Size and body condition drive the energetic cost of a baleen whale foraging in shallow habitat.

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Auteurs principaux: Bird, Clara N, Pirotta, Enrico, New, Leslie, Cornelius, Jamie M, Sumich, James L, Colson, Kate M, Bierlich, K C, Hildebrand, Lisa, Fernández Ajó, Alejandro Apolo, Doron, Annie, Torres, Leigh G
Format: Artículo científico
Langue:en
Publié: PeerJ 2025
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author Bird, Clara N
Pirotta, Enrico
New, Leslie
Cornelius, Jamie M
Sumich, James L
Colson, Kate M
Bierlich, K C
Hildebrand, Lisa
Fernández Ajó, Alejandro Apolo
Doron, Annie
Torres, Leigh G
author_facet Bird, Clara N
Pirotta, Enrico
New, Leslie
Cornelius, Jamie M
Sumich, James L
Colson, Kate M
Bierlich, K C
Hildebrand, Lisa
Fernández Ajó, Alejandro Apolo
Doron, Annie
Torres, Leigh G
Bird, Clara N
Pirotta, Enrico
New, Leslie
Cornelius, Jamie M
Sumich, James L
Colson, Kate M
Bierlich, K C
Hildebrand, Lisa
Fernández Ajó, Alejandro Apolo
Doron, Annie
Torres, Leigh G
collection PubMed - marine biology
contents Size and body condition drive the energetic cost of a baleen whale foraging in shallow habitat. Bird, Clara N Pirotta, Enrico New, Leslie Cornelius, Jamie M Sumich, James L Colson, Kate M Bierlich, K C Hildebrand, Lisa Fernández Ajó, Alejandro Apolo Doron, Annie Torres, Leigh G Animals Energy Metabolism Diving Ecosystem Whales Oxygen Consumption Feeding Behavior Body Size Respiration Energy expenditure strongly influences an animal's foraging decisions and activity budgets. Diving animals especially need to be energetically efficient because they exercise while oxygen is limited. By estimating the energetics of behavior, we can better understand the cascading effects of individual responses to disturbance and environmental change. Pacific Coast Feeding Group (PCFG) gray whales use a variety of foraging tactics in shallow habitats (
format Artículo científico
id pubmed_41185693
institution PubMed
language en
publishDate 2025
publisher PeerJ
record_format pubmed
spellingShingle Size and body condition drive the energetic cost of a baleen whale foraging in shallow habitat.
Bird, Clara N
Pirotta, Enrico
New, Leslie
Cornelius, Jamie M
Sumich, James L
Colson, Kate M
Bierlich, K C
Hildebrand, Lisa
Fernández Ajó, Alejandro Apolo
Doron, Annie
Torres, Leigh G
Animals
Energy Metabolism
Diving
Ecosystem
Whales
Oxygen Consumption
Feeding Behavior
Body Size
Respiration
Size and body condition drive the energetic cost of a baleen whale foraging in shallow habitat. Bird, Clara N Pirotta, Enrico New, Leslie Cornelius, Jamie M Sumich, James L Colson, Kate M Bierlich, K C Hildebrand, Lisa Fernández Ajó, Alejandro Apolo Doron, Annie Torres, Leigh G Animals Energy Metabolism Diving Ecosystem Whales Oxygen Consumption Feeding Behavior Body Size Respiration Energy expenditure strongly influences an animal's foraging decisions and activity budgets. Diving animals especially need to be energetically efficient because they exercise while oxygen is limited. By estimating the energetics of behavior, we can better understand the cascading effects of individual responses to disturbance and environmental change. Pacific Coast Feeding Group (PCFG) gray whales use a variety of foraging tactics in shallow habitats (
title Size and body condition drive the energetic cost of a baleen whale foraging in shallow habitat.
topic Animals
Energy Metabolism
Diving
Ecosystem
Whales
Oxygen Consumption
Feeding Behavior
Body Size
Respiration
url https://pubmed.ncbi.nlm.nih.gov/41185693/