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Author Anonymous url 
  Title Second order form no. 2: Snow leopard sign transect Type Miscellaneous
  Year Publication Abbreviated Journal  
  Volume Issue Pages  
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  Language English Summary Language Original Title  
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  Area Expedition Conference  
  Notes Approved no  
  Call Number SLN @ rana @ Serial 1341  
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Author Ziegelmayer, K. url 
  Title Tourism and Development: Implications for Snow Leopard Conservation in the Annapurna Conservation Area, Nepal Type Magazine Article
  Year Publication Yale F & ES Bulletin Abbreviated Journal  
  Volume Issue Pages 103  
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  Abstract The Annapurna Conservation Area was established in 1986 to manage environmental degradation. Its designation as a “conservation area,” as opposed to a “park,” was based on the World Wildlife Fund’s Integrated Conservation and Development approach. The goal was to maintain positive relations with indigenous people while protecting and conserving the area’s rich natural resources. The indigenous population was allowed to live in the designated area, and was also encouraged to take a partnership role in its management and sustainable development, in conjunction with the Annapurna Conservation Area Project management team. Though the Annapurna Conservation Area Project has achieved notable success in terms of both community development and protected area management, the focus on tourism (the area is Nepal’s most popular trekking destination) as the means to achieve the project’s development goals has led to a neglect of other stated goals, particularly wildlife conservation. The program lacks explicit linkages between wildlife conservation (e.g., the endangered snow leopard (Unica unica)) and community development, for example. This paper describes and analyzes how the project has handled snow leopard conservation. Alternative approaches for snow leopard conservation include coercive enforcement by the Department of National Parks and Wildlife Conservation, persuasive environmental education and outreach, agricultural extension assistance, from monetary compensation for livestock killed to monetary rewards for information on snow leopard poaching. I recommend several alternatives to improve snow leopard conservation. First, establish stronger and more formal links between the Annapurna Conservation Area Project and the Department of National Parks and Wildlife Conservation. The department has the legal authority to enforce the endangered species policy that protects snow leopards, but no physical presence within the conservation area. Second, agricultural outreach could provide the subsistence pastoralists with direct economic gains while reducing snow leopard depredation of livestock. This alternative fits well with the development philosophy of the Annapurna Conservation Area Project. Third, increase entrance fees, setting aside a portion for snow leopard conservation. This allows tourists, who value the snow leopard positively, to share in the cost of its conservation. Taken together, these alternatives will improve snow leopard conservation while maintaining the spirit and philosophy of the Annapurna Conservation Area Project.  
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  Notes Approved no  
  Call Number SLN @ rana @ Serial 1342  
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Author Anonymous url 
  Title Second order form 3: Ungulate survey Type Miscellaneous
  Year Publication Abbreviated Journal  
  Volume Issue Pages 1  
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  Notes Approved no  
  Call Number SLN @ rana @ Serial 1343  
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Author Williams, P. A. url 
  Title A GIS ASSESSMENT OF SNOW LEOPARD POTENTIAL RANGE AND PROTECTED AREAS THROUGHOUT INNER ASIA; AND THE DEVELOPMENT OF AN INTERNET MAPPING SERVICE FOR SNOW LEOPARD PROTECTION Type Manuscript
  Year 2006 Publication Abbreviated Journal  
  Volume Issue Pages 101  
  Keywords (up)  
  Abstract Snow leopard distribution knowledge is a critical conservation need. During the 2003 Snow Leopard Symposium, a pressing demand for a comprehensive collection of observation data became apparent. Expanding the knowledge of population distribution will help identify areas for conservation and add validity to the potential range map developed by Hunter and Jackson (1997). An equally strong need is an analysis of the extent of protected-area coverage of snow leopard habitat. Another crucial requirement is accurate representation and immediate availability of data to researchers throughout the range.

This project was developed in cooperation with the International Snow Leopard Trust, the Snow Leopard Conservancy, and International Center of Applied Ecology. It is also supported by the Snow Leopard Network, an affiliation of individuals working together to establish effective conservation of the snow leopard throughout Inner Asia. The specific goals of this project are to collect and graphically depict existent knowledge of snow leopard distribution and identify areas lacking data; evaluate the potential range map; assess protected areas to see if snow leopards occur indiscriminately; and produce an internet geographical database and interactive mapping service for research.

This thesis validates the potential range map created by Jackson and Hunter (1997). The majority of sightings (88%) fall within the modeled potential range. This suggests that the map is accurate in representing habitat that supports snow leopards. The thesis also highlights varying degrees of support for protected areas. Most of the potential range lies outside of protected areas. Consequently, most countries contain less than 47 percent of their sightings within protected area boundaries.

This thesis organized and analyzed existing snow leopard data in a geodatabase to evaluate the potential range map and effectiveness of protected areas throughout the range. The geodatabase and internet mapping service provides a standardized method of data exchange and communication among researchers. This is a small step forward in the conservation of the snow leopard, but creates a necessary foundation for future collaborative data exchange projects to follow. The technologies and methodologies used here should be expanded to meet the individual needs of projects.
 
  Address  
  Corporate Author Thesis Master's thesis  
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  Notes University of Montana Approved no  
  Call Number SLN @ rana @ Serial 1345  
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Author WWF Russia & WWF Mongolia Programme Office url 
  Title Altai-Sayan Ecoregion WWF Newsletter April-June 2011 Type Report
  Year 2011 Publication Abbreviated Journal  
  Volume April-June Issue 16 Pages 1-15  
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  Notes Approved no  
  Call Number SLN @ rana @ Serial 1349  
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Author Kuznetsov, B.A. url 
  Title Province of mountains of Central Asia Type Journal Article
  Year 1948 Publication Abbreviated Journal  
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  Notes Approved no  
  Call Number SLN @ rana @ Serial 1350  
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Author Janeč ka, J.E., Munkhtsog, B., Jackson, R.M., Naranbaatar, G., Mallon, D.P. & Murphy, W.J.   
  Title Comparison of noninvasive genetic and camera-trapping techniques for surveying snow leopards Type Journal Article
  Year 2011 Publication Journal of Mammalogy Abbreviated Journal  
  Volume 92 Issue 4 Pages 771-783  
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  Abstract The endangered snow leopard (Panthera uncia) is widely but sparsely distributed throughout the mountainous regions of central Asia. Detailed information on the status and abundance of the snow leopard is limited because of the logistical challenges faced when working in the rugged terrain it occupies, along with its secretive nature. Camera-trapping and noninvasive genetic techniques have been used successfully to survey this felid. We compared noninvasive genetic and camera-trapping snow leopard surveys in the Gobi Desert of Mongolia. We collected 180 putative snow leopard scats from 3 sites during an 8-day period along 37.74 km of transects. We then conducted a 65-day photographic survey at 1 of these sites, approximately 2 months after scat collection. In the site where both techniques were used noninvasive genetics detected 5 individuals in only 2 days of fieldwork compared to 7 individuals observed in the 65-day camera-trapping session. Estimates of population size from noninvasive genetics ranged between 16 and 19 snow leopards in the 314.3-km2 area surveyed, yielding densities of 4.9–5.9 individuals/100 km2. In comparison, the population estimate from the 65-day photographic survey was 4 individuals (adults only) within the 264-km2 area, for a density estimate of 1.5 snow leopards/100 km2. Higher density estimates from the noninvasive genetic survey were due partly to an inability to determine age and exclude subadults, reduced spatial distribution of sampling points as a consequence of collecting scats along linear transects, and deposition of scats by multiple snow leopards on common sites. Resulting differences could inflate abundance estimated from noninvasive genetic surveys and prevent direct comparison of densities derived from the 2 approaches unless appropriate adjustments are made to the study design.  
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  Publisher American Society of Mammalogists Place of Publication Editor  
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  Notes DOI: 10.1644/10-MAMM-A-036.1; URL: http://www.bioone.org/doi/full/10.1644/10-MAMM-A-036.1 Approved no  
  Call Number SLN @ rana @ Serial 1351  
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Author Fox, J. url 
  Title Snow Leopard. Panthera uncia Schreber 1776 Type Miscellaneous
  Year 1989 Publication Unknown Abbreviated Journal  
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  Notes Approved no  
  Call Number SLN @ rana @ Serial 1355  
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Author Jackson, R. url 
  Title SCC Plan for snow leopard Type Miscellaneous
  Year 1992 Publication Unknown Abbreviated Journal  
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  Notes Unsure if Jackson, R. is the author Approved no  
  Call Number SLN @ rana @ Serial 1356  
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Author International Snow Leopard Trust url 
  Title ISLT Hires Snow Leopard Conservationist in India Type Magazine Article
  Year 1998 Publication Abbreviated Journal  
  Volume Issue Pages  
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  Area Expedition Conference  
  Notes Approved no  
  Call Number SLN @ rana @ Serial 1357  
Permanent link to this record
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