Suppr超能文献

使用商用玻璃进行意外伽马剂量测量。

Accidental gamma dose measurement using commercial glasses.

作者信息

Narayan Pradeep, Vaijapurkar S G, Senwar K R, Kumar D, Bhatnagar P K

机构信息

Defence Laboratory, Ratanada Palace, Jodhpur 342 011, India.

出版信息

Radiat Prot Dosimetry. 2008;130(3):319-24. doi: 10.1093/rpd/ncn051. Epub 2008 Feb 18.

Abstract

Commercial glasses have been investigated for their application in accidental gamma dose measurement using Thermoluminescent (TL) techniques. Some of the glasses have been found to be sensitive enough that they can be used as TL dating material in radiological accident situation for gamma dosimetry with lower detection limit 1 Gy (the dose significant for the onset of deterministic biological effects). The glasses behave linearly in the dose range 1-25 Gy with measurement uncertainty +/- 10%. The errors in accidental dose measurements using TL technique are estimated to be within +/- 25%. These glasses have shown TL fading in the range of 10-20% in 24 h after irradiation under room conditions; thereafter the fading becomes slower and reaches upto 50% in 15 d. TL fading of gamma-irradiated glasses follows exponential decay pattern, therefore dosimetry even after years is possible. These types of glasses can also be used as lethal dose indicator (3-4 Gy) using TL techniques, which can give valuable inputs to the medical professional for better management of radiation victims. The glasses are easy to use and do not require lengthy sample preparation before reading as in case of other building materials. TL measurement on glasses may give immediate estimation of the doses, which can help in medical triage of the radiation-exposed public.

摘要

已对商用玻璃在使用热释光(TL)技术进行意外伽马剂量测量中的应用展开研究。已发现其中一些玻璃灵敏度足够高,可在放射事故情况下用作热释光测年材料,用于伽马剂量测定,检测下限为1 Gy(对确定性生物效应的起始具有显著意义的剂量)。这些玻璃在1 - 25 Gy的剂量范围内表现出线性关系,测量不确定度为±10%。使用热释光技术进行意外剂量测量的误差估计在±25%以内。在室温条件下辐照后24小时内,这些玻璃的热释光衰退在10% - 20%范围内;此后衰退变得更慢,在15天内达到50%。伽马辐照玻璃的热释光衰退遵循指数衰减模式,因此即使多年后进行剂量测定也是可能的。这些类型的玻璃还可用作使用热释光技术的致死剂量指示器(3 - 4 Gy),可为医疗专业人员更好地管理辐射受害者提供有价值的信息。这些玻璃易于使用,与其他建筑材料不同,在读取前不需要冗长的样品制备。对玻璃进行热释光测量可立即估算剂量,这有助于对受辐射公众进行医疗分类。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验