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在重复的离心运动中运动单位行为的变化。

Changes in motor unit behaviour across repeated bouts of eccentric exercise.

机构信息

Department of Sport, Exercise, & Rehabilitation, Faculty of Health and Life Sciences, Northumbria University, Newcastle upon Tyne, UK.

School of Cardiovascular and Metabolic Health, BHF Glasgow Cardiovascular Research Center, College of Medical, Veterinary, and Life Sciences, University of Glasgow, Glasgow, UK.

出版信息

Exp Physiol. 2024 Nov;109(11):1896-1908. doi: 10.1113/EP092070. Epub 2024 Sep 3.

Abstract

Unaccustomed eccentric exercise (EE) is protective against muscle damage following a subsequent bout of similar exercise. One hypothesis suggests the existence of an alteration in motor unit (MU) behaviour during the second bout, which might contribute to the adaptive response. Accordingly, the present study investigated MU changes during repeated bouts of EE. During two bouts of exercise where maximal lengthening dorsiflexion (10 repetitions × 10 sets) was performed 3 weeks apart, maximal voluntary isometric torque (MVIC) and MU behaviour (quantified using high-density electromyography; HDsEMG) were measured at baseline, during (after set 5), and post-EE. The HDsEMG signals were decomposed into individual MU discharge timings, and a subset were tracked across each time point. MVIC was reduced similarly in both bouts post-EE (Δ27 vs. 23%, P = 0.144), with a comparable amount of total work performed (∼1,300 J; P = 0.905). In total, 1,754 MUs were identified and the decline in MVIC was accompanied by a stepwise increase in discharge rate (∼13%; P < 0.001). A decrease in relative recruitment was found immediately after EE in Bout 1 versus baseline (∼16%; P < 0.01), along with reductions in derecruitment thresholds immediately after EE in Bout 2. The coefficient of variation of inter-spike intervals was lower in Bout 2 (∼15%; P < 0.001). Our data provide new information regarding a change in MU behaviour during the performance of a repeated bout of EE. Importantly, such changes in MU behaviour might contribute, at least in part, to the repeated bout phenomenon.

摘要

不习惯的偏心运动(EE)可预防随后进行类似运动时的肌肉损伤。一种假说认为,在第二回合中运动单位(MU)行为发生了改变,这可能有助于适应反应。因此,本研究调查了重复 EE 回合中 MU 的变化。在相隔 3 周进行的两次最大伸展背屈运动(10 次重复×10 组)中,在基线、运动期间(第 5 组后)和 EE 后测量最大等长等速扭矩(MVIC)和 MU 行为(使用高密度肌电图;HDsEMG 量化)。HDsEMG 信号被分解为单个 MU 放电时间,并在每个时间点跟踪一部分。MVIC 在 EE 后两次回合中均明显降低(Δ27 与 23%,P=0.144),完成的总工作量相当(约 1300 J;P=0.905)。总共鉴定出 1754 个 MU,MVIC 的下降伴随着放电率的逐步增加(约 13%;P<0.001)。在回合 1 中,与基线相比,在 EE 后立即发现相对募集减少(约 16%;P<0.01),同时在回合 2 中,在 EE 后立即降低了去募集阈值。在回合 2 中,峰间间隔的变异系数较低(约 15%;P<0.001)。我们的数据提供了有关重复 EE 回合期间 MU 行为变化的新信息。重要的是,MU 行为的这种变化至少部分有助于重复回合现象。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/92cc/11522828/8d41ce7ae62a/EPH-109-1896-g002.jpg

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