Buoyancy and maximal diving depth in penguins: do they control inhaling air volume?
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Buoyancy under control: underwater locomotor performance in a deep diving seabird suggests respiratory strategies for reducing foraging effort.The Use of Acceleration to Code for Animal Behaviours; A Case Study in Free-Ranging Eurasian Beavers Castor fiberBody density and diving gas volume of the northern bottlenose whale (Hyperoodon ampullatus).The use of an unsupervised learning approach for characterizing latent behaviors in accelerometer data.Climate-driven sympatry may not lead to foraging competition between congeneric top-predators.What triggers the aerobic dive limit? Patterns of muscle oxygen depletion during dives of emperor penguinsBehaviour and locomotor activity of a migratory catostomid during fishway passageUnexpected Positive Buoyancy in Deep Sea Sharks, Hexanchus griseus, and a Echinorhinus cookei.Lung collapse in the diving sea lion: hold the nitrogen and save the oxygen.Thermal and digestive constraints to foraging behaviour in marine mammalsThermal substitution and aerobic efficiency: measuring and predicting effects of heat balance on endotherm diving energetics.Neutral buoyancy is optimal to minimize the cost of transport in horizontally swimming seals.Asymmetry hidden in birds' tracks reveals wind, heading, and orientation ability over the ocean.Muscle energy stores and stroke rates of emperor penguins: implications for muscle metabolism and dive performanceO2 store management in diving emperor penguins.Testing optimal foraging theory in a penguin-krill system.Pushed for time or saving on fuel: fine-scale energy budgets shed light on currencies in a diving bird.Stroke and glide of wing-propelled divers: deep diving seabirds adjust surge frequency to buoyancy change with depth.Stroke frequency, but not swimming speed, is related to body size in free-ranging seabirds, pinnipeds and cetaceans.Long-term effects of flipper bands on penguins.Scaling of swim speed and stroke frequency in geometrically similar penguins: they swim optimally to minimize cost of transport.Deadly diving? Physiological and behavioural management of decompression stress in diving mammals.Ascent exhalations of Antarctic fur seals: a behavioural adaptation for breath-hold diving?High definition video loggers provide new insights into behaviour, physiology, and the oceanic habitat of a marine predator, the yellow-eyed penguin
P2860
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P2860
Buoyancy and maximal diving depth in penguins: do they control inhaling air volume?
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2002 nî lūn-bûn
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2002 թուականի Մայիսին հրատարակուած գիտական յօդուած
@hyw
2002 թվականի մայիսին հրատարակված գիտական հոդված
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2002年の論文
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2002年論文
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2002年論文
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2002年論文
@zh-hk
2002年論文
@zh-mo
2002年論文
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2002年论文
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Buoyancy and maximal diving depth in penguins: do they control inhaling air volume?
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Buoyancy and maximal diving depth in penguins: do they control inhaling air volume?
@en
Buoyancy and maximal diving depth in penguins: do they control inhaling air volume?
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Buoyancy and maximal diving depth in penguins: do they control inhaling air volume?
@ast
Buoyancy and maximal diving depth in penguins: do they control inhaling air volume?
@en
Buoyancy and maximal diving depth in penguins: do they control inhaling air volume?
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Buoyancy and maximal diving depth in penguins: do they control inhaling air volume?
@ast
Buoyancy and maximal diving depth in penguins: do they control inhaling air volume?
@en
Buoyancy and maximal diving depth in penguins: do they control inhaling air volume?
@nl
P2093
P1476
Buoyancy and maximal diving depth in penguins: do they control inhaling air volume?
@en
P2093
J B Charrassin
Katsufumi Sato
Y Handrich
Y Watanuki
P304
P577
2002-05-01T00:00:00Z