Opt Lett. 2014 Jan 1;39(1):154-7. doi: 10.1364/OL.39.000154.
We present an explicit model for the diffuse reflectance due to a collimated beam of light incident normally on layered tissues. This model is derived using the corrected diffusion approximation applied to a layered medium, and it takes the form of a convolution with an explicit kernel and the incident beam profile. This model corrects the standard diffusion approximation over all source-detector separation distances provided the beam is sufficiently wide compared to the scattering mean free path. We validate this model through comparison with Monte Carlo simulations. Then we use this model to estimate the optical properties of an epithelial layer from Monte Carlo simulation data. Using measurements at small source-detector separations and this model, we are able to estimate the absorption coefficient, scattering coefficient, and anisotropy factor of epithelial tissues efficiently with reasonable accuracy.
我们提出了一个用于层状组织中准直光束的漫反射的显式模型。该模型是通过将校正后的扩散近似应用于层状介质来推导的,其形式为与显式核和入射光束轮廓的卷积。只要光束相对于散射平均自由程足够宽,该模型就可以校正标准扩散近似在所有源-探测器分离距离上的情况。我们通过与蒙特卡罗模拟的比较来验证该模型。然后,我们使用该模型从蒙特卡罗模拟数据中估计上皮层的光学性质。使用小源-探测器分离的测量值和该模型,我们能够以合理的准确性有效地估计上皮组织的吸收系数、散射系数和各向异性因子。