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Author |
Ishunin G.I. |
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Title |
Snow leopard |
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1980 |
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26-27 |
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Uzbekistan; Red Data book; snow leopard; distribution; preys; biology; use.; 6920; Russian |
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In Uzbekistan, snow leopard is preserved along the Ugam, Pskem, Chatkal, Tirkestan, and Hissar ridges. Ibex is a main prey of the predator. It also preys on argali, wild boar, hares, roe-deers, rodents, kekliks (partridge), and rarely livestock. Catching the animals in the country is limited and exercised under special permissions. |
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Full text available in RussianJournal Title: Wild animals of Uzbekistan included in the Red Data Book of the USSR. |
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SLN @ rana @ 670 |
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416 |
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Author |
Ishunin G.I. |
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Genus Snow leopard Uncia gray, 1854 |
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1987 |
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94-97 |
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Uzbekistan; mammals; game species; biology; distribution; practical use; conservation measures.; 6940; Russian |
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It provides data concerning biology, distribution and use game and commercial mammal species in Uzbekistan, and recommends on ways of hunting and initial fur-skin processing. It also describes the matter of conservation and rehabilitation of rare species' populations. From 1930-s to 1960-s over 20 snow leopard skins were reported to be traded officially. |
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Full text available in RussianJournal Title: Game animals of Uzbekistan. |
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SLN @ rana @ 672 |
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418 |
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Author |
Jackson, R. |
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Title |
SSC Plan for Snow Leopard |
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1992 |
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physiology; status; distribution; description; behavior; reproduction; mating; breeding; vocalization; gestation; biology; habitat; scrapes; sprays; scat; feces; longevity; homerange; home-range; prey; diet; Cites; Iunc; parks; preserves; reserves; refuge; protected-areas; movements; activity; livestock; herders; depredation; conflict; trade; poaching; hunting; research; captivity; management; zoos; Slims; surveys; transects; browse; home range; home; range; protected area; protected areas; protected; area; areas; 3920; plan; snow; snow leopard; snow-leopard; leopard |
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Full Text at URL
DRAFT – Revised September 22, 1992 by Rodney Jackson |
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SLN @ rana @ 201 |
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450 |
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Author |
Sludsky A.A. |
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Genus Snow leopard Uncia Gray, 1854. Snow leopard Uncia uncia Schreber, 1775 |
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1982 |
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Vol. III, Part 2. |
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222-240 |
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Kazakhstan; taxonomy; distribution; number; biology; use; snow leopard.; 8190; Russian |
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Snow leopard is rare and extinctive species that have scientific and aesthetic significance. The features of genus Uncia and species Uncia uncia are described. Also distribution, habitat, way of life, reproduction biology, behavioural patterns, migration routes, infections and parasites, enemies and competitors, number and number fluctuation, practical value of snow leopard in the Kazakhstan are given. |
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Full text available in RussianJournal Title: Mammals of Kazakhstan. Carnivora (Mustelidae, Felidae). |
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SLN @ rana @ 797 |
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900 |
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Roth, T.L.; Swanson, W.F.; Wildt, D.E.; Collins, D.; Burton, M.; Garell, D.M. |
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Snow leopard (Panthera uncia) spermatozoa are sensitive to alkaline pH, but motility in vitro is not influenced by protein or energy supplements |
Type ![sorted by Type field, descending order (down)](img/sort_desc.gif) |
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1996 |
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Journal of Andrology |
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17 |
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558-566 |
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Felid,comparative biology,sperm culture medium,sperm function,capacitation,sodium bicarbonate. |
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To better understand the biology of snow leopard spermatozoa and to facilitate developing assisted reproduction, a series of studies was conducted to: 1) identify the component(s) of complex culture media responsible for the detrimental effect on sperm survival in vitro, 2) optimize medium for supporting sperm viability, and 3) evaluate sperm capacitation in vitro. Constituents of complex media were added systematically to phosphate-buffered saline (PBS) to isolate the factor(s) influencing snow leopard sperm motility in vitro. Sperm capacitation was also assessed following incubation in PBS with bovine serum albumin (BSA), fetal calf serum (FCS), or heparin. For maintaining sperm motility, there was no benefit (P ? 0.05) to supplementing PBS with low (5%) or high (20%) concentrations of snow leopard serum (SLS) versus FCS or BSA. Likewise, adding supplemental energy substrates (pyruvate, glucose, lactate, or glutamine) did not enhance or hinder (P ? 0.05) sperm motility. However, motility rapidly decreased (P < 0.05) with the addition of NaHCO3 to PBS or Ham's F10 nutrient mixture. Surprisingly, Ham's F10 with no buffering component or with both NaHCO3 and N-Z-hydroxyethylpiperazine-N'-2- ethanesulfonic acid (HEPES) maintained sperm motility at levels similar (P ? 0.05) to PBS. Although sperm motility in all treatments decreased with time, there was a strong inverse relationship (P < 0.01; r = 0.90) between motility and sample pH at 6 hours. Spermatozoa incubated in PBS containing FCS, BSA, or heparin did not undergo the acrosome reaction when exposed to calcium ionophore. In summary, alkaline pH has a profound detrimental effect on snow leopard sperm motility, and capacitation does not occur under conditions that normally promote this event in other felid species. These results clearly demonstrate a high degree of interspecific variation among felids in fundamental sperm function, and they provide evidence for the necessity of basic research when developing assisted reproduction in little-studied nondomestic species. |
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SLN @ rana @ 897 |
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831 |
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Author |
Razmakhnin V.E. |
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Title |
Siberian wild ibex |
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1977 |
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164-175 |
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Ussr; Siberian wild ibex; biology; distribution; number; variability; behavior; predators; snow leopard.; 8050; Russian |
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It provides a detailed description of biology, distribution, geographic variability, behavior, and locomotion features of ibex in the USSR. Its population was defined as 100,000 animals, main enemies being wolf, snow leopard, and golden eagle. Wolf mainly preys on ibex at the end of winter; old males, weakened during the heat mostly becoming a prey. Snow leopards prey on ibexes all year round. Golden eagles mostly prey on young ibexes. |
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Full text available in RussianJournal Title: Ungulates. Rare animals of the USSR. |
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SLN @ rana @ 783 |
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810 |
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Joost van der Ven |
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Western Tien Shan: nature as it is |
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2002 |
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51-67 |
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Western Tien Shan; biodiversiry; sustainable use; trophy hunt; endangered species; snow leopard.; 7010; Russian |
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Some ideas of biodiversity conservation in the West Tien Shan (first of all large mammals such as ibex, moral, brown bear, and snow leopard) including an idea of limited trophy hunt are discussed. |
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Full text available in RussianJournal Title: Biodiversity of the West Tien Shan. Status and perspectives. |
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SLN @ rana @ 679 |
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505 |
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Biological resources |
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2002 |
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24-25 |
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Uzbekistan; biodiversity; vertebrates; snow leopard.; 6290; Russian |
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It provides a summary of plant and animal resources in Uzbekistan. Among 15,000 animal species, 664 are vertebrate species including 424 bird, 97 mammal, 83 fish, 59 reptile and three amphibian species. Snow leopard, snow cock, ibex, and other species are typical for highlands. |
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Full text available in Russian Journal Title: First national report of the Republic of Uzbekistan on Framework Convention of UN on climate change. |
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SLN @ rana @ 607 |
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18 |
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Kashkarov D.N. |
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Order Carnivora- Carnivores. Family Felidae-Cats |
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1932 |
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392-393 |
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Turkestan; carnivores; Cats; snow leopard; distribution; biology; preys.; 7090; Russian |
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Snow leopard inhabits Tien Shan, Pamir, Bukhara and possibly Kopet-dag, as well as the Altai, Tibet, and northern slopes of the Himalayas. It preys on ibex, wild sheep, roe deer, hare, keklik (partridge), snow-cock and porcupine and sometimes attacks livestock. Snow leopard is not considered a dangerous animal since even being wounded, it would escape from men and could only rush to the attack when deadlocked. |
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Full text available in RussianJournal Title: Animals of Turkestan. |
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SLN @ rana @ 687 |
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520 |
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Koshkarev E. |
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Title |
Critical Ranges as Centres of Biodiversity |
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1998 |
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N 14 |
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37-38 |
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Central Asia; biodiversity; rare species; species survival; snow leopard.; 7270; Russian |
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A high percentage of rare species in Central Asia experience limited conditions for distribution. Geographic centers with higher species diversity are generally constrained in terms of territory: they are formed when ranges overlap. But in Central Asia and along its borders with Russia, centers of biodiversity overlap at the very marginal edges of ranges. Central Asian species cross into Russian territory, where desert and steppe are replaced by thick forest. Here the northern borders of their ranges are sharply fragmented and isolated. Typical examples for Central Asia are the ranges of the cheetah (Acinonyx jubatus), Asian leopard (Panthera pardus caucasica), striped hyena (Hyaena hyaena), Bukhara deer (Census elaphus bactrianus), markhor (Capra falconeri), blue sheep (Pseudois nayauf) and argali (Ovis ammon). In Russia are the Altai subspecies of argali, the Siberian argali (O.a.ammon), the mountain goat (Capra sibirica), Mongolian gazelle (Procapra gutturosa), snow leopard (Uncia uncia), Pallas' cat (Felis manul), dhole (Cuon alpinus), grey marmot (Marmota baibacina), Mongolian marmot (M. sibirica) and tolai hare (Lepus tolai). Where the numbers o f individuals has fallen to extreme lows, the most effective mechanism for species survival may be supporting the integrity of ranges, in order to preserve population exchanges between neighboring groups. The geographic location of reserves and other protected territories is vitally important for the survival of Central Asian species, given the acute fragmentation of their ranges. These reserves should include significant, viable centers of population the key places. Wherever the creation of permanent protected territories is impossible, a new tactic must be found, such as introducing temporary limitations on the use of land for agriculture and hunting. But all protected territories, whether temporary or permanent, should be connected, forming a core and periphery. The marginal range areas must not be forgotten, if total protection of endangered populations is to be accomplished. |
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Full text available in RussianJournal Title: Russian Conservation News. |
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SLN @ rana @ 705 |
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555 |
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