首页> 外文期刊>Journal of the Optical Society of America, A. Optics, image science, and vision >Three-dimensional Neumann-series approach to model light transport in nonuniform media
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Three-dimensional Neumann-series approach to model light transport in nonuniform media

机译:三维Neumann级数方法模拟非均匀介质中的光传输

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摘要

We present the implementation, validation, and performance of a three-dimensional (3D) Neumann-series approach to model photon propagation in nonuniform media using the radiative transport equation (RTE). The RTE is implemented for nonuniform scattering media in a spherical harmonic basis for a diffuse-optical-imaging setup. The method is parallelizable and implemented on a computing system consisting of NVIDIA Tesla C2050 graphics processing units (GPUs). The GPU implementation provides a speedup of up to two orders of magnitude over non-GPU implementation, which leads to good computational efficiency for the Neumann-series method. The results using the method are compared with the results obtained using the Monte Carlo simulations for various small-geometry phantoms, and good agreement is observed. We observe that the Neumann-series approach gives accurate results in many cases where the diffusion approximation is not accurate.
机译:我们介绍了三维(3D)Neumann级数方法的实现,验证和性能,该方法使用辐射传输方程(RTE)对非均匀介质中的光子传播进行建模。 RTE用于非均匀散射介质,以球谐函数为基础,用于漫射光学成像设置。该方法可并行化,并在由NVIDIA Tesla C2050图形处理单元(GPU)组成的计算系统上实现。与非GPU实施相比,GPU实施可提供高达两个数量级的加速,从而为Neumann级数方法带来了良好的计算效率。将使用该方法的结果与使用蒙特卡罗模拟获得的各种小几何体模的结果进行比较,观察到良好的一致性。我们观察到,在许多情况下,扩散近似都不准确,Neumann级数方法给出了准确的结果。

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