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微观结构层面的小梁骨衰竭。

Trabecular bone failure at the microstructural level.

作者信息

Müller Ralph, van Lenthe G Harry

机构信息

Institute for Biomedical Engineering, University and ETH Zürich, Switzerland.

出版信息

Curr Osteoporos Rep. 2006 Jun;4(2):80-6. doi: 10.1007/s11914-006-0007-4.

Abstract

Although biomedical imaging technology is now readily available, few attempts have been made to expand the capabilities of these systems by adding not only quantitative but also functional analysis tools combining microimaging with time-lapsed mechanical testing. An area of special interest is multiscale functional imaging of trabecular bone to assess the relative importance of bone "quality" in the assessment of the mechanical competence of bone. First, relevant studies dealing with hierarchical imaging of trabecular bone and classic analyses such as quantitative morphometry and finite-element analysis to predict bone strength are reviewed. Second, studies are presented investigating failure mechanisms of three-dimensional trabecular bone through dynamic, time-lapsed microimaging, including image-guided techniques developed for this purpose and utilizing microcompression. For the first time, these allow the direct three-dimensional visualization and quantification of failure initiation and progression at the microstructural level.

摘要

尽管生物医学成像技术如今已 readily available,但很少有人尝试通过添加不仅是定量分析工具,而且是将微观成像与延时力学测试相结合的功能分析工具来扩展这些系统的功能。一个特别感兴趣的领域是小梁骨的多尺度功能成像,以评估骨“质量”在评估骨力学性能中的相对重要性。首先,回顾了处理小梁骨分层成像以及诸如定量形态计量学和有限元分析等经典分析以预测骨强度的相关研究。其次,介绍了通过动态、延时微观成像研究三维小梁骨失效机制的研究,包括为此目的开发并利用微压缩的图像引导技术。这些首次实现了在微观结构水平上对失效起始和进展的直接三维可视化和量化。

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