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Annals of Biomedical Engineering|February 21, 2015
An Experimental-Computational Study of Catheter Induced Alterations in Pulse Wave Velocity in Anesthetized MiceFederica Cuomo, Jacopo Ferruzzi, Jay D Humphrey, et al.Scientific Reports|October 17, 2020
A nonlinear rotation-free shell formulation with prestressing for vascular biomechanicsNitesh Nama, Miquel Aguirre, Jay D Humphrey, et al.Plos Computational Biology|January 18, 2017
A General Shear-Dependent Model for Thrombus FormationAlireza Yazdani, He Li, Jay D Humphrey, 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.Journal of Biomechanical Engineering|August 3, 2005
Stress distribution in a circular membrane with a central fixationDaisuke Mori, Guido David, Jay D Humphrey, et al.Plos One|September 8, 2018
Combining in vivo and in vitro biomechanical data reveals key roles of perivascular tethering in central artery functionJacopo Ferruzzi, Paolo Di Achille, George Tellides, et al.Computer Methods in Applied Mechanics and Engineering|January 8, 2021
Non-invasive Inference of Thrombus Material Properties with Physics-Informed Neural NetworksMinglang Yin, Xiaoning Zheng, Jay D Humphrey, et al.Journal of Biomechanics|December 1, 2014
Myh11(R247C/R247C) mutations increase thoracic aorta vulnerability to intramural damage despite a general biomechanical adaptivityChiara Bellini, Shanzhi Wang, Dianna M Milewicz, et al.International Journal for Numerical Methods in Biomedical Engineering|April 28, 2017
Potential biomechanical roles of risk factors in the evolution of thrombus-laden abdominal aortic aneurysmsLana Virag, John S Wilson, Jay D Humphrey, et al.Arxiv|November 24, 2025
Physics-Informed Machine Learning in Biomedical Science and EngineeringNazanin Ahmadi, Qianying Cao, Jay D Humphrey, et al.Pageof 25