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运动单位对废用的适应:从放电率抑制跨越到神经肌肉接头传递的阈值。

Motor unit adaptation to disuse: crossing the threshold from firing rate suppression to neuromuscular junction transmission.

作者信息

Piasecki Mathew

机构信息

Centre of Metabolism, Ageing & Physiology (CoMAP), Medical Research Council/Versus Arthritis UK Centre of Excellence for Musculoskeletal Ageing Research (CMAR), NIHR Nottingham Biomedical Research Centre, University of Nottingham, Derby, UK.

出版信息

J Physiol. 2025 Jul;603(13):3701-3709. doi: 10.1113/JP284159. Epub 2024 Nov 4.

Abstract

Neural conditioning to scenarios of muscle disuse is undoubtedly a cause of functional decrements that typically exceed losses of muscle size. Yet establishing the relative contribution of neural adaptation and the specific location in the motor pathway remains technically challenging. Several studies of healthy humans have targeted this system and have established that motor unit firing rate is suppressed following disuse, with a number of critical caveats. It is suppressed in the immobilized limb only, at relative and absolute force levels, and preferentially targets lower-threshold motor units. Concomitantly, electrophysiological investigation of neuromuscular junction transmission (NMJ) stability of lower-threshold motor units reveals minimal change following disuse. These findings contrast with numerous other methods, which show clear involvement of the NMJ but are unable to characterize the motor unit to which they belong. It is physiologically plausible that decrements observed following disuse are a result of suppressed firing rate of lower-threshold motor units and impairment of transmission of the NMJ of higher-threshold motor units. As such, motor units within the pool should be viewed in light of their varying susceptibility to disuse.

摘要

对肌肉废用情况的神经适应无疑是功能减退的一个原因,这种功能减退通常超过肌肉大小的损失。然而,确定神经适应的相对贡献以及运动通路中的具体位置在技术上仍然具有挑战性。几项针对健康人的研究针对了这个系统,并确定在废用后运动单位的放电频率会受到抑制,但存在一些关键的限制条件。它仅在固定肢体中、在相对和绝对力水平下受到抑制,并且优先针对阈值较低的运动单位。与此同时,对阈值较低的运动单位的神经肌肉接头传递(NMJ)稳定性的电生理研究表明,废用后变化极小。这些发现与许多其他方法形成对比,其他方法显示NMJ明显受累,但无法确定它们所属的运动单位。从生理学角度来看,废用后观察到的功能减退是阈值较低的运动单位放电频率受到抑制以及阈值较高的运动单位的NMJ传递受损的结果。因此,应该根据运动单位对废用的不同易感性来审视运动单位池中的运动单位。

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