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Towards a continuous glucose monitoring system using tunable quantum cascade lasers

机译:迈向使用可调量子级联激光器的连续葡萄糖监测系统

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We present a reagent-free approach for long-term continuous glucose monitoring (cgm) of liquid samples using mid-infrared absorption spectroscopy. This method could constitute an alternative to enzymatic glucose sensors in order to manage the widespread disease of Diabetes. In order to acquire spectra of the liquid specimen, we use a spectrally tunable external-cavity (EC-) quantum cascade laser (QCL) as radiation source in combination with a fiber-based in vitro sensor setup. Hereby we achieve a glucose sensitivity in pure glucose solutions of 3 mg/dL (RMSEP). Furthermore, the spectral tunability of the EC-QCL enables us to discriminate glucose from other molecules. We exemplify this by detecting glucose among other saccharides with an accuracy of 8 mg/dL (within other monosaccharides, RMSEVC) and 14 mg/dL (within other mono- and disaccharides, RMSECV). Moreover, we demonstrate a characterization of the significance of each wavenumber for an accurate prediction of glucose among other saccharides using an evolutionary algorithm. We show, that by picking 10 distinct wavenumbers we can achieve comparable accuracies to the use of a complete spectrum.
机译:我们提出了一种使用中红外吸收光谱法对液体样品进行长期连续葡萄糖监测(cgm)的无试剂方法。该方法可以构成酶促葡萄糖传感器的替代品,以管理广泛的糖尿病。为了获取液体样品的光谱,我们结合了基于光纤的体外传感器设置,使用了光谱可调的外腔(EC-)量子级联激光器(QCL)作为辐射源。因此,我们在3 mg / dL(RMSEP)的纯葡萄糖溶液中实现了葡萄糖敏感性。此外,EC-QCL的光谱可调性使我们能够将葡萄糖与其他分子区分开。我们通过检测其他糖中的葡萄糖来举例说明这一点,其准确度为8 mg / dL(在其他单糖中,RMSEVC)和14 mg / dL(在其他单糖和二糖中,RMSECV)。此外,我们演示了使用进化算法对每个波数的重要性进行表征,以准确预测其他糖类中的葡萄糖。我们表明,通过选择10个不同的波数,我们可以获得与使用完整频谱相当的精度。

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