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首页> 外文期刊>Radiation Research: Official Organ of the Radiation Research Society >Retrospective dosimetry after criticality accidents using low-frequency EPR: a study of whole human teeth irradiated in a mixed neutron and gamma-radiation field
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Retrospective dosimetry after criticality accidents using low-frequency EPR: a study of whole human teeth irradiated in a mixed neutron and gamma-radiation field

机译:低频EPR严重事故后的回顾剂量学:在混合中子和γ辐射场中辐照整个人类牙齿的研究

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摘要

In the context of accidental or intentional radiation exposures (nuclear terrorism), it is essential to separate rapidly those individuals with substantial exposures from those with exposures that do not constitute an immediate threat to health. Low-frequency electron paramagnetic resonance (EPR) spectroscopy provides the potential advantage of making accurate and sensitive measurements of absorbed radiation dose in teeth without removing the teeth from the potential victims. Up to now, most studies focused on the dose-response curves obtained for gamma radiation. In radiation accidents, however, the contribution of neutrons to the total radiation dose should not be neglected. To determine how neutrons contribute to the apparent dose estimated by EPR dosimetry, extracted whole human teeth were irradiated at the SILENE reactor in a mixed neutron and gamma-radiation field simulating criticality accidents. The teeth were irradiated in free air as well as in a paraffin head phantom. Lead screens were also used to eliminate to a large extent the contribution of the gamma radiation to the dose received by the teeth. The EPR signals, obtained with a low-frequency (1.2 GHz) spectrometer, were compared to dosimetry measurements at the same location. The contribution of neutrons to the EPR dosimetric signal was negligible in the range of 0 to 10 Gy and was rather small (neutron/gamma-ray sensitivity in the range 0.4.2) at higher doses. This indicates that the method essentially provides information on the dose received from they-ray component of the radiation. (C) 2003 by Radiation Research Society. [References: 21]
机译:在意外或有意的辐射暴露(核恐怖主义)的情况下,至关重要的是要迅速将那些有大量辐射的人与那些没有直接威胁健康的辐射者区分开。低频电子顺磁共振(EPR)光谱具有潜在的优势,可以对牙齿中吸收的辐射剂量进行准确而灵敏的测量,而无需将牙齿从潜在的受害者身上移开。到目前为止,大多数研究都集中在针对伽马射线获得的剂量反应曲线上。但是,在辐射事故中,中子对总辐射剂量的贡献不应忽略。为了确定中子如何通过EPR剂量测定法估算的表观剂量,在模拟临界性事故的中子和伽马辐射混合场中,将提取的整个人类牙齿照射到SILENE反应堆中。在自由空气以及石蜡头幻影中照射牙齿。铅屏蔽还用于在很大程度上消除伽玛射线对牙齿接收剂量的影响。将使用低频(1.2 GHz)光谱仪获得的EPR信号与同一位置的剂量测量进行比较。在0至10 Gy范围内,中子对EPR剂量信号的贡献可忽略不计,并且在较高剂量下,中子的贡献很小(中子/伽马射线敏感性在0.4.2范围内)。这表明该方法实质上提供了有关从它们的辐射射线成分接收的剂量的信息。 (C)2003年,辐射研究学会。 [参考:21]

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