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Recent advancements in the analysis of bone microstructure: New dimensions in forensic anthropology

机译:骨微结构分析的最新进展:法医人类学的新领域

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摘要

Bone is a mechanically active, three-dimensionally (3D) complex, and dynamic tissue that changes in structure over the human lifespan. Bone tissue exists and remodels in 3D and changes over time, introducing a fourth dimension. The products of the remodelling process, secondary and fragmentary osteons, have been studied substantially using traditional two-dimensional (2D) techniques. As a result, much has been learned regarding the biological information encrypted in the histomorphology of bone, yielding a wealth of information relating to skeletal structure and function. Three-dimensional imaging modalities, however, hold the potential to provide a much more comprehensive understanding of bone microarchitecture. The visualization and analysis of bone using high-resolution 3D imaging will improve current understandings of bone biology and have numerous applications in both biological anthropology and biomedicine. Through recent technological advancements, we can hone current anthropological applications of the analysis of bone microstructure and accelerate research into the third and fourth dimensional realms. This review will explore the methodological approaches used historically by anthropologists to assess cortical bone microstructure, spanning from histology to current ex vivo imaging modalities, discuss the growing capabilities of in vivo imaging, and conclude with an introduction of novel non-histological modalities for investigating bone quality.
机译:骨骼是一种机械活动的,三维(3D)复杂且动态的组织,在人类的整个生命周期中都会发生结构变化。骨骼组织存在并以3D模式重塑并随时间变化,从而引入了第四维。使用传统的二维(2D)技术已充分研究了重塑过程的产物,继发性骨和碎片性骨。结果,关于在骨骼的组织形态学中加密的生物信息的知识很多,产生了许多与骨骼结构和功能有关的信息。但是,三维成像模态具有提供对骨骼微体系结构更全面的理解的潜力。使用高分辨率3D图像对骨骼进行可视化和分析将改善当前对骨骼生物学的理解,并在生物学人类学和生物医学领域都有大量应用。通过最新的技术进步,我们可以磨练当前人类学在骨骼微结构分析方面的应用,并加快对三维空间领域的研究。这篇综述将探讨人类学家历史上用来评估皮质骨微结构的方法学方法,涵盖从组织学到当前的离体成像方式,讨论体内成像的增长能力,并以介绍用于研究骨骼的新型非组织学方式作为总结质量。

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