A randomized controlled trial on the effects induced by robot-assisted and usual-care rehabilitation on upper limb muscle synergies in post-stroke subjects

Abstract Muscle synergies are hypothesized to reflect connections among motoneurons in the spinal cord activated by central commands and sensory feedback. Robotic rehabilitation of upper limb in post-stroke subjects has shown promising results in terms of improvement of arm function and motor contro...

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Main Authors: T. Lencioni, L. Fornia, T. Bowman, A. Marzegan, A. Caronni, A. Turolla, J. Jonsdottir, I. Carpinella, M. Ferrarin
Format: Article
Language:English
Published: Nature Publishing Group 2021-03-01
Series:Scientific Reports
Online Access:https://doi.org/10.1038/s41598-021-84536-8
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spelling doaj-2a39871814a7483685c68cae30907ad82021-03-11T12:12:35ZengNature Publishing GroupScientific Reports2045-23222021-03-0111111510.1038/s41598-021-84536-8A randomized controlled trial on the effects induced by robot-assisted and usual-care rehabilitation on upper limb muscle synergies in post-stroke subjectsT. Lencioni0L. Fornia1T. Bowman2A. Marzegan3A. Caronni4A. Turolla5J. Jonsdottir6I. Carpinella7M. Ferrarin8IRCCS Fondazione Don Carlo GnocchiDepartment of Medical Biotechnologies and Translational Medicine, Università Degli Studi di MilanoIRCCS Fondazione Don Carlo GnocchiIRCCS Fondazione Don Carlo GnocchiIRCCS Fondazione Don Carlo GnocchiMovement Neuroscience Research Group, IRCCS San Camillo HospitalIRCCS Fondazione Don Carlo GnocchiIRCCS Fondazione Don Carlo GnocchiIRCCS Fondazione Don Carlo GnocchiAbstract Muscle synergies are hypothesized to reflect connections among motoneurons in the spinal cord activated by central commands and sensory feedback. Robotic rehabilitation of upper limb in post-stroke subjects has shown promising results in terms of improvement of arm function and motor control achieved by reassembling muscle synergies into a set more similar to that of healthy people. However, in stroke survivors the potentially neurophysiological changes induced by robot-mediated learning versus usual care have not yet been investigated. We quantified upper limb motor deficits and the changes induced by rehabilitation in 32 post-stroke subjects through the movement analysis of two virtual untrained tasks of object placing and pronation. The sample analyzed in this study is part of a larger bi-center study and included all subjects who underwent kinematic analysis and were randomized into robot and usual care groups. Post-stroke subjects who followed robotic rehabilitation showed larger improvements in axial-to-proximal muscle synergies with respect to those who underwent usual care. This was associated to a significant improvement of the proximal kinematics. Both treatments had negative effects in muscle synergies controlling the distal district. This study supports the definition of new rehabilitative treatments for improving the neurophysiological recovery after stroke.https://doi.org/10.1038/s41598-021-84536-8
collection DOAJ
language English
format Article
sources DOAJ
author T. Lencioni
L. Fornia
T. Bowman
A. Marzegan
A. Caronni
A. Turolla
J. Jonsdottir
I. Carpinella
M. Ferrarin
spellingShingle T. Lencioni
L. Fornia
T. Bowman
A. Marzegan
A. Caronni
A. Turolla
J. Jonsdottir
I. Carpinella
M. Ferrarin
A randomized controlled trial on the effects induced by robot-assisted and usual-care rehabilitation on upper limb muscle synergies in post-stroke subjects
Scientific Reports
author_facet T. Lencioni
L. Fornia
T. Bowman
A. Marzegan
A. Caronni
A. Turolla
J. Jonsdottir
I. Carpinella
M. Ferrarin
author_sort T. Lencioni
title A randomized controlled trial on the effects induced by robot-assisted and usual-care rehabilitation on upper limb muscle synergies in post-stroke subjects
title_short A randomized controlled trial on the effects induced by robot-assisted and usual-care rehabilitation on upper limb muscle synergies in post-stroke subjects
title_full A randomized controlled trial on the effects induced by robot-assisted and usual-care rehabilitation on upper limb muscle synergies in post-stroke subjects
title_fullStr A randomized controlled trial on the effects induced by robot-assisted and usual-care rehabilitation on upper limb muscle synergies in post-stroke subjects
title_full_unstemmed A randomized controlled trial on the effects induced by robot-assisted and usual-care rehabilitation on upper limb muscle synergies in post-stroke subjects
title_sort randomized controlled trial on the effects induced by robot-assisted and usual-care rehabilitation on upper limb muscle synergies in post-stroke subjects
publisher Nature Publishing Group
series Scientific Reports
issn 2045-2322
publishDate 2021-03-01
description Abstract Muscle synergies are hypothesized to reflect connections among motoneurons in the spinal cord activated by central commands and sensory feedback. Robotic rehabilitation of upper limb in post-stroke subjects has shown promising results in terms of improvement of arm function and motor control achieved by reassembling muscle synergies into a set more similar to that of healthy people. However, in stroke survivors the potentially neurophysiological changes induced by robot-mediated learning versus usual care have not yet been investigated. We quantified upper limb motor deficits and the changes induced by rehabilitation in 32 post-stroke subjects through the movement analysis of two virtual untrained tasks of object placing and pronation. The sample analyzed in this study is part of a larger bi-center study and included all subjects who underwent kinematic analysis and were randomized into robot and usual care groups. Post-stroke subjects who followed robotic rehabilitation showed larger improvements in axial-to-proximal muscle synergies with respect to those who underwent usual care. This was associated to a significant improvement of the proximal kinematics. Both treatments had negative effects in muscle synergies controlling the distal district. This study supports the definition of new rehabilitative treatments for improving the neurophysiological recovery after stroke.
url https://doi.org/10.1038/s41598-021-84536-8
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