Neutral solute transport across osteochondral interface: A finite element approach
Author:
Publisher
Elsevier BV
Subject
Rehabilitation,Biomedical Engineering,Orthopedics and Sports Medicine,Biophysics
Reference23 articles.
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2. Combined inverse-forward artificial neural networks for fast and accurate estimation of the diffusion coefficients of cartilage based on multi-physics models;Arbabi;J. Biomech.,2016
3. Multiphasic modeling of charged solute transport across articular cartilage: application of multi-zone finite-bath model;Arbabi;J. Biomech.,2016
4. Solute transport in the deep and calcified zones of articular cartilage;Arkill;Osteoarthr. Cartil.,2008
5. Finite element modeling of solutes in hydrated deformable biological tissues;Ateshian,2013
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1. Diagnostic and Therapeutic Role of Extracellular Vesicles in Articular Cartilage Lesions and Degenerative Joint Diseases;Frontiers in Bioengineering and Biotechnology;2021-08-04
2. Topographic features of nano-pores within the osteochondral interface and their effects on transport properties –a 3D imaging and modeling study;Journal of Biomechanics;2021-06
3. Macro, Micro, and Molecular. Changes of the Osteochondral Interface in Osteoarthritis Development;Frontiers in Cell and Developmental Biology;2021-05-10
4. Quantitative dual contrast photon-counting computed tomography for assessment of articular cartilage health;Scientific Reports;2021-03-10
5. Osteoarthritis: New Strategies for Transport and Drug Delivery Across Length Scales;ACS Biomaterials Science & Engineering;2020-10-21
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