数码产品
计算机科学
微流控
材料科学
印刷电子产品
无线
嵌入式系统
可穿戴计算机
纳米技术
电气工程
工程类
电信
作者
Sung Bong Kim,KunHyuck Lee,Milan Raj,Bo-Ram Lee,Jonathan T. Reeder,Jahyun Koo,Aurélie Hourlier‐Fargette,Amay J. Bandodkar,Sang Min Won,Yurina Sekine,Jungil Choi,Yi Zhang,Jangryeol Yoon,Bong Hoon Kim,Yeojeong Yun,Seojin Lee,Jiho Shin,Jeonghyun Kim,Roozbeh Ghaffari,John A. Rogers
出处
期刊:Small
[Wiley]
日期:2018-10-09
卷期号:14 (45): e1802876-e1802876
被引量:111
标识
DOI:10.1002/smll.201802876
摘要
Sweat excretion is a dynamic physiological process that varies with body position, activity level, environmental factors, and health status. Conventional means for measuring the properties of sweat yield accurate results but their requirements for sampling and analytics do not allow for use in the field. Emerging wearable devices offer significant advantages over existing approaches, but each has significant drawbacks associated with bulk and weight, inability to quantify volumetric sweat rate and loss, robustness, and/or inadequate accuracy in biochemical analysis. This paper presents a thin, miniaturized, skin-interfaced microfluidic technology that includes a reusable, battery-free electronics module for measuring sweat conductivity and rate in real-time using wireless power from and data communication to electronic devices with capabilities in near field communications (NFC), including most smartphones. The platform exploits ultrathin electrodes integrated within a collection of microchannels as interfaces to circuits that leverage NFC protocols. The resulting capabilities are complementary to those of previously reported colorimetric strategies. Systematic studies of these combined microfluidic/electronic systems, accurate correlations of measurements performed with them to those of laboratory standard instrumentation, and field tests on human subjects exercising and at rest establish the key operational features and their utility in sweat analytics.
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