A programmable epidermal microfluidic valving system for wearable biofluid management and contextual biomarker analysis

Wearable biosensors have been used successfully for biomarker analysis, however, a lack of control over sampling limits applications. Here, the authors report a programmable microfluidic valve to control flow rate, sampling times and allow for biofluid routing and compartmentalisation.

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Autores principales: 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
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Lenguaje:EN
Publicado: Nature Portfolio 2020
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Acceso en línea:https://doaj.org/article/984fc69812264620981008f744bc2bba
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spelling oai:doaj.org-article:984fc69812264620981008f744bc2bba2021-12-02T19:09:20ZA programmable epidermal microfluidic valving system for wearable biofluid management and contextual biomarker analysis10.1038/s41467-020-18238-62041-1723https://doaj.org/article/984fc69812264620981008f744bc2bba2020-09-01T00:00:00Zhttps://doi.org/10.1038/s41467-020-18238-6https://doaj.org/toc/2041-1723Wearable biosensors have been used successfully for biomarker analysis, however, a lack of control over sampling limits applications. Here, the authors report a programmable microfluidic valve to control flow rate, sampling times and allow for biofluid routing and compartmentalisation.Haisong LinJiawei TanJialun ZhuShuyu LinYichao ZhaoWenzhuo YuHannaneh HojaijiBo WangSiyang YangXuanbing ChengZhaoqing WangEric TangChristopher YeungSam EmaminejadNature PortfolioarticleScienceQENNature Communications, Vol 11, Iss 1, Pp 1-12 (2020)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
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
A programmable epidermal microfluidic valving system for wearable biofluid management and contextual biomarker analysis
description Wearable biosensors have been used successfully for biomarker analysis, however, a lack of control over sampling limits applications. Here, the authors report a programmable microfluidic valve to control flow rate, sampling times and allow for biofluid routing and compartmentalisation.
format article
author 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
author_facet 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
author_sort Haisong Lin
title A programmable epidermal microfluidic valving system for wearable biofluid management and contextual biomarker analysis
title_short A programmable epidermal microfluidic valving system for wearable biofluid management and contextual biomarker analysis
title_full A programmable epidermal microfluidic valving system for wearable biofluid management and contextual biomarker analysis
title_fullStr A programmable epidermal microfluidic valving system for wearable biofluid management and contextual biomarker analysis
title_full_unstemmed A programmable epidermal microfluidic valving system for wearable biofluid management and contextual biomarker analysis
title_sort programmable epidermal microfluidic valving system for wearable biofluid management and contextual biomarker analysis
publisher Nature Portfolio
publishDate 2020
url https://doaj.org/article/984fc69812264620981008f744bc2bba
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