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Cobaltotherapy dosimetric calculations over a voxelized water phantom. Validation of different Monte Carlo models and methodologies against experimental data

机译:在体素化水体模上进行Cobaltotherapy剂量计算。针对实验数据验证不同的蒙特卡洛模型和方法

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The main goal of the present work is to quantify, in a homogeneous water phantom, the differences between experimentally measured dose distribution inside it, and those calculated by the simulation of different transport models using the Monte Carlo computer code MCNP. This goal has been achieved simulating the electron and photon transport in a water phantom irradiated by a Theratron 780/spl reg/ (MDS Nordion) /sup 60/Co radiotherapy unit, which has been realistically modeled, considering field sizes from 5/spl times/5 to 20/spl times/20 cm/sup 2/. The source description and characteristics of the incident beams have been slightly modified in order to study the result variations of these models. Different methodologies have been also carried out to speed up calculations with the aim of applying MCNP efficiently in radiotherapy treatment planning.
机译:当前工作的主要目的是在均质的水体模型中量化内部测量的剂量分布与使用蒙特卡洛计算机代码MCNP通过模拟不同运输模型计算出的剂量分布之间的差异。通过模拟Theratron 780 / spl reg /(MDS Nordion)/ sup 60 / Co放射治疗装置辐照的水体模中的电子和光子传输,已实现了这一目标,该装置已实际建模,考虑了5 / spl次的场大小/ 5至20 / spl次/ 20 cm / sup 2 /。为了研究这些模型的结果变化,对入射光束的源描述和特性进行了一些修改。为了有效地将MCNP应用于放射治疗计划中,还进行了各种方法来加快计算速度。

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