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激活骨骼肌机械感受器和伤害感受器会降低对侧同源肌肉的运动表现。

Activation of skeletal muscle mechanoreceptors and nociceptors reduces the exercise performance of the contralateral homologous muscles.

机构信息

Department of Sport and Exercise Sciences, Manchester Metropolitan University, Manchester, United Kingdom.

Manchester Metropolitan University Institute of Sport, Manchester Metropolitan University, Manchester, United Kingdom.

出版信息

Am J Physiol Regul Integr Comp Physiol. 2024 Oct 1;327(4):R389-R399. doi: 10.1152/ajpregu.00069.2024. Epub 2024 Aug 5.

Abstract

Increasing evidence suggests that activation of muscle nerve afferents may inhibit central motor drive, affecting contractile performance of remote exercising muscles. Although these effects are well documented for metaboreceptors, very little is known about the activation of mechano- and mechanonociceptive afferents on performance fatigability. Therefore, the purpose of the present study was to examine the influence of mechanoreceptors and nociceptors on performance fatigability. Eight healthy young males undertook four randomized experimental sessions on separate occasions in which the experimental knee extensors were the following: ) resting (CTRL), ) passively stretched (ST), ) resting with delayed onset muscle soreness (DOMS), or ) passively stretched with DOMS (DOMS+ST), whereas the contralateral leg performed an isometric time to task failure (TTF). Changes in maximal voluntary contraction (ΔMVC), potentiated twitch force (ΔQ), and voluntary muscle activation (ΔVA) were also assessed. TTF was reduced in DOMS+ST (-43%) and ST (-29%) compared with CTRL. DOMS+ST also showed a greater reduction of VA (-25% vs. -8%, respectively) and MVC compared with CTRL (-28% vs. -45%, respectively). Rate of perceived exertion (RPE) was significantly increased at the initial stages (20-40-60%) of the TTF in DOMS+ST compared with all conditions. These findings indicate that activation of mechanosensitive and mechanonociceptive afferents of a muscle with DOMS reduces TTF of the contralateral homologous exercising limb, in part, by reducing VA, thereby accelerating mechanisms of central fatigue. We found that activation of mechanosensitive and nociceptive nerve afferents of a rested muscle group experiencing delayed onset muscle soreness was associated with reduced exercise performance of the homologous exercising muscles of the contralateral limb. This occurred with lower muscle voluntary activation of the exercising muscle at the point of task failure.

摘要

越来越多的证据表明,肌肉神经传入的激活可能会抑制中枢运动驱动,影响远程运动肌肉的收缩性能。尽管代谢感受器的这些影响已经得到很好的记录,但对于机械和机械伤害感受器的激活对疲劳性能的影响知之甚少。因此,本研究的目的是研究机械感受器和伤害感受器对疲劳性能的影响。八名健康年轻男性在四个单独的实验会议上进行了随机实验,其中实验膝关节伸展器如下:)休息(CTRL),)被动伸展(ST),)休息伴有延迟发作性肌肉酸痛(DOMS),或)被动伸展伴有 DOMS(DOMS+ST),而对侧腿进行等长至任务失败时间(TTF)。最大自主收缩(ΔMVC)、增强的抽搐力(ΔQ)和自愿肌肉激活(ΔVA)的变化也进行了评估。与 CTRL 相比,DOMS+ST(-43%)和 ST(-29%)的 TTF 减少。与 CTRL 相比,DOMS+ST 还显示出 VA(-25%对-8%,分别)和 MVC(-28%对-45%,分别)的更大减少。与所有条件相比,在 TTF 的初始阶段(20-40-60%),DOMS+ST 中的 RPE 显著增加。这些发现表明,患有 DOMS 的肌肉的机械敏感和机械伤害传入激活会降低对侧同源运动肢体的 TTF,部分原因是降低了 VA,从而加速了中枢疲劳的机制。我们发现,经历延迟发作性肌肉酸痛的休息肌肉群的机械敏感和伤害性神经传入的激活与对侧肢体同源运动肌肉的运动表现降低有关。这是在任务失败时运动肌肉的运动激活降低时发生的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9aa7/11483073/a7fa086129ae/r-00069-2024r01.jpg

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