静态胫骨股骨有限元模型中半月板建模假设的影响:几何形状比材料更重要。

IF 3 3区 医学 Q2 BIOPHYSICS Biomechanics and Modeling in Mechanobiology Pub Date : 2024-02-13 DOI:10.1007/s10237-024-01822-w
Jiacheng Yao, John Crockett, Mathias D’Souza, Gavin A. Day, Ruth K. Wilcox, Alison C. Jones, Marlène Mengoni
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引用次数: 0

摘要

胫骨-股骨关节的有限元研究在研究中的应用越来越多,通常关注的是材料模型。很少有研究评估基于图像的模型中半月板建模假设对接触力学结果的影响。这项研究旨在评估半月板建模假设对膝关节接触力学和半月板运动学的影响。使用三个特定标本的胫股骨模型和一个通用膝关节模型进行了敏感性分析。通过创建 40 个模型实例,对半月板附着在胫骨上的假设(根部形状和附着位置)、半月板的材料属性、半月板形状和关节对齐情况进行了评估。半月板的材料参数值和牙根附着位置对总接触面积影响较小,但对半月板位移或髁突之间的力平衡影响不大。使用三维形状而不是弹簧来表示根部对半月板位移有很大影响,但对膝关节接触面积没有影响。半月板形状和膝关节排列的变化对所有相关结果的影响都很大,其差异是材料特性影响的 2 到 6 倍。敏感性研究表明了半月板形状和膝关节排列对半月板运动学和膝关节接触力学的重要性,两者都比材料特性或根部位置更重要。研究还显示,不同膝关节之间的差异很大,这表明应避免使用单一几何形状对建模研究进行临床解释。
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Effect of meniscus modelling assumptions in a static tibiofemoral finite element model: importance of geometry over material

Finite element studies of the tibiofemoral joint have increased use in research, with attention often placed on the material models. Few studies assess the effect of meniscus modelling assumptions in image-based models on contact mechanics outcomes. This work aimed to assess the effect of modelling assumptions of the meniscus on knee contact mechanics and meniscus kinematics. A sensitivity analysis was performed using three specimen-specific tibiofemoral models and one generic knee model. The assumptions in representing the meniscus attachment on the tibia (shape of the roots and position of the attachment), the material properties of the meniscus, the shape of the meniscus and the alignment of the joint were evaluated, creating 40 model instances. The values of material parameters for the meniscus and the position of the root attachment had a small influence on the total contact area but not on the meniscus displacement or the force balance between condyles. Using 3D shapes to represent the roots instead of springs had a large influence in meniscus displacement but not in knee contact area. Changes in meniscus shape and in knee alignment had a significantly larger influence on all outcomes of interest, with differences two to six times larger than those due to material properties. The sensitivity study demonstrated the importance of meniscus shape and knee alignment on meniscus kinematics and knee contact mechanics, both being more important than the material properties or the position of the roots. It also showed that differences between knees were large, suggesting that clinical interpretations of modelling studies using single geometries should be avoided.

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来源期刊
Biomechanics and Modeling in Mechanobiology
Biomechanics and Modeling in Mechanobiology 工程技术-工程:生物医学
CiteScore
7.10
自引率
8.60%
发文量
119
审稿时长
6 months
期刊介绍: Mechanics regulates biological processes at the molecular, cellular, tissue, organ, and organism levels. A goal of this journal is to promote basic and applied research that integrates the expanding knowledge-bases in the allied fields of biomechanics and mechanobiology. Approaches may be experimental, theoretical, or computational; they may address phenomena at the nano, micro, or macrolevels. Of particular interest are investigations that (1) quantify the mechanical environment in which cells and matrix function in health, disease, or injury, (2) identify and quantify mechanosensitive responses and their mechanisms, (3) detail inter-relations between mechanics and biological processes such as growth, remodeling, adaptation, and repair, and (4) report discoveries that advance therapeutic and diagnostic procedures. Especially encouraged are analytical and computational models based on solid mechanics, fluid mechanics, or thermomechanics, and their interactions; also encouraged are reports of new experimental methods that expand measurement capabilities and new mathematical methods that facilitate analysis.
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