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首页> 外文期刊>Applied optics >Monte Carlo-based inverse model for calculating tissue optical properties. Part I: Theory and validation on synthetic phantoms
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Monte Carlo-based inverse model for calculating tissue optical properties. Part I: Theory and validation on synthetic phantoms

机译:基于蒙特卡洛的逆模型,用于计算组织的光学特性。第一部分:合成体模的理论与验证

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摘要

A flexible and fast Monte Carlo-based model of diffuse reflectance has been developed for the extraction of the absorption and scattering properties of turbid media, such as human tissues. This method is valid for a wide range of optical properties and is easily adaptable to existing probe geometries, provided a single phantom calibration measurement is made. A condensed Monte Carlo method was used to speed up the forward simulations. This model was validated by use of two sets of liquid-tissue phantoms containing Nigrosin or hemoglobin as absorbers and polystyrene spheres as scatterers. The phantoms had a wide range of absorption (0-20 cm~(-1)) and reduced scattering coefficients (7-33 cm~(-1)). Mie theory and a spectrophotometer were used to determine the absorption and reduced scattering coefficients of the phantoms. The diffuse reflectance spectra of the phantoms were measured over a wavelength range of 350-850 nm. It was found that optical properties could be extracted from the experimentally measured diffuse reflectance spectra with an average error of 3percent or less for phantoms containing hemoglobin and 12percent or less for phantoms containing Nigrosin.
机译:已经开发了一种灵活且快速的基于蒙特卡洛的漫反射模型,用于提取混浊介质(例如人体组织)的吸收和散射特性。该方法适用于广泛的光学特性,并且只要进行一次幻像校准测量,即可轻松适应现有的探头几何形状。凝聚的蒙特卡洛方法被用来加速正向模拟。通过使用两套包含尼古丁或血红蛋白作为吸收剂和聚苯乙烯球体作为散射体的液体组织模型来验证该模型。幻影的吸收范围广(0-20 cm〜(-1)),散射系数降低(7-33 cm〜(-1))。使用米氏理论和分光光度计确定体模的吸收系数和降低的散射系数。在350-850nm的波长范围内测量了幻影的漫反射光谱。已经发现,可以从实验测量的漫反射光谱中提取光学特性,对于含血红蛋白的体模,其平均误差为3%或更低,而对于含尼古丁的体模,其平均误差为12%或更低。

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