放射分析
蒙特卡罗方法
质子
辐照
剂量计
剂量学
吸收剂量
放射化学
电离
化学
电离室
材料科学
辐射
核物理学
物理
离子
核医学
统计
医学
数学
有机化学
作者
NULL AUTHOR_ID,NULL AUTHOR_ID,NULL AUTHOR_ID,NULL AUTHOR_ID,NULL AUTHOR_ID,Craff Emeline,NULL AUTHOR_ID,NULL AUTHOR_ID,NULL AUTHOR_ID,S. Incerti,Charbel Koumeir,Vincent Métivier,NULL AUTHOR_ID,NULL AUTHOR_ID,NULL AUTHOR_ID,NULL AUTHOR_ID,NULL AUTHOR_ID,Lydia Maigne
摘要
Radiobiological effectiveness of radiation in cancer treatment can be studied at different scales (molecular till organ scale) and different time post irradiation. The production of free radicals and reactive oxygen species during water radiolysis is particularly relevant to understand the fundamental mechanisms playing a role in observed biological outcomes. The development and validation of Monte Carlo tools integrating the simulation of physical, physico-chemical and chemical stages after radiation is very important to maintain with experiments.
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