Ferrari P, Gualdrini G, Nava E, Burn K W
ENEA-Radiation Protection Institute, Bologna, Italy.
Radiat Prot Dosimetry. 2007;126(1-4):636-9. doi: 10.1093/rpd/ncm129. Epub 2007 Aug 17.
Boron neutron capture therapy (BNCT) is an experimental technique for the treatment of certain kinds of tumors. Research in BNCT is performed utilizing both thermal and epithermal neutron beams. Epithermal neutrons (0.4 eV-10 keV) penetrate more deeply into tissue and are thus used in non-superficial clinical applications such as the brain glioma. In the last few years, the fast reactor TAPIRO (ENEA-Casaccia Rome) has been employed as a neutron source for research into BNCT applications. Recently, an 'epithermal therapeutic column' has been designed and its construction has been completed. The Monte Carlo code MCNPX was employed to optimize the design of the column and to evaluate the dose profiles and the therapeutic parameters in the cranium of the anthropomorphic phantom ADAM. In the same context, some preliminary evaluations of the undesirable doses to the patient were performed with MCNPX. A hermaphrodite phantom derived from ADAM and EVA was employed to evaluate the energy deposition in some organs during a standard BNCT treatment. The total dose consists of the contributions from the primary neutron beam, the neutron interactions with boron and the neutron induced photons generated in the epithermal column structures and in the patient's tissues. The paper summarizes the computational procedure and provides a general dosimetric framework of the patient radiological protection aspects related to a BNCT treatment scenario at the TAPIRO reactor.
硼中子俘获疗法(BNCT)是一种用于治疗某些类型肿瘤的实验技术。BNCT研究使用热中子束和超热中子束进行。超热中子(0.4电子伏特 - 10千电子伏特)能更深入地穿透组织,因此用于诸如脑胶质瘤等非浅表性临床应用。在过去几年中,快中子反应堆TAPIRO(意大利国家新技术、能源和可持续经济发展署 - 罗马卡萨西亚)已被用作研究BNCT应用的中子源。最近,设计并完成了一个“超热治疗柱”的建造。使用蒙特卡罗代码MCNPX对该柱的设计进行优化,并评估在人体模型ADAM颅骨中的剂量分布和治疗参数。在相同背景下,使用MCNPX对患者的不良剂量进行了一些初步评估。使用源自ADAM和EVA的两性人模型来评估标准BNCT治疗期间某些器官中的能量沉积。总剂量由初级中子束、中子与硼的相互作用以及在超热柱结构和患者组织中产生的中子诱发光子的贡献组成。本文总结了计算过程,并提供了与TAPIRO反应堆的BNCT治疗方案相关的患者辐射防护方面的一般剂量学框架。