State Key Laboratory of Precision Measurement Technology and Instruments, Tianjin University, Tianjin, 300072, China.
Tianjin Key Laboratory of Biomedical Detecting Techniques and Instruments, Tianjin University, Tianjin, 300072, China.
Sci Rep. 2018 Feb 2;8(1):2204. doi: 10.1038/s41598-018-20547-2.
Hemoglobin concentration is an indicator for assessing blood product quality. To measure hemoglobin concentration in blood products without damaging blood bags, we proposed a method based on visible-near infrared transmission spectroscopy. Complex optical properties of blood bag walls result in measurement irregularities. Analyses showed that the slope of the light intensity-pathlength curve was more robust to the influence of the blood bag wall. In this study, the transmission spectra of red blood cell suspensions at multiple optical pathlengths were obtained, and the slopes of logarithmic light intensity-pathlength curves were calculated through curve fitting. A nondestructive measurement of hemoglobin content was achieved by using a regression model correlating slope spectra and hemoglobin concentration. Sixty samples with hemoglobin concentrations ranging from 72 to 161 g/L were prepared. Among them, 40 samples were used as a calibration set, and the remaining 20 samples were used as a prediction set. The determination coefficient of the prediction set was 0.97, with a mean square error of 2.78 g/L. This result demonstrates that a non-destructive measurement of hemoglobin levels in blood bags can be achieved by multiple-pathlength transmission spectroscopy.
血红蛋白浓度是评估血液制品质量的指标。为了在不损坏血袋的情况下测量血液制品中的血红蛋白浓度,我们提出了一种基于可见-近红外透射光谱的方法。血袋壁的复杂光学特性导致测量出现不规则。分析表明,光强-光程曲线的斜率对血袋壁的影响更稳健。在这项研究中,获得了多个光程的红细胞悬浮液的透射光谱,并通过曲线拟合计算了对数光强-光程曲线的斜率。通过相关斜率谱和血红蛋白浓度的回归模型实现了血红蛋白含量的无损测量。制备了血红蛋白浓度范围为 72 至 161 g/L 的 60 个样本。其中,40 个样本用作校准集,其余 20 个样本用作预测集。预测集的确定系数为 0.97,均方误差为 2.78 g/L。该结果表明,通过多光程透射光谱可以实现对血袋中血红蛋白水平的无损测量。