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Ultra-conformal drawn-on-skin electronics for multifunctional motion artifact-free sensing and point-of-care treatment

机译:用于多功能运动伪影感测和护理点治疗的超保形拉皮电子产品

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An accurate extraction of physiological and physical signals from human skin is crucial for health monitoring, disease prevention, and treatment. Recent advances in wearable bioelectronics directly embedded to the epidermal surface are a?promising solution for future epidermal sensing. However, the existing wearable bioelectronics are susceptible to motion artifacts as they lack proper adhesion and conformal interfacing with the skin during motion. Here, we present ultra-conformal, customizable, and deformable drawn-on-skin electronics, which is robust to motion due to strong adhesion and ultra-conformality of the electronic inks drawn directly on skin. Electronic inks, including conductors, semiconductors, and dielectrics, are drawn on-demand in a freeform manner to develop devices, such as transistors, strain sensors, temperature sensors, heaters, skin hydration sensors, and electrophysiological sensors. Electrophysiological signal monitoring during motion shows drawn-on-skin electronics' immunity to motion artifacts. Additionally, electrical stimulation based on drawn-on-skin electronics demonstrates accelerated healing of skin wounds.
机译:精确提取人体皮肤的生理和物理信号对于健康监测,疾病预防和治疗至关重要。直接嵌入到表皮表面的可穿戴生物电体的最新进展是一个?未来表皮感测的有希望的解决方案。然而,现有的可穿戴生物电形易于运动伪影,因为它们在运动期间缺乏适当的粘附性和与皮肤的相互作用。在这里,我们提出了超共形,可定制和可变形的拔拔电子元件,其由于直接在皮肤上绘制的电子墨水的强粘附和超全形状而稳健而稳健。包括导体,半导体和电介质的电子墨水,以自由形式方式提升,以开发设备,例如晶体管,应变传感器,温度传感器,加热器,皮肤水合传感器和电生理传感器。运动期间的电生理信号监测显示绘制的皮肤电子器件对运动伪影的免疫力。另外,基于皮肤上的电子设备的电刺激证明了皮肤伤口的加速愈合。

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