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在固定肌节长度下,测量单收缩过程中收缩力随时间的变化过程。

The time course of the contractile force measured during a twitch under fixed sarcomere length.

作者信息

Haugen P, Sten-Knudsen O

出版信息

J Muscle Res Cell Motil. 1987 Apr;8(2):173-87. doi: 10.1007/BF01753993.

Abstract

A sarcomere length-controlled feedback system was constructed utilizing the laser diffraction technique of Haugen & Sten-Knudsen (1976) to detect sarcomere length changes. The system allowed the sarcomere length to be kept constant within 0.02% during an isometric twitch. The contractile force developed approximates closely to the force exerted by the crossbridges when their translatory movements are prevented. Thus, the force developed under this condition should correspond to the intensity of the active state as defined by A. V. Hill (1949). The time course of the twitch under constant sarcomere length differs substantially from that of the active state curves obtained using quick stretches and quick releases. Thus, the force does not rise quickly to its maximum but rather resembles the fixed-end twitch curve by leading it only slightly (5 ms at 5 degrees C). Its peak value does not reach the level of the tetanic plateau, but is only 9% higher than the maximum fixed-end twitch tension. The force remains above the curve of the fixed-end twitch during its entire course. It is shown that the quick-stretch procedure which results in active state curves as those obtained by A.V. Hill (1949) led to a considerable elongation of the sarcomeres. It is concluded that the slow rise of the contractile force under ordinary isometric conditions is due to properties inherent in the contractile machinery other than those resulting from the extension of series elastic components.

摘要

利用豪根和斯滕 - 克努森(1976年)的激光衍射技术构建了一个肌节长度控制的反馈系统,以检测肌节长度的变化。该系统能使肌节长度在等长收缩时保持在0.02%的误差范围内。当横桥的平移运动被阻止时,所产生的收缩力与横桥施加的力非常接近。因此,在这种条件下产生的力应该与A.V.希尔(1949年)所定义的激活状态的强度相对应。在肌节长度恒定的情况下,收缩的时间进程与通过快速拉伸和快速释放获得的激活状态曲线有很大不同。因此,力不会迅速上升到最大值,而是与固定端收缩曲线相似,只是稍微提前一点(5摄氏度时提前5毫秒)。其峰值未达到强直平台的水平,仅比最大固定端收缩张力高9%。在整个过程中,力始终高于固定端收缩曲线。结果表明,导致如A.V.希尔(1949年)所获得的激活状态曲线的快速拉伸过程会使肌节产生相当大的伸长。结论是,在普通等长条件下收缩力的缓慢上升是由于收缩机制固有的特性,而非串联弹性成分伸展所导致的特性。

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