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Merck
CN
  • Computational aspects in mechanical modeling of the articular cartilage tissue.

Computational aspects in mechanical modeling of the articular cartilage tissue.

Proceedings of the Institution of Mechanical Engineers. Part H, Journal of engineering in medicine (2013-05-03)
Hadi Mohammadi, Kibret Mequanint, Walter Herzog
摘要

This review focuses on the modeling of articular cartilage (at the tissue level), chondrocyte mechanobiology (at the cell level) and a combination of both in a multiscale computation scheme. The primary objective is to evaluate the advantages and disadvantages of conventional models implemented to study the mechanics of the articular cartilage tissue and chondrocytes. From monophasic material models as the simplest form to more complicated multiscale theories, these approaches have been frequently used to model articular cartilage and have contributed significantly to modeling joint mechanics, addressing and resolving numerous issues regarding cartilage mechanics and function. It should be noted that attentiveness is important when using different modeling approaches, as the choice of the model limits the applications available. In this review, we discuss the conventional models applicable to some of the mechanical aspects of articular cartilage such as lubrication, swelling pressure and chondrocyte mechanics and address some of the issues associated with the current modeling approaches. We then suggest future pathways for a more realistic modeling strategy as applied for the simulation of the mechanics of the cartilage tissue using multiscale and parallelized finite element method.

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硫酸软骨素A 钠盐 来源于牛气管, lyophilized powder, BioReagent, suitable for cell culture
硫酸软骨素 钠盐, European Pharmacopoeia (EP) Reference Standard
硫酸软骨素 钠盐, European Pharmacopoeia (EP) Reference Standard