Brain-Computer Interfaces With Multi-Sensory Feedback for Stroke Rehabilitation: A Case Study

Artif Organs. 2017 Nov;41(11):E178-E184. doi: 10.1111/aor.13054.

Abstract

Conventional therapies do not provide paralyzed patients with closed-loop sensorimotor integration for motor rehabilitation. This work presents the recoveriX system, a hardware and software platform that combines a motor imagery (MI)-based brain-computer interface (BCI), functional electrical stimulation (FES), and visual feedback technologies for a complete sensorimotor closed-loop therapy system for poststroke rehabilitation. The proposed system was tested on two chronic stroke patients in a clinical environment. The patients were instructed to imagine the movement of either the left or right hand in random order. During these two MI tasks, two types of feedback were provided: a bar extending to the left or right side of a monitor as visual feedback and passive hand opening stimulated from FES as proprioceptive feedback. Both types of feedback relied on the BCI classification result achieved using common spatial patterns and a linear discriminant analysis classifier. After 10 sessions of recoveriX training, one patient partially regained control of wrist extension in her paretic wrist and the other patient increased the range of middle finger movement by 1 cm. A controlled group study is planned with a new version of the recoveriX system, which will have several improvements.

Keywords: -stroke rehabilitation functional electrical stimulation neurofeedback; Brain-computer interface.

Publication types

  • Case Reports

MeSH terms

  • Adult
  • Biomechanical Phenomena
  • Brain / physiopathology*
  • Brain Waves
  • Brain-Computer Interfaces*
  • Chronic Disease
  • Discriminant Analysis
  • Electric Stimulation Therapy / instrumentation*
  • Electric Stimulation Therapy / methods
  • Electroencephalography
  • Equipment Design
  • Feedback, Sensory*
  • Female
  • Hand / innervation*
  • Humans
  • Linear Models
  • Male
  • Middle Aged
  • Motor Activity*
  • Paralysis / diagnosis
  • Paralysis / physiopathology
  • Paralysis / rehabilitation*
  • Pattern Recognition, Automated
  • Recovery of Function
  • Signal Processing, Computer-Assisted
  • Stroke / diagnosis
  • Stroke / physiopathology
  • Stroke / therapy*
  • Stroke Rehabilitation / instrumentation*
  • Stroke Rehabilitation / methods
  • Time Factors
  • Treatment Outcome