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Overview of physical dosimetry methods for triage application integrated in the new European network RENEB

机译:在新的欧洲网络RENEB中集成的分类应用的物理剂量测定方法概述

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摘要

Purpose: In the EC-funded project RENEB (Realizing the European Network in Biodosimetry), physical methods applied to fortuitous dosimetric materials are used to complement biological dosimetry, to increase dose assessment capacity for large-scale radiation/nuclear accidents. This paper describes the work performed to implement Optically Stimulated Luminescence (OSL) and Electron Paramagnetic Resonance (EPR) dosimetry techniques.ududMaterials and methods: OSL is applied to electronic components and EPR to touch-screen glass from mobile phones. To implement these new approaches, several blind tests and inter-laboratory comparisons (ILC) were organized for each assay.ududResults: OSL systems have shown good performances. EPR systems also show good performance in controlled conditions, but ILC have also demonstrated that post-irradiation exposure to sunlight increases the complexity of the EPR signal analysis.ududConclusions: Physically-based dosimetry techniques present high capacity, new possibilities for accident dosimetry, especially in the case of large-scale events. Some of the techniques applied can be considered as operational (e.g. OSL on Surface Mounting Devices [SMD]) and provide a large increase of measurement capacity for existing networks. Other techniques and devices currently undergoing validation or development in Europe could lead to considerable increases in the capacity of the RENEB accident dosimetry network.
机译:目的:在欧盟委员会资助的RENEB(实现生物剂量学欧洲网络)项目中,将应用于偶然剂量学材料的物理方法用于补充生物剂量学,以提高对大规模辐射/核事故的剂量评估能力。本文介绍了为实现光激发发光(OSL)和电子顺磁共振(EPR)剂量测定技术而进行的工作。 ud ud材料和方法:OSL应用于电子组件,EPR应用于手机的触摸屏玻璃。为了实施这些新方法,针对每种测定组织了几次盲法测试和实验室间比较(ILC)。 ud ud结果:OSL系统表现出良好的性能。 EPR系统在受控条件下也表现出良好的性能,但是ILC还证明了照射后暴露在阳光下会增加EPR信号分析的复杂性。 ud ud结论:基于物理的剂量测定技术具有高容量,为事故剂量测定提供了新的可能性,尤其是在大型活动中。所应用的某些技术可以被认为是可操作的(例如,表面安装设备上的OSL [SMD]),并且可以大大提高现有网络的测量能力。欧洲目前正在验证或开发的其他技术和设备可能导致RENEB事故剂量测定网络的容量显着增加。

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