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1
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0018654889
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Physiology and mathematics of myoelectric signals
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June
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C. J. DeLuca, “Physiology and mathematics of myoelectric signals,” IEEE Trans. Biomed. Eng., vol. BME-26, pp. 413–420, June 1979.
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(1979)
IEEE Trans. Biomed. Eng.
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DeLuca, C.J.1
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2
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0017489262
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Signal processing for multistate myoelectric channel
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May
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P. A. Parker, J. A. Stuller, and R. N. Scott, “Signal processing for multistate myoelectric channel,” Proc. IEEE, vol. 65, pp. 662–674, May 1977.
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(1977)
Proc. IEEE
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Parker, P.A.1
Stuller, J.A.2
Scott, R.N.3
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4
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84915558045
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Myoelectric control
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B. W. Watson and D. W. Hill, Eds. London, England: Peregrinus
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R. N. Scott, P. A. Parker, and V. A. Dunfield, “Myoelectric control,” in IEE Medical Electronics Monographs, Vol. 7–12, B. W. Watson and D. W. Hill, Eds. London, England: Peregrinus, 1979, pp. 141–169.
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IEE Medical Electronics Monographs
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Scott, R.N.1
Parker, P.A.2
Dunfield, V.A.3
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5
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0018654321
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Sequential multistate EMG processor
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Oct.
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S. Fleisher and E. Shwedyk, “Sequential multistate EMG processor,” IEEE Trans. Biomed. Eng., vol. BME-26, pp. 549–556, Oct. 1979.
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(1979)
IEEE Trans. Biomed. Eng.
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Fleisher, S.1
Shwedyk, E.2
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6
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0016482611
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Functional separation of EMG signals via ARMA identification methods for prosthesis control purposes
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Mar.
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D. Graupe and W. K. Cline, “Functional separation of EMG signals via ARMA identification methods for prosthesis control purposes,” IEEE Trans. Syst., Man, Cybern., vol. SMC-5, pp. 252–259, Mar. 1975.
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(1975)
IEEE Trans. Syst., Man, Cybern.
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Graupe, D.1
Cline, W.K.2
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7
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0019226631
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Myoelectric signal processing: Optimal estimation applied to electromyography—Part I: Derivation of the optimal myoprocessor
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July
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N. Hogan and R. W. Mann, “Myoelectric signal processing: Optimal estimation applied to electromyography—Part I: Derivation of the optimal myoprocessor,” IEEE Trans. Biomed. Eng., vol. BME-27, pp. 382–395,July 1980.
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IEEE Trans. Biomed. Eng.
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Hogan, N.1
Mann, R.W.2
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8
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Signal versus noise characteristics of filtered EMG used as a control source
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Jan.
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J. G. Kreifeldt, “Signal versus noise characteristics of filtered EMG used as a control source,” IEEE Trans. Biomed. Eng., vol. BME-18, pp. 16–22, Jan. 1971.
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(1971)
IEEE Trans. Biomed. Eng.
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Kreifeldt, J.G.1
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9
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0015025662
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Dynamic relationship between isometric muscle tension and the electromyogram in man
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G. L. Gottlieb and G. C. Agarwal, “Dynamic relationship between isometric muscle tension and the electromyogram in man,” J. Appl. Physiol., vol. 30, pp. 345–351, 1971.
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J. Appl. Physiol.
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Gottlieb, G.L.1
Agarwal, G.C.2
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10
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0019732777
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Frequency parameters of the myoelectric signal as a measure of muscle conduction velocity
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July
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F. B. Stulen and C. J. DeLuca, “Frequency parameters of the myoelectric signal as a measure of muscle conduction velocity,” IEEE Trans. Biomed. Eng., vol. BME-28, pp. 515–523, July 1981.
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(1981)
IEEE Trans. Biomed. Eng.
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Stulen, F.B.1
DeLuca, C.J.2
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11
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0019732788
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Effects of load on myoelectric signals: The ARIMA representation
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May
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M. H. Sherif, R. J. Gregor, and J. Lyman, “Effects of load on myoelectric signals: The ARIMA representation,” IEEE Trans. Biomed. Eng., vol. BME-28, pp. 411–416, May 1981.
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IEEE Trans. Biomed. Eng.
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Sherif, M.H.1
Gregor, R.J.2
Lyman, J.3
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13
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0017621358
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Anonstationary model for the electromyogram
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E. Shwedyk, R. Balasubramanian, and R. N. Scott, “Anonstationary model for the electromyogram,” IEEE Trans. Biomed. Eng., vol. BME-24, pp. 417–424, 1977.
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(1977)
IEEE Trans. Biomed. Eng.
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Shwedyk, E.1
Balasubramanian, R.2
Scott, R.N.3
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14
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85069382722
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An analysis of surface-detected EMG as amplitude-modulated noise and logarithmic detection
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Chicago, IL, session 7–6
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J. G. Kreifeldt, “An analysis of surface-detected EMG as amplitude-modulated noise and logarithmic detection,” in Proc. 8th Int. Conf. Med. Biol. Eng., Chicago, IL, session 7–6, 1969.
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Kreifeldt, J.G.1
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