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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >Stopping power and dose calculations with analytical and Monte Carlo methods for protons and prompt gamma range verification
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Stopping power and dose calculations with analytical and Monte Carlo methods for protons and prompt gamma range verification

机译:借助质子分析和蒙特卡洛方法对质子进行停止功率和剂量计算,并迅速进行伽马范围验证

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In this study, we have performed the calculations stopping power, depth dose, and range verification for proton beams using dielectric and Bethe-Bloch theories and FLUKA, Geant4 and MCNPX Monte Carlo codes. In the framework, as analytical studies, Drude model was applied for dielectric theory and effective charge approach with Roothaan-Hartree-Fock charge densities was used in Bethe theory. In the simulations different setup parameters were selected to evaluate the performance of three distinct Monte Carlo codes. The lung and breast tissues were investigated are considered to be related to the most common types of cancer throughout the world. The results were compared with each other and the available data in literature. In addition, the obtained results were verified with prompt gamma range data. In both stopping power values and depth-dose distributions, it was found that the Monte Carlo values give better results compared with the analytical ones while the results that agree best with ICRU data in terms of stopping power are those of the effective charge approach between the analytical methods and of the FLUKA code among the MC packages. In the depth dose distributions of the examined tissues, although the Bragg curves for Monte Carlo almost overlap, the analytical ones show significant deviations that become more pronounce with increasing energy. Verifications with the results of prompt gamma photons were attempted for 100-200 MeV protons which are regarded important for proton therapy. The analytical results are within 2%-5% and the Monte Carlo values are within 0%-2% as compared with those of the prompt gammas.
机译:在这项研究中,我们使用介电和Bethe-Bloch理论以及FLUKA,Geant4和MCNPX蒙特卡洛代码对质子束进行了停止功率,深度剂量和范围验证的计算。在框架中,作为分析研究,将Drude模型应用于介电理论,并在Bethe理论中采用Roothaan-Hartree-Fock电荷密度的有效电荷方法。在仿真中,选择了不同的设置参数来评估三种不同的蒙特卡洛代码的性能。被调查的肺和乳腺组织被认为与全世界最常见的癌症类型有关。将结果相互比较,并比较文献中的可用数据。此外,获得的结果用及时的伽玛范围数据进行了验证。在停止功率值和深度剂量分布方面,都发现与分析方法相比,蒙特卡洛值给出了更好的结果,而就停止功率而言,与ICRU数据最吻合的结果则是采用了有效的充电方法。分析方法以及MC软件包中的FLUKA代码。在检查组织的深度剂量分布中,尽管蒙特卡洛的布拉格曲线几乎重叠,但分析曲线显示出明显的偏差,随着能量的增加,偏差变得更加明显。尝试对100-200 MeV质子进行即时伽马光子结果验证,这对质子治疗很重要。与即时伽玛分析相比,分析结果在2%-5%范围内,蒙特卡洛值在0%-2%范围内。

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