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疲劳肌肉的力量-速度关系的变化:对功率产生的影响及可能的原因。

Changes in the force-velocity relationship of fatigued muscle: implications for power production and possible causes.

机构信息

Institute for Biomedical Research into Human Movement and Health, Manchester Metropolitan University, Manchester M5 1GD, UK.

出版信息

J Physiol. 2010 Aug 15;588(Pt 16):2977-86. doi: 10.1113/jphysiol.2010.190934. Epub 2010 Jun 14.

Abstract

Slowing of the contractile properties of skeletal muscle is one of the characteristic features of fatigue. First studied as a slowing of relaxation from an isometric contraction, it has become apparent that this slowing is indicative of functional changes in muscle responsible for a major loss of power with all its functional repercussions. There are three factors contributing to the loss of power in mammalian muscle at physiological temperatures, a decrease in isometric force, which mainly indicates a reduction in the number of active cross bridges, a slowing of the maximum velocity of unloaded shortening and an increased curvature of the force-velocity relationship. This latter change is a major cause of loss of power but is poorly understood. It is probably associated with an increase in the proportion of cross bridges in the low force state but there are no clear candidates for the metabolic changes that are responsible for this shift in cross bridge states. The possibility is discussed that the reduction in activating calcium that occurs with metabolically depleted muscle, alters the distribution of cross bridge states, affecting both shortening velocity and curvature.

摘要

骨骼肌收缩性能的减缓是疲劳的特征之一。最初作为等长收缩时弛豫的减缓进行研究,现在已经明显的是,这种减缓表明肌肉的功能发生了变化,导致力量的主要损失及其所有功能的影响。在生理温度下,哺乳动物肌肉的力量损失有三个因素,等长力的降低,这主要表明活性横桥的数量减少,卸载缩短的最大速度减慢以及力-速度关系的曲率增加。后一种变化是力量损失的主要原因,但理解不足。它可能与低力状态下横桥的比例增加有关,但对于导致横桥状态变化的代谢变化还没有明确的候选者。讨论了这样一种可能性,即代谢耗竭的肌肉中发生的激活钙的减少,改变了横桥状态的分布,影响缩短速度和曲率。

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