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基于微带贴片天线在毫米波传输测量的葡萄糖传感系统。

A Glucose Sensing System Based on Transmission Measurements at Millimetre Waves using Micro strip Patch Antennas.

机构信息

MediWise| Medical Wireless Sensing Ltd, Queen Mary Bio Enterprises Innovation Centre, (QMB), 42 New Road, London, E1 2AX, UK.

School of Natural and Mathematical Sciences, Kings College London, London, WC2R 2LS, UK.

出版信息

Sci Rep. 2017 Jul 31;7(1):6855. doi: 10.1038/s41598-017-06926-1.

Abstract

We present a sensing system operating at millimetre (mm) waves in transmission mode that can measure glucose level changes based on the complex permittivity changes across the signal path. The permittivity of a sample can change significantly as the concentration of one of its substances varies: for example, blood permittivity depends on the blood glucose levels. The proposed sensing system uses two facing microstrip patch antennas operating at 60 GHz, which are placed across interrogated samples. The measured transmission coefficient depends on the permittivity change along the signal path, which can be correlated to the change in concentration of a substance. Along with theoretical estimations, we experimentally demonstrate the sensing performance of the system using controlled laboratory samples, such as water-based glucose-loaded liquid samples. We also present results of successful glucose spike detection in humans during an in-vivo Intravenous Glucose Tolerance Test (IVGTT). The system could eventually be developed into a non-invasive glucose monitor for continuous monitoring of glucose levels for people living with diabetes, as it can detect as small as 1.33 mmol/l (0.025 wt%) glucose concentrations in the controlled water-based samples satisfactorily, which is well below the typical human glucose levels of 4 mmol/l.

摘要

我们提出了一种工作在毫米波传输模式下的传感系统,该系统能够基于信号路径上的复介电常数变化来测量葡萄糖水平的变化。当样品中一种物质的浓度发生变化时,其介电常数会发生显著变化:例如,血液的介电常数取决于血糖水平。所提出的传感系统使用工作在 60GHz 的两个相对的微带贴片天线,它们放置在被检测的样品的两端。测量的传输系数取决于信号路径上的介电常数变化,这可以与物质浓度的变化相关联。除了理论估计,我们还使用受控的实验室样品(例如基于水的葡萄糖负载液体样品)实验演示了系统的传感性能。我们还展示了在人体静脉葡萄糖耐量试验(IVGTT)期间成功检测葡萄糖尖峰的结果。该系统最终可以开发成一种用于糖尿病患者连续监测血糖水平的非侵入性血糖监测器,因为它可以在受控的基于水的样品中令人满意地检测到低至 1.33mmol/l(0.025wt%)的葡萄糖浓度,远低于典型的人类 4mmol/l 血糖水平。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c6e8/5537249/8ce8b0fe835f/41598_2017_6926_Fig1_HTML.jpg

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