计算机科学
可穿戴计算机
接口
背景(考古学)
微流控
嵌入式系统
试验台
计算机硬件
纳米技术
计算机网络
材料科学
生物
古生物学
作者
Haisong Lin,Jiawei Tan,Jialun Zhu,Shuyu Lin,Yichao Zhao,Wenzhuo Yu,Hannaneh Hojaiji,Bo Wang,Siyang Yang,Xuanbing Cheng,Zhaoqing Wang,Eric Tang,Christopher Yeung,Sam Emaminejad
标识
DOI:10.1038/s41467-020-18238-6
摘要
Abstract Active biofluid management is central to the realization of wearable bioanalytical platforms that are poised to autonomously provide frequent, real-time, and accurate measures of biomarkers in epidermally-retrievable biofluids (e.g., sweat). Accordingly, here, a programmable epidermal microfluidic valving system is devised, which is capable of biofluid sampling, routing, and compartmentalization for biomarker analysis. At its core, the system is a network of individually-addressable microheater-controlled thermo-responsive hydrogel valves, augmented with a pressure regulation mechanism to accommodate pressure built-up, when interfacing sweat glands. The active biofluid control achieved by this system is harnessed to create unprecedented wearable bioanalytical capabilities at both the sensor level (decoupling the confounding influence of flow rate variability on sensor response) and the system level (facilitating context-based sensor selection/protection). Through integration with a wireless flexible printed circuit board and seamless bilateral communication with consumer electronics (e.g., smartwatch), contextually-relevant (scheduled/on-demand) on-body biomarker data acquisition/display was achieved.
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