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The Dose from Secondary Neutrons during the Operation of Modern Medical Accelerators

机译:现代医用加速器运行过程中的二级中子剂量

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A review of the experiments performed to date and calculations on the study of doses from secondary neutrons during the operation of medical electron accelerators of various manufacturers is presented. The fundamental differences between the heads of the three largest manufacturers (Varian, Elekta, and Siemens) are given. This article contains data on flux densities and doses for different accelerator models and operating modes. The data analysis showed that the dose from secondary neutrons when irradiating patients on a linear medical accelerator with bremsstrahlung should be taken into account, since its contribution can reach 2.04% at a maximum energy of up to 24 MeV. The contribution to the absorbed dose of secondary neutron fluxes must be evaluated when planning radiation therapy; all other things being equal, it is also necessary to choose modes of operation with the lowest rated energy for treating patients.
机译:介绍了对各种制造商医疗电子加速器的次级中央的迄今为止研究的迄今为止和计算的实验的审查。 给出了三大制造商(Varian,Elekta和Siemens)的头部之间的根本差异。 本文包含有关不同加速器模型和操作模式的通量密度和剂量的数据。 数据分析表明,在用Bremsstrahlung在线性医疗加速器辐射患者时,来自二级中子的剂量,应考虑到Bremsstrahlung的最大能量最高24 MeV的贡献。 在规划放射疗法时,必须评估对吸收剂量的二级中子丝量量的贡献; 所有其他情况相同,还有必要选择具有最低额定能量的操作模式来治疗患者。

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