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首页> 外文期刊>Radiation Research: Official Organ of the Radiation Research Society >Accelerator-Based Biological Irradiation Facility Simulating Neutron Exposure from an Improvised Nuclear Device
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Accelerator-Based Biological Irradiation Facility Simulating Neutron Exposure from an Improvised Nuclear Device

机译:基于加速器的生物辐射设施,模拟来自改进型核装置的中子暴露

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We describe here an accelerator-based neutron irradiation facility, intended to expose blood or small animals to neutron fields mimicking those from an improvised nuclear device at relevant distances from the epicenter. Neutrons are generated by a mixed proton/deuteron beam on a thick beryllium target, generating a broad spectrum of neutron energies that match those estimated for the Hiroshima bomb at 1.5 km from ground zero. This spectrum, dominated by neutron energies between 0.2 and 9 MeV, is significantly different from the standard reactor fission spectrum, as the initial bomb spectrum changes when the neutrons are transported through air. The neutron and gamma dose rates were measured using a custom tissue-equivalent gas ionization chamber and a compensated Geiger-Mueller dosimeter, respectively. Neutron spectra were evaluated by unfolding measurements using a proton-recoil proportional counter and a liquid scintillator detector. As an illustration of the potential use of this facility we present micronucleus yields in single divided, cytokinesis-blocked human peripheral lymphocytes up to 1.5 Gy demonstrating 3- to 5-fold enhancement over equivalent X-ray doses. This facility is currently in routine use, irradiating both mice and human blood samples for evaluation of neutron-specific biodosimetry assays. Future studies will focus on dose reconstruction in realistic mixed neutron/photon fields. (C) 2015 by Radiation Research Society
机译:我们在这里描述了一种基于加速器的中子辐照设备,该设备旨在将血液或小型动物暴露于中子场,这些中子场模仿的是距震中距相关距离的简易核装置的中子场。中子由质子/氘核混合射束在厚的铍靶上产生,产生的广谱中子能量与广岛炸弹在距地面零距离1.5公里处的估计能量相符。该光谱以0.2到9 MeV之间的中子能量为主,与标准反应堆裂变光谱有很大不同,因为当中子通过空气传输时,初始炸弹光谱会发生变化。分别使用定制的组织当量气体电离室和补偿的Geiger-Mueller剂量计测量中子和伽马剂量率。中子光谱通过使用质子反冲比例计数器和液体闪烁检测器的展开测量来评估。为了说明该设施的潜在用途,我们介绍了单分裂,胞质分裂受阻的人外周血淋巴细胞的微核产量,最高可达1.5 Gy,比同等X射线剂量提高了3到5倍。该设施目前正在常规使用,照射小鼠和人类血液样本以评估中子特异性生物剂量测定法。未来的研究将集中于现实中子/光子混合场的剂量重建。 (C)辐射研究学会2015年

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