Yoshida Kenichiro, Nishidate Izumi
Tokyo University of Agriculture & Technology, Graduate School of Bio-applications & Systems Engineering, 2-24-16 Naka-cho, Koganei, Tokyo 184-8588, Japan.
Biomed Opt Express. 2014 Oct 13;5(11):3901-20. doi: 10.1364/BOE.5.003901. eCollection 2014 Nov 1.
To rapidly derive a result for diffuse reflectance from a multilayered model that is equivalent to that of a Monte-Carlo simulation (MCS), we propose a combination of a layered white MCS and the adding-doubling method. For slabs with various scattering coefficients assuming a certain anisotropy factor and without absorption, we calculate the transition matrices for light flow with respect to the incident and exit angles. From this series of precalculated transition matrices, we can calculate the transition matrices for the multilayered model with the specific anisotropy factor. The relative errors of the results of this method compared to a conventional MCS were less than 1%. We successfully used this method to estimate the chromophore concentration from the reflectance spectrum of a numerical model of skin and in vivo human skin tissue.
为了从多层模型快速得出与蒙特卡罗模拟(MCS)等效的漫反射结果,我们提出了分层白色MCS和倍增法相结合的方法。对于具有特定各向异性因子且无吸收的各种散射系数的平板,我们计算了光流相对于入射角和出射角的转移矩阵。根据这一系列预先计算的转移矩阵,我们可以计算具有特定各向异性因子的多层模型的转移矩阵。该方法的结果与传统MCS相比,相对误差小于1%。我们成功地使用该方法从皮肤数值模型和人体皮肤组织的反射光谱中估计了发色团浓度。