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Medical Engineering & Physics|October 11, 2016
Isolated effects of external bath osmolality, solute concentration, and electrical charge on solute transport across articular cartilageBehdad Pouran, Vahid Arbabi, Amir A Zadpoor, et al.Journal of Visualized Experiments : Jove|May 19, 2017
An Experimental and Finite Element Protocol to Investigate the Transport of Neutral and Charged Solutes across Articular CartilageVahid Arbabi, Behdad Pouran, Amir A Zadpoor, et al.Journal of Biomechanics|July 10, 2016
Combined inverse-forward artificial neural networks for fast and accurate estimation of the diffusion coefficients of cartilage based on multi-physics modelsVahid Arbabi, Behdad Pouran, Harrie Weinans, et al.Journal of Biomechanics|October 30, 2016
Neutral solute transport across osteochondral interface: A finite element approachVahid Arbabi, Behdad Pouran, Harrie Weinans, et al.Computers in Biology and Medicine|September 28, 2016
Application of multiphysics models to efficient design of experiments of solute transport across articular cartilageBehdad Pouran, Vahid Arbabi, Harrie Weinans, et al.Journal of Biomechanics|April 2, 2016
Multiphasic modeling of charged solute transport across articular cartilage: Application of multi-zone finite-bath modelVahid Arbabi, Behdad Pouran, Harrie Weinans, et al.Scientific Reports|March 11, 2026
A micro-CT-integrated 3D simulation framework reveals fluid transport mechanisms and void dynamics in root canal biomaterialsAmir Raoof, Maryam Raoof, Hossein Fathi, et al.Journal of Biomechanics|March 6, 2016
Determination of the mechanical and physical properties of cartilage by coupling poroelastic-based finite element models of indentation with artificial neural networksVahid Arbabi, Behdad Pouran, Gianni Campoli, et al.Materials Science & Engineering. C, Materials for Biological Applications|May 10, 2017
Effects of plasma electrolytic oxidation process on the mechanical properties of additively manufactured porous biomaterialsZahra Gorgin Karaji, Reza Hedayati, Behdad Pouran, et al.Journal of Biomechanics|September 24, 2016
Guidelines for an optimized indentation protocol for measurement of cartilage stiffness: The effects of spatial variation and indentation parametersParisa R Moshtagh, Behdad Pouran, Nicoline M Korthagen, et al.Pageof 4