Stauffer Flurin, Thielen Moritz, Sauter Christina, Chardonnens Séverine, Bachmann Simon, Tybrandt Klas, Peters Christian, Hierold Christofer, Vörös Janos
Laboratory of Biosensors and Bioelectronics, ETH Zurich, Gloriastrasse 35, 8092, Zürich, Switzerland.
Micro and Nanosystems, ETH Zurich, Tannenstrasse 3, 8092, Zürich, Switzerland.
Adv Healthc Mater. 2018 Apr;7(7):e1700994. doi: 10.1002/adhm.201700994. Epub 2018 Jan 13.
Preparation-free and skin compliant biopotential electrodes with high recording quality enable wearables for future healthcare and the Internet of Humans. Here, super-soft and self-adhesive electrodes are presented for use on dry and hairy skin without skin preparation or attachment pressure. The electrodes show a skin-contact impedance of 50 kΩ cm at 10 Hz that is comparable to clinical standard gel electrodes and lower than existing dry electrodes. Microstructured electrodes inspired by grasshopper feet adhere repeatedly to the skin with a force of up to 0.1 N cm without further attachment even during strong movement or deformation of the skin. Skin compliance and adhesive properties of the electrodes result in reduction of noise and motion artifacts superior to other dry electrodes reaching the performance of commercial gel electrodes. The signal quality is demonstrated by recording a high-fidelity electrocardiograms of a swimmer in water. Furthermore, an electrode with soft macropillars is used to detect alpha activity in the electroencephalograms from the back of the head through dense hair. Compared to gel electrodes, the soft biopotential electrodes are nearly imperceptible to the wearer and cause no skin irritations even after hours of application. The electrodes presented here could combine unobtrusive and long-term biopotential recordings with clinical-grade signal performance.
具备高记录质量的免制备且贴合皮肤的生物电位电极,使可穿戴设备适用于未来的医疗保健和人类物联网。在此,展示了一种超柔软且自粘的电极,可用于干燥多毛的皮肤,无需进行皮肤准备或施加附着压力。这些电极在10 Hz时的皮肤接触阻抗为50 kΩ·cm,与临床标准凝胶电极相当,且低于现有干电极。受蚱蜢足部启发的微结构电极即使在皮肤剧烈运动或变形时,也能以高达0.1 N/cm的力反复粘附在皮肤上,无需进一步固定。电极的皮肤顺应性和粘附特性可降低噪声和运动伪影,优于其他干电极,达到了商业凝胶电极的性能。通过记录游泳者在水中的高保真心电图来证明信号质量。此外,一种带有软大柱的电极用于通过浓密头发检测后脑勺脑电图中的阿尔法活动。与凝胶电极相比,这种柔软的生物电位电极佩戴者几乎感觉不到,即使佩戴数小时也不会引起皮肤刺激。这里展示的电极可以将不引人注意的长期生物电位记录与临床级信号性能相结合。