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Effects of series elasticity and activation conditions on muscle power output and efficiency

机译:系列弹性和激活条件对肌肉力量输出和效率的影响

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摘要

The activation of a muscle depends on the function that it is performing and on the architectural properties of that muscle; the two are inextricably linked. Activation conditions such as activation timing, duration and amplitude can be varied throughout a cyclical movement (such as locomotion) and the length change of the whole muscle tendon unit (MTU) can also be varied. Architecturally, muscles have a range of fibre lengths, maximum force-producing capabilities and stiffness of the series elastic element (SEE). In the present work we use a model to explore the relationship between power output and efficiency of a muscle across a range of contraction conditions. We have also examined the mechanical and energetic effects of changing muscle architecture within the model. Our results indicate that whilst there are clear optimal conditions for achieving maximum power output and maximum efficiency, the design of the muscle allows high levels of both to be achieved over a range of activation conditions. This range changes with both SEE compliance and the amplitude of the cyclical length change. The results suggest that a compliant SEE allows a muscle to function closer to the maximum of both power output and efficiency. In addition, by varying the amplitude of the activation level, the efficiency can theoretically remain unchanged, whilst the power output can be modulated.
机译:肌肉的激活取决于其执行的功能以及该肌肉的结构特性。两者之间有着千丝万缕的联系。在整个循环运动(例如运动)中,可以改变诸如激活时间,持续时间和幅度之类的激活条件,还可以改变整个肌腱单元(MTU)的长度变化。在结构上,肌肉具有一系列的纤维长度,最大的产生力的能力以及串联弹性元件(SEE)的刚度。在当前的工作中,我们使用一个模型来探索在一系列收缩条件下肌肉的力量输出和效率之间的关系。我们还检查了模型中改变肌肉结构的机械和能量作用。我们的结果表明,尽管有明确的最佳条件来实现最大功率输出和最大效率,但肌肉的设计允许在一系列激活条件下实现高水平的两者。该范围随SEE顺应性和周期长度变化幅度的变化而变化。结果表明,顺应性SEE可使肌肉的功能更接近功率输出和效率的最大值。另外,通过改变激活水平的幅度,理论上效率可以保持不变,而功率输出可以被调制。

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