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首页> 外文期刊>Medical Physics >What is the best proton energy for accelerator-based BNCT using the 7Li(p,n)7Be reaction?
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What is the best proton energy for accelerator-based BNCT using the 7Li(p,n)7Be reaction?

机译:使用7Li(p,n)7Be反应的基于加速器的BNCT的最佳质子能量是多少?

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摘要

With a growing interest in the use of accelerator-based epithermal neutron sources for BNCT programs, in particular those based upon the 7Li(p,n)7Be reaction, there is a need to address the question of "what is the best proton energy to use?" This paper considers this question by using radiation transport calculations to investigate a range of proton energies from 2.15 to 3.5 MeV and a range of moderator sizes. This study has moved away completely from the use of empty therapy beam parameters and instead defines the beam quality and optimizes the moderator design using widely accepted in-phantom treatment planning figures of merit. It is concluded that up to a proton energy of about 2.8 MeV there is no observed variation in the achievable therapy beam quality, but a price is paid in terms of treatment time for not choosing the upper limit of this range. For higher proton energies, the beam quality falls, but with no improvement in treatment time for optimum configurations.
机译:随着人们越来越关注在BNCT计划中使用基于加速器的超热中子源,特别是基于7Li(p,n)7Be反应的那些中子源,有必要解决以下问题:“什么是最好的质子能量?用?”本文通过使用辐射输运计算来研究质子能量范围从2.15到3.5 MeV以及一系列减速剂的大小来考虑这个问题。这项研究完全摆脱了使用空的治疗束参数,而是使用广泛接受的幻像治疗计划优值来定义束质量并优化主持人设计。结论是,直到约2.8 MeV的质子能量,在可达到的治疗束质量上均未观察到变化,但是由于没有选择该范围的上限而在治疗时间方面付出了代价。对于更高的质子能量,束质量会下降,但是对于最佳配置,治疗时间没有改善。

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