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Modeling of chromosome aberration response functions induced by particle beams with different LET

机译:粒子束染色体畸变响应函数的建模与不同的粒子束诱导

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摘要

This study is based on our already published experimental data (Kowalska et al. in Radiat Environ Biophys 58:99-108, 2019) and is devoted to modeling of chromosome aberrations in human lymphocytes induced by 22.1 MeV/u B-11 ions, 199 MeV/u C-12 ions, 150 MeV and spread-out Bragg peak (SOBP) proton beams as well as by Co-60 gamma rays. The curvature of the dose-effect curves determined by the linear-quadratic model was considered in the frame of a simple analytical approach taking into account increase in the irradiation dose due to overlapping interaction regions of ion tracks. The model enabled to estimate effective interaction radius which could be compared with the physical expectations. The results were also compared to the Amorphous Track Structure Model of Katz which allows to get some additional information about the ion track structure. The analysis showed that the curvature of the experimental dose-effect curves mainly results from highly efficient repair processes of the DNA damage.
机译:本研究基于我们已发表的实验数据(Kowalska等人。在Radiat环境58:99-108,2019中),并致力于22.1mev / U B-11离子,199的人淋巴细胞中的染色体畸变的建模。 MEV / U C-12离子,150 meV和散布布拉格峰(SOBP)质子梁以及CO-60伽马光线。在简单的分析方法的框架中考虑了由于离子轨道的重叠区域的辐射剂量增加,考虑了线性二次模型确定的剂量效应曲线。该模型能够估计有效的交互半径,可以与物理期望进行比较。结果也将结果与KATZ的非晶轨道结构模型进行了比较,这允许获得关于离子轨道结构的一些附加信息。分析表明,实验剂量效应曲线的曲率主要是由高效修复过程的DNA损伤的过程。

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