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Author |
Satimbekov R. |
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Title |
Nature reserves of Kazakhstan and protection of rare predatory animal species |
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Miscellaneous |
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1979 |
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64-65 |
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Kazakhstan; protected areas; snow leopard.; 8090; Russian |
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There are 20 snow leopards in the Aksu-Djabagly nature reserve, and three four families in the Alma-Ata nature reserve. Single snow leopards are known to be met in the Markakol nature reserve. |
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Full text available in RussianJournal Title: Ecologic fundamentals of protection and sustainable use of predatory mammals. |
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SLN @ rana @ 787 |
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847 |
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Schaller, G. |
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Title |
Tibet's remote Chang Tang: in a high and sacred realm |
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Journal Article |
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1993 |
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National Geog. |
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184 |
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2 |
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62-87 |
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Tibet; protected-area; park; parks; reserve; refuge; protected area; protected areas; area; areas; protected; browse; 3220 |
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SLN @ rana @ 213 |
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858 |
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Author |
Schaller, G.B.; Tserendeleg, J.; Amarsana, G. |
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Title |
Observations on snow leopards in Mongolia |
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Conference Article |
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1994 |
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33-42 |
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Mongolia; gobi; Altay; Altai; survey; surveys; habitat; scrapes; markings; feces; spray; distribution; status; park; parks; reserve; reserves; refuge; activity; conservation; home-range; protected-areas; movements; predator; prey; diet; livestock; herders; ibex; argali; hunting; poaching; trapping; killing; browse; home range; protected areas; protected; 2710 |
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Islt |
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Usa |
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J.Fox; D.Jizeng |
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Full Text at URLTitle, Monographic: Proceedings of the Seventh International Snow Leopard Symposium. International Snow Leopard TrustPlace of Meeting: ChinaDate of Copyright: 1994 |
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SLN @ rana @ 258 |
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870 |
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Sherpa, L.N.; Lama, W.B. |
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Hands around Mt. Everest |
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Miscellaneous |
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1997 |
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Tibet; China; protected-areas; parks; reserves; refuge; conservation; Transboundry; economics; tourism; Qomolangma; browse; protected area; protected areas; protected; area; areas; 3170 |
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Full Text at URL:Report on Transboundary Exchange Between Qomolangma Nature Preserve and Nepal's Mountain Protected Areas held in Shigatse, Tibet Autonomous Region of the People's Republic of China, September 21 to October 13, 1996 by Lhakpa Norbu Sherpa*, Transboundary Exchange Advisor, with assistance from Wendy Brewer Lama**, Ecotourism Specialist, The Mountain Institute Himalaya ProgramMarch 1997 |
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SLN @ rana @ 327 |
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883 |
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Author |
Strautman Ye.I.Bekenov A. |
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Title |
Rare and endangered vertebrate animas of Kazakhstan, and their protection |
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Miscellaneous |
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1978 |
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33-34 |
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Kazakhstan; Red Data book; conservation measures; extinction risk; endangered species; snow leopard; protected areas.; 8330; Russian |
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In Kazakhstan, there are 158 mammal species, 485 bird species, 52 reptile and 12 amphibian species, and about 150 fish species, of which 31 mammal species, 43 bird species, eight reptile, one amphibian and four fish species need protection. Snow leopard is referred to endangered species. Six nature reserves and 43 preserves have been established to protect rare and endangered animal and plant species in Kazakhstan. |
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Full text available in RussianJournal Title: Protection of flora and fauna in Uzbekistan. |
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Call Number |
SLN @ rana @ 811 |
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940 |
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Johansson, O., Rauset, G. R., Samelius, G., McCarthy, T., Andren, H., Tumursukh, L., Mishra, C. |
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Title |
Land sharing is essential for snow leopard conservation |
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Journal Article |
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2016 |
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Biological Conservation |
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203 |
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1-7 |
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Home range, LoCoH, Mongolia, Panthera uncial, Protected areas, Land sparing |
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Conserving large carnivores in an increasingly crowded planet raises difficult challenges. A recurring debate is whether large carnivores can be conserved in human used landscapes (land sharing) or whether they require specially designated areas (land sparing). Here we show that 40% of the 170 protected areas in the global range of the snow leopard (Panthera uncia) are smaller than the home range of a single adult male and only 4– 13% are large enough for a 90% probability of containing 15 or more adult females. We used data from 16 snow leopards equipped with GPS collars in the Tost Mountains of South Gobi, Mongolia, to calculate home range size and overlap using three different estimators: minimum convex polygons (MCP), kernel utility distributions (Kernel), and local convex hulls (LoCoH). Local convex hull home ranges were smaller and included lower proportions of unused habitats compared to home ranges based on minimum convex polygons and Kernels. Intra-sexual home range overlapwas low, especially for adult males, suggesting that snowleopards are territorial. Mean home range size based on the LoCoH estimates was 207 km2 ± 63 SD for adult males and 124 km2 ± 41 SD for adult females. Our estimates were 6–44 times larger than earlier estimates based on VHF technology when comparing similar estimators, i.e. MCP. Our study illustrates that protected areas alone will not be able to conserve predatorswith large home ranges and conservationists and managers should not restrict their efforts to land sparing. |
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SLN @ rakhee @ |
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1446 |
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Author |
Khanyari, M., Zhumabai uulu, K., Luecke, S., Mishra, C.,
Suryawanshi, K. |
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Title |
Understanding population baselines: status of mountain ungulate
populations in the Central Tien Shan Mountains, Kyrgyzstan |
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Journal Article |
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2020 |
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Mammalia |
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1-8 |
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conservation; human-use landscapes; hunting concession; mountain ungulates; population baselines; protected areas. |
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Abstract |
We assessed the density of argali (Ovis ammon) and ibex
(Capra sibirica) in Sarychat-Ertash Nature Reserve and its neighbouring
Koiluu valley. Sarychat is a protected area, while Koiluu is a human-use
landscape which is a partly licenced hunting concession for mountain
ungulates and has several livestock herders and their permanent
residential structures. Population monitoring of mountain ungulates can
help in setting measurable conservation targets such as appropriate
trophy hunting quotas and to assess habitat suitability for predators
like snow leopards (Panthera uncia). We employed the double-observer
method to survey 573 km2 of mountain ungulate habitat inside Sarychat
and 407 km2 inside Koiluu. The estimated densities of ibex and argali in
Sarychat were 2.26 (95% CI 1.47–3.52) individuals km-2 and 1.54 (95% CI
1.01–2.20) individuals km-2, respectively. Total ungulate density in
Sarychat was 3.80 (95% CI 2.47–5.72) individuals km-2. We did not record
argali in Koiluu, whereas the density of ibex was 0.75 (95% CI
0.50–1.27) individuals km-2. While strictly protected areas can achieve
high densities of mountain ungulates, multi-use areas can harbour
meaningful
though suppressed populations. Conservation of mountain ungulates and
their predators can be enhanced by maintaining Sarychat-like “pristine”
areas interspersed within a matrix of multi-use areas like Koiluu. |
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1610 |
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Author |
Sharkey, W., Milner-Gulland, E. J., Sinovas, P., Keane, A. |
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A framework for understanding the contributions of local residents to protected area law enforcement |
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Journal Article |
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2024 |
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Oryx |
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1-13 |
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Community engagement, framework, law enforcement, monitoring, participation, protected areas, rule-breaking |
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Terrestrial and marine protected areas have long been championed as an approach to biodiversity conservation. For protected areas to be effective, equitable and inclusive, the involvement of local residents in their management and governance is considered important. Globally, there are many approaches to involving local residents in protected area law enforcement. However, opportunities for comparing different approaches have been limited by the lack of a clear common framework for analysis. To support a more holistic understanding, we present a framework for analysing the contributions of local residents to protected area law enforcement. Informed by a review of the literature and discussions with conservation practitioners, the framework comprises five key dimensions: (1) the different points in the enforcement system at which local residents are involved, (2) the nature of local participation in decision-making, (3) the type of external support provided to local residents, (4) the different motivating forces for participation, and (5) the extent to which local participation is formalized. We apply the framework to three real-world case studies to demonstrate its use in analysing and comparing the characteristics of different approaches. We suggest this framework could be used to examine variation in local participation within the enforcement system, inform evaluation and frame constructive discussions between relevant stakeholders. With the global coverage of protected areas likely to increase, the framework provides a foundation for better understanding the contributions of local residents to protected area law enforcement. |
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1746 |
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