Garty Guy, Xu Yanping, Elliston Carl, Marino Stephen A, Randers-Pehrson Gerhard, Brenner David J
a Radiological Research Accelerator Facility, Columbia University, Irvington, New York 10533; and.
b Center for Radiological Research, Columbia University, New York, New York 10032.
Radiat Res. 2017 Apr;187(4):465-475. doi: 10.1667/RR008CC.1. Epub 2017 Feb 17.
Validation of biodosimetry assays is normally performed with acute exposures to uniform external photon fields. Realistically, exposure to a radiological dispersal device or reactor leak will include exposure to low dose rates and likely exposure to ingested radionuclides. An improvised nuclear device will likely include a significant neutron component in addition to a mixture of high- and low-dose-rate photons and ingested radionuclides. We present here several novel irradiation systems developed at the Center for High Throughput Minimally Invasive Radiation Biodosimetry to provide more realistic exposures for testing of novel biodosimetric assays. These irradiators provide a wide range of dose rates (from Gy/s to Gy/week) as well as mixed neutron/photon fields mimicking an improvised nuclear device.
生物剂量测定法的验证通常是在急性暴露于均匀外部光子场的情况下进行的。实际情况中,接触放射性散布装置或反应堆泄漏会涉及低剂量率暴露,并且可能接触摄入的放射性核素。简易核装置除了含有高剂量率和低剂量率光子以及摄入的放射性核素混合物外,可能还包含大量中子成分。我们在此展示了高通量微创辐射生物剂量测定中心开发的几种新型辐照系统,以提供更符合实际的暴露情况来测试新型生物剂量测定法。这些辐照器可提供广泛的剂量率范围(从Gy/秒到Gy/周),以及模拟简易核装置的混合中子/光子场。