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使用基于反应堆的超热中子束进行硼中子俘获治疗的剂量监测。

Dose monitoring for boron neutron capture therapy using a reactor-based epithermal neutron beam.

作者信息

Raaijmakers C P, Nottelman E L, Konijnenberg M W, Mijnheer B J

机构信息

The Netherlands Cancer Institute-Antoni van Leeuwenhoek Huis, Amsterdam, The Netherlands.

出版信息

Phys Med Biol. 1996 Dec;41(12):2789-97. doi: 10.1088/0031-9155/41/12/015.

Abstract

The aims of this study were (i) to determine the variation with time of the relevant beam parameters of a clinical reactor-based epithermal neutron beam for boron neutron capture therapy (BNCT) and (ii) to test a monitoring system for its applicability to monitor the dose delivered to the dose specification point in a patient treated with BNCT. For this purpose two fission chambers covered with Cd and two GM counters were positioned in the beam-shaping collimator assembly of the epithermal neutron beam. The monitor count rates were compared with in-phanton reference measurements of the thermal neutron fluence rate, the gamma-ray dose rate and the fast neutron dose rate, at a constant reactor power, over a period of 2 years. Differences in beam output, defined as the thermal neutron fluence rate at 2 cm depth in a phantom, of up to 15% were observed between various reactor cycles. A decrease in beam output of about 5% was observed in each reactor cycle. An unacceptable decrease of 50% in beam output due to malfunctioning of the beam filter assembly was detected. For safe and accurate treatment of patients, on-line monitoring of the beam is essential. Using the calibrated monitor system, the standard uncertainty in the total dose at depth due to variations with time of the beam output parameters has been reduced to a clinically acceptable value of 1% (one standard deviation).

摘要

本研究的目的是

(i)确定用于硼中子俘获疗法(BNCT)的基于临床反应堆的超热中子束的相关束参数随时间的变化;(ii)测试一种监测系统,以检验其在监测接受BNCT治疗的患者中剂量指定点所接受剂量方面的适用性。为此,在超热中子束的束流整形准直器组件中放置了两个覆盖镉的裂变室和两个盖革计数器。在两年的时间里,在反应堆功率恒定的情况下,将监测计数率与热中子注量率、γ射线剂量率和快中子剂量率的模体参考测量值进行了比较。在不同的反应堆周期之间,观察到束流输出(定义为模体中2 cm深度处的热中子注量率)的差异高达15%。在每个反应堆周期中,观察到束流输出下降约5%。检测到由于束流过滤器组件故障导致束流输出出现50%的不可接受下降。为了安全、准确地治疗患者,对束流进行在线监测至关重要。使用经过校准的监测系统,由于束流输出参数随时间变化而导致的深度处总剂量的标准不确定度已降低到临床可接受的1%(一个标准偏差)值。

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