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Early clinical experience utilizing scintillator with optical fiber (SOF) detector in clinical boron neutron capture therapy: its issues and solutions

机译:闪烁体与光纤(SOF)检测器结合在硼中子俘获治疗中的早期临床经验:其问题和解决方案

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摘要

BackgroundReal-time measurement of thermal neutrons in the tumor region is essential for proper evaluation of the absorbed dose in boron neutron capture therapy (BNCT) treatment. The gold wire activation method has been routinely used to measure the neutron flux distribution in BNCT irradiation, but a real-time measurement using gold wire is not possible. To overcome this issue, the scintillator with optical fiber (SOF) detector has been developed. The purpose of this study is to demonstrate the feasibility of the SOF detector as a real-time thermal neutron monitor in clinical BNCT treatment and also to report issues in the use of SOF detectors in clinical practice and their solutions.Material and methodsClinical measurements using the SOF detector were carried out in 16 BNCT clinical trial patients from December 2002 until end of 2006 at the Japanese Atomic Energy Agency (JAEA) and Kyoto University Research Reactor Institute (KURRI).ResultsThe SOF detector worked effectively as a real-time thermal neutron monitor. The neutron fluence obtained by the gold wire activation method was found to differ from that obtained by the SOF detector. The neutron fluence obtained by the SOF detector was in better agreement with the expected fluence than with gold wire activation. The estimation error for the SOF detector was small in comparison to the gold wire measurement. In addition, real-time monitoring suggested that the neutron flux distribution and intensity at the region of interest (ROI) may vary due to the reactor condition, patient motion and dislocation of the SOF detector.ConclusionClinical measurements using the SOF detector to measure thermal neutron flux during BNCT confirmed that SOF detectors are effective as a real-time thermal neutron monitor. To minimize the estimation error due to the displacement of the SOF probe during treatment, a loop-type SOF probe was developed.
机译:背景技术实时测量肿瘤区域中的热中子对于正确评估硼中子俘获疗法(BNCT)治疗中的吸收剂量至关重要。金线活化方法已经常规地用于测量BNCT辐射中的中子通量分布,但是不可能使用金线进行实时测量。为了克服这个问题,已经开发了具有光纤的闪烁体(SOF)检测器。这项研究的目的是证明SOF检测器作为实时热中子监测器在临床BNCT治疗中的可行性,并报告在临床实践及其解决方案中使用SOF检测器的问题。从2002年12月至2006年底,在日本原子能机构(JAEA)和京都大学研究堆研究所(KURRI)对16名BNCT临床试验患者进行了SOF检测器。结果SOF检测器可以作为实时热中子监测器有效地工作。 。发现通过金线活化方法获得的中子通量与通过SOF检测器获得的中子通量不同。与金线活化相比,SOF检测器获得的中子注量与预期注量更好地吻合。与金线测量相比,SOF检测器的估计误差很小。此外,实时监测表明,感兴趣区域(ROI)的中子通量分布和强度可能会因反应堆条件,患者运动和SOF检测器的位置而异。结论使用SOF检测器测量热中子的临床测量BNCT期间的通量证实了SOF探测器可以用作实时热中子监测器。为了最大程度地减少由于SOF探针在治疗过程中的位移引起的估计误差,开发了一种环形SOF探针。

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