Virtual surgical planning, flow simulation, and 3-dimensional electrospinning of patient-specific grafts to optimize Fontan hemodynamics
Siallagan D, Loke YH, Olivieri L, Opfermann J, Ong CS, de Zélicourt D, Petrou A, Daners MS, Kurtcuoglu V, Meboldt M, Nelson K, Vricella L, Johnson J, Hibino N, Krieger A. Virtual surgical planning, flow simulation, and 3-dimensional electrospinning of patient-specific grafts to optimize Fontan hemodynamics. Journal Of Thoracic And Cardiovascular Surgery 2017, 155: 1734-1742. PMID: 29361303, PMCID: PMC5860962, DOI: 10.1016/j.jtcvs.2017.11.068.Peer-Reviewed Original ResearchMeSH KeywordsBlood Vessel ProsthesisBlood Vessel Prosthesis ImplantationComputer-Aided DesignFontan ProcedureHeart Defects, CongenitalHemodynamicsHumansHydrodynamicsMagnetic Resonance AngiographyModels, CardiovascularPatient-Specific ModelingPredictive Value of TestsPrinting, Three-DimensionalProsthesis DesignPulmonary ArteryPulmonary CirculationSurgery, Computer-AssistedTreatment OutcomeWorkflowConceptsHepatic flow distributionComputational fluid dynamics simulationsBalanced hepatic flow distributionFluid dynamics simulationsTissue-engineered vascular graftsPatient-specific designFontan geometryPatient-specific graftsCFD simulationsCFD resultsPower lossFlow simulationsComputer-aided designFlow distributionAlternative designsSimulationsGraft designVascular graftsStandard image segmentationDesignDynamics simulationsVirtual surgical planningElectrospinningGeometryFontan hemodynamics
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