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骨微损伤的多尺度成像

Multiscale imaging of bone microdamage.

作者信息

Poundarik Atharva A, Vashishth Deepak

机构信息

Department of Biomedical Engineering, Rensselaer Polytechnic Institute , Troy, NY , USA.

出版信息

Connect Tissue Res. 2015 Apr;56(2):87-98. doi: 10.3109/03008207.2015.1008133. Epub 2015 Feb 9.

Abstract

Bone is a structural and hierarchical composite that exhibits remarkable ability to sustain complex mechanical loading and resist fracture. Bone quality encompasses various attributes of bone matrix from the quality of its material components (type-I collagen, mineral and non-collagenous matrix proteins) and cancellous microarchitecture, to the nature and extent of bone microdamage. Microdamage, produced during loading, manifests in multiple forms across the scales of hierarchy in bone and functions to dissipate energy and avert fracture. Microdamage formation is a key determinant of bone quality, and through a range of biological and physical mechanisms, accumulates with age and disease. Accumulated microdamage in bone decreases bone strength and increases bone's propensity to fracture. Thus, a thorough assessment of microdamage, across the hierarchical levels of bone, is crucial to better understand bone quality and bone fracture. This review article details multiple imaging modalities that have been used to study and characterize microdamage; from bulk staining techniques originally developed by Harold Frost to assess linear microcracks, to atomic force microscopy, a modality that revealed mechanistic insights into the formation diffuse damage at the ultrastructural level in bone. New automated techniques using imaging modalities, such as microcomputed tomography are also presented for a comprehensive overview.

摘要

骨骼是一种具有结构层次的复合材料,具有承受复杂机械负荷和抵抗骨折的显著能力。骨质量涵盖了骨基质的各种属性,从其物质成分(I型胶原蛋白、矿物质和非胶原蛋白基质蛋白)的质量以及松质骨微结构,到骨微损伤的性质和程度。在负荷过程中产生的微损伤,在骨骼层次结构的各个尺度上以多种形式表现出来,其作用是耗散能量并避免骨折。微损伤的形成是骨质量的关键决定因素,并且通过一系列生物学和物理机制,会随着年龄增长和疾病而累积。骨骼中累积的微损伤会降低骨强度并增加骨折倾向。因此,全面评估骨骼各个层次的微损伤,对于更好地理解骨质量和骨折情况至关重要。这篇综述文章详细介绍了多种用于研究和表征微损伤的成像方式;从最初由哈罗德·弗罗斯特开发用于评估线性微裂纹的整体染色技术,到原子力显微镜,这种方式揭示了在骨骼超微结构水平上形成弥漫性损伤的机制见解。还介绍了使用诸如微计算机断层扫描等成像方式的新型自动化技术,以提供全面概述。

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Multiscale imaging of bone microdamage.骨微损伤的多尺度成像
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