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FTIR/ATR Spectroscopy Applied to the Rapid Analysis for Hemoglobin in Human Soluble Blood Samples

机译:FTIR / ATR光谱法用于人类可溶性血样中血红蛋白的快速分析

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By directly measuring human soluble blood samples by Fourier transform infrared spectroscopy (FTIR) and attenuated total reflection (ATR) technology, the rapid quantitative analysis method for human hemoglobin (HGB) was established. The optimization of Savitzky-Golay (SG) smoothing modes combined with partial least squares (PLS) factor was applied to optimize the model of FTIR/ATR spectroscopy analysis here. The optimal smoothing parameters were 1st order derivative smoothing, 2nd degree polynomial, 59 smoothing points, the optimal PLS factor, RMSEP, RP and RRMSEP were 8, 4.21g/L, 0.962 and 3.1% respectively, which was obviously superior to the direct PLS model without SG smoothing. This demonstrated that FTIR/ATR spectroscopy can be applied to the rapid determination of human hemoglobin concentration, large-scale simultaneous optimization selection of SG smoothing parameters and PLS factor can be effectively applied to the model optimization of FTIR/ATR analysis.
机译:通过傅里叶变换红外光谱(FTIR)和衰减全反射(ATR)技术直接测量人类可溶性血样,建立了人类血红蛋白(HGB)的快速定量分析方法。 Savitzky-Golay(SG)平滑模式与偏最小二乘(PLS)因子相结合的优化被用于优化FTIR / ATR光谱分析模型。最佳平滑参数为一阶导数平滑,二阶多项式,59个平滑点,最佳PLS因子,RMSEP,RP和RRMSEP分别为8、4.21g / L,0.962和3.1%,明显优于直接PLS没有SG平滑的模型。这表明FTIR / ATR光谱学可用于快速测定人体血红蛋白浓度,大规模同时优化SG平滑参数和PLS因子的选择可有效地应用于FTIR / ATR分析的模型优化。

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