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首页> 外文期刊>Sensors Journal, IEEE >Multi-Purpose Microwave Biosensor Based on Signal Encoding Technique and Microfluidics for Improved Sensitivity
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Multi-Purpose Microwave Biosensor Based on Signal Encoding Technique and Microfluidics for Improved Sensitivity

机译:基于信号编码技术和微流体的多功能微波生物传感器,可提高灵敏度

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In this paper, a microwave biosensor with unprecedented sensitivity based on encoded pulse propagation and microfluidics is theoretically investigated and experimentally demonstrated. The structure consists of a double-spiral transmission line on FR4 substrate electromagnetically coupled to a copper coiled capillary tube above it. The working principle for improved sensitivity consists of propagating an encoded sequence of short pulses (Walsh-Hadamard spreading code with variable temporal length) in a recirculating manner so that the pulses are deformed both due to dispersive and time-delay effects. Once the recirculation is finished, the energy of the code at the sensor output is calculated, providing an indicator directly related with the analyte concentration. The experimental results demonstrate the improved sensitivity of this sensor approach for the case of glucose with 2.9 mg/ml resolution. Furthermore, we demonstrate the potential of this technology as a sensor platform by investigating other chemical compounds such as isopropyl alcohol (IPA) and acetone with a sensitivity of 20% of the volume. Finally, the outstanding performance, both in terms of accuracy and sensitivity, situates the present multi-purpose approach within the state-of-the-art of microwave (bio)chemical sensors.
机译:本文理论上地研究了基于编码脉冲传播和微流体的前所未有的灵敏度的微波生物传感器进行了实验和实验证明了微波生物传感器。该结构由FR4基板上的双螺旋传输线组成,电磁耦合到其上方的铜盘绕的毛细管。改善灵敏度的工作原理包括以再循环方式传播编码的短脉冲(WALSH-HATAMARD扩展码)的编码序列,使得由于分散和时滞效应,脉冲都变形。一旦再循环完成,计算传感器输出处的代码的能量,提供与分析物浓度直接相关的指示。实验结果表明,这种传感器方法对于具有2.9mg / mL分辨率的葡萄糖的情况的改善敏感性。此外,我们通过研究其他化合物如异丙醇(IPA)和丙酮,致敏感性为20%的体积的敏感性来证明该技术作为传感器平台的潜力。最后,在准确性和灵敏度方面的出色性能都在微波(BIO)化学传感器的最先进内的本多用途方法。

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