Suliman Ibrahim I, Khouqeer Ghada A, Mayhoub Fareed H
Department of Physics, College of Science, Imam Mohammad Ibn Saud Islamic University (IMSIU), Riyadh 11642, Saudi Arabia.
Biomedical Physics Department, King Faisal Specialist Hospital & Research Center, Riyadh 11564, Saudi Arabia.
Toxics. 2023 Jan 14;11(1):78. doi: 10.3390/toxics11010078.
Herein, we evaluated the neutron and gamma capture dose equivalent rates at the maze entrance of Varian TrueBeam and Elekta Versa HD™ medical linear accelerators (linacs) using experimental measurements as well as empirical calculations. Dose rates were measured using calibrated neutron and gamma area survey meters placed side-by-side at the measurement point of interest. Measurements were performed at a source-to-detector distance of 100 cm, with a 10 × 10 cm field size therapeutic X-ray beam, and a 30 × 30 × 15 cm solid water patient equivalent phantom, with a linac operating at 15, 10 MV, and 10 MV flattened filter-free (FFF). Dose rates were also measured at different points at the centerline along the maze towards the maze entrance. The measured dose equivalent rates at the maze entrance were comparable to those reported in the literature. The dose rates along the maze decreased exponentially towards the maze entrance and were significant for short maze lengths. The evaluated empirical methods for estimating neutron dose rates at the maze entrance of a linac proposed by Kersey, the modified Kersey method and Falcão method, agree by a factor of two from the experimental measurements. The results revealed vital radiation protection considerations owing to neutron contamination in external beam therapy.
在此,我们使用实验测量以及经验计算评估了瓦里安TrueBeam和医科达Versa HD™医用直线加速器(直线加速器)迷宫入口处的中子和γ俘获剂量当量率。剂量率使用校准后的中子和γ区域测量仪并排放置在感兴趣的测量点进行测量。测量在源到探测器距离为100 cm、射野尺寸为10×10 cm的治疗性X射线束以及30×30×15 cm固体水等效人体模体的条件下进行,直线加速器分别以15 MV、10 MV和10 MV无均整滤过器(FFF)模式运行。剂量率还在沿着迷宫朝向迷宫入口的中心线的不同点进行测量。在迷宫入口处测得的剂量当量率与文献报道的相当。沿着迷宫的剂量率朝着迷宫入口呈指数下降,并且对于短迷宫长度而言是显著的。由Kersey提出的、改进的Kersey方法和Falcão方法对直线加速器迷宫入口处中子剂量率的评估经验方法,与实验测量结果相差两倍。结果揭示了由于外照射治疗中的中子污染而产生的重要辐射防护考量。