Laboratory for Engineering of the Neuromuscular System, LISiN, Politecnico di Torino, Torino, Italy.
Eur J Appl Physiol. 2013 Apr;113(4):887-94. doi: 10.1007/s00421-012-2498-2. Epub 2012 Sep 23.
The aim of this work is to show how changes in surface electromyographic activity (sEMG) during a repetitive, non-constant force contraction can be detected and interpreted on the basis of the amplitude distribution provided by high-density sEMG techniques. Twelve healthy male subjects performed isometric shoulder elevations, repeating five times a force ramp profile up to 25 % of the maximal voluntary contraction (MVC). A 64-electrode matrix was used to detect sEMG from the trapezius muscle. The sEMG amplitude distribution was obtained for the force levels in the range 5-25 % MVC with steps of 5 % MVC. The effect of force level, subject, electrode position and ramp repetition on the sEMG amplitude distribution was tested. The sEMG amplitude was significantly smaller in the columns of the electrode grid over the tendons (repeated measures ANOVA, p < 0.01). The barycentre of the distribution of sEMG amplitude was subject-specific (Kruskal-Wallis test, p < 0.01), and shifted caudally with the increase of force levels and cranially with the repetition of the motor task (both p < 0.01, repeated measures ANOVA). The results are discussed in terms of motor unit recruitment in different muscle sub-portions. It is concluded that the sEMG amplitude distribution obtained by multichannel techniques provides useful information in the study of muscle activity, and that changes in the spatial distribution of the recruited motor units during a force varying isometric contraction might partially explain the variability observed in the activation pattern of the upper trapezius muscle.
本研究旨在展示如何基于高密度表面肌电图技术提供的幅度分布,检测和解释重复非恒定力收缩过程中表面肌电活动(sEMG)的变化。12 名健康男性受试者进行等长肩提升运动,重复五次力斜坡轮廓,达到最大自主收缩(MVC)的 25%。使用 64 电极矩阵检测斜方肌的 sEMG。在 5-25% MVC 的力范围内,以 5% MVC 的步长获得 sEMG 幅度分布。测试了力水平、受试者、电极位置和斜坡重复对 sEMG 幅度分布的影响。在电极网格的肌腱上方列中,sEMG 幅度明显较小(重复测量方差分析,p<0.01)。分布的重心是特定于受试者的(Kruskal-Wallis 检验,p<0.01),随着力水平的增加而向尾部移动,随着运动任务的重复而向头部移动(均 p<0.01,重复测量方差分析)。结果根据不同肌肉部分的运动单位募集进行了讨论。结论是,多通道技术获得的 sEMG 幅度分布在肌肉活动研究中提供了有用的信息,并且在力变化等长收缩过程中募集的运动单位空间分布的变化可能部分解释了上斜方肌激活模式的可变性。