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Author | Formozov A.N. | ||||
Title | Seasonal migrations of mammals due to snow cover. Distribution of the Felidae family species | Type | Miscellaneous | ||
Year | 1990 | Publication | Abbreviated Journal | ||
Volume | Issue | Pages | 83-84 | ||
Keywords | Migration; ungulates; carnivores; snow leopard.; 6740; Russian | ||||
Abstract | It describes vertical migrations of ungulates (ibex, wild sheep) in the Semerechie, Altai, Sayans, Tuva, seasonal migrations of steppe ungulates (kulan and saiga), and migrations of predators (lynx, leopard, irbis, tiger, dhole, wolf, glutton) following ungulates during winters with thick snow cover. Shorter local migrations related to uneven snow cover are typical for corsac, fox, and wolf. An analysis of the Felidae family species distribution showed that northern border of the cat family species habitat is connected with borders of 20 30 cm thick snow cover rather than with landscape contours or typical habitats. With the exception of lynx, this can be referred to the large cat family species such as irbis, leopard, and tiger. | ||||
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Notes | Full text available in RussianJournal Title: Snow cover in life of mammals and birds. | Approved | no | ||
Call Number | SLN @ rana @ 652 | Serial | 283 | ||
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Author | Formozov A.N. | ||||
Title | Fauna of mountainous areas in Kazakhstan | Type | Miscellaneous | ||
Year | 1987 | Publication | Abbreviated Journal | ||
Volume | Issue | Pages | 115-126 | ||
Keywords | Kazakhstan; mountains; fauna; snow leopard.; 6720; Russian | ||||
Abstract | The author provides description of fauna of Kazakhstan's mountainous areas. Fauna of the mountain taiga is also typical for the forests of South Siberia. Ungulate species such as musk deer and ibex are common for rocky taiga areas. In the Altai, ibex, musk deer, and wild sheep are preyed on by dhole and snow leopard and more typical species such as glutton and wolf. Ibex, argali, and irbis are typical for Transili Ala-Tau and West Tien Shan. Tien Shan is the only area of the USSR with quite many irbis preserved. The ridges of this mountainous area located in Kazakhstan are very likely to be an area the most densely populated by snow leopards within the predator's habitat. | ||||
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Notes | Full text available in RussianJournal Title: Fauna of Kazakhstan. | Approved | no | ||
Call Number | SLN @ rana @ 650 | Serial | 284 | ||
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Author | Foose, T.J. | ||||
Title | A Species Survival PLan (SSP) for snow leopard, Panthera uncia: Genetic and demographic analysis and management | Type | Book Chapter | ||
Year | 1982 | Publication | International Pedigree Book of Snow Leopards, Vol. 3 | Abbreviated Journal | |
Volume | 3 | Issue | Pages | 81-102 | |
Keywords | analysis; demographic; International; management; Panthera-uncia; pedigree; snow leopard; Species-Survival-Plan; species survival plan; Ssp | ||||
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Publisher | Helsinki Zoo | Place of Publication | Helsinki | Editor | Blomqvist, L. |
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Notes | Approved | no | |||
Call Number | SLN @ rana @ 1028 | Serial | 280 | ||
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Author | Flora and Fauna International | ||||
Title | Central Asia Snow Leopard Workshop | Type | Miscellaneous | ||
Year | 2006 | Publication | Abbreviated Journal | ||
Volume | Issue | Pages | |||
Keywords | Central Asia; Central Asia Snow Leopard Workshop; June 2006; Report; snow leopard; workshop; central; asia; snow; snow-leopard; leopard | ||||
Abstract | Meeting report for the Central Asia Snow Leopard Workshop, held in Bishkek in June 2006. | ||||
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Publisher | Flora and Fauna International | Place of Publication | Editor | ||
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Notes | BISHKEK, 19-21 JUNE 2006. Meeting Report | Approved | no | ||
Call Number | SLN @ rana @ 878 | Serial | 275 | ||
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Author | Flint V.E. | ||||
Title | The cats – Felidae | Type | Miscellaneous | ||
Year | 1970 | Publication | Abbreviated Journal | ||
Volume | Issue | Pages | 149-164 | ||
Keywords | Ussr; Felidae; taxonomy; distribution; snow leopard.; 6700; Russian | ||||
Abstract | Description of 12 cats species from USSR (Felis silvestris, Felis libyca, Felis euptilura, Felis chaus, Felis lynx, Felis caracal, Felis •…‹u1, Felis margarita, Felis tigris, Felis pardus, Felis uncia, Aci‹Œ‹¢o jub…tus) is given. Snow leopard inhabited in mountain ridges of Kazakhstan, Middle Asia, Altai and Sayan. | ||||
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Notes | Full text available in RussianJournal Title: Mammals of USSR. | Approved | no | ||
Call Number | SLN @ rana @ 648 | Serial | 279 | ||
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Author | Flerov K.K. | ||||
Title | Capra sibirica, Uncia uncia uncia Erxleben | Type | Miscellaneous | ||
Year | 1935 | Publication | Abbreviated Journal | ||
Volume | Issue | Pages | 115-120 | ||
Keywords | Tajikistan; wild ibex; snow leopard; taxonomy; distribution; behavior.; 6690; Russian | ||||
Abstract | It describes identification signs of ibex and snow leopard; provides data concerning taxonomy, distribution and behavioral patterns of the both species. Snow leopard inhibits the mountains of Central Asia, Tarbagatai, Altai, Sayans and southward to the Humalayas. In Tajikistan snow leopard is distributed in Pamir, and probably, along alpine strip of the ridges in northern Tajikistan. The sub-species status is not defined. It is known that the same type inhabits the area from the Sayans to Himalayas. Only in Tibet and highlands of Sychuan and Gansu lives a well-marked sub-species Uncia uncia uncioides Hodgson. | ||||
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Notes | Full text available in RussianJournal Title: Animals of Tajikistan, their life and importance for man. | Approved | no | ||
Call Number | SLN @ rana @ 647 | Serial | 278 | ||
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Author | Fix, A.S.; Riordan, D.P.; Hill, H.T.; Gill, M.A.; Evans, M.B. | ||||
Title | Feline panleukopena virus and subsequent canine-distemper virus infection in two snow leopards (Panthera uncia) | Type | Journal Article | ||
Year | 1989 | Publication | Journal of Zoo and Wildlife Medicine | Abbreviated Journal | |
Volume | 20 | Issue | 3 | Pages | 273-281 |
Keywords | diagnosis; fecal; Fpv; leukemia; panleukopenia; panthera uncia; snow leopard; therapy; vaccination; veterinary; Virus; zoo | ||||
Abstract | Two adult snow leopards (Panthera uncia), male and female, both with vaccinations current, became infected with feline panleukopenia virus (FPV) at the Blank Park Zoo, Des Moines, Iowa, in late 1988. Clinical signs included weakness, hemorrhagic feces, fever, seizures, and nasal discharge. Blood analysis revealed severe lymphopenia and mild anemia. A positive enzyme-linked immunosorbent assay (ELISA) test for FPV on fecal contents from the male leopard confirmed the diagnosis. In spite of intensive therapy, both animals died. Necropsy of the female, which survived for 1 wk after onset of signs, revealed intestinal crypt necrosis, pulmonary consolidation, necrotizing laryngitis, and diffuse lymphoid depletion. The male leopard, which lived 3 wk after onset of illness, had similar enteric and lymphoid lesions. In addition, there was a severe interstitial pneumonia, with syncytial cells containing eosinophilic intracytoplasmic inclusion bodies. Ultrastructural characteristics of these inclusions featured tubular structures consistent with a paramyxovirus. Although repeated virus isolation attempts from the affected lung were negative, polyclonal and monoclonal fluorescent antibody tests were strongly positive for canine distemper virus (CDV). Frozen paired sera from each leopard demonstrated very high acute and convalescing titers to FPV; both animals also seroconverted to CDV, with titers in the male leopard higher than those in the female. Additional tests for toxoplasmosis, feline infectious peritonitis, feline rhinotracheitis, feline calicivirus, feline leukemia, canine parainfluenza, and bovine respiratory syncytial virus were all negative. The neurologic signs present in these leopards remained unexplained, but may have been attributable to CDV infection. A feral cat trapped on zoo property had feces positive for FPV by ELISA. Although the specific contributions of FPV and CDV toward the development of this case are unknown, it is likely that initial FPV-induced immunosuppression allowed the subsequent development of CDV in these snow leopards. The likelihood that initial FPV infection came from feral cats underscores the importance of feral animal control on zoo premises. | ||||
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Notes | Addresses:FIX AS, IOWA STATE UNIV SCI & TECHNOL,DEPT VET PATHOL,AMES,IA 50011IOWA STATE UNIV SCI & TECHNOL,VET DIAGNOST LAB,AMES,IA 50011BLANK PK ZOO,DES MOINES,IA 50315NORDEN LABS INC,LINCOLN,NE 68501NATL VET SERV LABS,AMES,IA 50010 Publisher:AMER ASSOC Z00 VETERINARIANS, MEDIA Connective Phrase: English | Approved | no | ||
Call Number | SLN @ rana @ 147 | Serial | 277 | ||
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Author | Filonov K.F. | ||||
Title | Large terrestrial mammals in the reserves of Russia: their status and prospects of conservation | Type | Miscellaneous | ||
Year | 1996 | Publication | Abbreviated Journal | ||
Volume | Issue | Pages | 343-348 | ||
Keywords | Russia; nature reserves; large mammals; carnivores; ungulates; distribution; number; snow leopard.; 6680; Russian | ||||
Abstract | The authors make an analysis of fauna of large mammals in 68 nature reserves. There are 10 carnivores and 17 ungulates. Wolf, brown bear, wolverine and lynx appeared to be more widely spread. Dhole, snow leopard, tiger, Himalayan bear have limited distribution and low density. Hey have recorded in a few nature reserves. Among the ungulates wild boar, musk deer, red deer, roe deer, moose, reindeer and aurochs are more widely spread. | ||||
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Notes | Full text available in RussianJournal Title: Status of mammal fauna in Russian and adjoining states. | Approved | no | ||
Call Number | SLN @ rana @ 646 | Serial | 276 | ||
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Author | Filla, M., Lama, R. P., Filla, T., Heurich, M., Balkenhol, N., Waltert, M., Khorozyan, I. | ||||
Title | Patterns of livestock depredation by snow leopards and effects of intervention strategies: lessons from the Nepalese Himalaya | Type | Journal Article | ||
Year | 2022 | Publication | Wildlife Research | Abbreviated Journal | |
Volume | Issue | Pages | |||
Keywords | Annapurna, co-existence, conservation biology, highland communities, human–wildlife conflict, large carnivore, livestock depredation, Panthera uncia, prey selection, snow leopard. | ||||
Abstract | Context: Large carnivores are increasingly threatened by anthropogenic activities, and their protection is among the main goals of biodiversity conservation. The snow leopard (Panthera uncia) inhabits high-mountain landscapes where livestock depredation drives it into conflicts with local people and poses an obstacle for its conservation. Aims: The aim of this study was to identify the livestock groups most vulnerable to depredation, target them in implementation of practical interventions, and assess the effectiveness of intervention strategies for conflict mitigation. We present a novel attempt to evaluate intervention strategies for particularly vulnerable species, age groups, time, and seasons. Methods: In 2020, we conducted questionnaire surveys in two regions of the Annapurna Conservation Area, Nepal (Manang, n = 146 respondents and Upper Mustang, n = 183). We applied sample comparison testing, Jacobs’ selectivity index, and generalised linear models (GLMs) to assess rates and spatio-temporal heterogeneity of depredation, reveal vulnerable livestock groups, analyse potential effects of applied intervention strategies, and identify husbandry factors relevant to depredation. Key results: Snow leopard predation was a major cause of livestock mortality in both regions (25.4–39.8%), resulting in an estimated annual loss of 3.2–3.6% of all livestock. The main intervention strategies (e.g. corrals during night-time and herding during daytime) were applied inconsistently and not associated with decreases in reported livestock losses. In contrast, we found some evidence that dogs, deterrents (light, music playing, flapping tape, and dung burning), and the use of multiple interventions were associated with a reduction in reported night-time depredation of yaks. Conclusions and implications: We suggest conducting controlled randomised experiments for quantitative assessment of the effectiveness of dogs, deterrents, and the use of multiple interventions, and widely applying the most effective ones in local communities. This would benefit the long-term co-existence of snow leopards and humans in the Annapurna region and beyond. |
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Notes | Approved | no | |||
Call Number | SLN @ rakhee @ | Serial | 1684 | ||
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Author | Ferretti, F., Lovari, S., Minder, I., Pellizzi, B. | ||||
Title | Recovery of the snow leopard in Sagarmatha (Mt.Everest) National Park: effects on main prey | Type | Journal Article | ||
Year | 2014 | Publication | European Journal of Wildlife Research | Abbreviated Journal | |
Volume | Issue | 60 | Pages | 559-562 | |
Keywords | Predator–prey relationships . Small populations . Snow leopard . Himalayan tahr | ||||
Abstract | Consequences of predation may be particularly heavy on small populations of herbivores, especially if they are threatened with extinction. Over the 2006–2010 period, we documented the effects of the spontaneous return of the endangered snow leopard on the population of the vulnerable Himalayan tahr. The study area was an area of central Himalaya where this cat disappeared c. 40 years before, because of persecution by man. Snow leopards occurred mainly in areas close to the core area of tahr distribution. Tahr was the staple (56.3 %) of snow leopards. After the arrival of this cat, tahr decreased by more than 2/3 from 2003 to 2010 (mainly through predation on kids). Subsequently, the density of snow leopards decreased by 60%from2007 to 2010. The main prey of snow leopards in Asia (bharal, marmots) were absent in our study area, forcing snow leopards to specialize on tahr. The restoration of a complete prey spectrum should be favoured through reintroductions, to conserve large carnivores and to reduce exploitation of small populations of herbivores, especially if threatened. |
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Call Number | SLN @ rakhee @ | Serial | 1408 | ||
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