Meandered Signal Coplanar Sensor (MSCS) for Glucose Detection

S. Todi, Poonam Agarwal
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引用次数: 2

Abstract

In this work, a microwave sensing mechanism based Meandered Signal Coplanar Sensor (MSCS) for real-time and label-free glucose detection has been demonstrated. In this design, a meandered structure has been embedded in the signal conductor of the CPW transmission line where central part of the meandered structure has been utilized as the sensing area using PDMS (Polydimethylsiloxane) for Sample Under Test (SUT). RF measurements of MSCS with SUT which is aqueous solution of glucose with concentration varying from 0.0 g/ml to 0.6 g/ml, has been closely observed. The experimentally measured RF parameters showed a significant shift in magnitude and frequency which is 3.53 dB with 100 MHz for S11 and 2.65 dB with 15 MHz for S21 respectively. The regression analysis showed the sensitivity 5.76 dB/g/ml and 4.50 dB/g/ml with regression coefficients 0.997 and 0.989 whereas sensitivity is 153.57 MHz/g/ml and 10.71 MHz/g/ml with regression coefficients 0.970 and −0.021 for S11 & S21 parameters respectively.
弯曲信号共面传感器(MSCS)用于葡萄糖检测
在这项工作中,基于弯曲信号共面传感器(MSCS)的微波传感机制被证明用于实时和无标签的葡萄糖检测。在本设计中,在CPW传输线的信号导体中嵌入一个弯曲结构,弯曲结构的中心部分利用PDMS(聚二甲基硅氧烷)作为被测样品(SUT)的传感区域。密切观察了SUT(葡萄糖水溶液,浓度从0.0 g/ml到0.6 g/ml)对MSCS的射频测量。实验测量的射频参数显示出明显的幅度和频率变化,S11在100 MHz时为3.53 dB, S21在15 MHz时为2.65 dB。回归分析表明,S11和S21的灵敏度分别为5.76 dB/g/ml和4.50 dB/g/ml,回归系数分别为0.997和0.989,灵敏度分别为153.57 MHz/g/ml和10.71 MHz/g/ml,回归系数分别为0.970和- 0.021。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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