Brain functional changes in stroke following rehabilitation using brain-computer interface-assisted motor imagery with and without tDCS: a pilot study

M Hu, HJ Cheng, F Ji, JSX Chong, Z Lu… - Frontiers in Human …, 2021 - frontiersin.org
Brain-computer interface-assisted motor imagery (MI-BCI) or transcranial direct current
stimulation (tDCS) has been proven effective in post-stroke motor function enhancement, yet …

Brain plasticity following MI-BCI training combined with tDCS in a randomized trial in chronic subcortical stroke subjects: a preliminary study

X Hong, ZK Lu, I Teh, FA Nasrallah, WP Teo, KK Ang… - Scientific reports, 2017 - nature.com
Brain-computer interface-assisted motor imagery (MI-BCI) or transcranial direct current
stimulation (tDCS) has been used in stroke rehabilitation, though their combinatory effect is …

Using transcranial direct current stimulation to augment the effect of motor imagery-assisted brain-computer interface training in chronic stroke patients—cortical …

E Chew, WP Teo, N Tang, KK Ang, YS Ng… - Frontiers in …, 2020 - frontiersin.org
Introduction: Transcranial direct current stimulation (tDCS) has been shown to modulate
cortical plasticity, enhance motor learning and post-stroke upper extremity motor recovery. It …

Machine learning classification to identify the stage of brain-computer interface therapy for stroke rehabilitation using functional connectivity

R Mohanty, AM Sinha, AB Remsik, KC Dodd… - Frontiers in …, 2018 - frontiersin.org
Interventional therapy using brain-computer interface (BCI) technology has shown promise
in facilitating motor recovery in stroke survivors; however, the impact of this form of …

Brain–computer interface boosts motor imagery practice during stroke recovery

F Pichiorri, G Morone, M Petti, J Toppi… - Annals of …, 2015 - Wiley Online Library
Objective Motor imagery (MI) is assumed to enhance poststroke motor recovery, yet its
benefits are debatable. Brain–computer interfaces (BCIs) can provide instantaneous and …

Motor imagery brain–computer interface rehabilitation system enhances upper limb performance and improves brain activity in stroke patients: a clinical study

W Liao, J Li, X Zhang, C Li - Frontiers in Human Neuroscience, 2023 - frontiersin.org
This study compared the efficacy of Motor Imagery brain-computer interface (MI-BCI)
combined with physiotherapy and physiotherapy alone in ischemic stroke before and after …

BCI training effects on chronic stroke correlate with functional reorganization in motor-related regions: a concurrent EEG and fMRI study

K Yuan, C Chen, X Wang, WC Chu, RK Tong - Brain sciences, 2021 - mdpi.com
Brain–computer interface (BCI)-guided robot-assisted training strategy has been
increasingly applied to stroke rehabilitation, while few studies have investigated the …

Changes in functional connectivity correlate with behavioral gains in stroke patients after therapy using a brain-computer interface device

BM Young, Z Nigogosyan, A Remsik… - Frontiers in …, 2014 - frontiersin.org
Brain-computer interface (BCI) technology is being incorporated into new stroke
rehabilitation devices, but little is known about brain changes associated with its use. We …

Interhemispheric functional reorganization and its structural base after BCI-guided upper-limb training in chronic stroke

K Yuan, X Wang, C Chen, CCY Lau… - … on Neural Systems …, 2020 - ieeexplore.ieee.org
Brain–computer interface (BCI)-guided robot-assisted upper-limb training has been
increasingly applied to stroke rehabilitation. However, the induced long-term neuroplasticity …

Unraveling Transformative Effects after tDCS and BCI Intervention in Chronic Post-Stroke Patient Rehabilitation—An Alternative Treatment Design Study

JPS Lima, LA Silva, D Delisle-Rodriguez, VF Cardoso… - Sensors, 2023 - mdpi.com
Stroke is a debilitating clinical condition resulting from a brain infarction or hemorrhage that
poses significant challenges for motor function restoration. Previous studies have shown the …