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织物电极心电图信号监测的设计、特性与性能。

Design, Characterization, and Performance of Woven Fabric Electrodes for Electrocardiogram Signal Monitoring.

机构信息

School of Textile Science and Engineering, Tiangong University, Tianjin 300387, China.

School of Electronic and Information Engineering, Tiangong University, Tianjin 300387, China.

出版信息

Sensors (Basel). 2022 Jul 22;22(15):5472. doi: 10.3390/s22155472.

Abstract

Conductive gel needs to be applied between the skin and standard medical electrodes when monitoring electrocardiogram (ECG) signals, but this can cause skin irritation, particularly during long-term monitoring. Fabric electrodes are flexible, breathable, and capable of sensing ECG signals without conductive gel. The objective of this study was to design and fabricate a circular fabric electrode using weaving technology. To optimize the woven fabric electrode, electrodes of different diameter, fabric weave, and weft density were devised, and the AC impedance, open-circuit voltage, and static ECG signal were measured and comprehensively evaluated. Diameter of 4 cm, 12/5 sateen, and weft density of 46 picks/cm were concluded as the appropriate parameters of the fabric electrode. ECG signals in swinging, squatting, and rotating states were compared between the woven fabric electrode and the standard medical electrode. The results showed that the characteristic waveform of the woven fabric electrode with 86.7% improved data was more obvious than that of the standard medical electrode. This work provides reference data that will be helpful for commercializing the integration of fabric electrodes into smart textiles.

摘要

在监测心电图(ECG)信号时,需要在皮肤和标准医疗电极之间应用导电凝胶,但这可能会引起皮肤刺激,特别是在长期监测时。织物电极具有柔韧性、透气性,并且能够在无需导电凝胶的情况下感知 ECG 信号。本研究的目的是设计并制造一种使用编织技术的圆形织物电极。为了优化编织织物电极,设计了不同直径、不同织物结构和不同纬密的电极,并测量和综合评估了交流阻抗、开路电压和静态 ECG 信号。得出直径为 4 厘米、12/5 缎纹和纬密为 46 根/厘米的参数是织物电极的合适参数。比较了织物电极和标准医疗电极在摆动、深蹲和旋转状态下的 ECG 信号。结果表明,改进数据后具有 86.7%的特征波形的织物电极比标准医疗电极更明显。这项工作为将织物电极集成到智能纺织品中提供了有价值的参考数据,有助于推动其商业化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ca25/9331634/2584f901b408/sensors-22-05472-g001.jpg

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