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Effort, success, and side of lesion determine arm choice in individuals with chronic stroke

Authors
Kim, S.Han, C.E.Kim, B.Winstein, C.J.Schweighofer, N.
Issue Date
1월-2022
Publisher
American Physiological Society
Keywords
Arm choice; Chronic stroke; Habits; Reaching; Value-based models of choice
Citation
Journal of Neurophysiology, v.127, no.1, pp.255 - 266
Indexed
SCIE
SCOPUS
Journal Title
Journal of Neurophysiology
Volume
127
Number
1
Start Page
255
End Page
266
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/142097
DOI
10.1152/jn.00532.2020
ISSN
0022-3077
Abstract
In neurotypical individuals, arm choice in reaching movements depends on expected biomechanical effort, expected success, and a handedness bias. Following a stroke, does arm choice change to account for the decreased motor performance, or does it follow a preinjury habitual preference pattern? Participants with mild-to-moderate chronic stroke who were right-handed before stroke performed reaching movements in both spontaneous and forced-choice blocks, under no-time, medium-time, and fast-time constraint conditions designed to modulate reaching success. Mixed-effects logistic regression models of arm choice revealed that expected effort predicted choices. However, expected success only strongly predicted choice in left-hemiparetic individuals. In addition, reaction times decreased in left-hemiparetic individuals between the no-time and the fast-time constraint conditions but showed no changes in right-hemiparetic individuals. Finally, arm choice in the no-time constraint condition correlated with a clinical measure of spontaneous arm use for right-, but not for left-hemiparetic individuals. Our results are consistent with the view that right-hemiparetic individuals show a habitual pattern of arm choice for reaching movements relatively independent of failures. In contrast, left-hemiparetic individuals appear to choose their paretic left arm more optimally: that is, if a movement with the paretic arm is predicted to be not successful in the upcoming movement, the nonparetic right arm is chosen instead. NEW & NOTEWORTHY Although we are seldom aware of it, we constantly make decisions to use one arm or the other in daily activities. Here, we studied whether these decisions change following stroke. Our results show that effort, success, and side of lesion determine arm choice in a reaching task: whereas left-paretic individuals modified their arm choice in response to failures in reaching the target, right-paretic individuals showed a pattern of choice independent of failures. © 2022 the American Physiological Society.
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