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Plos Computational Biology|January 18, 2017
A General Shear-Dependent Model for Thrombus FormationAlireza Yazdani, He Li, Jay D Humphrey, et al.
Cells & Development|October 19, 2024
Transcriptional regulation of postnatal aortic developmentD Weiss, N Yeung, A B Ramachandra, et al.
Journal of Biomechanics|December 27, 2023
Tempol improves aortic mechanics in a mouse model of hypertensionJustyna A Niestrawska, Bart Spronck, Cristina Cavinato, et al.
Nature|March 29, 2002
Active fluidization of polymer networks through molecular motorsD Humphrey, C Duggan, D Saha, et al.
Annals of Biomedical Engineering|June 14, 2015
A Computational Model of Biochemomechanical Effects of Intraluminal Thrombus on the Enlargement of Abdominal Aortic AneurysmsLana Virag, John S Wilson, Jay D Humphrey, et al.
Vision Research|May 1, 2007
Regional mechanical properties and stress analysis of the human anterior lens capsuleR M Pedrigi, G David, J Dziezyc, et al.
Biomechanics and Modeling in Mechanobiology|August 24, 2004
On atomic force microscopy and the constitutive behavior of living cellsS Na, Z Sun, G A Meininger, et al.
Biomechanics and Modeling in Mechanobiology|January 6, 2009
Origin of axial prestretch and residual stress in arteriesL Cardamone, A Valentín, J F Eberth, et al.
Medical Engineering & Physics|July 12, 2011
Mechanical properties of suprarenal and infrarenal abdominal aorta: implications for mouse models of aneurysmsM J Collins, M Bersi, E Wilson, et al.
Plos Computational Biology|October 31, 2022
G2Φnet: Relating genotype and biomechanical phenotype of tissues with deep learningEnrui Zhang, Bart Spronck, Jay D Humphrey, et al.
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