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首页> 外文期刊>The Journal of Experimental Biology >Neural control of lengthening contractions
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Neural control of lengthening contractions

机译:延长收缩的神经控制

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A number of studies over the last few decades have established that the control strategy employed by the nervous system during lengthening (eccentric) differs from those used during shortening (concentric) and isometric contractions. The purpose of this review is to summarize current knowledge on the neural control of lengthening contractions. After a brief discussion of methodological issues that can confound the comparison between lengthening and shortening actions, the review provides evidence that untrained individuals are usually unable to fully activate their muscles during a maximal lengthening contraction and that motor unit activity during submaximal lengthening actions differs from that during shortening actions. Contrary to common knowledge, however, more recent studies have found that the recruitment order of motor units is similar during submaximal shortening and lengthening contractions, but that discharge rate is systematically lower during lengthening actions. Subsequently, the review examines the mechanisms responsible for the specific control of maximal and submaximal lengthening contractions as reported by recent studies on the modulation of cortical and spinal excitability. As similar modulation has been observed regardless of contraction intensity, it appears that spinal and corticospinal excitability are reduced during lengthening compared with shortening and isometric contractions. Nonetheless, the modulation observed during lengthening contractions is mainly attributable to inhibition at the spinal level.
机译:最近几十年的许多研究已经确定,神经系统在延长(离心)过程中采用的控制策略与缩短(同心)和等距收缩过程中采用的控制策略不同。这篇综述的目的是总结关于延长收缩的神经控制的当前知识。在简要讨论了可能混淆拉长动作和拉长动作之间的比较的方法学问题之后,该评论提供了证据,即未经训练的个体通常在最大拉长收缩期间无法完全激活其肌肉,并且在最大拉长动作期间的运动单位活动与在缩短动作中。但是,与常识相反,最近的研究发现,在最大程度的缩短和延长收缩过程中,运动单元的募集顺序相似,但是在延长动作中,排泄速率会系统地降低。随后,审查审查负责最大和次最大延长收缩的具体控制的机制,如最近对皮质和脊柱兴奋性调制的研究报道。由于已经观察到类似的调节,而与收缩强度无关,因此与缩短和等距收缩相比,在延长过程中脊柱和皮质脊髓兴奋性似乎降低了。然而,在延长收缩期间观察到的调节主要归因于在脊柱水平的抑制。

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