Medial-lateral translational malalignment of the prosthesis on tibial stress distribution in total knee arthroplasty: A finite element analysis
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Published:2023-03-02
Issue:
Volume:11
Page:
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ISSN:2296-4185
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Container-title:Frontiers in Bioengineering and Biotechnology
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language:
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Short-container-title:Front. Bioeng. Biotechnol.
Author:
Zheng Zhiqian,Liu Yang,Zhang Aobo,Chen Hao,Wan Qian,Zhong Lei,Wang Xiaonan,Han Qing,Wang Jincheng
Abstract
Background: Poor prosthesis alignment during total knee arthroplasty could cause problems such as polyethylene spacer wear, leading to surgical failure and revision surgery. The problems caused by the malalignment of the tibial plateau prosthesis in the medial and lateral planes are unclear. We aimed to investigate the stress distribution and micromotion of the tibia when the tibial plateau prosthesis is translated 1 and 2 mm medially and laterally, respectively, using finite element analysis (FEA).Method: A non-homogeneous tibia model was created and load conditions when standing on two legs were applied using FEA to simulate the misaligned prosthesis. The stresses, stress distribution, and micromotion of the proximal tibia were analyzed in five positions of the tibial plateau prosthesis: Lateral-2 mm; Lateral-1 mm; Medium; Medial-2 mm; Medial-1 mm.Result: The maximum stress in the five groups with different misalignments of the platform was 47.29 MPa (Lateral-2 mm). The maximum micromotion among the five groups in different positions was 7.215 μm (Lateral-2 mm).Conclusion: When placing the tibial plateau prosthesis during total knee arthroplasty, an error of 2 mm or less is acceptable as long as it does not overhang.
Funder
National Natural Science Foundation of China
Department of Science and Technology of Jilin Province
Jilin Province Development and Reform Commission
Publisher
Frontiers Media SA
Subject
Biomedical Engineering,Histology,Bioengineering,Biotechnology