首页> 外文期刊>Health Physics: Official Journal of the Health Physics Society >Developments in Biodosimetry Methods for Triage With a Focus on X-band Electron Paramagnetic Resonance In Vivo Fingernail Dosimetry
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Developments in Biodosimetry Methods for Triage With a Focus on X-band Electron Paramagnetic Resonance In Vivo Fingernail Dosimetry

机译:在体内指甲剂量测定中的X波段电子顺磁共振的分类生物渗透学方法的发展

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摘要

Instrumentation and application methodologies for rapidly and accurately estimating individual ionizing radiation dose are needed for on-site triage in a radiological/nuclear event. One such methodology is an in vivo X-band, electron paramagnetic resonance, physically based dosimetry method to directly measure the radiation-induced signal in fingernails. The primary components under development are key instrument features, such as resonators with unique geometries that allow for large sampling volumes but limit radiation-induced signal measurements to the nail plate, and methodological approaches for addressing interfering signals in the nail and for calibrating dose from radiation-induced signal measurements. One resonator development highlighted here is a surface resonator array designed to reduce signal detection losses due to the soft tissues underlying the nail plate. Several surface resonator array geometries, along with ergonomic features to stabilize fingernail placement, have been tested in tissue-equivalent nail models and in vivo nail measurements of healthy volunteers using simulated radiation-induced signals in their fingernails. These studies demonstrated radiation-induced signal detection sensitivities and quantitation limits approaching the clinically relevant range of 10 Gy. Studies of the capabilities of the current instrument suggest that a reduction in the variability in radiation-induced signal measurements can be obtained with refinements to the surface resonator array and ergonomic features of the human interface to the instrument. Additional studies are required before the quantitative limits of the assay can be determined for triage decisions in a field application of dosimetry. These include expanded in vivo nail studies and associated ex vivo nail studies to provide informed approaches to accommodate for a potential interfering native signal in the nails when calculating the radiation-induced signal from the nail plate spectral measurements and to provide a method for calibrating dose estimates from the radiation-induced signal measurements based on quantifying experiments in patients undergoing total-body irradiation or total-skin electron therapy.
机译:在放射学/核事件中,需要快速准确地估算个体电离辐射剂量的仪表和应用方法。一种这样的方法是体内X波段,电子顺磁共振,物理基础的剂量测定方法,直接测量指甲中的辐射诱导的信号。正在开发的主要组件是关键仪器特征,例如具有独特几何形状的谐振器,其允许大型采样量,但将辐射引起的信号测量限制到指甲板上,以及用于寻址钉中干扰信号的方法方法和用于校准辐射的剂量 - 引出的信号测量。这里突出显示的一个谐振器开发是一种表面谐振器阵列,其旨在降低由于钉板下面的软组织引起的信号检测损耗。几个表面谐振器阵列几何形状,以及符合人体工程学的特征,以稳定指甲放置,已经在组织等同的指甲模型中进行了测试,并且在其指甲中使用模拟辐射诱导的信号进行健康志愿者的体内指甲测量。这些研究证明了辐射诱导的信号检测灵敏度和定量限制接近临床相关的10 GY范围。目前仪器的能力的研究表明,可以通过改进的表面谐振器阵列和人工界面的人体工程学特征来获得辐射诱导信号测量的可变性的降低。在测定的定量限制可以确定在剂量测定法中的田间应用中的分类决定之前需要额外的研究。这些包括在体内指甲研究中扩展,并且相关联的离文指甲研究,以提供通知方法,以在从钉板光谱测量计算辐射诱导的信号时容纳钉子中的潜在的天然信号,并提供用于校准剂量估计的方法从辐射诱导的信号测量,基于定量实验在经历全身照射或全皮肤疗法的患者中。

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