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皮质骨组织的断裂力学:层次视角

Fracture mechanics of cortical bone tissue: a hierarchical perspective.

作者信息

Akkus Ozan, Yeni Yener N, Wasserman Nicholas

机构信息

Orthopaedic Bioengineering Laboratory, Department of Bioengineering, MS 303, The University of Toledo, Toledo, OH 43606, USA.

出版信息

Crit Rev Biomed Eng. 2004;32(5-6):379-426. doi: 10.1615/critrevbiomedeng.v32.i56.10.

Abstract

The performance of bone tissue in the presence of flaws is a highly remarkable one. Bone tissue is the outcome of an adaptive evolutionary process; thus, insight into the mechanisms by which it fails would provide valuable information not only for development of mechanically superior biomimetic materials but also for development of treatment modalities to prevent debilitating bone fractures. Clinically, fractures of skeletal organs occur as a result of aging, disease, overuse, and trauma. Fracture mechanics, a sub-discipline of solid mechanics that investigates the performance of cracked materials, has been employed extensively in characterizing the mechanisms by which bone tissue fractures. At present the fracture mechanisms at the macroscale are better characterized than at the microscale. On the other hand, a mechanistic understanding of damage evolution at the submicroscopic scale is largely limited to postulations with little experimental insight. The challenge of skeletal fragility will be dealt with more efficiently with deeper understanding of the fracture process at each hierarchical size scale. The most recent review on this subject matter was a decade ago, and there have been numerous developments in the fracture mechanics of bone since then. This review recaps the existing literature with an emphasis on the hierarchical nature of the fracture process in bone, entailing the supramolecular, microscopic, and macroscopic scales.

摘要

存在缺陷时骨组织的性能非常显著。骨组织是适应性进化过程的产物;因此,深入了解其失效机制不仅能为开发机械性能更优的仿生材料提供有价值的信息,还能为开发预防使人衰弱的骨折的治疗方法提供有价值的信息。临床上,骨骼器官骨折是由衰老、疾病、过度使用和创伤引起的。断裂力学是固体力学的一个分支学科,研究有裂纹材料的性能,已被广泛用于表征骨组织骨折的机制。目前,宏观尺度上的骨折机制比微观尺度上的更清楚。另一方面,对亚微观尺度损伤演化的机理理解在很大程度上仅限于推测,缺乏实验依据。更深入地了解每个层次尺寸尺度上的骨折过程,将能更有效地应对骨骼脆弱性的挑战。关于这个主题的最新综述是在十年前,从那时起,骨断裂力学已经有了许多进展。这篇综述总结了现有文献,重点关注骨骨折过程的层次性质,包括超分子、微观和宏观尺度。

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