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Chemical signals and reconstruction of life strategies from ancient human bones and teeth - problems and perspectives

机译:化学信号与古代人类骨骼和牙齿的生命策略重建-问题与观点

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Chemical signals and reconstruction of life strategies from ancient human bones and teeth - problems and perspectivesChemical analyses of historical and prehistoric bone material provide us with a complex body of knowledge in bioarcheological studies. These can be used for reconstructing diet, migration, climate changes and the weaning process. The analysis of enamel, dentin and bones allows researchers to gather data on life strategies of an individual by retrospectively tracing his ontogenetic phases. This is made possible through knowledge of the mineralization periods of permanent and deciduous teeth while simultaneously taking account of differences between enamel, dentin and bone remodelling rates, dependent on the age of the individual. Yet, the large interpretative potential of isotope analyses of bone material is severely limited by diagenesis. The accurate recording of diagenetic changes in historical human bone material is a current main trend in bioarcheological research. Today, a highly specialised set of research tools is used for verifying whether bones unearthed at archeological sites are suitable for isotope tests. Isotope determinations are pivotal in this research as reconstructions of paleodiets or migrations of our ancestors can be based only on material that has been maintained intact in sufficient proportions post mortem.
机译:化学信号和来自远古人类骨骼和牙齿的生命策略的重建-问题和观点对历史和史前骨骼材料的化学分析为我们提供了生物考古学领域的复杂知识体系。这些可用于重建饮食,迁移,气候变化和断奶过程。通过对牙釉质,牙本质和骨骼的分析,研究人员可以追溯追溯其个体发育阶段,从而收集有关其生命战略的数据。通过了解恒牙和乳牙的矿化期,同时考虑牙釉质,牙本质和骨重塑率之间的差异(取决于个人年龄),可以做到这一点。然而,成骨作用严重限制了对骨材料进行同位素分析的巨大解释潜力。准确记录人类历史骨材料中的成岩变化是生物考古学研究的当前主要趋势。如今,使用了一套高度专业化的研究工具来验证考古现场出土的骨骼是否适合进行同位素测试。同位素的确定在这项研究中至关重要,因为重建古生物或祖先的迁徙只能基于在死后以足够比例保持完整的物质。

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