뇌파를 이용한 인간-컴퓨터 인터페이스 기술

Brain Computer Interface Technology

  • 황민철 (상명대학교 소프트웨어학부)
  • 발행 : 2003.02.01

초록

키워드

참고문헌

  1. Hiraiwa, A., Shimohara, K. & Tokunaga, Y., 'EEG topography recognition by neural network,' IEEE Engineering in Medicine and Biology, 9(3), pp. 39-42, 1990 https://doi.org/10.1109/51.59211
  2. Kalcher, J., Flotzinger, D., Neuper, Ch., Golly, S. & Pfurtscheller, G., 'Graz brain-computer interface II : towards communication between humans and computers based on online classification of three different EEG patterns,' Medical & Biological Engineering & Computing, pp. 34, 382-388, 1996
  3. Keirn, Z. A. & Aunon, J. I., 'A new mood of communication between man and his surroundings,' IEEE Transactions on Biomedical Engineering, 37 (12), pp. 1209-1214, 1990a https://doi.org/10.1109/10.64464
  4. Keirn, Z. A. & Aunon, J. I., 'Man-machine communciations through brain-wave processings,' IEEE Engineering in Medicine and Biology Magazine, 9, pp. 55-57, 1990b https://doi.org/10.1109/51.62907
  5. Kuhlman, W. N., 'Functional topography of the human mu rhythm,' Electroencephalography and clinical Neurophysiology, 44, pp. 83-93, 1978 https://doi.org/10.1016/0013-4694(78)90107-4
  6. McFarland, D. J., Neat, G. W., Read, R. F. & Wolpaw, J. R., 'An EEG- based method for graded cursor control,' Psychobiology, 21 (1), pp. 77-81, 1993
  7. Pfurtscheller, G., Flotzinger, D. & Neuper, C, 'Differentiation between finger, toe and tongue movement in man based on 40Hz EEG,' Electroencephalography and clinical Neurophysiology, 90, pp. 456-460, 1994a https://doi.org/10.1016/0013-4694(94)90137-6
  8. Pfurtscheller, G. & Neuper, C., 'Event-related synchronization of mu rhythm in the EEG over the cortical hand area in man,' Neuroscience Letters, 174, pp. 93-96, 1994 https://doi.org/10.1016/0304-3940(94)90127-9
  9. Pfurtscheller, G., Pregenzer, M. & Neuper, C, 'Visualization of sensorimotor areas involved in preparation for hand movement based on classification of ${\mu}$ and central ${\beta}$ rhythms in single EEG trials in man,' Neuroscience Letters, 181, pp. 43-46, 1994b https://doi.org/10.1016/0304-3940(94)90556-8
  10. Pfurtscheller, G., Flotzinger, D., Pregenzer, M., Wolpaw, J. R. & McFarland, D., 'EEG-based brain-computer interface (BCI): search for optimal electrode positions and frequency components,' Medical Progress through Technology, 21, pp. 111-121, 1996a
  11. Wolpaw, J. R., McFarland, D. J., Neat, G. W. & Forneris, C. A., 'An EEG-based brain-computer interface for cursor control,' Electroencephalography and clinical Neurophysiology, 78, pp. 252-259, 1991 https://doi.org/10.1016/0013-4694(91)90040-B
  12. Wolpaw, J. R. & McFarland, D. J., 'Multichannel EEG-based brain- computer communication,' Electroencephalography and clinical Neurophysiology, 90, pp. 444-449, 1994 https://doi.org/10.1016/0013-4694(94)90135-X