材料科学
中子俘获
中子
蒙特卡罗方法
中子温度
中子通量
筛子(范畴论)
碳化硼
碳化硅
硼
通量
放射化学
核工程
中子发生器
中子源
中子截面
穿透深度
核物理学
分光计
渗透(战争)
滤波器(信号处理)
作者
Keiichiro Matsushita,Hideya Yamazaki,Hideo Matsubara
摘要
Abstract Recent Boron neutron capture therapy (BNCT) has shifted to accelerator-based systems. One of them is a compact neutron generator developed using silicon carbide (SiC) semiconductors by Fukushima SiC Applied Technology Co. However, neutron penetration remains a critical challenge for treating deep-seated tumors. This study investigated the potential of neutron sieve therapy, originally developed to enhance the depth dose distribution in X-ray therapy, to improve BNCT dose distribution via Monte Carlo simulations based on the Fukushima SiC BNCT system. Dose distribution changes were investigated using polyethylene and 6LiF-plastic in block and sieve shapes. The results show that the maximum thermal neutron fluence depth was shallower (deeper) with polyethylene (6LiF-plastic) filters. The sieve filter moderately altered the dose distribution compared to the block filter due to density differences. The maximum dose point shifted 8 mm deeper using a sieve filter composed of 6LiF-plastic and polyethylene, with a 5.5% increase at 20 mm depth in neutron fluence at the same skin dose.
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