Journal of Korean Institute of Industrial Engineers (대한산업공학회지)
- Volume 5 Issue 2
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- Pages.21-36
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- 1979
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- 1225-0988(pISSN)
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- 2234-6457(eISSN)
A Stochastic Model of Muscle Fatigue in Cyclic Heavy Exertions$\cdots$ Formulation
- Lee, Myun-W. (Seoul National University) ;
- Pollock, Stephen M. (University of Michigan) ;
- Chaffin, Don B. (University of Michigan)
- Published : 1979.12.31
Abstract
Static muscle contractions when prolonged or frequently repeated result in discomfort, fatigue, and musculosketal injuries. An analytic and quantitative model has been developed in order to expand the working knowledge on muscle fatigue. In this paper, three Markov models of muscle fatigue are developed. These models are based on motor unit fatigue-recovery characteristics obtained from information on motor unit behavior as it relates to fatigue and graded exertions. Three successively more realistic models are developed that involve: (1) homogeneous motor units with intensity-dependent fatigue rates and state-independent recovery rates (the HMSI model); (2) homogeneous motor units, intensity-dependent fatigue rates and state-dependent recovery rates (the HMSD model); and (3) non-homogeneous motor units (i.e., Type S and Type F), intensity-dependent fatigue rates and state-dependent recovery rates (the HMSD model). The result indicate that a simple stochastic model provide a means to analyze the complex nature of muscle fatigue in sequential static exertions.
Keywords
- muscle fatigue;
- % MVC (% of maximum voluntary contraction);
- EMG;
- Type S (Slow twitch-high oxldative muscle fibers);
- Type F (Fast twitch-high glycolitic muscle fibers)