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产生前臂旋后的单一等效肌肉的力学特性。

Mechanical properties of a single equivalent muscle producing forearm supination.

作者信息

Baildon R W, Chapman A E

出版信息

J Biomech. 1983;16(10):811-9. doi: 10.1016/0021-9290(83)90005-2.

Abstract

Muscles involved in forearm supination in man were analyzed in terms of a two component muscle model. The properties of the contractile component and series elastic component were determined by a series of dynamic contractions at four levels of perceived exerted effort. Generally characteristics were found to be highly non-linear, however at submaximal effort levels mechanical relationships contained long linear segments. This was interpreted as an attempt to make muscle behaviour more linear and thus more predictable. The outlined method is not limited to forearm supination, and allows description not only of muscle properties, but also of strategies employed in the use of muscles. When determined muscle characteristics were used in a validated muscle model, accurate prediction of contractions for individual subjects was possible.

摘要

运用双成分肌肉模型对参与人类前臂旋后的肌肉进行了分析。通过在四个自觉用力水平上进行一系列动态收缩,确定了收缩成分和串联弹性成分的特性。总体而言,发现这些特性具有高度非线性,但在次最大用力水平时,力学关系包含较长的线性段。这被解释为使肌肉行为更具线性从而更具可预测性的一种尝试。所概述的方法不仅限于前臂旋后,它不仅能够描述肌肉特性,还能描述肌肉使用中所采用的策略。当将所确定的肌肉特性用于经过验证的肌肉模型时,就有可能准确预测个体受试者的收缩情况。

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