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Analysis of light propagation in neonatal head model by finite difference method

机译:有限差分法分析新生儿头模型中的光繁殖

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The light propagation in a simple layered ellipse model and more complex neonatal head model are calculated by the finite-difference method. The finite-difference method has advantage of simple algorithm and fast calculation time however has been successful under restricted condition for a heterogeneous medium. The light propagation in the both models is predicted by Monte Carlo simulation to validate the results of the finite-difference method. The detected intensity and partial optical path length calculated by the finite-difference method agree with those by Monte Carlo simulation. The boundary of the grey and white matter in the neonatal head model is more complex than the simple ellipse model. However, the tendency of spatial sensitivity profiles in the neonatal head model is scarcely affected by the effect of heterogeneity of the brain tissue.
机译:简单的分层椭圆模型和更复杂的新生儿头模型中的光传播通过有限差分法计算。有限差分方法具有简单算法的优点,并且在异构介质的限制条件下已经成功了。通过Monte Carlo仿真预测了两种模型中的光传播,以验证有限差分方法的结果。通过有限差分法计算的检测强度和部分光路长度与Monte Carlo仿真的相同。新生儿头部模型中灰色和白质的边界比简单的椭圆模型更复杂。然而,新生儿头模型中的空间敏感性谱的趋势几乎没有受到脑组织异质性的影响的影响。

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