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Track structure analysis illustrating the prominent role of low-energy electrons in radiobiological effects of low-LET radiations

机译:轨道结构分析说明了低能电子在低LET辐射的放射生物学效应中的突出作用

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摘要

Monte Carlo track structure methods have been used to illustrate the importance of low-energy electrons produced by low-LET radiations. It is shown that these low-energy secondary electrons contribute substantially to the dose in all low-LET irradiations and are particularly efficient at producing highly localized clusters of atomic damage which may be responsible for a major part of the biological effectiveness of low-LET radiations. The data generated by Monte Carlo track structure techniques and by earlier semi-analytical methods based on the LET concept have been compared in terms of cumulative and differential fractions of total dose absorbed as a function of electron energy. The data show that low-energy secondary electrons account for up to nearly 50 of the total dose imparted to a medium when irradiated with electrons or photons.
机译:蒙特卡罗轨道结构方法已被用于说明低LET辐射产生的低能电子的重要性。结果表明,这些低能二次电子对所有低LET辐射中的剂量有很大贡献,并且在产生高度局部的原子损伤簇方面特别有效,这可能是低LET辐射生物有效性的主要部分原因。蒙特卡洛轨道结构技术和早期基于LET概念的半分析方法产生的数据已经根据吸收的总剂量的累积和差异分数作为电子能量的函数进行了比较。数据显示,当被电子或光子照射时,低能二次电子占介质总剂量的近50%。

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