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固定端强直收缩期间单根肌纤维的肌节间动力学

Intersarcomere dynamics of single muscle fibers during fixed-end tetani.

作者信息

Lieber R L, Baskin R J

出版信息

J Gen Physiol. 1983 Sep;82(3):347-64. doi: 10.1085/jgp.82.3.347.

Abstract

The contraction dynamics of end and center regions of single fibers have been measured during fixed-end tetani. Experimental control and data acquisition are provided by a digital system that can acquire diffraction data as fast as every 260 microseconds for 300-700 ms. Tension records are simultaneously displayed on a storage oscilloscope. Resting sarcomere length variation between the end and center regions was analogous to that of Gordon et al. (1966). During the rapid rise in force (less than 45 ms), the end regions contract almost twice as fast as the center regions. During the slow rise in force, the velocity of contraction of the end regions was 3.8 times the velocity of stretch of the center regions. In addition, factors that affected the rate and extent of the slow rise in tension also affected the rate and extent of end shortening. In 58% of the cases studied, the amount of shortening observed in the end region was enough to explain the extent of the slow rise in tension. These data support the explanation of creep first proposed by A. V. Hill (1953) and used by Gordon et al. (1966) to justify their use of the back-extrapolation technique in measuring the isometric force-generating capability of a single fiber. These data also indicate that the laser diffraction technique may provide an effective, noninvasive method for studying sarcomere dynamics during creep and related phenomena.

摘要

在固定端强直收缩期间,已对单根纤维的末端和中心区域的收缩动力学进行了测量。实验控制和数据采集由一个数字系统提供,该系统能够以每260微秒一次的速度采集衍射数据,持续300 - 700毫秒。张力记录同时显示在存储示波器上。末端和中心区域之间静息肌节长度的变化与戈登等人(1966年)的情况类似。在力快速上升期间(小于45毫秒),末端区域的收缩速度几乎是中心区域的两倍。在力缓慢上升期间,末端区域的收缩速度是中心区域拉伸速度的3.8倍。此外,影响张力缓慢上升速率和程度的因素也影响末端缩短的速率和程度。在所研究的58%的案例中,在末端区域观察到的缩短量足以解释张力缓慢上升的程度。这些数据支持了A. V. 希尔(1953年)首次提出并被戈登等人(1966年)用于证明他们在测量单根纤维等长力产生能力时使用反向外推技术合理性的蠕变解释。这些数据还表明,激光衍射技术可能为研究蠕变及相关现象期间的肌节动力学提供一种有效的、非侵入性的方法。

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