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对松质骨力学性能的20年展望。

A 20-year perspective on the mechanical properties of trabecular bone.

作者信息

Keaveny T M, Hayes W C

机构信息

Department of Orthopaedic Surgery, Charles A. Dana Research Institute, Beth Israel Hospital, Boston, MA.

出版信息

J Biomech Eng. 1993 Nov;115(4B):534-42. doi: 10.1115/1.2895536.

Abstract

We have reviewed highlights of the research in trabecular bone biomechanics performed over the past 20 years. Results from numerous studies have shown that trabecular bone is an extremely heterogeneous material--modulus can vary 100-fold even within the same metaphysis--with varying degrees of anisotropy. Strictly speaking, descriptions of the mechanical properties of trabecular bone should therefore be accompanied by specification of factors such as anatomic site, loading direction, and age. Research efforts have also been focused on the measurement of mechanical properties for individual trabeculae, improvement of methods for mechanical testing at the continuum level, quantification of the three-dimensional architecture of trabecular bone, and formulation of equations to relate the microstructural and continuum-level mechanical properties. As analysis techniques become more sophisticated, there is now evidence that factors such as anisotropy and heterogeneity of individual trabeculae might also have a significant effect on the continuum-level properties, suggesting new directions for future research. Other areas requiring further research are the time-dependent and multiaxial failure properties at the continuum level, and the stiffness and failure properties at the lamellar level. Continued research in these areas should enhance our understanding of issues such as age-related bone fracture, prosthesis loosening, and bone remodeling.

摘要

我们回顾了过去20年中进行的小梁骨生物力学研究的要点。大量研究结果表明,小梁骨是一种极其不均匀的材料——即使在同一干骺端内,模量也可能相差100倍——具有不同程度的各向异性。因此,严格来说,对小梁骨力学性能的描述应同时指明诸如解剖部位、加载方向和年龄等因素。研究工作还集中在单个小梁力学性能的测量、连续水平力学测试方法的改进、小梁骨三维结构的量化以及建立微观结构与连续水平力学性能之间关系的方程。随着分析技术变得更加复杂,现在有证据表明,单个小梁的各向异性和不均匀性等因素也可能对连续水平性能产生重大影响,这为未来研究指明了新方向。其他需要进一步研究的领域包括连续水平的时间依赖性和多轴破坏特性,以及板层水平的刚度和破坏特性。在这些领域持续开展研究应能增进我们对与年龄相关的骨折、假体松动和骨重塑等问题的理解。

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