首页> 外文期刊>Journal of biomechanical engineering. >Stresses and Strains in the Medial Meniscus of an ACL Deficient Knee under Anterior Loading: A Finite Element Analysis with Image-Based Experimental Validation
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Stresses and Strains in the Medial Meniscus of an ACL Deficient Knee under Anterior Loading: A Finite Element Analysis with Image-Based Experimental Validation

机译:前侧负荷下ACL缺损膝关节内侧半月板的应力和应变:基于图像的实验验证的有限元分析

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摘要

The menisci are believed to play a stabilizing role in the ACL-deficient knee, and are known to be at risk for degradation in the chronically unstable knee. Much of our understanding of this behavior is based on ex vivo experiments or clinical studies in which we must infer the function of the menisci from external measures of knee motion. More recently, studies using magnetic resonance (MR) imaging have provided more clear visualization of the motion and deformation of the menisci within the tibio-femoral articulation. In this study, we used such images to generate a finite element model of the medial compartment of an ACL-deficient knee to reproduce the meniscal position under anterior loads of 45, 76, and 107 N. Comparisons of the model predictions to boundaries digitized from images acquired in the loaded states demonstrated general agreement, with errors localized to the anterior and posterior regions of the meniscus, areas in which large shear stresses were present. Our model results suggest that further attention is needed to characterize material properties of the peripheral and horn attachments. Although overall translation of the meniscus was predicted well, the changes in curvature and distortion of the meniscus in the posterior region were not captured by the model, suggesting the need for refinement of meniscal tissue properties.
机译:半月板被认为在ACL缺陷型膝关节中起稳定作用,并且已知在慢性不稳定膝关节中有退化的风险。我们对这种行为的大多数了解是基于离体实验或临床研究,在这些实验中,我们必须从外部膝盖运动量来推断半月板的功能。最近,使用磁共振(MR)成像的研究提供了更清晰的可视化,显示了胫股关节内半月板的运动和变形。在这项研究中,我们使用此类图像生成了ACL缺损膝关节内侧隔室的有限元模型,以在45、76和107 N的前向载荷下重现半月板位置。在加载状态下获取的图像显示出总体一致,误差位于半月板的前部和后部区域,即存在较大剪切应力的区域。我们的模型结果表明,需要进一步注意表征外围和喇叭附件的材料特性。尽管可以很好地预测半月板的整体平移,但是该模型并未捕获到后半部的半月板曲率和变形的变化,这表明需要完善半月板组织特性。

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