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基于具有浓度渐变的微带贴片天线用于无创血糖测量的回波损耗测量及史密斯圆图变化的基础研究。

Basic Study on Measurement of Return Loss and Smith Chart Change Using Microstrip Patch Antenna with Concentration Transition for Non-invasive Blood Glucose Measurement.

作者信息

Yu Rae-Hyun, Rhee Seung-Yeop, Kim Kyung-Ho

机构信息

Department of Electrical and Electronic Engineering, Dankook Univerity, 152 Jukjeon-ro, Suji-gu, Yongin-si, Gyeonggi-do Korea.

Department of Electronic Communication Engineering, Chonnam University, Gwangju, Korea.

出版信息

J Electr Eng Technol. 2023;18(2):1389-1396. doi: 10.1007/s42835-022-01290-1. Epub 2022 Nov 3.

Abstract

This paper describes a basic study on the measurement of return loss and change in Smith chart using a microstrip patch antenna (MPA) with concentration transition to perform non-invasive blood glucose measurements. To evaluate blood glucose level changes in the human body, the concentration of measurements was changed 10 times to an equivalent of 100 mg/dL in a range of 0-1000 mg/dL to reflect a concentration of 400 mg/dL, which is the fatal level of diabetes. Five types of MPAs were fabricated that formed resonant frequencies in the 1, 2, 3, 4, and 5 GHz bands, and were used in the experiment. Each MPA constituted a sharp narrow band characteristic and induced a large change in return loss. By measuring the return loss and Smith chart to evaluate the concentration change at resonant frequencies, the return loss was observed to change by an average of 0.058 dB for every 100 mg/dL change, and the impedance magnitudes and phase angles analyzed through the Smith chart were observed to have a certain tendency, which confirmed that they were changed. This study shows that for performing non-invasive measurements of blood sugar level, measuring the change in return loss can provide a more stable and reliable measurement compared to the two methods that are simultaneously used to view the samples.

摘要

本文描述了一项基础研究,该研究使用具有浓度转换功能的微带贴片天线(MPA)在史密斯圆图中测量回波损耗和变化,以进行非侵入式血糖测量。为了评估人体血糖水平的变化,测量浓度在0 - 1000mg/dL范围内变化10次,达到相当于100mg/dL的浓度变化,以反映糖尿病的致命水平400mg/dL。制作了五种在1、2、3、4和5GHz频段形成谐振频率的MPA,并用于实验。每个MPA都具有尖锐的窄带特性,并在回波损耗中引起较大变化。通过测量回波损耗和史密斯圆图来评估谐振频率下的浓度变化,观察到每100mg/dL变化,回波损耗平均变化0.058dB,并且通过史密斯圆图分析的阻抗幅度和相位角具有一定趋势,证实它们发生了变化。这项研究表明,对于进行血糖水平的非侵入式测量,与同时用于观察样本的两种方法相比,测量回波损耗的变化可以提供更稳定可靠的测量。

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