Department of Electrical and Computer Engineering, Queen's University, Kingston, Ontario, K7L 3N6, Canada.
Department of Chemical Engineering, Queen's University, Kingston, Ontario, K7L 3N6, Canada.
Adv Healthc Mater. 2023 Sep;12(22):e2300142. doi: 10.1002/adhm.202300142. Epub 2023 Jun 9.
Electroencephalography has garnered interest for applications in mobile healthcare, human-machine interfaces, and Internet of Things. Conventional electroencephalography relies on wet and dry electrodes. Despite favorable interface impedance of wet electrodes and skin, the application of a large amount of gel at their interface with skin limits the electroencephalography spatial resolution, increases the risk of shorting between electrodes, and makes them unsuited for long-term mobile recording. In contrast, dry electrodes are better suited for long-term recordings but susceptible to motion artifacts. In addition, both wet and dry electrodes are non-adhesive to the hairy scalp and mechanical support, or chemical adhesives are used to hold them in place. Herein, a conical microstructure array (CMSA) based sensor made of carbon nanotube-polydimethylsiloxane composite is reported. The CMSA sensor is fabricated using the innovative, cost-effective, and scalable method of viscosity-controlled dip-pull process. The sensor adheres to the hairy scalp by generating negative pressure in its conical microstructures when it is pressed against scalp. Aided by the application of a trace amount of gel, CMSA sensor establishes good electrical contact with the skin, enabling its applications in mobile electroencephalography over extended periods. Notably, the signal quality of CMSA sensors is comparable to that of medical-grade wet gel electrodes.
脑电图在移动医疗、人机接口和物联网等领域的应用引起了人们的兴趣。传统的脑电图依赖于湿电极和干电极。尽管湿电极与皮肤的界面具有良好的接口阻抗,但在其与皮肤的界面处使用大量凝胶会限制脑电图的空间分辨率,增加电极之间短路的风险,并使它们不适合长期移动记录。相比之下,干电极更适合长期记录,但容易受到运动伪影的影响。此外,湿电极和干电极都不粘在多毛的头皮上,需要机械支撑,或者使用化学粘合剂将其固定在位。本文报道了一种基于碳纳米管-聚二甲基硅氧烷复合材料的圆锥形微结构阵列(CMSA)传感器。CMSA 传感器是使用创新的、具有成本效益的、可扩展的粘度控制浸渍提拉工艺制造的。当传感器压在头皮上时,其圆锥形微结构会产生负压,从而与多毛的头皮贴合。在施加少量凝胶的辅助下,CMSA 传感器与皮肤建立了良好的电接触,使其能够在移动状态下长时间进行脑电图监测。值得注意的是,CMSA 传感器的信号质量可与医用级湿凝胶电极相媲美。