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A Review of the Combination of Experimental Measurements and Fibril-Reinforced Modeling for Investigation of Articular Cartilage and Chondrocyte Response to Loading

机译:关节软骨和软骨细胞对负荷反应研究的实验测量和原纤维增强模型的组合的综述。

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摘要

The function of articular cartilage depends on its structure and composition, sensitively impaired in disease (e.g. osteoarthritis, OA). Responses of chondrocytes to tissue loading are modulated by the structure. Altered cell responses as an effect of OA may regulate cartilage mechanotransduction and cell biosynthesis. To be able to evaluate cell responses and factors affecting the onset and progression of OA, local tissue and cell stresses and strains in cartilage need to be characterized. This is extremely challenging with the presently available experimental techniques and therefore computational modeling is required. Modern models of articular cartilage are inhomogeneous and anisotropic, and they include many aspects of the real tissue structure and composition. In this paper, we provide an overview of the computational applications that have been developed for modeling the mechanics of articular cartilage at the tissue and cellular level. We concentrate on the use of fibril-reinforced models of cartilage. Furthermore, we introduce practical considerations for modeling applications, including also experimental tests that can be combined with the modeling approach. At the end, we discuss the prospects for patient-specific models when aiming to use finite element modeling analysis and evaluation of articular cartilage function, cellular responses, failure points, OA progression, and rehabilitation.
机译:关节软骨的功能取决于其结构和组成,在疾病(例如骨关节炎,OA)中被敏感地削弱。该结构调节软骨细胞对组织负荷的反应。 OA引起的细胞反应改变可能调节软骨机械转导和细胞生物合成。为了能够评估细胞反应和影响OA发作和进展的因素,需要对软骨中的局部组织和细胞应力及应变进行表征。利用当前可用的实验技术这是极具挑战性的,因此需要计算模型。关节软骨的现代模型是不均匀且各向异性的,并且它们包括真实组织结构和组成的许多方面。在本文中,我们提供了在组织和细胞水平上建模关节软骨力学的计算应用程序的概述。我们专注于使用纤维增强的软骨模型。此外,我们介绍了建模应用程序的实际考虑因素,包括可以与建模方法结合使用的实验测试。最后,我们讨论了针对特定患者模型的前景,旨在使用有限元建模分析和评估关节软骨功能,细胞反应,衰竭点,OA进展和康复。

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