首页> 外文期刊>Optics Communications: A Journal Devoted to the Rapid Publication of Short Contributions in the Field of Optics and Interaction of Light with Matter >Influence of the order of the constituent basis matrices on the Mueller matrix decomposition-derived polarization parameters in complex turbid media such as biological tissues
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Influence of the order of the constituent basis matrices on the Mueller matrix decomposition-derived polarization parameters in complex turbid media such as biological tissues

机译:复杂基础介质中生物组织等组成基础矩阵的阶数对Mueller矩阵分解的极化参数的影响

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摘要

The influence of the multiplication order of the constituent basis matrices on the Mueller matrix decomposition-derived polarization parameters in complex tissue-like turbid media exhibiting simultaneous scattering and polarization effects are investigated. A polarization sensitive Monte Carlo (MC) simulation model was used to generate Mueller matrices from turbid media exhibiting simultaneous linear birefringence, optical activity and multiple scattering effects. Mueller matrix decomposition was performed with different selected multiplication orders of the constituent basis matrices, which were further analyzed to derive quantitative individual polarization medium properties. The results show that for turbid medium having weak diattenuation (differential attenuation of two orthogonal polarization states), the decomposition-derived polarization parameters are independent of the multiplication order. Importantly, the values for the extracted polarization parameters were found to be in excellent agreement with the controlled inputs, showing self-consistency in inverse decomposition analysis and successful decoupling of the individual polarization effects. These results were corroborated further by selected experimental results from phantoms having optical (scattering and polarization) properties similar to those used in the MC model. Results from tissue polarimetry confirm that the magnitude of diattenuation is generally lower compared to other polarization effects, so that the demonstrated self-consistency of the decomposition formalism with respect to the potential ambiguity of ordering of the constituent matrices should hold in biological applications.
机译:研究了同时显示散射和极化效应的复杂组织状浑浊介质中组成基本矩阵的乘积顺序对Mueller矩阵分解得出的极化参数的影响。使用偏振敏感的蒙特卡洛(MC)仿真模型从混浊的介质中生成Mueller矩阵,该介质同时具有线性双折射,光学活性和多重散射效应。使用组成基矩阵的不同选择的乘法顺序执行Mueller矩阵分解,然后对其进行进一步分析以得出定量的单个偏振介质特性。结果表明,对于具有弱双衰减(两个正交偏振态的差分衰减)的混浊介质,分解派生的偏振参数与乘法阶数无关。重要的是,发现提取的偏振参数值与受控输入非常吻合,显示了逆分解分析中的自洽性以及各个偏振效应的成功去耦。从具有与MC模型相似的光学(散射和偏振)特性的体模中选择的实验结果进一步证实了这些结果。组织极化法的结果证实,与其他极化效应相比,衰减的幅度通常较低,因此,在生物学应用中,应证明分解形式的自洽性与组成矩阵的潜在歧义有关。

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