Analytical description of growth
1982/02/01 by Richard Skalak, R. Skalak, Gautam Dasgupta +7 · 28 citations
Engineering · #Advanced Theoretical and Applied Studies in Material Sciences and Geometry #Structural Analysis and Optimization #Architecture and Computational Design
paper · doi:10.1016/0022-5193(82)90301-0
Citations
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- On the theory of reactive mixtures for modeling biological growth. [europepmc]
- Vascular extracellular matrix and arterial mechanics. [europepmc]
- Continuum modeling of biological tissue growth by cell division, and alteration of intracellular osmolytes and extracellular fixed charge density. [europepmc]
- Multigenerational interstitial growth of biological tissues. [europepmc]
- The role of mass balance equations in growth mechanics illustrated in surface and volume dissolutions. [europepmc]
- Perspectives on biological growth and remodeling. [europepmc]
- Modeling cardiac electromechanics and mechanoelectrical coupling in dyssynchronous and failing hearts: insight from adaptive computer models. [europepmc]
- Mechanics of Cell Growth. [europepmc]
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- Computational modeling of hypertensive growth in the human carotid artery. [europepmc]
- A mixture approach to investigate interstitial growth in engineering scaffolds. [europepmc]
- Tuning tissue growth with scaffold degradation in enzyme-sensitive hydrogels: a mathematical model. [europepmc]
- Effective equations governing an active poroelastic medium. [europepmc]
- 3-dimensional metrics of proximal femoral shape deformities in Legg-Calvé-Perthes disease and slipped capital femoral epiphysis. [europepmc]
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- Computational Modeling in Liver Surgery. [europepmc]
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- Kinetics of surface growth with coupled diffusion and the emergence of a universal growth path. [europepmc]
- Physics of growing biological tissues: the complex cross-talk between cell activity, growth and resistance. [europepmc]
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- Mechanobiological Stability of Biological Soft Tissues. [europepmc]
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- Investigation of Pathophysiological Aspects of Aortic Growth, Remodeling, and Failure Using a Discrete-Fiber Microstructural Model. [europepmc]
- A universal power law for modelling the growth and form of teeth, claws, horns, thorns, beaks, and shells. [europepmc]
- Mechano-regulated cell-cell signaling in the context of cardiovascular tissue engineering. [europepmc]