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拉伸对青蛙横纹肌弹性特性和收缩成分的影响。

Effect of stretching on the elastic characteristics and the contractile component of frog striated muscle.

作者信息

Cavagna G A, Citterio G

出版信息

J Physiol. 1974 May;239(1):1-14. doi: 10.1113/jphysiol.1974.sp010552.

Abstract
  1. The force-velocity relationship and the stress-strain curve of the so-called series elastic component (s.e.c.) of frog sartorius, semitendinosus and gastrocnemius have been determined during shortening against a given force (isotonic quick-release) and at high speed (controlled release): (a) from a state of isometric contraction and (b) after stretching of the contracted muscle. In both cases the muscle was released from the same length: this was usually slightly greater than the muscle's resting length.2. The muscle released immediately after being stretched is able to shorten against a constant force, P, equal to or even greater than the isometric force, P(0), at the same length. When the force P applied to the muscle is reduced below P(0) the velocity of shortening is greater after stretching, and the force-velocity curve is therefore shifted along the velocity axis: the shift is maximal when P is near to P(0) and it decreases rapidly with decreasing P.3. The extent of shortening of the s.e.c. required to make the force fall from P(0) to zero is 50-100% greater when the muscle is released immediately after stretching than when it is released from a state of isometric contraction. This difference is found by using either the controlled release method or the isotonic quick-release method.4. If a time interval is left between the end of stretching and the onset of shortening of the contracted muscle (controlled release method), the length change of the s.e.c., for a given fall of the force, is reduced and approaches that taking place when the muscle is released from a state of isometric contraction.5. Curare does not affect the results described above, indicating that these do not depend on modification of the neuromuscular transmission.6. It is concluded that stretching a contracted muscle modifies temporarily: (a) its elastic characteristics, as shown by the greater amount of mechanical energy released for a given fall of the force at the muscle's extremities, and (b) its contractile machinery, as it is suggested by the change of the force-velocity relationship.
摘要
  1. 在青蛙缝匠肌、半腱肌和腓肠肌所谓的串联弹性成分(s.e.c.)对抗给定力量(等张快速释放)和高速(控制释放)缩短过程中,测定了其力-速度关系和应力-应变曲线:(a) 从等长收缩状态开始;(b) 在收缩肌肉被拉伸后。在这两种情况下,肌肉均从相同长度释放:该长度通常略大于肌肉的静息长度。

  2. 被拉伸后立即释放的肌肉能够对抗等于甚至大于相同长度下等长力P(0)的恒定力量P进行缩短。当施加于肌肉的力量P降至P(0)以下时,拉伸后缩短速度更快,因此力-速度曲线沿速度轴移动:当P接近P(0)时移动最大,且随P减小而迅速减小。

  3. 当肌肉被拉伸后立即释放时,使力量从P(0)降至零所需的s.e.c.缩短程度比从等长收缩状态释放时大50 - 100%。使用控制释放法或等张快速释放法均可发现此差异。

  4. 如果在收缩肌肉拉伸结束与缩短开始之间留出时间间隔(控制释放法),对于给定的力量下降,s.e.c.的长度变化会减小,并接近肌肉从等长收缩状态释放时的变化。

  5. 箭毒不影响上述结果,表明这些结果不依赖于神经肌肉传递的改变。

  6. 得出结论:拉伸收缩的肌肉会暂时改变:(a) 其弹性特性,如在肌肉两端给定力量下降时释放出更多机械能所示;(b) 其收缩机制,如力-速度关系的变化所暗示。

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