Cargando…
The influence of speed and size on avian terrestrial locomotor biomechanics: Predicting locomotion in extinct theropod dinosaurs
How extinct, non-avian theropod dinosaurs moved is a subject of considerable interest and controversy. A better understanding of non-avian theropod locomotion can be achieved by better understanding terrestrial locomotor biomechanics in their modern descendants, birds. Despite much research on the s...
Autores principales: | , , , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Public Library of Science
2018
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5821450/ https://www.ncbi.nlm.nih.gov/pubmed/29466362 http://dx.doi.org/10.1371/journal.pone.0192172 |
_version_ | 1783301520866934784 |
---|---|
author | Bishop, P. J. Graham, D. F. Lamas, L. P. Hutchinson, J. R. Rubenson, J. Hancock, J. A. Wilson, R. S. Hocknull, S. A. Barrett, R. S. Lloyd, D. G. Clemente, C. J. |
author_facet | Bishop, P. J. Graham, D. F. Lamas, L. P. Hutchinson, J. R. Rubenson, J. Hancock, J. A. Wilson, R. S. Hocknull, S. A. Barrett, R. S. Lloyd, D. G. Clemente, C. J. |
author_sort | Bishop, P. J. |
collection | PubMed |
description | How extinct, non-avian theropod dinosaurs moved is a subject of considerable interest and controversy. A better understanding of non-avian theropod locomotion can be achieved by better understanding terrestrial locomotor biomechanics in their modern descendants, birds. Despite much research on the subject, avian terrestrial locomotion remains little explored in regards to how kinematic and kinetic factors vary together with speed and body size. Here, terrestrial locomotion was investigated in twelve species of ground-dwelling bird, spanning a 1,780-fold range in body mass, across almost their entire speed range. Particular attention was devoted to the ground reaction force (GRF), the force that the feet exert upon the ground. Comparable data for the only other extant obligate, striding biped, humans, were also collected and studied. In birds, all kinematic and kinetic parameters examined changed continuously with increasing speed, while in humans all but one of those same parameters changed abruptly at the walk-run transition. This result supports previous studies that show birds to have a highly continuous locomotor repertoire compared to humans, where discrete ‘walking’ and ‘running’ gaits are not easily distinguished based on kinematic patterns alone. The influences of speed and body size on kinematic and kinetic factors in birds are developed into a set of predictive relationships that may be applied to extinct, non-avian theropods. The resulting predictive model is able to explain 79–93% of the observed variation in kinematics and 69–83% of the observed variation in GRFs, and also performs well in extrapolation tests. However, this study also found that the location of the whole-body centre of mass may exert an important influence on the nature of the GRF, and hence some caution is warranted, in lieu of further investigation. |
format | Online Article Text |
id | pubmed-5821450 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2018 |
publisher | Public Library of Science |
record_format | MEDLINE/PubMed |
spelling | pubmed-58214502018-03-02 The influence of speed and size on avian terrestrial locomotor biomechanics: Predicting locomotion in extinct theropod dinosaurs Bishop, P. J. Graham, D. F. Lamas, L. P. Hutchinson, J. R. Rubenson, J. Hancock, J. A. Wilson, R. S. Hocknull, S. A. Barrett, R. S. Lloyd, D. G. Clemente, C. J. PLoS One Research Article How extinct, non-avian theropod dinosaurs moved is a subject of considerable interest and controversy. A better understanding of non-avian theropod locomotion can be achieved by better understanding terrestrial locomotor biomechanics in their modern descendants, birds. Despite much research on the subject, avian terrestrial locomotion remains little explored in regards to how kinematic and kinetic factors vary together with speed and body size. Here, terrestrial locomotion was investigated in twelve species of ground-dwelling bird, spanning a 1,780-fold range in body mass, across almost their entire speed range. Particular attention was devoted to the ground reaction force (GRF), the force that the feet exert upon the ground. Comparable data for the only other extant obligate, striding biped, humans, were also collected and studied. In birds, all kinematic and kinetic parameters examined changed continuously with increasing speed, while in humans all but one of those same parameters changed abruptly at the walk-run transition. This result supports previous studies that show birds to have a highly continuous locomotor repertoire compared to humans, where discrete ‘walking’ and ‘running’ gaits are not easily distinguished based on kinematic patterns alone. The influences of speed and body size on kinematic and kinetic factors in birds are developed into a set of predictive relationships that may be applied to extinct, non-avian theropods. The resulting predictive model is able to explain 79–93% of the observed variation in kinematics and 69–83% of the observed variation in GRFs, and also performs well in extrapolation tests. However, this study also found that the location of the whole-body centre of mass may exert an important influence on the nature of the GRF, and hence some caution is warranted, in lieu of further investigation. Public Library of Science 2018-02-21 /pmc/articles/PMC5821450/ /pubmed/29466362 http://dx.doi.org/10.1371/journal.pone.0192172 Text en © 2018 Bishop 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 (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited. |
spellingShingle | Research Article Bishop, P. J. Graham, D. F. Lamas, L. P. Hutchinson, J. R. Rubenson, J. Hancock, J. A. Wilson, R. S. Hocknull, S. A. Barrett, R. S. Lloyd, D. G. Clemente, C. J. The influence of speed and size on avian terrestrial locomotor biomechanics: Predicting locomotion in extinct theropod dinosaurs |
title | The influence of speed and size on avian terrestrial locomotor biomechanics: Predicting locomotion in extinct theropod dinosaurs |
title_full | The influence of speed and size on avian terrestrial locomotor biomechanics: Predicting locomotion in extinct theropod dinosaurs |
title_fullStr | The influence of speed and size on avian terrestrial locomotor biomechanics: Predicting locomotion in extinct theropod dinosaurs |
title_full_unstemmed | The influence of speed and size on avian terrestrial locomotor biomechanics: Predicting locomotion in extinct theropod dinosaurs |
title_short | The influence of speed and size on avian terrestrial locomotor biomechanics: Predicting locomotion in extinct theropod dinosaurs |
title_sort | influence of speed and size on avian terrestrial locomotor biomechanics: predicting locomotion in extinct theropod dinosaurs |
topic | Research Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5821450/ https://www.ncbi.nlm.nih.gov/pubmed/29466362 http://dx.doi.org/10.1371/journal.pone.0192172 |
work_keys_str_mv | AT bishoppj theinfluenceofspeedandsizeonavianterrestriallocomotorbiomechanicspredictinglocomotioninextincttheropoddinosaurs AT grahamdf theinfluenceofspeedandsizeonavianterrestriallocomotorbiomechanicspredictinglocomotioninextincttheropoddinosaurs AT lamaslp theinfluenceofspeedandsizeonavianterrestriallocomotorbiomechanicspredictinglocomotioninextincttheropoddinosaurs AT hutchinsonjr theinfluenceofspeedandsizeonavianterrestriallocomotorbiomechanicspredictinglocomotioninextincttheropoddinosaurs AT rubensonj theinfluenceofspeedandsizeonavianterrestriallocomotorbiomechanicspredictinglocomotioninextincttheropoddinosaurs AT hancockja theinfluenceofspeedandsizeonavianterrestriallocomotorbiomechanicspredictinglocomotioninextincttheropoddinosaurs AT wilsonrs theinfluenceofspeedandsizeonavianterrestriallocomotorbiomechanicspredictinglocomotioninextincttheropoddinosaurs AT hocknullsa theinfluenceofspeedandsizeonavianterrestriallocomotorbiomechanicspredictinglocomotioninextincttheropoddinosaurs AT barrettrs theinfluenceofspeedandsizeonavianterrestriallocomotorbiomechanicspredictinglocomotioninextincttheropoddinosaurs AT lloyddg theinfluenceofspeedandsizeonavianterrestriallocomotorbiomechanicspredictinglocomotioninextincttheropoddinosaurs AT clementecj theinfluenceofspeedandsizeonavianterrestriallocomotorbiomechanicspredictinglocomotioninextincttheropoddinosaurs AT bishoppj influenceofspeedandsizeonavianterrestriallocomotorbiomechanicspredictinglocomotioninextincttheropoddinosaurs AT grahamdf influenceofspeedandsizeonavianterrestriallocomotorbiomechanicspredictinglocomotioninextincttheropoddinosaurs AT lamaslp influenceofspeedandsizeonavianterrestriallocomotorbiomechanicspredictinglocomotioninextincttheropoddinosaurs AT hutchinsonjr influenceofspeedandsizeonavianterrestriallocomotorbiomechanicspredictinglocomotioninextincttheropoddinosaurs AT rubensonj influenceofspeedandsizeonavianterrestriallocomotorbiomechanicspredictinglocomotioninextincttheropoddinosaurs AT hancockja influenceofspeedandsizeonavianterrestriallocomotorbiomechanicspredictinglocomotioninextincttheropoddinosaurs AT wilsonrs influenceofspeedandsizeonavianterrestriallocomotorbiomechanicspredictinglocomotioninextincttheropoddinosaurs AT hocknullsa influenceofspeedandsizeonavianterrestriallocomotorbiomechanicspredictinglocomotioninextincttheropoddinosaurs AT barrettrs influenceofspeedandsizeonavianterrestriallocomotorbiomechanicspredictinglocomotioninextincttheropoddinosaurs AT lloyddg influenceofspeedandsizeonavianterrestriallocomotorbiomechanicspredictinglocomotioninextincttheropoddinosaurs AT clementecj influenceofspeedandsizeonavianterrestriallocomotorbiomechanicspredictinglocomotioninextincttheropoddinosaurs |