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Time-resolved photon migration through an adult head model: comparison between Finite Element and Monte Carlo calculations

机译:通过成人头模型的时间解决的光子迁移:有限元和蒙特卡罗计算之间的比较

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In this work, a Finite Element calculations based on diffusion approximation are compared with Monte Carlo transport data code in time-resolved reflectance simulations of light propagation in a three-layered head model, which can be seen as a very simplistic approximation of the adult head. We also address the effects caused by the cerebrospinal fluid (CSF), filling the space between the skull and the brain, on the accuracy of the diffusion approximation for different values of CSF reduced scattering coefficients μ_s' varying between 0.1 and 1 mm~(-1). Significant differences between transport and diffusion calculations show that diffusion approximation fails to describe accurately light propagation in voidlike region such as the cerebrospinal fluid (CSF), in which absorption and scattering are very small compared to the surrounding media, whereas the Monte Carlo predictions are not greatly affected. However, It is shown that the diffusion equation should provide reasonable solutions with a CSF reduced scattering coefficient μ_s' = 0.3 mm~(-1). The results indicate that a multi-layered model including CSF is more appropriate for the determination of the optical properties of the human head and to obtain accurate solutions of the forward problem with diffusion approximation.
机译:在这项工作中,基于扩散近似有限元计算是在一个三层的头部模型的光传播的时间分辨的反射率模拟蒙特卡洛传输数据的代码,它可以被看作是在成人头部的一个非常简单的近似相比。我们还解决因脑脊髓液(CSF)的影响,填充颅骨和脑之间的空间中,在扩散近似的对CSF的不同值的精度降低散射系数μ_s'0.1和1mm之间变化〜( - 1)。运输和扩散计算之间显著差异表明,扩散近似没有描述在voidlike区域准确的光传播,如脑脊髓液(CSF),其中吸收和散射是非常小的比周围的媒体,而蒙特卡洛预测是不很大的影响。然而,结果表明,扩散方程应提供合理的解决方案与CSF降低散射系数μ_s'=0.3毫米〜(-1)。结果表明,包括CSF多层模型更适合于人体头部的光学特性的确定和获得与扩散近似的前向问题的准确的解决方案。

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