3D打印柔性基板,气动驱动电极,用于健康监测

M. Schubert, Sabine Friedrich, K. Bock, D. Wedekind, S. Zaunseder, H. Malberg
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引用次数: 3

摘要

远程医疗方法使远程患者监测和远程医疗成为可能。此外,健身追踪器和运动手表是目前流行的电子产品,以提高日常生活中的健康参数意识。特别是,长期和连续测量电生理信号,如心电图(ECG)在远程医疗应用中变得越来越有吸引力。通常使用一次性Ag/AgCl湿电极来保持良好的皮肤-电极接触,但可能会导致皮肤刺激和皮疹。本文提出了一种低成本、个性化和柔性的皮肤电极衬底,可用于未来的消费电子或专业应用。它通过在测量期间施加压力来实现电极与皮肤的替代接触方法,从而实现良好的接触。如果不需要测量,可以释放压力,电极失去与皮肤的接触。3D打印的聚合物模块厚度为4毫米,由压力室、银电极和绝缘层组成。柔性长丝的气密印刷膜在充气时膨胀,可以印刷成不同的厚度和形状,比目前的4mm薄得多。这使得各种应用具有很高的个性。当压力达到150kpa时,膨胀达到1400 μm。当测量皮肤电活动(EDA)时,在皮肤上的首次测试显示出未来应用的有希望的结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
3D printed flexible substrate with pneumatic driven electrodes for health monitoring
Telemedical methods enable remote patient monitoring and healthcare at a distance. Besides, fitness tracker and sport watches are currently trending electronic products to generate awareness of health parameters in daily life. Especially, the long-term and continuous measurement of electrophysiological signals such as electrocardiogramm (ECG) becomes increasingly attractive for telemedical applications. Typically used disposable Ag/AgCl wet electrodes for good skin-electrode contact can potentially cause skin irritation and rashes. This paper presents a low cost, individual and flexible substrate for skin electrodes to be applied in future consumer electronic or professional applications. It enables an alternative contact method of the electrode to the skin by applying a pressure during the measurement and hence good contact. If no measurement is needed pressure can be released and the electrode loses skin contact. The 3D printed polymer module is 4 mm thick and comprises a pressure chamber, silver electrodes and insulation layer. The airtight printed membrane of flexible filament, which expands when inflating the chamber, may be printed in different thicknesses and shapes, much thinner than the present 4mm. This enables a high individuality for various applications. Pressure up to 150 kPa was applied and leads to dilatation of 1400 μm. First tests on skin when measuring electrodermal activity (EDA) show promising results for future applications.
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