土耳其Köşk Höyük化石牛牙釉质的结构特性和电子自旋共振(ESR)剂量估计。

IF 1.5 4区 环境科学与生态学 Q3 BIOLOGY Radiation and Environmental Biophysics Pub Date : 2023-08-01 DOI:10.1007/s00411-023-01036-1
Özgül Karataş, Refik Kayalı, Hatice Ünal Ercan
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引用次数: 0

摘要

在这项工作中,从土耳其Niğde-Köşk Höyük挖掘现场收集的两颗牛牙齿进行了表征和剂量学研究。每个牙齿样本采用机械和化学方法制备,以获得牙釉质组分。为此,通过x射线衍射(XRD)和扫描电子显微镜(SEM-EDX)结合能量色散x射线测量(SEM-EDX)研究了牙釉质的矿物学和元素浓度特性。结果发现,牙釉质结构中含有高度羟基磷灰石晶体,没有任何特征杂质。采用电子自旋共振(ESR)法测定牙釉质的剂量响应。采用自然辐射剂量法和人工辐射剂量法计算牙釉质样品的吸收辐射剂量分别为(26.05±0.15)Gy和(25.48±0.18)Gy。结论是,这些样品可以用来重建辐射剂量。这一结果可以被认为是未来对该发掘地点的其他化石牙齿进行ESR剂量测定/定年研究的先驱。
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Structural properties and electron spin resonance (ESR) dose estimations of fossil cow tooth enamel from Köşk Höyük, Turkey.

In this work, two cow teeth collected from the Niğde-Köşk Höyük excavation site in Turkey were studied for characterization and dosimetric purposes. Each tooth sample was prepared by applying mechanical and chemical methods to obtain the enamel fractions. To do this, mineralogical and elemental concentration properties of the tooth enamels were investigated by performing X-ray diffraction (XRD) and scanning electron microscopy coupled with energy-dispersive X-ray measurements (SEM-EDX). It was found that the enamel structures contained a highly hydroxyapatite crystalline without any characteristic impurities. The dose response of the tooth enamels was determined by using the electron spin resonance (ESR) method. Absorbed radiation doses were calculated as (26.05 ± 0.15) Gy and (25.48 ± 0.18) Gy by the additive dose method using both natural radiation doses and artificial irradiation doses of the enamel samples. It is concluded that these samples could be used to reconstruct radiation doses. This result can be considered as a precursor for future ESR dosimetry/dating studies of other fossil teeth at this excavation site.

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来源期刊
CiteScore
4.00
自引率
5.90%
发文量
53
审稿时长
>36 weeks
期刊介绍: This journal is devoted to fundamental and applied issues in radiation research and biophysics. The topics may include: Biophysics of ionizing radiation: radiation physics and chemistry, radiation dosimetry, radiobiology, radioecology, biophysical foundations of medical applications of radiation, and radiation protection. Biological effects of radiation: experimental or theoretical work on molecular or cellular effects; relevance of biological effects for risk assessment; biological effects of medical applications of radiation; relevance of radiation for biosphere and in space; modelling of ecosystems; modelling of transport processes of substances in biotic systems. Risk assessment: epidemiological studies of cancer and non-cancer effects; quantification of risk including exposures to radiation and confounding factors Contributions to these topics may include theoretical-mathematical and experimental material, as well as description of new techniques relevant for the study of these issues. They can range from complex radiobiological phenomena to issues in health physics and environmental protection.
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