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Frontiers in Bioengineering and Biotechnology|March 28, 2022
Haemodynamic Wall Shear Stress, Endothelial Permeability and Atherosclerosis-A Triad of ControversyPeter D WeinbergBiorheology|July 18, 2002
Disease patterns at arterial branches and their relation to flowPeter D WeinbergJournal of Plant Physiology|July 13, 2005
Analysis of the variable effect of dietary vitamin E supplements on experimental atherosclerosisPeter D WeinbergJournal of Vascular Research|January 17, 2004
Rate-limiting steps in the development of atherosclerosis: the response-to-influx theoryPeter D WeinbergExperimental Physiology|April 28, 2004
Effect of time of day and rabbit strain on patterns of aortic wall permeabilityTracey J Staughton, Peter D WeinbergJournal of Biomechanics|October 19, 2006
Twenty-fold difference in hemodynamic wall shear stress between murine and human aortasPeter D Weinberg, C Ross EthierTissue Barriers|September 20, 2021
S1P in the development of atherosclerosis: roles of hemodynamic wall shear stress and endothelial permeabilityChristina M Warboys, Peter D WeinbergScanning|June 7, 2005
Use of a desktop scanner and spreadsheet software for mapping arterial diseaseStephanie G Cremers, Peter D WeinbergJournal of the Royal Society, Interface|August 23, 2023
Biomechanical determinants of endothelial permeability assessed in standard and modified hollow-fibre bioreactorsStephen G Gray, Peter D WeinbergCardiovascular Engineering and Technology|August 22, 2020
The Role of Tricellular Junctions in the Transport of Macromolecules Across EndotheliumMean Ghim, Yumnah Mohamied, Peter D WeinbergPageof 9