...
首页> 外文期刊>Archaeological and Anthropological Sciences >Bone diagenesis in archaeological and contemporary human remains: an investigation of bone 3D microstructure and minero-chemical assessment
【24h】

Bone diagenesis in archaeological and contemporary human remains: an investigation of bone 3D microstructure and minero-chemical assessment

机译:考古和当代人类的骨质成岩仍然存在:对骨3D微观结构和米洛化学评估的调查

获取原文
获取原文并翻译 | 示例
           

摘要

The major difficulty to study bone preservation is to define which diagenetic parameters need to be taken into account when any information on environmental conditions is missing. Through this research, we contribute towards understanding the complex interplay of factors that affects human bones during diagenetic process. The work focuses on how organic and mineral components influence each other and how they influence the resulting micro-structural assessment of human bone. The mineral and organic properties of 24 adult human long bones from archaeological to contemporary burials in Milan (Italy) were characterized through different analytical techniques, in relation to the preservation of their microstructure and porosity. The 3D microstructure of the bone tissue was carried out through the use of phase contrast synchrotron radiation computed micro-tomography (SR-mu CT). The results show that when diagenesis proceeds, (i) the bone tissue is progressively attacked by microbes; (ii) the diagenetic porosity increases at the expense of vascular ones; (iii) the volumes, diameters, and interconnections of vascular canals are markedly reduced; (iii) the amount of organic and carbonate fraction decreases whereas bone crystallinity and mean crystal length increase; (iv) the Ca/P mole ratio in CHA crystals increases; (v) the anisotropy along c-axis in CHA crystals is lost, resulting in an increase of their domain size. Since the conservation of organic and mineral fractions is variable in relation to bone microstructure within the same period and site, the research points out the needs to perform a multi-analytical approach to characterize the bone diagenesis at different scales of observation.
机译:研究骨保存的主要困难是确定当缺少环境条件的任何信息时需要考虑哪些成岩参数。通过这项研究,我们有助于了解在成岩过程中影响人体骨骼的复杂相互作用。这项工作侧重于有机和矿物组分如何互相影响以及它们如何影响所产生的人骨的微观结构评估。来自米兰(意大利)在米兰(意大利)的考古到当代墓葬的24个成人人类长骨的矿物质和有机特性通过不同的分析技术,与保存微观结构和孔隙率有关。通过使用相对比同步辐射计算的微型断层扫描(SR-MU CT)来进行骨组织的3D微观结构。结果表明,当成岩作用进行时,(i)骨组织逐渐被微生物攻击; (ii)成岩孔隙率以血管孔隙率增加; (iii)血管运河的体积,直径和互连明显减少; (iii)有机和碳酸盐馏分的量降低,而骨结晶度和平均晶体长度增加; (iv)CHA晶体中的CA / P摩尔比增加; (v)沿CHA晶体中的C轴各向异性丢失,导致其域尺寸的增加。由于有机和矿物级分的保护是在同一时期和现场内的骨微结构方面的变化,因此研究指出了进行多分析方法来表征不同观察尺度的骨质成岩作用。

著录项

相似文献

  • 外文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号