论文标题
蒙特卡洛的比较计算的金纳米颗粒的剂量增强率被X射线照射:评估扩展光束的不确定性和正确方法
Intercomparison of Monte Carlo calculated dose enhancement ratios for gold nanoparticles irradiated by X-rays: assessing the uncertainty and correct methodology for extended beams
论文作者
论文摘要
最近报道了X射线辐照的金纳米颗粒(GNP)的蒙特卡洛代码比较练习的结果。为了强调代码之间的潜在差异,显示了模拟中使用的窄光束几何形状的剂量增强比(DER),这在距离GNP表面几十微米的顺序上导致值显着高于统一的值。据我们所知,我们的论文中的数字已经引起了误解,因为它显示了诊断性X射线照射下的“ GNP的DER”,因此本文介绍了对使用现实的辐射场扩展和二级粒子平衡的存在(SPE)的估计值(SPE)。这些DED值比我们论文中显示的窄光束照射的值要小得多,并且仅在GNP周围的几百纳米内发现明显的剂量增强。用于获得这些估计值的方法需要开发一种方法,以识别并在可能的情况下从模拟中纠正其实施偏离初始练习定义的结果。基于这种方法,对蒙特卡洛模拟DER的文献进行了严格评估。
Results of a Monte Carlo code intercomparison exercise for simulations of the dose enhancement from a gold nanoparticle (GNP) irradiated by X-rays have been recently reported. To highlight potential differences between codes, the dose enhancement ratios (DERs) were shown for the narrow-beam geometry used in the simulations, which leads to values significantly higher than unity over distances in the order of several tens of micrometers from the GNP surface. As it has come to our attention that the figures in our paper have given rise to misinterpretation as showing 'the' DERs of GNPs under diagnostic X-ray irradiation, this article presents estimates of the DERs that would have been obtained with realistic radiation field extensions and presence of secondary particle equilibrium (SPE). These DER values are much smaller than those for a narrow-beam irradiation shown in our paper, and significant dose enhancement is only found within a few hundred nanometers around the GNP. The approach used to obtain these estimates required the development of a methodology to identify and, where possible, correct results from simulations whose implementation deviated from the initial exercise definition. Based on this methodology, literature on Monte Carlo simulated DERs has been critically assessed.