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基于组织结构和佩戴压力的织物电极电特性及心电信号采集性能研究

Study on Electrical Characteristics and ECG Signal Acquisition Performance of Fabric Electrodes Based on Organizational Structure and Wearing Pressure.

作者信息

Wang Ming, Zhou Jinli, Zhang Ge

机构信息

School of Chemical and Printing-Dyeing Engineering, Henan University of Engineering, Zhengzhou 450007, China.

College of Intelligent Textile and Fabric Electronics, Zhongyuan University of Technology, Zhengzhou 450007, China.

出版信息

Micromachines (Basel). 2025 Jul 17;16(7):821. doi: 10.3390/mi16070821.

Abstract

Obtaining stable ECG signals under both static and dynamic conditions, while ensuring comfortable wear, is a prerequisite for fabric-electrode applications. It is necessary to study the wearing pressure of fabric electrodes as well as their organizational structure. In this study, fabric electrodes with different organizational structures (plain weave, twill weave, and satin weave) were prepared using silver-plated nylon conductive yarns as weft yarns and polyester yarns as warp yarns. The electrical characteristics of these structures of fabric electrodes were analyzed under different wearing pressures (2 kPa, 3 kPa, 4 kPa, and 5 kPa), and their effects on the quality of static and dynamic ECG signals acquired from human body were examined. The results showed that the contact impedance of the twill and satin weave structured electrodes with the skin was smaller and more stable than that of the plain weave structured electrodes. Furthermore, when a wearing pressure of 3-4 kPa was applied to the satin-structured electrodes, they not only provided satisfactory comfort but also collected stable static and dynamic ECG signals during daily exercise. These results can provide a reference for the application of fabric electrodes in ECG monitoring devices and an important basis for the design of intelligent ECG clothing.

摘要

在确保穿着舒适的同时,在静态和动态条件下获取稳定的心电图信号是织物电极应用的前提条件。研究织物电极的佩戴压力及其组织结构很有必要。在本研究中,以镀银尼龙导电纱为纬纱、聚酯纱为经纱制备了不同组织结构(平纹、斜纹和缎纹)的织物电极。分析了这些织物电极结构在不同佩戴压力(2 kPa、3 kPa、4 kPa和5 kPa)下的电学特性,并考察了它们对从人体采集的静态和动态心电图信号质量的影响。结果表明,斜纹和缎纹组织结构电极与皮肤的接触阻抗比平纹组织结构电极更小且更稳定。此外,当给缎纹结构电极施加3 - 4 kPa的佩戴压力时,它们不仅提供了令人满意的舒适度,而且在日常运动中还能采集到稳定的静态和动态心电图信号。这些结果可为织物电极在心电图监测设备中的应用提供参考,并为智能心电图服装的设计提供重要依据。

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