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首页> 外文期刊>European Journal of Applied Physiology >The shift in muscle’s length-tension relation after exercise attributed to increased series compliance
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The shift in muscle’s length-tension relation after exercise attributed to increased series compliance

机译:运动后肌肉长度-张力关系的改变归因于系列顺应性的增加

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摘要

Eccentric exercise can produce damage to muscle fibres. Here damage indicators are measured in the medial gastrocnemius muscle of the anaesthetised cat after eccentric contractions on the descending limb of the muscle’s length-tension relation, compared with eccentric contractions on the ascending limb and concentric contractions on the descending limb. One damage indicator is a shift of the optimum length for peak active tension, in the direction of longer muscle lengths. The shift has been attributed to an increase in muscle compliance. It is a corollary of a current theory for the mechanism of the damage. With the intention of seeking further support for the theory, in these experiments we test the idea that other damage indicators, specifically the fall in twitch:tetanus ratio and in muscle force are due, in part, to such an increase in compliance. This was tested in an undamaged muscle by insertion of a compliant spring (0.19 mm N?1) in series with the muscle. This led to a fall in tetanic tension by 17%, a shift in optimum length of 1.7 mm in the direction of longer muscle lengths and a fall in twitch tetanus ratio by 15%. The fall in tension is postulated to be due to development of non-uniform sarcomere lengths within muscle fibres. It is concluded that after a series of eccentric contractions of a muscle, the fall in force is the result of a number of interdependent factors, not all of which are a direct consequence of the damage process.
机译:偏心运动可能会损坏肌纤维。在此,损伤指标是在肌肉的长度-张力关系的下降肢体上进行偏心收缩后,与上升肢体上的偏心收缩和下降肢体上的同心收缩相比,对麻醉猫的腓肠肌内侧进行测量的。一个损害指标是峰值活动张力的最佳长度朝更长的肌肉长度方向移动。该变化归因于肌肉顺应性的增加。这是损害机理的最新理论的推论。为了寻求对该理论的进一步支持,在这些实验中,我们测试了以下想法:其他损伤指标,特别是抽搐:破伤风比例和肌肉力量的下降,部分原因是这种顺应性的增加。通过在与肌肉串联的顺应弹簧(0.19 mm N?1 )插入中对未损坏的肌肉进行测试。这导致破伤风张力下降了17%,最佳长度在更长的肌肉方向上偏移了1.7 mm,抽搐破伤风比率下降了15%。据推测,张力下降是由于肌纤维内肌节长度的不均匀发展所致。结论是,在肌肉发生一系列离心收缩之后,力量下降是许多相互依赖的因素造成的,并非所有因素都是损伤过程的直接结果。

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