首页> 美国卫生研究院文献>The Journal of Physiology >Effect of active pre-shortening on isometric and isotonic performance of single frog muscle fibres.
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Effect of active pre-shortening on isometric and isotonic performance of single frog muscle fibres.

机译:主动预缩短对单个青蛙肌肉纤维的等距和等渗性能的影响。

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摘要

1. We studied the effects of shortening history on isometric force and isotonic velocity in single intact frog fibres. Fibres were isometrically tetanized. When force reached a plateau, shortening was imposed, after which the fibre was held isometric again. Isometric force after shortening could then be compared with controls in which no shortening had taken place. 2. Sarcomere length was measured simultaneously with two independent methods: a laser-diffraction method and a segment-length method that detects the distance between two markers attached to the surface of the fibre, about 800 microns apart. 3. The fibre was mounted between two servomotors. One was used to impose the load clamp while the other cancelled the translation that occurred during this load clamp. Thus, translation of the segment under investigation could be minimized. 4. Initial experiments were performed at the fibre level. We found that active preshortening reduced isometric force considerably, thereby confirming earlier work of others. Force reductions as large as 70% were observed. 5. Under conditions in which there were large effects of shortening at the fibre level, we measured sarcomere length changes in the central region of the fibre. These sarcomeres shortened much less than the fibre's average. In fact, when the load was high, these sarcomeres lengthened while the fibre as a whole shortened. Thus, while the fibre-length signal implied that sarcomeres might have shortened to some intermediate length, in reality some sarcomeres were much longer, others much shorter. 6. Experiments performed at the sarcomere level revealed that isometric force was unaffected by previous sarcomere shortening provided the shortening occurred against either a low load or over a short distance. However, if the work done during shortening was high, force after previous shortening was less than if sarcomeres had remained at the final length throughout contraction. The correlation between the force deficit and the work done during shortening was statistically significant (P = 0.0001). 7. Interrupting the tetanus for 0.5-3.0 s did not reverse the effects of shortening on isometric force; at least 5-10 min of rest were required before force recovered completely. 8. Sarcomeres accelerated during the period of shortening under constant load, indicating that the sarcomeres became progressively stronger. However, the acceleration was less than that predicted from the force-velocity relation applicable at each of the sarcomere lengths transversed during shortening. 9. Velocity of shortening appeared to be much more sensitive to previous shortening than isometric force. 10. Results obtained with the diffraction method were the same as those obtained with the segment method.(ABSTRACT TRUNCATED AT 400 WORDS)
机译:1.我们研究了缩短历史记录对完整青蛙纤维等轴测力和等渗速度的影响。纤维经过等距tetanized。当力达到平稳状态时,会进行缩短,然后将纤维再次保持等距。然后可以将缩短后的等距力与未进行缩短的控件进行比较。 2.用两种独立的方法同时测量肌小节的长度:激光衍射法和段长法,该方法检测附着在纤维表面的两个标记之间的距离(相距约800微米)。 3.光纤安装在两个伺服电机之间。一种用于施加负载钳,而另一种则取消在此负载钳期间发生的平移。因此,可以最小化正在调查的片段的翻译。 4.最初的实验是在纤维水平上进行的。我们发现主动预缩短可大大减小等轴测力,从而证实了其他人的早期工作。观察到力降低高达70%。 5.在对纤维水平有很大影响的情况下,我们测量了纤维中心区域的肌节长度变化。这些肉瘤缩短的时间比纤维的平均长度短得多。实际上,当负载较高时,这些肉瘤会延长,而整个纤维会缩短。因此,尽管纤维长度信号暗示肉瘤可能已经缩短到某个中等长度,但实际上一些肉瘤要长得多,而其他肉瘤要短得多。 6.在肌节水平进行的实验表明,等距力不受以前的肌节缩短作用的影响,只要缩短是针对低负荷或短距离发生的。但是,如果缩短过程中的功高,则前一次收缩后的力要小于整个收缩过程中肉瘤保持在最终长度的力。力量不足与缩短过程中所做功之间的相关性具有统计学意义(P = 0.0001)。 7.破伤风持续0.5-3.0 s并没有扭转缩短对等轴测力的影响。力完全恢复之前,至少需要休息5-10分钟。 8.在恒定载荷下缩短期间,肉瘤加速,表明肉瘤逐渐变强。但是,加速度小于根据在缩短过程中横穿的每个肌节长度所适用的力-速度关系所预测的加速度。 9.与等距力相比,缩短的速度似乎对以前的缩短更为敏感。 10.用衍射法得到的结果与用片段法得到的结果相同。(摘要截短为400字)

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