论文标题
组织材料特性对使用蒙特卡洛模拟确定的X射线图像,散射和患者剂量的影响
Effects of Tissue Material Properties on X-Ray Image, Scatter and Patient Dose Determined using Monte Carlo Simulations
论文作者
论文摘要
随着患者和员工X射线辐射意识的提高,已经采取了许多努力来开发准确的患者剂量估计方法。迄今为止,蒙特卡洛(MC)模拟被认为是黄金标准,以模拟X射线辐射与物质的相互作用。但是,仅研究了MC模拟结果对图像引导性介入程序的实验或临床设置的变化的敏感性仅受到研究。特别是,患者材料组成的影响很少。这主要是由于以下事实,这些方法通常在使用单个拟人化幻影的幻影研究中得到验证。因此,在这项研究中,我们研究了映射患者材料参数对MC X射线剂量模拟结果的影响。构建了计算幻影几何形状,并应用了三个不同的常用材料组成映射。我们使用MC Toolkit Geant4在介入设置中模拟X射线辐射,并比较剂量沉积,散射分布和结果X射线图像的差异。评估表明,有关直接辐照器官的不同材料组成映射的不同材料组成之间的差异。这些结果突出了对临床设置中MC模拟的材料组成映射标准化的必要性。
With increasing patient and staff X-ray radiation awareness, many efforts have been made to develop accurate patient dose estimation methods. To date, Monte Carlo (MC) simulations are considered golden standard to simulate the interaction of X-ray radiation with matter. However, sensitivity of MC simulation results to variations in the experimental or clinical setup of image guided interventional procedures are only limited studied. In particular, the impact of patient material compositions is poorly investigated. This is mainly due to the fact, that these methods are commonly validated in phantom studies utilizing a single anthropomorphic phantom. In this study, we therefore investigate the impact of patient material parameters mapping on the outcome of MC X-ray dose simulations. A computation phantom geometry is constructed and three different commonly used material composition mappings are applied. We used the MC toolkit Geant4 to simulate X-ray radiation in an interventional setup and compared the differences in dose deposition, scatter distributions and resulting X-ray images. The evaluation shows a discrepancy between different material composition mapping up to 20 % concerning directly irradiated organs. These results highlight the need for standardization of material composition mapping for MC simulations in a clinical setup.