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Variation of muscle stiffness with tension during tension transients and constant velocity shortening in the frog.

机译:青蛙瞬态拉伸过程中肌肉刚度随张力的变化和恒定速度的缩短。

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摘要

1. The length changes of a central segment of a frog muscle fibre were measured during and after a quick shortening was applied to the end of the fibre, by attaching two markers an using a spot follower apparatus. In this way it was shown that the stiffness of tetanized single frog fibres as mounted in our apparatus was located predominantly in the sarcomeres, and that the ends were comparatively stiff. 2. The stiffness of tetanized frog single fibres at 0 degrees was measured by applying a small 4 kHz sinusoidal length change, and measuring the resultant tension change. This was done during the first few milliseconds after a quick release, and while the fibre was shortening at constant velocity. 3. The stiffness during the fast tension transient after a quick release was always less than the stiffness before release, supporting the idea that the fast recovery is not due to attachment of extra cross-bridges. 4. The stiffness during the steady shortening was always less than when isometric. A line fitted to this stiffness-tension plot, when extended, intercepted the stiffness axis at less than half the isometric value. 5. The slope of the stiffness-force plot during the fast tension transient was consistently and significantly less than the slope of the stiffness-force plot during steady shortening, further supporting the conclusion that only a small part of the decrease seen during shortening could be due to non-linear end compliance. 6. Possible ways of reconciling these results with recent reports of X-ray diffraction suggesting little if any change in the position of myosin heads during steady shortening are discussed.
机译:1.在快速缩短的过程中和之后,通过使用点跟踪仪将两个标记物附着在一起,来测量青蛙肌肉纤维中央部分的长度变化。通过这种方式可以看出,安装在我们设备中的镀钛单青蛙纤维的刚度主要位于肉瘤中,并且末端相对较硬。 2.通过施加一个小的4 kHz正弦波长度变化并测量所得的张力变化,可以测量0度下的钛化青蛙单纤维的刚度。这是在快速释放后的最初几毫秒内完成的,而光纤以恒定速度缩短。 3.快速释放后的快速张力瞬变过程中的刚度始终小于释放前的刚度,从而支持以下观点:快速恢复不是由于附加的跨桥引起的。 4.稳定缩短过程中的刚度始终小于等轴测时的刚度。延伸至该刚度-张力图的直线在小于等轴测值一半时与刚度轴相交。 5.快速拉力瞬变过程中刚度-力图的斜率始终一致,并且显着小于稳定缩短过程中的刚度-力图的斜率,进一步支持了这样的结论,即在缩短过程中,只有一小部分的减少可以由于非线性端部柔顺性。 6.讨论了将这些结果与最近的X射线衍射报告相符的可能方法,该方法表明在稳定缩短过程中肌球蛋白头部的位置变化很小,甚至没有变化。

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