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Performance of fitting procedures in curved geometry for retrieval of the optical properties of tissue from time-resolved measurements

机译:在弯曲几何形状中进行拟合程序的性能,以便从时间分辨的测量中检索组织的光学特性

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By use of the solution of the diffusion equation for cylindrical and spherical geometry, two fitting procedures for retrieval of the optical properties from time-resolved measurements have been implemented. The fitting procedures are based on the Levenberg-Marquardt algorithm, in which the fitting parameters are the absorption coefficient, the reduced scattering coefficient, and an amplitude factor. Monte Carlo data generated for cylindrical and spherical geometry were fitted by these fitting procedures, and the retrieved optical properties were compared with those obtained from the inversion procedure with a mismatched geometry of a semi-infinite medium. The effects of refractive-index mismatch and of different boundary conditions of the diffusion equation were also studied, together with the effects of several sources of error that are typically found in time-resolved measurements. The advantages and drawbacks of these fitting procedures, including many details in several situations of interest in the field of tissue optics, are discussed. The results also offer a guideline to understanding the effects of mismatching in curved geometry as functions of source-detector distance and radii of cylinders or spheres.
机译:通过使用圆柱和球形几何扩散方程的解,已经实现了两种拟合程序,用于从时间分辨的测量中检索光学特性。拟合过程基于Levenberg-Marquardt算法,其中拟合参数为吸收系数,减小的散射系数和振幅因子。通过这些拟合过程拟合了为圆柱和球形几何体生成的蒙特卡洛数据,并将检索到的光学特性与从反过程获得的光学特性进行了比较,其中半无限介质的几何结构不匹配。还研究了折射率不匹配和扩散方程的不同边界条件的影响,以及通常在时间分辨测量中发现的几种误差源的影响。讨论了这些装配过程的优缺点,包括组织光学领域中几种感兴趣的情况下的许多细节。结果还为理解弯曲几何形状不匹配的影响提供了指导,这些影响是源探测器距离和圆柱或球体半径的函数。

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