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Haar transform analysis of photon time-of-flight measurements for quantification of optical properties in scattering media

机译:光子飞行时间测量值的Haar变换分析,用于量化散射介质中的光学特性

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摘要

A method to independently quantify the absorption and the scattering properties of samples based on the analysis of the Haar transform (HT) of photon time-of-flight (TOF) distributions is described. A series of reflectance photon TOF measurements were acquired from absorbing/scattering milk samples of known composition (0 < mu(a) < 0.025 mm(-1); 100 < mu(s), < 250 mm(-1)). The HT of the profiles was calculated, and the regression based on the most parsimonious subset of wavelets was determined by the genetic algorithm (GA). In addition, the utility of computing the logarithm of the profiles or of the absolute value of the wavelet coefficients before the GA was studied. Results show that the absorption coefficient could be estimated with a coefficient of variation (C.V.) of 6.7% and an r(2) of 0.99 by use of the log of selected wavelets of frequency less than 800 MHz. Scattering coefficients were estimated with a C.V. of 2.3% and an r(2) of 0.99 with the log of wavelets of frequency less than 400 MHz. The above results suggest that a simplified instrument based on low-frequency switches could be developed to quantify the optical properties of highly scattering media. 2(C)003 Optical Society of America. [References: 40]
机译:描述了一种基于对光子飞行时间(TOF)分布的哈尔变换(HT)进行分析来独立量化样品吸收和散射特性的方法。从吸收/散射已知成分的牛奶样品(0 <μ(a)<0.025 mm(-1); 100 <μ(s),<250 mm(-1))进行一系列反射光子TOF测量。计算轮廓的HT,并通过遗传算法(GA)确定基于最简约小波子集的回归。另外,研究了在遗传算法之前计算轮廓的对数或小波系数的绝对值的实用性。结果表明,通过使用选定的小于800 MHz频率的小波的对数,可以估计吸收系数的变异系数(C.V.)为6.7%,r(2)为0.99。散射系数用C.V.频率小于400 MHz的小波的对数,则为2.3%,r(2)为0.99。以上结果表明,可以开发一种基于低频开关的简化仪器来量化高散射介质的光学特性。 2(C)003美国光学学会。 [参考:40]

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