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Modeling light fluence rate distribution in optically heterogeneous prostate photodynamic therapy using a kernel method

机译:使用核方法模拟光学异质前列腺光动力疗法中的光通量率分布

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摘要

To accurately calculate light fluence rate distribution for light dosimetry in prostate photodynamic therapy (PDT), heterogeneity of optical properties has to be taken into account. Previous study has shown that a finite-element method (FEM) can be an efficient tool to deal with the optical heterogeneity. However, the calculation speed of the FEM is not suitable for real time treatment planning. In this paper, two kernel models are developed. Because the kernels are based on analytic solutions of the diffusion equation, calculations are much faster. We derived our extensions of kernel from homogeneous medium to heterogeneous medium assuming spherically symmetrical heterogeneity of optical properties. The kernel models are first developed for a point source and then extended for a linear source, which is considered a summation of point sources uniformly spaced along a line. The kernel models are compared with the FEM calculation. In application of the two kernel models to a heterogeneous prostate PDT case, both kernel models give improved light fluence rate results compared with those derived assuming homogeneous medium. In addition, kernel model 2 predicts reasonable light fluence rates and is deemed suitable for treatment planning.
机译:为了在前列腺光动力疗法(PDT)中精确计算光剂量法的光通量率分布,必须考虑光学特性的异质性。先前的研究表明,有限元方法(FEM)可以有效地解决光学异质性问题。但是,FEM的计算速度不适合实时治疗计划。在本文中,开发了两个内核模型。由于内核基于扩散方程的解析解,因此计算速度更快。假设光学特性呈球形对称异质性,我们将核仁从均质介质扩展到异质介质。首先为点源开发内核模型,然后为线性源扩展内核模型,这被认为是沿线均匀间隔的点源的总和。将内核模型与FEM计算进行比较。在将两种内核模型应用于异质前列腺PDT病例中,与假定均质介质的情况相比,两种内核模型均提供了改进的光通量率结果。此外,核心模型2可以预测合理的光通量率,并被认为适合进行治疗计划。

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