Ibitoye Zaccheaus Ayo, Adedokun Margret Bose, Orotoye Temitope Aminat, Udo Godwin Bassey
Department of Radiation Biology and Radiotherapy, College of Medicine, University of Lagos, Idi-Araba, Lagos, Nigeria.
Department of Physics, University of Lagos, Akoka, Lagos, Nigeria.
J Med Phys. 2022 Jan-Mar;47(1):27-33. doi: 10.4103/jmp.jmp_76_21. Epub 2022 Mar 31.
This study aimed to evaluate the shielding integrity of a typical radiotherapy facility using the Monte Carlo (MC) method.
EGSnrc MC code was used to design a radiotherapy bunker with appropriate materials and thicknesses. A concrete density of 2.36 g/cm was used as a shielding material for primary and secondary barriers. The lead slab was used in the entrance door. The complex geometries of the bunker were modeled by using the egs++ application code embedded in the software. Phase-space generated from a linac machine built with BEAMnrc codes was used as a source of 18 MV X-ray beam set at 100 cm source-surface distance with a field size of 40 cm × 40 cm. Energy deposited in each geometrical region was evaluated and analyzed.
Energy deposited at the entrance door, supervised and controlled areas were found to be approximately 0%. No significant difference in the energy deposition on the geometries was observed when the gantry angles were set at either 90° or 270° ( = 1).
The findings in this study revealed that the EGSnrc MC code can be used as a veritable tool in the design and evaluation of structural shielding efficiency in a radiotherapy facility.
本研究旨在使用蒙特卡罗(MC)方法评估典型放疗设施的屏蔽完整性。
使用EGSnrc MC代码设计具有适当材料和厚度的放疗掩体。使用密度为2.36 g/cm的混凝土作为初级和次级防护屏障的屏蔽材料。入口门使用铅板。掩体的复杂几何形状通过使用软件中嵌入的egs++应用代码进行建模。由BEAMnrc代码构建的直线加速器产生的相空间用作18 MV X射线束的源,源表面距离设置为100 cm,射野尺寸为40 cm×40 cm。评估并分析了每个几何区域沉积的能量。
发现在入口门、监督和控制区域沉积的能量约为0%。当机架角度设置为90°或270°时(P = 1),在几何形状上的能量沉积没有显著差异。
本研究结果表明,EGSnrc MC代码可作为放疗设施结构屏蔽效率设计和评估的可靠工具。