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Shortening‐induced force depression is modulated in a time‐ and speed‐dependent manner following a stretch–shortening cycle

机译:在拉伸-缩短循环之后以时间和速度相关的方式来调节缩短引起的力下降

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摘要

The steady‐state isometric force following active muscle shortening or lengthening is smaller (force depression, FD) or greater (residual force enhancement, RFE) than a purely isometric contraction at the corresponding length. The mechanism underlying these phenomena is not explained within the context of the cross‐bridge theory, with few studies investigating the effects of FD and RFE in stretching–shortening cycle (SSC). The purpose of this study was to perform SSC, where the time between the end of stretch and the end of shortening was manipulated by (1) adding a pause between stretch and shortening (protocol 1) or (2) performing the shortening contraction at different speeds (protocol 2). The results show that, in protocol 1, FD was reduced for SSC with a 0‐sec and 0.5‐sec interval between stretching and shortening, but was the same for SSC with a 1‐sec interval compared to the pure FD condition. In protocol 2, FD was reduced for SSC with shortening speeds of 30 and 60°/sec, but was the same for shortening speeds of 15 and 20°/sec compared to the pure FD condition. These findings provide evidence that stretch preceding shortening affects FD in a time‐ and speed‐dependent manner, providing new information on the potential mechanism of FD and RFE.
机译:主动肌肉缩短或拉长后的稳态等距力比相应长度的纯等距收缩要小(力降低,FD)或更大(残余力增强,RFE)。在跨桥理论的背景下没有解释这些现象的机理,很少有研究调查FD和RFE在拉伸-缩短循环(SSC)中的作用。这项研究的目的是进行SSC,其中通过(1)在拉伸和缩短之间添加暂停(协议1)或(2)在不同的位置执行缩短收缩来控制拉伸结束和缩短结束之间的时间。速度(协议2)。结果表明,在协议1中,与纯FD条件相比,对于SSC,在拉伸和缩短之间的间隔为0秒和0.5秒的情况下,FD减少了,但对于间隔为1秒的SSC则减少了FD。在协议2中,与纯FD条件相比,SSC的FD降低了30和60°/ sec的缩短速度,但对于15和20°/ sec的缩短速度却是相同的。这些发现提供了证据,表明伸展前缩短会以时间和速度依赖的方式影响FD,从而提供有关FD和RFE潜在机制的新信息。

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