, they have sufficient variation (He = 0.504, An = 3.6) for individual identification and
population structure analysis. We designed a species species specific PCR assay using cytochrome b for identification of unknown snow leopard samples. These molecular markers
facilitate in depth studies to assess distribution, abundance, population structure, and landscape connectivity of this endangered species.
endangered species |
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SLN @ rakhee @ |
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1427 |
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Author |
Janecka, J. E., Jackson, R., Munkhtsog, B., Murphy, W. J. |
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Characterization of 9 microsatellites and primers in snow leopards and a species-specific PCR assay for identifying noninvasive samples |
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2014 |
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Conservation Genetic Resource |
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6 |
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2 |
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369:373 |
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Microsatellites,Cytochrome b, Snow Leopard, Noninvasive genetics, Individual identification |
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Abstract ![sorted by Abstract field, ascending order (up)](img/sort_asc.gif) |
Molecular markers that can effectively identify noninvasively collected samples and provide genetic
information are critical for understanding the distribution, status, and ecology of snow leopards (Panthera uncia). However, the low DNA quantity and quality in many
noninvasive samples such as scats makes PCR amplification and genotyping challenging. We therefore designed primers for 9 microsatellites loci previously isolated in the
domestic cat (Felis catus) specifically for snow leopard studies using noninvasive samples. The loci showed moderate levels of variation in two Mongolian snow leopard
populations. Combined with seven other loci that we previously described, they have sufficient variation (He = 0.504, An = 3.6) for individual identification and
population structure analysis. We designed a species species specific PCR assay using cytochrome b for identification of unknown snow leopard samples. These molecular markers
facilitate in depth studies to assess distribution, abundance, population structure, and landscape connectivity of this endangered species. |
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1428 |
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Jackson, R.; Fox, J.L. |
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Title |
Report on Fifth Slims Training Workshop (Nepal) |
Type |
Miscellaneous |
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2000 |
Publication |
Snow Line |
Abbreviated Journal |
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xvii |
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Pages |
6-15 |
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Slims; Nepal; training; techniques; Gps; field-work; surveys; Tibet; habitat; China; hunting; poaching; livestock; population; Shey-Phoksundo; parks; protected-area; reserves; annapurna; Dhorpatan; Manaslu; Sagarmatha; Langtang; Islt; Wwf; Hmg; Dnpwc; browse; 4460 |
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Nepal's snow leopards (Uncia uncia) are mostly found along the northern border with Tibet (China). The largest populations are in Dolpa, Mugu, Manang, and Myagdi Districts. Potential habitat totals about 30,000 square kilometers. Numbers are estimated at 300-500, but surveys are urgently needed to confirm this rough guess. Like elsewhere, the primary threats center on poaching, depletion of natural prey, livestock depredation and resultant retributive killing of snow leopards by herders, and the lack of public awareness and support for conserving snow leoaprds, especially among local herders. |
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International Snow Leopard Trust |
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Seattle |
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SLN @ rana @ 434 |
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466 |
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Jackson, R., Ahlborn, G.G. |
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Appendix: Snow leopard managment recommendations provided to HMG in: Himalayan Snow Leopard Project: Final Progress Report, Phase I. Report: 1-7. Himalayan |
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1986 |
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action plan, CCT, conservation, Himalaya, human wildlife conflict, hunting, livestock, local participation, local people, management/protected |
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Preliminary recommendations for the management of snow leopard and its prey are provided for the Langu Valley segment of the Shey-Pkoksundo National Park. Park-wide and country-wide conservation options and management recommendations await results of the surveys scheduled for 1987. The following management objectives are formulated: 1) Protection and ultimate restoration of all natural communities within the area 2) Special protection measures for snow leopard and musk deer (strict control of hunting and livestock grazing) 3) Secure natural resources around local villages 4) Respect traditional rights of villagers, while controlling high impact human activities 5) Secure cooperation of local people. These objectives are refined and recommendations for concrete conservation actions are made.
Notes: document is a part of the Himalayan Snow Leopard Project: Final Progress Report, Phase I |
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SLN @ rana @ |
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1119 |
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Author |
Jackson, R.M. |
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Title |
Snow Leopards in Nepal |
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Journal Article |
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1979 |
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Oryx |
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15 |
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191-195 |
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Nepal; status; distribution; conservation; hunting; hunters; poaching; pelts; fur; coat; browse; 2160 |
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Abstract ![sorted by Abstract field, ascending order (up)](img/sort_asc.gif) |
Reviews in detail occurence, status, and conservation measures related to snow leopards in Nepal. Estimates 150-300 snow leopards in Nepal. Local hunters can get 10 to 50 US dollars for a pelt |
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Document Type: English |
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SLN @ rana @ 50 |
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477 |
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Ale, S., Thapa, K., Jackson, R., Smith, J.L.D. |
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The fate of snow leopards in and around Mt. Everest |
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2010 |
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Cat News |
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53 |
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Autumn |
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19-21 |
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Mt. Everest, Everest, Rolwaling, snow leopard, re-colonize, Nepal |
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Since the early 2000s snow leopards Panthera uncia have re-colonized the southern slopes of Mt. Everest after several decades of extirpation. Are they now beginning to disperse to the adjoining valleys that may serve as habitat corridors linking the Everest region to other protected areas in Nepal? We conducted a cursory survey in autumn 2009 in Rolwaling lying west of Mt. Everest and detected snow leopard presence. We conclude that in these remote valleys snow leopards must rely upon livestock given the low abundance of natural prey, Himalayan tahr. Livestock-rearing is unfortunately declining in the region. Rolwaling requires immediate conservation attention for the continued survival of the endangered snow leopard and other high altitude flora and fauna. |
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1181 |
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Jackson, R.; Roe, J.; Wangchuk, R.; Hunter, D. |
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Camera-Trapping of Snow Leopards |
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2005 |
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Cat News |
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42 |
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19-21 |
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camera trapping; snow; snow leopards; snow leopard; snow-leopards; snow-leopard; leopards; leopard; felids; tigers; tiger; techniques; surveys; survey; information; factor; marking; behavior; Ahlborn; Jackson; habitat; status; range; census; India; Hemis; High; national; national park; National-park; park; Ladakh; leh |
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Solitary felids like tigers and snow leopards are notoriously difficult to enumerate, and indirect techniques like pugmark surveys often produce ambiguous information that is difficult to interpret because many factors influence marking behavior and frequency (Ahlborn & Jackson 1988). Considering the snow leopard's rugged habitat, it is not surprising then that information on its current status and occupied range is very limited. We adapted the camera-trapping techniques pioneered by Ullas Karanth and his associates for counting Bengal tigers to the census taking of snow leopards in the Rumbak watershed of the India's Hemis High Altitude National Park (HNP), located in Ladakh near Leh (76ø 50' to 77ø 45' East; 33ø 15' to 34ø 20'North). |
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SLN @ rana @ 1017 |
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475 |
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