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Feedback of mechanical effectiveness induces adaptations in motor modules during cycling

Recent studies have reported evidence that the motor system may rely on a modular organization, even if this behavior has yet to be confirmed during motor adaptation. The aim of the present study is to investigate the modular motor control mechanisms underlying the execution of pedaling by untrained...

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Autores principales: De Marchis, Cristiano, Schmid, Maurizio, Bibbo, Daniele, Castronovo, Anna Margherita, D'Alessio, Tommaso, Conforto, Silvia
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3628359/
https://www.ncbi.nlm.nih.gov/pubmed/23616763
http://dx.doi.org/10.3389/fncom.2013.00035
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author De Marchis, Cristiano
Schmid, Maurizio
Bibbo, Daniele
Castronovo, Anna Margherita
D'Alessio, Tommaso
Conforto, Silvia
author_facet De Marchis, Cristiano
Schmid, Maurizio
Bibbo, Daniele
Castronovo, Anna Margherita
D'Alessio, Tommaso
Conforto, Silvia
author_sort De Marchis, Cristiano
collection PubMed
description Recent studies have reported evidence that the motor system may rely on a modular organization, even if this behavior has yet to be confirmed during motor adaptation. The aim of the present study is to investigate the modular motor control mechanisms underlying the execution of pedaling by untrained subjects in different biomechanical conditions. We use the muscle synergies framework to characterize the muscle coordination of 11 subjects pedaling under two different conditions. The first one consists of a pedaling exercise with a strategy freely chosen by the subjects (Preferred Pedaling Technique, PPT), while the second condition constrains the gesture by means of a real time visual feedback of mechanical effectiveness (Effective Pedaling Technique, EPT). Pedal forces, recorded using a pair of instrumented pedals, were used to calculate the Index of Effectiveness (IE). EMG signals were recorded from eight muscles of the dominant leg and Non-negative Matrix Factorization (NMF) was applied for the extraction of muscle synergies. All the synergy vectors, extracted cycle by cycle for each subject, were pooled across subjects and conditions and underwent a 2-dimensional Sammon's non-linear mapping. Seven representative clusters were identified on the Sammon's projection, and the corresponding eight-dimensional synergy vectors were used to reconstruct the repertoire of muscle activation for all subjects and all pedaling conditions (VAF > 0.8 for each individual muscle pattern). Only 5 out of the 7 identified modules were used by the subjects during the PPT pedaling condition, while 2 additional modules were found specific for the pedaling condition EPT. The temporal recruitment of three identified modules was highly correlated with IE. The structure of the identified modules was found similar to that extracted in other studies of human walking, partly confirming the existence of shared and task specific muscle synergies, and providing further evidence on the modularity of the motor system.
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spelling pubmed-36283592013-04-24 Feedback of mechanical effectiveness induces adaptations in motor modules during cycling De Marchis, Cristiano Schmid, Maurizio Bibbo, Daniele Castronovo, Anna Margherita D'Alessio, Tommaso Conforto, Silvia Front Comput Neurosci Neuroscience Recent studies have reported evidence that the motor system may rely on a modular organization, even if this behavior has yet to be confirmed during motor adaptation. The aim of the present study is to investigate the modular motor control mechanisms underlying the execution of pedaling by untrained subjects in different biomechanical conditions. We use the muscle synergies framework to characterize the muscle coordination of 11 subjects pedaling under two different conditions. The first one consists of a pedaling exercise with a strategy freely chosen by the subjects (Preferred Pedaling Technique, PPT), while the second condition constrains the gesture by means of a real time visual feedback of mechanical effectiveness (Effective Pedaling Technique, EPT). Pedal forces, recorded using a pair of instrumented pedals, were used to calculate the Index of Effectiveness (IE). EMG signals were recorded from eight muscles of the dominant leg and Non-negative Matrix Factorization (NMF) was applied for the extraction of muscle synergies. All the synergy vectors, extracted cycle by cycle for each subject, were pooled across subjects and conditions and underwent a 2-dimensional Sammon's non-linear mapping. Seven representative clusters were identified on the Sammon's projection, and the corresponding eight-dimensional synergy vectors were used to reconstruct the repertoire of muscle activation for all subjects and all pedaling conditions (VAF > 0.8 for each individual muscle pattern). Only 5 out of the 7 identified modules were used by the subjects during the PPT pedaling condition, while 2 additional modules were found specific for the pedaling condition EPT. The temporal recruitment of three identified modules was highly correlated with IE. The structure of the identified modules was found similar to that extracted in other studies of human walking, partly confirming the existence of shared and task specific muscle synergies, and providing further evidence on the modularity of the motor system. Frontiers Media S.A. 2013-04-17 /pmc/articles/PMC3628359/ /pubmed/23616763 http://dx.doi.org/10.3389/fncom.2013.00035 Text en Copyright © 2013 De Marchis, Schmid, Bibbo, Castronovo, D'Alessio and Conforto. http://creativecommons.org/licenses/by/3.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits use, distribution and reproduction in other forums, provided the original authors and source are credited and subject to any copyright notices concerning any third-party graphics etc.
spellingShingle Neuroscience
De Marchis, Cristiano
Schmid, Maurizio
Bibbo, Daniele
Castronovo, Anna Margherita
D'Alessio, Tommaso
Conforto, Silvia
Feedback of mechanical effectiveness induces adaptations in motor modules during cycling
title Feedback of mechanical effectiveness induces adaptations in motor modules during cycling
title_full Feedback of mechanical effectiveness induces adaptations in motor modules during cycling
title_fullStr Feedback of mechanical effectiveness induces adaptations in motor modules during cycling
title_full_unstemmed Feedback of mechanical effectiveness induces adaptations in motor modules during cycling
title_short Feedback of mechanical effectiveness induces adaptations in motor modules during cycling
title_sort feedback of mechanical effectiveness induces adaptations in motor modules during cycling
topic Neuroscience
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3628359/
https://www.ncbi.nlm.nih.gov/pubmed/23616763
http://dx.doi.org/10.3389/fncom.2013.00035
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