接触力学
生物力学
弯月面
膝关节
有限元法
外侧半月板
内侧半月板
医学
运动学
接触面积
口腔正畸科
接头(建筑物)
接触力
骨科手术
压力(语言学)
解剖
骨关节炎
材料科学
外科
结构工程
数学
复合材料
几何学
工程类
量子力学
入射(几何)
语言学
病理
替代医学
哲学
物理
经典力学
作者
Yunlong Wang,Yan-Song Qi,Huricha Bao,Yongsheng Xu,Baogang Wei,Yongxiang Wang,Bingxian Ma,Huiwen Zhou,Fei Lv
标识
DOI:10.1186/s13018-021-02435-0
摘要
Abstract Purpose To explore the impact of different repair methods for a lateral meniscus posterior root tear on the biomechanics of the knee joint using finite element analysis. Methods Finite element models of a healthy knee were established on the basis of MRI data from a volunteer using Mimics software, and the validity of the models was tested. The changes in the contact mechanics and kinematics of these finite element models under different repair approaches were then analyzed and compared. Results The normal meniscus had the maximum joint contact area, the minimum contact pressure, and the minimum contact stress. When total meniscectomy of the lateral meniscus was performed, the lateral compartment had the minimum joint contact area, the maximum contact pressure and the maximum contact stress. When complete avulsions of the posterior root of the lateral meniscus occurred, the maximum values of contact pressure and contact stress were between those of an intact meniscus and those of a meniscus treated with total meniscectomy. Lateral meniscal root attachment reconstruction by the single-stitch and double-stitch techniques resulted in a significant decrease in joint contact pressure and contact stress, leading to values comparable to those of a normal knee joint, and the double-stitch technique performed better than the single-stitch technique. Conclusions Repair surgery for lateral meniscal posterior root avulsions can effectively restore the contact mechanics and kinematics of the knee joint, and the double-stitch technique can result in better clinical outcomes than the single-stitch technique.
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