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Design for an accelerator-based orthogonal epithermal neutron beam for boron neutron capture therapy.

机译:基于加速器的正交超热中子束的设计,用于硼中子俘获治疗。

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This paper is concerned with the proposed Birmingham accelerator-based epithermal neutron beam for boron neutron capture therapy (BNCT). In particular, the option of producing a therapy beam at an orthogonal direction to the incoming protons is considered. Monte Carlo radiation transport simulations, both with and without a head phantom, have shown that an orthogonal beam geometry is not only acceptable but is indeed beneficial, in terms of a lower mean neutron energy and an enhanced therapeutic ratio for the same useful neutron fluence in the therapy beam. Typical treatment times for various beam options have been calculated, and range from 20 to 48 min with a 5 mA beam of 2.8 MeV protons, if the maximum photon-equivalent dose delivered to healthy tissue is to be 12.6 Gy Eq. The effects of proton beam diameter upon the therapy beam parameters have also been considered.
机译:本文与提出的基于伯明翰加速器的超热中子束用于硼中子俘获治疗(BNCT)有关。特别地,考虑了在与入射质子正交的方向上产生治疗束的选择。蒙特卡罗射线传输模拟,无论是否带有头部幻像,都表明正交束几何结构不仅可以接受,而且确实有益,因为较低的平均中子能量和对于相同的有用中子注量可以提高治疗率。治疗束。如果传递给健康组织的最大光子当量剂量为12.6 Gy Eq,则已计算出各种束选择的典型治疗时间,对于5 mA的2.8 MeV质子束,治疗时间为20至48分钟。还已经考虑了质子束直径对治疗束参数的影响。

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