Radiophysics Faculty, Tomsk State University, 634050 Tomsk, Russia.
Biosensors (Basel). 2021 Feb 26;11(3):62. doi: 10.3390/bios11030062.
The article presents a model of a near-field sensor for non-invasive glucose monitoring. The sensor has a specific design and forms a rather extended near-field. Due to this, the high penetration of electromagnetic waves into highly absorbing media (biologic media) is achieved. It represents a combined slot antenna based on a flexible RO3003 substrate. Moreover, it is small and rather flat (25 mm in diameter, 0.76 mm thick). These circumstances are the distinguishing features of this sensor in comparison with microwave sensors of other designs. The article presents the results of numerical modeling and experimental verification of a near-field sensor. Furthermore, a phantom of human biological media (human hand) was created for experimentation. In the case of numerical modeling, the sensor is located close to the hand model. In a full-scale experiment, it is located close to the phantom of the human hand for the maximum interaction of the near-field with biological materials. As a result of a series of measurements for this sensor, the reflection coefficient is measured, and the dependences of the reflected signal on the frequency are plotted. According to the results of the experiments carried out, there is a clear difference in glucose concentrations. At the same time, the accuracy of determining the difference in glucose concentrations is high. The values of the amplitude of the reflected signal with a change in concentration differ by 0.5-0.8 dB. This sensor can be used for developing a non-invasive blood glucose measurement procedure.
本文提出了一种用于非侵入式血糖监测的近场传感器模型。该传感器具有特定的设计,并形成了相当扩展的近场。由于这个原因,实现了电磁波对高吸收介质(生物介质)的高穿透性。它是一种基于柔性 RO3003 基板的组合缝隙天线。此外,它体积小且相当平坦(直径 25 毫米,厚 0.76 毫米)。这些情况是与其他设计的微波传感器相比,该传感器的显著特点。本文介绍了近场传感器的数值建模和实验验证结果。此外,还为实验创建了人体生物介质(人手)的幻象。在数值建模的情况下,传感器靠近手模型。在全尺寸实验中,它靠近人手的幻象,以实现近场与生物材料的最大相互作用。对该传感器进行了一系列测量,测量了反射系数,并绘制了反射信号随频率的变化关系。根据所进行的实验结果,葡萄糖浓度有明显差异。同时,确定葡萄糖浓度差异的准确性很高。浓度变化时反射信号幅度的差异为 0.5-0.8 dB。该传感器可用于开发非侵入式血糖测量程序。