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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research >Low-energy electron dose-point kernel simulations using new physics models implemented in Geant4-DNA
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Low-energy electron dose-point kernel simulations using new physics models implemented in Geant4-DNA

机译:使用Geant4-DNA中实现的新物理模型进行低能电子剂量点内核模拟

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摘要

When low-energy electrons, such as Auger electrons, interact with liquid water, they induce highly localized ionizing energy depositions over ranges comparable to cell diameters. Monte Carlo track structure (MCTS) codes are suitable tools for performing dosimetry at this level. One of the main MCTS codes, Geant4-DNA, is equipped with only two sets of cross section models for low-energy electron interactions in liquid water ("option 2" and its improved version, "option 4"). To provide Geant4-DNA users with new alternative physics models, a set of cross sections, extracted from CPA100 MCTS code, have been added to Geant4-DNA. This new version is hereafter referred to as "Geant4-DNA-CPA100". In this study, "Geant4-DNA-CPA100" was used to calculate low-energy electron dose-point kernels (DPKs) between 1 keV and 200 keV. Such kernels represent the radial energy deposited by an isotropic point source, a parameter that is useful for dosimetry calculations in nuclear medicine. In order to assess the influence of different physics models on DPK calculations, DPKs were calculated using the existing Geant4-DNA models ("option 2" and "option 4"), newly integrated CPA100 models, and the PENELOPE Monte Carlo code used in step-by-step mode for monoenergetic electrons. Additionally, a comparison was performed of two sets of DPKs that were simulated with "Geant4-DNA-CPA100" - the first set using Geant4's default settings, and the second using CPA100's original code default settings. A maximum difference of 9.4% was found between the Geant4-DNA-CPA100 and PENELOPE DPKs. Between the two Geant4-DNA existing models, slight differences, between 1 keV and 10keV were observed. It was highlighted that the DPKs simulated with the two Geant4-DNA's existing models were always broader than those generated with "Geant4-DNA-CPA100". The discrepancies observed between the DPKs generated using Geant4-DNA's existing models and "Geant4-DNA-CPA100" were caused solely by their different cross sections. The different scoring and interpolation methods used in CPA100 and Geant4 to calculate DPKs showed differences close to 3.0% near the source.
机译:当低能电子(例如俄歇电子)与液态水相互作用时,它们会在与细胞直径相当的范围内引起高度局部化的电离能沉积。蒙特卡洛轨道结构(MCTS)代码是在此级别执行剂量测定的合适工具。 MCTS的主要代码之一Geant4-DNA仅配备了两组横截面模型,用于在液态水中进行低能电子相互作用(“选项2”及其改进的版本“选项4”)。为了向Geant4-DNA用户提供新的替代物理模型,从CPA100 MCTS代码中提取的一组横截面已添加到Geant4-DNA中。以下将该新版本称为“ Geant4-DNA-CPA100”。在这项研究中,“ Geant4-DNA-CPA100”用于计算1 keV至200 keV之间的低能电子剂量点内核(DPK)。这样的内核代表各向同性点源沉积的径向能量,该能量对核医学中的剂量法计算很有用。为了评估不同物理模型对DPK计算的影响,使用现有的Geant4-DNA模型(“选项2”和“选项4”),新集成的CPA100模型以及PENELOPE Monte Carlo代码计算了DPK。能电子的分步模式。此外,还对使用“ Geant4-DNA-CPA100”模拟的两组DPK进行了比较-第一组使用Geant4的默认设置,第二组使用CPA100的原始代码默认设置。发现Geant4-DNA-CPA100和PENELOPE DPK之间的最大差异为9.4%。在现有的两个Geant4-DNA模型之间,观察到的微小差异在1 keV和10keV之间。需要强调的是,使用两个Geant4-DNA现有模型进行仿真的DPK总是比使用“ Geant4-DNA-CPA100”生成的模型更宽。使用Geant4-DNA的现有模型生成的DPK与“ Geant4-DNA-CPA100”之间观察到的差异仅由它们的不同横截面引起。 CPA100和Geant4中用于计算DPK的不同评分和插值方法显示,在源头附近的差异接近3.0%。

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    CRCT, UMR 1037 INSERM, Universite Paul Sabatier, F-31037 Toulouse, France,UMR 1037, CRCT, Universite Toulouse Ⅲ-Paul Sabatier, F-31037, France,Centre de Recherche en Cancerologie de Toulouse, INSERM UMR 1037/Universite Toulouse Ⅲ Paul Sabatier, 2 Avenue Hubert Curien CS 53717, 31037 Toulouse Cedex 1, France;

    Universite de Bordeaux, CENBG, UMR 5797, F-33170 Gradignan, France,CNRS, IN2P3, CENBG, UMR 5797, F-33170 Gradignan, France;

    Universite de Bordeaux, CENBG, UMR 5797, F-33170 Gradignan, France,CNRS, IN2P3, CENBG, UMR 5797, F-33170 Gradignan, France;

    CRCT, UMR 1037 INSERM, Universite Paul Sabatier, F-31037 Toulouse, France,UMR 1037, CRCT, Universite Toulouse Ⅲ-Paul Sabatier, F-31037, France;

    CRCT, UMR 1037 INSERM, Universite Paul Sabatier, F-31037 Toulouse, France,UMR 1037, CRCT, Universite Toulouse Ⅲ-Paul Sabatier, F-31037, France;

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  • 正文语种 eng
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  • 关键词

    Ceant4-DNA; Dose-point kernel; Monte Carlo track structure code; Low-energy electrons; Liquid water;

    机译:Ceant4-DNA;剂量点内核;蒙特卡洛轨道结构代码;低能电子液态水;

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