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Author | Braden, K. | ||||
Title ![]() |
Illegal recreational hunting in Russia: the role of social norms and elite violators | Type | Journal Article | ||
Year | 2015 | Publication | Eurasian Geography and Economics | Abbreviated Journal | |
Volume | Issue | Pages | |||
Keywords | Russia; hunting; poaching; wildlife crime; power elite | ||||
Abstract | Poaching in Russia has been reported to be of catastrophic proportions and threatens maintenance of biodiversity. Management of game species has stabilized some numbers, but both endangered species listed in the Russian Red Book and animals traditionally viewed as hunting prey are diminishing in some regions. Rank-and-file hunters, increasingly shut off from access to hunting grounds, have expressed a negative reaction to new hunting regulations adopted by the Russian government in 2012. While high-profile poaching incidents by so-called “VIP hunters” do not apparently make up a large portion of cases, the symbolism of the alleged crimes has a derogatory impact on ordinary hunters because lawlessness is reinforced by perceptions of impunity for elite poachers. |
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Notes | Approved | no | |||
Call Number | SLN @ rakhee @ | Serial | 1421 | ||
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Author | Li, J., Yin, H., Wang, D., Jiagong, Z., Lu, Zhi | ||||
Title ![]() |
Human-snow leopard conflicts in the Sanjiangyuan Region of the Tibetan Plateau | Type | Journal Article | ||
Year | 2013 | Publication | Biological Conservs | Abbreviated Journal | |
Volume | Issue | 166 | Pages | 118-123 | |
Keywords | Panthera uncia, Human-wildlife conflict, Traditional use, Livestock depredation, Economic value, Cultural image, Attitude | ||||
Abstract | Conflicts between humans and snow leopards are documented across much of their overlapping distribution in Central Asia. These conflicts manifest themselves primarily in the form of livestock depredation and the killing of snow leopards by local herders. This source of mortality to snow leopards is a key conservation concern. To investigate human-snow leopard conflicts in the Sanjiangyuan Region of the Tibetan Plateau, we conducted household interviews about local herders’ traditional use of snow leopard parts, livestock depredation, and overall attitudes towards snow leopards. We found most respondents (58%) knew that snow leopard parts had been used for traditional customs in the past, but they claimed not in the past two or three decades. It may be partly due to the issuing of the Protection of Wildlife Law in 1998 by the People’s Republic of China. Total livestock losses were damaging (US$ 6193 per household in the past 1 year), however snow leopards were blamed by herders for only a small proportion of those losses (10%), as compared to wolves (45%) and disease (42%). Correspondingly, the cultural images of snow leopards were neutral (78%) and positive (9%) on the whole. It seems that human-snow leopard conflict is not intense in this area. However, snow leopards could be implicated by the retaliatory killing of wolves. We recommend a multi-pronged conservation program that includes compensation, insurance programs, and training local veterinarians to reduce livestock losses. |
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Notes | Approved | no | |||
Call Number | SLN @ rakhee @ | Serial | 1399 | ||
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Author | Hanson, J. H. | ||||
Title ![]() |
Household Conflicts with Snow Leopard Conservation and Impacts from Snow Leopards in the Everest and Annapurna Regions of Nepal | Type | Journal Article | ||
Year | Publication | Environmental Management | Abbreviated Journal | ||
Volume | Issue | Pages | 1 of 12 | ||
Keywords | Human-wildlife conflict, Annapurna conservation area, Sagarmatha national park, South asia, Human-wildlife coexistence, Carnivores | ||||
Abstract | Impacts on households from large carnivores are frequently reported in the conservation literature, but conflicts between households and large carnivore conservation are not. Employing a human-wildlife coexistence framework that distinguishes between human-wildlife impacts on one hand, and human-conservation conflicts on the other, this paper presents data from Annapurna Conservation Area and Sagarmatha (Everest) National Park, Nepal, each with different models of conservation governance. Using systematic sampling, quantitative information from 705 households was collected via questionnaires, while 70 semi-structured interviews were conducted with key informants for cross-methods triangulation. 7.7% of households reported conflicts with snow leopard conservation in the previous 12 months, primarily due to damage to livelihoods; these were significantly higher in the Annapurna region. 373 livestock were reported lost by households to snow leopards in the previous 12 months, representing 3.4% of total livestock owned and US$ 132,450 in financial value. Livestock losses were significantly lower in the Everest area. In linear regression models, total household livestock losses to all sources best explained conflicts with snow leopard conservation and household livestock losses to snow leopards but the models for the former dependent variable had very low explanatory power. Conservation in general, and large carnivore conservation in particular, should distinguish carefully between impacts caused by coexistence with these species and conflicts with conservation actors and over the methods and interventions used to conserve carnivores, especially where these negatively impact local livelihoods. In addition, livestock husbandry standards are highlighted again as an important factor in the success of carnivore conservation programmes. | ||||
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Notes | Approved | no | |||
Call Number | SLN @ rakhee @ | Serial | 1679 | ||
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Author | Aromov B. | ||||
Title ![]() |
Hissar state nature reserve | Type | Miscellaneous | ||
Year | 2004 | Publication | Abbreviated Journal | ||
Volume | Issue | Pages | 143-145 | ||
Keywords | Uzbekistan; Hissar nature reserve; mammals; birds; amphibians; reptiles; number; snow leopard; Lynx; bear; wild boar; ibex.; 6090; Russian | ||||
Abstract | Presented is history of the Hissar nature reserve's establishment, physic and geographic description, types of soils, flora and fauna The 28 species of mammals, 103 nested birds, 19 amphibians and reptiles and 2 fishes are presented in nature reserve. Number of snow leopard assessed as 2-3 families, bear 130 individuals, wild boar 460, Turkestan lynx 90,ibex 1700 individuals. | ||||
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Notes | Full text available in RussianJournal Title: Ecological news. | Approved | no | ||
Call Number | SLN @ rana @ 588 | Serial | 101 | ||
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Author | Rosen, T. | ||||
Title ![]() |
From Yellowstone to the Karakorums: A journey to understand conflicts with large carnivores | Type | Magazine Article | ||
Year | 2010 | Publication | NRCC News | Abbreviated Journal | |
Volume | 23 | Issue | 1 | Pages | 12-13 |
Keywords | Pakistan, Project Snow Leopard, Baltistan Wildlife Conservation and Development Organization | ||||
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Language | English | Summary Language | Original Title | ||
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Notes | NRCC News (Northern Rockies Conservation Cooperative) annual newsletter: bridging science and policy to advance conservation. Fall 2010, issue 23(1). | Approved | no | ||
Call Number | SLN @ rana @ | Serial | 1295 | ||
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Author | Aryal, A. | ||||
Title ![]() |
Final Report On Demography and Causes of Mortality of Blue Sheep (Pseudois nayaur) in Dhorpatan Hunting Reserve in Nepal | Type | Report | ||
Year | 2009 | Publication | Abbreviated Journal | ||
Volume | Issue | Pages | 1-53 | ||
Keywords | Report; mortality; blue; blue sheep; blue-sheep; sheep; Pseudois; pseudois nayaur; Pseudois-nayaur; nayaur; Dhorpatan; hunting; reserve; Nepal; biodiversity; research; training; snow; snow leopard; snow-leopard; leopard; conservation; program; population; Population-Density; density; densities; change; Sex; study; area; High; poaching; Pressure; reducing; number; predators; predator; poison; wolf; wolves; canis; Canis-lupus; lupus; wild; wild boar; prey; prey species; prey-species; species; scats; scat; value; fox; cover; deer; diet; leopards; pika; snow leopards; snow-leopards; soil; Relationship | ||||
Abstract | A total of 206 individual Blue sheep Pseudois nayaur were estimated in Barse and Phagune blocks of Dhorpatan Hunting Reserve (DHR) and population density was 1.8 Blue sheep/sq.km. There was not significant change in population density from last 4 decades. An average 7 animals/herd (SD-5.5) were classified from twenty nine herds, sheep per herds varying from 1 to 37. Blue sheep has classified into sex ratio on an average 75 male/100females was recorded in study area. The sex ratio was slightly lower but not significantly different from the previous study. Population of Blue sheep was seen stable or not decrease even there was high poaching pressure, the reason may be reducing the number of predators by poison and poaching which has supported to increase blue sheep population. Because of reducing the predators Wolf Canis lupus, Wild boar population was increasing drastically in high rate and we can observed wild boar above the tree line of DHR. The frequency of occurrence of different prey species in scats of different predators shows that, excluding zero values, the frequencies of different prey species were no significantly different (ö2= 10.3, df = 49, p > 0.05). Most of the scats samples (74%) of Snow leopard, Wolf, Common Leopard, Red fox's cover one prey species while two and three species were present in 18% and 8%, respectively. Barking deer Muntiacus muntjak was the most frequent (18%) of total diet composition of common leopards. Pika Ochotona roylei was the most frequent (28%), and Blue sheep was in second position for diet of snow leopards which cover 21% of total diet composition. 13% of diet covered non-food item such as soil, stones, and vegetable. Pika was most frequent on Wolf and Red fox diet which covered 32% and 30% respectively. There was good positive relationship between the scat density and Blue sheep consumption rate, increasing the scat density, increasing the Blue sheep consumption rate. Blue sheep preference by different predators such as Snow leopard, Common leopard, Wolf and Red fox were 20%, 6%, 13% and 2% of total prey species respectively. |
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Notes | The Biodiversity Research and Training Forum (BRTF) Nepal. Email: savefauna@yahoo.com Submitted to Snow Leopard Conservation Grants Program, USA. | Approved | no | ||
Call Number | SLN @ rana @ 1064 | Serial | 104 | ||
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Author | Karki, A., Panthi, S. | ||||
Title ![]() |
Factors affecting livestock depredation by snow leopards (Panthera uncia) in the Himalayan region of Nepal | Type | Journal Article | ||
Year | 2021 | Publication | PeerJ | Abbreviated Journal | |
Volume | 9 | Issue | e11575 | Pages | 1-14 |
Keywords | Conflict,Habitat,Himalaya,Livestockdepredation,Modeling,Snowleopard,Wildlife management | ||||
Abstract | The snow leopard (Panthera uncia) found in central Asia is classified as vulnerable species by the International Union for Conservation of Nature (IUCN). Every year, large number of livestock are killed by snow leopards in Nepal, leading to economic loss to local communities and making human-snow leopard conflict a major threat to snow leopard conservation. We conducted formal and informal stakeholder’s interviews to gather information related to livestock depredation with the aim to map the attack sites by the snow leopard. These sites were further validated by district forest office staffs to assess sources of bias. Attack sites older than 3 years were removed from the survey. We found 109 attack sites and visited all the sites for geo location purpose (GPS points of all unique sites were taken). We maintained at least a 100 m distance between attack locations to ensure that each attack location was unique, which resulted in 86 unique locations. A total of 235 km2 was used to define livestock depredation risk zone during this study. Using Maximum Entropy (MaxEnt) modeling, we found that distance to livestock sheds, distance to paths, aspect, and distance to roads were major contributing factors to the snow leopard’s attacks. We identified 13.64 km2 as risk zone for livestock depredation from snow leopards in the study area. Furthermore, snow leopards preferred to attack livestock near livestock shelters, far from human paths and at moderate distance from motor roads. These identified attack zones should be managed both for snow leopard conservation and livestock protection in order to balance human livelihoods while protecting snow leopards and their habitats. | ||||
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Notes | Approved | no | |||
Call Number | Serial | 1640 | |||
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Author | Ikeda, N. | ||||
Title ![]() |
Economic impacts of livestock depredation by snow leopard Uncia uncia in the Kanchenjunga Conservation Area, Nepal Himalaya | Type | Miscellaneous | ||
Year | 2004 | Publication | Environmental Conservation | Abbreviated Journal | |
Volume | 31 | Issue | Pages | 322-330 | |
Keywords | herder; Kanchenjunga Conservation Area; local resident; park people conflict; wildlife conservation; yak.; snow leopard | ||||
Abstract | It is necessary to fully understand the economic conditions of local herders in order to find solutions to the conflicts between wildlife conservation and livestock rearing in remote areas of low-income countries. In the Kanchenjunga Conservation Area (KCA), Nepal, livestock depredation by snow leopards impacts on yak herders' livelihoods. Retaliatory killings of snow leopard by the herders have been reported and the concerned authorities recently initiated snow leopard conservation programmes. In 2001, interviews with the yak herders who used the pastures in the Ghunsa valley in the preceding year collected data on the incidence of livestock death caused by snow leopards. The annual net cash income of the yak herders was estimated by obtaining baseline values of sales and expenditure per livestock head through field measurement of dairy products and interviews with a sample of herders. As yet, the average annual damage does not appear to have adversely affected fundamental livelihoods in households with an average herd size (36.6 head). However, in the worst scenario of livestock depredation, households with medium or small-sized herds (<40 head) might risk their living conditions becoming unsustainable or having to withdraw from yak pastoralism. A supplementary interview showed that the majority of the herders, except those who took completely neutral attitudes towards the regional conservation and development programme, had negative views of the snow leopard conservation policy. For the snow leopard conservation programme in the KCA to be a success, there must be a system to compensate the herders' households for livestock damage. | ||||
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Notes | Full article not available on SLN bibliography due to copyright concerns. | Approved | no | ||
Call Number | SLN @ rana @ 906 | Serial | 402 | ||
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Author | McCarthy, T. | ||||
Title ![]() |
Ecology and Conservation of Snow Leopards, Gobi Brown Bears, and Wild Bactrian Camels in Mongolia | Type | Book Whole | ||
Year | 2000 | Publication | Abbreviated Journal | ||
Volume | Issue | Pages | |||
Keywords | snow leopard; Uncia uncia; Mongolia; radio-collar; habitat use; movements; ecology; wild camel; brown bear; 5340 | ||||
Abstract | Snow leopard ecology, distribution and abundance in Mongolia were studied between 1993 and 1999. I placed VHF and satellite radio-collars on 4 snow leopards, 2 males and 2 females, to determine home ranges, habitat use, movements, and activity. Home ranges of snow leopards in Mongolia were substantially larger than reported elsewhere. Males ranged over 61 – 142 km2 and female 58 to 1,590 km2. Cats had crepuscular activity patterns with daily movements averaging 5.1 km. Intraspecific distances averaged 1.3 km for males to 7.8 km for males. Leopards selected moderately to very-broken habitat with slopes > 20o, in areas containing ibex. Leopard distribution and abundance was determined using sign surveys. Leopard range in Mongolia is approximately 103,000 km2 but cats are not uniformly distributed within that range. High-density areas include the eastern and central Transaltai Gobi and the northern Altai ranges. Relative leopard densities compared well with relative ibex densities on a regional basis. A snow leopard conservation plan was drafted for Mongolia that identifies problems and threats, and provides an action plan. Wild Bactrian camels occur in the Great Gobi National Park (GGNP) and are thought to be declining due to low recruitment. I surveyed camels by jeep and at oases, observing 142 (4.2% young) and 183 (5.3% young) in 1997 and 1998. Current range was estimated at 33,300 km2. Some winter and calving ranges were recently abandoned. Track sizes and tooth ages from skulls were used to assess demographics. A deterministic model was produced that predicts camel extinction within 25 to 50 years under current recruitment rates and population estimates. Gobi brown bears are endemic to Mongolia and may number less than 35. Three population isolates may occur. I collected genetic material from bears at oases using hair traps. Microsatellite analyses of nuclear DNA determined sixteen unique genotypes, only two of which occurred at more than one oases. Genetic diversity was very low with expected heterozygosity = 0.32, and alleles per locus = 2.3. Mitochondrial DNA sequences were compared to other clades of brown bear and found to fall outside of all known lineages. | ||||
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Corporate Author | Thesis | Ph.D. thesis | |||
Publisher | University of Massachusetts, Amherst | Place of Publication | Editor | ||
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Call Number | SLN @ rana @ 519 | Serial | 663 | ||
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Author | Esipov A.V. | ||||
Title ![]() |
Distribution and Numbers of the Siberian Ibex in the Hissar Nature Reserve, Uzbekistan | Type | Miscellaneous | ||
Year | 2002 | Publication | Abbreviated Journal | ||
Volume | Issue | Pages | 76-78 | ||
Keywords | Uzbekistan; Hisssar nature reserve; wild ibex; distribution; number; predators; snow leopard.; 6640; Russian | ||||
Abstract | It describes distribution and number of ibex in four parts of the Hissar nature reserve in Uzbekistan. The total number of ibex is estimated to be 1,500 animals. The natural enemies of ibex are snow leopard, wolf, and lynx. Data about ibex's food, seasonal migrations, and threats are given. Decreasing forage reserve and poaching are considered as the most serious threats. A buffer zone is suggested to be established in the areas adjacent to Tajikistan and the Surkhandarya region of Uzbekistan. | ||||
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Notes | Full text available in RussianJournal Title: Necessity of nature protection in South Uzbekistan. | Approved | no | ||
Call Number | SLN @ rana @ 642 | Serial | 258 | ||
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