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利用肌电图重新审视运动选择:臀肌肌电图对髋部运动进行排名与肌肉力量之间的一致性较差。

Reconsidering Exercise Selection with EMG: Poor Agreement between Ranking Hip Exercises with Gluteal EMG and Muscle Force.

作者信息

Collings Tyler J, Bourne Matthew N, Barrett Rod S, Meinders Evy, Gonçalves Basílio, Shield Anthony J, Diamond Laura E

出版信息

Med Sci Sports Exerc. 2025 Sep 1;57(9):1829-1837. doi: 10.1249/MSS.0000000000003733. Epub 2025 Apr 23.

Abstract

PURPOSE

Electromyography (EMG) is commonly used to inform exercise selection for injury prevention and rehabilitation. However, mechanical tension is more important for driving adaptation than muscle activation alone. Therefore, this study aimed to investigate the effect of ranking hip-focused exercises based on the magnitude of gluteal surface EMG compared with estimates of muscle forces and the implications for exercise selection.

METHODS

Fourteen healthy female footballers (18-30 yr old) performed eight hip-focused exercises using body weight and 12-repetition maximum loads. Full-body kinematics, ground reaction forces, and surface EMG from 12 lower limb muscles were recorded and used as inputs to a neuromusculoskeletal model to estimate gluteal muscle forces. Normalized EMG and normalized muscle force rankings were compared using Spearman's correlations, and the linear relationship between normalized EMG and muscle force was compared using linear mixed effects models.

RESULTS

There was a weak relationship between exercise rankings based on EMG and muscle forces (Spearman's ρ = 0.29-0.51). Peak EMG amplitude alone explained 5% of gluteus maximus peak muscle force ( R2 = 0.05) and 19% of gluteus medius peak muscle force ( R2 = 0.19). However, when accounting for exercise and participant sources of variation, peak EMG amplitude explained 80%-85% of gluteus maximus and medius peak normalized muscle force.

CONCLUSIONS

Ranking gluteal resistance exercises by EMG amplitude resulted in a different order to ranking exercises by estimated muscle forces. For exercise selection, EMG may only be useful when comparing within an individual and between biomechanically similar exercises. Caution is warranted when basing exercise selection on gluteal EMG amplitude alone.

摘要

目的

肌电图(EMG)常用于为预防损伤和康复训练的运动选择提供依据。然而,机械张力对驱动适应性变化比单纯的肌肉激活更为重要。因此,本研究旨在探讨根据臀肌表面肌电图的幅度对以髋部为重点的运动进行排序,与肌肉力量估计值相比的效果,以及对运动选择的影响。

方法

14名健康的成年女子足球运动员(18 - 30岁)使用自身体重和12次重复最大负荷进行八项以髋部为重点的运动。记录全身运动学、地面反作用力以及来自12块下肢肌肉的表面肌电图,并将其作为输入到神经肌肉骨骼模型中,以估计臀肌力量。使用斯皮尔曼相关性比较标准化肌电图和标准化肌肉力量的排名,并使用线性混合效应模型比较标准化肌电图与肌肉力量之间的线性关系。

结果

基于肌电图的运动排名与肌肉力量之间存在较弱的关系(斯皮尔曼ρ = 0.29 - 0.51)。单独的肌电图峰值幅度仅解释了臀大肌峰值肌肉力量的5%(R2 = 0.05)和臀中肌峰值肌肉力量的19%(R2 = 0.19)。然而,当考虑运动和参与者的变异来源时,肌电图峰值幅度解释了臀大肌和臀中肌标准化峰值肌肉力量的80% - 85%。

结论

根据肌电图幅度对臀肌抗阻运动进行排名,与根据估计的肌肉力量对运动进行排名的顺序不同。对于运动选择,肌电图可能仅在个体内部以及生物力学相似的运动之间进行比较时有用。仅基于臀肌肌电图幅度进行运动选择时需谨慎。

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