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髋关节置换过程中假体位置的有限元分析

贾金领 董玉珍

中国组织工程研究2017,Vol.21Issue(3):401-405,5.
中国组织工程研究2017,Vol.21Issue(3):401-405,5.DOI:10.3969/j.issn.2095-4344.2017.03.014

髋关节置换过程中假体位置的有限元分析

Finite element analysis of prosthesis position during hip arthroplasty

贾金领 1董玉珍1

作者信息

  • 1. 新乡医学院第一附属医院骨外科,河南省新乡市 453100
  • 折叠

摘要

Abstract

BACKGROUND:Three-dimensional finite element studies found that the instal ation location of the hip prosthesis is closely related to the effects of hip replacement, but studies on different anteversion and abduction angle of the hip prosthesis mounting position on the effects of hip biomechanics are not much. OBJECTIVE:To analyze the biomechanical characteristics of different prosthetic positions in hip arthroplasty using three-dimensional finite element analysis. METHODS:One healthy volunteer was selected and data of pelvis and femur were col ected. Three-dimensional geometric model of this volunteer was established and received finite element network partitioning. CT scan was used to obtain prosthesis model data and accurate prosthesis model was established. 16 kinds of different prosthesis position model of hip replacement were established. Vertical y downward force of 780 N was applied on the top of sacroiliac joint and pubic symphysis. The acetabular stress peak, femoral stress peaks, polyethylene liner peak stress and polyethylene liner damage zone volume of 16 kinds of model were observed. RESULTS AND CONCLUSION:(1) The acetabular stress peak, femoral stress peaks, polyethylene liner peak stress and polyethylene liner damage zone volume of 16 kinds of different prosthesis position model of hip replacement, anteversion angle 10° abduction angle 50° got the best results. The acetabular stress peak was 51.23 MPa;femoral stress peak was 26.34 MPa. Polyethylene liner peak stress was 5.288 MPa and polyethylene liner damage zone volume was 2.239×10-7 m3. (2) These results indicated that anteversion angle 10° abduction angle 50° is the ideal hip replacement degree. The peak stresses of acetabulum, femur, and polyethylene liner at this instal ation angle are minimum;polyethylene liner damage zone volume is also minimum. This can provide data for clinical reference.

关键词

骨科植入物/数字化骨科/髋关节/假体/三维有限元/应力/生物力学

分类

医药卫生

引用本文复制引用

贾金领,董玉珍..髋关节置换过程中假体位置的有限元分析[J].中国组织工程研究,2017,21(3):401-405,5.

基金项目

2014年河南省医学科技攻关计划项目(201403141) (201403141)

中国组织工程研究

OA北大核心CSTPCD

2095-4344

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