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Non-destructive and rapid detection of blood quality in blood bags based on modified ACO wavelength selection algorithm

机译:基于改进的ACO波长选择算法的血袋血袋的无损和快速检测

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The concentration of free hemoglobin (FHb) in blood bag is an important index to evaluate blood quality. And the chemical method, whichis widely used in clinic, not only wastes precious blood resources, but also consumes time, be labor-intensive, and pollutes the environment. Althoughspectral analysis can make up for the shortcomings of traditional chemical methods, its accuracy also be seriously affected due to unstable the opticalparameters of the blood bag and complexity of blood composition. Therefore, this paper proposed a wavelength selection method based on modifiedant colony optimization (ACO) algorithm. This algorithm firstly calculates the correlation coefficient between each wavelength and the FHbconcentration as the initial pheromone for each wavelength to improve the convergence speed of ACO algorithm; Then, the optimized wavelengths aresorted according to the intensity of the pheromone, the number of optimized wavelengths for modeling is increased in turn, and the root-mean-squareerror of the model is used as an evaluation index to determine the final optimal wavelength. In this study, a small tube in the front of the blood bag wasused as a container, and the transmission spectrum of plasma in the small tube was collected. The regression results of the optimized spectrum werecompared with that of the original spectral. The experimental results showed that the method proposed in this paper can obviously improve the analysisaccuracy of blood quality, which means this method can effectively inhibit the influence of non-target components and the difference in blood bags onthe detection of blood quality.
机译:血袋中游离血红蛋白(FHB)的浓度是评估血液质量的重要指标。和化学方法,哪种化学方法广泛应用于诊所,不仅浪费珍贵的血资资源,还消耗了时间,劳动密集型,并污染环境。虽然光谱分析可弥补传统化学方法的缺点,其准确性也因光学不稳定而受到严重影响血袋的参数和血液组成的复杂性。因此,本文提出了一种基于修改的波长选择方法蚁群优化(ACO)算法。该算法首先计算每个波长和FHB之间的相关系数浓度作为每个波长的初始信息素,以提高ACO算法的收敛速度;然后,优化的波长是根据信息素的强度进行分类,又增加了用于建模的优化波长的数量,而且根均线模型的错误用作评估索引以确定最终的最佳波长。在这项研究中,血袋前面的小管是用作容器,收集小管中的等离子体的透射光谱。优化频谱的回归结果是与原始光谱相比。实验结果表明,本文提出的方法可明显改善分析血液质量的准确性,这意味着这种方法可以有效地抑制非靶分成分的影响和血袋的差异血液质量的检测。

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