Medical Physics Unit, McGill University, Montreal, QC H4A 3J1, Canada.
Cancer Centre of Southeastern Ontario, Kingston Health Sciences Centre, Kingston, ON K7L 5P9, Canada.
Radiat Prot Dosimetry. 2023 Oct 11;199(15-16):1917-1921. doi: 10.1093/rpd/ncad148.
Recent Monte Carlo studies have linked the energy-dependent risk of neutron-induced stochastic effects to the relative biological effectiveness (RBE) of neutrons in inflicting difficult-to-repair clusters of lesions in nuclear deoxyribonucleic acid (DNA). However, an investigation on the damaging effects of indirect radiation action is missing from such studies. In this work, we extended our group's existing simulation pipeline by incorporating and validating a model for indirect action. Our updated simulation pipeline was used to study the impact of indirect action and estimate neutron RBE for inflicting clustered lesions in DNA. In our results, although indirect action significantly increased the average yield of DNA damage clusters, our neutron RBE values are lower in magnitude than previous estimates due to model limitations and the greater relative impact of indirect action in lower-linear energy transfer (LET) radiation than in higher-LET radiation.
最近的蒙特卡罗研究将与能量相关的中子诱导随机效应风险与中子在造成核脱氧核糖核酸 (DNA) 中难以修复的损伤簇方面的相对生物效应 (RBE) 联系起来。然而,此类研究中缺少对间接辐射作用的损伤效应的研究。在这项工作中,我们通过合并和验证间接作用模型扩展了我们小组现有的模拟管道。我们更新的模拟管道用于研究间接作用的影响并估计中子 RBE 以造成 DNA 中的簇状损伤。在我们的结果中,尽管间接作用显著增加了 DNA 损伤簇的平均产率,但由于模型限制以及在低线性能量转移 (LET) 辐射中间接作用的相对影响大于在更高 LET 辐射中,我们的中子 RBE 值的幅度低于以前的估计值。