Disrupted bilateral co‐ordination of soleus motor units during early subacute stroke rehabilitation

Stroke can affect sensorimotor control, impairing balance and locomotion. These impairments increase fall risk, limit patient independence and reduce quality of life. Here, we investigated how stroke affects bilateral co-ordination of soleus motor units during standing in individuals undergoing subacute rehabilitation. Fourteen individuals were recruited after admission for inpatient rehabilitation with sixteen age- and sex-matched controls. Both groups attended two sessions separated by 1 week, during which high-density electromyography (EMG) signals were recorded from soleus muscles when standing on force plates. Patients also performed the Berg Balance Scale (BBS). EMG signals were decomposed into motor unit spike trains, from which peristimulus time histograms and EMG waveform averages were computed in relation to peaks in centre of pressure (COP). The amplitude of motor unit and EMG activity around COP peaks, directional tuning and bilateral synchronization were estimated. Individuals post-stroke improved their BBS score between visits, but COP displacement and speed were still greater than controls. Soleus activity was tuned anteriorly in both control and non-paretic limbs, whereas it was tuned laterally in paretic limbs. Synchronization of soleus activity was also reduced in the paretic limb compared to controls. Furthermore, cross-correlation lag between limbs was greater in individuals post-stroke than in controls at visit 1, whereas it decreased to control levels at visit 2 (P = 0.008). The decrease in lags was strongly correlated with improvement in BBS score (R = -0.94, P < 0.001). These results highlight the importance of bilateral motor unit co-ordination in balance, which is disrupted in both spatial and temporal domains following stroke. KEY POINTS: We examined bilateral motor unit co-ordination during quiet standing in individuals in the early subacute phase following unilateral stroke, whereas previous works have focused on the chronic phase post-stroke. Although the non-paretic limb of patients exhibited a spatial tuning of its activity oriented in the same direction as those of neurologically intact controls, the spatial tuning of the activity of the paretic limb was altered. Bilateral synchronization between soleus motor units was reduced in individuals post-stroke in comparison with neurologically intact controls. The level of bilateral synchronization between soleus motor units was associated with balance function and improved after one week of inpatient rehabilitation.

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Publication Details

Journal
The Journal of Physiology
Published
2026-09-18
DOI
https://doi.org/10.1113/jp290882
Primary Topic
Muscle activation and electromyography studies
Type
article
Field-Weighted Citation Impact
0.00

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article

Disrupted bilateral co‐ordination of soleus motor units during early subacute stroke rehabilitation

Jackson T. Levine, Simon Avrillon, Martin Zaback, Christopher K. Thompson et al.
The Journal of Physiology
Muscle activation and electromyography studies
article

Disrupted bilateral co‐ordination of soleus motor units during early subacute stroke rehabilitation

Jackson T. Levine, Simon Avrillon, Martin Zaback, Christopher K. Thompson, Dario Farina, Rebecca Munoz, Jose L. Pons, Xin S. Yu, Alyssa Jones
article en

Abstract

Stroke can affect sensorimotor control, impairing balance and locomotion. These impairments increase fall risk, limit patient independence and reduce quality of life. Here, we investigated how stroke affects bilateral co-ordination of soleus motor units during standing in individuals undergoing subacute rehabilitation. Fourteen individuals were recruited after admission for inpatient rehabilitation with sixteen age- and sex-matched controls. Both groups attended two sessions separated by 1 week, during which high-density electromyography (EMG) signals were recorded from soleus muscles when standing on force plates. Patients also performed the Berg Balance Scale (BBS). EMG signals were decomposed into motor unit spike trains, from which peristimulus time histograms and EMG waveform averages were computed in relation to peaks in centre of pressure (COP). The amplitude of motor unit and EMG activity around COP peaks, directional tuning and bilateral synchronization were estimated. Individuals post-stroke improved their BBS score between visits, but COP displacement and speed were still greater than controls. Soleus activity was tuned anteriorly in both control and non-paretic limbs, whereas it was tuned laterally in paretic limbs. Synchronization of soleus activity was also reduced in the paretic limb compared to controls. Furthermore, cross-correlation lag between limbs was greater in individuals post-stroke than in controls at visit 1, whereas it decreased to control levels at visit 2 (P = 0.008). The decrease in lags was strongly correlated with improvement in BBS score (R = -0.94, P < 0.001). These results highlight the importance of bilateral motor unit co-ordination in balance, which is disrupted in both spatial and temporal domains following stroke. KEY POINTS: We examined bilateral motor unit co-ordination during quiet standing in individuals in the early subacute phase following unilateral stroke, whereas previous works have focused on the chronic phase post-stroke. Although the non-paretic limb of patients exhibited a spatial tuning of its activity oriented in the same direction as those of neurologically intact controls, the spatial tuning of the activity of the paretic limb was altered. Bilateral synchronization between soleus motor units was reduced in individuals post-stroke in comparison with neurologically intact controls. The level of bilateral synchronization between soleus motor units was associated with balance function and improved after one week of inpatient rehabilitation.

The Journal of Physiology
Northwestern University (US), Shirley Ryan AbilityLab (US), University of Tennessee Health Science Center (US), University of Illinois Chicago (US), Temple University Hospital (US), Temple University Health System (US), Imperial College London (GB), Temple University (US), Nantes Université (FR)
Northwestern University, Agence Nationale de la Recherche, Shirley Ryan AbilityLab
Openalex Percentile: Top 21%
Muscle activation and electromyography studies
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