用物理数据和凝胶数据相结合的方法估计质子束中自由基效应的影响

K. Haneda
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引用次数: 0

摘要

本研究的目的是利用物理数据和凝胶数据相结合的方法来估计质子束对自由基效应的影响。该研究使用了两种剂量计:电离室和聚合物凝胶剂量计。与其他剂量计相比,聚合物凝胶剂量计具有特殊的优点。它们可以测量化学反应,同时它们也是一个幻影,可以轻松地连续绘制三维地图。首先,用电离室和凝胶剂量计测量了210 MeV质子束的深度剂量曲线。其次,利用蒙特卡罗编码系统PHITS计算了物理剂量的空间分布,验证了蒙特卡罗计算的准确性,并将计算结果与电离室的实验数据进行了比较。最后,评估自由基效应相对于物理剂量的比率。将模拟结果与实测的深度剂量分布进行了比较,结果吻合较好。用相同的模拟程序计算了凝胶剂量随质子束LET阈值的空间分布。然后根据物理剂量和凝胶剂量计算自由基效应的相对分布。自由基效应的相对分布以物理剂量和凝胶剂量的相对剂量之商计算。在质子束中,凝胶剂量计的相对分布与自由基效应吻合较好。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Estimation of the influence of radical effect in the proton beams using a combined approach with physical data and gel data
The purpose of this study was to estimate an impact on radical effect in the proton beams using a combined approach with physical data and gel data. The study used two dosimeters: ionization chambers and polymer gel dosimeters. Polymer gel dosimeters have specific advantages when compared to other dosimeters. They can measure chemical reaction and they are at the same time a phantom that can map in three dimensions continuously and easily. First, a depth-dose curve for a 210 MeV proton beam measured using an ionization chamber and a gel dosimeter. Second, the spatial distribution of the physical dose was calculated by Monte Carlo code system PHITS: To verify of the accuracy of Monte Carlo calculation, and the calculation results were compared with experimental data of the ionization chamber. Last, to evaluate of the rate of the radical effect against the physical dose. The simulation results were compared with the measured depth-dose distribution and showed good agreement. The spatial distribution of a gel dose with threshold LET value of proton beam was calculated by the same simulation code. Then, the relative distribution of the radical effect was calculated from the physical dose and gel dose. The relative distribution of the radical effect was calculated at each depth as the quotient of relative dose obtained using physical and gel dose. The agreement between the relative distributions of the gel dosimeter and Radical effect was good at the proton beams.
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