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Author |
Aizin B.M. |
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Title |
Distribution, number and seasonal behavioral patterns of Panthera uncia Scheber in Kyrgyzstan |
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1974 |
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Vol. 1. |
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19-20 |
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Kyrgyzstan; snow leopard; distribution; number; trade.; 5900; Russian |
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Abstract |
In Kyrgyzstan, snow leopard can be met almost in all mountain ridges (Kok-Kiya, Atbasha, Kyrgyz, Terskey, Kungei, Talas, Chatkal, Alai, Zaalai), where it keeps to alpine meadow, woodless rock and snowfield zones. The number of snow leopard does not exceed 1,500 animals. Seven to 10 animals are annually caught for the needs of zoo-export. |
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Full text available in RussianJournal Title: Proceedings of the 1st international congress on mammals. |
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Call Number |
SLN @ rana @ 569 |
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45 |
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Author |
Aizin B.M. |
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Title |
Rare predatory mammal species and their protection in Kyrgyzstan |
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Year |
1979 |
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4-5 |
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Kyrgyzstan; snow leopard; distribution; number; trade.; 5910; Russian |
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Snow leopard is met in all mountain ridges in Kyrgyzstan. Every year 7 10 animals are caught for the purpose of zoo export. Total population of snow leopard in the country does not exceed 1,400 animals. |
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Full text available in RussianJournal Title: Ecologic fundamentals of predatory mammals' protection and sustainable use. |
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Call Number |
SLN @ rana @ 570 |
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46 |
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Author |
Aizin B.M. |
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Title |
Snow leopard |
Type ![sorted by Type field, ascending order (up)](img/sort_asc.gif) |
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Year |
1985 |
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22-23 |
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Kyrgyzstan; Red Data book; snow leopard; status; distribution; biology; number; fluctuation; protection.; 5930; Russian |
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Snow leopard is a rare and endangered species, distributed in all mountain ridges of Kyrgyzstan. Its population is 1,400 animals, density being 0.2 0.5 animal per 1,000 ha. Its population was noticed to decrease in some ridges because of decreasing populations of mountain ungulates. 200 snow leopards were caught for the purpose of zoo-export over the last 20 years. This species is protected in the nature reserves Sary Chelek, Besh Aral, and natural park Ala Archa. |
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Full text available in RussianJournal Title: Red Data Book of the Kyrgyz SSR. |
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SLN @ rana @ 572 |
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47 |
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Author |
Akimushkin I. |
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Title |
Snow leopard or irbis |
Type ![sorted by Type field, ascending order (up)](img/sort_asc.gif) |
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1971 |
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210-211 |
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Ussr; snow leopard; distribution; behavior; reproduction.; 5990; Russian |
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The biology of snow leopard is described in a popular form. Information of distribution, behavior and reproductive biology, etc. is given. |
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Russian |
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Full text available in RussianJournal Title: Animal kingdom. |
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Call Number |
SLN @ rana @ 578 |
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48 |
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Author |
Akimushkin I. |
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Title |
Snow leopard or irbis |
Type ![sorted by Type field, ascending order (up)](img/sort_asc.gif) |
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1988 |
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139-140 |
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Ussr; snow leopard; number; food; behavior; reproduction; threats.; 6000; Russian |
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Snow leopard behavioral patterns, food preferences, and reproduction are described in a popular way. The population of snow leopard is defined to be 1,000 animals. A reason for the population decline is hunting for the sake of beautiful fur. |
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Full text available in RussianJournal Title: Animal kingdom. Mammals or animals. |
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Call Number |
SLN @ rana @ 579 |
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49 |
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Author |
Ale, S. |
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Title |
Conservation of the snow leopard in Nepal |
Type ![sorted by Type field, ascending order (up)](img/sort_asc.gif) |
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Nepal; radio-collars; tracking; Annapurna-Conservation-Area; protected-areas; parks; reserves; refuge; conservation; livestock; religion; folklore; blue-sheep; blue; sheep; browse; radio collars; radio; collar; collars; annapurna conservation area; annapurna; area; protected; areas; 4080 |
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Full text available at URL |
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Call Number |
SLN @ rana @ 2 |
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51 |
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Author |
Ale, S.; Whelan, C. |
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Title |
Reappraisal of the role of big, fierce predators |
Type ![sorted by Type field, ascending order (up)](img/sort_asc.gif) |
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2008 |
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Biodiversity Conservation |
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685-690 |
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Biodiversity ú Conservation ú Costs of predation ú Indirect effects ú Non-lethal effects ú Predators ú Top-down control; big; predators; predator |
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Abstract |
The suggestion in the early 20th century that top predators were a necessary component of ecosystems because they hold herbivore populations in check and promote biodiversity was at Wrst accepted and then largely rejected. With the advent of Evolutionary Ecology and a more full appreciation of direct and indirect effects of top predators, this role of top predators is again gaining acceptance. The previous views were predicated upon lethal effects of predators but largely overlooked their non-lethal effects. We suggest that
conceptual advances coupled with an increased use of experiments have convincingly demonstrated that prey experience costs that transcend the obvious cost of death. Prey species use adaptive behaviours to avoid predators, and these behaviours are not cost-free. With predation risk, prey species greatly restrict their use of available habitats and consumption of available food resources. Effects of top predators consequently cascade down to the trophic levels below them. Top predators, the biggies, are thus both the targets of and the means for conservation at the landscape scale. |
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SLN @ rana @ 885 |
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52 |
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Author |
Ale, S.; Brown, J. |
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Title |
The contingencies of group size and vigilance |
Type ![sorted by Type field, ascending order (up)](img/sort_asc.gif) |
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2007 |
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Evolutionary Ecology Research, |
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9 |
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1263-1276 |
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attraction effect,contingency,dilution effect,fitness,group-size effect,many-eyes effect,predation risk,vigilance behaviour; predation; decline; potential; predators; predator; feeding; Animals; Animal; use; food; effects; Relationship; behaviour; methods; game; Interactions; interaction; factor; value; Energy |
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Abstract |
Background: Predation risk declines non-linearly with one's own vigilance and the vigilance of others in the group (the 'many-eyes' effect). Furthermore, as group size increases, the individual's risk of predation may decline through dilution with more potential victims, but may increase if larger groups attract more predators. These are known, respectively, as the dilution effect and the attraction effect.
Assumptions: Feeding animals use vigilance to trade-off food and safety. Net feeding rate declines linearly with vigilance.
Question: How do the many-eyes, dilution, and attraction effects interact to influence the relationship between group size and vigilance behaviour?
Mathematical methods: We use game theory and the fitness-generating function to determine the ESS level of vigilance of an individual within a group.
Predictions: Vigilance decreases with group size as a consequence of the many-eyes and dilution effects but increases with group size as a consequence of the attraction effect, when they act independent of each other. Their synergetic effects on vigilance depend upon the relative strengths of each and their interactions. Regardless, the influence of other factors on vigilance – such as encounter rate with predators, predator lethality, marginal value of energy, and value of vigilance – decline with group size. |
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SLN @ rana @ 886 |
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53 |
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Author |
Ale, S.B. |
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Title |
Snow Leopard in Remote Districts of Nepal |
Type ![sorted by Type field, ascending order (up)](img/sort_asc.gif) |
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1994 |
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xii |
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Nepal; Manang; livestock; livestock-depredation; baiting; predation; villagers; herders; annapurna; retribution; conservation; management; training; tourism; browse; 4600 |
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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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Call Number |
SLN @ rana @ 447 |
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54 |
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Author |
Ale, S.B. |
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Title |
Religion and Snow Leopards in Nepal |
Type ![sorted by Type field, ascending order (up)](img/sort_asc.gif) |
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1998 |
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Snow Line |
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xvi |
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10-10 |
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Nepal; religion; tourism; Culture; folklore; buddhism; 4850 |
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Islt |
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Seattle |
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Journal Title: Snow Line |
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SLN @ rana @ 472 |
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