A simplified sliding-filament muscle model for simulation purposes

Author:

Dijkstra Sj.,Denier van der Gon J. J.,Blangé T.,Karemaker J. M.,Kramer A. E. J. L.

Publisher

Springer Science and Business Media LLC

Subject

General Medicine

Reference19 articles.

1. Bahler,A.S.: Modelling of mammalian skeletal muscle. Bio Med. Eng. 15, 249–257 (1968).

2. Blangé,T., Karemaker,J.M., Kramer,A.E.J.L.: Elasticity of skeletal muscle in relation to the “sliding filaments” model. Biomechanics II. Basel: S. Karger 1971.

3. Buchthal,F., Schmalbruch,H.: Contraction times and fibre types in intact human muscle. Acta Physiol. Scand. 79, 435–452 (1970).

4. Caplan,S.R.: A characteristic of self regulated linear energy converters: the Hill force-velocity relationship for muscle. J. theor. Biol. 11, 63–86 (1966).

5. Davies,R.E.: A molecular theory of muscle contraction. Nature (London) 199, 1068–1094 (1963).

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2. Muscle contraction: the step-size distance and the impulse-time per ATP;International Journal of Biological Macromolecules;1996-02

3. Muscle Modelling and Force Estimation;IFAC Proceedings Volumes;1985-07

4. An EMG-level muscle model for a fast arm movement to target;Biological Cybernetics;1982-05

5. Muscle, the Motor;Comprehensive Physiology;1981-12

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