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静息状态下分离的蛙肌纤维中短程弹性对肌节长度的依赖性。

The dependence of the short-range elasticity on sarcomere length in resting isolated frog muscle fibres.

作者信息

Haugen P, Sten-Knudsen O

出版信息

Acta Physiol Scand. 1981 Jun;112(2):113-20. doi: 10.1111/j.1748-1716.1981.tb06793.x.

Abstract

The tension response of a resting muscle fibre to a sudden small stretch (ca. 1% of the fibre length) at constant velocity was analyzed according to a mechanical model in which two components are arranged in parallel: (i) The parallel elastic component (PEC) which is responsible for the resting tension of the fibre. (ii) The short-range elastic component (SREC) which has a highly non-linear tension response: Initially, the tension increases linearly with stretch, but with further stretch the increase in tension subsides and a steady tension level is attained. Both the initial short-range elastic stiffness and the steady state tension level increased with increasing sarcomere length up to 2.9-3.3 micrometer where both variables reached maximum values. The maximum value of the steady tension level was about 1% of the maximum twitch tension. With further increase of sarcomere length both the short-range elastic stiffness and the steady tension level decreased and approached zero at a sarcomere length of about 3.7 micrometer. The structural basis for the SREC is considered to be myosin heads which are cross-linking the thick and the thin filaments even in the resting state of the fibre.

摘要

根据一个力学模型,分析了静息肌纤维在恒定速度下对突然的小拉伸(约为纤维长度的1%)的张力反应。在该模型中,两个成分并联排列:(i)平行弹性成分(PEC),它负责纤维的静息张力。(ii)短程弹性成分(SREC),其具有高度非线性的张力反应:最初,张力随拉伸呈线性增加,但随着进一步拉伸,张力增加趋于平稳并达到稳定的张力水平。初始短程弹性刚度和稳态张力水平均随肌节长度增加而增加,直至2.9 - 3.3微米,此时两个变量均达到最大值。稳态张力水平的最大值约为最大单收缩张力的1%。随着肌节长度进一步增加,短程弹性刚度和稳态张力水平均下降,在肌节长度约为3.7微米时接近零。SREC的结构基础被认为是即使在纤维静息状态下也使粗、细肌丝交联的肌球蛋白头部。

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