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Author Jalanka, H.H.; Roeken, B.
Title The use of Medetomidine, Medetomidine-Ketamine combinations, and Atipamezole in nondomestic mammals: A review Type Journal Article
Year 1990 Publication Journal-of-Zoo-and-Wildlife-Medicine Abbreviated Journal
Volume 21 Issue 3 Pages 259-282
Keywords use; medetomidine; atipamezole; mammals
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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Corporate Author Thesis
Publisher American Association of Zoo Veterinarians Place of Publication Editor
Language Summary Language Original Title
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ISSN ISBN Medium
Area Expedition Conference
Notes Approved no
Call Number SLN @ rana @ 1081 Serial 486
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Author White, S.D.; Stannard, A.A.; Ihrke, P.J.; Rosser, E.J.
Title Therapy of demodicosis in snow leopard challenged Type Journal Article
Year 1981 Publication J Am Vet Med Assoc Abbreviated Journal
Volume 178 Issue 9 Pages 877-878
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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Publisher Place of Publication Editor
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Series Editor Series Title Abbreviated Series Title (up)
Series Volume Series Issue Edition
ISSN 0003-1488 ISBN Medium
Area Expedition Conference
Notes Document Type: eng Approved no
Call Number SLN @ rana @ 57 Serial 1020
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Author Zhirnov L.V.
Title Rare and endangered species of the USSR Type Miscellaneous
Year 1978 Publication Abbreviated Journal
Volume Issue Pages 91-94
Keywords Ussr; snow leopard; distribution; number; practical use.; 8740; Russian
Abstract 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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Area Expedition Conference
Notes Full text available in RussianJournal Title: Mammals and birds. Approved no
Call Number SLN @ rana @ 851 Serial 1080
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Author Alexander, J. S., Shi, K., Tallents, L. A., Riordan, P.
Title On the high trail: examining determinants of site use by the Endangered snow leopard Panthera uncia in Qilianshan, China Type Journal Article
Year 2015 Publication Oryx Abbreviated Journal
Volume Issue Fauna & Flora International Pages 1-8
Keywords Camera Trap, China, Detection Probability, Occupancy Modelling, Panthera Uncia, Site use, Snow Leopard
Abstract Abstract There is a need for simple and robust techniques for assessment and monitoring of populations of the Endangered snow leopard Panthera uncia to inform the de- velopment of action plans for snow leopard conservation. We explored the use of occupancy modelling to evaluate the influence of environmental and anthropogenic features on snow leopard site-use patterns. We conducted a camera trap survey across  km in Gansu Province, China, and used data from  camera traps to estimate probabilities of site use and detection using the single season occupancy model. We assessed the influence of three covariates on site use by snow leopards: elevation, the presence of blue sheep Pseudois nayaur and the presence of human disturb- ance (distance to roads). We recorded  captures of snow leopards over , trap-days, representing a mean capture success of . captures per  trap-days. Elevation had the strongest influence on site use, with the probability of site use increasing with altitude, whereas the influence of presence of prey and distance to roads was relatively weak. Our findings indicate the need for practical and robust tech- niques to appraise determinants of site use by snow leo- pards, especially in the context of the limited resources available for such work.
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Notes Approved no
Call Number SLN @ rakhee @ Serial 1433
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Author Yanushevich A.I.
Title Mammals of Kyrgyzstan Type Miscellaneous
Year 1972 Publication Abbreviated Journal
Volume Issue Pages 377-380
Keywords Kyrgyzstan; snow leopard; taxonomy; distribution; habitats; number; life history characteristics; practical use.; 8640; Russian
Abstract 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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Notes Full text available in Russian Approved no
Call Number SLN @ rana @ 841 Serial 1055
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Author Sokov A.I.
Title Environmental prerequisites for protection and sustainable use of predatory mammals in Tajikistan Type Miscellaneous
Year 1986 Publication Abbreviated Journal
Volume Vol. 3. Issue Pages 27-29
Keywords Tajikistan; Red Data book; rare species; carnivores; large predators; brown bear; hyena; tiger; leopard; Lynx; snow leopard; decline; protection; sustainable use.; 8220; Russian
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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Notes Full text available in RussianJournal Title: Proceedings of IV Congress of all-Union mammalists' society. Approved no
Call Number SLN @ rana @ 800 Serial 913
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Author Sokolov V.E.
Title Snow leopard Type Miscellaneous
Year 1986 Publication Abbreviated Journal
Volume Issue Pages 349-350
Keywords Ussr; snow leopard; distribution; number; use; protection.; 8250; Russian
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
Call Number SLN @ rana @ 803 Serial 908
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Author Sludsky A.A.
Title Genus Snow leopard Uncia Gray, 1854. Snow leopard Uncia uncia Schreber, 1775 Type Miscellaneous
Year 1982 Publication Abbreviated Journal
Volume Vol. III, Part 2. Issue Pages 222-240
Keywords Kazakhstan; taxonomy; distribution; number; biology; use; snow leopard.; 8190; Russian
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). Approved no
Call Number SLN @ rana @ 797 Serial 900
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Author Fox, J.L., Sinha, S.P., Chundawat, R.S.
Title Activity patterns and habitat use of ibex in the Himalaya mountains of India Type Journal Article
Year 1992 Publication Journal of Mammology Abbreviated Journal
Volume 73 Issue 3 Pages 527-534
Keywords Capra ibex, activity patterns, habitat use, Himalaya mountains, India
Abstract
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Call Number SLN @ rana @ Serial 1168
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Author Devendra, T. & Chalise, M.
Title Population and habitat of Himalayan thar (Hemitragus jemlahicus) in Langtang Himalaya, Langtang National Park (LNP), Nepal Type Journal Article
Year 2010 Publication Special issue on the occasion of 15th Wildlife Week Abbreviated Journal
Volume Issue 2067 Pages 37-46
Keywords Himalayan Thar, census, habitat characters, use
Abstract A survey of Himalayan Thar was carried out in Langtang valley in response to the lacking of scientific information of its population status and distribution in the area. The study was carried out from Ghodatabela to Langsisa Kharka during April to June of 2003/04/2005. The area was divided into 5 survey blocks measuring 5sqkm each and study was conducted through blocks. Observed herds and individual animals were repeatedly counted and recorded. A total of 218 individuals of different age and sex Himalayan Thar were recorded during the study in 8 different herds. Three types of herds were recognized; Adult male-adult female-young (37.5%), Adult female-young (37.5%) and All adult-male (25%). Survey revealed that 50% of Thar herds were observed in 4200-4900m (Fourth block) and least (12%) were in 3700-4000m (First block), animals were not located in 3850-4200m (Third, Fifth block). Stratified random sampling was done to analyze the vegetation in their habitat and identified 26 potential plant species. The encroachment of their habitat is severe by the excessive livestock grazing and utilization for cowshed. Noticeable disturbance felt due to frequent poaching and tourist flow. The conservation of this species seems vital as it is prime prey species of Snow leopard in LNP.
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Corporate Author Dept. of National Parks & Wildlife Cons. /Govt. of Nepal Thesis
Publisher Place of Publication Editor
Language English Summary Language Original Title
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Area Expedition Conference
Notes Approved no
Call Number SLN @ rana @ Serial 1318
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