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Luxom, N. M., Singh, R., Theengh, L., Shrestha, P., Sharma, R. K. |
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Pastoral practices, pressures, Pastoralism: Research, Policy and Practice Open Access and human-wildlife relations in high altitude rangelands of eastern Himalaya: A case study of the Dokpa pastoralists of North Sikkim |
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Journal Article |
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2022 |
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Springer Open |
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12 |
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37 |
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1-19 |
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Pastoralism, Socio-political stresses, Institutions, Climatic change, Free-ranging dogs, Participatory rangeland conservation |
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The pastoral practices of the Dokpa herders of North Sikkim have been transforming in response to the geo-political and socio-economic changes in the region. Against the backdrop of these changes, this study aims to understand the current state of pastoralism in North Sikkim with three specific objectives: (i) to understand the current rangeland management practices of the Dokpa community; (ii) to examine the social, political and ecological stresses to continuity of traditional pastoral livelihoods; and (iii) to document the baseline on human-wildlife relations. We focused on one of the two subset populations of Dokpa herders of North Sikkim and, using a mixed-methods approach, conducted 12 semi-structured interviews, four key respondent interviews and two focused group discussions. The resource use by the Dokpas is unique, and unlike the rest of the Himalayan range, they access the high-altitude pastures in winters and the lower ones in summer. Pastures in the higher altitudes experience heavier winds, which leads to lower levels of snow deposition — thus ensuring access to dried pasture forage for livestock during the lean season. The decisions pertaining to resource management are taken by the head of the local institution Dzumsa, the Pipon. Primary stresses to the continuation of traditional pastoral practices are fragmentation of pastureland post- Sino-Indian war of 1962 and the consequent establishment of armed forces, livestock depredation by free-ranging dogs followed by wild predators and continued socio-economic marginalisation of the pastoralists under a supposedly egalitarian institutional regime. Extreme climatic events in the recent past have also contributed to significant livestock loss. Dokpa transhumant practices are on an overall decline, with most members of the younger generation shifting to non-herding livelihoods. The availability of alternate livelihood options with the improved connectivity, access to education and development of the tourism industry has led to changing aspirations of the younger generations. In only two of the twelve households we surveyed, the younger generation continues herding, while the rest have moved to the cities and towns. In terms of human-wildlife relations, the respondents mostly hold a positive attitude towards wildlife and conservation actions despite livestock predation by wild predators, since the free-ranging dogs cause the highest livestock loss. With the inputs from the Dokpas, we provide recommendations towards a facilitative environment for the continuation of the traditional herding in the region, which is critical for the survival of pastoralism in North Sikkim, presently hinged on less than two dozen of elderly Dokpas. |
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SLN @ rakhee @ |
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1700 |
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Khanyari, M., Robinson, S., Milner-Gulland, E. J., Morgan, E. R., Rana, R. S., Suryawanshi, K. R. |
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Pastoralism in the high Himalayas: Pastoralism: Research, Policy and Practice Open Access Understanding changing practices and their implications for parasite transmission between livestock and wildlife |
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2022 |
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Springer Open |
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12 |
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44 |
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1-16 |
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Migratory, Transhumance, Livestock, Asiatic ibex, Capra sibirica, Pasture, Rangelands, Gastro-intestinal nematodes |
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Rangelands are increasingly being affected by climatic variations, fragmentation and changes in livestock management practices. Along with resource competition between livestock and wildlife, disease transmission has implications for people and wildlife in these shared landscapes. We worked with two pastoral communities in the Western Indian Himalayas: the migratory Kinnauras that travel to the Trans‐Himalayan Pin valley in summer and the resident herders of Pin Valley. Asiatic ibex (Capra sibirica) is the predominant wild herbivore in Pin. The pastures in Pin are grazed by both livestock (migratory and resident) and ibex, with the potential for disease transmission. We investigate the effects of herding practices on livestock health and disease transmission, while focusing on gastro‐intestinal nematodes (GINs) as they can spread by sharing pasture between wild and domestic ungulates. Surveys were carried out between June and August 2019, the period when migratory Kinnauras, local herders and Asiatic Ibex are found in Pin Valley. We found that the Kinnaura flocks share pasture with ibex during their time in Pin, exhibiting significantly higher endo‐parasite burdens than sedentary livestock, and the Kinnaura flocks are increasing in number. This suggests GIN cross‐transmission is possible, as GINs have low host specificity and a free‐living, environmental stage that is trophically acquired. As local (sedentary) sheep and goats rarely share pasture with ibex, have low endo‐parasite burdens and are few in number, they are unlikely to transmit parasites to ibex. However, increasingly large local stock numbers may be contributing to pasture degradation which could cause nutritional stress and resource competition, exacerbating GIN impacts. We also find evidence for transhumance persisting, in spite of signs of pasture degradation that are seemingly affecting livestock productivity and potentially disease transmission. It is critical that proactive measures are taken, like participatory disease management with the Kinnauras, to align livelihoods with wildlife and rangeland conservation. |
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SLN @ rakhee @ |
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1703 |
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Jegal, A.; Kashkarov, E.; Matyushkin E.N. |
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Simple method to distinguish tracks of snow leopard and lynx |
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2010 |
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tracks; snow; snow leopard; snow-leopard; leopard; Lynx; gobi; Altai; mountain; range; mountains; region; distribution; Case; local; hunters; hunter; Animals; Animal |
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In the Mongolian and Gobi Altai mountain ranges and also in some other mountains in this region, the
distribution of the snow leopard and Eurasian lynx overlaps. In some cases, local hunters cannot
distinguish the tracks of both these animals. Therefore we outline a simple method to distinguish tracks of
the snow leopard and lynx. |
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Two English translations of article are provided. |
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SLN @ rana @ 1101 |
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491 |
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Usgs; International Snow Leopard Trust |
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Snow Leopard Habitat Map |
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Map |
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1995 |
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map; habitat; 4860; snow; snow leopard; snow-leopard; leopard; range; Pakistan; resource; Division; trust; International; symposium; Jackson |
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ISLT and World Wide Fund for Nature - Pakistan |
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Pakistan |
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Snow leopard range map published in: Proceedings of the Eighth International Snow Leopard Symposium. Held in Islamabad, Pakistan 12-16 November 1995. Editors of proceedings: Rodney Jackson and Ashiq Ahmad. Map authors U.S.G.S. Biological Resources Division and Snow Leopard Trust. Page 9. |
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SLN @ rana @ 471 |
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979 |
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Sludskiy A.A. |
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Snow leopard or irbis Pantera (Uncia) uncia Schreber (1776) |
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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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Sokolov V.E. |
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Snow leopard genus |
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Miscellaneous |
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1979 |
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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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SLN @ rana @ 802 |
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907 |
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International Snow Leopard Trust |
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Snow Leopard News Autumn/ Winter 2000 |
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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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McCarthy, T.; Fuller, T.; Munkhtsog, B. |
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Movements and activities of snow leopards in Southwestern Mongolia |
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2005 |
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snow leopard; Uncia uncia; Mongolia; satellite radio-telemetry; home range; activity patterns; 6310 |
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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 |
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665 |
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Kosharev, E.P. |
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The Northern Limit of Snow Leopard Range |
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1996 |
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xiv |
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Russia; Sayan; Hovsogol; siberia; range; cores; habitat; browse; 4560 |
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Islt |
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Seattle |
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full text at URLJournal Title: Snow Line |
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SLN @ rana @ 444 |
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Bogdanov O.P. |
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Snow leopard or irbis Uncia Uncia |
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1992 |
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Ussr; Uzbekistan; Pamir; tien shan; Hissar ridge; Turkestan ridge; Chatkal ridge; juniper forest; snow leopard; species range; hunting; behavior; diet; reproductive activity; number; ibex; mountain sheep.; 6380; Russian |
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Snow leopard and its habitat within the USSR and Uzbek SSR are described. Its habitat in the Chatkal and Hissar ridges are described too. Given are data concerning alimentary biology, reproduction, and attitude to man. Female snow leopards become mature at the age of two three years, male at the age of four years. Reproduction occurs once every two years. Presumably, there are 10 animals in the country. Snow leopard is protected in four nature reserves in Uzbekistan and a number of nature reserves in neighbour countries. |
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Full text available in RussianJournal Title: Rare and endangered animals of Uzbekistan. Encyclopedic reference book. |
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SLN @ rana @ 616 |
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185 |
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