References
- F. H. Chan, Y. S. Yang, F. K. Lam, Y. T. Zhang, and P. A. Parker, 'Fuzzy EMG classification for prosthesis control,' IEEE Trans. on Rehabilitation Engineering, vol. 8, no. 3, pp. 305-311, 2000 https://doi.org/10.1109/86.867872
- N. Ozkaya and M. Nordin, Fundamental Biomechanics; Equilibrium, Motion, and Deformation, Springer, New York, USA, 1998
- Y. Koike and M. Kawato, 'Trajectory formation from surface EMG signals using a neural network model,' Japan EIC, D-II, vol. J77-D-II, no.1, pp.193-203, 1994
- L. Wang and T. S. Buchanan, 'Prediction of joint moments using a neural network mode of muscle activations from EMG signals,' IEEE Trans. on Rehabilitation Engineering, vol. 10, no. 1, pp. 30-37, 2002 https://doi.org/10.1109/TNSRE.2002.1021584
- A. Barreto, S. Scargle, and M. Adjouadi, 'A practical EMG-based human-computer interface for users with motor disabilities,' Journal of Rehabilitation Research & Development, vol. 37, no. 1, pp. 53-63, 2000
- A. Barreto, S. Scargle, and M. Adjouadi, 'Realtime digital EMG/EEG signal processing in a human-computer interface for users with severe motor disabilities,' Proc. of the International Conference on Signal Processing Applications & Technology, Orlando, Florida, November 1-4, 1999
- L. Lee, Neural Fuzzy System, Prentice Hall, 1996
- J. M. Zurada, Introduction to Artificial Neural Systems, West Publishing Company, pp. 206-218, 1992