EEG-based BCI for the linear control of an upper-limb neuroprosthesis

  • Vidaurre, Carmen
  • Klauer, Christian
  • Schauer, Thomas
  • Ramos-Murguialday, Ander
  • Mueller, Klaus-Robert
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초록

Assistive technologies help patients to reacquire interacting capabilities with the environment and improve their quality of life. In this manuscript we present a feasibility study in which healthy users were able to use a non-invasive Motor Imagery (MI)-based brain computer interface (BCI) to achieve linear control of an upper-limb functional electrical stimulation (FES) controlled neuro-prosthesis. The linear control allowed the real-time computation of a continuous control signal that was used by the FES system to physically set the stimulation parameters to control the upper-limb position. Even if the nature of the task makes the operation very challenging, the participants achieved a mean selection accuracy of 82.5% in a target selection experiment. An analysis of limb kinematics as well as the positioning precision was performed, showing the viability of using a BCI FES system to control upper-limb reaching movements. The results of this study constitute an accurate use of an online non-invasive BCI to operate a FES-neuroprosthesis setting a step toward the recovery of the control of an impaired limb with the sole use of brain activity. (C) 2016 IPEM. Published by Elsevier Ltd. All rights reserved.

키워드

Brain computer interfacingMotor imageryNeuralprosthesisFunctional electrical stimulationBRAIN-COMPUTER INTERFACESMOTOR IMAGERY
제목
EEG-based BCI for the linear control of an upper-limb neuroprosthesis
저자
Vidaurre, CarmenKlauer, ChristianSchauer, ThomasRamos-Murguialday, AnderMueller, Klaus-Robert
DOI
10.1016/j.medengphy.2016.06.010
발행일
2016-11
유형
Article
저널명
Medical Engineering & Physics
38
11
페이지
1195 ~ 1204