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Multifractal Analysis for Nutritional Assessment

机译:用于营养评估的多重分形分析

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摘要

The concept of multifractality is currently used to describe self-similar and complex scaling properties observed in numerous biological signals. Fractals are geometric objects or dynamic variations which exhibit some degree of similarity (irregularity) to the original object in a wide range of scales. This approach determines irregularity of biologic signal as an indicator of adaptability, the capability to respond to unpredictable stress, and health. In the present work, we propose the application of multifractal analysis of wavelet-transformed proton nuclear magnetic resonance (1H NMR) spectra of plasma to determine nutritional insufficiency. For validation of this method on 1H NMR signal of human plasma, standard deviation from classical statistical approach and Hurst exponent (H), left slope and partition function from multifractal analysis were extracted from 1H NMR spectra to test whether multifractal indices could discriminate healthy subjects from unhealthy, intensive care unit patients. After validation, the multifractal approach was applied to spectra of plasma from a modified crossover study of sulfur amino acid insufficiency and tested for associations with blood lipids. The results showed that standard deviation and H, but not left slope, were significantly different for sulfur amino acid sufficiency and insufficiency. Quadratic discriminant analysis of H, left slope and the partition function showed 78% overall classification accuracy according to sulfur amino acid status. Triglycerides and apolipoprotein C3 were significantly correlated with a multifractal model containing H, left slope, and standard deviation, and cholesterol and high-sensitivity C-reactive protein were significantly correlated to H. In conclusion, multifractal analysis of 1H NMR spectra provides a new approach to characterize nutritional status.
机译:目前,多重分形的概念用于描述在许多生物信号中观察到的自相似和复杂的缩放特性。分形是几何对象或动态变化,它们在很大范围内与原始对象具有某种程度的相似性(不规则性)。这种方法将生物信号的不规则性确定为适应性,对不可预测的压力做出反应的能力以及健康状况的指标。在本工作中,我们提出了血浆小波变换质子核磁共振( 1 H NMR)光谱的多重分形分析在确定营养不足方面的应用。为了验证该方法在人血浆的 1 H NMR信号上的有效性,从 1 <提取了经典统计方法的标准偏差和多重分形分析的Hurst指数(H),左斜率和分配函数。 1 H NMR光谱测试多重分形指数是否可以将健康受试者与不健康的重症监护病房患者区分开。验证后,将多重分形方法应用于来自硫氨基酸不足的改良交叉研究的血浆光谱,并测试了与血脂的相关性。结果表明,对于硫氨基酸充足和不足,标准偏差和H(但没有左斜率)显着不同。 H,左斜率和分配函数的二次判别分析显示,根据硫氨基酸状态,总体分类准确度为78%。甘油三酸酯和载脂蛋白C3与包含H,左斜率和标准差的多重分形模型显着相关,胆固醇和高敏C反应蛋白与H显着相关。总之, 1

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