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青蛙肌肉纤维中由斜坡拉伸和释放至Po引发的机械瞬变。

Mechanical transients initiated by ramp stretch and release to Po in frog muscle fibers.

作者信息

Cavagna G A, Mazzanti M, Heglund N C, Citterio G

出版信息

Am J Physiol. 1986 Oct;251(4 Pt 1):C571-9. doi: 10.1152/ajpcell.1986.251.4.C571.

Abstract

Single fibers from the tibialis muscle of Rana temporaria were subjected to ramp stretches during tetanic stimulation at a sarcomere length of approximately 2 microns. Immediately after the stretch, or after different time delays, the active fiber was released against a constant force equal to the isometric force (Po) exerted immediately before the stretch. Four phases were detected after release: an elastic recoil of the fiber's undamped elements, a transient rapid shortening, a marked reduction in the velocity of shortening (often to 0), and an apparently steady shortening (sometimes absent). Increasing the amplitude of the stretch from approximately 2 to 10% of the fiber rest length led to an increase in phase 2 shortening from approximately 5 to 10 nm per half-sarcomere. Phase 2 shortening increased further (up to 14 nm per half-sarcomere) if a time interval of 5-10 ms was left between the end of large ramp stretches and release to Po. After 50- to 100-ms time intervals, shortening occurred in two steps of approximately 5 nm per half-sarcomere each. These findings suggest that phase 2 is due to charging, during and after the stretch, of a damped element, which can then shorten against Po in at least two steps of approximately 5 nm/half sarcomere each.

摘要

在大约2微米的肌节长度下,对林蛙胫肌的单根肌纤维进行强直刺激时施加斜坡拉伸。拉伸后立即或经过不同的时间延迟后,将激活的肌纤维以等于拉伸前立即施加的等长力(Po)的恒定力释放。释放后检测到四个阶段:肌纤维无阻尼成分的弹性回缩、短暂的快速缩短、缩短速度显著降低(通常降至0)以及明显的稳定缩短(有时不存在)。将拉伸幅度从肌纤维静息长度的约2%增加到10%,导致第二阶段每半个肌节的缩短从约5纳米增加到10纳米。如果在大斜坡拉伸结束与释放到Po之间留出5-10毫秒的时间间隔,第二阶段的缩短会进一步增加(每半个肌节高达14纳米)。在50-100毫秒的时间间隔后,缩短以每半个肌节约5纳米的两个步骤发生。这些发现表明,第二阶段是由于在拉伸期间和之后对一个阻尼成分进行充电,然后该成分可以至少以每半个肌节约5纳米的两个步骤对抗Po进行缩短。

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