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Patterns of energy acquisition by a central place forager: benefits of alternating short and long foraging trips

Author

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  • Yan Ropert-Coudert
  • Rory P. Wilson
  • Francis Daunt
  • Akiko Kato

Abstract

In some seabirds, foraging trips have been defined as either long or short, with the length of time spent traveling to the foraging area apparently a critical feature in determining foraging trip length. Using logger technology, together with complimentary data from published studies, we investigated traveling and foraging times in 18 free-living Adélie Penguins Pygoscelis adeliae, which were foraging for chicks. Most deep, foraging dives were distributed around the center of the foraging trip. This central tendency was particularly apparent if the cumulative amount of undulations in the depth profile (indicative of prey capture) was considered during deep dives; values started to increase before 20.9% and ceased after 67.2% of the dives had occurred. This concentration of the feeding activity in the middle of the foraging trip indicates that birds traveled to and from a prey patch whose location varied little over the birds' trips. These data form the basis for a simple model that uses traveling and foraging times together with projected rates of prey ingestion and chick and adult gastric emptying to determine that there are occasions when, to optimize rates of prey ingestion while at sea for both adults and chicks, birds should conduct foraging trips of bimodal lengths. Copyright 2004.

Suggested Citation

  • Yan Ropert-Coudert & Rory P. Wilson & Francis Daunt & Akiko Kato, 2004. "Patterns of energy acquisition by a central place forager: benefits of alternating short and long foraging trips," Behavioral Ecology, International Society for Behavioral Ecology, vol. 15(5), pages 824-830, September.
  • Handle: RePEc:oup:beheco:v:15:y:2004:i:5:p:824-830
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    File URL: http://hdl.handle.net/10.1093/beheco/arh086
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    Cited by:

    1. Zhang, Jingjing & Dennis, Todd E. & Landers, Todd J. & Bell, Elizabeth & Perry, George L.W., 2017. "Linking individual-based and statistical inferential models in movement ecology: A case study with black petrels (Procellaria parkinsoni)," Ecological Modelling, Elsevier, vol. 360(C), pages 425-436.

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