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空间滤波对表面肌电图记录中串扰减少的影响。

Effect of spatial filtering on crosstalk reduction in surface EMG recordings.

作者信息

Mesin Luca, Smith Stuart, Hugo Suzanne, Viljoen Suretha, Hanekom Tania

机构信息

Laboratorio di Ingegneria del Sistema Neuromuscolare (LISiN), Dipartimento di Elettronica, Politecnico di Torino, Corso Duca degli Abruzzi 24, Torino, 10129, Italy.

出版信息

Med Eng Phys. 2009 Apr;31(3):374-83. doi: 10.1016/j.medengphy.2008.05.006. Epub 2008 Jun 27.

Abstract

Increasing the selectivity of the detection system in surface electromyography (EMG) is beneficial in the collection of information of a specific portion of the investigated muscle and to reduce the contribution of undesired components, such as non-propagating components (due to generation or end-of-fibre effects) or crosstalk from nearby muscles. A comparison of the ability of different spatial filters to reduce the amount of crosstalk in surface EMG measurements was conducted in this paper using simulated signals. It focused on the influence of different properties of the muscle anatomy (changing subcutaneous layer thickness, skin conductivity, fibre length) and detection system (single, double and normal double differential, with two inter-electrode distances - IED) on the amount of crosstalk present in the measurements. A cylindrical multilayer (skin, subcutaneous tissue, muscle, bone) analytical model was used to simulate single fibre action potentials (SFAPs). Fibres were grouped together in motor units (MUs) and motor unit action potentials (MUAPs) were obtained by adding the SFAPs of the corresponding fibres. Interference surface EMG signals were obtained, modelling the recruitment of MUs and rate coding. The average rectified value (ARV) and mean frequency (MNF) content of the EMG signals were studied and used as a basis for determining the selectivity of each spatial filter. From these results it was found that the selectivity of each spatial filter varies depending on the transversal location of the measurement electrodes and on the anatomy. An increase in skin conductivity favourably affects the selectivity of normal double differential filters as does an increase in subcutaneous layer thickness. An increase in IED decreases the selectivity of all the analysed filters.

摘要

提高表面肌电图(EMG)检测系统的选择性,有利于采集被研究肌肉特定部位的信息,并减少诸如非传播成分(由于纤维产生或纤维末端效应)或来自附近肌肉的串扰等不期望成分的影响。本文使用模拟信号对不同空间滤波器在表面肌电图测量中减少串扰量的能力进行了比较。研究重点在于肌肉解剖结构的不同特性(改变皮下层厚度、皮肤电导率、纤维长度)和检测系统(单通道、双通道和常规双差分通道,两种电极间距 - IED)对测量中存在的串扰量的影响。使用圆柱形多层(皮肤、皮下组织、肌肉、骨骼)分析模型来模拟单纤维动作电位(SFAP)。纤维被分组形成运动单位(MU),通过叠加相应纤维的SFAP获得运动单位动作电位(MUAP)。通过模拟MU的募集和频率编码获得干扰表面肌电图信号。研究了肌电图信号的平均整流值(ARV)和平均频率(MNF)含量,并将其作为确定每个空间滤波器选择性的基础。从这些结果发现,每个空间滤波器的选择性因测量电极的横向位置和解剖结构而异。皮肤电导率的增加对常规双差分滤波器的选择性有有利影响,皮下层厚度的增加也有同样效果。电极间距的增加会降低所有分析滤波器的选择性。

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