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胫骨平台后外侧骨折3种内固定方式的有限元分析

范鑫斌 张岩 杨铁毅 罗从风 龚璐璐 梁旭 刘树义 吴亮 刘粤

中国组织工程研究Issue(22):3510-3516,7.
中国组织工程研究Issue(22):3510-3516,7.DOI:10.3969/j.issn.2095-4344

胫骨平台后外侧骨折3种内固定方式的有限元分析

Finite element analysis of posterolateral fracture of tibial plateau using three types of internal fixation

范鑫斌 1张岩 1杨铁毅 1罗从风 1龚璐璐 2梁旭 1刘树义 1吴亮 1刘粤1

作者信息

  • 1. 上海市浦东新区公利医院骨科,上海市 200135
  • 2. 上海市同济大学生命与技术学院,上海市 200092
  • 折叠

摘要

Abstract

BACKGROUND:Studies on tibial plateau fractures had gradualy focused on “360° stereochemical structure” from medial and lateral “double track structure” nowadays. Scholars pay great attention on the stability and reposition of posterior plateau and functional recovery after reduction. The choice of fixation material of posterior plateau was controversial. <br> OBJECTIVE:To discuss the biomechanical characteristics of posterolateral fracture of tibial plateau using three types of internal fixation. <br> METHODS:Using three-dimensional finite element analysis, we simulated 1/2 and 1/4 posterolateral tibial plateau fractures. Three types of internal fixation were used: two anterior 6.5 mm lag screws, lateral 4.5 mm&nbsp;L-shape plate, and posterior 3.5 mm T-shape plate. 500 N was loaded at the center of the tibial plateau verticaly, and biomechanical status of three types of fixation was compared. <br> RESULTS AND CONCLUSION: In 1/2 fracture model, anterior lag screw group and posterior plate group gained least displacement in al directions, as lateral plate group gained more. In 1/4 model, the advantage in displacement of anterior lag screw group was more apparent, the second was posterior plate group, and the last was lateral plate group. In 1/2 fracture model, the maximum stress of anterior lag screw was 36.523 MPa, which of lateral plate group was 153.372 MPa and posterior plate group was 115.922 MPa. The maximum stress left in the separate bone of lag screw group was 4.309 MPa, which of lateral plate group was 4.37 MPa and posterior plate group was 3.124 MPa. In 1/4 fracture model, the maximum stress of anterior lag screw was 36.803 MPa, which of lateral plate group was 153.336 MPa and posterior plate group was 104.234 MPa. The maximum stress left in the separate bone of lag screw group was 1.195 MPa, which of lateral plate group was 0.827 MPa and posterior plate group was 1.196 MPa. Results indicated that anterior lag screw could bear more stress and gained least displacement after loading, and the fixation was more stable. Posterior plate can give more stabilization when the separate bone was bigger (1/2), similar to anterior lag screw. When the separate bone was smaler (1/4), posterior plate model was less stable than anterior lag screw. Lateral plate model, with poor stabilization, was the worst choice in three types of fixation.

关键词

植入物/数字化骨科/骨植入物/有限元分析/胫骨平台/骨折/后外侧骨块/内固定

Key words

tibial fractures/finite element analysis/internal fixators/stress, mechanical

分类

医药卫生

引用本文复制引用

范鑫斌,张岩,杨铁毅,罗从风,龚璐璐,梁旭,刘树义,吴亮,刘粤..胫骨平台后外侧骨折3种内固定方式的有限元分析[J].中国组织工程研究,2014,(22):3510-3516,7.

基金项目

上海市浦东新区科技发展基金创新资金项目(PKJ2011-Y9);上海市浦东新区卫生系统学科带头人资助项目(PWRd2012-16) (PKJ2011-Y9)

中国组织工程研究

OA北大核心CSTPCD

2095-4344

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