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Functionality indexes assessed through a simple model of muscle activation, fatigue and recovery

Functionality indexes assessed through a simple model of muscle activation, fatigue and recovery
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摘要 A nonlinear dynamical system is proposed as a qualitative mathematical model with the twofold aim to reasonably describe the force behavior in a fatiguing sub-maximal contraction and to be possibly employed in assessing muscular activation indexes. The model's properties are studied in terms of its equilibria and their stability properties and the existence of the fatigue equilibrium is ensured as the only system's attractor in the feasibility range of the parameters. Suitable mathematical indicators -- related to the dynamical properties of resilience and reactivity -- are introduced to characterize the asymptotic and the transient system's behavior. The practical impact of the analytical results is elucidated and a connection is established between the introduced mathematical indicators and muscle functionality indexes as rate of force development, task failure time and complete restore time. Experimental validation with handgrip force signal at high load and possible practical applications are also presented.
出处 《International Journal of Biomathematics》 2014年第2期189-210,共22页 生物数学学报(英文版)
关键词 Fatigue equilibrium bifurcation analysis asymptotic and transient behavior muscle functionality indexes sub-maximal fatiguing contractions. 数学模型 功能指标 肌肉 疲劳 活化 评估 非线性动力系统 受力行为
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