Numerical investigation of role of synovial fluid in a poroelastic model of natural human knee joint during walking

Hossein Bahreinizad, H. N. Oscuii
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引用次数: 2

Abstract

In natural human knee joint, articular cartilage and meniscus are consisted of a solid phase and a fluid phase. Furthermore, considering synovial fluid as the lubricant and interaction between synovial fluid and surrounding poroelastic tissues are necessary for lubrication of the knee joint. Therefore, the poroelastic model of the human knee joint is essential for understanding of mechanical behavior of the knee joint. Unfortunately, most of the studies in the knee joint considered it as single phase. In this paper, an ideal poroelastic model of the knee joint was developed, and mechanical behavior of the knee joint during walking was investigated. Poroelastic material was used for articular cartilage, anisotropic poroelastic material was used for meniscus and linear elastic material was used for femur. In this study stress in solid phase and pressure in fluid phase was investigated. Results of this study have shown that 72% of load was carried by the fluid phase.
滑液在人体自然膝关节孔弹性模型中作用的数值研究
在人的天然膝关节中,关节软骨和半月板分为固体期和液体期。此外,考虑滑液作为润滑剂以及滑液与周围孔弹性组织的相互作用是润滑膝关节的必要条件。因此,人体膝关节的孔弹性模型对于理解膝关节的力学行为是必不可少的。不幸的是,大多数关于膝关节的研究都认为它是单相的。建立了理想的膝关节孔弹性模型,研究了膝关节在行走过程中的力学行为。关节软骨采用孔弹性材料,半月板采用各向异性孔弹性材料,股骨采用线弹性材料。本文研究了固相应力和液相压力。本研究结果表明,72%的负荷由流体相承载。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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