Jacques Steven L, McCormick Norman J
Department of Biomedical Engineering, University of Washington, Seattle, Washington 98195-5061, USA.
Department of Mechanical Engineering, University of Washington, Seattle, Washington 98195-2600, USA.
Biomed Opt Express. 2023 Jan 13;14(2):751-770. doi: 10.1364/BOE.476461. eCollection 2023 Feb 1.
For Monte Carlo simulations of light transport in a variety of diffuse scattering applications, a single-scattering two-term phase function with five adjustable parameters is sufficiently flexible to separately control the forward and backward components of scattering. The forward component dominates light penetration into a tissue and the resulting diffuse reflectance. The backward component controls early subdiffuse scatter from superficial tissues. The phase function consists of a linear combination of two phase functions [Reynolds and McCormick, J. Opt. Soc. Am.70, 1206 (1980)10.1364/JOSA.70.001206] that were derived from the generating function for Gegenbauer polynomials. The two-term phase function (TT) accommodates strongly-forward anisotropic scattering with enhanced backscattering and is a generalization of the two-term, three-parameter Henyey-Greenstein phase function. An analytical inverse of the cumulative distribution function for scattering is provided for implementation in Monte Carlo simulations. Explicit TT equations are given for the single-scattering metrics , , , and . Scattering data from previously published bio-optical data are shown to fit better with the TT than other phase function models. Example Monte Carlo simulations illustrate the use of the TT and its independent control of subdiffuse scatter.
对于各种漫散射应用中的光传输蒙特卡罗模拟,具有五个可调参数的单散射双项相位函数具有足够的灵活性,可以分别控制散射的前向和后向分量。前向分量主导光穿透组织以及由此产生的漫反射率。后向分量控制来自浅表组织的早期亚漫散射。该相位函数由两个相位函数的线性组合组成[雷诺兹和麦考密克,《美国光学学会杂志》70, 1206 (1980)10.1364/JOSA.70.001206],这两个相位函数是从盖根堡多项式的生成函数推导出来的。双项相位函数(TT)适用于具有增强后向散射的强前向各向异性散射,是双项三参数亨耶伊 - 格林斯坦相位函数的推广。提供了散射累积分布函数的解析逆函数,以便在蒙特卡罗模拟中实现。给出了单散射度量、、和的显式TT方程。与其他相位函数模型相比,先前发表的生物光学数据中的散射数据显示与TT拟合得更好。示例蒙特卡罗模拟说明了TT的使用及其对亚漫散射的独立控制。