2022
Cardiac Magnetic Resonance to Predict Coronary Artery Compression in Transcatheter Pulmonary Valve Implantation Into Conduits
Romans RA, Lu JC, Balasubramanian S, Whiteside W, Yu S, Aldoss OT, Armstrong AK, Boe BA, Balzer DT, Christensen JT, Jones TK, Keeshan B, McLennan D, Nicholson GT, Patel N, Salavitabar A, Shahanavaz S, Sullivan PM, Turner ME, Zampi JD. Cardiac Magnetic Resonance to Predict Coronary Artery Compression in Transcatheter Pulmonary Valve Implantation Into Conduits. JACC Cardiovascular Interventions 2022, 15: 979-988. PMID: 35512922, DOI: 10.1016/j.jcin.2022.02.047.Peer-Reviewed Original ResearchConceptsTranscatheter pulmonary valve implantationCardiac magnetic resonanceRV-PA conduitCA compressionCoronary artery compressionPulmonary valve implantationArtery compressionValve implantationCoronary anatomyBalloon testingStenotic areaAbnormal coronary anatomyPulmonary artery conduitInstitutional review board approvalDysfunctional right ventricleReview board approvalNegative predictive valueConduit calcificationArtery conduitAbsolute contraindicationPatient selectionRight ventricleSubjective assessmentCMR studiesBoard approval
2017
Ventricular arrhythmias immediately following transcatheter pulmonary valve implantation: A cause for concern?
Simmons MA, Elder RW, Shabanova V, Hellenbrand W, Asnes J. Ventricular arrhythmias immediately following transcatheter pulmonary valve implantation: A cause for concern? Catheterization And Cardiovascular Interventions 2017, 91: 920-926. PMID: 29280541, DOI: 10.1002/ccd.27454.Peer-Reviewed Original ResearchConceptsTranscatheter pulmonary valve implantationRight ventricular outflow tractNative outflow tractsSignificant ventricular arrhythmiasPulmonary valve implantationVentricular arrhythmiasOutflow tractValve implantationAnti-arrhythmic medicationsBeta-blocker therapySingle-center studyVentricular outflow tractLong-term therapySudden cardiac deathCare of patientsChange of doseHemodynamic instabilityHemodynamic compromiseCardiac deathMedian ageMedical therapyPediatric patientsSignificant arrhythmiasCenter studyTerm therapyVirtual Surgery for Conduit Reconstruction of the Right Ventricular Outflow Tract
Ong CS, Loke YH, Opfermann J, Olivieri L, Vricella L, Krieger A, Hibino N. Virtual Surgery for Conduit Reconstruction of the Right Ventricular Outflow Tract. World Journal For Pediatric And Congenital Heart Surgery 2017, 8: 391-393. PMID: 28520540, PMCID: PMC5695863, DOI: 10.1177/2150135117692777.Peer-Reviewed Original ResearchConceptsRight ventricular outflow tractVentricular outflow tractCardiac surgeryOutflow tractPulmonary artery conduit replacementTranscatheter pulmonary valve implantationRV-PA conduitPulmonary valve implantationIndividual patient dataHistory of tetralogyPatient's own heartConduit sizeVirtual surgeryImplantation of prosthesesConduit replacementImplantation of devicesPreoperative magnetic resonance imaging (MRI) dataPulmonary atresiaYoung adolescent malesValve implantationConduit reconstructionIntrathoracic spaceRight ventricleMagnetic resonance imaging dataPatient education
2012
Melody Valve Implant Within Failed Bioprosthetic Valves in the Pulmonary Position
Gillespie MJ, Rome JJ, Levi DS, Williams RJ, Rhodes JF, Cheatham JP, Hellenbrand WE, Jones TK, Vincent JA, Zahn EM, McElhinney DB. Melody Valve Implant Within Failed Bioprosthetic Valves in the Pulmonary Position. Circulation Cardiovascular Interventions 2012, 5: 862-870. PMID: 23212395, DOI: 10.1161/circinterventions.112.972216.Peer-Reviewed Original ResearchMeSH KeywordsAdolescentAdultArterial PressureBioprosthesisCardiac CatheterizationChildChild, PreschoolEndocarditisFemaleHeart Valve ProsthesisHeart Valve Prosthesis ImplantationHumansKaplan-Meier EstimateMaleMiddle AgedProsthesis DesignProsthesis FailurePulmonary ArteryPulmonary ValvePulmonary Valve InsufficiencyRetrospective StudiesTime FactorsTreatment OutcomeUnited StatesVentricular Function, RightVentricular PressureYoung AdultConceptsTranscatheter pulmonary valve implantationPulmonary valve implantationMelody valveValve implantationBioprosthetic valvesPulmonary positionRight ventricular outflow tract dysfunctionRight ventricular outflow tract gradientLow procedure-related morbidityRight ventricular systolic pressureVentricular outflow tract gradientExcellent short-term resultsMelody valve implantationPreliminary multicenter experiencePulmonary artery gradientTranscatheter treatment optionsOutflow tract gradientOff-label indicationsVentricular systolic pressureProcedure-related morbidityCases of endocarditisShort-term resultsBPV procedureTract gradientTract dysfunction
2011
Stent Fracture, Valve Dysfunction, and Right Ventricular Outflow Tract Reintervention After Transcatheter Pulmonary Valve Implantation
McElhinney DB, Cheatham JP, Jones TK, Lock JE, Vincent JA, Zahn EM, Hellenbrand WE. Stent Fracture, Valve Dysfunction, and Right Ventricular Outflow Tract Reintervention After Transcatheter Pulmonary Valve Implantation. Circulation Cardiovascular Interventions 2011, 4: 602-614. PMID: 22075927, DOI: 10.1161/circinterventions.111.965616.Peer-Reviewed Original ResearchMeSH KeywordsAdolescentAdultCardiac CatheterizationChildEquipment FailureHeart Valve DiseasesHeart Valve ProsthesisHeart Valve Prosthesis ImplantationHeart VentriclesHumansKaplan-Meier EstimateMiddle AgedMultivariate AnalysisPulmonary ValveRetrospective StudiesRisk FactorsStentsTetralogy of FallotTransposition of Great VesselsUnited StatesVentricular Outflow ObstructionYoung AdultConceptsVentricular outflow tract reinterventionAnterior chest wallRVOT reinterventionStent fractureBioprosthetic valvesChest wallRight ventricular outflow tract reinterventionTranscatheter pulmonary valve implantationTranscatheter pulmonary valve replacementInvestigational device exemption trialPulmonary valve replacementPulmonary valve implantationRVOT conduitTPV implantationMelody valveMulticenter experienceValve dysfunctionValve replacementLonger freedomValve implantationMultivariable analysisShorter freedomPrior catheterizationRisk factorsReintervention
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