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Force depression following a stretch‐shortening cycle depends on the amount of residual force enhancement established in the initial stretch phase

机译:拉伸缩短周期后的力降低取决于初始拉伸阶段建立的残余力增强量

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摘要

Studies on residual force enhancement (rFE) and residual force depression (rFD) of the muscle‐tendon unit (MTU) have typically been conducted independent of each other, with little information available on how stretch‐induced rFE affects the shortening phase and the steady‐state MTU isometric force at the end of stretch‐shortening cycles (SSCs). We showed previously that when rFE is kept constant, but the force at the end of the stretch is varied by changing the stretch speed, the steady‐state forces at the end of SSCs were the same. These results led to the hypothesis that the amount of rFE of the MTU established in the initial stretch phase of SSCs determines the steady‐state force following the shortening phase of SSCs. This study was aimed at testing this hypothesis. Steady‐state MTU isometric thumb adduction forces were measured for pure isometric contractions, following pure shortening contractions, following pure stretch contractions, and following SSCs with constant shortening speed and magnitude. However, two stretch magnitudes (30° and 10° thumb abduction) and stretch speeds (15°/sec and ~ 60°/sec, respectively) were chosen such that forces at the end of the stretch phase of the SSCs were the same, while rFE differed substantially. As hypothesized, the steady‐state isometric MTU forces following SSCs were positively related to the stretch‐magnitude dependent amount of rFE established in the stretch phase and were independent of the force reached at the end of the stretch phase in SSCs. Among many competing theories, these results can potentially be explained with the idea that there is a length‐specific engagement of a passive structural element at the initial length of muscle activation.
机译:肌腱单元(MTU)的残余力增强(rFE)和残余力降低(rFD)的研究通常是相互独立进行的,关于拉伸诱导的rFE如何影响缩短阶段和稳定的信息很少。延伸缩短周期(SSC)结束时的状态MTU等距力。我们以前曾证明,当rFE保持恒定,但通过改变拉伸速度来改变拉伸结束时的力时,SSC结束时的稳态力是相同的。这些结果导致一个假设,即在SSC的初始拉伸阶段建立的MTU的rFE量决定了SSC缩短阶段之后的稳态力。这项研究旨在检验该假设。测量了纯等距收缩,纯缩短收缩后,纯拉伸收缩后以及具有恒定缩短速度和幅度的SSC的稳态MTU等距拇指内收力。但是,选择了两个拉伸幅度(30°和10°拇指外展)和拉伸速度(分别为15°/ sec和〜60°/ sec),以使SSC拉伸阶段结束时的力相同,而rFE则有很大差异。如假设的那样,SSC后的稳态等距MTU力与在拉伸阶段建立的依赖于拉伸量的rFE呈正相关,并且与SSC拉伸阶段结束时达到的力无关。在许多竞争性理论中,这些结果可能可以用以下概念来解释:在肌肉激活的初始长度处,被动结构元件存在特定长度的接合。

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