2018
Initial results from the off‐label use of the SAPIEN S3 valve for percutaneous transcatheter pulmonary valve replacement: A multi‐institutional experience
Sinha S, Aboulhosn J, Asnes J, Bocks M, Zahn E, Goldstein BH, Zampi J, Hellenbrand W, Salem M, Levi D. Initial results from the off‐label use of the SAPIEN S3 valve for percutaneous transcatheter pulmonary valve replacement: A multi‐institutional experience. Catheterization And Cardiovascular Interventions 2018, 93: 455-463. PMID: 30537348, DOI: 10.1002/ccd.27973.Peer-Reviewed Original ResearchMeSH KeywordsAdolescentAdultBalloon ValvuloplastyCardiac CatheterizationCardiac Surgical ProceduresChildFemaleHeart Defects, CongenitalHeart Valve ProsthesisHeart Valve Prosthesis ImplantationHumansMalePostoperative ComplicationsProsthesis DesignPulmonary ValvePulmonary Valve InsufficiencyRecovery of FunctionRetrospective StudiesRisk FactorsTime FactorsTreatment OutcomeUnited StatesYoung AdultConceptsTranscatheter pulmonary valve replacementRight ventricular outflow tractDysfunctional right ventricular outflow tractsSapien S3 valvePercutaneous transcatheter pulmonary valve replacementCongenital heart diseaseTricuspid valve injuryPulmonary valve replacementS3 valveSAPIEN S3Valve injuryValve replacementNative right ventricular outflow tractSerious procedural complicationsVentricular outflow tractMulti-center experienceMulti-institutional experienceOff-label useShort-term resultsAortic compressionValve embolizationPerivalvular leakProcedural deathsClinical followMajor complicationsIntentional Fracture of Bioprosthetic Valve Frames in Patients Undergoing Valve-in-Valve Transcatheter Pulmonary Valve Replacement
Shahanavaz S, Asnes JD, Grohmann J, Qureshi AM, Rome JJ, Tanase D, Crystal MA, Latson LA, Morray BH, Hellenbrand W, Balzer DT, Gewillig M, Love JC, Berdjis F, Gillespie MJ, McElhinney DB. Intentional Fracture of Bioprosthetic Valve Frames in Patients Undergoing Valve-in-Valve Transcatheter Pulmonary Valve Replacement. Circulation Cardiovascular Interventions 2018, 11: e006453. PMID: 30354783, DOI: 10.1161/circinterventions.118.006453.Peer-Reviewed Original ResearchMeSH KeywordsAdolescentAdultAgedBioprosthesisCardiac CatheterizationChildFeasibility StudiesFemaleHeart Valve ProsthesisHeart Valve Prosthesis ImplantationHemodynamicsHumansMaleMiddle AgedPreliminary DataProsthesis DesignProsthesis FailurePulmonary ValveRecovery of FunctionRetrospective StudiesTime FactorsTreatment OutcomeYoung AdultConceptsTranscatheter pulmonary valve replacementPulmonary valve replacementBioprosthetic valvesValve replacementPercutaneous transcatheter pulmonary valve replacementRight ventricular outflow tract gradientVentricular outflow tract gradientDysfunctional bioprosthetic valvePulmonary valve orificeOutflow tract gradientPatient-prosthesis mismatchIntentional fractureTrue inner diameterMedian 40Tract gradientMelody valveSAPIEN valveAdverse eventsHemodynamic outcomesValve therapyFracture groupPeak gradientControl cohortPulmonary positionBetter hemodynamics
2017
Transcatheter pulmonary valve replacement using the melody valve for treatment of dysfunctional surgical bioprostheses: A multicenter study
Cabalka AK, Asnes JD, Balzer DT, Cheatham JP, Gillespie MJ, Jones TK, Justino H, Kim DW, Lung TH, Turner DR, McElhinney DB. Transcatheter pulmonary valve replacement using the melody valve for treatment of dysfunctional surgical bioprostheses: A multicenter study. Journal Of Thoracic And Cardiovascular Surgery 2017, 155: 1712-1724.e1. PMID: 29395214, DOI: 10.1016/j.jtcvs.2017.10.143.Peer-Reviewed Original ResearchMeSH KeywordsAdolescentAdultAgedBioprosthesisCardiac CatheterizationChildChild, PreschoolFemaleHeart Valve ProsthesisHeart Valve Prosthesis ImplantationHumansMaleMiddle AgedProsthesis DesignProsthesis FailurePulmonary ValvePulmonary Valve InsufficiencyPulmonary Valve StenosisRecovery of FunctionRetrospective StudiesTime FactorsTreatment OutcomeUnited StatesYoung AdultConceptsPulmonary valve replacementTPV replacementPulmonary regurgitationBioprosthetic valvesValve replacementMulticenter studyRight ventricular outflow tract gradientPostoperative congenital heart diseaseTranscatheter pulmonary valve replacementVentricular outflow tract gradientSurgical pulmonary valve replacementMean RVOT gradientMedian patient ageOutflow tract gradientSevere pulmonary regurgitationExcellent early resultsSurgical bioprosthetic valvesTetralogy of FallotCongenital heart diseaseTime-related fashionRVOT gradientTract gradientUnderlying diagnosisHospital dischargePatient age
2016
Transcatheter valve implantation for right atrium‐to‐right ventricle conduit obstruction or regurgitation after modified Björk–fontan procedure
Shah AH, Horlick EM, Eicken A, Asnes JD, Bocks ML, Boudjemline Y, Cabalka AK, Fagan TE, Schubert S, Mahadevan VS, Dvir D, Osten M, McElhinney DB. Transcatheter valve implantation for right atrium‐to‐right ventricle conduit obstruction or regurgitation after modified Björk–fontan procedure. Catheterization And Cardiovascular Interventions 2016, 89: 298-305. PMID: 27465501, DOI: 10.1002/ccd.26648.Peer-Reviewed Original ResearchMeSH KeywordsAdultBioprosthesisBlood Vessel ProsthesisBlood Vessel Prosthesis ImplantationCanadaCardiac CatheterizationEuropeFemaleFontan ProcedureGraft Occlusion, VascularHeart Defects, CongenitalHeart Valve DiseasesHeart Valve ProsthesisHeart Valve Prosthesis ImplantationHemodynamicsHumansMaleMiddle AgedNorth AmericaProsthesis DesignProsthesis FailureRecovery of FunctionRegistriesRetrospective StudiesStentsTime FactorsTreatment OutcomeConceptsRight ventricleBjörk modificationFontan procedureValve implantationExtra-anatomic graftRetrospective multicenter registrySapien valve implantationLow procedural riskTranscatheter valve implantationRight atrial appendageCardiovascular causesPercutaneous transcatheterRA-RVUncomplicated implantationMulticenter registrySAPIEN 3Clinical improvementValve dysfunctionConduit dysfunctionFontan circulationPulmonary circulationAtrial appendageFontan pathwayTranscatheter implantationProcedural risk