Next-generation decomposition of multi-channel EMG signals
Houston, Oct
S. H. Nawab, R. P. Wotiz, L. M. Hochstein, and C. J. De Luca, "Next-generation decomposition of multi-channel EMG signals", in Proc. 2nd Joint Meeting of the IEEE Engineering in Medicine and Biology Society and the Biomedical Engineering Society, Houston, Oct. 2002, pp. 36-37.
Improved resolution of pulse superpositions in a knowledge-based system for EMG decomposition
Sept. 1-5, San Francisco, pp
S. H. Nawab, R. P. Wotiz, and C. J. De Luca, "Improved resolution of pulse superpositions in a knowledge-based system for EMG decomposition," in Proc. 26'th Int. Conf. of the IEEE Engineering in Medicine and Biology Society, Sept. 1-5, 2004, San Francisco, pp. 69-71.
C. J. De Luca, A. Adam, R. P. Wotiz, L. D. Gilmore, and S. H. Nawab, "Decomposition of surface EMG signals", Journal of Neurophysiology, 96:1646-1657, Sept. 2006.
IPUS: An architecture for the integrated processing and understanding of signals
V. R. Lesser, S. H. Nawab, and F. I. Klassner, "IPUS: an architecture for the integrated processing and understanding of signals," Artificial Intelligence, 77 pp. 129-171, 1995.
A C++ software environment for the development of embedded signal processing systems
Detroit
J. M. Winograd and S. H. Nawab, "A C++ software environment for the development of embedded signal processing systems," in Proc. IEEE Int. Conf. Acoustics, Speech and Signal Processing, Detroit, 1995, vol. 4, pp. 2715-2718.
A procedure for decomposing the myoelectric signal into its constituent action potentials - Part I: Technique, theory, and implementation
Mar
R. S. LeFever, and C. J. De Luca, "A procedure for decomposing the myoelectric signal into its constituent action potentials - Part I: Technique, theory, and implementation," IEEE Trans. Biomed. Eng., vol. BME-29, no. 3, pp. 149-157, Mar. 1982.