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Systematic wavelength selection for improved multivariate spectral analysis

机译:系统波长选择可改善多元光谱分析

摘要

Methods and apparatus for determining in a biological material one or more unknown values of at least one known characteristic (e.g. the concentration of an analyte such as glucose in blood or the concentration of one or more blood gas parameters) with a model based on a set of samples with known values of the known characteristics and a multivariate algorithm using several wavelength subsets. The method includes selecting multiple wavelength subsets, from the electromagnetic spectral region appropriate for determining the known characteristic, for use by an algorithm wherein the selection of wavelength subsets improves the model's fitness of the determination for the unknown values of the known characteristic. The selection process utilizes multivariate search methods that select both predictive and synergistic wavelengths within the range of wavelengths utilized. The fitness of the wavelength subsets is determined by the fitness function F=ƒ(cost, performance). The method includes the steps of: (1) using one or more applications of a genetic algorithm to produce one or more count spectra, with multiple count spectra then combined to produce a combined count spectrum; (2) smoothing the count spectrum; (3) selecting a threshold count from a count spectrum to select these wavelength subsets which optimize the fitness function; and (4) eliminating a portion of the selected wavelength subsets. The determination of the unknown values can be made: (1) noninvasively and in vivo; (2) invasively and in vivo; or (3) in vitro.
机译:用于基于一组模型在生物材料中确定至少一个已知特征的一个或多个未知值(例如,血液中诸如葡萄糖等分析物的浓度或一种或多种血气参数的浓度)的方法和装置具有已知特征的已知值的样本的提取和使用几个波长子集的多元算法。该方法包括从适合于确定已知特征的电磁频谱区域中选择多个波长子集,以供算法使用,其中波长子集的选择提高了模型对确定已知特征的未知值的适应性。选择过程利用多变量搜索方法,该方法在所使用的波长范围内选择预测波长和协同波长。波长子集的适合度由适合度函数F =ƒ(成本,性能)确定。该方法包括以下步骤:(1)使用遗传算法的一种或多种应用来产生一个或多个计数谱,然后将多个计数谱组合以产生组合的计数谱; (2)平滑计数频谱; (3)从计数光谱中选择阈值计数,以选择优化适应度函数的这些波长子集; (4)消除一部分选定的波长子集。未知值的确定可以:(1)非侵入性和体内; (2)侵入性和体内;或(3)在体外。

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