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Large ungulates in tropical forests are among the most threatened
taxa of mammals. Excessive hunting, degradation of and
encroachments on their natural habitats by humans have contributed
to drastic reductions in wild ungulate populations in recent
decades. As such, reliable assessments of ungulate-habitat
relationships and the spatial dynamics of their populations are
urgently needed to provide a scientific basis for conservation
efforts. However, such rigorous assessments are methodologically
complex and logistically difficult, and consequently many commonly
used ungulate population survey methods do not address key
problems. As a result of such deficiencies, key parameters related
to population distribution, abundance, habitat ecology and
management of tropical forest ungulates remain poorly understood.
This book addresses this critical knowledge gap by examining how
population abundance patterns in five threatened species of large
ungulates vary across space in the tropical forests of the
Nagarahole-Bandipur reserves in southwestern India. It also
explains the development and application of an innovative
methodology - spatially explicit line transect sampling - based on
an advanced hierarchical modelling under the Bayesian inferential
framework, which overcomes common methodological deficiencies in
current ungulate surveys. The methods and results presented provide
valuable reference material for researchers and professionals
involved in studying and managing wild ungulate populations around
the globe.
Remote photography and infrared sensors are widely used in the
sampling of wildlife populations worldwide, especially for cryptic
or elusive species. Guiding the practitioner through the entire
process of using camera traps, this book is the first to compile
state-of-the-art sampling techniques for the purpose of conducting
high-quality science or effective management. Chapters on the
evaluation of equipment, field sampling designs, and data analysis
methods provide a coherent framework for making inferences about
the abundance, species richness, and occupancy of sampled animals.
The volume introduces new models that will revolutionize use of
camera data to estimate population density, such as the newly
developed spatial capture recapture models. It also includes richly
detailed case studies of camera trap work on some of the world s
most charismatic, elusive, and endangered wildlife species.
Indispensible to wildlife conservationists, ecologists, biologists,
and conservation agencies around the world, the text provides a
thorough review of the subject as well as a forecast for the use of
remote photography in natural resource conservation over the next
few decades."
Large ungulates in tropical forests are among the most threatened
taxa of mammals. Excessive hunting, degradation of and
encroachments on their natural habitats by humans have contributed
to drastic reductions in wild ungulate populations in recent
decades. As such, reliable assessments of ungulate-habitat
relationships and the spatial dynamics of their populations are
urgently needed to provide a scientific basis for conservation
efforts. However, such rigorous assessments are methodologically
complex and logistically difficult, and consequently many commonly
used ungulate population survey methods do not address key
problems. As a result of such deficiencies, key parameters related
to population distribution, abundance, habitat ecology and
management of tropical forest ungulates remain poorly understood.
This book addresses this critical knowledge gap by examining how
population abundance patterns in five threatened species of large
ungulates vary across space in the tropical forests of the
Nagarahole-Bandipur reserves in southwestern India. It also
explains the development and application of an innovative
methodology - spatially explicit line transect sampling - based on
an advanced hierarchical modelling under the Bayesian inferential
framework, which overcomes common methodological deficiencies in
current ungulate surveys. The methods and results presented provide
valuable reference material for researchers and professionals
involved in studying and managing wild ungulate populations around
the globe.
This book demonstrates how varying levels of human disturbance
manifested through different management regimes influence
composition, richness, diversity and abundance of key mammal, bird
and plant species, even within ecologically similar habitats. Based
on our results, we show the critical importance of the 'wildlife
preservation' approach for effective biodiversity conservation. The
study also provides examples of a practical application of rigorous
methods of quantitative sampling of different plant and animal taxa
as well as human influences, thus serving as a useful manual for
protected area managers. Protected areas of various kinds have been
established in India with the goal of arresting decline in, and to
provide for, recovery of biodiversity and ecosystem services. A
model that targets 'wildlife preservation' under state ownership is
practiced across the country. However, forests in India are under
intensive human pressure and varying levels of protection;
therefore, protected areas may also experience open-access resource
use, a model that is being aggressively advocated as a viable
alternative to 'preservationism'. We have evaluated the
conservation efficacy of alternative forest management models by
quantifying levels of biodiversity under varied levels of access,
resource extraction and degree of state-sponsored protection in the
Nagarahole forest landscape of southwestern India.
Remote photography and infrared sensors are widely used in the
sampling of wildlife populations worldwide, especially for cryptic
or elusive species. Guiding the practitioner through the entire
process of using camera traps, this book is the first to compile
state-of-the-art sampling techniques for the purpose of conducting
high-quality science or effective management. Chapters on the
evaluation of equipment, field sampling designs, and data analysis
methods provide a coherent framework for making inferences about
the abundance, species richness, and occupancy of sampled animals.
The volume introduces new models that will revolutionize use of
camera data to estimate population density, such as the newly
developed spatial capture-recapture models. It also includes richly
detailed case studies of camera trap work on some of the world's
most charismatic, elusive, and endangered wildlife species.
Indispensible to wildlife conservationists, ecologists, biologists,
and conservation agencies around the world, the text provides a
thorough review of the subject as well as a forecast for the use of
remote photography in natural resource conservation over the next
few decades.
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Growing Up Karanth (Paperback)
K. Ullas Karanth, Malavika Kapur, Kshama Rau
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R488
R421
Discovery Miles 4 210
Save R67 (14%)
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