A Natural Basis for Efficient Brain - Actuated Control

نویسندگان

  • J. Hollander Grill
  • P. H. Peckham
  • A. Welford
  • A. Kuebler
  • B. Kotchoubey
  • T. Hinterberger
  • N. Ghanayim
  • J. Perel
  • R. Lauer
  • P. Peckham
  • E. Marsolais
  • C. Tallon Baudry
  • O. Bertrand
  • C. Delpuech
  • E. Basar
  • C. Basar-Eroglu
  • S. Karakas
  • M. Rodriquez
  • J. Bernal
  • J. Silva
  • A. Reyes
چکیده

The prospect of noninvasive brain-actuated control of computerized screen displays or locomotive devices is of interest to many and of crucial importance to a few ‘locked-in’ subjects who experience near total motor paralysis while retaining sensory and mental faculties. Currently several groups are attempting to achieve brain-actuated control of screen displays using operant conditioning of particular features of the spontaneous scalp electroencephalogram (EEG) including central -rhythms (9–12 Hz). A new EEG decomposition technique, independent component analysis (ICA), appears to be a foundation for new research in the design of systems for detection and operant control of endogenous EEG rhythms to achieve flexible EEG-based communication. ICA separates multichannel EEG data into spatially static and temporally independent components including separate components accounting for posterior alpha rhythms and central activities. We demonstrate using data from a visual selective attention task that ICA-derived -components can show much stronger spectral reactivity to motor events than activity measures for single scalp channels. ICA decompositions of spontaneous EEG would thus appear to form a natural basis for operant conditioning to achieve efficient and multidimensional brain-actuated control in motor-limited and locked-in subjects.

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تاریخ انتشار 2000