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Journal of the Mechanics and Physics of Solids|September 24, 2019
Mechanobiological Stability of Biological Soft TissuesMarcos Latorre, Jay D HumphreyAPL Bioengineering|May 10, 2019
Critical roles of time-scales in soft tissue growth and remodelingMarcos Latorre, Jay D HumphreyJournal of Biomedical Optics|April 14, 2015
Multimodal optical measurement in vitro of surface deformations and wall thickness of the pressurized aortic archKatia Genovese, Jay D HumphreyComputer Methods in Applied Mechanics and Engineering|July 14, 2020
Fast, Rate-Independent, Finite Element Implementation of a 3D Constrained Mixture Model of Soft Tissue Growth and RemodelingMarcos Latorre, Jay D HumphreyPlos Computational Biology|August 25, 2020
Cell signaling model for arterial mechanobiologyLinda Irons, Jay D HumphreyZeitschrift Fur Angewandte Mathematik Und Mechanik|January 9, 2019
A Mechanobiologically Equilibrated Constrained Mixture Model for Growth and Remodeling of Soft TissuesMarcos Latorre, Jay D HumphreyAmerican Journal of Physiology. Heart and Circulatory Physiology|November 10, 2018
Maladaptive aortic remodeling in hypertension associates with dysfunctional smooth muscle contractilityArina Korneva, Jay D HumphreyJournal of Biomechanics|October 3, 2003
A potential role of smooth muscle tone in early hypertension: a theoretical studyJay D Humphrey, Emily WilsonJournal of Biomechanical Engineering|August 22, 2003
A sub-domain inverse finite element characterization of hyperelastic membranes including soft tissuesPadmanabhan Seshaiyer, Jay D HumphreyBiomechanics and Modeling in Mechanobiology|June 9, 2018
Modeling mechano-driven and immuno-mediated aortic maladaptation in hypertensionMarcos Latorre, Jay D HumphreyPageof 25