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Author Jack, R. url 
  Title DNA Testing and GPS positioning of snow leopard (Panthera uncia) genetic material in the Khunjerab National Park Northern Areas, Pakistan Type Report
  Year 2008 Publication Abbreviated Journal  
  Volume Issue Pages 1-15  
  Keywords project; snow; snow leopard; snow-leopard; leopard; network; conservation; program; Dna; Gps; panthera; panthera uncia; Panthera-uncia; uncia; Khunjerab; Khunjerab-National-Park; national; national park; National-park; park; areas; area; Pakistan; protection; snow leopards; snow-leopards; leopards; local; local people; people; information; number; range; Animals; Animal; study; distribution; management; professional; techniques; capture; use; field; country; China; border; work; art; Gis; Forest; manage; Wwf; maps; map; location; training; research; mountain  
  Abstract The protection of Snow Leopards in the remote and economically disadvantaged Northern Areas of Pakistan needs local people equipped with the skills to gather and present information on the number and range of individual animals in their area. It is important for the success of a conservation campaign that the people living in the area are engaged in the conservation process. Snow Leopards are elusive and range through inhospitable terrain so direct study is difficult. Consequently the major goals for this project were twofold, to gather information on snow leopard distribution in this area and to train local university students and conservation management professionals in the techniques used for locating snow leopards without the need to capture or even see the animals. This project pioneered the use of DNA testing of field samples collected in Pakistan to determine the distribution of snow leopards and to attempt to identify individuals. These were collected in and around that country's most northerly national park, the Kunjurab National Park, which sits on the Pakistan China border. Though the Northern Areas is not a well developed part of Pakistan, it does possess a number of institutions that can work together to strengthen snow leopard conservation. The first of these is a newly established University with students ready to be trained in the skills needed. Secondly WWF-Pakistan has an office in the main town and a state of the art GIS laboratory in Lahore and already works closely with the Forest Department who manage the national park. All three institutions worked together in this project with WWF providing GIS expertise, the FD rangers, and the university students carrying out the laboratory work. In addition in the course of the project the University of the Punjab in Lahore also joined the effort, providing laboratory facilities for the students. As a result of this project maps have been produced showing the location of snow leopards in

two areas. Preliminary DNA evidence indicates that there is more than one animal in this

relatively small area, but the greatest achievement of this project is the training and

experience gained by the local students. For one student this has been life changing. Due to

the opportunities provided by this study the student, Nelofar gained significant scientific

training and as a consequence she is now working as a lecturer and research officer for the

Center for Integrated Mountain Research, New Campus University of the Punjab, Lahore

Pakistan
 
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  Notes Project funded by Snow Leopard Network's Snow Leopard Conservation Grant Program. Approved no  
  Call Number SLN @ rana @ 1067 Serial 427  
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Author Jackson, P. url 
  Title Villagers save predatory snow leopard Type Journal Article
  Year 1998 Publication Cat News Abbreviated Journal  
  Volume 28 Issue Pages 12  
  Keywords conservation education; damage; damage by wildlife; endangered; threatened species; mammals; management; wildlife; human relationships; relocation; goats; livestock; Pakistan; herders; prey; panthera uncia; browse; conservation; education; threatened; species; Human; relationships; panthera; uncia; 570  
  Abstract A short report is presented on the capture and relocation of a snow leopard in northern Pakistan. Villagers discovered the leopard attacking their goats and captured it. WWF-Gilgit relocated the leopard to a remote area. slj.  
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  Notes AUTHOR ADDRESS: 1172 Bougy, Switzerland. tel/fax: +41 (021) 808-6012; e-mail: pjackson@iprolink.ch Document Type: English Approved no  
  Call Number SLN @ rana @ 336 Serial 430  
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Author Jackson, R.; Ahlborn, G.   
  Title Snow leopards (Panthera- uncia) in Nepal – home range and movements Type Journal Article
  Year 1989 Publication National Geographic Research Abbreviated Journal  
  Volume 5 Issue 2 Pages 161-175  
  Keywords Nepal; asia; home-range; movements; Panthera-uncia; snow-leopard; snow leopard; browse; home; range; home range; panthera; panthera uncia; uncia; 840  
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  Notes Addresses:JACKSON R, CALIF INST ENVIRONM STUDIES,SNOW LEOPARD PROJECT,910 K ST,DAVIS,CA 95616 Publisher:NATL GEOGRAPHIC SOC, WASHINGTON Document Type: English Approved no  
  Call Number SLN @ rana @ 128 Serial 441  
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Author Jackson, R.; Wangchuk, R.; Hillard, D. url 
  Title Grassroots Measures to Protect the Endangered Snow Leopard from Herder Retribution: Lessons Learned from Predator-Proofing Corrals in Ladahh Type Conference Article
  Year 2002 Publication Abbreviated Journal  
  Volume Issue Pages  
  Keywords snow; leopard; livestock; depredation; herder; conflict; Ladakh; predator; protection; predation; protected; uncia; 4960  
  Abstract 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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  Notes Title, Monographic: Proceedings of the Snow Leopard Survival SummitPlace of Meeting: Seattle,WA Approved no  
  Call Number SLN @ rana @ 482 Serial 468  
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Author Jackson, R.; Roe, J. url 
  Title Preliminary Observations On Non-Invasive Techniques for Identifying Individual Snow Leopards and Monitoring Populations Type Conference Article
  Year 2002 Publication Abbreviated Journal  
  Volume Issue Pages  
  Keywords snow; leopard; monitoring; population; uncia; non; invasive; photo; camera; trap; traps; 4970  
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  Notes Abastract OnlyTitle, Monographic: Proceedings of the Snow Leopard Survival SummitPlace of Meeting: Seattle,WA Approved no  
  Call Number SLN @ rana @ 483 Serial 469  
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Author Jackson, R.; Wangchuk, R. url 
  Title A Community-Based Approach to Mitigating Livestock Depredation by Snow Leopards Type Miscellaneous
  Year 2004 Publication Human Dimensions of Wildlife Abbreviated Journal  
  Volume 9 Issue Pages 307-315  
  Keywords snow leopard,depredation,human-wildlife conflict,participatory planning,India; livestock; livestock depredation; livestock-depredation; depredation; endangered; snow; snow leopard; snow-leopard; leopard; panthera; panthera uncia; Panthera-uncia; uncia; Himalayan; protected; protected areas; protected area; protected-areas; protected-area; areas; area; attack; sheep; goats; goat; local; villagers; community-based; conservation; Hemis; national; national park; National-park; park; India; conflict; pens; income; participatory; strategy; planning; sense; project; snow leopards; snow-leopards; leopards; protection; retaliatory; poaching  
  Abstract Livestock depredation by the endangered snow leopard (Panthera uncia) is an increasingly contentious issue in Himalayan villages, especially in or near protected areas. Mass attacks in which as many as 100 sheep and goats are killed in a single incident inevitably result in retaliation by local villagers. This article describes a community-based conservation initiative to address this problem in Hemis National Park, India. Human-wildlife conflict is alleviated by predator-proofing villagers' nighttime livestock pens and by enhancing household incomes in environmentally sensitive and culturally compatible ways. The authors have found that the highly participatory strategy described here (Appreciative Participatory Planning and Action-APPA) leads to a sense of project ownership by local stakeholders, communal empowerment, self-reliance, and willingness to co-exist with

snow leopards. The most significant conservation outcome of this process is the protection from retaliatory poaching of up to five snow leopards for every village's livestock pens that are made predator-proof.
 
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  Call Number SLN @ rana @ 890 Serial 471  
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Author Jackson, R.; Roe, J.; Wangchuk, R.; Hunter, D. url 
  Title Estimating Snow Leopard Population Abundance Using Photography and Capture-Recapture Techniques Type Miscellaneous
  Year 2006 Publication Wildlife Society Bulletin Abbreviated Journal  
  Volume 34 Issue 3 Pages 772-781  
  Keywords abundance; camera trapping; capture rates; dentistry; identification; India; photography; snow leopard; Uncia uncia  
  Abstract 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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  Call Number SLN @ rana @ 912 Serial 476  
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Author Jalanka, H.H.   
  Title Medetomidine, medetomidine-ketamine combinations and atipamezole in nondomestic mammals: A clinical, physiological and comparative study Type Journal Article
  Year 1991 Publication Dep.Clinical Sciences, Coll.Veterinary Med., Helsinki, Finland Abbreviated Journal  
  Volume Issue Pages  
  Keywords taxonomy; phylogeny; Panthera-uncia; tranquilizers; zoo-management; physiology; veterinary; medical; medicine; zoo; zoos; browse; panthera; uncia; zoo management; management; 1460  
  Abstract Hibiscus section Furcaria is composed of over 400 species. Kenaf (Hibiscus cannabinus) and rosella (Hibiscus sabdariffa) belong to this section. Both species are important fiber crops. The survey reported in this book was undertaken in order to find new sources of genetic diversity collect, save, and distribute germ plasm. The work contains a taxonomic key of section Furcaria in southern Africa, 8 species, a description of the species illustrated by line-drawings, and distribution maps. (Also discussed are; H. mechowii, H. meeusei, H. surattensis, H. acetosella, H. torrei, H. mastersianus, H. hiernianus, H. altissimus, H. diversifolius sub sp. rivularis.)  
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  Notes BK: Jalanka, H. H. Medetomidine, medetomidine-ketamine combinations and atipamezole in nondomestic mammals: A clinical, physiological and comparative study. 282p Document Type: English. Approved no  
  Call Number SLN @ rana @ 177 Serial 487  
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Author Janovsky, M.; Grone, A.; Ciardo, D.; Vollm, J.; Burnens, A.; Fatzer, R.; Bacciarini, L.N. url 
  Title Phaeohyphomycosis in a Snow Leopard (Uncia uncia) due to Cladophialophora bantiana Type Miscellaneous
  Year 2006 Publication Journal of Comparative Pathology Abbreviated Journal  
  Volume 134 Issue Pages 245-248  
  Keywords Cladophialophora bantiana; fungal infection; phaeohyphomycosis; snow leopard; spinal meningitis; Uncia uncia  
  Abstract Phaeohyphomycosis caused by Cladophialophora bantiana was diagnosed in a 5-month-old snow leopard with spastic paralysis of the hind legs and inability to defaecate or urinate. At post-mortem examination, a greenish soft mass resembling an abscess was found on one side of the epidural space at the fourth lumbar vertebral body. Histological examination revealed a purulent meningitis with myelomalacia. Dematiaceous fungal hyphae, present within the inflammatory infiltrate, were identified as C. bantiana by culture and sequence analysis of the 18S ribosomal RNA gene. This neurotropic fungus rarely affects organs other than the brain in human beings and cats, and has been reported only occasionally in Europe. The case described suggests that phaeohyphomycosis due to C. bantiana infection may be recognized more frequently in the future and the possible involvement of organs other than the brain should be borne in mind.  
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  Call Number SLN @ rana @ 891 Serial 489  
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Author Jiang, Z. url 
  Title Snow leopards in the Dulan International Hunting Ground, Qinghai, China Type Report
  Year 2005 Publication Abbreviated Journal  
  Volume Issue Pages 1-8  
  Keywords snow; snow leopards; snow leopard; snow-leopards; snow-leopard; leopards; leopard; International; hunting; Qinghai; China; project; international snow leopard trust; International-Snow-Leopard-Trust; trust; program; surveys; survey; mountains; mountain; province; transect; study; area; transects; pug; pug marks; pug-marks; marks; scrapes; scrape; density; densities; wild; ungulates; ungulate; region; camera; environment; photo; capture; population; population size; population-size; Animals; Animal; 20; livestock; Human; attitudes; attitude; tibetan; 30; nature; reserve; uncia; Uncia uncia; Uncia-uncia; species; snow line; snow-line; endemic; alpine; central; Central Asia; asia; countries; country; fox; range; areas; Xinjiang; inner; Inner-Mongolia; Mongolia; Tibet; gansu; Sichuan; habitat; protection; nature reserves; reserves; cat; populations; domestic; laws; law; field; field surveys; field survey; field-surveys; field-survey; Kunlun; distribution; survival; status; Data; conservation  
  Abstract From March to May, 2006œªwe conducted extensive snow leopard surveys in the Burhanbuda Mountain Kunlun Mountains, Qinghai Province, China. 32 linear transect of 5~15 km each, which running through each vegetation type, were surveyed within the study area. A total of 72 traces of snow leopard were found along 4 transects (12.5% of total transects). The traces included pug marks or footprints, scrapes and urine marks. We estimated the average density of wild ungulates in the region was 2.88ñ0.35 individuals km-2(n=29). We emplaced 16 auto2 trigger cameras in different environments and eight photos of snow leopard were shot by four cameras and the capture rate of snow leopard was 71.4%. The minimum snow leopard population size in the Burhanbuda Mountain was two, because two snow leopards were phototrapped by different cameras at almost same time. Simultaneously, the cameras also shot 63 photos of other wild animals, including five photos are unidentified wild animals, and 20 photos of livestock. We evaluated the human attitudes towards snow leopard by interviewing with 27 Tibetan householders of 30 householders live in the study area. We propose to establish a nature reserve for protecting and managing snow leopards in the region. Snow leopard (Uncia uncia) is considered as a unique species because it lives above the snow line, it is endemic to alpines in Central Asia, inhabiting in 12 countries across Central Asia (Fox, 1992). Snow leopard ranges in alpine areas in Qinghai, Xinjiang, Inner Mongolia, Tibet, Gansu and Sichuan in western China (Liao, 1985, 1986; Zhou, 1987; Ma et al., 2002; Jiang & Xu, 2006). The total population and habitat of snow leopards in China are estimated to be 2,000~2,500 individuals and 1,824,316 km2, only 5% of which is under the protection of nature reserves. The cat's current range is fragmented (Zou & Zheng, 2003). Due to strong human persecutions, populations of snow leopards decreased significantly since the end of the 20th century. Thus, the

snow leopards are under the protection of international and domestic laws. From March to May, 2006, we conducted two field surveys in Zhiyu Village, Dulan County in Burhanbuda Mountain, Kunlun Mountains, China to determine the population, distribution and survival status of snow leopards in the area. The aim of the study was to provide ecologic data for snow leopard conservation.
 
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  Notes Project funded by International Snow Leopard Trust Small Grants Program. Approved no  
  Call Number SLN @ rana @ 1068 Serial 493  
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