Department of Physics, University of Osijek; Osijek, Croatia.
Radiol Oncol. 2010 Mar;44(1):62-6. doi: 10.2478/v10019-010-0003-2. Epub 2010 Mar 18.
Electron linear accelerators in medical radiotherapy have replaced cobalt and caesium sources of radiation. However, medical accelerators with photon energies over 10 MeV generate undesired fast neutron contamination in a therapeutic X-ray photon beam. Photons with energies above 10 MeV can interact with the atomic nucleus of a high-Z material, of which the target and the head of an accelerator consist, and lead to the neutron ejection.
Our neutron dosimeter, composed of the LR-115 track etch detector and boron foil BN-1 converter, was calibrated on thermal neutrons generated in the nuclear reactor of the Josef Stefan Institute (Slovenia), and applied to dosimetry of undesirable neutrons in photon radiotherapy by the linear accelerator 15 MV Siemens Mevatron. Having considered a high dependence of a cross-section between neutron and boron on neutron energy, and broad neutron spectrum in a photon beam, as well as outside the entrance door to maze of the Mevatron, we developed a method for determining the effective neutron detector response. A neutron dose rate in the photon beam was measured to be 1.96 Sv/h. Outside the Mevatron room the neutron dose rate was 0.62 μSv/h. PACS: 87.52. Ga; 87.53.St; 29.40.Wk.
医用放射治疗中的电子线性加速器已经取代了辐射钴和铯源。然而,光子能量超过 10 MeV 的医用加速器在治疗 X 射线光子束中会产生不想要的快中子污染。能量超过 10 MeV 的光子可以与高 Z 材料(靶材和加速器头由这种材料构成)的原子核相互作用,导致中子被逐出。
我们的中子剂量计由 LR-115 径迹蚀刻探测器和硼箔 BN-1 转换器组成,在斯洛文尼亚约瑟夫·斯特凡研究所的核反应堆中对热中子进行了校准,并应用于西门子 Mevatron 15 MV 线性加速器光子放射治疗中不想要的中子的剂量测定。考虑到中子与硼之间的截面与中子能量之间存在高度依赖性,以及光子束中的中子能谱较宽,并且在 Mevatron 迷宫的入口门外,我们开发了一种确定有效中子探测器响应的方法。在光子束中测量到的中子剂量率为 1.96 Sv/h。在 Mevatron 室外,中子剂量率为 0.62 μSv/h。
87.52.Ga;87.53.St;29.40.Wk。