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Simultaneous electrophysiological recording and self-powered biosignal monitoring using epidermal, nanotexturized, triboelectronic devices

机译:使用表皮,纳米缩放,摩擦电子器件同时电生理记录和自我动力生物监测

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摘要

The fabrication of multifunctional epidermal electronic devices capable of efficiently reading electrophysiological signals and converting low-amplitude mechanical signals into electric outputs promises to pave the way towards the development of self-powered wearable sensors, smart consumer electronics, and human-machine interfaces. This article describes the scalable and cost-effective fabrication of epidermal, nanotexturized, triboelectronic devices (EnTDs). EnTDs can be conformably worn on the skin and efficiently monitor electrophysiological signals, temperature, and hydration levels. EnTDs, while measuring electrophysiological signals, can also convert imperceptible time-variant body motions into electrical signals using a nanotexturized triboelectric layer, enabling the self-powered monitoring of respiration, swallowing, and arterial pulse. These results suggest the potential of EnTDs as a new class of multifunctional skin-like sensors for biomedical monitoring and self-powered sensing applications.
机译:能够有效地读取电生理信号并将低振幅机械信号转换成电输出的多功能表皮电子器件的制造有望为自动穿戴传感器,智能消费电子产品和人机界面进行铺平开发。本文介绍了表皮,纳米缩放,摩擦电子器件(最终)的可扩展性和经济效益的制造。可以在皮肤上适系和有效地监测电生理信号,温度和水合水平。在测量电生理信号的同时,还可以使用纳米缩放的摩擦电层将难以察觉的时间变体体动术转换成电信号,从而实现呼吸,吞咽和动脉脉冲的自动监测。这些结果表明,作为生物医学监测和自动传感应用的新类别的新类多功能皮肤传感器的潜力。

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