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Surface modification of textile electrodes to improve electrocardiography signals in wearable smart garment

机译:纺织电极的表面修饰可改善可穿戴智能服装中的心电图信号

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摘要

Recording high quality biosignals by dry textile electrodes is a common challenge in medical health monitoring garments. The aim of this study was to improve skin-electrode interface and enhance the quality of recorded electrocardiography (ECG) signals by modification of textile electrodes embedded in WearItMed smart garment. The garment has been developed for long-term health monitoring in patients suffering from epilepsy and Parkinson's disease. A skin-friendly electro-conductive elastic paste was formulated to coat and modify the surface of the knitted textile electrodes. The modifications improved the surface characteristics of the electrodes by promoting a more effective contact area between skin and electrode owing to a more even surface, fewer pores, greater surface stability against touch, and introduction of humidity barrier properties. The modifications decreased the skin-electrode contact impedance, and consequently improved the recorded ECG signals obviously when low pressure was applied to the electrodes, therefore contributed to greater patient comfort. The created contact surface allowed the natural humidity of the skin/sweat to ease the signal transfer between the electrode and the body, while introducing a shorter settling time and retaining moisture over a longer time. Microscopic images, ECG signal measurements, electrode-skin contact impedance at different pressures and times, and water absorbency were measured and reported.
机译:在医学健康监测服装中,通过干纺织品电极记录高质量的生物信号是一个普遍的挑战。这项研究的目的是通过修改嵌入WearItMed智能服装中的纺织电极来改善皮肤电极界面并提高记录的心电图(ECG)信号的质量。该服装已开发用于癫痫和帕金森氏病患者的长期健康监测。配制一种对皮肤友好的导电弹性糊剂,以涂覆和修饰针织织物电极的表面。所述修饰通过促进皮肤和电极之间更有效的接触面积而改善了电极的表面特性,这归因于更平坦的表面,更少的孔,更大的抗触摸表面稳定性以及引入了防潮性能。这些修改降低了皮肤电极的接触阻抗,因此,当在电极上施加低压时,明显改善了记录的ECG信号,因此有助于提高患者的舒适度。产生的接触表面允许皮肤/汗液的自然湿度减轻了电极与身体之间的信号传递,同时引入了更短的建立时间并在更长的时间内保留了水分。测量并报告了显微图像,ECG信号测量值,在不同压力和时间下的电极-皮肤接触阻抗以及吸水率。

著录项

  • 来源
    《Journal of materials science》 |2019年第17期|16666-16675|共10页
  • 作者单位

    Univ Boras Fac Text Engn & Business Dept Text Technol Text Mat Technol SE-50190 Boras Sweden;

    RISE Acreo Box 53071 SE-40014 Gothenburg Sweden;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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