Evaluation of secondary neutron distribution around the synchrotron in an ion therapy centre.

IF 1.4 4区 环境科学与生态学 Q4 ENVIRONMENTAL SCIENCES
Liuyu Cui, Weihai Zhuo, Ning Li, Zhou Yuan, Xiaowa Wang, Bo Chen
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引用次数: 0

Abstract

Secondary neutrons produced in ion therapy facilities pose unwanted radiation risks to both patients and occupational operators. In this study, dual-channel neutron detectors based on CR-39 were employed to measure the intensity distribution of secondary fast and thermal neutrons around an ion therapy accelerator. The capability of the detectors to detect fast and thermal neutrons was validated through calculations. The detectors were placed at 44 different locations in the accelerator room. After continuous irradiation for 39 d, the neutron distribution map was obtained using inverse distance weighting interpolation algorithm based on the discrete measured results. The findings revealed distinct differences in the distribution patterns of fast and thermal neutrons. An analysis of the neutron distribution and main beam loss locations showed that the beam dump was the dominant source of secondary neutrons. Additionally, a comparison with the results of prior research indicated a strong correlation between thermal neutron distribution and induced radioactivity production. This study highlights the importance of considering the distinct characteristics of fast and thermal neutrons in shielding design and offers practical insights for the safe operation of ion therapy facilities.

离子治疗中心同步加速器周围二次中子分布的评价。
离子治疗设施产生的次级中子对病人和职业操作人员都有不必要的辐射风险。本研究采用基于CR-39的双通道中子探测器测量了离子治疗加速器周围二次快中子和热中子的强度分布。通过计算验证了探测器探测快中子和热中子的能力。探测器被放置在加速器室的44个不同位置。连续照射39 d后,根据离散测量结果,采用逆距离加权插值算法得到中子分布图。这些发现揭示了快中子和热中子分布模式的明显差异。对中子分布和主束流损失位置的分析表明,束流转储是二次中子的主要来源。此外,与先前研究结果的比较表明,热中子分布与诱导放射性产生之间存在很强的相关性。这项研究强调了在屏蔽设计中考虑快中子和热中子的不同特性的重要性,并为离子治疗设施的安全运行提供了实际的见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of Radiological Protection
Journal of Radiological Protection 环境科学-公共卫生、环境卫生与职业卫生
CiteScore
2.60
自引率
26.70%
发文量
137
审稿时长
18-36 weeks
期刊介绍: Journal of Radiological Protection publishes articles on all aspects of radiological protection, including non-ionising as well as ionising radiations. Fields of interest range from research, development and theory to operational matters, education and training. The very wide spectrum of its topics includes: dosimetry, instrument development, specialized measuring techniques, epidemiology, biological effects (in vivo and in vitro) and risk and environmental impact assessments. The journal encourages publication of data and code as well as results.
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