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Author |
Yondon, O. |
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Title |
Long-Term Conservation of Argali and Snow Leopard in the Trans-Boundary Areas of the Altai-Sayan Ecoregion between Mongolia and Russia (Second Phase) |
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Report |
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Year |
2010 |
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1-6 |
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Keywords |
Mongolia, Russia, argali, snow leopard, Altai-Sayan |
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Abstract |
Objective 1: To ensure long-term conservation of Argali and Snow leopard in the selected areas through proactive involvement of local communities and local organisations.
Objective 2. Facilitate establishing new PA in priority areas (critical habitat and migration corridors) of Argali and Snow leopard, which includes also trans-boundary PA’s |
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WWF Mongolia |
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WWF Mongolia |
Place of Publication |
Mongolia |
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English |
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Half-year (6 month) report |
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no |
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Call Number |
SLN @ rana @ |
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1106 |
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Author |
WWF Russia & Mongolia |
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Title |
WWF Altai-Sayan Newsletter |
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Report |
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Year |
2010 |
Publication |
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Abbreviated Journal |
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Volume |
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Issue |
12 |
Pages |
6 |
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Keywords |
WWF Russia, WWF Mongolia, argali, snow leopard |
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Abstract |
WWF Russia and WWF Mongolia share the main achievements of both offices in Altai – Sayan Ecoregion regarding species conservation, protected areas, ecotourism, public awareness, education, eco clubs, fresh water. Several articles reference snow leopards:
WWF Mongolia
Argali population observation in transboundary area
WWF Russia
Ecotourism camps in the habitats of a snow leopard and argali WWF and UNDP
WWF Russia
WWF assessed the level of conflict between herders and a snow leopard in Republic of Tyva
WWF Russia
The first ecological festival in the history of Mountain Altai for snow leopard conservation! |
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Email: tivanitskaya@wwf.ru |
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Corporate Author |
Communication Staff of Altai - Sayan Programme in Russia and Mongolia |
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WWF |
Place of Publication |
Russia |
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English |
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English |
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SLN @ rana @ |
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1110 |
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Author |
WWF Russia & Mongolia |
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Title |
WWF Altai-Sayan Newsletter |
Type |
Report |
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Year |
2010 |
Publication |
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Abbreviated Journal |
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Volume |
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Issue |
13 |
Pages |
8 |
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Keywords |
WWF Russia, WWF Mongolia, argali, snow leopard |
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Abstract |
WWF Russia and WWF Mongolia share the main achievements of both offices in Altai – Sayan Ecoregion regarding species conservation, protected areas, ecotourism, public awareness,education, eco clubs, fresh water. Several articles reference snow leopards and argali:
WWF Russia
Camera Trapping in Argut River Valley
Community inspection is established in Republic of Altai to take part in anti – poaching activities in the key territory for argali and snow leopard conservation
“Land of Snow Leopard” Ecotourism Project as a tool to protect Irbis and Argali by local communities
Snow Leopard and Argali inspired the Masters of Felt Making of Republic of Altai
Snow Leopard – a Treasure of Tuva. WWF introduces Tuva journalists to the snow leopard (Tsagaan Shibetu Ridge)
WWF and Oxfam –GB joint project works on capacity building of local people in Tuva
WWF Mongolia
Nature conservation through involving local residents and supporting their initiatives
Community groups trans-boundary cooperation
Altai-Sayan PA administration staff start to undertake quality research activities at experts level |
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Email: khulan@wwf.mn |
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Corporate Author |
Communication Staff of Altai - Sayan Programme in Russia and Mongolia |
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WWF |
Place of Publication |
Russia |
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English |
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English |
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SLN @ rana @ |
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1138 |
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Author |
Sharma, R. |
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Title |
Of Men and Mountain Ghosts: Glimpses from the Rooftop of the World |
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Magazine Article |
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Year |
2010 |
Publication |
GEO |
Abbreviated Journal |
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3 |
Issue |
6 |
Pages |
56-67 |
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Keywords |
snow leopard, camera trap, Spiti, India, Sharma |
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Abstract |
Catching a glimpse of a snow leopard is a rare and exciting event for anyone. For researchers, hideen camera traps have become a vital tool in their work. |
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GEO International |
Place of Publication |
India |
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English |
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SLN @ rana @ |
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1139 |
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Author |
Ale, S., Thapa, K., Jackson, R., Smith, J.L.D. |
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Title |
The fate of snow leopards in and around Mt. Everest |
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Journal Article |
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Year |
2010 |
Publication |
Cat News |
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53 |
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Autumn |
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19-21 |
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Keywords |
Mt. Everest, Everest, Rolwaling, snow leopard, re-colonize, Nepal |
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Abstract |
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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SLN @ rana @ |
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1181 |
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Author |
Richardson, N. |
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Title |
The snow leopard: ghost of the mountains |
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Newspaper Article |
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Year |
2010 |
Publication |
The telegraph |
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16 Dec 2010 |
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Keywords |
Mongolia, Snow Leopard Trust, Panthera, snow leopard, research |
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Snow leopards face the threats of poaching, habitat loss and diminishing prey. In remotest Mongolia, a research team is keeping tabs on this iconic and elusive species. |
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http://www.telegraph.co.uk/earth/wildlife/8207266/The-snow-leopard-ghost-of-the-mountains.html |
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SLN @ rana @ |
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1292 |
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Author |
Rosen, T. |
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Title |
From Yellowstone to the Karakorums: A journey to understand conflicts with large carnivores |
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Magazine Article |
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Year |
2010 |
Publication |
NRCC News |
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23 |
Issue |
1 |
Pages |
12-13 |
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Keywords |
Pakistan, Project Snow Leopard, Baltistan Wildlife Conservation and Development Organization |
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NRCC News (Northern Rockies Conservation Cooperative) annual newsletter: bridging science and policy to advance conservation. Fall 2010, issue 23(1). |
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SLN @ rana @ |
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1295 |
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Author |
Sharma, Koustubh. McCarthy, Thomas. Johannson, Orjan. Ud Din, Jaffar. Bayarjargal, A. |
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Title |
Snow Leopards and Telemetry: Experiences and Challenges |
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Journal Article |
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Year |
2010 |
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Telemetry in Wildlife Science |
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13 |
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No. 1 |
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1 -5 |
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Keywords |
Snow Leopards, telemetry |
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Abstract |
The snow leopard Panthera uncia is one of the least studied felids in the world. Little is know about various aspects of the ecology of the snow leopard, which is cryptic in nature and found across 12 countries in Central Asia. Most research on snow leopards has been based on non-invasive methods such as sign surveys for presence (e.g. Jackson and Hunter 1996), scat analyses for diet (e.g. Chundawat and Rawat 1992; Oli et al., 2008, 2010) for population estimation, and studies based on human interviews (Mehta and Heinen 2001; Mishra and Bagchi 2006).
Despite this plethora of studies employing non-invasive techniques, several crucial questions about snow leopard ecology remain unanswered. Information about the animal’s home range, dispersal, corridors, pattern of habitat use, movement patterns, hunting frequency, behavior and intra – specific interactions is not available yet. In order to design population monitoring studies using camera traps or DNA analyses, one needs a good understanding of snow leopard ecology, including the home range and movement patterns (Williams et al., 2002). Telemetry is still the best available method and perhaps much less invasive than direct observations for studying the biology and ecology of cryptic animals. |
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SLN @ rakhee @ |
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1380 |
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Author |
Ming, M., Munkhtsog, B., McCarthy, T., McCarthy, K. |
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Title |
Monitor ing of Population Density of Snow Leopard in X injiang |
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Journal Article |
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Year |
2011 |
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Journal of Ecology and Rural Environment |
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27 |
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1 |
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79-83 |
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Keywords |
Uncia uncia; snow leopard; monitoring method; trace; infrared camera; relative intensity |
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The snow leopard (Uncia uncia) is a very rare species in China. The survey of traces of snow leopard in Kunlun, Altay and Tianshan is them a instep of the Project of Snow Leopard in X injiang supported by the International Snow Leopard Trust ( SLT) and the Xinjiang Conservation Fund (XCF). During the field survey from 2004 to 2010, the Xinjiang Snow Leopard Group ( XSLG) spent about 270 days in over 20 different places, covering over 150 transects totaling nearly 190 km, and found 1- 3 traces per kilometer. The traces of snow leopard recorded include dung, odor, chains of footprints, scraping, paw nail marks, lying mark, fur, urine, bloodstain, leftover of prey corpse, roaring and others. Based on tracer image analyses, the XSLG got to know primarily scopes of the domains, distribution and relative density of the snow leopard in these areas. Then the group began to take infrared photos, conducted survey of food sources of the leopards, investigated fur market and paths of trading, and cases of killing, and carry out civil survey through questionnaire, non government organization community service and research on conflicts between grazing and wild life protection. A total of 36 infrared came ras were laid out, working a total of about 2 094 days or 50 256 hours. A total 71 rolls of film were collected and developed, includ ing 32 clear pictures of snow leopards, thus making up a shooting rate or capture rate of 1.53%. It was ascertained that in Tomur Peak area, there were 5- 8 snow leopards roaming within a range of 250 km2, forming a population density of 2��0- 3��2 per 100 km2. After compar ing the various monitoring results, the advantages and limitations of different monitoring methods have been discussed. |
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Chinese |
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SLN @ rana @ |
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1303 |
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Author |
Gronberg, E. |
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Title |
Movement patterns of snow leopard (Panthera uncia) around kills based on GPS location clusters |
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2011 |
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Keywords |
snow leopard, Panthera, Mongolia, Snow Leopard Trust, predator, prey, kill, behavior |
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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. |
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Master's thesis |
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Swedish University of Agricultural Sciences, Faculty of Natural Resources and Agricultural Sciences, Department of Ecology, Grimsö Wildlife Research Station |
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SLN @ rana @ |
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1301 |
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