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Skeletal concentrations of lead cadmium zinc and silver in ancient North American Pecos Indians.

机译:古代北美Pecos印第安人的铅镉锌和银的骨架浓度。

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摘要

Bone samples of 14 prehistoric North American Pecos Indians from circa 1400 A.D. were analyzed for lead, cadmium, zinc, and silver by graphite furnace atomic absorption spectrometry to establish the baseline levels of these elements in an ancient North American population. Measurements of outer and inner bone fractions indicate the former were contaminated postmortem for lead, zinc, and cadmium. The contamination-adjusted average (mean +/- SD) level of lead (expressed as the ratio of atomic lead to atomic calcium) in bones of the Indians was 8.4 +/- 4.4 x 10(-7)), which was similar to ratios in bones of ancient Peruvians (0.9 to 7.7 x 10(-7)) and significantly lower than ratios in bones of modern adults in England and the United States (210 to 350 x 10(-7]. The adjusted average concentrations (microgram per gram dry weight) of biologic cadmium, silver, and zinc in the Pecos Indian bones were 0.032 +/- 0.013, 0.094 +/- 0.044, and 130 +/- 66, as compared to concentrations of 1.8, 0.01 to 0.44, and 75 to 170 in the bones of modern people, respectively. Therefore, cadmium concentrations in Pecos Indian bones are also approximately 50-fold lower than those of contemporary humans. These data support earlier findings that most previously reported natural concentrations of lead in human tissues are erroneously high and indicate that natural concentrations of cadmium are also between one and two orders of magnitude lower than contemporary concentrations.
机译:通过石墨炉原子吸收光谱法分析了大约1400年左右的14位史前北美Pecos印第安人的骨骼样品中的铅,镉,锌和银,以建立古代北美人口中这些元素的基线水平。外部和内部骨骼分数的测量结果表明,前者的铅,锌和镉在死后被污染。印第安人骨骼中经污染调整后的铅平均(平均值+/- SD)水平(表示为原子铅与原子钙的比)为8.4 +/- 4.4 x 10(-7)),与古代秘鲁人的骨骼比例(0.9至7.7 x 10(-7)),远低于英格兰和美国的现代成年人的骨骼比例(210至350 x 10(-7)。调整后的平均浓度(微克) Pecos印度人骨骼中的生物镉,银和锌每克干重)分别为0.032 +/- 0.013、0.094 +/- 0.044和130 +/- 66,而浓度分别为1.8、0.01到0.44和在现代人的骨骼中分别为75到170,因此,Pecos印度人骨骼中的镉含量也比现代人低约50倍,这些数据支持了先前的发现,即以前报道的人体组织中的自然铅含量最高错误地表示镉的自然浓度也在ne和比当代浓度低两个数量级。

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