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Real-time measurement of glucose concentration and average refractive index using a laser interferometer

机译:使用激光干涉仪实时测量葡萄糖浓度和平均折射率

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摘要

This study presents a non-destructive, highly precise optical metrology system for measuring the average refractive index of a liquid solution such that its glucose concentration can be derived. The metrology system is employed to measure the average refractive indices of samples with known glucose concentrations ranging from 0 to 200 g/1. By applying a regressional analysis technique to the experimental results, an analytical expression is derived to describe the relationship between the refractive index and the glucose concentration. An excellent agreement is observed between the experimentally determined values of the glucose concentration and the analytically derived results. For an assumed laser interferometer resolution of 1 nm, the measurement resolution of the proposed metrology system is found to be at least F = 0.05 g/1, which is significantly better than that of F = 2 g/1 obtained using the polarimetric glucose sensor presented by Lo and Yu [A polarimetric glucose sensor using a liquid-crystal polarization modulator driven by a sinusoidal signal. Opt Commun, 2006; 259: 40-8].
机译:这项研究提出了一种无损,高精度的光学计量系统,用于测量液体溶液的平均折射率,从而可以得出其葡萄糖浓度。计量系统用于测量已知葡萄糖浓度为0至200 g / 1的样品的平均折射率。通过将回归分析技术应用于实验结果,可以得出解析表达式来描述折射率和葡萄糖浓度之间的关系。在实验确定的葡萄糖浓度值和分析得出的结果之间观察到极好的一致性。对于假定的激光干涉仪分辨率为1 nm,建议的计量系统的测量分辨率至少为F = 0.05 g / 1,这明显优于使用偏振葡萄糖传感器获得的F = 2 g / 1由Lo和Yu提出[一种使用由正弦信号驱动的液晶偏振调制器的偏振葡萄糖传感器。 Opt Commun,2006年; 259:40-8]。

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