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A predictive model of backscattering at subdiffusion length scales

机译:子扩散长度尺度上反向散射的预测模型

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We provide a methodology for accurately predicting elastic backscattering radial distributions from random media with two simple empirical models. We apply these models to predict the backscattering based on two classes of scattering phase functions: the Henyey-Greenstein phase function and a generalized two parameter phase function that is derived from the Whittle-Matérn correlation function. We demonstrate that the model has excellent agreement over all length scales and has less than 1% error for backscattering at subdiffusion length scales for tissue-relevant optical properties. The presented model is the first available approach for accurately predicting backscattering at length scales significantly smaller than the transport mean free path.
机译:我们提供了一种使用两个简单的经验模型从随机介质中准确预测弹性后向散射径向分布的方法。我们基于以下两类散射相位函数应用这些模型来预测反向散射:Henyey-Greenstein相位函数和从Whittle-Matérn相关函数派生的广义两参数相位函数。我们证明该模型在所有长度尺度上都具有极好的一致性,并且在与组织相关的光学特性的子扩散长度尺度上,背向散射的误差小于1%。提出的模型是第一种可用于精确预测长度远小于运输平均自由程的后向散射的方法。

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