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三维连通性与松质骨弹性特性之间的关系。

The relationship between three-dimensional connectivity and the elastic properties of trabecular bone.

作者信息

Kinney J H, Ladd A J

机构信息

Lawrence Livermore National Laboratory, Livermore, California 94551, USA.

出版信息

J Bone Miner Res. 1998 May;13(5):839-45. doi: 10.1359/jbmr.1998.13.5.839.

Abstract

A finite-element model was used to explore the relationship between connectivity density and the elastic modulus of trabecular bone. Six cubic specimens of trabecular bone, three prepared from human distal radii and three from L1 vertebrae, were imaged with synchrotron microtomography. The three-dimensional images were reconstructed into binary volumes of mineralized bone and soft tissue, and incorporated into the finite-element model. The relationship between three-dimensional connectivity and elastic modulus was explored by uniform thinning (atrophy) and thickening (recovery) of the trabecular bone. Though no functional relationship was found between connectivity and elastic modulus, there was a linear relationship, after a full cycle of atrophy and recovery, between the loss of elastic modulus and the overall loss of connectivity. The results indicate that recovery of mechanical function depends on preserving or restoring trabecular connectivity.

摘要

采用有限元模型探讨小梁骨连接密度与弹性模量之间的关系。对六个小梁骨立方标本进行了同步辐射显微断层扫描成像,其中三个取自人类桡骨远端,三个取自L1椎体。将三维图像重建为矿化骨和软组织的二值体积,并纳入有限元模型。通过小梁骨的均匀变薄(萎缩)和增厚(恢复)来探讨三维连接性与弹性模量之间的关系。虽然未发现连接性与弹性模量之间存在功能关系,但在经历一轮萎缩和恢复后,弹性模量的损失与连接性的整体损失之间存在线性关系。结果表明,力学功能的恢复取决于小梁连接性的保持或恢复。

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