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Farhadinia, M. S., Maheshwari, A., Nawaz, M. A., Ambarli, H., Gritsina, M. A., Koshkin, M. A., Rosen, T., Hinsley, A., Macdonald, D. W. |
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Belt and Road Initiative may create new supplies for illegal wildlife trade in large carnivores |
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Miscellaneous |
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2019 |
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Nature Ecology & Evolution |
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SLN @ rakhee @ |
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1487 |
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Locke-Jones, J |
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Wildlife Conservation in the Digital Age |
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2022 |
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University of St Andrews |
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Our understanding of the state of the world’s wildlife is dependent upon data. Without an accurate survey of species populations, our efforts to improve their chances of survival and to limit our impact on their wellbeing will always be limited. Unfortunately, many endangered species live in areas inhospitable to us – and in any case, a human-led survey can only continue for so long before the surveyors need to rest. |
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SLN @ rakhee @ |
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1691 |
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Usgs; International Snow Leopard Trust |
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Snow Leopard Habitat Map |
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Map |
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1995 |
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map; habitat; 4860; snow; snow leopard; snow-leopard; leopard; range; Pakistan; resource; Division; trust; International; symposium; Jackson |
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ISLT and World Wide Fund for Nature - Pakistan |
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Pakistan |
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Snow leopard range map published in: Proceedings of the Eighth International Snow Leopard Symposium. Held in Islamabad, Pakistan 12-16 November 1995. Editors of proceedings: Rodney Jackson and Ashiq Ahmad. Map authors U.S.G.S. Biological Resources Division and Snow Leopard Trust. Page 9. |
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SLN @ rana @ 471 |
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979 |
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Vashetko, E.; Esipov A.; Bykova, E.; Kreuzberg, E. |
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Snow Leopard Bibliography. Central Asia (Abstracts) |
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2005 |
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analysis; asia; bibliography; central; Central Asia; conservation; ecology; International; International-Snow-Leopard-Trust; international snow leopard trust; Islt; leopard; project; region; Russian; snow; snow-leopard; snow leopard; species; trust; work |
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Bibliography of the Snow Leopard included publications on the studying various questions of ecology and conservation of the Snow Leopard in Central Asia (305) for the period 1873 to 2004. The most important works on this species in the region, as well as results of the analysis of timing of publications was described. |
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English version. Also available in Russian in the SLN bibliography. Project supported by International Snow Leopard Trust (ISLT), was carried out in 2004-2005. |
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SLN @ rana @ 1061 |
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983 |
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Anonymous |
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Toward a free-ranging recovery plan |
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1986 |
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International Snow Leopard Symposium, recovery plan, snow leopard |
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This draft is a first attempt to develop a Snow Leopard Recovery Plan, for consideration at the Fifth International Snow Leopard Symposium. It is intended as a working base for agencies responsible for snow leopard conservation, research and management. The plan, when thoroughly reviewed and revised, will provide more accurate estimates of snow leopard status and threats, and recommendations concerning actions necessary for the maintenance, enhancement and recovery of the snow leopard in its original habitat. |
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SLN @ rana @ |
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1133 |
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Singh, N.J. |
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Animal – Habitat relationships in high altitude rangelands |
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2008 |
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PhD Thesis |
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150 |
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high altitude, homogeneous, argali, habitat selection, resource selection function, ENFA, stratified random sampling, sexual segregation, SSAS, livestock, predation, resources |
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This study conducted in the high altitude rangelands of Indian Transhimalaya, deals with basic questions regarding the ecology of an endangered species, the wildsheep Tibetan argali (Ovis ammon hodgsoni) and applied issues related to its conservation and potential conflict with the local nomadic pastoralists. The basic questions on ecology are aimed at delineating the habitat and resource selection processes, identifying factors causing sexual segregation and efficient surveying and sampling. The applied aspect focuses on the changing face of pastoralism and the potential impacts of modernising livestock husbandry on argali.
Overall, the study provides a general framework towards the understanding of argali-habitat relationships at different spatio-temporal scales. The spatial determinant associated with altitude in the area, predicts argali habitat and resource selection in this relatively homogenous landscape. These determine the range of other topographic variables and forage characteristics selected by argali. The selection of feeding patches in the selected range of altitude and topography is mainly characterised by their greenness and the quality of plant groups. Adjusting to changing forage quality, argali display an opportunistic feeding strategy, selecting grasses in early spring and switching to forbs later in summer. Nevertheless, the habitat selection process did not appear to differ among the sexes to drive sexual segregation. There was, however, strong segregation among the sexes as well as between lactating and non lactating females. The reasons for segregation appeared to be predominantly social, but driven ultimately by predation and concomitantly by resources. The habitat selection information was used to design a stratified random sampling strategy that led to i) a significant reduction in survey effort in sampling these sparsely distributed species and ii) reduction in sampling bias.
The applied aspect of the study outlines and evaluates the dramatic changes in the nomadic pastoralism that have occurred in the past five decades in the study area. These have led to a loss of pastures (-25 to -33%) of the nomads, consequent readjustment in traditional patterns of pasture use, intensified grazing pressures (25 to 70%) and rangeland degradation in the area. Such changes may have serious consequences on the survival of local wildlife, as tested with a study of the effects on argali of livestock presence and resource exploitation. Hence, a successful conservation and recovery strategy should focus on: minimising the impacts of livestock on argali, identifying the factors affecting the persistence of the current populations, increasing local sub populations of this species to prevent extinction due to stochastic events, prevent loss of genetic diversity and excessive fragmentation and thus ensuring gene flow.
Ecological Niche Factor Analyses (ENFA), bias-reduced logistic regression and Fuzzy correspondence analyses (FCA) were used to answer habitat and resource selection questions. A sexual segregation and aggregation statistic (SSAS) was used to estimate the components of sexual segregation and test segregation. SSAS combined with canonical correspondence analyses (CCA) allowed the estimation of segregation based on habitat variables. Logistic regression models were formulated to estimate models on which the stratified random sampling strategy was based. The 9 Animal – Habitat relationships in high altitude rangelands overall study also included surveys, interviews and literature reviews to understand the nomads’ movement and pasture use patterns of their livestock. Kernel density estimations (KDE) were used to estimate extent of range overlaps between livestock and argali. |
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University of Tromsø |
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Norway |
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PhD Thesis |
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SLN @ rana @ |
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1306 |
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Pandey, M. |
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Status, habitat utilization, threats and conservation of musk deer (Moschus chrysogaster HODGSON 1839) in Lantang National Park, Central Nepal |
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2006 |
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“Status, habitat utilization, threats and Conservation of musk deer (Moschus chrysogaster Hodgson 1839) in Langtang National Park, Central Nepal” was carried out in Musk Deer Conservation Area of LNP.
The study was conducted spending more than 516 hours (16th February 2005 to 4th October 2005). The study applied the indirect method identifying 5 different blocks in the habitat for the status and habitat utilization of musk deer in LNP. It mainly deals with types of fecal deposits, distribution of those deposits in different topography and forests. The study also deals with other related evidences found in the study area.
Questionnaire survey provides the additional information regarding its threats and conservation. Forty-five different fecal deposits were found and 3 musk deer were sighted. Block B was found to be the appropriate habitat for musk deer. 68.8 percent of fecal deposits were recorded in Block B. Different types of fecal deposits found in Block B were very fresh and fresh (22.5%), old (38.7%) and very old (16.3%).
Thirty-three species of plants were recorded from the quadrates plotted in the study area. Among them Betula utilis was found the most dominant species . High percentage of fresh droppings were also recorded in Betula forest and maximum old deposits were recorded in mixed forest.
Animal trail was found preferred by musk deer. Forty percent of observed droppings were found on animal trail. Similarly, 8.88 percent of Relic sites were found in animal trail. High number of bedding sites were recorded in Betula and mixed
forest.
Questionnaire survey revealed that musk deer in Langtang National Park is in declining state. Seventy percent of the respondents agree about the poaching activity of musk deer in their area. Apart from this, tourists, local people and livestock are the major threats to musk deer in Langtang. High degree of habitat deterioration, livestock grazing, illegal hunting and predator such as Snow Leopard are the major threats in that area. Therefore, these issues have to be addressed for a long term survival of the endangered musk deer species in Langtang National Park. |
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Kathmandu, Nepal |
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Central Department of Zoology-Ecology Program, Tribhuvan University, Kathmandu, Nepal |
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1322 |
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Tiwari, D. |
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Status, habitat utilization and conservation of Himalayan Tahr Hemitragus jemlahicus (H. SMITH, 1826) in Lantang National Park, Central Nepal |
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2006 |
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This study was carried out in the Langtang National park which is situated in the Northern Part of Central Nepal. The research work on "Status, Habitat utilization and conservation of Himalayan Tahr in Langtang National Park was conducted during February to October of 2005. Altogether 468.55 hours and of 80 days with aimed to estimate the population status and Habitat utilization of Himalayan Tahr and to
recommend for appropriate management.
The study was carried out from Ghodatabela to Langsisa Kharka. The study area was divided into 5 survey blocks occupying a total of 25 sq. km. The fixed point count from ridge line vantage points were conducted for the Hamalayan Tahr count. Observed herds and individual were repeatedly counted and recorded. Local herders and key residents were interviewed. A total of 218 individuals of different age and sex Himalayan Tahr 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 adult male (25%). Survey revealed that 50 percent of Tahr herds were observed in 4200m – 4900m and least (12%) were in 3700-4000m. Animals were not located in 3850m – 4200m. Stratified random sampling was done to analyze the vegetation in their habitat and identified 47 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 to be vital as it is prime prey species of snow Leopard in Langtang National Park. |
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Kathmandu, Nepal |
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Central Department of Zoology, Ecology Program, Tribhuvan University, Kathmandu, Nepal |
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1323 |
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Adhikari, J.N. |
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Ecological Study of the Snow leopard Uncia uncia (Schreber, 1778) in Langtang National Park, Nepal |
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2004 |
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Nepal is a country of great natural beauty and of a rich cultural heritage. Nepal has always been a source of great attraction for her beautiful gifts mountains, landscapes, lakes, waterfalls, hillsides and green villages serrated in the form of an endless series of terraces. The entire northern border has silvery peaks of Himalayas and the country is the home of perpetual snow (Majupuria and Majupuria 1999) while southern flank is green mountains of Mahabharata with different size valleys and river duns. Even further south lays fragile lower mountains of Churiya and a little Bhavar and Tarai flat land adjoining to India.
Nepal, a country having peculiar diverse fauna and flora lies between China on the north and India on the east, west and south. It stands on latitude 26°22' to 30°27' N north and its longitude is between 80°4' to 88°12'E east. Its altitude varies from 60 – 220 m in the south rising to north up to world highest peak of Sagarmatha (Mt. Everest) 8848 m. Nepal covers of 141,577 sq km land mass with a mean breadth of 200 km provides an opportunity of diverse climate zones from subtropical to nival with sharp microclimatic condition due to its topography. Within this small area, the country has all possible landform features of the earth except the volcanic and coral islands and marine (Sharma 1999). The country experience difference in climate, wild flora and fauna as variation bestowed to physiographic condition.
Nepal lies at the transition between the Palearctic and Indo-Malayan biogeographical realms that contributed a large biological diversity in the country. More than 144 species of spiders, 5052 species of insects, 635 species of butterflies, 2,253 species of moths are on the record. The vertebrates fauna also in diverse form; 184 species of fishes (31 families and 11 orders); 43 species of amphibians (one salamander, four toads and 38 frogs Species); 100 species of reptiles (24 lizards, 4 turtle, two crocodiles and 60 snakes species); 861 species of birds (18 orders); 181 species of mammals (12 orders and 39 families) (BPP 1995 (h), Chaudhary 1998, Majupuria and Majupuria 1998, Shrestha 2003).
There are 16 protected areas in Nepal and among them 3 conservation areas and 5 National Parks lies on northern mountainous zone. Langtang National Park (LNP) is in the central Himalayan region of Nepal, 132 km north of the capital, Kathmandu, bordering, in the northeast, Tibet autonomous region of China. Langtang Lirung (7,245m) is the highest point in the park while lowest elevations drop to about 1,000m on the banks of the BhoteKoshi-Trisuli River. LNP is the second largest mountain National Park of Nepal, which covers 1710 km2 in three districts: Rasuwa, Nuwakot and Sindhupalchowk of Bagmati zone in Nepal. LNP recorded 46 species of mammals including those typical of the area, such as pika, Himalayan black bear, Himalayan Thar, leopard, ghoral, serow, snow leopard, clouded leopard, musk deer and three species of monkeys; Rhesus monkeys, hanuman langur and Assamese monkeys (Chalise 2003). Besides above, 345 species of Birds, 11 species of Herpetofauna, 30 species of fishes, 58 species of butterflies and 10 species of spiders are also recorded (BPP 1995, Khatiwada 2002). My study is focused on one of rarest and protected mountain species, the Snow Leopard. |
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Kathmandu, Nepal |
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Central Department of Zoology, Ecology Program, Tribhuvan University, Kathmandu, Nepal |
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Khatiwada, J. |
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The status of Snow Leopard (Uncia Uncia Schreber 1778) and its conflict perception in Langtang National Park. |
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2004 |
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Study Objectives The prime objective of the study was to collect basic ecological information on Snow Leopard and their prey species in Langtang National Park. The specific objectives of the study were :
1) To explore the status and distribution of Snow Leopard in the area.
2) To show the prey and predator relationship.
3) To find the extent and actual loss of livestock due to depredation by Snow Leopard. |
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Kathmandu, Nepal |
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M.Sc. Thesis, Tribhuvan University, Kathmandu, Nepal |
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