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Data from: Hummingbirds budget energy flexibly in response to changing resources
负责人:
关键词:
activity cost;BMR;individual energy allocation;static energy budget;hummingbird;Cynanthus latirostris;field energetics;Thermoregulation;Holocene;torpor
DOI:
doi:10.5061/dryad.r18r8p1
摘要:
%). Activity costs were higher at the hotter, homogeneous site and during the early-wet season at both sites. 6. Increased daily energy expenditure was rela
Data from: Accelerometry predicts daily energy expenditure in a bird with high activity levels
负责人:
关键词:
DOI:
doi:10.5061/dryad.40gk7
摘要:
thick-billed murres (Uria lomvia) from miniature accelerometers with measurements of daily energy expenditure over 24 h using doubly labelled water. Across three differ
Data from: Resting and daily energy expenditures during reproduction are adjusted in opposite directions in free-living birds
负责人:
关键词:
daily energy expenditure BMR body temperature doubly-labeled water endothermy field metabolic rate hypothermia resting metabolic rate
DOI:
doi:10.5061/dryad.t9q56
摘要:
1. Reproduction is energetically expensive, and daily energy expenditure (DEE) often peaks during the period of rearing young. The “potentiation
Data from: Short-term, but not long-term, increased daytime workload leads to decreased night-time energetics in a free-living song bird
负责人:
Visser, Marcel E.
关键词:
Pied flycatcher Increased-intake Hypothesis Compensation Hypothesis Basal Metabolic Rate Daily Energy Expenditure Feeding Frequency
DOI:
doi:10.5061/dryad.pp77bs0
摘要:
reduction of BMR (evidence for the compensation hypothesis). Birds thus resort to short-term strategies to increase energy expenditure, which could explai
Data from: Nocturnal torpor by superb fairy-wrens: a key mechanism for reducing winter daily energy expenditure
负责人:
关键词:
passerine;thermal physiology;telemetry;Malurus cyaneus;Thermoregulation;energetics;torpor
DOI:
doi:10.5061/dryad.5gr7275
摘要:
Many passerine birds are small and require a high mass-specific rate of resting energy expenditure, especially in the cold. The energetics
Data from: The secret life of ground squirrels: accelerometry reveals sex-dependent plasticity in above-ground activity
负责人:
关键词:
Urocitellus Parryii;Activity Logger;Daily Energy Expenditure;accelerometer;Arctic Ground Squirrel
DOI:
doi:10.5061/dryad.2dv6n
摘要:
The sexes differ in how and when they allocate energy towards reproduction, but how this influences phenotypic plasticity in daily activity patter
Data from: Energy expenditure of adult green turtles (Chelonia mydas) at their foraging grounds and during simulated oceanic migration
负责人:
Enstipp, Manfred
关键词:
energetics accelerometry technique diving foraging marine turtles metabolic rate migration oxygen consumption
DOI:
doi:10.5061/dryad.67g5d
摘要:
esting at greater depth on the inner side of the reef slope at night. Estimated oxygen consumption rates (sinline image) and daily energy expenditures (DEE
Data from: Oxidative damage increases with reproductive energy expenditure and is reduced by food-supplementation
负责人:
关键词:
Daily Energy Expenditure;life-history theory;antioxidant protection;food-supplementation;energetics;doubly-labeled water;Tamiasciurus hudsonicus
DOI:
doi:10.5061/dryad.78b2h
摘要:
. Moreover, plasma protein oxidative damage was also elevated in squirrels that expended the most energy and had the lowest antioxida
Data from: Energetic fitness: field metabolic rates assessed via 3D accelerometry complement conventional fitness metrics
负责人:
Gremillet, David
关键词:
Animal energetics Animal personalities Daily energy expenditure Pace-of-life syndrome Phenotypic plasticity
DOI:
doi:10.5061/dryad.n802d
摘要:
ween energy expenditure and fitness have been postulated for nearly a century. However, testing this premise among wild animals is constrained by difficulties in measuring
Data from: Cyclic bouts of extreme bradycardia counteract the highmetabolism of frugivorous bats
负责人:
Teague O'Mara
关键词:
Energetics Flight Heart rate Torpor Ecological physiology
DOI:
doi:10.5061/dryad.n821p
摘要:
. Miniaturized heart rate telemetry shows that they use a novel, cyclic, bradycardic state that reduces daily energetic expenditure by 10% and counter

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