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Simms, A., Moheb, Z., Salahudin, Ali, H., Ali, I. & Wood, T. |
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Title |
Saving threatened species in Afghanistan: snow leopards in the Wakhan Corridor |
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Journal Article |
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Year |
2011 |
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International Journal of Environmental Studies |
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68 |
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3 |
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299-312 |
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Snow leopard; Camera trap; Governance; Rangers; Corral; Insurance |
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The Wakhan Corridor in northeast Afghanistan is an area known for relatively abundant wildlife and it appears to represent Afghanistan’s most important snow leopard landscape. The Wildlife Conservation Society (WCS) has been working in Wakhan since 2006. Recent camera trap surveys have documented the presence of snow leopards at 16 different locations in the landscape. These are the first camera trap records of snow leopards in Afghanistan. Threats to snow leopards in the region include the fur trade, retaliatory killing by shepherds and the capture of live animals for pets. WCS is developing an integrated management approach for this species, involving local governance, protection by a cadre of rangers, education, construction of predator-proof livestock corrals, a livestock insurance program, tourism and research activities. This management approach is expected to contribute significantly to the conservation of snow leopards and other wildlife species in the Wakhan. |
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Wildlife Conservation Society, International Programs, 2300 Southern Blvd, New York 10460, USA |
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SLN @ rana @ |
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1347 |
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International Snow Leopard Trust |
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Snow Leopard News Autumn/ Winter 2000 |
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Miscellaneous |
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2000 |
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Snow Leopard News |
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McCarthy; Mongolia; field-work; surveys; collars; habitat; research; home-ranges; tourism; parks; preserves; reserves; Islt; Nepal; women; conservation; awareness; herders; crafts; livestock; pelts; furs; bones; hunting; incentives; browse; 4370 |
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Islt |
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Seattle, Wa |
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Full Text at URLTable of Contents:1. Dr. Tom McCarhty Joins ISLT Team2.Community Based Tourism3.Women and Snow Leopard Conservation4.Taking Stock in Snow Leopard Conservation5.Saving the Snow Leopard with Knitting Needles |
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SLN @ rana @ 425 |
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928 |
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Author |
Koshkarev, E. |
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Title |
Snow leopard along the border of Russia and Mongolia |
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Journal Article |
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Year |
1998 |
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Cat News |
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28 |
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12-14 |
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behavior; census; survey methods; desert-habitat; distribution; ecosystems; endangered; threatened species; home-range; territory; mammals; montane; Russia; Mongolia; scat-analysis; tracks; tracking; status; Hovsogul; Sayan; siberia; Hovsogol; browse; survey; methods; desert; habitat; threatened; species; home; range; scat; analysis; 550 |
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The author discusses the distribution of snow leopards along the border of Russia and Mongolia. The range extension of the leopard indicates their ability to cross desert areas that separate mountain habitats.habitat; range extension; scat analysis; techniques; tracks/tracking | snow leopard |
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Full Text at URL: Inst. Biol., Irkutsk Univ., Russia , data base: Wildlife Review AbstractsDocument Type: English |
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SLN @ rana @ 339 |
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565 |
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Koshkarev, E. |
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Title |
Strategy of Snow Leopard Conservation in the Range |
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Conference Article |
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2002 |
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snow; leopard; uncia; conservation; poaching; protected; areas; range; population; protection; asia; endangered; species; 4990 |
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Islt |
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Islt |
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Title, Monographic: Proceedings of the Snow Leopard Survival SummitPlace of Meeting: Seattle,WA |
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SLN @ rana @ 485 |
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568 |
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Author |
Kydyraliev A.K. |
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Title |
Some animal species' habitat alteration in the Central Tien Shan |
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Miscellaneous |
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1970 |
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Part 1. |
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46-48 |
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Kyrgyzstan; tien shan; human influence; water conservation activity; decline; range; number; birds; mammals; game species; moral; argali; snow leopard.; 7540; Russian |
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Irrigation and drainage activity in Tien Shan led some bird species to disappear. Number of species to build their nests in tree holes has dropped. Mongolian sandpiper and black-bellied sand grouse disappeared in the steppe areas. Great bustard, formerly nesting in this area, can now be rarely seen only in migration. The direct anthropogenic influence resulted in shrinkage of game animal and bird populations such as moral, goitered gazelle, argali, snow leopard, and stone marten. |
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Full text available in RussianJournal Title: Influence of anthropogenic factors on the formation of zoogeographic complexes. The fifth inter-school zoogeographic conference. |
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SLN @ rana @ 732 |
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605 |
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Author |
Lesnyak A.P. |
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Title |
Cats in Uzbekistan's fur trade |
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Miscellaneous |
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1984 |
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57-64 |
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Uzbekistan; rare species; Cats; species range; diet; hunting; pelts; poaching; snow leopard.; 7580; Russian |
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Data of distribution, food, and fur trade of Felidae (North Persian leopard, snow leopard, caracal, Turkestan lynx, manul, Turkestan steppe cat, jungle cat [chaus], sand cat) in Uzbekistan is given. Snow leopard is an object of illegal hunting. |
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Full text available in RussianJournal Title: Hunting and nature protection in Uzbekistan. |
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SLN @ rana @ 736 |
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615 |
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Author |
Ale S. |
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Have snow leopards made a comeback to the Everest region of Nepal? |
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Report |
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2005 |
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1-21 |
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snow; snow leopards; snow leopard; snow-leopards; snow-leopard; leopards; leopard; region; Nepal; Report; International; international snow leopard trust; International-Snow-Leopard-Trust; trust; program; 1960; endangered; Sagarmatha; High; Himalaya; tourism; impact; establishment; national; national park; National-park; park; 1980; area; Tibet; surveys; survey; status; Cats; cat; prey; research; project; sign; transects; transect; length; valley; Response; hunting; recovery; Himalayan; tahr; density; densities; range; pugmarks; sighting; 60; study; population; predators; predator; structure; prey species; prey-species; species; populations; mortality; effects; predation; population dynamics |
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In the 1960s, the endangered snow leopard was locally extirpated from the Sagarmatha (Mt. Everest) region of Nepal. In this Sherpa-inhabited high Himalaya, the flourishing tourism since the ascent of Mt Everest in 1953, has caused both prosperity and adverse impacts, the concern that catalyzed the establishment of Mt. Everest National Park in the region in 1976. In the late 1980s, there were reports that some transient snow leopards may have visited the area from adjoining Tibet, but no biological surveys exist to confirm the status of the cats and their prey. Have snow leopards finally returned to the top of the world? Exploring this question was the main purpose of this research project. We systematically walked altogether 24 sign transects covering over 13 km in length in three valleys, i.e. Namche, Phortse and Gokyo, of the park, and counted several snow leopard signs. The results indicated that snow leopards have made a comeback in the park in response to decades of protective measures, the virtual cessation of hunting and the recovery of the Himalayan tahr which is snow leopard's prey. The average sign density (4.2 signs/km and 2.5 sign sites/km) was comparable to that reported from other parts of the cats' range in the Himalaya. On this basis, we estimated the cat density in the Everest region between 1 to 3 cats per 100 sq km, a figure that was supported by different sets of pugmarks and actual sightings of snow leopards in the 60 km2 sample survey area. In the study area, tahr population had a low reproductive rate (e.g. kids-to-females ratio, 0.1, in Namche). Since predators can influence the size and the structure of prey species populations through mortality and through non-lethal effects or predation risk, snow leopards could have been the cause of the population dynamics of tahr in Sagarmtha, but this study could not confirm this speculation for which further probing may be required. |
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Progress report for the International Snow Leopard Trust Small Grants Program. |
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SLN @ rana @ 1063 |
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50 |
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Mishra, C.; Madhusudan, M.D.; Datta, A. |
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Mammals of the high altitudes of western Arunachal Pradesh, eastern Himalaya: an assessment of threats and conservation needs |
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Miscellaneous |
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2006 |
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Oryx |
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40 |
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1 |
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1-7 |
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anthropogenic; area; Arunachal; assessment; awareness; bharal; biodiversity; carnivore; carnivores; community; community-based; conservation; deer; depredation; dhole; endangered; extinct; fauna; goral; grazing; habitat; habitats; High; Himalaya; hunting; incentives; India; indian; Iucn; leopard; livestock; livestock-depredation; livestock depredation; local; mammals; musk; musk-deer; nayaur; panthera; people; peoples; plant; plants; potential; Pseudois; Pseudois-nayaur; pseudois nayaur; range; recent; region; Report; reserve; resource; schools; snow; snow-leopard; snow leopard; species; survey; surveys; threat; threatened; threats; tiger; uncia; Uncia-uncia; Uncia uncia; ungulate; ungulates; valley; wildlife; work; Panthera-tigris; tigris |
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The high altitudes of Arunachal Pradesh,India, located in the Eastern Himalaya biodiversity hotspot, remain zoologically unexplored and unprotected. We report results of recent mammal surveys in the high altitude habitats of western Arunachal Pradesh. A total of 35 mammal species (including 12 carnivores, 10 ungulates and 5 primates) were recorded, of which 13 are categorized as Endangered or Vulnerable on the IUCN Red List. One species of primate, the Arunachal macaque Macaca munzala, is new to science and the Chinese goral Nemorhaedus caudatus is a new addition to the ungulate fauna of the Indian subcontinent. We documented peoples' dependence on natural resources for grazing and extraction of timber and medicinal plants. The region's mammals are threatened by widespread hunting. The snow leopard Uncia uncia and dhole Cuon alpinus are also persecuted in retaliation for livestock depredation. The tiger Panthera tigris, earlier reported from the lower valleys, is now apparently extinct there, and range reductions over the last two decades are reported for bharal Pseudois nayaur and musk deer Moschus sp.. Based on mammal species richness, extent of high altitude habitat, and levels of anthropogenic disturbance, we identified a potential site for the creation of Arunachal's first high altitude wildlife reserve (815 km2). Community-based efforts that provide incentives for conservation-friendly practices could work in this area, and conservation awareness programmes are required, not just amongst the local communities and schools but for politicians, bureaucrats and the army. |
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SLN @ rana @ 861 |
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697 |
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Panwar, H.S.; Fox, J.L.; Sinha, S.P.; Chundawat, R.S. |
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Title |
Ecology of the Snow Loepard and Associated Prey in Central Ladakh |
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1986 |
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18 |
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Ladakh; research; field-study; study; India; home-range; movement; habitat; prey; behavior; Himalaya; Human; ineraction; conflisct; Landsat; browse; 4180 |
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Full text at URL |
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SLN @ rana @ 406 |
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758 |
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Plyaskin V.E. |
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Rare Felidae species in the Chatkal valley of the West Tien Shan |
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1982 |
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41-42 |
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Kyrgyzstan; Besh-Aral nature reserve; Cats; snow leopard; Lynx; manul; species range; diet; decline; illegal hunting.; 7910; Russian |
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In 1981, rare Felidae species such as snow leopard, Turkistan lynx, and manul (one encounter recorded) were found in the Besh-Aral nature reserve (the Chatkal valley). Illegal hunting and high concentration of people in some places is emphasized to impact the animal populations. |
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Full text available in RussianJournal Title: Protection and reproduction of fauna. |
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SLN @ rana @ 769 |
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775 |
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Poyarkov, A.D.; Subbotin, A.E. |
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The Snow Leopard Status in Russia |
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2002 |
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snow; leopard; status; uncia; Russia; range; habitat; population; 5050 |
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Title, Monographic: Proceedings of the Snow Leopard Survival SummitPlace of Meeting: Seattle,WA |
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SLN @ rana @ 491 |
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789 |
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Poyarkov, A.D.; Subbotin, A.E. |
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Strategic Priorities and the System of Measures for Snow Leopard Conservation in Russia |
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2002 |
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snow; leopard; range; conservation; habitats; cooridoors; reserve; reserves; Russia; competitors; Competition; predators prey; population; poaching; smuggling; grazers; program; 5060 |
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Title, Monographic: Proceedings of the Snow Leopard Survival SummitPlace of Meeting: Seattle,WA |
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SLN @ rana @ 492 |
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790 |
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Schaller, G.B.; Hong, L.; Talipu, J.; Mingjiang, R.Q. |
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The Snow Leopard in Xinjiang, China |
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1989 |
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Snow Line |
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winter |
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surveys; research; Tian-Shan; scrapes; sign; range; browse; 4780 |
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Full Text at URLJournal Title: Snow Line |
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SLN @ rana @ 465 |
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869 |
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Schaller, G.B.; Tserendeleg, J.; Amarsana, G. |
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Observations on snow leopards in Mongolia |
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1994 |
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33-42 |
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Mongolia; gobi; Altay; Altai; survey; surveys; habitat; scrapes; markings; feces; spray; distribution; status; park; parks; reserve; reserves; refuge; activity; conservation; home-range; protected-areas; movements; predator; prey; diet; livestock; herders; ibex; argali; hunting; poaching; trapping; killing; browse; home range; protected areas; protected; 2710 |
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Islt |
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Usa |
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J.Fox; D.Jizeng |
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Full Text at URLTitle, Monographic: Proceedings of the Seventh International Snow Leopard Symposium. International Snow Leopard TrustPlace of Meeting: ChinaDate of Copyright: 1994 |
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SLN @ rana @ 258 |
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870 |
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Author |
Sludskiy A.A. |
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Title |
Snow leopard or irbis Pantera (Uncia) uncia Schreber (1776) |
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Miscellaneous |
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1973 |
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Vol. 34. Hunting mammals of Kazakhstan |
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74-83 |
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Ussr; Kazakhstan; snow leopard; species range; distribution; number; habitats; hunting; pelts; conservation measures.; 8170; Russian |
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A detailed description of the snow leopard habitat in Turkmenistan, Tajikistan, Uzbekistan, Kyrgyzstan, Kazakhstan, Mongolia, China, Pakistan, and India is given. Provided are data concerning its distribution and population size in the USSR, Kazakhstan and other neighbour countries, as well as its habitat, catching, and fur trade. Reduction of the snow leopard catching volumes for zoological trade to 10 or less animals is recommended to preserve the species; establish two new highland nature reserves; improve the management of snow leopard raising in captivity. |
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Full text available in RussianJournal Title: Volumes of the Institute of Zoology, Kazakh SSR. |
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SLN @ rana @ 795 |
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898 |
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Author |
Sokolov V.E. |
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Title |
Snow leopard genus |
Type |
Miscellaneous |
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1979 |
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238-240 |
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snow leopard; taxonomy; species range; habitats; reproduction; diet; Pregnancy; birth; cubs; lifetime; endangered species.; 8240; Russian |
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Genus Uncia has only one species snow leopard. Described is the length of body, length of tail, body weight, colour, skull, number of teeth, habitat, reproduction, and life expectancy. This species has no essential practical value and is included in the Red Data Book as an endangered species. |
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Full text available in RussianJournal Title: Taxonomy of mammals. |
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no |
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Call Number |
SLN @ rana @ 802 |
Serial |
907 |
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Author |
McCarthy, T.; Fuller, T.; Munkhtsog, B. |
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Title |
Movements and activities of snow leopards in Southwestern Mongolia |
Type |
Miscellaneous |
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Year |
2005 |
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124 |
Issue |
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527-537 |
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snow leopard; Uncia uncia; Mongolia; satellite radio-telemetry; home range; activity patterns; 6310 |
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Abstract |
Four adult (2M:2F) snow leopards (Uncia uncia) were radio-monitored (VHF; one also via satellite) year-round during 1994-1997 in the Altai Mountains of southwestern Mongolia where prey densities (i.e., ibex, Capra siberica) were relatively low (0.9/km2). Marked animals were more active at night (51%) than during the day (35%). Within the study area, marked leopards showed strong a.nity for steep and rugged terrain, high use of areas rich in ungulate prey, and a.nity for habitat edges. The satellite-monitored leopard moved more than 12 km on 14% of consecutive days monitored. Home ranges determined by standard telemetry techniques overlapped substantially and were at least 13-141 km2in size. However, the satellite-monitored individual apparently ranged over an area of at least 1590 km2, and perhaps over as much as 4500 km2. Since telemetry attempts from the ground were
frequently unsuccessful dx¬ 72%_, we suspect all marked animals likely had large home ranges. Relatively low prey abundance in the area also suggested that home ranges of >500 km2were not unreasonable to expect, though these are >10-fold larger than measured in any other part of snow leopard range. Home ranges of snow leopards may be larger than we suspect in many areas, and thus estimation of snow leopard conservation status must rigorously consider logistical constraints inherent in telemetry studies, and the relative abundance of prey. |
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Journal Title: Biological Conservation |
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SLN @ rana @ 609 |
Serial |
665 |
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Author |
Villarrubia, C.; Jackson, R. |
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Title |
Snow Leopard Conservation on a Regional Basis: Elements in Planning Protected Areas |
Type |
Conference Article |
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Year |
1994 |
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Abbreviated Journal |
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Volume |
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Issue |
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253-263 |
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conservation; protected-area; parks; reserves; refuge; planning; governments; local-peoples; herders; livestock; life-history; home-range; seasonal-shifts; core-areas; dispersal; habitat; ecology; fragmentation; buffers; zones; corridors; barriers; browse; protected; area; local people; local; history; home range; seasonal; shifts; core; 3540 |
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Islt |
Place of Publication |
Usa |
Editor |
J.L.Fox; D.Jizeng |
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Full text available at URLTitle, Monographic: Seventh International Snow Leopard SymposiumPlace of Meeting: ChinaDate of Copyright: 1994 |
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no |
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Call Number |
SLN @ rana @ 264 |
Serial |
986 |
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Author |
Yanfa, L.; Bangjie, T. |
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Title |
A Preliminary Study on the Geographical Distribution of Snow Leopards in China |
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Conference Article |
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Year |
1988 |
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51-63 |
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China; conservation; range; distribution; surveys; survey; collecting; capturing; Qinghai; gansu; Sichuan; Xinjiang; poaching; hunting; pelts; furs; browse; 4260 |
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Interanational Snow Leopard Trust and The Wildlife Institute of India |
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Editor |
H.Freeman |
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Full Text Available at URLTitle, Monographic: Fifth International Snow Leopard SymposiumPlace of Meeting: Srinigar, IndiaDate of Copyright: 1988 |
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no |
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Call Number |
SLN @ rana @ 415 |
Serial |
1046 |
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Author |
McCarthy, T.; Murray, K.; Sharma, K.; Johansson, O. |
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Title |
Preliminary results of a long-term study of snow leopards in South Gobi, Mongolia |
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Journal Article |
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Year |
2010 |
Publication |
Cat News |
Abbreviated Journal |
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Autumn |
Issue |
53 |
Pages |
15-19 |
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Keywords |
snow leopard, Mongolia, monitor, population, Panthera, Snow Leopard Trust, Snow Leopard Conservation Fund, South Gobi, ecology, radio collar, GPS-satellite collar, home range, camera trapping, fecal genetics, occupancy modeling |
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Abstract |
Snow leopards Panthera uncia are under threat across their range and require urgent conservation actions based on sound science. However, their remote habitat and cryptic nature make them inherently difficult to study and past attempts have provided insufficient information upon which to base effective conservation. Further, there has been no statistically-reliable and cost-effective method available to monitor snow leopard populations, focus conservation effort on key populations, or assess conservation impacts. To address these multiple information needs, Panthera, Snow Leopard Trust, and Snow Leopard Conservation Fund, launched an ambitious long-term study in Mongolia’s South Gobi province in 2008. To date, 10 snow leo-pards have been fitted with GPS-satellite collars to provide information on basic snow leopard ecology. Using 2,443 locations we calculated MCP home ranges of 150 – 938 km2, with substantial overlap between individuals. Exploratory movements outside typical snow leopard habitat have been observed. Trials of camera trapping, fecal genetics, and occupancy modeling, have been completed. Each method ex-hibits promise, and limitations, as potential monitoring tools for this elusive species. |
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English |
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no |
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SLN @ rana @ |
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1151 |
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Author |
Johansson, O., Rauset, G. R., Samelius, G., McCarthy, T., Andren, H., Tumursukh, L., Mishra, C. |
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Title |
Land sharing is essential for snow leopard conservation |
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Journal Article |
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2016 |
Publication |
Biological Conservation |
Abbreviated Journal |
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Issue |
203 |
Pages |
1-7 |
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Home range, LoCoH, Mongolia, Panthera uncial, Protected areas, Land sparing |
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Conserving large carnivores in an increasingly crowded planet raises difficult challenges. A recurring debate is whether large carnivores can be conserved in human used landscapes (land sharing) or whether they require specially designated areas (land sparing). Here we show that 40% of the 170 protected areas in the global range of the snow leopard (Panthera uncia) are smaller than the home range of a single adult male and only 4– 13% are large enough for a 90% probability of containing 15 or more adult females. We used data from 16 snow leopards equipped with GPS collars in the Tost Mountains of South Gobi, Mongolia, to calculate home range size and overlap using three different estimators: minimum convex polygons (MCP), kernel utility distributions (Kernel), and local convex hulls (LoCoH). Local convex hull home ranges were smaller and included lower proportions of unused habitats compared to home ranges based on minimum convex polygons and Kernels. Intra-sexual home range overlapwas low, especially for adult males, suggesting that snowleopards are territorial. Mean home range size based on the LoCoH estimates was 207 km2 ± 63 SD for adult males and 124 km2 ± 41 SD for adult females. Our estimates were 6–44 times larger than earlier estimates based on VHF technology when comparing similar estimators, i.e. MCP. Our study illustrates that protected areas alone will not be able to conserve predatorswith large home ranges and conservationists and managers should not restrict their efforts to land sparing. |
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SLN @ rakhee @ |
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1446 |
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Author |
Kashkarov, E. |
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Title |
THE SNOW LEOPARD OF KIRGIZIA: NATIONAL SHAME OR NATIONAL PRIDE |
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2017 |
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239-253 |
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snow leopard, irbis, ibex, mountain sheep, conservation, range, reserve, monitoring, cameratrap, Sarychat, Kirgizia, Central Asia. |
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Article examines the problems existing in conservation of the snow leopard in Kirgizia after break-up of the
USSR. Unfortunate situation is common to most of the 14 countries in the snow leopard range, but seems
especially sharp to Kirgizia. Yet half of the century ago Kirgizia has had about 1.5 thousand of the snow
leopards, and today there remains no more than 1/10. In Soviet time Kirgizia was a global supplier of the
snow leopards for the zoo-export � to create a reserve number of endangered cats in captivity. Today, at
least half of the snow leopards in the Zoos of the world are individuals, caught in Kirgizia or their
descendants.
Since independence, Kirgizia has set new records. In Sarychat-Irtash reserve � the best for the snow
leopard in Central Asia, and probably in the whole range � this species was completely destroyed after 3
years of reserve opening... and 17 years later � revived... Situation comes presently back to the worst-case
scenario, and not only for the snow leopard. Author shows how work in this direction social and economic
levers, and what kind future he would like to see in Kirgizia, where he lived for 12 years and was at the
forefront of pioneering research of the snow leopard and its conservation. |
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1454 |
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Poyarkov, A. D., Munkhtsog, B., Korablev, M. P., Kuksin, A. N., Alexandrov, D. Y., Chistopolova, M. D.,Hernandez-Blanco, J. A., Munkhtogtokh, O., Karnaukhov, A. S., Lkhamsuren, N., Bayaraa, M., Jackson, R. M., Maheshwari, A., Rozhnov, V. V. |
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Assurance of the existence of a trans-boundary population of the snow leopard (Panthera uncia) at Tsagaanshuvuut – Tsagan- Shibetu SPA at the Mongolia-Russia border |
Type |
Journal Article |
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Year |
2020 |
Publication |
Integrative Zoology |
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15 |
Pages |
224-231 |
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FST, home range, Panthera uncia, snow leopard, trans-boundary population |
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The existence of a trans-boundary population of the snow leopard (Panthera uncia) that inhabits the massifs of Tsagaanshuvuut (Mongolia) – Tsagan-Shibetu (Russia) was determined through non-invasive genetic analysis of scat samples and by studying the structure of territory use by a collared female individual. The genetic analysis included species identification of samples through sequencing of a fragment of the cytochrome b gene and individual identification using a panel of 8 microsatellites. The home range of a female snow leopard marked with a satellite Global Positioning System (GPS) collar was represented by the minimum convex polygon method (MCP) 100, the MCP 95 method and the fixed kernel 95 method. The results revealed insignificant genetic differentiation between snow leopards that inhabit both massifs (minimal fixation index [FST]), and the data testify to the unity of the cross-border group. Moreover, 5 common individuals were identified from Mongolian and Russian territories. This finding clearly shows that their home range includes territories of both countries. In addition, regular movement of a collared snow leopard in Mongolia and Russia confirmed the existence of a cross-border snow leopard group. These data support that trans-boundary conservation is important for snow leopards in both countries. We conclude that it is crucial for Russia to study the northern range of snow leopards in Asia. |
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1493 |
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Oberosler, V., Tenan, S., Groff, C., Krofel, M., Augugliaro, C., Munkhtsog, B., Rovero, F. |
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First spatially‐explicit density estimate for a snow leopard population in the Altai Mountains |
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2021 |
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Biodiversity and Conservation |
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15 |
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Camera trapping · Conservation · Abundance · Felids · Activity range · Mongolia · Panthera uncia · Spatial capture-recapture |
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The snow leopard Panthera uncia is an elusive and globally-threatened apex predator occurring in the mountain ranges of central Asia. As with other large carnivores, gaps in data on its distribution and abundance still persist. Moreover, available density estimates are often based on inadequate sampling designs or analytical approaches. Here, we used camera trapping across a vast mountainous area (area of the sampling frame 850 km2; analysed habitat extent 2600 km2) and spatially-explicit capture-recapture (SECR) models to provide, to our knowledge, the first robust snow leopard population density estimate for the Altai Mountains. This region is considered one of the most important conservation areas for snow leopards, representing a vast portion of suitable habitat and a key ecological corridor. We also provide estimates of the scale parameter (σ) that reflects ranging behaviour (activity range) and baseline encounter probability, and investigated potential drivers of density and related parameters by assessing their associations with anthropogenic and environmental factors. Sampling yielded 9729 images of snow leopards corresponding to 224 independent detections that belonged to a minimum of 23 identified adult individuals. SECR analysis resulted in an overall density of 1.31 individuals/100 km2 (1.15%–1.50 95% CI), which was positively correlated with terrain slope. This estimate falls within the mid-values of the range of density estimates for the species globally. We estimated significantly different activity range size for females and males (79 and 329 km2, respectively). Base- line encounter probability was negatively associated with anthropogenic activity. Our study contributes to on-going efforts to produce robust global estimates of population abundance for this top carnivore. |
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1662 |
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Murali, R., Bijoor, A., Thinley, T., Gurmet, K., Chunit, K., Tobge, R., Thuktan, T., Suryawanshi, K., Nagendra, H., Mishra, C. |
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Indigenous governance structures for maintaining an ecosystem service in an agro-pastoral community in the Indian Trans Himalaya |
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2022 |
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Ecosystems and People |
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18 |
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1 |
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303-314 |
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Commons; local governance; plant-harvest; rangelands; Spiti Valley |
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The majority of the global terrestrial biodiversity occurs on indigenous lands, and biodiversity decline on these lands is relatively slower. Yet, robust understanding of indigenous governance systems for biodiversity and ecosystem services remains a key knowledge gap. We used the socio-ecological systems framework to study the governance of ecosystem services (ES) by an indigenous community in the Village of Kibber in the Trans-Himalayan Mountains of India. Focusing on plant-biomass removal from communal pastures, we identified the main factors shaping local governance using in-depth focal and deliberative group discussions with community members. Notwithstanding inequities of caste and gender, we found that Kibber had a well-functioning, complex, relatively democratic and inclusive system, with all households of the village involved in decision-making related to ES governance. Robust systems of information sharing, monitoring, conflict resolution, and self-organization played an important role. We found the role of institutional memory sustained by the oracle to be critical in maintaining governance structures. Our work underscores the potential resilience and importance of indigenous systems for the governance of ecosystem services. |
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Edition |
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ISSN |
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ISBN |
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Medium |
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Area |
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Expedition |
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Conference |
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Notes |
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Approved |
no |
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Call Number |
SLN @ rakhee @ |
Serial |
1692 |
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