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脱矿牛皮质骨在压缩循环加载-卸载过程中的初始各向异性

Initial anisotropy in demineralized bovine cortical bone in compressive cyclic loading-unloading.

作者信息

Novitskaya Ekaterina, Lee Steve, Lubarda Vlado A, McKittrick Joanna

机构信息

Materials Science and Engineering Program, University of California, San Diego, La Jolla, CA 92093, USA.

Materials Science and Engineering Program, University of California, San Diego, La Jolla, CA 92093, USA.

出版信息

Mater Sci Eng C Mater Biol Appl. 2013 Mar 1;33(2):817-23. doi: 10.1016/j.msec.2012.11.006. Epub 2012 Nov 12.

Abstract

The mechanical properties of demineralized bovine cortical femur bone were investigated by cyclic loading-unloading compression in three anatomical directions (longitudinal, radial, transverse) within the physiological strain range. The loading responses in the radial and transverse directions were nearly linear up to 2% strain, while the response in longitudinal direction was strongly non-linear in that range. The unloading responses were non-linear for each anatomical direction, giving rise to overall loading-unloading hysteresis and cyclic dissipation of energy. The mechanical properties were observed to be anisotropic: the radial direction was found to be the most energy dissipative, while the longitudinal direction appeared to be the stiffest bone direction. The cyclic loading mostly affects the bone stiffness in the radial and transverse directions, while the longitudinal direction was found to be the least affected. These anisotropic properties can be attributed to the differences in collagen fibers alignment and different microstructural architecture in three different anatomical bone directions.

摘要

通过在生理应变范围内沿三个解剖方向(纵向、径向、横向)进行循环加载-卸载压缩,研究了脱矿牛皮质股骨的力学性能。在径向和横向方向上,直至2%应变时加载响应几乎呈线性,而在该应变范围内纵向方向的响应呈强烈非线性。每个解剖方向的卸载响应均为非线性,导致整体加载-卸载滞后和能量的循环耗散。观察到力学性能具有各向异性:发现径向是能量耗散最大的方向,而纵向似乎是骨骼最坚硬的方向。循环加载主要影响径向和横向方向的骨刚度,而纵向方向受影响最小。这些各向异性特性可归因于三种不同解剖骨方向上胶原纤维排列和微观结构的差异。

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