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Fully Integrated Stretchable Wireless Skin‐Conformal Bioelectronics for Continuous Stress Monitoring in Daily Life

机译:完全集成可伸缩无线皮肤保形生物能力用于日常生活中的连续应力监测

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摘要

Stress is one of the main causes that increase the risk of serious health problems. Recent wearable devices have been used to monitor stress levels via electrodermal activities on the skin. Although many biosensors provide adequate sensing performance, they still rely on uncomfortable, partially flexible systems with rigid electronics. These devices are mounted on either fingers or palms, which hinders a continuous signal monitoring. A fully‐integrated, stretchable, wireless skin‐conformal bioelectronic (referred to as “SKINTRONICS”) is introduced here that integrates soft, multi‐layered, nanomembrane sensors and electronics for continuous and portable stress monitoring in daily life. The all‐in‐one SKINTRONICS is ultrathin, highly soft, and lightweight, which overall offers an ergonomic and conformal lamination on the skin. Stretchable nanomembrane electrodes and a digital temperature sensor enable highly sensitive monitoring of galvanic skin response (GSR) and temperature. A set of comprehensive signal processing, computational modeling, and experimental study provides key aspects of device design, fabrication, and optimal placing location. Simultaneous comparison with two commercial stress monitors captures the enhanced performance of SKINTRONICS in long‐term wearability, minimal noise, and skin compatibility. In vivo demonstration of continuous stress monitoring in daily life reveals the unique capability of the soft device as a real‐world applicable stress monitor.
机译:压力是增加严重健康问题风险的主要原因之一。最近的可穿戴设备已被用于通过皮肤上的电卸电子活动监测应力水平。虽然许多生物传感器提供足够的传感性能,但它们仍然依赖于具有刚性电子产品的不舒服,部分柔性的系统。这些设备安装在手指或手掌上,阻碍连续的信号监控。这里介绍了全集成,可伸缩,无线皮肤共形生物电解(称为“Skintronics”),在此介绍了在日常生活中连续和便携式应力监测的软,多层,纳米骨膜传感器和电子设备集成。一体化的Skintronics是超薄,高度柔软和轻质,其总体在皮肤上提供了符合人体工程学和保全层压。可伸展的纳米膜电极和数字温度传感器可实现高灵敏度监测电流皮肤响应(GSR)和温度。一套全面的信号处理,计算建模和实验研究提供了设备设计,制造和最佳放置位置的关键方面。与两种商业压力监视器的同时比较捕获了长期耐用性,最小噪声和皮肤兼容性的Skintronics的增强性能。在日常生活中连续应力监测的体内演示揭示了软设备作为现实世界适用的应力监测器的独特能力。

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