MCNP模拟肝癌治疗中BNC治疗的剂量分布

D. Krstić, Z. Jovanović, V. Markovic, D. Nikezic, V. Urošević
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引用次数: 8

摘要

硼中子俘获疗法(BNCT)是基于与周围正常组织相比,肿瘤组织中硼的选择性摄取。将硼注入化合物后,再用中子照射。10B上的中子捕获会产生α粒子和反作用的7Li离子,从而使治疗剂量能够传递到肿瘤组织,而健康组织可以幸免。在这里,研究了BNCT的治疗能力,以研究热中子束和超热中子束治疗肝癌的可能性。使用MCNP软件进行中子输运,并评估ORNL幻象中感兴趣器官的剂量。用体素填充幻体器官,以获得其中的深度-剂量分布。结果表明,利用超热中子束的BNCT可用于肝癌的治疗。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
MCNP simulation of the dose distribution in liver cancer treatment for BNC therapy
The Boron Neutron Capture Therapy (BNCT) is based on selective uptake of boron in tumour tissue compared to the surrounding normal tissue. Infusion of compounds with boron is followed by irradiation with neutrons. Neutron capture on 10B, which gives rise to an alpha particle and recoiled 7Li ion, enables the therapeutic dose to be delivered to tumour tissue while healthy tissue can be spared. Here, therapeutic abilities of BNCT were studied for possible treatment of liver cancer using thermal and epithermal neutron beam. For neutron transport MCNP software was used and doses in organs of interest in ORNL phantom were evaluated. Phantom organs were filled with voxels in order to obtain depth-dose distributions in them. The result suggests that BNCT using an epithermal neutron beam could be applied for liver cancer treatment.
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来源期刊
Central European Journal of Physics
Central European Journal of Physics 物理-物理:综合
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3.3 months
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