article Open AccessTop 10% cited
Non-Newtonian blood flow in human right coronary arteries: steady state simulations
Journal of Biomechanics · 2003 · Vol. 37(5) · pp. 709–720
Barbara M. Johnston(Griffith University)Peter R. Johnston✉(Griffith University)Stuart Corney(University of Tasmania)Thomas Kilpatrick(University of Tasmania)
Coronary Interventions and DiagnosticsCardiovascular Function and Risk FactorsCardiac Imaging and DiagnosticsShear stressNewtonian fluidNon-Newtonian fluidMechanicsGeneralized Newtonian fluidBlood flowShear (geology)Shear flowHerschel–Bulkley fluidCoronary arteries
MeSH terms
ArteriesBlood Flow VelocityBlood PressureBlood ViscosityComputer SimulationCoronary VesselsHemostasisHumansModels, CardiovascularSensitivity and SpecificityReproducibility of ResultsCoronary AngiographyNonlinear DynamicsHemorheologyFinite Element Analysis
Funding
- Griffith University
- Medical Research Council
- National Health and Medical Research Council
Citations
665
FWCI
7.33
field-weighted impact
References
27
Percentile
97%
vs. same field & year
Citations per year
References
Acute Vascular Endothelial Changes Associated with Increased Blood Velocity Gradients
Circulation Research · 1968 · 1,242 citations
Biomechanics. Mechanical Properties of Living Tissues
Journal of Applied Mechanics · 1982 · 6,060 citations
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