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Evaluation of Viscoelastic Property of Articular Cartilage Based on Mechanical Model Considering Tissue Microstructure

机译:基于组织微观结构力学模型的关节软骨粘弹性评估

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References(24) Cited-By(1) The mechanical behavior of articular cartilage is strongly dependent on its microstructure characterized by three-dimensional, depth-dependent densities and anisotropic arrangements of cartilage cells and collagen fibres in extracellular matrix. The inclusion of cartilage microstructure to model analysis is essential for the accurate evaluation of the mechanical property. This study proposes a model-based evaluation method, which could predict tissue microstructure (collagen fibres, proteoglycans, and cartilage cells) based on a time history of reaction force obtained from indentation test, thereby estimating the depth-dependent cartilage mechanical property that is difficult to be estimated by experiment in conventional methods. The model was used for evaluating the viscoelasticities of cartilage at medial (load-supporting) and lateral (non load-supporting) regions on bovine femoral head. The present simulation allows fitting the time-history of reaction force measured from indentation test (R2 = 0.993 ± 0.0012 for lateral region and R2 = 0.990 ± 0.0032 for medial region). The differences of the elastic modulus of collagen fibre and the permeability between medial and lateral regions were consistent to those observed from the chemical composition analysis.
机译:参考文献(24)引用(1)关节软骨的力学行为在很大程度上取决于其微观结构,该微观结构的特征是三维,深度依赖的密度以及软骨细胞和胶原纤维在细胞外基质中的各向异性排列。将软骨微结构包括在模型分析中对于精确评估机械性能至关重要。这项研究提出了一种基于模型的评估方法,该方法可以根据从压痕测试获得的反作用力的时间历程来预测组织的微观结构(胶原纤维,蛋白聚糖和软骨细胞),从而估算难以获得的深度依赖性软骨力学性能可以通过常规方法中的实验进行估算。该模型用于评估牛股骨头内侧(支撑)和外侧(非支撑)区域的软骨粘弹性。本模拟可以拟合从压痕测试中测得的反作用力的时间历程(外侧区域R2 = 0.993±0.0012,内侧区域R2 = 0.990±0.0032)。胶原纤维的弹性模量以及内侧和外侧区域之间的渗透性的差异与从化学组成分析中观察到的一致。

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