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First analysis of ancient burned human skeletal remains probed by neutron and optical vibrational spectroscopy

机译:中子和光学振动光谱法对古代人类骨骼残骸的首次分析

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摘要

Burned skeletal remains are abundant in archaeological and paleontological sites, the result of fire or of ancient funerary practices. In the burning process, the bone matrix suffers structural and dimensional changes that interfere with the reliability of available osteometric methods. Recent studies showed that these macroscopic changes are accompanied by microscopic variations are reflected in vibrational spectra. An innovative integrated approach to the study of archaeological combusted skeletal remains is reported here, where the application of complementary vibrational spectroscopic techniques—INS (inelastic neutron scattering), FTIR (Fourier transform infrared), and micro-Raman—enables access to the complete vibrational profile and constitutes the first application of neutron spectroscopy to ancient bones. Comparison with data from modern human bones that were subjected to controlled burning allowed identification of specific heating conditions. This pioneering study provides archaeologists and anthropologists with relevant information on past civilizations, including regarding funerary, burial, and cooking practices and environmental settings.
机译:火灾或古代丧葬活动的结果,在考古和古生物学遗址中已燃烧的骨骼残留物丰富。在燃烧过程中,骨基质的结构和尺寸变化会干扰可用骨测量方法的可靠性。最近的研究表明,这些宏观变化伴随着微观变化,反映在振动光谱中。这里报道了一种创新的综合方法,用于研究考古燃烧的骨骼遗骸,在该方法中,互补振动光谱技术(INS(非弹性中子散射),FTIR(傅立叶变换红外)和微拉曼)的应用使能够获得完整的振动信息。轮廓,是中子光谱学在古代骨骼中的首次应用。与来自受控制燃烧的现代人体骨骼数据的比较可以确定特定的加热条件。这项开创性研究为考古学家和人类学家提供了有关过去文明的相关信息,包括有关丧葬,葬礼和烹饪方式以及环境的信息。

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