基于蒙特卡罗数据集的简化方法在治疗级质子束实验室屏蔽设计中的有效性论证

Pub Date : 2022-03-30 DOI:10.14407/jrpr.2021.00227
Bo-Lun Lai, Szu-Li Chang, R. Sheu
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引用次数: 0

摘要

背景:台湾有几个质子治疗设施正在运作或计划中,这些设施不仅可以治疗癌症,还可以为工业界或学术界提供光束服务。基于蒙特卡罗数据集(源项和衰减长度)和点源视距近似的简化方法在质子治疗设施的设计阶段是友好的,因为它直观且易于使用。本研究的目的是扩展基于蒙特卡罗的数据集,使简化的方法能够更广泛地覆盖质子束的应用。材料与方法:本研究使用MCNP6蒙特卡罗代码进行了三个模拟,包括中子产额计算、基于蒙特卡罗的数据集生成和简单情况下的剂量评估,以证明生成数据集的有效性。结果与讨论:简化方法与蒙特卡罗模拟结果的一致性比较显示了将数据集应用于质子治疗设施的快速屏蔽设计和保守剂量评估的有效性和优势。结论:本研究扩展了现有的蒙特卡罗数据集,允许简化方法用于剂量评估或质子治疗设施中束流服务的屏蔽设计。需要注意的是,MCNP6的默认模型不再是Bertini模型,而是CEM(级联激子模型),因此,将简化方法用于最终屏蔽设计的双重确认时,结果会更加保守。
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Demonstration of the Effectiveness of Monte Carlo-Based Data Sets with the Simplified Approach for Shielding Design of a Laboratory with the Therapeutic Level Proton Beam
Background: There are several proton therapy facilities in operation or planned in Taiwan, and these facilities are anticipated to not only treat cancer but also provide beam services to the industry or academia. The simplified approach based on the Monte Carlo-based data sets (source terms and attenuation lengths) with the point-source line-of-sight approximation is friendly in the design stage of the proton therapy facilities because it is intuitive and easy to use. The purpose of this study is to expand the Monte Carlo-based data sets to allow the simplified approach to cover the application of proton beams more widely.Materials and Methods: In this work, the MCNP6 Monte Carlo code was used in three simulations to achieve the purpose, including the neutron yield calculation, Monte Carlo-based data sets generation, and dose assessment in simple cases to demonstrate the effectiveness of the generated data sets.Results and Discussion: The consistent comparison of the simplified approach and Monte Carlo simulation results show the effectiveness and advantage of applying the data set to a quick shielding design and conservative dose assessment for proton therapy facilities.Conclusion: This study has expanded the existing Monte Carlo-based data set to allow the simplified approach method to be used for dose assessment or shielding design for beam services in proton therapy facilities. It should be noted that the default model of the MCNP6 is no longer the Bertini model but the CEM (cascade-exciton model), therefore, the results of the simplified approach will be more conservative when it was used to do the double confirmation of the final shielding design.
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