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Brain–computer interface treatment for gait rehabilitation in stroke patients
by
Kyousuke Kamada
, Christoph Guger
, Rupert Ortner
, Brendan Z. Allison
, Tim J. Von Oertzen
, Woosang Cho
, Marc Sebastián-Romagosa
, Sebastian Sieghartsleitner
, Steven Laureys
in
Balance
/ BCI
/ Brain
/ brain–computer interfaces
/ Central nervous system
/ Clinical trials
/ Computer applications
/ Feedback
/ Fitness equipment
/ functional electrical stimulation
/ Gait
/ Implants
/ lower limb
/ Medical equipment
/ Mental task performance
/ Muscle contraction
/ Neuroplasticity
/ neurorehabilitation
/ Neuroscience
/ Neurosciences. Biological psychiatry. Neuropsychiatry
/ Patients
/ RC321-571
/ Recovery of function
/ Rehabilitation
/ Spasticity
/ Stroke
/ Walking
2023
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Brain–computer interface treatment for gait rehabilitation in stroke patients
by
Kyousuke Kamada
, Christoph Guger
, Rupert Ortner
, Brendan Z. Allison
, Tim J. Von Oertzen
, Woosang Cho
, Marc Sebastián-Romagosa
, Sebastian Sieghartsleitner
, Steven Laureys
in
Balance
/ BCI
/ Brain
/ brain–computer interfaces
/ Central nervous system
/ Clinical trials
/ Computer applications
/ Feedback
/ Fitness equipment
/ functional electrical stimulation
/ Gait
/ Implants
/ lower limb
/ Medical equipment
/ Mental task performance
/ Muscle contraction
/ Neuroplasticity
/ neurorehabilitation
/ Neuroscience
/ Neurosciences. Biological psychiatry. Neuropsychiatry
/ Patients
/ RC321-571
/ Recovery of function
/ Rehabilitation
/ Spasticity
/ Stroke
/ Walking
2023
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Do you wish to request the book?
Brain–computer interface treatment for gait rehabilitation in stroke patients
by
Kyousuke Kamada
, Christoph Guger
, Rupert Ortner
, Brendan Z. Allison
, Tim J. Von Oertzen
, Woosang Cho
, Marc Sebastián-Romagosa
, Sebastian Sieghartsleitner
, Steven Laureys
in
Balance
/ BCI
/ Brain
/ brain–computer interfaces
/ Central nervous system
/ Clinical trials
/ Computer applications
/ Feedback
/ Fitness equipment
/ functional electrical stimulation
/ Gait
/ Implants
/ lower limb
/ Medical equipment
/ Mental task performance
/ Muscle contraction
/ Neuroplasticity
/ neurorehabilitation
/ Neuroscience
/ Neurosciences. Biological psychiatry. Neuropsychiatry
/ Patients
/ RC321-571
/ Recovery of function
/ Rehabilitation
/ Spasticity
/ Stroke
/ Walking
2023
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Brain–computer interface treatment for gait rehabilitation in stroke patients
Journal Article
Brain–computer interface treatment for gait rehabilitation in stroke patients
2023
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Overview
The use of Brain–Computer Interfaces (BCI) as rehabilitation tools for chronically ill neurological patients has become more widespread. BCIs combined with other techniques allow the user to restore neurological function by inducing neuroplasticity through real-time detection of motor-imagery (MI) as patients perform therapy tasks. Twenty-five stroke patients with gait disability were recruited for this study. Participants performed 25 sessions with the MI-BCI and assessment visits to track functional changes during the therapy. The results of this study demonstrated a clinically significant increase in walking speed of 0.19 m/s, 95%CI [0.13–0.25],
p
< 0.001. Patients also reduced spasticity and improved their range of motion and muscle contraction. The BCI treatment was effective in promoting long-lasting functional improvements in the gait speed of chronic stroke survivors. Patients have more movements in the lower limb; therefore, they can walk better and safer. This functional improvement can be explained by improved neuroplasticity in the central nervous system.
Publisher
Frontiers Media SA,Frontiers Research Foundation,Frontiers Media S.A
Subject
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