Publication | Closed Access
3-D Numerical Simulation of Blood Flow Through Models of the Human Aorta
137
Citations
33
References
2005
Year
Numerical AnalysisComputed TomographyEngineeringHuman AortaFluid MechanicsCt ScansBiomedical EngineeringComputational MechanicsBlood FlowAortic ArchNumerical Simulation3-D Numerical SimulationModeling And SimulationBiofluid DynamicBlood Flow MeasurementRadiologySpiral Computerized TomographyCardiovascular ImagingHealth SciencesVascular ImageMedical ImagingBiomedical ModelingMedical Image ComputingMultiphase FlowBiomedical FlowBiomedical ImagingMultiscale Modeling
A Spiral Computerized Tomography (CT) scan of the aorta were obtained from a single subject and three model variations were examined. Computational fluid dynamics modeling of all three models showed variations in the velocity contours along the aortic arch with differences in the boundary layer growth and recirculation regions. Further down-stream, all three models showed very similar velocity profiles during maximum velocity with differences occurring in the decelerating part of the pulse. Flow patterns obtained from transient 3-D computational fluid dynamics are influenced by different reconstruction methods and the pulsatility of the flow. Caution is required when analyzing models based on CT scans.
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