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An effective method based on reference point for glucose sensing at 1100-1600nm

机译:基于参考点的1100-1600nm葡萄糖感应的有效方法

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摘要

Non-invasive blood glucose sensing by near-infrared spectroscopy is easily interrupted by the strong background variations compared to the weak glucose signals. In this work, according to the distribution of diffuse reflectance intensity at different source-detector separations, a method based on a reference point and a measuring point, where the diffuse reflectance intensity is insensitive and most sensitive to the variation of glucose concentration, respectively, is applied. And the data processing method based on the information of two points is investigated to improve the precision of glucose sensing. Based on the Monte Carlo simulation in 5% intralipid solution model, the corresponding optical probe is designed which includes two detecting points: a reference point located at 1.3-1.7mm and a measuring point located at 1.7-2. lmm. Using the probe, the in vitro experiment with different glucose concentrations in the intralipid solution is conducted at 1100-1600nm. As a result, compared to the PLS model built by the signal of the measuring point, the root mean square error of prediction (RMSEP) and root mean square error of cross calibration (RMSEC) of the corrected model built by reference point and measuring point reduces by 45.10%, and 32.15% respectively.
机译:与弱葡萄糖信号相比,强背景变化很容易打断近红外光谱法进行的非侵入性血糖检测。在这项工作中,根据漫反射强度在不同源-检测器间距下的分布,建立了一种基于参考点和测量点的方法,其中漫反射强度分别对葡萄糖浓度的变化不敏感和最敏感,被申请;被应用。研究了基于两点信息的数据处理方法,以提高葡萄糖传感的精度。基于5%脂质溶液模型中的Monte Carlo模拟,设计了相应的光学探头,该探头包括两个检测点:参考点位于1.3-1.7mm,测量点位于1.7-2。嗯使用该探针,在1100-1600nm的脂质体内溶液中以不同的葡萄糖浓度进行了体外实验。结果,与由测量点的信号建立的PLS模型相比,由参考点和测量点建立的校正模型的预测均方根误差(RMSEP)和交叉校准的均方根误差(RMSEC)分别减少45.10%和32.15%。

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