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首页> 外文期刊>Annals of Human Biology: Journal of the Society for the Study of Human Biology >Passports from the past: Investigating human dispersals using strontium isotope analysis of tooth enamel.
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Passports from the past: Investigating human dispersals using strontium isotope analysis of tooth enamel.

机译:过去的护照:使用牙釉质的锶同位素分析来研究人类分散。

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摘要

Strontium isotopes are a powerful tool which provide information about provenance directly from the tissues of humans rather than the grave context and burial goods. Geographical variation in strontium isotopes is primarily controlled by the underlying geology but there are many other factors that need to be considered before migratory individuals can be identified. Consequently, despite many studies which have shown that the method works well, it is clear that much remains to be clarified and it will not work for every question or in every place. It rests on the assumption that people were sourcing their food locally and that there is a measurable strontium isotope difference between the place the person migrated from and the place they migrated to. As migrants may deliberately seek out familiar soil types and terrains in their new homeland, some questions surrounding major migration events may prove intractable for this technique. Other factors that can create heterogeneity or homogeneity leading to false positives or false negatives, such as human choices or coastal subsistence, are explored and the metabolism of strontium into human tooth enamel is discussed. Several models of land-use choices by humans are presented to highlight the subtleties inherent in the isotope data and these are used to interpret archaeological human isotope ratios from three studies.
机译:锶同位素是一种强大的工具,可直接从人类组织而不是严重的上下文和埋葬物品提供有关出差的信息。锶同位素的地理变异主要由潜在地质控制,但在可以识别迁移个体之前需要考虑许多其他因素。因此,尽管有许多研究表明该方法运作良好,但很明显,仍有许多待澄清,它不会为每个问题或每个地方工作。它依靠假设人们在本地寻求食物,并且在迁移的人迁移的地方和他们迁移到的地方之间存在可测量的锶同位素差异。由于移民可能故意寻求新的祖国熟悉的土壤类型和地形,周围主要迁移事件的一些问题可能是这种技术的棘手。探讨了可能产生导致虚假阳性或假底片的异质性或均匀性的其他因素,例如人类选择或沿海生计,并讨论了锶的新陈代谢进入人牙釉质。提出了几种人类的土地使用型号,以突出同位素数据中固有的微妙之处,这些内容用于解释来自三项研究的考古人同位素比。

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