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Development and characteristics of the HANARO neutron irradiation facility for applications in the boron neutron capture therapy field

机译:用于硼中子俘获治疗领域的HANARO中子辐照设备的开发和特性

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The HANARO neutron irradiation facility for various applications in the boron neutron capture therapy (BNCT) field was developed, and its characteristics were investigated. In order to obtain the sufficient thermal neutron flux with a low level of contamination by fast neutrons and gamma rays, a radiation filtering method was adopted. The radiation filter was designed by using a silicon single crystal, cooled by liquid nitrogen, and a bismuth crystal. The installation of the main components of the irradiation facility and the irradiation room was finished. Neutron beam characteristics were measured by using bare and cadmium-covered gold foils and wires. The in-phantom neutron flux distribution was measured for flux mapping inside the phantom. The gamma-ray dose was determined by using TLD-700 thermoluminescence dosimeters. The thermal and fast neutron fluxes and the gamma-ray dose were calculated by using the MCNP code, and they were compared with experimental data. The thermal neutron flux and Cd ratio available at this facility were confirmed to be 1.49 × 109 n cm?2 s?1 and 152, respectively. The maximum neutron flux inside the phantom was measured to be 2.79 × 109 n cm?2 s?1 at a depth of 3 mm in the phantom. The two-dimensional in-phantom neutron flux distribution was determined, and significant neutron irradiation was observed within 20 mm from the phantom surface. The gamma-ray dose rate for the free beam condition was expected to be about 80 cGy h-1. These experimental results were reasonably well supported by calculation using the facility design code. This HANARO thermal neutron facility can be used not only for clinical trials, but also for various pre-clinical studies in the BNCT field.
机译:开发了在硼中子俘获治疗(BNCT)领域中各种应用的HANARO中子辐照设备,并研究了其特性。为了获得足够的热中子通量,同时又不会受到快速中子和伽马射线的污染,因此采用了辐射过滤方法。辐射滤光片是使用液氮冷却的硅单晶和铋晶体设计的。辐照设备和辐照室主要部件的安装完成。中子束特性是通过使用裸露的和覆盖镉的金箔和金属丝测量的。测量幻像中的中子通量分布以用于幻像内部的通量映射。通过使用TLD-700热发光剂量计确定伽马射线剂量。使用MCNP代码计算热中子通量和快速中子通量以及伽马射线剂量,并将其与实验数据进行比较。在该设备上可得到的热中子通量和Cd比分别为1.49×109 n cm?2 s?1和152。测得的幻影内部最大中子通量为2.79×109 n cm?2 s?1,位于幻影中3 mm处。确定了二维幻像中子通量分布,并在距幻像表面20 mm处观察到了明显的中子辐照。在自由光束条件下的伽马射线剂量率预计约为80 cGy h-1。通过使用设施设计规范进行计算,这些实验结果得到了合理的支持。这个HANARO热中子设施不仅可以用于临床试验,还可以用于BNCT领域的各种临床前研究。

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