Wood Michael F G, Guo Xinxin, Vitkin I Alex
Ontario Cancer Institute, Division of Biophysics and Bioimaging, University Health Network, Toronto, Ontario M5G 2M9, Canada.
J Biomed Opt. 2007 Jan-Feb;12(1):014029. doi: 10.1117/1.2434980.
A Monte Carlo model for polarized light propagation in birefringent, optically active, multiply scattering media is developed in an effort to accurately represent the propagation of polarized light in biological tissue. The model employs the Jones N-matrix formalism to combine both linear birefringence and optical activity into a single effect that can be applied to photons as they propagate between scattering events. Polyacrylamide phantoms with strain-induced birefringence, sucrose-induced optical activity, and polystyrene microspheres as scattering particles are used for experimental validation. Measurements are made using a Stokes polarimeter that detects scattered light in different geometries, and compared to the results of Monte Carlo simulations run with similar parameters. The results show close agreement between the experimental measurements and Monte Carlo calculations for phantoms exhibiting turbidity and birefringence, as well as for phantoms exhibiting turbidity, birefringence, and optical activity. Other scattering-independent polarization properties can be incorporated into the developed Jones N-matrix formalism, enabling quantification of the polarization effects via an accurate polarization-sensitive Monte Carlo model.
为了准确描述偏振光在生物组织中的传播,开发了一种用于双折射、旋光、多重散射介质中偏振光传播的蒙特卡罗模型。该模型采用琼斯N矩阵形式,将线性双折射和旋光性合并为一种单一效应,可在光子散射事件之间传播时应用于光子。具有应变诱导双折射、蔗糖诱导旋光性以及聚苯乙烯微球作为散射粒子的聚丙烯酰胺模型用于实验验证。使用斯托克斯偏振计进行测量,该偏振计可检测不同几何形状下的散射光,并与使用类似参数运行的蒙特卡罗模拟结果进行比较。结果表明,对于呈现浑浊和双折射的模型,以及对于呈现浑浊、双折射和旋光性的模型,实验测量结果与蒙特卡罗计算结果非常吻合。其他与散射无关的偏振特性可以纳入已开发的琼斯N矩阵形式中,从而通过精确的偏振敏感蒙特卡罗模型对偏振效应进行量化。