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活跃肌肉对机械能的储存与释放:一种非弹性机制?

Storage and release of mechanical energy by active muscle: a non-elastic mechanism?

作者信息

Cavagna G A, Mazzanti M, Heglund N C, Citterio G

出版信息

J Exp Biol. 1985 Mar;115:79-87. doi: 10.1242/jeb.115.1.79.

Abstract

In frog muscle fibres, tetanically stimulated at a sarcomere length of about 2 micron, stretched at a velocity of 1 lengths-1 and released against a force equal to the maximum isometric, P0, a phase of rapid isotonic shortening takes place after release. As the amplitude of the stretch is increased from 1.5 to 9% of the initial length: (1) the amount of rapid isotonic shortening increases up to 9-10 nm per half sarcomere and (2) the stiffness of the fibre (an indication of the number of bridges attached) decreases to a value about equal to that measured during an isometric contraction. If a 5-10 ms delay is left between the end of stretch and release, the amount of rapid isotonic shortening increases to about 12 nm hs-1. A 300-500 ms delay, however, results in a decrease in rapid isotonic shortening to about 5 nm hs-1 and also results in a velocity transients against P0 that are similar to those described during release from a state of isometric contraction. It is concluded that the force attained after large, fast stretches is due to a greater force developed by each bridge and not to a greater number of bridges. After the elastic recoil (when the force is suddenly reduced to P0), these strained bridges are able to shorten by about 12 nm hs-1, suggesting that, during and immediately after stretching, they are charged to levels of potential energy greater than those attained in an isometric contraction.

摘要

在青蛙肌肉纤维中,当肌节长度约为2微米时进行强直刺激,以1个肌节长度每秒的速度拉伸,并在等于最大等长收缩力P0的力下释放,释放后会出现快速等张收缩阶段。随着拉伸幅度从初始长度的1.5%增加到9%:(1)快速等张收缩的量增加到每个半肌节9 - 10纳米;(2)纤维的刚度(附着桥的数量的指标)降低到约等于等长收缩时测量的值。如果在拉伸结束和释放之间留出5 - 10毫秒的延迟,快速等张收缩的量会增加到约12纳米每秒。然而,300 - 500毫秒的延迟会导致快速等张收缩减少到约5纳米每秒,并且还会导致相对于P0的速度瞬变,类似于从等长收缩状态释放时所描述的情况。得出的结论是,在大的、快速拉伸后达到的力是由于每个桥产生的更大的力,而不是由于更多的桥。在弹性回缩后(当力突然降至P0时),这些应变桥能够以约12纳米每秒的速度缩短,这表明在拉伸期间和拉伸后立即,它们被充电到比等长收缩中达到的势能水平更高的水平。

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