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Valdez, R., Michel, S., Subbotin, A., Klich, D. |
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Title |
Status and population structure of a hunted population of Marco Polo Argali Ovis ammon polii (Cetartiodactyla, Bovidae) in Southeastern Tajikistan |
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Mammalia |
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80 |
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1 |
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49-57 |
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Pamirs; status; sustainable use; Tajikistan; trophy hunting. |
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Marco Polo sheep (Ovis ammon polii), listed as Near Threatened in the IUCN Red List, were surveyed using vehicles during three summers and three consecutive winters to determine the status and population structure of the subspecies in a hunted population in southeastern Pamirs, Tajikistan. A total of 8649, 8392, and 7663 sheep were observed in each winter survey with densities of 5.42,
4.91, and 4.49 argalis/km2, respectively. The differences in numbers observed in different years were probably due principally to differing dates of surveys among years. The high ratios of lamb for every 100 ewe (53, 38, and 49 during the winter surveys, and 60, 45, and 58 during the summer
surveys) and high percentages (45%–50%) of mature females during winter indicate that offspring recruitment is sufficient to maintain a stable population. The significant
increase in the abundance of Marco Polo sheep in the Tajikistan Pamirs compared with that of previous population surveys may probably be attributed to low numbers of domestic livestock during the winter, low human population density, unfenced and widespread wild sheep habitats,
and rigorous patrolling to limit poaching. The small number (45) of hunting permits has a minimal impact on the male sheep sector. Tajikistan now supports more argali than any other country |
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SLN @ rakhee @ |
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1438 |
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Michel, S., Michel, T. R., Saidov, A., Karimov, K., Alidodov, M., Kholmatov, I. |
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Title |
Population status of Heptner’s markhor Capra falconeri heptneri in Tajikistan: challenges for conservation |
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Flora & Fauna International |
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1-8 |
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Capra falconeri, CITES, community-based wildlife management, conservancies, hunting, markhor, sustainable use |
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Heptner’s markhor Capra falconeri heptneri is an Endangered wild goat occurring in disjunct populations in southern Tajikistan, Afghanistan, Uzbekistan and Turkmenistan. Surveys to determine the total population in Tajikistan were conducted during February–April 2012. A total of 1,018 animals were observed. In most areas, which include state protected areas and family- and communitybased
conservancies, markhor populations are stable or increasing. Threats include illegal hunting, habitat degradation, competition with livestock and disease transmission. To motivate conservancies economically to protect markhor populations, trophy hunting should be permitted to accommodate the sustainable use of markhor, with revenues distributed in a transparent and equitably shared manner. |
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SLN @ rakhee @ |
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1437 |
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Author |
Meklenburtsev R.N. |
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Title |
About ecology of ibex in Pamir |
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Miscellaneous |
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Year |
1949 |
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Vol. 28, edition 5. |
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482-483 |
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Tajikistan; Pamir; ibex; distribution; number; diet; reproductive biology; predators; snow leopard; commercial use.; 7640; Russian |
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Ibex is distributed all over the Pamir mountains, inhabiting rocks and canyons and ascending up to 5,500 m above sea level. In summer, ibex mostly feeds upon sedge and cereals, in winter wormwood. It keeps in herds containing 15 to 30 animals. The coupling period is December; kids being born at the beginning of June. The most dangerous predators are snow leopard and wolf. Ibex is a main commercial game species. |
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Full text available in RussianJournal Title: Zoological journal. |
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SLN @ rana @ 742 |
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674 |
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Author |
Novikov G.A. |
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Title |
Sub-genus UNCIA Gray |
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Miscellaneous |
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1956 |
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274-277 |
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Ussr; Central Asia; uncia; snow leopard; taxonomy; distribution; habitats; highly mountain; reproduction; Migration; use.; 7760; Russian |
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Identification features of the sub-genus Uncia (colour; length of body and tail; shoulder height, and skull measurements) are given. Distribution, habitat, way of life, reproduction biology, behavioural patterns, migration routes, commercial value of snow leopard in the USSR is described. |
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Full text available in RussianJournal Title: Predatory mammals of the USSR fauna. |
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Call Number |
SLN @ rana @ 754 |
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726 |
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Author |
Bogdanov O.P. |
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Title |
Snow leopard (Felis uncia) |
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Miscellaneous |
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1961 |
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246-247 |
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Uzbekistan; snow leopard; distriburion; life history; diet; use.; 6360; Russian |
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In Uzbekistan, this species is distributed in spurs of Tien Shan and Gissar. It preys on ibex, rarer on argalis, roe-deers, young wild boars. In winter, it attacks livestock and sometimes feeds upon marmots and smaller rodents. Snow leopard attacks man very rarely, only when wounded. The economic significance of this species is low, since only few skins are traded. Its dressed skins are used as rugs. |
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Full text available in RussianJournal Title: Animals of Uzbekistan. |
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Call Number |
SLN @ rana @ 614 |
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183 |
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Author |
Ishunin G.I. |
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Title |
Irbis, or snow leopard Felis (Uncia) uncia S¤hr†b†a 1778 |
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Miscellaneous |
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1961 |
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Vol. 3. |
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127-131 |
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Uzbekistan; snow leopard; taxonomy; distribution; behavior; practical use.; 6880; Russian |
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It describes diagnostic signs and taxonomy of snow leopard as well as its distribution, behavioral patterns and use in Uzbekistan. This predator inhabits the Ugam, Pskem, Chatkal, Turkistan, and Gissar ridges. It mainly preys on ibex, and marmots, vole-mouse, and snow-cocks. Sometimes it attacks domestic sheep. Snow leopard is of low commercial value. The cost of skin is 4 roubles 70 kopecks. Only a few skins are purchased. |
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Full text available in RussianJournal Title: Fauna of the Uzbek SSR. Mammals (predators and ungulates). |
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Call Number |
SLN @ rana @ 666 |
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412 |
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Author |
Pokrovskiy V.S. |
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Mammals |
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Miscellaneous |
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1969 |
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19-28 |
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Ussr; endangered species; snow leopard; distribution; number; use; protection.; 7930; Russian |
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The work presents a preliminary list of rare and endangered predatory and ungulate species. Snow leopard inhabits the mountain ridges of Tajikistan and Kyrgyzstan, and sometimes is met in the Altai and Tuva. Despite its habitat has not changed since recently, number of snow leopard is decreasing. Snow leopard population is reducing because this species is believed to be dangerous, as its skin is of high and sustainable demand, and because of high prices zoos will readily pay to buy snow leopards. Shepherds, local hunters and geologists hunt snow leopard. |
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Full text available in RussianJournal Title: Rare and endangered mammal and bird species in the USSR. |
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SLN @ rana @ 771 |
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779 |
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Author |
Yanushevich A.I. |
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Title |
Mammals of Kyrgyzstan |
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Miscellaneous |
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1972 |
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377-380 |
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Kyrgyzstan; snow leopard; taxonomy; distribution; habitats; number; life history characteristics; practical use.; 8640; Russian |
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A description of snow leopard, its taxonomy, distribution, habitat, number, behavior, food, reproduction, parasites, infections, and practical importance is given. In Kyrgyzstan, irbis was found in the Chatkal, Kyrgyz, Talas ridges, and Terskei Alatoo. An official annual snow leopard hunting rate ranged from 10 (1955) to 54 skins (in 1936) in 1930-s through 1950-s. 17 snow leopards were caught for the purpose of zoo-export only in 1965-1966. Its skin has no special value and is used by local people for decoration of dwellings and making collars. |
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Full text available in Russian |
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SLN @ rana @ 841 |
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1055 |
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Geptner V.G. |
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Genus snow leopard or irbis |
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Miscellaneous |
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1972 |
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Vol. 2, Part 2. |
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Ussr; snow leopard; identification; phylogeny; distribution; number; life history; use.; 6760; Russian |
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It describes genus and species features of snow leopard such as appearance, skull, sizes, phylogenetic links, distribution, geographic variability, biology including number, habitat, refuges, activity in daylight and night, behavioral patterns, reproduction, enemies and rivals, and practical use of the species. |
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Full text available in RussianJournal Title: Mammals of the Soviet Union. |
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SLN @ rana @ 654 |
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336 |
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Author |
Kaletskiy A.A. |
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May-“traven” |
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1974 |
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60-75 |
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Ussr; flora; fauna; snow leopard; use.; 7040; Russian |
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Diverse flora and fauna and seasonal phenomena in nature are stated in a popular form. Snow leopard is noticed to be a rare species, its population being significantly influenced by catching for zoos: over 400 snow leopards have been caught for this purpose over the last 35 years. |
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Full text available in RussianJournal Title: Kaleidoscope of naturalist. |
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SLN @ rana @ 682 |
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511 |
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Author |
Pokrovskiy V.S. |
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Title |
Snow leopard, or irbis |
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Miscellaneous |
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1976 |
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82-98 |
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Ussr; snow leopard; distribution; number; use; protection.; 7940; Russian |
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It considers biology of snow leopard, provides data concerning its number and distribution, and shows environment correlation of the predator. Besides, it describes the ways of catching snow leopards, and conditions under which it can be kept in enclosures. Precise recommendations for the species protection are given. |
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Full text available in RussianJournal Title: Large mammals. |
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SLN @ rana @ 772 |
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780 |
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Author |
Zhirnov L.V. |
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Title |
Rare and endangered species of the USSR |
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Miscellaneous |
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1978 |
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91-94 |
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Ussr; snow leopard; distribution; number; practical use.; 8740; Russian |
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A description of snow leopard number, distribution, reproductive biology, death reasons, and conservation measures in the USSR, where northern and north-western border of its habitat runs, is given. The population of snow leopard in the USSR is 500 1,000 animals. In the Inner Tien Shan, 400 snow leopards were caught 1936 through 1970. The maximum of 120 skins was purchased in Pamir in 1956 1958. Population of snow leopard directly correlates with population of ibex, a fact being verified by data collected on a long-term basis. Moreover, snow leopard was for a long time considered as a harmful animal, shooting of which was encouraged by premiums and resulted in reduction of snow leopard population. |
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Full text available in RussianJournal Title: Mammals and birds. |
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SLN @ rana @ 851 |
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1080 |
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Author |
Kolosov A.M. |
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Title |
Genus Snow leopards Uncia |
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Miscellaneous |
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1979 |
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150-151 |
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Ussr; snow leopard; systematic position; life-history; distribution; number; preys; practical use.; 7220; Russian |
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It provides description of appearance, distribution, behavioral patterns, and use of snow leopard in the USSR. The predator inhabits the mountains of Central Asia, east of the Amudarya river, along the ridges of Djungar Ala-Tau and Tarbagatai, South Altai, West and East Sayans. Its main food is ungulates, though it also preys on snow-cocks, marmots, small birds, and rodents. Sometimes attacks sheep. It has no enemy other than wolf; its diseases are not studied. Snow leopard is not dangerous for man. The fur-skin is used for making rugs and fur. Less than 1,000 animals are hunted globally. Before 1960, in the USSR less than 120 skins were annually purchased. Its total population is several thousand animals. |
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Full text available in RussianJournal Title: Biology of game animals in the USSR. |
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SLN @ rana @ 700 |
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549 |
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Author |
Ishunin G.I. |
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Title |
Snow leopard |
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Miscellaneous |
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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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no |
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Call Number |
SLN @ rana @ 670 |
Serial |
416 |
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Author |
White, S.D.; Stannard, A.A.; Ihrke, P.J.; Rosser, E.J. |
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Title |
Therapy of demodicosis in snow leopard challenged |
Type |
Journal Article |
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Year |
1981 |
Publication |
J Am Vet Med Assoc |
Abbreviated Journal |
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Volume |
178 |
Issue |
9 |
Pages |
877-878 |
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Keywords |
Amoxicillin: therapeutic use; Animal; Animals; zoo; Calcium: therapeutic use; Carnivora; Mite Infestations: drug therapy; veterinary; Sulfides: therapeutic use; Thiosulfates: therapeutic use; amoxicillin; therapeutic; calcium; mite; infestations; drug; therapy; drug therapy; sulfides; thiosulfates; browse; use; 360 |
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0003-1488 |
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Document Type: eng |
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no |
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Call Number |
SLN @ rana @ 57 |
Serial |
1020 |
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Author |
Sludsky A.A. |
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Title |
Genus Snow leopard Uncia Gray, 1854. Snow leopard Uncia uncia Schreber, 1775 |
Type |
Miscellaneous |
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Year |
1982 |
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Abbreviated Journal |
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Volume |
Vol. III, Part 2. |
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Pages |
222-240 |
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Keywords |
Kazakhstan; taxonomy; distribution; number; biology; use; snow leopard.; 8190; Russian |
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Abstract |
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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Notes |
Full text available in RussianJournal Title: Mammals of Kazakhstan. Carnivora (Mustelidae, Felidae). |
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no |
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Call Number |
SLN @ rana @ 797 |
Serial |
900 |
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Author |
Sapojnikov G.N. |
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Title |
Distribution and number of several endangered mammals and birds of Tajikistan |
Type |
Miscellaneous |
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Year |
1984 |
Publication |
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Abbreviated Journal |
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Volume |
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Pages |
129-143 |
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Keywords |
Tajikistan; endangered species; snow leopard; number; use.; 8070; Russian |
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Abstract |
Many years' data connected with the distribution and number of endangered species of animals as dhole (Cuon alpinus Pall), striped hyena (Hyaena hyaena L.), snow leopard (Uncia uncia Shreb.) and birds of Tajikistan are given. Area of snow leopard includes the most of mountain ridges in this country. The total number is evaluated about 160-200 individuals. The record quantity of legal harvested skins of snow leopard is 64 in 1946. |
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Notes |
Full text available in RussianJournal Title: Natural resources and nature reserves of Tajikistan. |
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no |
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Call Number |
SLN @ rana @ 785 |
Serial |
844 |
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Author |
Sokov A.I. |
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Title |
Environmental prerequisites for protection and sustainable use of predatory mammals in Tajikistan |
Type |
Miscellaneous |
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Year |
1986 |
Publication |
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Abbreviated Journal |
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Volume |
Vol. 3. |
Issue |
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Pages |
27-29 |
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Keywords |
Tajikistan; Red Data book; rare species; carnivores; large predators; brown bear; hyena; tiger; leopard; Lynx; snow leopard; decline; protection; sustainable use.; 8220; Russian |
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Abstract |
In Tajikistan it is necessary to preserve big predators listed in the Red Book, such as Uncia uncia, Ursus arctos isabellinus, Hyaena hyaena, Felis lynx isabellina, Panthera pardus ciscaucasica. An anthropogenic influence has resulted in the species' habitat shrinkage, deficit of food, disturbance of trophic interactions. It is necessary to restore a tiger population in the Tigrovaya Balka nature reserve, and resolve the issue of protection and sustainable use of commercial predatory species. |
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Full text available in RussianJournal Title: Proceedings of IV Congress of all-Union mammalists' society. |
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no |
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Call Number |
SLN @ rana @ 800 |
Serial |
913 |
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Author |
Sokolov V.E. |
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Title |
Snow leopard |
Type |
Miscellaneous |
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Year |
1986 |
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Volume |
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Issue |
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Pages |
349-350 |
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Keywords |
Ussr; snow leopard; distribution; number; use; protection.; 8250; Russian |
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Abstract |
Snow leopard is an endangered species. Its number is steadily decreasing. In the USSR, snow leopard is distributed in the mountains of Central Asia: Pamir, Tien Shan, Djungar Ala-Tau, Tarbagatai, Saur. It is also met at altitudes ranging from 1,800 3,500 m above sea level. A total number of snow leopard in the USSR does not exceed 1,000 animals; according to other data 2,000 animals. A decreasing number of snow leopard and its habitat shrinkage is directly related to human's pursuing snow leopards (in the USSR snow leopard was for a long time being considered as a species causing damage to livestock so authorities gave premiums for catching/shooting snow leopards) and reduction of ungulate population. Snow leopards are now protected in mountain nature reserves of the USSR: Chatkal, Aksu-Djabagly, Ramit, Besh-Aral, Sary-Chelek, and Alma-Ata. |
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Notes |
Full text available in RussianJournal Title: Rare and endangered animals. Mammals. |
Approved |
no |
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Call Number |
SLN @ rana @ 803 |
Serial |
908 |
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Author |
Ishunin G.I. |
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Title |
Genus Snow leopard Uncia gray, 1854 |
Type |
Miscellaneous |
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Year |
1987 |
Publication |
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Pages |
94-97 |
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Keywords |
Uzbekistan; mammals; game species; biology; distribution; practical use; conservation measures.; 6940; Russian |
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Abstract |
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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Notes |
Full text available in RussianJournal Title: Game animals of Uzbekistan. |
Approved |
no |
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Call Number |
SLN @ rana @ 672 |
Serial |
418 |
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Author |
Jalanka, H.H.; Roeken, B. |
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Title |
The use of Medetomidine, Medetomidine-Ketamine combinations, and Atipamezole in nondomestic mammals: A review |
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Journal Article |
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Year |
1990 |
Publication |
Journal-of-Zoo-and-Wildlife-Medicine |
Abbreviated Journal |
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Volume |
21 |
Issue |
3 |
Pages |
259-282 |
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use; medetomidine; atipamezole; mammals |
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Abstract |
The recent development of potent and specifica lphar-adrenoceptoar gonistsa nd antagonists has enhanced their use in nondomestic animal immobilization and reversal. Medetomidine, a new potent alphar-agonist, in combination with the dissociative anesthetic ketamine, has been used to immobilize a variety of nondomestic mammals. Medetomidine alone induces sedation in a dose-dependent way, and complete immobilization has been achieved with high doses in semidomesticated reindeer (Rangifer tarandus) and blue foxes (Alopex lagopus). Howbver, we feel that ketamine should be added to the immobilization mixture to ensure complete immobilization and operator safety. In ketamine combinations, medetomidine doses are usually 60-100 pg/kg. The required ketamine doses are remarkably low:0.8-1.6 mglkg in most ruminants,2.5-3.0 mgUgin felids,u rsids,a nd canids,a nd 5.G-8.0m glkgi n primates,w olverines(Gulog ulo),ando therm uitelids. Clinically, the resulting immobilization is characterized by a smooth onset, good to excellent myorelaxation, and areflexia at higher doses. Determinations of hematologic, serum biochemicil, arterial blood gas,a nd acid-bases tatusp arametersi ndicate that the immobilization is physiologically sound. We have had no fatalities attributable to the immobilization mixture ( I ,240 immobilizations). The alphar-adrenoceptora ntagonist,a tipamezole,i s highly efective in reversingt he immobilization induced by medetomidine, medetomidine-ketamine combinations, or xylazine. In ruminants, the medetomidine-ketamine-induced immobilization can be rapidly and persistently reversed by administering 100-l 50 1rg/kg of alipamezole i.v. and the rest s.c., adjusting the total atipamezole dose to an atipamezole: medetomidine ratio of approximately 4-5 (w/w). Becauseth e required ketamine doses are relatively high in carnivores, we prefer to use a lower atipamezole dose (totil atipamezoie: medetomidine ratio approximately 2-3 w/w) and to administer it i.m. or s.c. Using thii regimen, reversals are calm and animals show minimal “residual ketamine effect.” Because atipamezole is a competitive antagonist, its dose should be reduced if it is administered late in the immobilization period when a large part of medetomidine has been endogenously metabolized. Xylazine-induced immobilization is rapidly reversed by I mg of atipamezole for every 8-12 mg of xylazine used. |
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American Association of Zoo Veterinarians |
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SLN @ rana @ 1081 |
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486 |
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Author |
De Groot, H.; Van Swieten, P.; Aalberse, R.C. |
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Title |
Evidence for a Fel d I-like molecule in the “big cats” (Felidae species) |
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Journal Article |
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Year |
1990 |
Publication |
J Allergy Clin Immunol |
Abbreviated Journal |
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Volume |
86 |
Issue |
1 |
Pages |
107-116 |
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Keywords |
Adolescence; Adult; Allergens; immunology; Animal; Antibodies; Monoclonal; diagnostic; use; Antibody; Specificity; Carnivora; Cats; Comparative; study; Cross; Reactions; Hair; Histamine; Release; Human; IgE; analysis; IgG; Middle; Age; Radioallergosorbent; Test; methods; Support; Non-U.S.Gov't; browse; us; government; gov't; 240 |
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Abstract |
In this study, we investigated the cross-reactivity pattern of IgE and IgG4 antibodies to the major feline allergen, Fel d I. We studied the IgE and IgG4 response of 11 cat-allergic patients against Fel d I-like structures in eight members of the Felidae family: ocelot, puma, serval, siberian tiger, lion, jaguar, snow leopard, and caracal. Hair from these “big cats” was collected, extracted, and used in a RAST system and histamine-release test. By means of a RAST-inhibition assay with affinity-purified Fel d I from cat dander, it was established that, in the Felidae species, a Fel d I equivalent is present that reacts with IgE and IgG4 antibodies. We found that all patients had cross-reacting IgE antibodies to seven of the Felidae tested; no IgE antibodies reactive with the caracal were found. Eight of 10 patients with IgG4 antibodies directed to cat dander also had IgG4 antibodies directed to several Felidae species, including the caracal. However, the correlation between the IgE and the IgG4 antibody specificity was low, indicating that, in the case of Fel d I IgE and IgG4, antibodies do not necessarily have the same specificity. |
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0091-6749 |
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Document Type: eng |
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no |
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SLN @ rana @ 157 |
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233 |
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Author |
Fox, J.L.; Nurbu, C. |
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Title |
Hemis, a national park for snow leopards in India's Trans-Himalaya |
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Journal Article |
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1990 |
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Int.Pedigree Book of Snow Leopards |
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6 |
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Pages |
71-84 |
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protected-area; Hemis; park; parks; refuge; reserve; India; Himalaya; protected; area; areas; protected areas; protected area; browse; Jammu; Kashmir; habitat; tourism; land-use; humans; developement; conflict; management; 3170 |
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Full text available at URL |
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no |
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SLN @ rana @ 155 |
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296 |
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Fox, J.L., Sinha, S.P., Chundawat, R.S. |
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Title |
Activity patterns and habitat use of ibex in the Himalaya mountains of India |
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1992 |
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Journal of Mammology |
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73 |
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3 |
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527-534 |
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Capra ibex, activity patterns, habitat use, Himalaya mountains, India |
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English |
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1168 |
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Author |
Meiers, S.T. |
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Title |
Habitat use by captive puma (Felis concolor) and snow leopards (Pathera uncia) at the Lincoln Park Zoo, Chicago, Illinois |
Type |
Book Whole |
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Year |
1992 |
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1-74 |
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habitat; habitat use; use; captive; felis; Felis-concolor; concolor; snow; snow leopards; snow leopard; snow-leopards; snow-leopard; leopards; leopard; uncia; park; zoo; 1990; observations; panthera; panthera uncia; Panthera-uncia; zoological; zoological gardens; zoological-gardens; gardens; behavior; species; Time budget; dens; Identity; Animals; Animal; non; Cats; cat; location; relief |
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Abstract |
Between May 1990 and January 1991, behavioral observations were made of two captive pumas (Felis concolor Linnaeus), and two captive snow leopards (Panthera uncia Schreber) in their outdoor exhibits at the Lincoln Park Zoological Gardens, Chicago, Illinois. Behaviors compared within and between species included: 1) time spend in the different habitat types; 2) time budgets for the different behaviors: laying, moving, sitting, standing, crouching, in the tree, drinking, urinating, defecating, within their inside dens, and “behavior not determined” when the identity or behavior of the individuals could not be determined; and 3) mobility of the animals within their exhibits. Also examined were: 4) preferences for different habitat types; 5) recommendations for future exhibit designs. Both species located themselves within their exhibits in a non-random manner. The majority of cats' time was spent in elevated locations (i.e., gunite ledges approximately 1-5.5 m above ground-level). Snow leopards exhibited this tendency to a greater extent than did the pumas. Both species also spent the majority of their time in the lying-down behavior; again snow leopards displayed this tendency significantly more than the pumas. Pumas were highly mobile and changed locations and behaviors in their exhibit significantly more than the snow leopards. No significant differences were noted between conspecifics in regard to habitat type preference, or mobility within the exhibit. Suggestions for future exhibit design include elevated locations for the cats to lay and look around within and outside their exhibits, caves for access to shade or relief from inclement weather, and ground surfaces to move about on. Features for exhibit design should take into consideration the natural habitat of the cat to occupy the exhibit. |
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Ph.D. thesis |
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DePaul University |
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A thesis submitted to the faculty of the Department of Biological Sciences in partial fulfillment of the degree requirements for the degree of Master of Science at DePaul University. |
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Call Number |
SLN @ rana @ 1008 |
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673 |
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