High-Frequency Intermuscular Coherence between Arm Muscles during Robot-Mediated Motor Adaptation

Article


Pizzamiglio, Sara, De Lillo, Martina, Naeem, U., Abdalla, Hassan and Turner, D. 2017. High-Frequency Intermuscular Coherence between Arm Muscles during Robot-Mediated Motor Adaptation. Frontiers in Physiology. 7 (668), pp. 1-14.
AuthorsPizzamiglio, Sara, De Lillo, Martina, Naeem, U., Abdalla, Hassan and Turner, D.
Abstract

Adaptation of arm reaching in a novel force field involves co-contraction of upper limb muscles, but it is not known how the co-ordination of multiple muscle activation is orchestrated. We have used intermuscular coherence (IMC) to test whether a coherent intermuscular coupling between muscle pairs is responsible for novel patterns of activation during adaptation of reaching in a force field. Subjects (N = 16) performed reaching trials during a null force field, then during a velocity-dependent force field and then again during a null force field. Reaching trajectory error increased during early adaptation to the force-field and subsequently decreased during later adaptation. Co-contraction in the majority of all possible muscle pairs also increased during early adaptation and decreased during later adaptation. In contrast, IMC increased during later adaptation and only in a subset of muscle pairs. IMC consistently occurred in frequencies between ~40-100 Hz and during the period of arm movement, suggesting that a coherent intermuscular coupling between those muscles contributing to adaptation enable a reduction in wasteful co-contraction and energetic cost during reaching.

JournalFrontiers in Physiology
Journal citation7 (668), pp. 1-14
ISSN1664-042X
Year2017
PublisherFrontiers Media
Accepted author manuscript
License
CC BY
File Access Level
Repository staff only
Publisher's version
License
Digital Object Identifier (DOI)doi:10.3389/fphys.2016.00668
Web address (URL)https://doi.org/10.3389/fphys.2016.00668
Publication dates
Print09 Jan 2017
Publication process dates
Deposited21 Dec 2016
Accepted19 Dec 2016
Accepted19 Dec 2016
Copyright information© 2017 The authors.
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