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古代和当代日本骨骼中痕量金属的变化

Variation of trace metals in ancient and contemporary Japanese bones.

作者信息

Hisanaga A, Hirata M, Tanaka A, Ishinishi N, Eguchi Y

机构信息

Department of Hygiene, Faculty of Medicine, Kyushu University, Fukuoka, Japan.

出版信息

Biol Trace Elem Res. 1989 Dec;22(3):221-31. doi: 10.1007/BF02916610.

Abstract

Excavated and contemporary bones (rib cortexes) of a mature age (40-60 yr) were analyzed by atomic absorption spectrometry for the concentration of seven elements, including Ca, Cd, Cu, Fe, Mn, Ni, and Pb, with a view to historically evaluating the chemical composition of the bones. Fifty-two well-preserved specimens, obtained from western Japan, were classified into six groups according to Japanese prehistoric and historic eras (Jomon, Yayoi, Kofun, Muromachi, Edo, and Contemporary). Average concentrations of Ca were 0.20-0.33 g/g in the excavated bones and 0.17 g/g in the contemporary bones. Among the trace metals, such as Cu, Fe, Mn, and Pb, which showed remarkably elevated concentrations in the Edo era bones, Cu, Fe, and Mn were found to be strongly associated with soil contamination. Lead levels only slightly increased between the Jomon and Kofun eras, but became abruptly elevated following the Edo era. In contrast, the concentrations of Cd increased abruptly in the Yayoi era to a level with an order of magnitude higher than the Edo era, and they have recently decreased to rather low contemporary levels. This tendency becomes clearer when comparing the molar ratio of trace metals to Ca. The cause of elevated Cd concentrations in early excavated bones is discussed in relation to the mineralization of bones and the surrounding environment.

摘要

对成熟年龄(40 - 60岁)的出土骨骼和当代骨骼(肋骨皮质)进行了原子吸收光谱分析,以测定包括钙(Ca)、镉(Cd)、铜(Cu)、铁(Fe)、锰(Mn)、镍(Ni)和铅(Pb)在内的七种元素的浓度,目的是从历史角度评估骨骼的化学成分。从日本西部获取的52个保存完好的标本,根据日本史前和历史时代(绳文时代、弥生时代、古坟时代、室町时代、江户时代和当代)分为六组。出土骨骼中钙的平均浓度为0.20 - 0.33克/克,当代骨骼中为0.17克/克。在痕量金属中,如在江户时代骨骼中浓度显著升高的铜、铁、锰和铅,发现铜、铁和锰与土壤污染密切相关。铅含量在绳文时代和古坟时代之间仅略有增加,但在江户时代之后急剧升高。相比之下,镉的浓度在弥生时代突然增加到比江户时代高一个数量级的水平,并且最近已降至相当低的当代水平。当比较痕量金属与钙的摩尔比时,这种趋势变得更加明显。本文讨论了早期出土骨骼中镉浓度升高的原因与骨骼矿化和周围环境的关系。

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