IEEE Trans Biomed Circuits Syst. 2020 Dec;14(6):1407-1420. doi: 10.1109/TBCAS.2020.3038589. Epub 2020 Dec 31.
Planar microwave sensors are considered an attractive choice to noninvasively probe the dielectric attributes of biological tissues due to their low cost, simple fabrication, miniature scale, and minimum risk to human health. This paper develops and measures a novel microwave biosensor for non-invasive real-time monitoring of glucose level. The design comprises a rectangular plexiglass channel integrated on a triple-pole complementary split ring resonator (TP-CSRR). The proposed sensor operates in the centimeter-wave range 1-6 GHz and is manufactured using PCB on top of an FR4 dielectric substrate. The sensor elements are excited via a coupled microstrip transmission-line etched on the bottom side of the substrate. The integrated CSRR-based sensor is used as a near-field probe to non-invasively monitor the glucose level changes in the blood mimicking solutions of clinically relevant concentrations to Type-2 normal diabetes (70-120 mg/dL), by recording the frequency response of the harmonic reflection and transmission resonances. This indicates the sensor's capability of detecting small variations in the dielectric properties of the blood samples that are responsive to the electromagnetic fields. The proposed sensor is verified through practical measurements of the fabricated design. Experimental results obtained using a Vector Network Analyzer (VNA) demonstrate a sensitivity performance of about 6.2 dB/(mg/ml) for the developed triple-pole sensor that significantly outperforms the conventional single-pole and other proposed sensors in the literature in terms of the resonance amplitude resolution.
平面微波传感器由于其低成本、简单的制造工艺、微型化和对人体健康的最小风险,被认为是一种有吸引力的选择,可以非侵入式地探测生物组织的介电属性。本文开发并测量了一种新型微波生物传感器,用于非侵入式实时监测血糖水平。该设计包括集成在三极互补分裂环谐振器 (TP-CSRR) 上的矩形有机玻璃通道。所提出的传感器在厘米波段 1-6 GHz 范围内工作,并使用顶部带有 FR4 介电基板的 PCB 制造。传感器元件通过在基板底部刻蚀的耦合微带传输线进行激励。集成的基于 CSRR 的传感器用作近场探头,通过记录谐波反射和传输共振的频率响应,非侵入式监测模拟临床相关浓度的 Type-2 正常糖尿病(70-120mg/dL)的血液中血糖水平变化。这表明传感器能够检测到对电磁场有响应的血液样本介电特性的微小变化。通过对制造设计的实际测量验证了所提出的传感器。使用矢量网络分析仪 (VNA) 获得的实验结果表明,所开发的三极传感器的灵敏度性能约为 6.2 dB/(mg/ml),与文献中的传统单极和其他提出的传感器相比,在共振幅度分辨率方面具有显著优势。