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施加于青蛙肌肉纤维的长度变化非均匀分布对张力的影响。

The effect on tension of non-uniform distribution of length changes applied to frog muscle fibres.

作者信息

Julian F J, Morgan D L

出版信息

J Physiol. 1979 Aug;293:379-92. doi: 10.1113/jphysiol.1979.sp012895.

Abstract
  1. The stability of sarcomere lengths along single frog twitch fibres was examined, during lengthening and shortening, using a spot follower appparatus to monitor or control the length of a central segment. 2. During active shortening from sarcomere lengths beyond 2.2 micrometer the end sarcomeres shortened dramatically, while much of the fibre did not shorten at all. It is proposed that this is the cause of the tension failing to recover, after the shortening ceased, to the value of isometric tension at the shorter length. 3. During active lenghtening from sarcomere lengths beyond 2.2 micrometer, non-uniformity of stretch was seen, with the middle stretching more than the ends. Some maintained extra tension after stretch above that appropriate to the longer length was found, as were consistent changes in internal movement, and in the shape of the tension record during relaxation. 4. Measurements of stiffness during and after a lengthening suggest that no increased activation is involved. Observation of internal movement during the raised tension after a lengthening contradicts theories involving 'locked on' bridges. 5. From these and other observations, an explanation for the extra tension in terms of non-uniformity of sarcomeres is proposed. The explanation is in accord with that previously suggested for the creep phase of tension rise seen at these lengths.
摘要
  1. 使用光斑跟踪装置监测或控制中央节段的长度,研究了单个青蛙抽动纤维在伸长和缩短过程中肌节长度的稳定性。2. 在肌节长度超过2.2微米的主动缩短过程中,末端肌节急剧缩短,而大部分纤维根本没有缩短。有人提出,这就是缩短停止后张力未能恢复到较短长度时等长张力值的原因。3. 在肌节长度超过2.2微米的主动伸长过程中,观察到拉伸不均匀,中间部分比两端拉伸得更多。发现一些纤维在拉伸后保持了超过与较长长度相应的额外张力,内部运动以及松弛期间张力记录的形状也有持续变化。4. 伸长过程中和伸长后的刚度测量表明,不存在激活增加的情况。对伸长后张力升高期间内部运动的观察与涉及“锁定”桥的理论相矛盾。5. 根据这些及其他观察结果,提出了一种基于肌节不均匀性的额外张力解释。该解释与之前针对在这些长度下观察到的张力上升的蠕变阶段所提出的解释一致。
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e320/1280719/9a5d036d2869/jphysiol00867-0396-a.jpg

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