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微波无创血糖监测传感器的设计与干扰测试

Design and Interference Test of Microwave Noninvasive Blood Glucose Monitoring Sensor.

作者信息

Choi Heungjae, Naylon Jack, Luzio Steve, Beutler Jan, Birchall James, Martin Chris, Porch Adrian

机构信息

School of Engineering, Cardiff University, Cardiff CF24 3AA, Wales, U.K.

School of Engineering, Cardiff University, Cardiff CF24 3AA, Wales, U.K. He is now with the Laser Controls Systems Group, ELI Beamlines, Academy of Science, Institute of Physics, Prague, Czech Republic.

出版信息

IEEE Trans Microw Theory Tech. 2015 Oct 1;63(10 Pt 1):3016-3025. doi: 10.1109/TMTT.2015.2472019.

Abstract

A design of a microwave noninvasive continuous blood glucose monitoring sensor and its interference test results are presented. The novelty of the proposed sensor is that it comprises two spatially separated split-ring resonators, where one interacts with the change in glucose level of a sample under test while the other ring is used as a reference. The reference ring has a slightly different resonant frequency and is desensitized to the sample owing to its location, thus allowing changes in temperature to be calibrated out. From an oral glucose tolerance test with two additional commercially available sensors (blood strip and continuous glucose monitor) in parallel, we obtained encouraging performance for our sensor comparable with those of the commercial sensors. The effects of endogenous interferents common to all subjects, i.e., common sugars, vitamins (ascorbic acid), and metabolites (uric acid) have also been investigated by using a large Franz cell assembly. From the interference test, it is shown that the change in sensor response is dominated by changes in glucose level for concentrations relevant to blood, and the effects of interferents are negligible in comparison.

摘要

介绍了一种微波无创连续血糖监测传感器的设计及其干扰测试结果。所提出的传感器的新颖之处在于它包括两个空间分离的裂环谐振器,其中一个与被测样品的葡萄糖水平变化相互作用,而另一个环用作参考。参考环具有略有不同的谐振频率,并且由于其位置对样品不敏感,从而可以校准温度变化。通过与另外两个市售传感器(血糖试纸和连续血糖监测仪)并行进行口服葡萄糖耐量试验,我们获得了与商业传感器相当的令人鼓舞的传感器性能。还通过使用大型Franz细胞组件研究了所有受试者共有的内源性干扰物的影响,即常见的糖类、维生素(抗坏血酸)和代谢物(尿酸)。从干扰测试可以看出,对于与血液相关的浓度,传感器响应的变化主要由葡萄糖水平的变化主导,相比之下干扰物的影响可以忽略不计。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5d97/4641327/5a9f8d9c1527/emss-65843-f0001.jpg

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