Matthew William Scott

Postdoctoral research fellow

Enhancing upper-limb neurorehabilitation in chronic stroke survivors using combined action observation and motor imagery therapy


Journal article


J. Binks, J. Emerson, M. Scott, Christopher J. Wilson, P. van Schaik, D. Eaves
Frontiers in Neurology, 2023

Semantic Scholar DOI PubMedCentral PubMed
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APA   Click to copy
Binks, J., Emerson, J., Scott, M., Wilson, C. J., van Schaik, P., & Eaves, D. (2023). Enhancing upper-limb neurorehabilitation in chronic stroke survivors using combined action observation and motor imagery therapy. Frontiers in Neurology.


Chicago/Turabian   Click to copy
Binks, J., J. Emerson, M. Scott, Christopher J. Wilson, P. van Schaik, and D. Eaves. “Enhancing Upper-Limb Neurorehabilitation in Chronic Stroke Survivors Using Combined Action Observation and Motor Imagery Therapy.” Frontiers in Neurology (2023).


MLA   Click to copy
Binks, J., et al. “Enhancing Upper-Limb Neurorehabilitation in Chronic Stroke Survivors Using Combined Action Observation and Motor Imagery Therapy.” Frontiers in Neurology, 2023.


BibTeX   Click to copy

@article{j2023a,
  title = {Enhancing upper-limb neurorehabilitation in chronic stroke survivors using combined action observation and motor imagery therapy},
  year = {2023},
  journal = {Frontiers in Neurology},
  author = {Binks, J. and Emerson, J. and Scott, M. and Wilson, Christopher J. and van Schaik, P. and Eaves, D.}
}

Abstract

Introduction For people who have had a stroke, recovering upper-limb function is a barrier to independence. When movement is difficult, mental practice can be used to complement physical therapy. In this within-participants study we investigated the effects of combined action observation and motor imagery (AO + MI) therapy on upper-limb recovery in chronic stroke survivors. Methods A Graeco-Latin Square design was used to counterbalance four mental practice conditions (AO + MI, AO, MI, Control) across four cup-stacking tasks of increasing complexity. Once a week, for five consecutive weeks, participants (n = 10) performed 16 mental practice trials under each condition. Each trial displayed a 1st person perspective of a cup-stacking task performed by an experienced model. For AO, participants watched each video and responded to an occasional color cue. For MI, participants imagined the effort and sensation of performing the action; cued by a series of still-images. For combined AO + MI, participants observed a video of the action while they simultaneously imagined performing the same action in real-time. At three time points (baseline; post-test; two-week retention test) participants physically executed the three mentally practiced cup-stacking tasks, plus a fourth unpractised sequence (Control), as quickly and accurately as possible. Results Mean movement execution times were significantly reduced overall in the post-test and the retention test compared to baseline. At retention, movement execution times were significantly shorter for combined AO + MI compared to both MI and the Control. Individual participants reported clinically important changes in quality of life (Stroke Impact Scale) and positive qualitative experiences of AO + MI (social validation). Discussion These results indicate that when physical practice is unsuitable, combined AO + MI therapy could offer an effective adjunct for neurorehabilitation in chronic stroke survivors.