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智能服装的一大进步——用于可穿戴健康监测的基于织物的微流体传感器

A Step Forward for Smart Clothes─Fabric-Based Microfluidic Sensors for Wearable Health Monitoring.

作者信息

Zhang Tao, Ratajczak Adam Michael, Chen Hui, Terrell John A, Chen Chengpeng

机构信息

Department of Chemistry and Biochemistry, University of Maryland Baltimore County, Baltimore, Maryland, 21250, United States.

Department of Chemical, Biochemical and Environmental Engineering, University of Maryland Baltimore County, Baltimore, Maryland, 21250, United States.

出版信息

ACS Sens. 2022 Dec 23;7(12):3857-3866. doi: 10.1021/acssensors.2c01827. Epub 2022 Dec 1.

Abstract

We report the first demonstration of fabric-based microfluidics for wearable sensing. A new technology to develop microfluidics on fabrics, as a part of an undergarment, is described here. Compared to conventional microfluidics from polydimethylsiloxane, fabric-based microfluidics are simple to make, robust, and suitable for efficient sweat delivery. Specifically, acrylonitrile butadiene styrene (ABS) films with precut microfluidic patterns were infused through fabrics to form hydrophobic areas in a specially controlled sandwich structure. Experimental tests and simulations confirmed the sweat delivery efficiency of the microfluidics. Electrodes were screen-printed onto the fabric-based microfluidic. A novel wearable potentiometer based on Arduino was also developed as the transducer and signal readouts, which was low-cost, standardized, open-source, and capable of wireless data transfer. We applied the sensor system as a standalone or as a module of a T-shirt to quantify [Ca] in a wearer's sweat, with physiological and accurate results generated. Overall, this work represents a critical step in turning regular undergarments into biochemically smart platforms for health monitoring, which will broadly benefit human healthcare.

摘要

我们报道了用于可穿戴传感的织物基微流体技术的首次展示。本文描述了一种作为内衣一部分在织物上开发微流体的新技术。与由聚二甲基硅氧烷制成的传统微流体相比,织物基微流体易于制造、坚固耐用且适合高效排汗。具体而言,将具有预切割微流体图案的丙烯腈 - 丁二烯 - 苯乙烯(ABS)薄膜通过织物注入,以在特殊控制的三明治结构中形成疏水区域。实验测试和模拟证实了微流体的排汗效率。将电极丝网印刷到织物基微流体上。还开发了一种基于Arduino的新型可穿戴电位计作为传感器和信号读出装置,其成本低、标准化、开源且能够进行无线数据传输。我们将该传感器系统作为独立设备或作为T恤的一个模块应用于量化穿戴者汗液中的[Ca],并产生了生理准确的结果。总体而言,这项工作代表了将普通内衣转变为用于健康监测的生化智能平台的关键一步,这将广泛造福人类医疗保健。

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