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首页> 外文期刊>Journal of Muscle Research and Cell Motility >Mechanism of force enhancement during stretching of skeletal muscle fibres investigated by high time-resolved stiffness measurements
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Mechanism of force enhancement during stretching of skeletal muscle fibres investigated by high time-resolved stiffness measurements

机译:通过高时间分辨刚度测量研究骨骼肌纤维拉伸过程中力的增强机理

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摘要

Stretching of active muscles leads to a great enhancement of the force developed without increased ATP consumption. The mechanism of force enhancement is still debated and it is not clear if it is due to increased crossbridge strain or to a stretch-induced increase in crossbridge number. The present study, performed on single fibres from tibialis anterior or interosseus muscles of the frog at 5 C, was aimed at clarifying this point. A striation follower device was used to measure sarcomere length changes. Force was measured during the application of stretches (0.15-3.9 ms duration, 3-7.8 nm per half-sarcomere amplitude) to activated fibres. Small 4 kHz sinusoidal length oscillations, superimposed on the stretches, were used to calculate fibre stiffness with high time resolution. Stiffness increased during the stretch then subsequently decayed, all in parallel with tension. Likewise, during quick releases, stiffness decreased during the release then subsequently recovered in parallel with tension. Comparison of tension and stiffness both during the tetanus rise and also during stretches which doubled tension, imposed on the tetanus rise, indicated that stretch-induced crossbridge recruitment was only about 11 %, suggesting that force enhancement by stretching is mainly due to an increase of individual crossbridge force, whereas crossbridge recruitment plays only a minor role. The accompanying stiffness changes can be explained by non-linearity of myofilament compliance.
机译:伸展活跃的肌肉会大大增强所产生的力量,而不会增加ATP的消耗。力增强的机制仍在争论中,尚不清楚是否是由于增加的跨桥应变或由于拉伸引起的跨桥数量增加所致。本研究旨在在5 C下对青蛙胫骨前肌或骨间肌的单纤维进行研究。条纹跟踪设备用于测量肌节长度的变化。在向活性纤维施加拉伸(持续时间0.15-3.9 ms,每个半肌节幅度3-7.8 nm)期间测量力。叠加在拉伸线上的4 kHz小正弦波长度振荡用于计算具有高时间分辨率的纤维刚度。在拉伸过程中,刚度增加,然后逐渐减弱,与张力平行。同样,在快速释放过程中,刚度在释放过程中下降,然后与张力平行恢复。在破伤风上升过程中以及在破伤风上升过程中使张力加倍的拉伸过程中,张力和刚度的比较表明,拉伸引起的跨桥募集仅约11%,这表明拉伸引起的力增强主​​要是由于个人过桥部队,而过桥招募只发挥很小的作用。伴随的刚度变化可以通过肌丝顺应性的非线性来解释。

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