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Multicomponent blood analysis by near-infrared Raman spectroscopy

机译:近红外拉曼光谱法进行多组分血液分析

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摘要

We demonstrate the use of Raman spectroscopy to measure the concentration of many important constituents (analytes) in serum and whole blood samples at physiological concentration in vitro across a multipatient data set. A near-infrared (830-nm) diode laser generates Raman spectra that contain superpositions of Raman signals from different analytes. Calibrations for glucose, cholesterol, urea, and other analytes are developed by use of partial least-squares cross validation. We predict six analytes in serum with significant accuracy in a 66-patient data set, using 60-s spectra. The calibrations are shown to be fairly robust against system drift over the span of seven weeks. In whole blood, a preliminary analysis yields accurate predictions of some of the same analytes and also hematocrit. The results hold promise for potential medical applications.
机译:我们展示了使用拉曼光谱法在跨多患者数据集的体外以生理浓度测量血清和全血样品中许多重要成分(分析物)的浓度。近红外(830 nm)二极管激光器会产生拉曼光谱,其中包含来自不同分析物的拉曼信号的叠加。葡萄糖,胆固醇,尿素和其他分析物的校准通过使用偏最小二乘交叉验证进行。我们使用60-s光谱在66位患者的数据集中准确预测了血清中的六种分析物。事实表明,该校准在7个星期内对系统漂移具有相当强的抵抗力。在全血中,初步分析可准确预测某些相同的分析物以及血细胞比容。结果为潜在的医学应用提供了希望。

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