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松质骨损伤的有限元建模

Finite element modeling of trabecular bone damage.

作者信息

Kosmopoulos Victor, Keller Tony S

机构信息

Department of Mechanical Engineering, University of Vermont, Burlington, VT 05405-0156, USA.

出版信息

Comput Methods Biomech Biomed Engin. 2003 Jun;6(3):209-16. doi: 10.1080/1025584031000149089.

Abstract

This paper presents a finite element-based, computational model for analysis of structural damage to trabecular bone tissues. A modulus reduction method was formulated from elasto-plasticity theory, and was used to account for site-specific trabecular bone tissue damage. Trabecular bone tissue damage is illustrated using a large-scale, anatomically accurate, two-dimensional, microstructural finite element model of a human thoracic vertebral body. Four models with varying specifications for damage accumulation were subjected to compressive loading and unloading cycles. The numerical results and experimental validation demonstrated that the modulus reduction method reproduced the non-linear mechanical behaviour of vertebal trabecular bone. The iterative computational approach presented provides a methodology to study trabecular bone damage, and should provide researchers with a computational approach to study bone fracture and repair and to predict vertebral fragility.

摘要

本文提出了一种基于有限元的计算模型,用于分析松质骨组织的结构损伤。基于弹塑性理论制定了模量降低法,用于考虑特定部位的松质骨组织损伤。使用大规模、解剖学精确的二维人体胸椎椎体微观结构有限元模型来说明松质骨组织损伤。对四个具有不同损伤累积规格的模型进行了压缩加载和卸载循环。数值结果和实验验证表明,模量降低法再现了椎体松质骨的非线性力学行为。所提出的迭代计算方法提供了一种研究松质骨损伤的方法,应为研究人员提供一种研究骨折和修复以及预测椎体脆性的计算方法。

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