Movement and seasonal energetics mediate vulnerability to disturbance in marine mammal populations
In marine environments noise from human activities is increasing dramatically, causing animals to alter their behavior and forage less efficiently. These alterations incur energetic costs that can result in reproductive failure, death, and may ultimately influence population viability; yet the link...
Published in: | The American Naturalist |
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Format: | Article in Journal/Newspaper |
Language: | English |
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2021
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Online Access: | https://pure.au.dk/portal/da/publications/movement-and-seasonal-energetics-mediate-vulnerability-to-disturbance-in-marine-mammal-populations(f8e28fcb-9332-4ecf-b379-02d618c17a09).html https://doi.org/10.1086/712798 https://pure.au.dk/ws/files/273779448/Gallagheretal2021.pdf http://www.scopus.com/inward/record.url?scp=85098988662&partnerID=8YFLogxK |
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ftuniaarhuspubl:oai:pure.atira.dk:publications/f8e28fcb-9332-4ecf-b379-02d618c17a09 2023-12-31T10:22:01+01:00 Movement and seasonal energetics mediate vulnerability to disturbance in marine mammal populations Gallagher, Cara Alyse Grimm, Volker Kyhn, Line Anker Kinze, Carl Christian Nabe-Nielsen, Jacob 2021-03 application/pdf https://pure.au.dk/portal/da/publications/movement-and-seasonal-energetics-mediate-vulnerability-to-disturbance-in-marine-mammal-populations(f8e28fcb-9332-4ecf-b379-02d618c17a09).html https://doi.org/10.1086/712798 https://pure.au.dk/ws/files/273779448/Gallagheretal2021.pdf http://www.scopus.com/inward/record.url?scp=85098988662&partnerID=8YFLogxK eng eng https://pure.au.dk/portal/da/publications/movement-and-seasonal-energetics-mediate-vulnerability-to-disturbance-in-marine-mammal-populations(f8e28fcb-9332-4ecf-b379-02d618c17a09).html info:eu-repo/semantics/openAccess Gallagher , C A , Grimm , V , Kyhn , L A , Kinze , C C & Nabe-Nielsen , J 2021 , ' Movement and seasonal energetics mediate vulnerability to disturbance in marine mammal populations ' , American Naturalist , vol. 197 , no. 3 , pp. 296-311 . https://doi.org/10.1086/712798 agent-based model energy budget harbor porpoises marine mammals anthropogenic disturbances bioenergetics article 2021 ftuniaarhuspubl https://doi.org/10.1086/712798 2023-12-07T00:04:19Z In marine environments noise from human activities is increasing dramatically, causing animals to alter their behavior and forage less efficiently. These alterations incur energetic costs that can result in reproductive failure, death, and may ultimately influence population viability; yet the link between population dynamics and individual energetics is poorly understood. We present an energy budget model for simulating effects of acoustic disturbance on populations. It accounts for environmental variability and individual state, while incorporating realistic animal movements. Using harbor porpoises (Phocoena phocoena) as a case study, we evaluated population consequences of disturbance from seismic surveys and investigated underlying drivers of vulnerability. The framework reproduced empirical estimates of population structure and seasonal variations in energetics. The largest effects predicted for seismic surveys were in late summer and fall, and were unrelated to local abundance, but instead to lactation costs, water temperature, and body fat. Our results demonstrate that consideration of temporal variation in individual energetics and their link to costs associated with disturbances is imperative when predicting disturbance impacts. These mechanisms are general to animal species, and the framework presented here can be used for gaining new insights into the spatiotemporal variability of animal movements and energetics that control population dynamics. Article in Journal/Newspaper Phocoena phocoena Aarhus University: Research The American Naturalist 197 3 296 311 |
institution |
Open Polar |
collection |
Aarhus University: Research |
op_collection_id |
ftuniaarhuspubl |
language |
English |
topic |
agent-based model energy budget harbor porpoises marine mammals anthropogenic disturbances bioenergetics |
spellingShingle |
agent-based model energy budget harbor porpoises marine mammals anthropogenic disturbances bioenergetics Gallagher, Cara Alyse Grimm, Volker Kyhn, Line Anker Kinze, Carl Christian Nabe-Nielsen, Jacob Movement and seasonal energetics mediate vulnerability to disturbance in marine mammal populations |
topic_facet |
agent-based model energy budget harbor porpoises marine mammals anthropogenic disturbances bioenergetics |
description |
In marine environments noise from human activities is increasing dramatically, causing animals to alter their behavior and forage less efficiently. These alterations incur energetic costs that can result in reproductive failure, death, and may ultimately influence population viability; yet the link between population dynamics and individual energetics is poorly understood. We present an energy budget model for simulating effects of acoustic disturbance on populations. It accounts for environmental variability and individual state, while incorporating realistic animal movements. Using harbor porpoises (Phocoena phocoena) as a case study, we evaluated population consequences of disturbance from seismic surveys and investigated underlying drivers of vulnerability. The framework reproduced empirical estimates of population structure and seasonal variations in energetics. The largest effects predicted for seismic surveys were in late summer and fall, and were unrelated to local abundance, but instead to lactation costs, water temperature, and body fat. Our results demonstrate that consideration of temporal variation in individual energetics and their link to costs associated with disturbances is imperative when predicting disturbance impacts. These mechanisms are general to animal species, and the framework presented here can be used for gaining new insights into the spatiotemporal variability of animal movements and energetics that control population dynamics. |
format |
Article in Journal/Newspaper |
author |
Gallagher, Cara Alyse Grimm, Volker Kyhn, Line Anker Kinze, Carl Christian Nabe-Nielsen, Jacob |
author_facet |
Gallagher, Cara Alyse Grimm, Volker Kyhn, Line Anker Kinze, Carl Christian Nabe-Nielsen, Jacob |
author_sort |
Gallagher, Cara Alyse |
title |
Movement and seasonal energetics mediate vulnerability to disturbance in marine mammal populations |
title_short |
Movement and seasonal energetics mediate vulnerability to disturbance in marine mammal populations |
title_full |
Movement and seasonal energetics mediate vulnerability to disturbance in marine mammal populations |
title_fullStr |
Movement and seasonal energetics mediate vulnerability to disturbance in marine mammal populations |
title_full_unstemmed |
Movement and seasonal energetics mediate vulnerability to disturbance in marine mammal populations |
title_sort |
movement and seasonal energetics mediate vulnerability to disturbance in marine mammal populations |
publishDate |
2021 |
url |
https://pure.au.dk/portal/da/publications/movement-and-seasonal-energetics-mediate-vulnerability-to-disturbance-in-marine-mammal-populations(f8e28fcb-9332-4ecf-b379-02d618c17a09).html https://doi.org/10.1086/712798 https://pure.au.dk/ws/files/273779448/Gallagheretal2021.pdf http://www.scopus.com/inward/record.url?scp=85098988662&partnerID=8YFLogxK |
genre |
Phocoena phocoena |
genre_facet |
Phocoena phocoena |
op_source |
Gallagher , C A , Grimm , V , Kyhn , L A , Kinze , C C & Nabe-Nielsen , J 2021 , ' Movement and seasonal energetics mediate vulnerability to disturbance in marine mammal populations ' , American Naturalist , vol. 197 , no. 3 , pp. 296-311 . https://doi.org/10.1086/712798 |
op_relation |
https://pure.au.dk/portal/da/publications/movement-and-seasonal-energetics-mediate-vulnerability-to-disturbance-in-marine-mammal-populations(f8e28fcb-9332-4ecf-b379-02d618c17a09).html |
op_rights |
info:eu-repo/semantics/openAccess |
op_doi |
https://doi.org/10.1086/712798 |
container_title |
The American Naturalist |
container_volume |
197 |
container_issue |
3 |
container_start_page |
296 |
op_container_end_page |
311 |
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1786833002982014976 |