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Determination of the reference position in the near-infrared non-invasive blood glucose measurement in vivo

机译:体内近红外无创血糖测量中参考位置的确定

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Position-based reference measurement method is taken as one of the most promising method in non-invasive measurement of blood glucose based on spectroscopic methodology. Selecting an appropriate source-detector separation as the reference position is important for deducting the influence of background change and reducing the loss of useful signals. Our group proposed a special source-detector separation named floating-reference position where the signal contains only background change, that is to say, the signal at this source-detector separation is uncorrelated with glucose concentration. The existence of floating-reference position has been verified in a three layer skin by Monte Carlo simulation and in the in vitro experiment. But it is difficult to verify the existence of floating-reference position on the human body because the interference is more complex during in vivo experiment. Aiming at this situation, this paper studies the determination of the best reference position on human body by collecting signals at several source-detector separations on the palm and measuring the true blood glucose levels during oral glucose tolerance test (OGTT) experiments of 3 volunteers. Partial least square (PLS) calibration model is established between the signals at every source-detector separation and its corresponding blood glucose levels. The results shows that the correlation coefficient (R) between 1.32 mm to 1.88 mm is lowest and they can be used as reference for background correction. The signal of this special position is important for improving the accuracy of near-infrared non-invasive blood glucose measurement.
机译:基于位置的参考测量方法被认为是基于光谱学方法的无创血糖测量方法中最有前途的方法之一。选择适当的信号源-检测器间隔作为参考位置,对于减少背景变化的影响并减少有用信号的损失非常重要。我们的小组提出了一种特殊的源-检测器分离方法,称为浮动参考位置,其中信号仅包含背景变化,也就是说,在此源-检测器分离条件下的信号与葡萄糖浓度无关。浮动参考位置的存在已通过蒙特卡洛模拟和体外实验在三层皮肤中得到验证。但是,由于在体内实验中干扰更为复杂,因此很难验证人体上是否存在浮动参考位置。针对这种情况,本文通过在3名志愿者的口服葡萄糖耐量测试(OGTT)实验中通过收集手掌上多个源检测器分离处的信号并测量真实血糖水平,来研究确定最佳人体参考位置。在每个源检测器分离的信号与其对应的血糖水平之间建立偏最小二乘(PLS)校准模型。结果表明,在1.32 mm至1.88 mm之间的相关系数(R)最低,可以用作背景校正的参考。这个特殊位置的信号对于提高近红外无创血糖测量的准确性非常重要。

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