Federal University of the Jequitinhonha and Mucuri Valleys, Exercise Physiology Laboratory, Brazil.
J Electromyogr Kinesiol. 2013 Aug;23(4):844-50. doi: 10.1016/j.jelekin.2013.03.014. Epub 2013 May 3.
The influence of the knee flexion on muscle activation and transmissibility during whole body vibration is controversially discussed in the literature. In this study, 34 individuals had electromyography activity (EMG) of the vastus lateralis and the acceleration assessed while squatting with 60° and 90° of knee flexion either with or without whole-body vibration (WBV). The conditions were maintained for 10s with 1min of rest between each condition. The main findings were (1) the larger the angle of knee flexion (90° vs. 60°), the greater the EMG (p<0.001), with no difference on acceleration transmissibility; (2) for both angles of knee flexion, the addition of WBV produced no significant difference in EMG and higher acceleration compared to without WBV (p<0.001). These results suggest that the larger the knee flexion angle (60° vs. 90°), the greater the muscle activation without acceleration modification. However, the addition of WBV increases the transmissibility of acceleration in the lower limbs without modification in EMG of vastus lateralis.
膝关节弯曲对全身振动过程中肌肉激活和传递的影响在文献中存在争议。本研究中,34 名个体在 60°和 90°膝关节弯曲下进行深蹲,同时评估股外侧肌的肌电图(EMG)活动和加速度,有无全身振动(WBV)两种情况。每种情况下持续 10s,每种情况下之间休息 1min。主要发现为:(1)膝关节弯曲角度越大(90° vs. 60°),EMG 越大(p<0.001),但加速度传递性没有差异;(2)对于两种膝关节弯曲角度,与无 WBV 相比,添加 WBV 不会导致 EMG 和更高的加速度产生显著差异(p<0.001)。这些结果表明,膝关节弯曲角度越大(60° vs. 90°),肌肉激活越大而不会改变加速度。然而,添加 WBV 会增加下肢加速度的传递性,而不会改变股外侧肌的 EMG。