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纤维类型比例和角速度会影响肌电图的平均功率频率吗?

Do the fibre-type proportion and the angular velocity influence the mean power frequency of the electromyogram?

作者信息

Gerdle B, Wretling M L, Henriksson-Larsén K

机构信息

National Institute of Occupational Health, Work Physiology Unit, Umeå, Sweden.

出版信息

Acta Physiol Scand. 1988 Nov;134(3):341-6. doi: 10.1111/j.1748-1716.1988.tb08501.x.

Abstract

The dependence of the mean-power frequency and the signal amplitude of the electromyogram (EMG) on the angular velocity and the fiber-type proportion were investigated in nine female volunteers. The subjects were required to perform maximum knee extensions using an isokinetic dynamometer at different angular velocities; 0.57, 1.05, 1.57, 2.09 and 3.14 rad s-1. Electromyographic signals were obtained from the vastus lateralis, vastus medialis and the rectus femoris muscles. The angle and the torque signals were recorded simultaneously with the three EMG signals on a tape-recorder. From the EMG recordings the mean power frequency (MPF) and the signal amplitude were determined. Muscle biopsies were later obtained from the right vastus lateralis and stained for alkaline and acid mATPase for the determination of fibre-type proportions and areas. Neither the signal amplitude nor the MPF of the EMG of the three muscles were dependent on the angular velocity. The MPF of the vastus lateralis correlated significantly (r = -0.93) with the type 1 fibre proportion at 1.57 rad s-1. However, there was no significant correlation between the areas of the fibre types, alone or together, and the MPF. In conclusion the fibre-type proportion was the major factor behind the MPF irrespective of angular velocity.

摘要

在九名女性志愿者中,研究了肌电图(EMG)的平均功率频率和信号幅度与角速度及纤维类型比例之间的关系。受试者需使用等速测力计在不同角速度下进行最大程度的膝关节伸展;角速度分别为0.57、1.05、1.57、2.09和3.14弧度·秒⁻¹。从股外侧肌、股内侧肌和股直肌获取肌电信号。角度和扭矩信号与三个肌电信号同时记录在磁带录音机上。根据肌电记录确定平均功率频率(MPF)和信号幅度。随后从右侧股外侧肌获取肌肉活检样本,用碱性和酸性mATP酶染色以确定纤维类型比例和面积。三块肌肉的肌电信号幅度和MPF均不依赖于角速度。在1.57弧度·秒⁻¹时,股外侧肌的MPF与1型纤维比例显著相关(r = -0.93)。然而,纤维类型的面积单独或综合起来与MPF之间均无显著相关性。总之,无论角速度如何,纤维类型比例都是MPF背后的主要因素。

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