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局部弹性压缩对下肢肌肉力量、肌电图和运动力学响应的影响。

Effects of local elastic compression on muscle strength, electromyographic, and mechanomyographic responses in the lower extremity.

机构信息

School of Kinesiology, Shanghai University of Sport, Shanghai 200438, China.

出版信息

J Electromyogr Kinesiol. 2012 Feb;22(1):44-50. doi: 10.1016/j.jelekin.2011.10.005. Epub 2011 Nov 17.

Abstract

The purpose of this study was to investigate the effect of elastic compression on muscle strength, electromyographic (EMG), and mechanomyographic (MMG) responses of quadriceps femoris during isometric and isokinetic contractions. Twelve participants performed 5s isometric maximal voluntary contractions (MVC) and 25 consecutive and maximal isokinetic knee extensions at 60 and 300°/s with no (control, CC), medium (MC), and high (HC) compression applied to the muscle. The EMG and MMG signals were collected simultaneously with muscle isometric and isokinetic strength data. The results showed that the elevated compression did not improve peak torque, peak power, average power, total work, and regression of torque in the isometric and isokinetic contractions. However, the root mean squared value of EMG in both HC and MC significantly decreased compared with CC at 60 and 300°/s (p<0.01). Furthermore, the EMG mean power frequency in HC was significantly higher than that in CC at 60°/s (p<0.05) whereas no significant compression effect was found in the MMG mean power frequency. These findings provide preliminary evidence suggesting that the increase in local compression pressure may effectively increase muscle efficiency and this might be beneficial in reducing muscle fatigue during concentric isokinetic muscle contractions.

摘要

本研究旨在探讨在等长和等速收缩过程中,弹性压缩对股四头肌肌肉力量、肌电图(EMG)和肌动描记图(MMG)响应的影响。12 名参与者进行了 5 秒的等长最大自主收缩(MVC)和 25 次连续的最大等速膝关节伸展运动,速度分别为 60°/s 和 300°/s,肌肉施加无(对照,CC)、中(MC)和高(HC)压缩。同时采集肌肉等长和等速力量数据的 EMG 和 MMG 信号。结果表明,升高的压缩并未改善等长和等速收缩中的峰值扭矩、峰值功率、平均功率、总功和扭矩回归。然而,与 CC 相比,HC 和 MC 中的 EMG 均方根值在 60 和 300°/s 时均显著降低(p<0.01)。此外,HC 中的 EMG 平均功率频率在 60°/s 时显著高于 CC(p<0.05),而 MMG 平均功率频率中未发现显著的压缩效应。这些发现提供了初步证据,表明局部压缩压力的增加可能有效地提高肌肉效率,这可能有助于减少向心性等速肌肉收缩过程中的肌肉疲劳。

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