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Tri-Axial Dynamic Acceleration as a Proxy for Animal Energy Expenditure; Should We Be Summing Values or Calculating the Vector?

Dynamic body acceleration (DBA) has been used as a proxy for energy expenditure in logger-equipped animals, with researchers summing the acceleration (overall dynamic body acceleration - ODBA) from the three orthogonal axes of devices. The vector of the dynamic body acceleration (VeDBA) may be a bet...

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Autores principales: Qasem, Lama, Cardew, Antonia, Wilson, Alexis, Griffiths, Iwan, Halsey, Lewis G., Shepard, Emily L. C., Gleiss, Adrian C., Wilson, Rory
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3281952/
https://www.ncbi.nlm.nih.gov/pubmed/22363576
http://dx.doi.org/10.1371/journal.pone.0031187
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author Qasem, Lama
Cardew, Antonia
Wilson, Alexis
Griffiths, Iwan
Halsey, Lewis G.
Shepard, Emily L. C.
Gleiss, Adrian C.
Wilson, Rory
author_facet Qasem, Lama
Cardew, Antonia
Wilson, Alexis
Griffiths, Iwan
Halsey, Lewis G.
Shepard, Emily L. C.
Gleiss, Adrian C.
Wilson, Rory
author_sort Qasem, Lama
collection PubMed
description Dynamic body acceleration (DBA) has been used as a proxy for energy expenditure in logger-equipped animals, with researchers summing the acceleration (overall dynamic body acceleration - ODBA) from the three orthogonal axes of devices. The vector of the dynamic body acceleration (VeDBA) may be a better proxy so this study compared ODBA and VeDBA as proxies for rate of oxygen consumption using humans and 6 other species. Twenty-one humans on a treadmill ran at different speeds while equipped with two loggers, one in a straight orientation and the other skewed, while rate of oxygen consumption ([Image: see text]) was recorded. Similar data were obtained from animals but using only one (straight) logger. In humans, both ODBA and VeDBA were good proxies for [Image: see text] with all r(2) values exceeding 0.88, although ODBA accounted for slightly but significantly more of the variation in [Image: see text] than did VeDBA (P<0.03). There were no significant differences between ODBA and VeDBA in terms of the change in [Image: see text] estimated by the acceleration data in a simulated situation of the logger being mounted straight but then becoming skewed (P = 0.744). In the animal study, ODBA and VeDBA were again good proxies for [Image: see text] with all r(2) values exceeding 0.70 although, again, ODBA accounted for slightly, but significantly, more of the variation in [Image: see text] than did VeDBA (P<0.03). The simultaneous contraction of muscles, inserted variously for limb stability, may produce muscle oxygen use that at least partially equates with summing components to derive DBA. Thus, a vectorial summation to derive DBA cannot be assumed to be the more ‘correct’ calculation. However, although within the limitations of our simple study, ODBA appears a marginally better proxy for [Image: see text]. In the unusual situation where researchers are unable to guarantee at least reasonably consistent device orientation, they should use VeDBA as a proxy for [Image: see text].
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spelling pubmed-32819522012-02-23 Tri-Axial Dynamic Acceleration as a Proxy for Animal Energy Expenditure; Should We Be Summing Values or Calculating the Vector? Qasem, Lama Cardew, Antonia Wilson, Alexis Griffiths, Iwan Halsey, Lewis G. Shepard, Emily L. C. Gleiss, Adrian C. Wilson, Rory PLoS One Research Article Dynamic body acceleration (DBA) has been used as a proxy for energy expenditure in logger-equipped animals, with researchers summing the acceleration (overall dynamic body acceleration - ODBA) from the three orthogonal axes of devices. The vector of the dynamic body acceleration (VeDBA) may be a better proxy so this study compared ODBA and VeDBA as proxies for rate of oxygen consumption using humans and 6 other species. Twenty-one humans on a treadmill ran at different speeds while equipped with two loggers, one in a straight orientation and the other skewed, while rate of oxygen consumption ([Image: see text]) was recorded. Similar data were obtained from animals but using only one (straight) logger. In humans, both ODBA and VeDBA were good proxies for [Image: see text] with all r(2) values exceeding 0.88, although ODBA accounted for slightly but significantly more of the variation in [Image: see text] than did VeDBA (P<0.03). There were no significant differences between ODBA and VeDBA in terms of the change in [Image: see text] estimated by the acceleration data in a simulated situation of the logger being mounted straight but then becoming skewed (P = 0.744). In the animal study, ODBA and VeDBA were again good proxies for [Image: see text] with all r(2) values exceeding 0.70 although, again, ODBA accounted for slightly, but significantly, more of the variation in [Image: see text] than did VeDBA (P<0.03). The simultaneous contraction of muscles, inserted variously for limb stability, may produce muscle oxygen use that at least partially equates with summing components to derive DBA. Thus, a vectorial summation to derive DBA cannot be assumed to be the more ‘correct’ calculation. However, although within the limitations of our simple study, ODBA appears a marginally better proxy for [Image: see text]. In the unusual situation where researchers are unable to guarantee at least reasonably consistent device orientation, they should use VeDBA as a proxy for [Image: see text]. Public Library of Science 2012-02-17 /pmc/articles/PMC3281952/ /pubmed/22363576 http://dx.doi.org/10.1371/journal.pone.0031187 Text en Qasem et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Qasem, Lama
Cardew, Antonia
Wilson, Alexis
Griffiths, Iwan
Halsey, Lewis G.
Shepard, Emily L. C.
Gleiss, Adrian C.
Wilson, Rory
Tri-Axial Dynamic Acceleration as a Proxy for Animal Energy Expenditure; Should We Be Summing Values or Calculating the Vector?
title Tri-Axial Dynamic Acceleration as a Proxy for Animal Energy Expenditure; Should We Be Summing Values or Calculating the Vector?
title_full Tri-Axial Dynamic Acceleration as a Proxy for Animal Energy Expenditure; Should We Be Summing Values or Calculating the Vector?
title_fullStr Tri-Axial Dynamic Acceleration as a Proxy for Animal Energy Expenditure; Should We Be Summing Values or Calculating the Vector?
title_full_unstemmed Tri-Axial Dynamic Acceleration as a Proxy for Animal Energy Expenditure; Should We Be Summing Values or Calculating the Vector?
title_short Tri-Axial Dynamic Acceleration as a Proxy for Animal Energy Expenditure; Should We Be Summing Values or Calculating the Vector?
title_sort tri-axial dynamic acceleration as a proxy for animal energy expenditure; should we be summing values or calculating the vector?
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3281952/
https://www.ncbi.nlm.nih.gov/pubmed/22363576
http://dx.doi.org/10.1371/journal.pone.0031187
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