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整个哺乳动物骨骼肌中的非线性刚度-力关系。

Nonlinear stiffness--force relationships in whole mammalian skeletal muscles.

作者信息

Stein R B, Gordon T

出版信息

Can J Physiol Pharmacol. 1986 Sep;64(9):1236-44. doi: 10.1139/y86-209.

Abstract

Small, sinusoidal length changes were superimposed on isometric contractions of fast- and slow-twitch mouse muscles, which were stimulated maximally via their nerves. Stiffness increased with increasing frequency of sinusoidal stimulation, but the relative time course of force and stiffness changes during twitch, tetanic, or partially fused contractions was quite invariant over a range of frequencies in both muscles. Typically, stiffness increases more rapidly than force during contraction and decreases less rapidly during relaxation. This pattern was observed at various temperatures and with various numbers of stimuli. It can be described by a nonlinear relation between stiffness and force with some hysteresis. The presence in the muscle of parallel and series elastic elements, whose stiffness varies with force, may account for the nonlinear relation. This nonlinearity can be used to relate the patterns for summation of force and stiffness observed with brief trains of stimuli under a variety of conditions.

摘要

在通过神经进行最大刺激的情况下,对快速和慢速收缩的小鼠肌肉进行等长收缩时,叠加了微小的正弦长度变化。随着正弦刺激频率的增加,刚度增加,但在两种肌肉的一系列频率范围内,抽搐、强直或部分融合收缩期间力和刚度变化的相对时间进程相当不变。通常,在收缩过程中刚度比力增加得更快,而在松弛过程中刚度下降得更慢。在不同温度和不同刺激次数下都观察到了这种模式。它可以用具有一定滞后现象的刚度和力之间的非线性关系来描述。肌肉中平行和串联弹性元件的存在,其刚度随力而变化,可能解释了这种非线性关系。这种非线性可用于关联在各种条件下用短串刺激观察到的力和刚度总和模式。

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