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Comparison of a Genetic Algorithm Variable Selection and Interval Partial Least Squares for quantitative analysis of lactate in PBS

机译:遗传算法可变选择及间隔偏最小二乘对PBS乳酸乳酸分析的比较

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Blood lactate is an important biomarker that has been linked to morbidity and mortality of critically ill patients, acute ischemic stroke, septic shock, lung injuries, insulin resistance in diabetic patients, and cancer. Currently, the clinical measurement of blood lactate is done by collecting intermittent blood samples. Therefore, noninvasive, optical measurement of this significant biomarker would lead to a big leap in healthcare. This study, presents a quantitative analysis of the optical properties of lactate. The benefits of wavelength selection for the development of accurate, robust, and interpretable predictive models have been highlighted in the literature. Additionally, there is an obvious, time- and cost-saving benefit to focusing on narrower segments of the electromagnetic spectrum in practical applications. To this end, a dataset consisting of 47 spectra of Na-lactate and Phosphate Buffer Solution (PBS) was produced using a Fourier transform infrared spectrometer, and subsequently, a comparative study of the application of a genetic algorithm-based wavelength selection and two interval selection methods was carried out. The high accuracy of predictions using the developed models underlines the potential for optical measurement of lactate. Moreover, an interesting finding is the emergence of local features in the proposed genetic algorithm, while, unlike the investigated interval selection methods, no explicit constraints on the locality of features was imposed. Finally, the proposed genetic algorithm suggests the formation of α-hydroxy-esters methyl lactate in the solutions while the other investigated methods fail to indicate this.
机译:血乳酸是已链接到发病和重症患者,急性缺血性中风,感染性休克,肺损伤,糖尿病患者的胰岛素抵抗和癌症死亡率的重要标志物。目前,血液乳酸的临床测量是通过收集间歇血样完成的。因此,这个显著生物标志物的非侵入性,光学测量将导致医疗保健一个大的飞跃。这项研究,提出了乳酸的光学性能的定量分析。波长选择准确,可靠和解释的预测模型的发展带来的好处已经强调了文学。此外,有一个明显的,节省时间和成本效益着眼于在实际应用中的电磁频谱的窄段。为此,使用傅立叶变换红外光谱仪,并且随后,一个基于遗传算法的波长选择和两个间隔的应用进行了比较研究,制作由钠乳酸盐和磷酸盐缓冲液(PBS)的47个光谱的数据集选择方法进行。利用建立的模型预测精度高的突出乳酸的光学测量的潜力。此外,一个有趣的发现是在所提出的遗传算法局部特征的出现,同时,不同的是考察区间选择方法上的特点当地没有明确的限制被强加。最后,所提出的遗传算法表明α羟基酯乳酸甲酯在溶液的形成,而另一个调查方法不能表明这一点。

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