首页> 外文会议>Nuclear Science Symposium and Medical Imaging Conference (NSS/MIC), 2011 IEEE >Development of thermal neutron flux monitor using small scintillator array coupled with quartz fibers for Boron Neutron Capture Therapy
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Development of thermal neutron flux monitor using small scintillator array coupled with quartz fibers for Boron Neutron Capture Therapy

机译:利用小型闪烁体阵列和石英纤维结合硼中子俘获疗法开发热中子通量监测仪

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At Kyoto University Research Reactor Institute, over three hundred clinical trials of Boron Neutron Capture Therapy (BNCT) have been performed using research reactor. On the other hand, we have developed cyclotron based epithermal neutron source. To improve the quality of treatment, it is necessary to perform the detection of two dimensional thermal neutron distribution before treatment as quality control. Generally, the method of activation using gold foil/wire and germanium semiconductor detector is applied to detection of thermal neutron flux at several positions. However, the activation method using semiconductor detector takes some time to decide the thermal neutron flux. Therefore, we propose the method using small scintillator arrays coupled with quartz fibers for easy detection of two dimensional thermal neutron distribution with low radiation damage. To reduce the number of electric circuit and scintillators, we proposed the scanning method using one dimensional scintillation array. To evaluate this method, the irradiation test was performed using Kyoto University Research Reactor(KUR). Two dimensional thermal neutron distribution was easily obtained with the spatial resolution of 5mm.
机译:在京都大学研究堆研究所,已经使用研究堆进行了硼中子俘获疗法(BNCT)的三百多次临床试验。另一方面,我们开发了基于回旋加速器的超热中子源。为了提高治疗质量,有必要在治疗之前进行二维热中子分布的检测作为质量控制。通常,使用金箔/金属丝和锗半导体检测器的激活方法被应用于检测多个位置的热中子通量。但是,使用半导体探测器的激活方法需要花费一些时间来确定热中子通量。因此,我们提出了一种使用小型闪烁体阵列和石英纤维的方法,以易于检测具有低辐射损伤的二维热中子分布。为了减少电路和闪烁器的数量,我们提出了使用一维闪烁阵列的扫描方法。为了评估此方法,使用京都大学研究堆(KUR)进行了辐射测试。二维热中子分布很容易获得,其空间分辨率为5mm。

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