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训练引起的膝关节伸肌力量准确性的提高与股外侧肌运动单位放电变异性的降低有关。

Training-induced improvements in knee extensor force accuracy are associated with reduced vastus lateralis motor unit firing variability.

机构信息

Centre of Metabolism, Ageing and Physiology, MRC-Versus Arthritis Centre for Musculoskeletal Ageing Research, National Institute for Health Research (NIHR) Nottingham Biomedical Research Centre, School of Medicine, University of Nottingham, Derby, UK.

School of Agriculture, Food Science and Veterinary Medicine, University College Dublin, Dublin, Ireland.

出版信息

Exp Physiol. 2022 Sep;107(9):1061-1070. doi: 10.1113/EP090367. Epub 2022 Aug 12.

Abstract

NEW FINDINGS

What is the central question of this study? Can bilateral knee extensor force accuracy be improved following 4 weeks of unilateral force accuracy training and are there any subsequent alterations to central and/or peripheral motor unit features? What is the main finding and its importance? In the trained limb only, knee extensor force tracking accuracy improved with reduced motor unit firing rate variability in the vastus lateralis, and there was no change to neuromuscular junction transmission instability. Interventional strategies to improve force accuracy may be directed to older/clinical populations where such improvements may aid performance of daily living activities.

ABSTRACT

Muscle force output during sustained submaximal isometric contractions fluctuates around an average value and is partly influenced by variation in motor unit (MU) firing rates. MU firing rate (FR) variability seemingly reduces following exercise training interventions; however, much less is known with respect to peripheral MU properties. We therefore investigated whether targeted force accuracy training could lead to improved muscle functional capacity and control, in addition to determining any alterations of individual MU features. Ten healthy participants (seven females, three males, 27 ± 6 years, 170 ± 8 cm, 69 ± 16 kg) underwent a 4-week supervised, unilateral knee extensor force accuracy training intervention. The coefficient of variation for force (FORCE ) and sinusoidal wave force tracking accuracy (FORCE ) were determined at 25% maximal voluntary contraction (MVC) pre- and post-training. Intramuscular electromyography was utilised to record individual MU potentials from the vastus lateralis (VL) muscles at 25% MVC during sustained contractions, pre- and post-training. Knee extensor muscle strength remained unchanged following training, with no improvements in unilateral leg-balance. FORCE and FORCE significantly improved in only the trained knee extensors by ∼13% (P = 0.01) and ∼30% (P < 0.0001), respectively. MU FR variability significantly reduced in the trained VL by ∼16% (n = 8; P = 0.001), with no further alterations to MU FR or neuromuscular junction transmission instability. Our results suggest muscle force control and tracking accuracy is a trainable characteristic in the knee extensors, which is likely explained by the reduction in MU FR variability which was apparent in the trained limb only.

摘要

新发现

这项研究的核心问题是什么?经过四周的单侧力准确性训练,双侧膝关节伸肌力准确性是否可以提高,以及中枢和/或外周运动单位特征是否有任何后续变化?主要发现及其重要性是什么?仅在训练侧,膝关节伸肌力跟踪准确性提高,股外侧肌运动单位放电率变异性降低,神经肌肉接头传递不稳定无变化。改善力准确性的干预策略可能针对老年人/临床人群,此类改善可能有助于日常生活活动的表现。

摘要

在持续的次最大等长收缩期间,肌肉力输出围绕平均值波动,部分受运动单位 (MU) 放电率变化的影响。运动单位放电率 (FR) 变异性似乎在运动训练干预后降低;然而,对于外周 MU 特性知之甚少。因此,我们研究了有针对性的力准确性训练是否可以提高肌肉功能能力和控制能力,以及是否改变个体 MU 特征。10 名健康参与者(7 名女性,3 名男性,27±6 岁,170±8cm,69±16kg)接受了为期 4 周的监督性单侧膝关节伸肌力准确性训练干预。在训练前和训练后,在 25%最大自愿收缩 (MVC) 下确定力的变异系数 (FORCE) 和正弦波力跟踪准确性 (FORCE)。在持续收缩期间,在 25% MVC 下,利用肌内肌电图记录来自股外侧肌 (VL) 肌肉的单个 MU 电位,在训练前和训练后。训练后,膝关节伸肌肌力保持不变,单侧腿部平衡无改善。仅在训练的膝关节伸肌中,FORCE 和 FORCE 分别显著提高了约 13%(P = 0.01)和 30%(P < 0.0001)。在训练的 VL 中,MU FR 变异性显著降低了约 16%(n = 8;P = 0.001),MU FR 或神经肌肉接头传递不稳定无进一步改变。我们的结果表明,膝关节伸肌的肌肉力控制和跟踪准确性是一种可训练的特征,这可能是由于仅在训练侧运动单位 FR 变异性降低所致。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a04e/9542263/12aa35cd3892/EPH-107-1061-g002.jpg

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