Dear MARMAM Colleagues,

We are pleased to announce our new paper published in Journal of Experimental 
Biology:

Allen, A.S., Read, A.J., Shorter, K.A., Gabaldon, J., Blawas, A.M., 
Rocho-Levine, J. and Fahlman, A., 2022. Dynamic body acceleration as a proxy to 
predict the cost of locomotion in bottlenose dolphins. Journal of Experimental 
Biology, 225(4), jeb243121
https://doi.org/10.1242/jeb.243121

Abstract
Estimates of the energetic costs of locomotion (COL) at different activity 
levels are necessary to answer fundamental eco-physiological questions and to 
understand the impacts of anthropogenic disturbance to marine mammals. We 
combined estimates of energetic costs derived from breath-by-breath 
respirometry with measurements of overall dynamic body acceleration (ODBA) from 
biologging tags to validate ODBA as a proxy for COL in trained common 
bottlenose dolphins (Tursiops truncatus). We measured resting metabolic rate 
(RMR); mean individual RMR was 0.71–1.42 times that of a similarly sized 
terrestrial mammal and agreed with past measurements that used breath-by-breath 
and flow-through respirometry. We also measured energy expenditure during 
submerged swim trials, at primarily moderate exercise levels. We subtracted RMR 
to obtain COL, and normalized COL by body size to incorporate individual 
swimming efficiencies. We found both mass-specific energy expenditure and 
mass-specific COL were linearly related with ODBA. Measurements of activity 
level and cost of transport (the energy required to move a given distance) 
improve understanding of the COL in marine mammals. The strength of the 
correlation between ODBA and COL varied among individuals, but the overall 
relationship can be used at a broad scale to estimate the energetic costs of 
disturbance and daily locomotion costs to build energy budgets, and investigate 
the costs of diving in free-ranging animals where bio-logging data are 
available. We propose that a similar approach could be applied to other 
cetacean species.

The paper is available at 
https://journals.biologists.com/jeb/article/225/4/jeb243121/274390/Dynamic-body-acceleration-as-a-proxy-to-predict?guestAccessKey=cd81a3b8-ae0a-4a98-ae38-90764a4cb1a2<https://urldefense.com/v3/__https://journals.biologists.com/jeb/article/225/4/jeb243121/274390/Dynamic-body-acceleration-as-a-proxy-to-predict?guestAccessKey=cd81a3b8-ae0a-4a98-ae38-90764a4cb1a2__;!!OToaGQ!4k6j0Az5i3J3MO4w9U14pw5I1Sf86XP8X9szDOH7M8StwbsUXOI_pQ1MdsnNBzgghlg$>,
 or please email me for a copy.

Best,
Austin

Austin S. Allen, PhD
Postdoctoral Researcher, Duke University Marine Laboratory
Marine Science and Conservation, Nicholas School of the Environment
[email protected]
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