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Author |
Ulmer, F.A. |
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Title |
Voices of the Felidae |
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Journal Article |
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1966 |
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Stock |
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259-262 |
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snow leopard, captivity, Philadelphia Zoological Gardens |
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Curator of Mammals, Philadelphia Zoological Gardens |
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SLN @ rana @ |
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1255 |
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Author |
Underwood, R. |
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Title |
The snow leopard, and its association with the dawn of wildlife management in India |
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Book Chapter |
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2013 |
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1-10 |
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Snow Leopard,wildlife management,colonial forestry,forest and land management |
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As part of a project looking at the history of ‘colonial forestry’ I have been studying forest and land management in India during the period from about 1860 to 1920. The subject is of interest because the forest conservation policies and management practices developed in India at that time later became a template for early forest policies and practices in Australia (where I have worked nearly all of my life as a forester), New Zealand, South Africa and the United States of America.
An unexpected outcome of my research was to find that 19th and early 20th century Indian foresters were also deeply concerned about Indian wildlife, and that in their published writings on this issue can be discerned some of the earliest concepts of professional wildlife management.
The outcome was unexpected because a notable aspect of forestry in India in the 19th century was the widespread love of hunting wild animals, or shikar, amongst officers of the Indian Forest Service. Sometimes this was done in the line of duty, a forester being called out to dispatch a rogue elephant or a man-eating tiger. But hunting was also regarded by many (especially those who had transferred from the Army into the Forest Service) as a sport, a contest between man and beast. And despite his firepower, it was a contest in which 19th century man did not always come out on top. |
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SLN @ rakhee @ |
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1392 |
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Author |
Suraj Upadhaya |
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Title |
Junior Ranger Program: Initiatives for Biodiversity Conservation |
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Magazine Article |
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2012 |
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Himalayas Nepal |
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Nov 2011 - Feb 2012 |
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The didactic Junior Ranger Program, whci was unique not onl in dolpa District, but also in the whole Nepal, was developed im such a way that each student gets an overview about the environment and its importance's on our life. The curriculum makes each and every student clear about the pollution, population, and basic needs for life, natural resources, corrective measures, and rold for environment conservation. Among all, the most improtant and interesting topic was about Snow Leopard. Being a student from the home of Snow Leopard (Panthera Uncia), I always get fascinated by this charismatic species. |
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SLN @ rakhee @ |
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1375 |
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Author |
Valdez, R., Michel, S., Subbotin, A., Klich, D. |
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Title |
Status and population structure of a hunted population of Marco Polo Argali Ovis ammon polii (Cetartiodactyla, Bovidae) in Southeastern Tajikistan |
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Journal Article |
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Mammalia |
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80 |
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1 |
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49-57 |
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Pamirs; status; sustainable use; Tajikistan; trophy hunting. |
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Marco Polo sheep (Ovis ammon polii), listed as Near Threatened in the IUCN Red List, were surveyed using vehicles during three summers and three consecutive winters to determine the status and population structure of the subspecies in a hunted population in southeastern Pamirs, Tajikistan. A total of 8649, 8392, and 7663 sheep were observed in each winter survey with densities of 5.42,
4.91, and 4.49 argalis/km2, respectively. The differences in numbers observed in different years were probably due principally to differing dates of surveys among years. The high ratios of lamb for every 100 ewe (53, 38, and 49 during the winter surveys, and 60, 45, and 58 during the summer
surveys) and high percentages (45%–50%) of mature females during winter indicate that offspring recruitment is sufficient to maintain a stable population. The significant
increase in the abundance of Marco Polo sheep in the Tajikistan Pamirs compared with that of previous population surveys may probably be attributed to low numbers of domestic livestock during the winter, low human population density, unfenced and widespread wild sheep habitats,
and rigorous patrolling to limit poaching. The small number (45) of hunting permits has a minimal impact on the male sheep sector. Tajikistan now supports more argali than any other country |
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SLN @ rakhee @ |
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1438 |
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Author |
Van Bree, P.J.H. |
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Title |
Zum habitus neugeborener Schneeleoparden, Uncia uncia (Schreber, 1775) |
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Journal Article |
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Year |
1965 |
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Saugetierkundliche Mitteilungen |
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13 |
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162-163 |
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German |
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SLN @ rana @ |
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1153 |
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Author |
von Dungern, D.F. |
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Title |
Lulu, my snowleopard |
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Miscellaneous |
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1910 |
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snow leopard, captivity |
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Recollections by a German forest-ranger about his pet, a snowleopard. |
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SLN @ rana @ |
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1223 |
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Author |
Wahlberg, C. |
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Title |
A case of multiple ocular coloboma in a snow leopard |
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Book Chapter |
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Year |
1978 |
Publication |
International Pedigree Book of Snow Leopards |
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1 |
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108-112 |
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SLN @ rana @ |
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1176 |
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Author |
Wegge, P., Shrestha, R., Flagstad, O. |
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Title |
Snow leopard Panthera uncia predation on livestock and wild prey in a mountain valley in northern Nepal: implications for conservation management |
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Journal Article |
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2012 |
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Wildlife Biology |
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18 |
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10.2981/11-049 |
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131-141 |
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Keywords |
bharal, blue sheep, diet, genetic sampling, naur, Panthera uncia, predation, Pseudois nayaur, scat analysis, snow leopard, wildlife conflict |
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Abstract |
The globally endangered snow leopard Panthera uncia is sparsely distributed throughout the rugged mountains in Asia.
Its habit of preying on livestock poses a main challenge to management. In the remote Phu valley in northern Nepal, we
obtained reliable information on livestock losses and estimated predator abundance and diet composition from DNA
analysis and prey remains in scats. The annual diet consisted of 42%livestock. Among the wild prey, bharal (blue sheep/
naur) Pseudois nayaur was by far the most common species (92%). Two independent abundance estimates suggested that
there were six snow leopards in the valley during the course of our study. On average, each snow leopard killed about one
livestock individual and two bharal permonth. Predation loss of livestock estimated fromprey remains in scats was 3.9%,
which was in concordance with village records (4.0%). From a total count of bharal, the only large natural prey in the area
and occurring at a density of 8.4 animals/km2 or about half the density of livestock, snow leopards were estimated to
harvest 15.1% of the population annually. This predation rate approaches the natural, inherent recruitment rate of this
species; in Phu the proportion of kids was estimated at 18.4%. High livestock losses have created a hostile attitude against
the snow leopard and mitigation measures are needed. Among innovative management schemes now being implemented
throughout the species’ range, compensation and insurance programmes coupled with other incentive measures are
encouraged, rather than measures to reduce the snow leopard’s access to livestock. In areas like the Phu valley, where the
natural prey base consists mainly of one ungulate species that is already heavily preyed upon, the latter approach, if
implemented, will lead to increased predation on this prey, which over time may suppress numbers of both prey and
predator. |
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SLN @ rakhee @ |
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1386 |
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Author |
Weilenmann, P. |
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Title |
Some indications of weights of young snow leopards in Zurich Zoo |
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Conference Article |
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1980 |
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International Snow Leopard Conference Zurich |
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October 9-10, 1980 |
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SLN @ rana @ |
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1167 |
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Author |
Weiskopf, S. R., Kachel, S. M., McCarthy, K. P. |
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Title |
What Are Snow Leopards Really Eating? Identifying Bias in Food-Habit Studies |
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Journal Article |
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2016 |
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Wildlife Society Bulletin |
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1-8 |
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diet, DNA genotyping, feces, Panthera uncia, scat, snow leopard. Lack of |
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Abstract |
Declining prey populations are widely recognized as a primary threat to snow leopard (Panthera
uncia) populations throughout their range. Effective snow leopard conservation will depend upon reliable
knowledge of food habits. Unfortunately, past food-habit studies may be biased by inclusion of nontarget
species in fecal analysis, potentially misinforming managers about snow leopard prey requirements.
Differentiation between snow leopard and sympatric carnivore scat is now cost-effective and reliable using
genetics. We used fecal mitochondrial DNA sequencing to identify scat depositors and assessment bias in
snow leopard food-habit studies. We compared presumed, via field identification, and genetically confirmed
snow leopard scats collected during 2005 and 2012 from 4 sites in Central Asia, using standard forensic
microscopy to identify prey species. Field identification success varied across study sites, ranging from 21% to
64% genetically confirmed snow leopard scats. Our results confirm the importance of large ungulate prey for
snow leopards. Studies that fail to account for potentially commonplace misidentification of snow leopard
scat may mistakenly include a large percentage of scats originating from other carnivores and report
inaccurate dietary assessments. Relying on field identification of scats led to overestimation of percent
occurrence, biomass, and number of small mammals consumed, but underestimated values of these measures for large ungulates in snow leopard diet. This clarification suggests that the conservation value of secondary prey, such as marmots (Marmota spp.) and other small mammals, may be overstated in the literature; stable snow leopard populations are perhaps more reliant upon large ungulate prey than previously understood. |
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SLN @ rakhee @ |
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1445 |
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