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使用新型柔性导电聚合物纤维电极进行多模态电生理信号测量

Multimodal Electrophysiological Signal Measurement using a New Flexible and Conductive Polymer Fiber-electrode.

作者信息

Gauthier Nicolas, Roudjane Mourad, Frasie Antoine, Loukili Mouna, Saad Asma Ben, Page Isabelle, Messaddeq Younes, Bouyer Laurent J, Gosselin Benoit

出版信息

Annu Int Conf IEEE Eng Med Biol Soc. 2020 Jul;2020:4373-4376. doi: 10.1109/EMBC44109.2020.9176420.

Abstract

A new multi-material polymer fiber electrode has been developed for smart clothing applications. The conductive fiber is optimized for bipotential measurements such as surface electromyogram (sEMG) and electrocardiogram (ECG). The main benefit of this fiber is its flexibility and being a dry and non-obtrusive electrode. It can be directly integrated into a garment to make a smart textile for real time biopoten-tial monitoring. A customized wireless electronic system has been developed to acquire electrophysiological signal from the fiber. The receiver base station is connected to a PC host running Matlab. The multi-material polymer fiber electrode recording setting were first optimized in length and inter-electrode distance by recording different sEMG signals. The typical sEMG signal to noise ratio ranges from 19.1 dB to 33.9 dB depending on the geometry. These value are comparable with those obtained with Ag/AgCl electrodes and dry electrode-base commercial system such as Delsys Trigno. The frequency domain analysis obtained from the power spectral density reveals that the new flexible fiber-electrode enables high sEMG signals recording quality while being suitable for integration in smart clothing fabric. A muscle fatigue analysis and ECG recording are also presented in this study. The multi-material polymer fiber electrodes demonstrate a viable solution for sEMG and ECG data acquisition.

摘要

一种新型的多材料聚合物纤维电极已被开发用于智能服装应用。这种导电纤维针对双电位测量进行了优化,如表面肌电图(sEMG)和心电图(ECG)。这种纤维的主要优点是其灵活性以及作为一种干燥且不引人注意的电极。它可以直接集成到服装中,制成用于实时生物电位监测的智能纺织品。已经开发了一种定制的无线电子系统来从纤维获取电生理信号。接收基站连接到运行Matlab的PC主机。通过记录不同的sEMG信号,首先对多材料聚合物纤维电极记录设置的长度和电极间距进行了优化。根据几何形状,典型的sEMG信噪比范围为19.1 dB至33.9 dB。这些值与使用Ag/AgCl电极和基于干电极的商业系统(如Delsys Trigno)获得的值相当。从功率谱密度获得的频域分析表明,新型柔性纤维电极能够实现高质量的sEMG信号记录,同时适合集成到智能服装面料中。本研究还展示了肌肉疲劳分析和ECG记录。多材料聚合物纤维电极展示了一种用于sEMG和ECG数据采集的可行解决方案。

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