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躯干肌肌电图与全身振动

Trunk muscle electromyography and whole body vibration.

作者信息

Seroussi R E, Wilder D G, Pope M H

机构信息

Department of Orthopaedics and Rehabilitation, University of Vermont, Burlington 05405.

出版信息

J Biomech. 1989;22(3):219-29. doi: 10.1016/0021-9290(89)90090-0.

Abstract

By measuring the electromyographic (EMG) activity of the paraspinal muscles, we have estimated the average and peak-to-peak torque imposed on the spine during whole body vibration. Six subjects had surface electrodes placed on their erector spinae muscles at the L3 level. The EMG-torque relationship was estimated by having each subject perform isometric horizontal pulls in an upright seated posture. The subject was then vibrated vertically and sinusoidally in a controlled, flexed, slightly lordotic seated posture, in 1 Hz increments from 3 to 10 Hz at a 0.1 g RMS seat acceleration level. Between vibration readings taken at each frequency, a static reading was also taken with the subject maintaining the same posture. The entire vibration-static 3-10 Hz test was repeated for reliability purposes. Specialized digital signal processing techniques were developed for the EMG signals to enhance the measured cyclic muscle activity and to allow automatic measurement of the time relationship between the mechanical displacement and the estimated torque. We found significantly more average and peak-to-peak estimated torque at almost all frequencies for vibration vs static sitting.

摘要

通过测量椎旁肌的肌电图(EMG)活动,我们估算了全身振动期间施加于脊柱的平均扭矩和峰峰值扭矩。六名受试者在L3水平的竖脊肌上放置了表面电极。通过让每位受试者以直立坐姿进行等长水平拉伸来估算肌电图-扭矩关系。然后,让受试者在可控的、弯曲的、略呈前凸的坐姿下进行垂直正弦振动,在0.1 g均方根值座椅加速度水平下,以1 Hz的增量从3 Hz振动至10 Hz。在每个频率的振动读数之间,还让受试者保持相同姿势进行静态读数。为了可靠性目的,重复进行了整个3 - 10 Hz的振动-静态测试。针对肌电图信号开发了专门的数字信号处理技术,以增强测量到的周期性肌肉活动,并允许自动测量机械位移与估算扭矩之间的时间关系。我们发现,与静态坐姿相比,在几乎所有频率下,振动时的平均扭矩和峰峰值估算扭矩都显著更高。

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