Lee Pei-Yi, Liu Yuan-Hao, Jiang Shiang-Huei
Institute of Nuclear Engineering and Science, National Tsing Hua University, Hsinchu, Taiwan.
Nuclear Science and Technology Development Center, National Tsing Hua University, Hsinchu, Taiwan
Radiat Prot Dosimetry. 2014 Oct;161(1-4):403-9. doi: 10.1093/rpd/nct362. Epub 2014 Feb 2.
The (7)Li(p,xn)(7)Be nuclear reaction, based on the low-energy protons, could produce soft neutrons for accelerator-based boron neutron capture therapy (AB-BNCT). Based on the fact that the induced neutron field is relatively divergent, the relationship between the incident angle of proton beam and the neutron beam quality was evaluated in this study. To provide an intense epithermal neutron beam, a beam-shaping assembly (BSA) was designed. And a modified Snyder head phantom was used in the calculations for evaluating the dosimetric performance. From the calculated results, the intensity of epithermal neutrons increased with the increase in proton incident angle. Hence, either the irradiation time or the required proton current can be reduced. When the incident angle of 2.5-MeV proton beam is 120°, the required proton current is ∼13.3 mA for an irradiation time of half an hour.
基于低能质子的(7)锂(p,xn)(7)铍核反应可为基于加速器的硼中子俘获疗法(AB-BNCT)产生软中子。基于感应中子场相对发散这一事实,本研究评估了质子束入射角与中子束质量之间的关系。为了提供强超热中子束,设计了一个束流整形组件(BSA)。并且在计算中使用了改良的斯奈德头部体模来评估剂量学性能。从计算结果来看,超热中子强度随质子入射角的增加而增加。因此,可以减少照射时间或所需的质子电流。当2.5兆电子伏特质子束的入射角为120°时,照射半小时所需的质子电流约为13.3毫安。