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活化甲壳类动物慢肌的拉伸力学。I. 影响峰值力的因素。

Mechanics of stretch in activated crustacean slow muscle. I. Factors affecting peak force.

作者信息

Chapple W D

机构信息

Department of Physiology and Neurobiology, University of Connecticut, Storrs 06268.

出版信息

J Neurophysiol. 1989 Nov;62(5):997-1005. doi: 10.1152/jn.1989.62.5.997.

Abstract
  1. The active stiffness of ventral superficial abdominal muscle (VSM) of the hermit crab, Pagurus pollicarus, was measured with ramp stretches of different amplitudes and velocities. Active stiffness was calculated by subtracting the peak force produced by passive stretch and the isometric force just before stretch from the peak force produced by stretching active muscle. The result was then divided by stretch length to give stiffness. 2. The relationship between force just before stretch (the level of activation) and active stiffness was curvilinear and was found to apply under a variety of experiment conditions. For pooled data from eight experiments, active stiffness (GN.m-2.m-1) = 3.2stress (MN/m2)-7.6stress2. Decreasing the number of motor units or activating the inhibitor did not alter this relationship nor did the addition of proctolin, octopamine, or 5-HT to the bath. The relationship also applied during the rising phase of isometric tension. However, stiffness declined more rapidly than predicted by this relationship after the end of tetanus. 3. Active stiffness varied inversely with stretch amplitude for fast stretches, and the slope of this relationship increased with increasing muscle activation. At lower stretch velocities, the slope was much less than at rapid stretch velocities, so at low levels of activation and stretch velocity, active stiffness was essentially independent of stretch length. 4. Active stiffness covaried with muscle force as both were sampled at shorter and shorter lengths on the ascending limb of the length-tension curve.(ABSTRACT TRUNCATED AT 250 WORDS)
摘要
  1. 利用不同幅度和速度的斜坡拉伸来测量寄居蟹(Pagurus pollicarus)腹侧浅表腹肌(VSM)的主动刚度。主动刚度的计算方法是,用主动肌肉拉伸产生的峰值力减去被动拉伸产生的峰值力以及拉伸前的等长力,然后将结果除以拉伸长度得出刚度。2. 拉伸前的力(激活水平)与主动刚度之间的关系呈曲线,且在各种实验条件下均适用。对于来自八个实验的汇总数据,主动刚度(GN.m-2.m-1)= 3.2×应力(MN/m2)- 7.6×应力2。减少运动单位数量或激活抑制剂不会改变这种关系,向浴液中添加普罗托林、章鱼胺或5-羟色胺也不会改变。这种关系在等长张力上升阶段也适用。然而,在强直收缩结束后,刚度下降的速度比该关系预测的要快。3. 对于快速拉伸,主动刚度与拉伸幅度成反比,且这种关系的斜率随肌肉激活程度的增加而增大。在较低的拉伸速度下,斜率远小于快速拉伸速度时的斜率,因此在低激活水平和拉伸速度下,主动刚度基本上与拉伸长度无关。4. 主动刚度与肌肉力共同变化,因为在长度-张力曲线的上升支上,两者都是在越来越短的长度下采样的。(摘要截取自250字)

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