首页> 外文期刊>Journal of radiological protection: Official journal of the Society for Radiological Protection >A Monte Carlo based analytic model of the in-room neutron ambient dose equivalent for a Mevion gantry-mounted passively scattered proton system
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A Monte Carlo based analytic model of the in-room neutron ambient dose equivalent for a Mevion gantry-mounted passively scattered proton system

机译:基于Mevion Gantry安装被动散射质子系统的室子中子环境剂量的基于蒙特卡罗的分析模型

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The goal of this study was to develop a Monte Carlo (MC)-based analytical model that can predict the in-room ambient dose equivalent from a Mevion gantry-mounted passively scattered proton system. The Mevion S250 and treatment vault were simulated using the MCNPX MC code. The results of the in-room neutron dose measurements, using an FHT 762 WENDI-II detector, were employed to benchmark the MC-derived values. After tuning the MCNPX MC code, for the same beam delivery parameters, the code was used to calculate the neutron spectra and ambient dose equivalent in the vault and at varying angles from the isocenter. Then, based on the calculations, an analytical model was reconstructed and data were fitted to derive the model parameters at 95% confidence intervals (CI). The MCNPX codes were tuned to within about 19% of the measured values for most of the measurements in the vault. For the maze, up to 0.08 mSv Gy(-1)discrepancies were found between the experimental measurements and MCNPX calculated results. The analytical model showed up to 18% discrepancy for distances between 100 and 600 cm from the isocenter compared to the MC calculations. The model may underestimate the neutron ambient dose equivalent up to 21% for distances less than 100 cm from the isocenter. The proposed analytical model can be used to estimate the contribution of the secondary neutron dose from the Mevion S250 for the design of local shielding inside the proton therapy treatment vault.
机译:本研究的目的是开发一个基于蒙特卡罗(MC)的分析模型,可以预测Mevion机架安装的被动散射质子系统的室内环境剂量当量。使用MCNPX MC代码模拟Mevion S250和治疗室。使用FHT 762 WENDI-II探测器进行室内中子剂量测量的结果被用于基准MC衍生值。在调整MCNPX MC程序后,对于相同的束流传输参数,该程序用于计算保险库中以及与等中心成不同角度的中子谱和环境剂量当量。然后,在计算的基础上,重建分析模型,并对数据进行拟合,以获得95%置信区间(CI)下的模型参数。对于保险库中的大多数测量,MCNPX代码被调整到约19%的测量值范围内。对于迷宫,在实验测量和MCNPX计算结果之间发现了高达0.08 mSv Gy(-1)的差异。分析模型显示,与MC计算相比,距离等中心100到600 cm之间的距离差异高达18%。对于距离等中心小于100 cm的距离,该模型可能会低估中子环境剂量当量高达21%。提出的分析模型可用于估算Mevion S250的次级中子剂量对质子治疗室内部局部屏蔽设计的贡献。

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