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首页> 外文期刊>IEEE transactions on biomedical circuits and systems >Self-Powered Wireless Affinity-Based Biosensor Based on Integration of Paper-Based Microfluidics and Self-Assembled RFID Antennas
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Self-Powered Wireless Affinity-Based Biosensor Based on Integration of Paper-Based Microfluidics and Self-Assembled RFID Antennas

机译:基于纸质微流控技术和自组装RFID天线集成的自供电基于无线亲和力的生物传感器

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This paper presents a wireless, self-powered, affinity-based biosensor based on the integration of paper-based microfluidics with our previously reported method for self-assembling radio-frequency (RF) antennas. At the core of the proposed approach is a silver-enhancement technique that grows portions of a RF antenna in regions where target antigens hybridize with target specific affinity probes. The hybridization regions are defined by a network of nitrocellulose based microfluidic channels which implement a self-powered approach to sample the reagent and control its flow and mixing. The integration substrate for the biosensor has been constructed using polyethylene and the patterning of the antenna on the substrate has been achieved using a low-cost ink-jet printing technique. The substrate has been integrated with passive radio-frequency identification (RFID) tags to demonstrate that the resulting sensor-tag can be used for continuous monitoring in a food supply-chain where direct measurement of analytes is typically considered to be impractical. We validate the proof-of-concept operation of the proposed sensor-tag using IgG as a model analyte and using a 915 MHz Ultra-high-frequency (UHF) RFID tagging technology.
机译:本文提出了一种无线,自供电,基于亲和力的生物传感器,该传感器基于纸质微流体技术与我们先前报道的自组装射频(RF)天线方法的集成。所提出方法的核心是一种银增强技术,该技术可以在目标抗原与目标特异性亲和探针杂交的区域中生长一部分RF天线。杂交区域由基于硝酸纤维素的微流体通道网络定义,该网络实施自供电方法以对试剂进行采样并控制其流量和混合。已经使用聚乙烯构造了用于生物传感器的集成基板,并且已经使用低成本的喷墨印刷技术实现了基板上天线的图案化。该基材已与无源射频识别(RFID)标签集成在一起,以证明所得的传感器标签可用于食品供应链中的连续监控,在该供应链中通常认为直接测量分析物是不切实际的。我们使用IgG作为模型分析物并使用915 MHz超高频(UHF)RFID标签技术来验证提议的传感器标签的概念验证操作。

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