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Data from: Behavioural thermoregulation via microhabitat selection of winter sleeping areas in an endangered primate: Implications
负责人:
Campbell, Liz
关键词:
Barbary macaque conservation behaviour Bayesian modelling logging thermal ecology Atlas cedar microhabitat selection temperate primate
DOI:
doi:10.5061/dryad.sb54c59
摘要:
and potential impacts of anthropogenic habitat modification can aid species conservation through development of targeted habitat management plans. Wild, endanger
Data from: Temporal stability in a male African elephant social network
负责人:
Mumby, Hannah
关键词:
conservation savanna elephant male-male association social behaviour age age differences
DOI:
doi:10.5061/dryad.1j43g7r
摘要:
Social animals live in complex and variable socio-ecological environments where individuals adapt their behaviour to local conditions. Recently, ther
Data from: Task-dependent workload adjustment of female breeders in a cooperatively breeding fish
负责人:
关键词:
load lightening;cichlid;Additive Effects;Neolamprologus obscurus;brood care;group living
DOI:
doi:10.5061/dryad.22tg2
摘要:
behavioral observations with helper removal experiments in a wild population, we found that female territory defense and offspring care significantly decrease
Data from: New determination of prey and parasite species for Northern Indian Ocean blue whales
负责人:
关键词:
Anthropocene;shrimp;Sri Lanka;Euphausiidae;Balaenoptera musculus);Sergestid;Faeces;blue whales;Acanthocephala;DNA metabarcoding;feeding;Northern Indian Ocean;behaviour;krill
DOI:
doi:10.5061/dryad.qt352sg
摘要:
an archetype for conservation needs of megafauna around the world. We studied feeding behaviour of blue whales using dietary DNA metabarcoding of faecal samples
Data from: Use of alpha, beta, and gamma diversity measures to characterize seed dispersal by animals
负责人:
关键词:
species diversity;Genetics: population;2006;Dispersal;Foraging: ecology;Foraging: behavior;conservation genetics;Quercus agrifolia
DOI:
doi:10.5061/dryad.40kq7
摘要:
of disperser behavior on seed dispersal. We begin by extending our previous diversity structure approach, which partitioned seed source diversity within and amo
Data from: Use of alpha, beta, and gamma diversity measures to characterize seed dispersal by animals
负责人:
Scofield, Douglas G.
关键词:
Conservation genetics Dispersal Foraging: behavior Foraging: ecology Genetics: population Species diversity
DOI:
doi:10.5061/dryad.40kq7.1
摘要:
of disperser behavior on seed dispersal. We begin by extending our previous diversity structure approach, which partitioned seed source diversity within and amo
Data from: Brain size and the risk of getting shot
负责人:
M?ller, Anders
关键词:
Behavior conservation ecology evolution neuroscience
DOI:
doi:10.5061/dryad.rp4d6
摘要:
that hunted individuals differing from survivors by having better ability to distinguish between dangerous humans and other human beings would
Data from: Evolutionary history inferred from the de novo assembly of a non-model organism, the blue-eyed black lemur
负责人:
关键词:
conservation genetics;molecular evolution;Eulemur macaco;Mammals;Eulemur flavifrons;Ecological Genetics;Population Genetics - Empirical;Adaptation
DOI:
doi:10.5061/dryad.rn745
摘要:
ng population and conservation genetic studies. One critically endangered lemur is the blue-eyed black lemur Eulemur flavifrons. This species is fixed for blue
Data from: Trading heat and hops for water: dehydration effects on locomotor performance, thermal limits, and thermoregulatory behavior
负责人:
关键词:
DOI:
doi:10.5061/dryad.d5r24
摘要:
balance and body temperature regulation. The way in which such compromises are accommodated, under a range of temperatures and dehydration levels, impacts importantly the behavior
Data from: State-dependent behavior alters endocrine-energy relationship: implications for conservation and management
负责人:
Jesmer, Brett
关键词:
conservation physiology endocrinology energy intake energy reserves glucocorticoids (GC) large herbivore moose nutrition state-dependent foraging behavior stress
DOI:
doi:10.5061/dryad.5tj57
摘要:
energy intake in accordance with their energy reserves, a behavior known as state-dependent foraging. Further, links between life-history strategies and metabolic

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