Tuğrul Taylan, Eroğul Osman
Department of Radiation Oncology, Medicine Faculty of Van Yüzüncü Yıl University, Van, Turkey.
Department of Biomedical Engineering, TOBB University of Economics and Technology, Ankara, Turkey.
Rep Pract Oncol Radiother. 2019 Jul-Aug;24(4):331-337. doi: 10.1016/j.rpor.2019.05.002. Epub 2019 May 31.
In this study, we investigated initial electron parameters of Siemens Artiste Linac with 6 MV photon beam using the Monte Carlo method.
It is essential to define all the characteristics of initial electrons hitting the target, i.e. mean energy and full width of half maximum (FWHM) of the spatial distribution intensity, which is needed to run Monte Carlo simulations. The Monte Carlo is the most accurate method for simulation of radiotherapy treatments.
Linac head geometry was modeled using the BEAMnrc code. The phase space files were used as input file to DOSXYZnrc simulation to determine the dose distribution in a water phantom. We obtained percent depth dose curves and the lateral dose profile. All the results were obtained at 100 cm of SSD and for a 10 × 10 cm field.
We concluded that there existed a good conformity between Monte Carlo simulation and measurement data when we used electron mean energy of 6.3 MeV and 0.30 cm FWHM value as initial parameters. We observed that FWHM values had very little effect on PDD and we found that the electron mean energy and FWHM values affected the lateral dose profile. However, these effects are between tolerance values.
The initial parameters especially depend on components of a linac head. The phase space file which was obtained from Monte Carlo Simulation for a linac can be used as calculation of scattering, MLC leakage, to compare dose distribution on patients and in various studies.
在本研究中,我们使用蒙特卡罗方法研究了配备6兆伏光子束的西门子Artiste直线加速器的初始电子参数。
定义撞击靶标的初始电子的所有特性至关重要,即空间分布强度的平均能量和半高宽(FWHM),这是运行蒙特卡罗模拟所必需的。蒙特卡罗是模拟放射治疗最准确的方法。
使用BEAMnrc代码对直线加速器机头几何结构进行建模。相空间文件用作DOSXYZnrc模拟的输入文件,以确定水模体中的剂量分布。我们获得了百分深度剂量曲线和侧向剂量分布。所有结果均在源皮距100厘米和10×10厘米射野条件下获得。
我们得出结论,当我们使用6.3兆电子伏的电子平均能量和0.30厘米的半高宽值作为初始参数时,蒙特卡罗模拟与测量数据之间存在良好的一致性。我们观察到半高宽值对百分深度剂量影响很小,并且发现电子平均能量和半高宽值会影响侧向剂量分布。然而,这些影响在公差值范围内。
初始参数尤其取决于直线加速器机头的组件。从直线加速器的蒙特卡罗模拟获得的相空间文件可用于散射计算、多叶准直器泄漏计算,以比较患者身上的剂量分布以及在各种研究中的剂量分布。