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利用毫米波超材料启发式谐振器进行血糖水平检测。

Glucose level detection using millimetre-wave metamaterial-inspired resonator.

机构信息

Advanced Telecommunication Research Center (ATRC), Faculty of Electrical and Electronic Engineering, Universiti Tun Hussein Onn Malaysia (UTHM), Batu Pahat, Johor, Malaysia.

Faculty of Electronics and Electrical Engineering, International University of Africa, Khartoum, Sudan.

出版信息

PLoS One. 2022 Jun 29;17(6):e0269060. doi: 10.1371/journal.pone.0269060. eCollection 2022.

Abstract

Millimetre-wave frequencies are promising for sensitive detection of glucose levels in the blood, where the temperature effect is insignificant. All these features provide the feasibility of continuous, portable, and accurate monitoring of glucose levels. This paper presents a metamaterial-inspired resonator comprising five split-rings to detect glucose levels at 24.9 GHz. The plexiglass case containing blood is modelled on the sensor's surface and the structure is simulated for the glucose levels in blood from 50 mg/dl to 120 mg/dl. The novelty of the sensor is demonstrated by the capability to sense the normal glucose levels at millimetre-wave frequencies. The dielectric characteristics of the blood are modelled by using the Debye parameters. The proposed design can detect small changes in the dielectric properties of blood caused by varying glucose levels. The variation in the transmission coefficient for each glucose level tested in this study is determined by the quality factor and resonant frequency. The sensor presented can detect the change in the quality factor of transmission response up to 2.71/mg/dl. The sensor's performance has also been tested to detect diabetic hyperosmolar syndrome. The sensor showed a linear shift in resonant frequency with the change in glucose levels, and an R2 of 0.9976 was obtained by applying regression analysis. Thus, the sensor can be used to monitor glucose in a normal range as well as at extreme levels.

摘要

毫米波频率在检测血液中的葡萄糖水平方面具有很大的应用潜力,因为在这个频段温度的影响可以忽略不计。所有这些特点都为连续、便携和准确地监测葡萄糖水平提供了可行性。本文提出了一种基于超材料的谐振器,由五个分裂环组成,用于在 24.9GHz 下检测葡萄糖水平。在传感器表面模拟了含有血液的有机玻璃盒,并对血液中葡萄糖水平在 50mg/dl 至 120mg/dl 之间的情况进行了结构模拟。该传感器的新颖之处在于能够在毫米波频率下感知正常的葡萄糖水平。血液的介电特性通过德拜参数进行建模。所提出的设计可以检测到由于葡萄糖水平变化而导致的血液介电特性的微小变化。本研究中测试的每个葡萄糖水平的传输系数变化由品质因数和共振频率决定。该传感器可以检测到传输响应的品质因数变化高达 2.71/mg/dl。还对传感器检测糖尿病高渗综合征的性能进行了测试。传感器显示出与葡萄糖水平变化相对应的共振频率线性偏移,通过应用回归分析得到了 0.9976 的 R2 值。因此,该传感器可用于监测正常范围和极端水平的葡萄糖。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/968e/9242449/1b21cbac9a04/pone.0269060.g001.jpg

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