Mansoor A. Haider
Affiliations: | North Carolina State University, Raleigh, NC |
Area:
MathematicsGoogle:
"Mansoor Haider"Children
Sign in to add traineeRichard C. Schugart | grad student | 2005 | NCSU |
Brandy A. Benedict | grad student | 2008 | NCSU |
Janine M. Haugh | grad student | 2010 | NCSU |
Ahlam E. Elashegh | grad student | 2014 | NCSU |
Amanda J. Mangum | grad student | 2014 | NCSU |
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Publications
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Olson SD, Haider MA. (2019) A computational reaction-diffusion model for biosynthesis and linking of cartilage extracellular matrix in cell-seeded scaffolds with varying porosity. Biomechanics and Modeling in Mechanobiology |
BATTISTA C, BIA D, GERMÁN YZ, et al. (2015) WAVE PROPAGATION IN A 1D FLUID DYNAMICS MODEL USING PRESSURE-AREA MEASUREMENTS FROM OVINE ARTERIES Journal of Mechanics in Medicine and Biology |
Aristotelous AC, Haider MA. (2014) Use of hybrid discrete cellular models for identification of macroscopic nutrient loss in reaction-diffusion models of tissues. International Journal For Numerical Methods in Biomedical Engineering. 30: 767-80 |
Haider MA, Olander JE, Arnold RF, et al. (2011) A phenomenological mixture model for biosynthesis and linking of cartilage extracellular matrix in scaffolds seeded with chondrocytes. Biomechanics and Modeling in Mechanobiology. 10: 915-24 |
Valdez-Jasso D, Bia D, Zócalo Y, et al. (2011) Linear and nonlinear viscoelastic modeling of aorta and carotid pressure-area dynamics under in vivo and ex vivo conditions. Annals of Biomedical Engineering. 39: 1438-56 |
Hu Z, Haider MA. (2011) Algebraic multigrid preconditioning for finite element solution of inhomogeneous elastic inclusion problems in articular cartilage Advances in Applied Mathematics and Mechanics. 3: 729-744 |
Steele BN, Valdez-Jasso D, Haider MA, et al. (2011) Predicting arterial flow and pressure dynamics using a 1D fluid dynamics model with a viscoelastic wall Siam Journal On Applied Mathematics. 71: 1123-1143 |
Kim E, Guilak F, Haider MA. (2010) An axisymmetric boundary element model for determination of articular cartilage pericellular matrix properties in situ via inverse analysis of chondron deformation. Journal of Biomechanical Engineering. 132: 031011 |
Stuebner M, Haider MA. (2010) A fast quadrature-based numerical method for the continuous spectrum biphasic poroviscoelastic model of articular cartilage. Journal of Biomechanics. 43: 1835-9 |
Nettles DL, Haider MA, Chilkoti A, et al. (2010) Neural network analysis identifies scaffold properties necessary for in vitro chondrogenesis in elastin-like polypeptide biopolymer scaffolds. Tissue Engineering. Part A. 16: 11-20 |