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股骨骨折的线性与非线性分析:计算/实验研究

Linear and nonlinear analyses of femoral fractures: Computational/experimental study.

作者信息

Mirzaei Majid, Alavi Fatemeh, Allaveisi Farzaneh, Naeini Vahid, Amiri Pegah

机构信息

Department of Mechanical Engineering, Tarbiat Modares University, Tehran, Iran.

Department of Mechanical Engineering, Tarbiat Modares University, Tehran, Iran.

出版信息

J Biomech. 2018 Oct 5;79:155-163. doi: 10.1016/j.jbiomech.2018.08.003. Epub 2018 Aug 13.

Abstract

This paper describes two new methods for computational fracture analysis of human femur using Quantitative Computed Tomography (QCT) voxel-based finite element (FE) simulation. The paper also reports comprehensive mechanical testing for validation of the methods and evaluation of the required material properties. The analyses and tests were carried out on 15 human femurs under 11 different stance-type loading orientations. Several classical forms of subcapital, transcervical, basicervical, and intertrochanteric fractures plus a specific type of subtrochanteric fracture were created and analyzed. A new procedure was developed for prediction of the strengths and the fracture initiation patterns using a FE-based linear scheme. The predicted and observed fracture patterns were in correspondence, and the FE predictions of the fracture loads were in very good agreement with the experimental results. Moreover, the crack initiation and growth behaviors of two subtrochanteric fractures were successfully simulated through a novel implementation of the cohesive zone model (CZM) within a nonlinear FE analysis scheme. The CZM parameters were obtained through a series of experimental tests on different types of specimens and determination of a variety of material properties for different anatomic regions and orientations. The presented results indicated that the locations and patterns of crack initiation, the sequences of crack growth on different paths, and the compatibility of growth increments agreed very well with the observed specifications. Also, very good agreements were achieved between the measured and simulated fracture loads.

摘要

本文描述了两种使用基于定量计算机断层扫描(QCT)体素的有限元(FE)模拟对人体股骨进行计算骨折分析的新方法。本文还报告了用于验证这些方法和评估所需材料特性的全面力学测试。分析和测试在15根人体股骨上进行,加载方向有11种不同的站立姿势类型。创建并分析了几种经典形式的股骨头下型、经颈型、基底部型和转子间骨折以及一种特定类型的转子下骨折。开发了一种新程序,用于使用基于有限元的线性方案预测强度和骨折起始模式。预测的骨折模式与观察到的模式一致,并且骨折载荷的有限元预测与实验结果非常吻合。此外,通过在非线性有限元分析方案中新颖地实现内聚力模型(CZM),成功模拟了两种转子下骨折的裂纹起始和扩展行为。CZM参数通过对不同类型标本进行一系列实验测试并确定不同解剖区域和方向的各种材料特性而获得。给出的结果表明,裂纹起始的位置和模式、不同路径上裂纹扩展的顺序以及扩展增量的兼容性与观察到的特征非常吻合。此外,测量的和模拟的骨折载荷之间也取得了很好的一致性。

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