Analogue and digital instruments for non-invasive estimation of muscle fibre conduction velocity

Author:

Fiorito A.,Rao S.,Merletti R.

Publisher

Springer Science and Business Media LLC

Subject

Computer Science Applications,Biomedical Engineering

Reference22 articles.

1. Andreassen, S., andArendt-Nielsen, L. (1987): ‘Muscle fiber conduction velocity in motor units of the human anterior tibial muscle—a new size principle parameter’,J. Physiol.,391, pp. 561–571

2. Arendt-Nielsen, L., Zwarts, M. (1989): ‘Measurement of muscle fiber conduction velocity in humans: techniques and applications,’J. Clin. Neurophysiol.,6, pp. 173–190

3. Bonato, P., Knaflitz, M., Merletti, R., andBalestra, G. (1991): ‘Comparison between muscle fiber conduction velocity estimation techniques: spectral matching versus cross-correlation,in Anderson, P., Hobart, D., andDanoff, J. (Eds.): ‘Electromyographical kinesiology’ (Elsevier Science Publisher) pp. 19–22

4. Brody, L., Pollock, M. T., Roy, S. H., de Luca, C. J., andCelli, B. (1991): ‘pH induced effects on median frequency and conduction velocity of the myoelectric signal’,J. Appl. Physiol.,71, pp. 1878–1885

5. Broman, H., Bilotto, G., andde Luca, C. J. (1985): ‘A note on the non-invasive estimation of muscle fiber conduction velocity’,IEEE Trans.,BME-32, pp. 341–344

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