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首页> 外文期刊>Journal of Quantitative Spectroscopy & Radiative Transfer >A three-dimensional finite elements approach for the coupled radiative transfer equation and diffusion approximation modeling in fluorescence imaging
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A three-dimensional finite elements approach for the coupled radiative transfer equation and diffusion approximation modeling in fluorescence imaging

机译:荧光成像中辐射传递方程和扩散近似建模的三维有限元方法

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摘要

During the last few years a quite large number of fluorescence molecular imaging applications have been reported in the literature, as one of the most challenging aspects in medical imaging is to "see" a tumor embedded into tissue, which is a turbid medium, by using fluorescent probes for tumor labeling. However, the forward solvers, required for the successful convergence of the inverse problem, are still lacking accuracy and time feasibility. Moreover, initialization of these solvers may be proven even more difficult than solving the inverse problem itself. This paper describes in depth a coupled radiative transfer equation and diffusion approximation model for solving the forward problem in fluorescence imaging. The theoretical confrontation of these solvers comprises the model deployment, its Galerkin finite elements approximation and the domain discretization scheme. Finally, a new optical properties mapping algorithm, based on super-ellipsoid models, is implemented, providing a fully automated simulation target construction within feasible time.
机译:在过去的几年中,文献中已经报道了相当大量的荧光分子成像应用,因为医学成像中最具挑战性的方面之一是通过“观察”包埋在组织中的肿瘤,该组织是浑浊的介质。用于肿瘤标记的荧光探针。但是,成功收敛反问题所需的前向求解器仍缺乏准确性和时间可行性。而且,证明这些求解器的初始化比解决反问题本身还要困难。本文深入描述了耦合的辐射传递方程和扩散近似模型,用于解决荧光成像中的正向问题。这些求解器的理论对立包括模型部署,其Galerkin有限元逼近和域离散化方案。最后,基于超椭球模型,实现了一种新的光学特性映射算法,可在可行的时间内提供全自动的模拟目标构造。

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