光子计数偏振法用于无创生物医学血糖监测

M. N. Mohd Zain, Afiqah Musa, M. H. Hisham, A. R. Laili, Z. M. Yusof
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引用次数: 7

摘要

市售的用于糖尿病监测的血糖测量设备需要提取血液,这意味着将与人体有物理接触。对无创测量的需求促使人们研究和开发新的血糖水平检测方法。在这项工作中,引入了一种非常敏感的光学偏振测量技术,使用比率度量光子计数检测,并测试了一系列已知的葡萄糖浓度,模拟人类血液中的葡萄糖水平。该装置利用785nm二极管激光器发射弱相干光信号到水溶液中的葡萄糖浓度样品上。结果表明,该方法对不同葡萄糖浓度呈线性正比关系,并成功检测出10260 ~ 260 mg/dl葡萄糖样品。这表明了一种潜在的改进方法,即在生物医学应用的单光子水平上使用基于敏感偏振法的光学传感器进行无创葡萄糖测量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Photon counting polarimetry measurement towards non-invasive biomedical glucose monitoring
Commercially available glucose measurement device for diabetes monitoring require extracting of blood and this means there will be a physical contact with human body. Demand on non-invasive measurement has invites research and development of new detection methods to measure blood glucose level. In this work, a very sensitive optical polarimetry measurement technique using ratio-metric photon counting detection has been introduced and tested for a range of known glucose concentrations that mimic the level of glucose in human blood. The setup utilizes 785nm diode laser that emits weak coherent optical signal onto glucose concentration samples in aqueous. The result shows a linear proportional of different glucose concentration and successfully detected 10260 mg/dl to 260 mg/dl glucose samples. This indicates a potential improvement method for non-invasive glucose measurement by a sensitive polarimetry based optical sensor in single photon level for biomedical applications.
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