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先前腘绳肌拉伤的患者,其膝关节屈肌力量和股二头肌肌电图活动较低。

Knee flexor strength and bicep femoris electromyographical activity is lower in previously strained hamstrings.

机构信息

School of Exercise and Nutrition Science and Institute of Health and Biomedical Innovation, Queensland University of Technology, Brisbane, Australia.

出版信息

J Electromyogr Kinesiol. 2013 Jun;23(3):696-703. doi: 10.1016/j.jelekin.2012.11.004. Epub 2013 Jan 4.

Abstract

The aim of this study was to determine if athletes with a history of hamstring strain injury display lower levels of surface EMG (sEMG) activity and median power frequency in the previously injured hamstring muscle during maximal voluntary contractions. Recreational athletes were recruited, 13 with a history of unilateral hamstring strain injury and 15 without prior injury. All athletes undertook isokinetic dynamometry testing of the knee flexors and sEMG assessment of the biceps femoris long head (BF) and medial hamstrings (MHs) during concentric and eccentric contractions at ±180 and ±60°s(-1). The knee flexors on the previously injured limb were weaker at all contraction speeds compared to the uninjured limb (+180°s(-1)p=0.0036; +60°s(-1)p=0.0013; -60°s(-1)p=0.0007; -180°s(-1)p=0.0007) whilst sEMG activity was only lower in the BF during eccentric contractions (-60°s(-1)p=0.0025; -180°s(-1)p=0.0003). There were no between limb differences in MH sEMG activity or median power frequency from either BF or MH in the injured group. The uninjured group showed no between limb differences in any of the tested variables. Secondary analysis comparing the between limb difference in the injured and the uninjured groups, confirmed that previously injured hamstrings were mostly weaker (+180°s(-1)p=0.2208; +60°s(-1)p=0.0379; -60°(-1)p=0.0312; -180°s(-1)p=0.0110) and that deficits in sEMG were confined to the BF during eccentric contractions (-60°s(-1)p=0.0542; -180°s(-1)p=0.0473). Previously injured hamstrings were weaker and BF sEMG activity was lower than the contralateral uninjured hamstring. This has implications for hamstring strain injury prevention and rehabilitation which should consider altered neural function following hamstring strain injury.

摘要

本研究旨在确定是否有腘绳肌拉伤史的运动员在进行最大自主收缩时,其受伤的腘绳肌在表面肌电图(sEMG)活动和中值功率频率方面表现出较低水平。招募了业余运动员,其中 13 名运动员有单侧腘绳肌拉伤史,15 名运动员无既往损伤史。所有运动员均接受了膝关节屈肌的等速测力测试,并在进行向心和离心收缩时,对股二头肌长头(BF)和内侧腘绳肌(MHs)进行了 sEMG 评估,收缩速度分别为±180°s(-1)和±60°s(-1)。与未受伤的肢体相比,受伤肢体在所有收缩速度下的膝关节屈肌力量均较弱(+180°s(-1)p=0.0036;+60°s(-1)p=0.0013;-60°s(-1)p=0.0007;-180°s(-1)p=0.0007),而 BF 在离心收缩时的 sEMG 活动仅较低(-60°s(-1)p=0.0025;-180°s(-1)p=0.0003)。受伤组的 MH sEMG 活动或 BF 或 MH 的中值功率频率在肢体之间均无差异。未受伤组在所有测试变量中均无肢体间差异。对受伤组和未受伤组之间的肢体间差异进行的二次分析证实,受伤的腘绳肌大多较弱(+180°s(-1)p=0.2208;+60°s(-1)p=0.0379;-60°s(-1)p=0.0312;-180°s(-1)p=0.0110),并且在离心收缩时,sEMG 仅在 BF 中存在缺陷(-60°s(-1)p=0.0542;-180°s(-1)p=0.0473)。受伤的腘绳肌较弱,BF 的 sEMG 活动低于对侧未受伤的腘绳肌。这对腘绳肌拉伤的预防和康复具有重要意义,应该考虑腘绳肌拉伤后神经功能的改变。

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