Ghasemi-Jangjoo Amir, Ghiasi Hosein
Medical Radiation Sciences Research Team, Imam Hospital, Tabriz University of Medical Sciences, Imam Hospital, Tabriz, Iran.
Department of Radiology and Radiotherapy, Medicine School, Tabriz University of Medical Sciences, Imam Hospital, Tabriz, Iran.
Rep Pract Oncol Radiother. 2020 Mar-Apr;25(2):233-240. doi: 10.1016/j.rpor.2020.01.006. Epub 2020 Jan 24.
The aim of this study was to characterize the radiation contamination inside and outside the megavoltage radiotherapy room.
Radiation contamination components in the 18 MV linac room are the secondary neutron, prompt gamma ray, electron and linac leakage radiation.
An 18 MV linac modeled in a typical bunker employing the MCNPX code of Monte Carlo. For fast calculation, phase-space distribution (PSD) file modeling was applied and the calculations were conducted for the radiation contamination components dose and spectra at 6 locations inside and outside the bunker.
The results showed that the difference of measured and calculated percent depth-dose (PDD) and photo beam-profile (PBP) datasets were lower than acceptable values. At isocenter, the obtained photon dose and neutron fluence were 2.4 × 10 Gy/initial e° and 2.22 × 10 n°/cm, respectively. Then, neutron apparent source strength (Q) value was found as 1.34 × 10 n°/Gy X at isocenter and the model verified to photon and neutron calculations. A surface at 2 cm below the flattening filter was modeled as phase-space (PS) file for PDD and PBP calculations. Then by use of a spherical cell in the center of the linac target as a PS surface, contaminant radiations dose, fluence and spectra were estimated at 6 locations in a considerably short time, using the registered history of all particles and photons in the 13GB PSD file as primary source in the second step.
Designing the PSD file in MC modeling helps user to solve the problems with complex geometry and physics precisely in a shorter run-time.
本研究的目的是描述兆伏级放射治疗室内部和外部的辐射污染情况。
18兆伏直线加速器机房中的辐射污染成分包括次级中子、瞬发伽马射线、电子和直线加速器泄漏辐射。
在一个典型的掩体中使用蒙特卡罗MCNPX代码对一台18兆伏直线加速器进行建模。为了进行快速计算,应用了相空间分布(PSD)文件建模,并对掩体内部和外部6个位置的辐射污染成分剂量和能谱进行了计算。
结果表明,测量和计算的百分深度剂量(PDD)和射野剂量分布(PBP)数据集的差异低于可接受值。在等中心处,获得的光子剂量和中子注量分别为2.4×10 Gy/初始电子和2.22×10 中子/cm。然后,在等中心处发现中子表观源强(Q)值为1.34×10 中子/Gy X,并且该模型在光子和中子计算方面得到了验证。将均整滤过器下方2厘米处的一个表面建模为用于PDD和PBP计算的相空间(PS)文件。然后,通过将直线加速器靶中心的一个球形单元用作PS表面,利用13GB PSD文件中所有粒子和光子的记录历史作为第二步的主要源,在相当短的时间内估计了6个位置的污染辐射剂量、注量和能谱。
在蒙特卡罗建模中设计PSD文件有助于用户在更短的运行时间内精确解决复杂几何和物理问题。