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Author |
Hast, M.H. |
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Title |
The larynx of roaring and non-roaring cats |
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Journal Article |
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1989 |
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J Anat |
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163 |
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117-121 |
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Animal; Carnivora; anatomy; histology; Cats; Comparative; study; Female; Larynx; physiology; Lions; Male; Vocal; Cords; vocalization; browse; 260 |
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Abstract ![sorted by Abstract field, descending order (down)](img/sort_desc.gif) |
Dissections were made of the larynges of 14 species of the cat family, with representative specimens from all genera. It was found that the vocal folds of the larynx of genus Panthera (with the exception of the snow leopard) form the basic structure of a sound generator well- designed to produce a high acoustical energy. Combined with an efficient sound radiator (vocal tract) that can be adjusted in length, a Panthera can use its vocal instrument literally to blow its own horn with a 'roar'. Also, it is proposed that laryngeal morphology can be used as an anatomical character in mammalian taxonomy. |
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0021-8782 |
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Document Type: eng |
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SLN @ rana @ 143 |
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374 |
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Author |
Khanyari, M., Oyanedel, R., Khara, A., Sharma, M., Milner-Gulland, E. J., Suryawanshi, K. R., Vineer, H. R., Morgan, E. R. |
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Title |
Predicting and reducing potential parasite infection between migratory livestock and resident Asiatic ibex of Pin valley, India |
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Journal Article |
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Year |
2024 |
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Journal of Biosciences |
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49 |
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50 |
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1-14 |
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Disease; epidemiology; gastrointestinal nematode; intervention; parasite; ungulate |
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Abstract ![sorted by Abstract field, descending order (down)](img/sort_desc.gif) |
Disease cross-transmission between wild and domestic ungulates can negatively impact livelihoods and wildlife conservation. In Pin valley, migratory sheep and goats share pastures seasonally with the resident Asiatic ibex (Capra sibirica), leading to potential disease cross-transmission. Focussing on gastro-intestinal nematodes (GINs) as determinants of health in ungulates, we hypothesized that infection on pastures would increase over summer from contamination by migrating livestock. Consequently, interventions in livestock that are well-timed should reduce infection pressure for ibex. Using a parasite life-cycle model, that predicts infective larval availability, we investigated GIN transmission dynamics and evaluated potential interventions. Migratory livestock were predicted to contribute most infective larvae onto shared pastures due to higher density and parasite levels, driving infections in both livestock and ibex. The model predicted a c.30-day anti- parasitic intervention towards the end of the livestock’s time in Pin would be most effective at reducing GINs in both hosts. Albeit with the caveats of not being able to provide evidence of interspecific parasite trans- mission due to the inability to identify parasite species, this case demonstrates the usefulness of our predictive model for investigating parasite transmission in landscapes where domestic and wild ungulates share pastures. Additionally, it suggests management options for further investigation. |
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SLN @ rakhee @ |
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1748 |
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Author |
Schaller, G.B. |
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Title |
On meeting a Snow Leopard |
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Year |
1972 |
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Animal Kingdom |
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75 |
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1 |
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7-13 |
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Pakistan; ecology; conservation; distribution; livestock; goat; baiting; reserves; reserve; park; parks; refuge; behavior; protected-area; browse; protected area; protected; area; 2220 |
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Abstract ![sorted by Abstract field, descending order (down)](img/sort_desc.gif) |
Discusses snow leopard distribution, ecology and conservation. Describes baiting (with a domestic goat) of a snow leopard and cub in a game reserve in Northern Pakistan. Incudes a description of the Leopard killing a goat, and observations over a week when the leopards were feeding on the goat baits. |
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SLN @ rana @ 23 |
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861 |
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Author |
Zhirnov, L.; Ilyinsky, V. |
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Title |
The Great Gobi National Park – a refuge for rare animals of the Central Asian deserts |
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1986 |
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gobi; Mongolia; parks; park; reserve; reserves; refuge; distribution; protected-area; browse; 2720 |
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Discusses snow leopard distribution in Great Gobi National Park |
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Centre for International Projects, GKNT |
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Moscow |
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SLN @ rana @ 91 |
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1081 |
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Author |
Dang, H. |
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Title |
The snow leopard and its prey |
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Journal Article |
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1967 |
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The Cheetal |
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11 |
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47-58 |
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India; predator; prey; hunting; status; distribution; kills; behavior; predation; habitat; browse; 2330 |
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Abstract ![sorted by Abstract field, descending order (down)](img/sort_desc.gif) |
Discusses distribution and habitat of snow leopard in India. Estimates population of 200-400 in entire Himalayan region. Reports seventeen occasions of observing snow leopards in the wild, one involving the killing of Himalayan thar. Discusses snow leopard hunting methods and food habits, and provides evidence of predation from examination of 17 snow leopard kills. |
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SLN @ rana @ 17 |
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231 |
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Author |
Kachel, S. M., Karimov, K., Wirsing, A. J. |
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Title |
Predator niche overlap and partitioning and potential interactions in the mountains of Central Asia |
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Journal Article |
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2022 |
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Journal of Mammalogy |
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XX(X) |
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1-11 |
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intraguild interactions, niche partitioning, snow leopard, spatial capture–recapture, wolf |
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Abstract ![sorted by Abstract field, descending order (down)](img/sort_desc.gif) |
Direct and indirect interactions among predators affect predator fitness, distribution, and overall community structure. Yet, outside of experimental settings, such interactions are difficult to observe and thus poorly understood. Patterns of niche overlap among predators reflect and shape community interactions and may therefore help elucidate the nature and intensity of intraguild interactions. To better understand the coexistence of two apex predators, snow leopards (Panthera uncia) and wolves (Canis lupus), we investigated their spatial, temporal, and dietary niche overlap in summer in the Pamir Mountains of Tajikistan. We estimated population- level space use via spatial capture–recapture models based on noninvasive genetics and camera traps, diel activity patterns based on camera trap detections, and diet composition from prey remains in carnivore scats, from which we estimated coefficients between 0 and 1 for overlap in space, time, and diet, respectively. Snow leopards and wolves displayed moderate spatial partitioning (0.26, 95% confidence interval [CI]: 0.17–37), but overlapping temporal (0.77, 95% CI: 0.64–0.90) and dietary (0.97, 95% CI: 0.80–0.99) niches. Both predators relied on seasonally abundant marmots (Marmota caudata) rather than wild ungulates, their typical primary prey, suggesting that despite patterns of overlap that were superficially conducive to exploitation competition and predator facilitation, prey were likely not a limiting factor. Therefore, prey-mediated interactions, if present, were unlikely to be a major structuring force in the ecosystem. By implication, carnivore conservation planning and monitoring in the mountains of Central Asia should more fully account for the seasonal importance of marmots in the ecosystem. |
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SLN @ rakhee @ |
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1680 |
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Author |
Pokrovski, V.S. |
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Title |
The Snow Leopard Large Predators |
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1976 |
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Soviet-Union; Russia; Ussr; behavior; ecology; captivity; zoo; zoos; distribution; conservation; browse; soviet union; soviet; union; 2590 |
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Abstract ![sorted by Abstract field, descending order (down)](img/sort_desc.gif) |
Detailed review of snow leopard distribution and abundance, behavior, ecology,captive population and conservation measures in the Soviet Union. Estimates a snow leopard population of 300 +/- 150. |
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Moscow |
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SLN @ rana @ 35 |
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778 |
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Author |
Naumov S.P. |
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Title |
The cats – Felidae |
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Miscellaneous |
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1950 |
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Abbreviated Journal |
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315 |
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Ussr; Felidae; taxonomy; distribution; snow leopard.; 7720; Russian |
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Abstract ![sorted by Abstract field, descending order (down)](img/sort_desc.gif) |
Description of Felidae family species (Tigris tigris, Unci uncia, Felis silvestris, Felis ocreata, Felis †udtilur…, L¢no l¢no, A¤tŒn¢o jub…tus) is given. Snow leopard inhabited in mountain ridges of Middle and Central Asia. |
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Full text available in RussianJournal Title: Zoology of vertebrates. |
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SLN @ rana @ 750 |
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717 |
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Naumov S.P. |
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The cats – Felidae. Mountain regions of USSR |
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Miscellaneous |
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1948 |
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59-61 |
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Ussr; Felidae; taxonomy; distribution; snow leopard.; 7740 |
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Abstract ![sorted by Abstract field, descending order (down)](img/sort_desc.gif) |
Description of Felidae family species (Tigris tigris, Leopardus (Pardus) pardus and Unci uncia) is given. In USSR snow leopard inhabited in mountain ridges of Middle Asia and Altai. |
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1950Journal Title: Biology of game animals and birds of USSR. |
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SLN @ rana @ 752 |
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719 |
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Author |
Naumov S.P. |
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The cats – Felidae |
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Miscellaneous |
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1973 |
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Abbreviated Journal |
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330 |
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Ussr; Felidae; taxonomy; distribution; snow leopard.; 7730; Russian |
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Abstract ![sorted by Abstract field, descending order (down)](img/sort_desc.gif) |
Description of Felidae family species (Tigris tigris, D…nthera d…rdus, Unci uncia, Felis silvestris, Felis ocreata, Felis †udtilur…, L¢no l¢no, A¤tŒn¢o jub…tus) is given. Snow leopard inhabited in mountain ridges of Middle and Central Asia. |
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1950Journal Title: Zoology of vertebrates. |
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SLN @ rana @ 751 |
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718 |
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