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METHODS & TECHNIQUES
What a jerk: prey engulfment revealed by high-rate, super-cranial accelerometry on a harbour seal (Phoca vitulina)
Kristina S. Ydesen, Danuta M. Wisniewska, Janni D. Hansen, Kristian Beedholm, Mark Johnson, Peter T. Madsen
Journal of Experimental Biology 2014 217: 2239-2243; doi: 10.1242/jeb.100016
Kristina S. Ydesen
1Zoophysiology, Department of Bioscience, Aarhus University, C. F. Moellers Alle 3, Building 1131, 8000 Aarhus C, Denmark
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  • For correspondence: kristinaydesen@gmail.com
Danuta M. Wisniewska
1Zoophysiology, Department of Bioscience, Aarhus University, C. F. Moellers Alle 3, Building 1131, 8000 Aarhus C, Denmark
2Section for Marine Mammal Research, Department of Bioscience, Aarhus University, Frederiksborgvej 399, 4000 Roskilde, Denmark
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Janni D. Hansen
3Fjord and Belt Centre, Margrethes Plads 1, 5300 Kerteminde, Denmark
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Kristian Beedholm
1Zoophysiology, Department of Bioscience, Aarhus University, C. F. Moellers Alle 3, Building 1131, 8000 Aarhus C, Denmark
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Mark Johnson
4Sea Mammal Research Unit, University of St. Andrews, St Andrews, Fife KY16 8LB, UK
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Peter T. Madsen
1Zoophysiology, Department of Bioscience, Aarhus University, C. F. Moellers Alle 3, Building 1131, 8000 Aarhus C, Denmark
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This article has a correction. Please see:

  • What a jerk: prey engulfment revealed by high-rate, super-cranial accelerometry on a harbour seal (Phoca vitulina) - August 01, 2014

Abstract

A key component in understanding the ecological role of marine mammal predators is to identify how and where they capture prey in time and space. Satellite and archival tags on pinnipeds generally only provide diving and position information, and foraging is often inferred to take place in particular shaped dives or when the animal remains in an area for an extended interval. However, fast movements of the head and jaws may provide reliable feeding cues that can be detected by small low-power accelerometers mounted on the head. To test this notion, a harbour seal (Phoca vitulina) was trained to wear an OpenTag (sampling at 200 or 333 Hz with ±2 or ±16 g clipping) on its head while catching fish prey in front of four underwater digital high-speed video cameras. We show that both raptorial and suction feeding generate jerk (i.e. differential of acceleration) signatures with maximum peak values exceeding 1000 m s−3. We conclude that reliable prey capture cues can be derived from fast-sampling, head-mounted accelerometer tags, thus holding a promising potential for long-term studies of foraging ecology and field energetics of aquatic predators in their natural environments.

FOOTNOTES

  • Author contributions

    Experiments were designed by K.S.Y. and P.T.M.; training and measurements were carried out by K.S.Y. and J.D.H.; the results were analysed and interpreted by K.S.Y., D.M.W., K.B., M.J. and P.T.M.; the manuscript was drafted by K.S.Y., D.M.W., J.D.H., K.B., M.J. and P.T.M.

  • Competing interests

    The authors declare no competing financial interests.

  • Funding

    This work was funded by the Carlsberg Foundation through a grant to P.T.M. M.J. was funded by the Office of Naval Research and the Marine Alliance for Science and Technology Scotland. D.M.W. was funded by the Oticon Foundation, Denmark.

  • Supplementary material

    Supplementary material available online at http://jeb.biologists.org/lookup/suppl/doi:10.1242/jeb.100016/-/DC1

  • © 2014. Published by The Company of Biologists Ltd
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Keywords

  • Harbour seal
  • Pinniped
  • Accelerometry
  • Foraging
  • Feeding
  • Jerk
  • Tag

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METHODS & TECHNIQUES
What a jerk: prey engulfment revealed by high-rate, super-cranial accelerometry on a harbour seal (Phoca vitulina)
Kristina S. Ydesen, Danuta M. Wisniewska, Janni D. Hansen, Kristian Beedholm, Mark Johnson, Peter T. Madsen
Journal of Experimental Biology 2014 217: 2239-2243; doi: 10.1242/jeb.100016
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METHODS & TECHNIQUES
What a jerk: prey engulfment revealed by high-rate, super-cranial accelerometry on a harbour seal (Phoca vitulina)
Kristina S. Ydesen, Danuta M. Wisniewska, Janni D. Hansen, Kristian Beedholm, Mark Johnson, Peter T. Madsen
Journal of Experimental Biology 2014 217: 2239-2243; doi: 10.1242/jeb.100016

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