Vagena E, Katsaras P, Theodorou K, Stoulos S
Laboratory of Atomic and Nuclear Physics, School of Physics, Aristotle University, Thessaloniki, Greece.
Schools of Medicine, University of Thessaly, Larisa, Greece.
Radiat Prot Dosimetry. 2018 Dec 1;182(4):472-479. doi: 10.1093/rpd/ncy104.
Mapping of the photoneutron spectrum and flux performed at several positions over the treatment table of a 15 MV medical linac. Neutron activation technique has been applied to obtain the neutron spectra in the mixed γ -n field. Thick foils have been used due to the low neutron flux and the measurements were unfolded using the MINUIT minimizer. GEANT4 code simulations have been performed to reproduce the photoneutrons' spectrum and estimate the flux along the treatment table. The mixed radiation field around medical linear accelerator was evaluated and the variation of the ambient dose equivalent over the treatment table was estimated. Photoneutrons' ambient dose equivalent inside the irradiation field estimated as 0.56 ± 0.05 while the peripheral as 0.42 ± 0.04 mSv Gy-1. The effective dose inside the irradiation field is ranged between 0.004 and 0.049 while the peripheral up to 0.035 mSv Gy-1.
在一台15兆伏医用直线加速器的治疗台上的多个位置进行了光中子能谱和通量的映射。已应用中子活化技术在混合γ-n场中获取中子能谱。由于中子通量较低,使用了厚箔片,并使用MINUIT最小化器对测量结果进行解谱。已进行GEANT4代码模拟以重现光中子能谱并估计沿治疗台的通量。对医用直线加速器周围的混合辐射场进行了评估,并估计了治疗台上环境剂量当量的变化。照射场内光中子的环境剂量当量估计为0.56±0.05,而周边为0.42±0.04毫希沃特每戈瑞。照射场内的有效剂量范围在0.004至0.049之间,而周边高达0.035毫希沃特每戈瑞。