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首页> 外文期刊>Applied radiation and isotopes: including data, instrumentation and methods for use in agriculture, industry and medicine >Estimation of organ dose equivalents from residents of radiation-contaminated buildings with Rando phantom measurements.
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Estimation of organ dose equivalents from residents of radiation-contaminated buildings with Rando phantom measurements.

机译:使用Rando体模测量估算受辐射污染的建筑物居民的器官剂量当量。

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摘要

Since August 1996, a dose reconstruction model has been conducted with thermoluminescent dosimeter (TLD)-embedded chains, belts and badges for external dose measurements on the residents in radiation-contaminated buildings. The TLD dosimeters, worn on the front of the torso, would not be adequate for dose measurement in cases when the radiation is anisotropic or the incident angles of radiation sources are not directed in the front-to-back direction. The shielding and attenuation by the body would result in the dose equivalent estimation being somewhat skewed. An organ dose estimation method with a Rando phantom under various exposure geometries is proposed. The conversion factors, obtained from the phantom study, may be applicable to organ dose estimations for residents in the contaminated buildings if the incident angles correspond to the phantom simulation results. There is a great demand for developing a mathematical model or Monte Carlo calculation to deal with complicated indoor layout geometry problems involving ionizing radiation. Further research should be directed toward conducting laboratory simulation by investigating the relationship between doses delivered from multiple radiation sources. It is also necessary to collaborate with experimental biological dosimetry, such as chromosome aberration analysis, fluorescence in situ hybridization (FISH) and retrospective ESR-dosimetry with teeth, applied to the residents, so that the organ dose equivalent estimations may be more reliable for radio-epidemiological studies.
机译:自1996年8月以来,已使用热辐射剂量计(TLD)嵌入的链,皮带和徽章进行剂量重建模型,以对受辐射污染的建筑物中的居民进行外部剂量测量。如果辐射是各向异性的或辐射源的入射角未指向前后方向,则戴在躯干前面的TLD剂量计将不足以进行剂量测量。人体的屏蔽和衰减将导致剂量当量估计有些偏斜。提出了在不同曝光几何条件下具有兰多幻影的器官剂量估计方法。如果入射角对应于幻像模拟结果,则从幻像研究中获得的转换因子可能适用于受污染建筑物中居民的器官剂量估计。对于开发数学模型或蒙特卡洛计算以解决涉及电离辐射的复杂室内布局几何问题的需求很大。应通过研究从多个辐射源输送的剂量之间的关系,对进行实验室模拟进行进一步的研究。还必须与实验性生物剂量学合作,例如将染色体畸变分析,荧光原位杂交(FISH)和带牙齿的回顾性ESR剂量学应用于居民,以使器官剂量当量估算对于放射线可能更加可靠-流行病学研究。

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