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Secondary neutron spectra from modern Varian Siemens and Elekta linacs with multileaf collimators

机译:现代瓦里安西门子和Elekta直线加速器与多叶准直器的二次中子光谱

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摘要

Neutrons are a by-product of high-energy x-ray radiation therapy (threshold for [γ,n] reactions in high-Z material ∼7 MeV). Neutron production varies depending on photon beam energy as well as on the manufacturer of the accelerator. Neutron production from modern linear accelerators (linacs) has not been extensively compared, particularly in terms of the differences in the strategies that various manufacturers have used to implement multileaf collimators (MLCs) into their linac designs. However, such information is necessary to determine neutron dose equivalents for different linacs and to calculate vault shielding requirements. The purpose of the current study, therefore, was to measure the neutron spectra from the most up-to-date linacs from three manufacturers: Varian 21EX operating at 15, 18, and 20 MV, Siemens ONCOR operating at 15 and 18 MV, and Elekta Precise operating at 15 and 18 MV. Neutron production was measured by means of gold foil activation in Bonner spheres. Based on the measurements, the authors determined neutron spectra and calculated the average energy, total neutron fluence, ambient dose equivalent, and neutron source strength. The shapes of the neutron spectra did not change significantly between accelerators or even as a function of treatment energy. However, the neutron fluence, and therefore the ambient dose equivalent, did vary, increasing with increasing treatment energy. For a given nominal treatment energy, these values were always highest for the Varian linac. The current study thus offers medical physicists extensive information about the neutron production of MLC-equipped linacs currently in operation and provides them information vital for accurate comparison and prediction of neutron dose equivalents and calculation of vault shielding requirements.
机译:中子是高能X射线放射疗法的副产品(在高Z材料中,[γ,n]反应的阈值约为7 MeV)。中子的产生取决于光子束能量以及加速器的制造商。现代线性加速器(直线加速器)产生的中子产量尚未得到广泛的比较,特别是在各种制造商用来在直线加速器设计中实现多叶准直器(MLC)的策略差异方面。但是,此类信息对于确定不同直线加速器的中子剂量当量并计算拱顶屏蔽要求是必需的。因此,本研究的目的是测量来自三个制造商的最新直线加速器的中子光谱:运行在15、18和20 MV的Varian 21EX,运行在15和18 MV的Siemens ONCOR,以及Elekta Precise在15和18 MV下运行。通过在邦纳球中的金箔活化来测量中子产生。基于这些测量,作者确定了中子谱,并计算了平均能量,总中子注量,等效环境剂量和中子源强度。中子光谱的形状在加速器之间甚至作为治疗能量的函数都没有显着变化。但是,中子注量以及环境剂量当量确实发生了变化,随着治疗能量的增加而增加。对于给定的标称治疗能量,瓦里安直线加速器的这些值始终最高。因此,当前的研究为医学物理学家提供了有关当前正在运行的配备MLC的直线加速器的中子产生的广泛信息,并为他们提供了准确比较和预测中子剂量当量以及计算保险库屏蔽要求至关重要的信息。

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