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首页> 外文期刊>Applied radiation and isotopes: including data, instrumentation and methods for use in agriculture, industry and medicine >The irradiation system and dose estimation joint-system for NCT wider application in Kyoto University.
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The irradiation system and dose estimation joint-system for NCT wider application in Kyoto University.

机译:NCT的辐照系统和剂量估算联合系统在京都大学得到了更广泛的应用。

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The research for neutron capture therapy (NCT) at the Kyoto University Research Reactor (KUR) has been remarkably developing after December 2001. However, the most important subject is the preparations for the KUR provisional shutdown coming in March 2006. In this paper, our present concept and plan are reported about the novel irradiation system and dose estimation system for wider applications of NCT. For the irradiation field, the target nuclear reaction was selected to (7)Li(p,n)(7)Be and the neutron moderator was selected to heavy water. The minimum proton current was about 13mA for epi-thermal neutron irradiation, and about 9mA for mix-neutron irradiation. In thermal neutron irradiation, the proton current needed more than 18mA for 2.5-MeV protons, but only 4mA for 5.0-MeV protons. For the dose estimation system, we are aiming at the completion of the "dose estimation joint-system". The data from the on-line measurement systems such as beam monitors and gamma-ray telescopes are fed back to the results for the in-body dose estimation, and then the dose estimations for irradiation field and a living body are jointed. For the beam-monitor system, multi-chamber method was adopted. The surveys were performed for the wall materials and chamber gases.
机译:京都大学研究堆(KUR)对中子俘获疗法(NCT)的研究在2001年12月之后得到了显着发展。但是,最重要的主题是2006年3月即将进行的KUR临时停工的准备工作。报告了有关新型照射系统和剂量估算系统的广泛应用的最新概念和计划。对于辐射场,目标核反应选择为(7)Li(p,n)(7)Be,中子减速剂选择为重水。超热中子辐照的最小质子电流约为13mA,混合中子辐照的最小质子电流约为9mA。在热中子辐照中,对于2.5 MeV质子,质子电流需要大于18mA,而对于5.0 MeV质子,质子电流仅需要4mA。对于剂量估算系统,我们的目标是完成“剂量估算联合系统”。来自在线测量系统(例如光束监视器和伽马射线望远镜)的数据被反馈到体内剂量估计的结果,然后将辐照场和活体的剂量估计结合起来。对于光束监视系统,采用了多腔室方法。对壁材料和室内气体进行了调查。

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