Farina D, Mesin L
Laboratorio di Ingegneria del Sistema Neuromuscolare (LISiN), Dipartimento di Elettronica, Politecnico di Torino, Torino, Corso Duca degli Abruzzi 24, Torino 10129, Italy.
J Neurosci Methods. 2005 Mar 15;142(1):83-9. doi: 10.1016/j.jneumeth.2004.07.011.
The aim of this simulation study was to investigate the influence of local tissue in-homogeneities on the estimates of muscle fiber conduction velocity (CV) from surface EMG signals. A recently developed analytical surface EMG model was used to generate simulated surface EMG signals from a planar layered volume conductor, comprised of the muscle tissue and fat layer, with spheres (1 mm radius) in the fat layer of conductivity different from the surrounding tissue. CV was estimated with a maximum likelihood multi-channel approach, varying the number of channels and the inter-channel distance used for the estimate. The action potentials detected along the muscle fiber direction changed shape due to the presence of the in-homogeneities, thus affecting CV estimates. CV estimates were influenced by the location of the in-homogeneities with respect to the fiber and detection electrodes. The maximum percent variation of CV estimates due to the presence of in-homogeneities decreased with increasing number of channels and inter-channel distance: 19.6% (2 channels), 12.1% (3 channels), 6.4% (4 channels), for 5 mm inter-channel distance, and 12.0% (2 channels), 5.2% (3 channels), 2.4% (4 channels), for 10 mm inter-channel distance (for double differential detection). The results were in agreement and explained previous experimental findings. It was concluded that multi-channel methods for CV estimation significantly reduce the sensitivity of CV estimates to tissue in-homogeneities.
本模拟研究的目的是调查局部组织不均匀性对根据表面肌电图信号估计肌肉纤维传导速度(CV)的影响。使用最近开发的一种分析性表面肌电图模型,从一个平面分层体积导体生成模拟表面肌电图信号,该导体由肌肉组织和脂肪层组成,脂肪层中有半径为1毫米的球体,其电导率与周围组织不同。采用最大似然多通道方法估计CV,改变用于估计的通道数量和通道间距离。由于存在不均匀性,沿肌肉纤维方向检测到的动作电位形状发生变化,从而影响CV估计。CV估计受不均匀性相对于纤维和检测电极位置的影响。对于通道间距离为5毫米的情况,由于存在不均匀性导致的CV估计的最大百分比变化随着通道数量和通道间距离的增加而降低:2通道时为19.6%,3通道时为12.1%,4通道时为6.4%;对于通道间距离为10毫米的情况(用于双差分检测),2通道时为12.0%,3通道时为5.2%,4通道时为2.4%。这些结果与之前的实验结果一致并对其进行了解释。得出的结论是,用于CV估计的多通道方法显著降低了CV估计对组织不均匀性的敏感性。