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Simple algorithm for the measurement of absorption coefficients of a two-layered medium by spatially resolved and time-resolved reflectance

机译:通过空间分辨和时间分辨反射率测量两层介质的吸收系数的简单算法

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摘要

An inversion procedure for the recovery of absorption coefficients of a two-layered semi-infinite diffusive medium by use of time-resolved reflectance measured at two different source-detector distances is proposed. The inversion procedure is based on the property of the photon diffusion equation; i.e., the solution of the diffusion equation for the time-resolved reflectance measured at a longer source-detector distance coincides with that measured at a shorter one by a proper temporal, spatial, and intensity transformation. This inversion procedure, used together with the results of one set of Monte Carlo simulations, is validated as working well when the values of the scattering coefficients of the two layers and the thickness of the first layer are within a range of interest in tissue optics.
机译:提出了一种利用在两个不同的源-探测器距离处测得的时间分辨反射率来恢复两层半无限扩散介质的吸收系数的反演程序。反演过程基于光子扩散方程的性质;即,通过较长的源-探测器距离测得的时间分辨反射率的扩散方程的解与通过较短的时间,空间和强度变换而在较短的时解反射率下的解吻合。当两层散射系数的值和第一层的厚度在组织光学中感兴趣的范围内时,可以将该反演程序与一组蒙特卡罗模拟的结果一起使用,证明工作良好。

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