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首页> 外文期刊>Biomedical Engineering, IEEE Transactions on >Fabric-Based Wearable Dry Electrodes for Body Surface Biopotential Recording
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Fabric-Based Wearable Dry Electrodes for Body Surface Biopotential Recording

机译:基于织物的可穿戴式干电极用于身体表面生物电势记录

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A flexible and conformable dry electrode design on nonwoven fabrics is examined as a sensing platform for biopotential measurements. Due to limitations of commercial wet electrodes (e.g., shelf life, skin irritation), dry electrodes are investigated as the potential candidates for long-term monitoring of ECG signals. Multilayered dry electrodes are fabricated by screen printing of Ag/AgCl conductive inks on flexible nonwoven fabrics. This study focuses on the investigation of skin–electrode interface, form factor design, electrode body placement of printed dry electrodes for a wearable sensing platform. ECG signals obtained with dry and wet electrodes are comparatively studied as a function of body posture and movement. Experimental results show that skin-electrode impedance is influenced by printed electrode area, skin–electrode interface material, and applied pressure. The printed electrode yields comparable ECG signals to wet electrodes, and the QRS peak amplitude of ECG signal is dependent on printed electrode area and electrode on body spacing. Overall, fabric-based printed dry electrodes present an inexpensive health monitoring platform solution for mobile wearable electronics applications by fulfilling user comfort and wearability.
机译:将非织造织物上灵活,顺应的干电极设计作为生物电位测量的传感平台进行了检验。由于商业湿电极的局限性(例如保质期,皮肤刺激性),干电极被研究为长期监测ECG信号的潜在候选者。多层干电极是通过在柔性无纺布上丝网印刷Ag / AgCl导电油墨制成的。这项研究的重点是用于可穿戴传感平台的皮肤-电极界面,形状因数设计,印刷干电极的电极体放置。使用干电极和湿电极获得的ECG信号将根据人体姿势和运动进行比较研究。实验结果表明,皮肤电极阻抗受印刷电极面积,皮肤-电极界面材料和施加压力的影响。印刷电极产生的ECG信号可与湿电极媲美,ECG信号的QRS峰值幅度取决于印刷电极面积和电极在人体间距上的变化。总体而言,基于织物的印刷干电极通过满足用户的舒适性和可穿戴性,为移动可穿戴电子应用提供了一种廉价的健康监测平台解决方案。

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