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Parallelized Monte Carlo software to efficiently simulate the light propagation in arbitrarily shaped objects and aligned scattering media

机译:并行蒙特卡洛软件可有效地模拟光在任意形状的物体和对齐的散射介质中的传播

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摘要

A GPU-based Monte Carlo software (MCtet) was developed to calculate the light propagation in arbitrarily shaped objects, like a human tooth, represented by a tetrahedral mesh. A unique feature of MCtet is a concept to realize different kinds of light-sources illuminating the complex-shaped surface of an object, for which no preprocessing step is needed. With this concept, it is also possible to consider photons leaving a turbid media and reentering again in case of a concave object. The correct implementation was shown by comparison with five other Monte Carlo software packages. A hundredfold acceleration compared with central processing units-based programs was found. MCtet can simulate anisotropic light propagation, e.g., by accounting for scattering at cylindrical structures. The important influence of the anisotropic light propagation, caused, e.g., by the tubules in human dentin, is shown for the transmission spectrum through a tooth. It was found that the sensitivity to a change in the oxygen saturation inside the pulp for transmission spectra is much larger if the tubules are considered. Another "light guiding" effect based on a combination of a low scattering and a high refractive index in enamel is described.
机译:开发了基于GPU的蒙特卡洛软件(MCtet),以计算在以四面体网格为代表的任意形状的物体(如人牙)中的光传播。 MCtet的独特功能是一个概念,它可以实现照亮对象复杂形状表面的各种光源,而无需进行任何预处理步骤。利用该概念,还可以考虑光子离开浑浊的介质并在凹形物体的情况下再次进入。通过与其他五个Monte Carlo软件包进行比较,显示了正确的实现。与基于中央处理器的程序相比,加速度提高了一百倍。 MCtet可以例如通过考虑圆柱结构处的散射来模拟各向异性光的传播。对于通过牙齿的透射光谱,示出了例如由人牙本质中的小管引起的各向异性光传播的重要影响。已经发现,如果考虑肾小管,则对于透射光谱而言,对于纸浆内部的氧饱和度变化的敏感性要大得多。描述了在搪瓷中基于低散射和高折射率的组合的另一种“光导”效果。

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