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Author |
Gronberg, E. |
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Title |
Movement patterns of snow leopard (Panthera uncia) around kills based on GPS location clusters |
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2011 |
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snow leopard, Panthera, Mongolia, Snow Leopard Trust, predator, prey, kill, behavior |
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Research concerning movement patterns of wild animals has been advancing since GPS technology arrived. But studying the snow leopard (Panthera uncia) is still difficult because of the harsh territory it inhabits in Central Asia. This study took place in south Gobi, Mongolia, and aimed to estimate the time spent at kills and the maximum distance away from kills between visits. Snow leopards were monitored with GPS collars that took a location every five or seven hours. Potential kill sites were established by identifying clusters of GPS-locations in ArcGIS and visited in the field for confirmation. ArcGIS was used to calculate the distance between cluster and GPS-locations. I used two buffer zones (100 m and 500 m radius) to define the time snow leopards spent at kills. It was found that snow leopard age and prey category affected time spent at kills and also that snow leopard sex together with prey category affected the maximum distance moved away from kills between visits. Season had no significant effect on either time at kills or distance moved away from kills between visits. Snow leopards spent on average 3.2 days at their kills in the 100 m buffer zone and 3.5 days at their kills in the 500 m buffer zone. Subadults stayed longer at kills than adults and animals of both age categories spent longer time on larger prey. The mean maximum distance moved away from kills between visits was 179 m in the 100 m buffer zone and 252 m in the 500 m buffer zone. Female snow leopards moved further away from kills between visits than male snow leopards. Both the number of days spent on kills and maximum distance moved away from kills between visits increased when kills consisted of more than one animal. This study has provided some basic information on snow leopard behaviors around their kills but also highlights the need to monitor more snow leopards before more solid conclusions can be drawn as this study was based on based on a relatively small sample. |
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Swedish University of Agricultural Sciences, Faculty of Natural Resources and Agricultural Sciences, Department of Ecology, Grimsö Wildlife Research Station |
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SLN @ rana @ |
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1301 |
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Author |
Pandey, M. |
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Title |
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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1-89 |
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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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Master's thesis |
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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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Author |
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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1-77 |
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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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Master's thesis |
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Kathmandu, Nepal |
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Central Department of Zoology, Ecology Program, Tribhuvan University, Kathmandu, Nepal |
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SLN @ rana @ |
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1323 |
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Author |
Adhikari, J.N. |
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Title |
Ecological Study of the Snow leopard Uncia uncia (Schreber, 1778) in Langtang National Park, Nepal |
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2004 |
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1-53 |
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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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Master's thesis |
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Kathmandu, Nepal |
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Central Department of Zoology, Ecology Program, Tribhuvan University, Kathmandu, Nepal |
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1324 |
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Author |
Khatiwada, J. |
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Title |
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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1-69 |
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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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Master's thesis |
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Kathmandu, Nepal |
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M.Sc. Thesis, Tribhuvan University, Kathmandu, Nepal |
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1326 |
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Author |
Hameed, S. |
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Population status of the snow leopard and its conflict with local people in laspur valley, Chitral, Pakistan |
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2010 |
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1-77 |
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The present study was designed to determine the status of snow leopard in Laspur valley, Chitral (Khyber Pakhtunkhawa) by using multiple census methods. |
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Master's thesis |
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Pakistan |
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M.Phil Thesis, Pir Mehr Ali Shah (PMAS) – Arid Agriculture University |
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yes |
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1327 |
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Ashraf, N. |
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Title |
Competition For Food Between Markhor And Domestic Goat In Chitral, Pakistan |
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2010 |
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The present study was, therefore, designed to collect data on feeding aspects of Markhor and domestic goat in Chitral area, in order to examine the extent of resource competition between two species. The objectives of study were;
To analyze the food composition of Markhor and domestic goat.
To determine the degree of competition between Markhor and domestic goat in terms of forage consumption.
To provide recommendation for managing Markhor habitat and reducing competition with domestic livestock. |
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Master's thesis |
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Pakistan |
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M.Phil Thesis, Pir Mehr Ali Shah (PMAS) – Arid Agriculture University, Rawalpindi |
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1328 |
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Author |
Khatoon, R. |
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Title |
Snow leopard (uncia uncia) diet selection in the Chitral area |
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2010 |
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1-90 |
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The present study will also show the dependence of snow leopard on wild prey versus domestic livestock as a food. This study will also help to estimate the highest livestock loss tends to occur in the areas due to which human and snow leopard conflict arises. As food selection varies according to the environment and availability of prey species therefore a diet study in local context would help to improve understanding of feeding ecology, and also provide scientific basis for effective conservation measures.
The objectives of the present study are
To determine the food preference of snow leopard in wild
To determine seasonal variation in selection of food by snow leopard. |
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Master's thesis |
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Pakistan |
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M.Phil thesis, Pir Mehr Ali Shah (PMAS) – Arid Agriculture University, Rawalpindi |
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1329 |
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Author |
Williams, P. A. |
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Title |
A GIS ASSESSMENT OF SNOW LEOPARD POTENTIAL RANGE AND PROTECTED AREAS THROUGHOUT INNER ASIA; AND THE DEVELOPMENT OF AN INTERNET MAPPING SERVICE FOR SNOW LEOPARD PROTECTION |
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2006 |
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101 |
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Snow leopard distribution knowledge is a critical conservation need. During the 2003 Snow Leopard Symposium, a pressing demand for a comprehensive collection of observation data became apparent. Expanding the knowledge of population distribution will help identify areas for conservation and add validity to the potential range map developed by Hunter and Jackson (1997). An equally strong need is an analysis of the extent of protected-area coverage of snow leopard habitat. Another crucial requirement is accurate representation and immediate availability of data to researchers throughout the range.
This project was developed in cooperation with the International Snow Leopard Trust, the Snow Leopard Conservancy, and International Center of Applied Ecology. It is also supported by the Snow Leopard Network, an affiliation of individuals working together to establish effective conservation of the snow leopard throughout Inner Asia. The specific goals of this project are to collect and graphically depict existent knowledge of snow leopard distribution and identify areas lacking data; evaluate the potential range map; assess protected areas to see if snow leopards occur indiscriminately; and produce an internet geographical database and interactive mapping service for research.
This thesis validates the potential range map created by Jackson and Hunter (1997). The majority of sightings (88%) fall within the modeled potential range. This suggests that the map is accurate in representing habitat that supports snow leopards. The thesis also highlights varying degrees of support for protected areas. Most of the potential range lies outside of protected areas. Consequently, most countries contain less than 47 percent of their sightings within protected area boundaries.
This thesis organized and analyzed existing snow leopard data in a geodatabase to evaluate the potential range map and effectiveness of protected areas throughout the range. The geodatabase and internet mapping service provides a standardized method of data exchange and communication among researchers. This is a small step forward in the conservation of the snow leopard, but creates a necessary foundation for future collaborative data exchange projects to follow. The technologies and methodologies used here should be expanded to meet the individual needs of projects. |
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University of Montana |
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1345 |
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Lovari, S., Boesi, R., Minder, I., Mucci, N., Randi, E., Dematteis, A., and Ale, S. B. |
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Title |
Restoring a keystone predator may endanger a prey species in a human-altered ecosystem: the return of the snow leopard to Sagarmatha National Park |
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2009 |
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Animal Conservation |
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12 |
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559-570 |
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conservation, food habits, genetics, Hemitragus jemlahicus, Himalayan tahr, management, microsatellite, predation, presence, scat, scat analysis, snow leopard, Uncia uncia |
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Twenty-five years ago, the snow leopard Uncia uncia, an endangered large cat, was eliminated from what is now Sagarmatha National Park (SNP). Heavy hunting pressure depleted that area of most medium-large mammals, before it became a park. After three decades of protection, the cessation of hunting and the recovery of wild ungulate populations, snow leopards have recently returned (four individuals). We have documented the effects of the return of the snow leopard on the population of its main wild prey, the Himalayan tahr Hemitragus jemlahicus, a 'near-threatened' caprin. Signs of snow leopard presence were recorded and scats were collected along a fixed trail (130 km) to assess the presence and food habits of the snow leopard in the Park, from 2004 to 2006. Himalayan tahr, the staple of the diet, had a relative occurrence of 48% in summer and 37% in autumn, compared with the next most frequent prey, musk deer Moschus chrysogaster (summer: 20%; autumn: 15%) and cattle (summer: 15%; autumn: 27%). In early summer, the birth rate of tahr (young-to-female ratio: 0.8-0.9) was high. The decrease of this ratio to 0.1-0.2 in autumn implied that summer predation concentrated on young tahr, eventually altering the population by removing the kid cohort. Small populations of wild Caprinae, for example the Himalayan tahr population in SNP, are sensitive to stochastic predation events and may be led to almost local extinction. If predation on livestock keeps growing, together with the decrease of Himalayan tahr, retaliatory killing of snow leopards by local people may be expected, and the snow leopard could again be at risk of local extinction. Restoration of biodiversity through the return of a large predator has to be monitored carefully, especially in areas affected by humans, where the lack of important environmental components, for example key prey species, may make the return of a predator a challenging event. |
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1122 |
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