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A novel BNCT irradiation system with an on-line monitor using ~7Li(P,N)7Be near threshold neutrons (Conference Paper)

机译:带有在线监测器的新型BNCT辐照系统,使用接近阈值中子的〜7Li(P,N)7Be(会议论文)

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摘要

A neutron irradiation system for boron neutron capture therapy using accelerators with an online dose monitoring system was studied for the possible practical implementation of hospital-based BNCT. For this purpose the neutrons produced by the near threshold ~7Li(p,n)~7Be reaction, i.e. an incident proton energy of around 1.90 MeV, have suitable properties. Such as the maximum energy below 100 keV and mostly forward-directed. A good candidate material to shield gamma rays from the Li-target was Lead and the suitable boron-dose enhancer was polyethylene. The optimum physical dimensions and configuration of the irradiation system was determined using the concept of treatbale protocol depth as figures of merit. For the online monitor system, the single photon emission computed tomography using prompt gamma-ray was studied to provide an ideal dose estimation system. A neutron producing target system with a liquid lithium jet flow of about 30 m/s at a thickness of 1 mm and a cross-sectional area of 50 mm × 50 mm is proposed.
机译:研究了使用带有在线剂量监测系统的加速器的硼中子捕获疗法的中子辐照系统,以实现基于医院的BNCT的可能实际实施。为此目的,由接近阈值〜7Li(p,n)〜7Be反应产生的中子,即约1.90 MeV的入射质子能量,具有合适的特性。例如最大能量低于100 keV,且大多为正向。铅可以很好地屏蔽伽玛射线,而合适的硼剂量增强剂是聚乙烯。辐照系统的最佳物理尺寸和配置是根据处理规程深度的概念确定的,作为品质因数。对于在线监测系统,研究了使用及时伽马射线的单光子发射计算机断层扫描技术,以提供理想的剂量估算系统。提出了一种中子产生靶系统,该系统具有约30m / s的液态锂射流,厚度为1mm,横截面积为50mm×50mm。

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