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A single exercise bout and locomotor learning after stroke: physiological, behavioural, and computational outcomes
Author(s) -
Charalambous Charalambos C.,
Alcantara Carolina C.,
French Margaret A.,
Li Xin,
Matt Kathleen S.,
Kim Hyosub E.,
Morton Susanne M.,
Reisman Darcy S.
Publication year - 2018
Publication title -
the journal of physiology
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.802
H-Index - 240
eISSN - 1469-7793
pISSN - 0022-3751
DOI - 10.1113/jp275881
Subject(s) - motor learning , physical medicine and rehabilitation , treadmill , task (project management) , psychology , stroke (engine) , session (web analytics) , exercise intensity , physical therapy , medicine , neuroscience , heart rate , computer science , mechanical engineering , management , world wide web , blood pressure , engineering , economics
Key points Previous work demonstrated an effect of a single high‐intensity exercise bout coupled with motor practice on the retention of a newly acquired skilled arm movement, in both neurologically intact and impaired adults. In the present study, using behavioural and computational analyses we demonstrated that a single exercise bout, regardless of its intensity and timing, did not increase the retention of a novel locomotor task after stroke. Considering both present and previous work, we postulate that the benefits of exercise effect may depend on the type of motor learning (e.g. skill learning, sensorimotor adaptation) and/or task (e.g. arm accuracy‐tracking task, walking).Abstract Acute high‐intensity exercise coupled with motor practice improves the retention of motor learning in neurologically intact adults. However, whether exercise could improve the retention of locomotor learning after stroke is still unknown. Here, we investigated the effect of exercise intensity and timing on the retention of a novel locomotor learning task (i.e. split‐belt treadmill walking) after stroke. Thirty‐seven people post stroke participated in two sessions, 24 h apart, and were allocated to active control (CON), treadmill walking (TMW), or total body exercise on a cycle ergometer (TBE). In session 1, all groups exercised for a short bout (∼5 min) at low (CON) or high (TMW and TBE) intensity and before (CON and TMW) or after (TBE) the locomotor learning task. In both sessions, the locomotor learning task was to walk on a split‐belt treadmill in a 2:1 speed ratio (100% and 50% fast‐comfortable walking speed) for 15 min. To test the effect of exercise on 24 h retention, we applied behavioural and computational analyses. Behavioural data showed that neither high‐intensity group showed greater 24 h retention compared to CON, and computational data showed that 24 h retention was attributable to a slow learning process for sensorimotor adaptation. Our findings demonstrated that acute exercise coupled with a locomotor adaptation task, regardless of its intensity and timing, does not improve retention of the novel locomotor task after stroke. We postulate that exercise effects on motor learning may be context specific (e.g. type of motor learning and/or task) and interact with the presence of genetic variant (BDNF Val66Met).

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