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Structural orientation dependent sub-lamellar bone mechanics

机译:结构取向依赖于子板层骨力学

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摘要

The lamellar unit is a critical component in defining the overall mechanical properties of bone. In this paper, micro-beams of bone with dimensions comparable to the lamellar unit were fabricated using focused ion beam (FIB) microscopy and mechanically tested in bending to failure using atomic force microscopy (AFM). A variation in the mechanical properties, including elastic modulus, strength and work to fracture of the micro-beams was observed and related to the collagen fibril orientation inferred from back-scattered scanning electron microscopy (SEM) imaging. Established mechanical models were further applied to describe the relationship between collagen fibril orientation and mechanical behaviour of the lamellar unit. Our results highlight the ability to measure mechanical properties of discrete bone volumes directly and correlate with structural orientation of collagen fibrils.
机译:层状单元是定义骨骼整体机械性能的关键组成部分。在本文中,使用聚焦离子束(FIB)显微镜制造了尺寸可与片状单元相媲美的骨微束,并使用原子力显微镜(AFM)对弯曲至破坏进行了机械测试。观察到机械性能的变化,包括弹性模量,强度和微束的断裂功,并且与背散射扫描电子显微镜(SEM)成像推断的胶原原纤维取向有关。建立的力学模型被进一步用于描述胶原纤维取向与层状单元力学行为之间的关系。我们的结果突出了直接测量离散骨体积的机械性能并与胶原纤维的结构取向相关的能力。

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