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首页> 外文期刊>Health Physics: Official Journal of the Health Physics Society >Dosimetry based on EPR spectral analysis of fingernail clippings.
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Dosimetry based on EPR spectral analysis of fingernail clippings.

机译:基于EPR谱分析剂量测定法指甲剪。

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摘要

Exposure of fingernails and toenails to ionizing radiation creates radicals that are stable over a relatively long period (days to weeks) and characterized by an isotropic EPR signal at g = 2.003 (so-called radiation-induced signal, RIS). This signal in readily obtained fingernail parings has the potential to be used in screening a population for exposure to radiation and determining individual dose to guide medical treatment. However, the mechanical harvesting of fingernail parings also creates radicals, and their EPR signals (so-called mechanically-induced signals, MIS) overlap the g approximately 2.0 region, interfering with efforts to quantify the RIS and, therefore, the radiation dose. Careful analysis of the time evolution and power-dependence of the EPR spectra of freshly cut fingernail parings has now resolved the MIS into three major components, including one that is described for the first time. It dominates the MIS soon after cutting, but decays within the first hour and consists of a unique doublet that can be resolved from the RIS. The MIS obtained within the first few minutes after cutting is consistent among fingernail samples and provides an opportunity to achieve the two important dosimetry objectives. First, perturbation of the initial MIS by the presence of RIS in fingernails that have received a threshold dose of radiation leads to spectral signatures that can be used for rapid screening. Second, decomposition of the EPR spectra from irradiated fingernails into MIS and RIS components can be used to isolate and thus quantify the RIS for determining individual exposure dose.
机译:接触电离的手指甲和脚趾甲稳定在一个辐射产生自由基相对较长时间(数天甚至数周的时间)和特点是一个各向同性EPR信号在g =2.003(所谓的辐射诱导信号,RIS)。这个信号容易获得指甲适合于有潜力用于筛选暴露于辐射和人口确定个人剂量指导医疗治疗。指甲也适合于产生自由基电子顺磁共振信号(所谓mechanically-induced信号,MIS)重叠g大约2.0地区,干扰量化的努力因此,RIS和辐射剂量。的时间演化和分析power-dependence EPR谱的新鲜剪指甲适合现在已经解决了管理信息系统分为三个主要部分,包括一个首次描述。MIS切割后不久,但在衰减第一个小时,由一个独特的紧身上衣RIS的可以解决。在切割后的最初几分钟在指甲样品并提供一致实现两个重要的机会剂量测定法的目标。最初的MIS的RIS的指甲收到一个阈剂量的辐射导致的光谱特征,可用于快速筛选。从辐照指甲MIS和光谱RIS组件可以用来隔离,因此量化的RIS决定个体照射剂量。

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