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在膝关节的有限元模型中是否应考虑人半月板组成成分随深度的天然分布情况?

Should a native depth-dependent distribution of human meniscus constitutive components be considered in FEA-models of the knee joint?

作者信息

Párraga Quiroga J M, Emans P, Wilson W, Ito K, van Donkelaar C C

机构信息

Department of Biomedical Engineering, Eindhoven University of Technology, PO Box 513, 5600 MB Eindhoven, The Netherlands.

Department of Orthopaedic Surgery, University Hospital Maastricht, PO Box 7500, 6202 AZ Maastricht, The Netherlands.

出版信息

J Mech Behav Biomed Mater. 2014 Oct;38:242-50. doi: 10.1016/j.jmbbm.2014.03.005. Epub 2014 Apr 2.

Abstract

The depth-dependent matrix composition of articular cartilage is important for its mechanical behavior. It is unknown whether the depth-dependent matrix composition of a meniscus is similarly important for its load-bearing function. The present objective was to determine whether it is necessary to account for the native distribution of matrix components in the cross-sectional plane of the meniscus, when studying its mechanical behavior in numerical models. To address this objective, measured depth-dependent distribution of matrix contents in the human meniscus, and fitted visco-elastic mechanical properties of the collagen were used as input in FEA simulations of a knee joint. The importance of including the depth-dependent matrix component constitution in the meniscus was determined by comparing simulations with an axisymmetric representation of the knee joint, which incorporated either the depth-dependent matrix composition or homogenized matrix. Depth-dependent differences in water, collagen and proteoglycan contents were observed, but these were not significantly different. The anterior region, with significantly higher collagen content, was statistically stiffer than the posterior region. However, depth wise, stiffness did not correlate to the constitution of the tissue. GAG content was significantly higher in the posterior than in the anterior region. Visco-elastic properties of meniscus collagen were fitted against tensile test data. Simulations show that the distribution of stresses and strains in the cartilage is slightly low when the meniscus contains a depth-dependent constitution, but this difference is only modest. Therefore, this study suggests that knee joint mechanics is rather insensitive to the distribution of constitutive components in the cross section of the meniscus, and that the depth-dependent matrix distribution of the meniscus is not essential to be included in axisymmetric computational models of the knee joint.

摘要

关节软骨的深度依赖性基质组成对其力学行为很重要。半月板的深度依赖性基质组成对其承重功能是否同样重要尚不清楚。本研究的目的是确定在数值模型中研究半月板的力学行为时,是否有必要考虑半月板横截面上基质成分的天然分布。为了实现这一目标,将测量得到的人半月板中基质含量的深度依赖性分布以及拟合得到的胶原蛋白粘弹性力学性能作为膝关节有限元模拟的输入。通过将模拟结果与膝关节的轴对称模型进行比较,来确定在半月板中纳入深度依赖性基质成分组成的重要性,该轴对称模型要么包含深度依赖性基质组成,要么包含均质化基质。观察到水、胶原蛋白和蛋白聚糖含量存在深度依赖性差异,但这些差异并不显著。胶原蛋白含量显著更高的前部区域在统计学上比后部区域更硬。然而,在深度方向上,刚度与组织组成无关。后部区域的糖胺聚糖含量显著高于前部区域。根据拉伸试验数据拟合了半月板胶原蛋白的粘弹性特性。模拟结果表明,当半月板包含深度依赖性组成时,软骨中的应力和应变分布略低,但这种差异仅为适度。因此,本研究表明膝关节力学对半月板横截面上组成成分的分布相当不敏感,并且半月板的深度依赖性基质分布对于膝关节轴对称计算模型来说并非必须纳入。

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