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An Adaptive Multigrid Method for Modeling Photon Transport through Biological Tissues in Bioluminescence Tomography

机译:一种通过生物发光断层扫描中的生物组织建模光子传输的自适应多重型方法

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In this paper, we develop an Adaptive Multigrid method (AMGM) to model photon transport through biological tissues in bioluminescence tomography. In our method, the smoothing operation on fine levels and residual correction on coarse levels in V-Cycle offer fast convergence rate for this forward problem. Using a heterogeneous phantom, the methodology is validated by Monte Carlo simulations, and the computation speed is much higher than conventional smoothing iteration methods on a single grid. In actual biomedical imaging applications, especially when there are many sources in small animal body, AMGM is potential to accurately simulate the forward problem at very low computation cost.
机译:在本文中,我们开发一种自适应多重型方法(AMGM)以通过生物发光断层扫描中的生物组织模拟光子传输。在我们的方法中,V-Cycle中粗级的细水平和剩余校正的平滑操作提供了这种前进问题的快速收敛速度。使用异质幻影,通过蒙特卡罗模拟验证方法,计算速度远高于单个网格上的传统平滑迭代方法。在实际的生物医学成像应用中,特别是当小动物体中有许多源时,AMGM在极低的计算成本下准确地模拟前向问题。

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