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Comparison of Two different Methods for describing the geometry of a Voxelized Anthropomorphic Phantom in Radiotherapy Treatment Plans

机译:放射治疗方案中描述体素化拟人化幻影的两种不同方法的比较

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The main purpose of this work is to provide a comparison between two different methods for building up Voxelized Anthropomorphic Phantoms in Radiotherapy Treatment Plans. The Zubal Phantom is the reference phantom utilized in order to construct the voxelized models by means of a Matlab program, in which the two different methodologies for the description of the geometry are implemented. The irradiation of the resulting phantoms was simulated with the MCNP5 (Monte Carlo N-Particle) transport code, version 5, and the calculations presented in particle flux maps inside the phantoms by utilizing the FMESH tool, superimposed mesh tally. The two different methodologies used for the description of the geometry of the phantoms are subject to the MCNP5 language, one uses intersecting planes to depict every voxel, and the other makes use of the lattice card. The different variables involved in the simulation were analyzed: particle flux, MCNP standard deviation and real simulation CPU time cost.
机译:这项工作的主要目的是在放射疗法治疗计划中建立体素化拟人化幻影的两种不同方法之间进行比较。 Zubal Phantom是用于通过Matlab程序构建体素化模型的参考体模,在其中实现了两种不同的几何学描述方法。使用版本5的MCNP5(蒙特卡洛N粒子)运输代码模拟了生成的体模的辐射,并使用FMESH工具(叠加了网格标记)在体模内部的粒子通量图中显示了计算结果。用于描述幻影几何体的两种不同方法均受MCNP5语言的约束,一种使用相交平面来描绘每个体素,另一种使用晶格卡。分析了模拟中涉及的不同变量:粒子通量,MCNP标准偏差和实际模拟CPU时间成本。

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