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Published on: March 6, 2013
Three-dimensional Neumann-series approach to model light transport in nonuniform media
Abhinav K Jha1, Matthew A Kupinski, Harrison H Barrett
1College of Optical Sciences, University of Arizona, Tucson, Arizona 85721, USA. akjha@email.arizona.edu
Abstract:
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.
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