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Three-Dimensional Integrated Ultra-Low-Volume Passive Microfluidics with Ion-Sensitive Field-Effect Transistors for Multiparameter Wearable Sweat Analyzers

机译:具有离子敏感场效应晶体管的三维集成超低批量无源微流体,用于多级耐磨汗液分析仪

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摘要

Wearable systems could offer noninvasive and real-time solutions for monitoring of biomarkers in human sweat as an alternative to blood testing. Recent studies have demonstrated that the concentration of certain biomarkers in sweat can be directly correlated to their concentrations in blood, making sweat a trusted biofluid candidate for noninvasive diagnostics. We introduce a fully on-chip integrated wearable sweat sensing system to track biochemical information at the surface of the skin in real time. This system heterogeneously integrates, on a single silicon chip, state-of-the-art ultrathin body (UTB) fully depleted silicon-on-insulator (FD-SOI) ISFET sensors with a biocompatible microfluidic interface, to deliver a "lab-on-skin" sensing platform. A full process for the fabrication of this system is proposed in this work and is demonstrated by standard semiconductor fabrication procedures. The system is capable of collecting small volumes of sweat from the skin of a human and posteriorly passively driving the biofluid, by capillary action, to a set of functionalized ISFETs for analysis of pH level and Na+ and concentrations. Drop-tasted ion-sensing membranes on different sets of sensors on the same substrate enable multiparameter analysis on the same chip, with small and controlled cross-sensitivities, whereas a miniaturized quasireference electrodes set a stable analyte potential, avoiding the use of a cumbersome external reference electrode. The progress of lab-on-skin technology reported here can lead to autonomous wearable systems enabling real-time continuous monitoring of sweat composition, with applications ranging from medicine to lifestyle behavioral engineering and sports.
机译:可穿戴系统可以提供非侵入性和实时解决方案,用于监测人类汗水中的生物标志物,作为验血的替代品。最近的研究表明,汗液中某些生物标志物的浓度可以与其血液中的浓度直接相关,使汗水成为无创诊断的可信生物流体候选者。我们介绍了一个完整的片上集成的可穿戴汗水传感系统,实时跟踪皮肤表面的生化信息。该系统在单个硅芯片上,使用生物相容性微流体界面,在单个硅芯片,最先进的硅的绝缘体(FD-SOI)ISFET传感器上是异质的整合,以提供“实验室-Skin“传感平台。在该工作中提出了一种制造该系统的完整方法,并通过标准半导体制造程序证明。该系统能够通过毛细管作用,通过毛细管作用收集来自人的皮肤和后部被动地将生物流体驱动的小体积汗液中,以分析pH水平和Na +和浓度的一组官能化的ISFET。在相同基板上的不同传感器上的滴加离子传感膜使得在同一芯片上的多射点分析,具有小且受控的交叉敏感性,而小型化的Quasirefifer电极设定稳定的分析物潜力,避免使用繁琐的外部参考电极。在此报告的皮肤上的皮肤技术的进展可以导致自主穿戴系统,从而可以实时连续监测汗液组合物,其应用范围从医学到生活方式行为工程和运动。

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