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Feasibility study on energy-dependent neutron flux monitor using multi-core SOF detector

机译:使用多核SOF检测器的能量依赖型中子通量监测仪的可行性研究

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Boron Neutron Capture Therapy (BNCT) is a radiation cancer treatment that uses energy generated by the nuclear reaction between boron and neutrons to kill the tumor cells by accumulating boron compounds on the tumor cells and irradiating them with neutrons. In recent years, BNCT treatment using an accelerator has come to a feasible stage. Since BNCT treatment using an accelerator contains a large amount of epithermal neutron components, it is difficult to evaluate the amount of neutron irradiation using a gold activation method as in the past. Further, in the BNCT treatment, since the neutron dose is controlled by the durable dose of the skin irradiated with the neutron beam, it is desirable to be able to measure the dose per neutron energy component on the skin surface.We have developed a SOF detector (Scintillator with Optical Fiber Detector) for measuring thermal neutron flux in real time, and reported on the usefulness of real time measurement in clinic. The SOF detector uses nuclear reaction energy by neutron sensitizers, but the energy response differs depending on the nuclide of the neutron sensitizer. In this study, we developed a new neutron energy spectrometer that can simultaneously evaluate thermal neutrons, epithermal neutrons, and gamma dose by upgrading conventional SOF detector which is combining many scintillators containing different neutron sensitizers.
机译:硼中子俘获疗法(BNCT)是一种放射线癌症治疗方法,利用硼和中子之间的核反应产生的能量,通过在肿瘤细胞上积聚硼化合物并用中子辐照它们来杀死肿瘤细胞。近年来,使用促进剂的BNCT治疗已进入可行阶段。由于使用促进剂的BNCT处理中含有大量的超热中子成分,因此难以像以往那样通过金活化法来评价中子的照射量。此外,在BNCT治疗中,由于中子剂量受中子束照射皮肤的持久剂量控制,因此希望能够测量皮肤表面上每个中子能量成分的剂量。探测器(带有光纤探测器的闪烁器)用于实时测量热中子通量,并报告了实时测量在临床中的有用性。 SOF检测器利用中子敏化剂产生的核反应能量,但是能量响应因中子敏化剂的核素而异。在这项研究中,我们开发了一种新的中子能谱仪,可以通过升级常规SOF检测器来同时评估热中子,超热中子和伽马剂量,该SOF检测器结合了许多包含不同中子敏化剂的闪烁体。

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