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Fast algorithm to determine optical properties of a turbid medium from time-resolved measurements

机译:通过时间分辨测量确定混浊介质光学特性的快速算法

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摘要

After analytical expressions for the time-resolved reflectance are introduced from the diffusion approximation under the three most commonly used boundary conditions, a novel algorithm is demonstrated for determining the reduced scattering and the absorption coefficients from time-resolved reflectance (or backscatter) measurements at two positions on the surface of biotissue. The algorithm is straightforward and fast and involves only some simple mathematical operations, avoiding complicated iterative nonlinear fitting to the time-resolved curve. The derived reduced scattering coefficient is not affected by whatever boundary condition is applied. The algorithm was verified with time-resolved data from the Monte Carlo model. Both a semi-infinite medium and a turbid slab medium were tested. In contrast to the nonlinear fitting method, this algorithm allows both the scattering and the absorption coefficients to be determined to a high accuracy. (C) 1998 Optical Society of America OCIS codes: 170.3600, 170.7050, 290.1990, 000.4430. [References: 16]
机译:在三种最常用的边界条件下,通过扩散近似引入了时间分辨反射率的解析表达式后,论证了一种新算法,该算法可通过确定两个时间分辨反射率(或后向散射)的测量值来确定减少的散射和吸收系数在生物组织表面的位置。该算法简单快速,仅涉及一些简单的数学运算,从而避免了复杂的迭代非线性拟合到时间分辨曲线的过程。导出的减小的散射系数不受任何边界条件的影响。使用来自蒙特卡洛模型的时间分辨数据验证了该算法。同时测试了半无限介质和混浊的平板介质。与非线性拟合方法相比,该算法可以高精度地确定散射系数和吸收系数。 (C)1998年美国光学学会OCIS代码:170.3600、170.7050、290.1990、000.4430。 [参考:16]

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