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高度拉伸的脊椎动物肌肉纤维中的张力发展。

Tension development in highly stretched vertebrate muscle fibres.

作者信息

Gordon A M, Huxley A F, Julian F J

出版信息

J Physiol. 1966 May;184(1):143-69. doi: 10.1113/jphysiol.1966.sp007908.

Abstract
  1. An apparatus is described by which the length of a selected part of an isolated muscle fibre can be held constant, giving isometric conditions, or alternatively its length can be measured while tension is held constant (isotonic). Control can be switched between length and tension so as to carry out afterloaded contractions with a shortening stop.2. When a part of a fibre with uniform striation spacing is stretched so far that there is presumably no overlap of filaments, the tension developed during an isometric tetanus with this apparatus is very small (not more than 3-5% of the tension developed at optimum length).3. If the tendon ends are held stationary, a fibre with the same initial length develops a large amount of tension (order of 30-40% of tension at optimum length) with a slow time course. This additional tension is due to shortening of the end parts of the fibre, where the striation spacing is smaller and overlap of filaments still exists.4. The resistance to elongation of a part of a fibre where there is no overlap is only slightly increased on stimulation.5. To a first approximation, the results are in good agreement with expectations based on the sliding filament theory. The development of detectable amounts of tension, and of a slight increase of stiffness, on stimulation, are however not expected on the simplest form of this theory; possible explanations are discussed.
摘要
  1. 本文描述了一种装置,利用该装置可使分离的肌纤维选定部分的长度保持恒定,从而实现等长条件,或者在保持张力恒定(等张)的同时测量其长度。可以在长度和张力之间切换控制,以便通过缩短限位器进行后负荷收缩。

  2. 当具有均匀条纹间距的纤维部分被拉伸到可能不存在细丝重叠的程度时,使用该装置在等长强直收缩过程中产生的张力非常小(不超过最佳长度时产生张力的3 - 5%)。

  3. 如果肌腱末端保持固定,具有相同初始长度的纤维会产生大量张力(约为最佳长度时张力的30 - 40%),且时间进程缓慢。这种额外的张力是由于纤维末端部分的缩短,此处条纹间距较小且细丝仍存在重叠。

  4. 在无重叠的纤维部分,刺激时其伸长阻力仅略有增加。

  5. 初步近似来看,结果与基于肌丝滑动理论的预期高度吻合。然而,在该理论的最简单形式下,刺激时产生可检测量的张力以及刚度略有增加是无法预期的;文中讨论了可能的解释。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1909/1357552/735536966196/jphysiol01147-0157-a.jpg

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