Activation dynamics for a distribution-moment model of skeletal muscle
β Scribed by Shiping Ma; George I. Zahalak
- Publisher
- Elsevier Science
- Year
- 1988
- Tongue
- English
- Weight
- 352 KB
- Volume
- 11
- Category
- Article
- ISSN
- 0895-7177
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β¦ Synopsis
A mathematical representation is developed of the calcium-mediated processes which activate the contractile machinery of skeletal muscle.
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In the present work, a generic model for the prediction of moment-angle characteristics in individual human skeletal muscles is presented. The model's prediction is based on the equation M = V x Lo(-1)sigma c cos phi x d, where M, V, and Lo are the moment-generating potential of the muscle, the musc
## Abstract In the present paper a new approach for the modelling of fatigue effects in skeletal muscle is proposed. This concept is micromechanically motivated. It incorporates the intramuscular connective tissue (passive part of the material) which surrounds the contractile muscle fibres (active
Skeletal muscles are the primary unit for the movement of the human body, they serve as shock absorber and protect the skeleton system against external loads. By maintaining a certain force level, muscle show fatigue effects, expressed by a decrease of the retentive force. To incorporate such effect