2024
Transthoracic Echocardiography–Guided Placement of a Pulmonary Artery Catheter in a Patient With a Known Persistent Left but Unknown Absent Right Superior Vena Cava
Leclerc J, Clemes R, Fuss C, Macon C, Schulman P. Transthoracic Echocardiography–Guided Placement of a Pulmonary Artery Catheter in a Patient With a Known Persistent Left but Unknown Absent Right Superior Vena Cava. Circulation Cardiovascular Imaging 2024, 17: e016301. PMID: 38469718, DOI: 10.1161/circimaging.123.016301.Peer-Reviewed Original ResearchMeSH KeywordsAdultCatheterization, Swan-GanzEchocardiographyHumansMalePersistent Left Superior Vena CavaPulmonary ArteryUltrasonography, InterventionalVena Cava, Superior
2022
Inferior Vena Cava Diameter Measurement Provides Distinct and Complementary Information to Right Atrial Pressure in Acute Decompensated Heart Failure
Griffin M, Ivey-Miranda J, McCallum W, Sarnak M, Eder M, Bellumkonda L, Maulion C, Wilson FP, Rao VS, Testani J. Inferior Vena Cava Diameter Measurement Provides Distinct and Complementary Information to Right Atrial Pressure in Acute Decompensated Heart Failure. Journal Of Cardiac Failure 2022, 28: 1217-1221. PMID: 35301109, DOI: 10.1016/j.cardfail.2022.02.014.Peer-Reviewed Original ResearchConceptsRight atrial pressureAcute decompensated heart failureDecompensated heart failureIVC diameterAtrial pressureHeart failureInferior vena cava diameter (IVCD) measurementBaseline right atrial pressureInferior vena cava (IVC) measurementsPulmonary artery catheterVena cava diameter measurementsArtery catheterHemoglobin levelsIntravascular volumeVenous systemESCAPE trialIVC measurementsBlood volumeRAP measurementsSurvival ratePatientsVolume assessmentHigh complianceModest correlationMedian
2020
Transvenous Retrieval of a Pulmonary Artery Catheter Knot Around Pacing Leads: A Case Report
Egbuche O, Nwagbara K, Mezue K, Abe T, Nwokike S. Transvenous Retrieval of a Pulmonary Artery Catheter Knot Around Pacing Leads: A Case Report. Cardiovascular Revascularization Medicine 2020, 28: 144-146. PMID: 33077395, DOI: 10.1016/j.carrev.2020.09.037.Peer-Reviewed Original ResearchMeSH KeywordsCardiac Resynchronization TherapyCatheterization, Swan-GanzCathetersHeartHumansMaleMiddle AgedPulmonary ArteryConceptsPulmonary artery catheter insertionPulmonary artery catheterInsertion of pulmonary artery cathetersCardiac resynchronization therapyCatheter knottingBlind insertionSevere left ventricular systolic dysfunctionDilated right heart chambersPulmonary artery catheter knottingLeft ventricular systolic dysfunctionManagement of acute heart failureVentricular systolic dysfunctionArtery catheter insertionAcute heart failureRight heart chambersCardiac resynchronization devicesSystolic dysfunctionResynchronization therapyFluoroscopy-guided insertionDilated cardiomyopathyCatheter insertionArtery catheterHeart failureHemodynamic managementResynchronization devices
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 therapyNational Trends in Use and Outcomes of Pulmonary Artery Catheters Among Medicare Beneficiaries, 1999-2013
Ikuta K, Wang Y, Robinson A, Ahmad T, Krumholz HM, Desai NR. National Trends in Use and Outcomes of Pulmonary Artery Catheters Among Medicare Beneficiaries, 1999-2013. JAMA Cardiology 2017, 2: 908-913. PMID: 28593267, PMCID: PMC5815078, DOI: 10.1001/jamacardio.2017.1670.Peer-Reviewed Original ResearchMeSH KeywordsAgedAged, 80 and overCatheterization, Swan-GanzCohort StudiesCross-Sectional StudiesDisease ManagementFemaleHeart FailureHospital MortalityHospitalizationHumansLength of StayMaleMedicareMortalityMyocardial InfarctionPulmonary ArteryRespiratory InsufficiencyUnited StatesVascular Access DevicesConceptsAcute myocardial infarctionLength of stayPAC usePAC placementRespiratory failureHeart failureMyocardial infarctionClinical conditionsPulmonary artery catheter useNational trendsCross-sectional cohort studyStudy periodKey clinical conditionsMedicaid Services inpatientHeart failure admissionsPulmonary artery catheterClinical Modification codesSociodemographic groupsUnique Medicare beneficiariesLack of benefitRace/ethnicityService inpatientsHospital mortalityCatheter useArtery catheter
2016
Variation in Hospital Use and Outcomes Associated With Pulmonary Artery Catheterization in Heart Failure in the United States
Khera R, Pandey A, Kumar N, Singh R, Bano S, Golwala H, Kumbhani DJ, Girotra S, Fonarow GC. Variation in Hospital Use and Outcomes Associated With Pulmonary Artery Catheterization in Heart Failure in the United States. Circulation Heart Failure 2016, 9: e003226. PMID: 27780836, PMCID: PMC5123800, DOI: 10.1161/circheartfailure.116.003226.Peer-Reviewed Original ResearchMeSH KeywordsAgedArrhythmias, CardiacCase-Control StudiesCatheterization, Swan-GanzCerebrovascular DisordersCoronary Artery DiseaseDatabases, FactualDisease ManagementFemaleHeart ArrestHeart FailureHospital MortalityHospitalsHumansLength of StayLogistic ModelsMaleMiddle AgedMyocardial InfarctionOdds RatioPractice Patterns, Physicians'Propensity ScoreShock, CardiogenicUnited StatesConceptsPA catheterizationHeart failureCatheter useHospital useDiseases-Ninth Revision codesPropensity-matched analysisPulmonary artery catheterPulmonary artery catheterizationHospital-level variabilityHF hospitalizationHospital mortalityArtery catheterArtery catheterizationNumber of hospitalsPA catheterRevision codesPatient outcomesAcademic hospitalExcess mortalityOdds ratioOutcomes AssociatedCatheterizationInternational ClassificationHospitalMortalityReduced Cardiac Index Is Not the Dominant Driver of Renal Dysfunction in Heart Failure
Hanberg JS, Sury K, Wilson FP, Brisco MA, Ahmad T, Maaten J, Broughton JS, Assefa M, Tang WH, Parikh CR, Testani JM. Reduced Cardiac Index Is Not the Dominant Driver of Renal Dysfunction in Heart Failure. Journal Of The American College Of Cardiology 2016, 67: 2199-2208. PMID: 27173030, PMCID: PMC4867078, DOI: 10.1016/j.jacc.2016.02.058.Peer-Reviewed Original ResearchConceptsPulmonary artery catheterizationBlood urea nitrogenCardiac indexRenal functionHeart failureRenal dysfunctionGood renal functionReduced cardiac indexHigher cardiac indexGlomerular filtration rateSignificant inverse correlationMultiple subgroupsMulticenter populationWorse eGFRHF patientsCreatinine ratioArtery catheterizationPatient subgroupsFiltration rateSerial assessmentLinear mixed modelingESCAPE trialPatientsUrea nitrogenDysfunctionClinical Implications of Cluster Analysis-Based Classification of Acute Decompensated Heart Failure and Correlation with Bedside Hemodynamic Profiles
Ahmad T, Desai N, Wilson F, Schulte P, Dunning A, Jacoby D, Allen L, Fiuzat M, Rogers J, Felker GM, O’Connor C, Patel CB. Clinical Implications of Cluster Analysis-Based Classification of Acute Decompensated Heart Failure and Correlation with Bedside Hemodynamic Profiles. PLOS ONE 2016, 11: e0145881. PMID: 26840410, PMCID: PMC4739604, DOI: 10.1371/journal.pone.0145881.Peer-Reviewed Original ResearchConceptsAcute decompensated heart failureDecompensated heart failureHemodynamic profileNon-ischemic cardiomyopathyClinical outcomesADHF patientsHeart failureLower B-type natriuretic peptide levelsB-type natriuretic peptide levelsCox proportional hazards modelConcomitant renal insufficiencyHigher BNP levelsNatriuretic peptide levelsAdverse clinical outcomesBaseline clinical variablesProportional hazards modelBNP levelsAdvanced diseaseCause mortalityMultiple comorbiditiesRenal insufficiencyComorbid conditionsHemodynamic classificationPrognostic valueAdverse outcomesUse of Pulmonary Artery Catheterization in US Patients With Heart Failure, 2001-2012
Pandey A, Khera R, Kumar N, Golwala H, Girotra S, Fonarow GC. Use of Pulmonary Artery Catheterization in US Patients With Heart Failure, 2001-2012. JAMA Internal Medicine 2016, 176: 1-4. PMID: 26618346, PMCID: PMC4780342, DOI: 10.1001/jamainternmed.2015.6190.Peer-Reviewed Original Research
2010
Characteristics of Patients With Improvement or Worsening in Renal Function During Treatment of Acute Decompensated Heart Failure
Testani JM, McCauley BD, Kimmel SE, Shannon RP. Characteristics of Patients With Improvement or Worsening in Renal Function During Treatment of Acute Decompensated Heart Failure. The American Journal Of Cardiology 2010, 106: 1763-1769. PMID: 21055713, PMCID: PMC2997119, DOI: 10.1016/j.amjcard.2010.07.050.Peer-Reviewed Original ResearchMeSH KeywordsAcute DiseaseCardiotonic AgentsCatheterization, Swan-GanzCreatinineDisease ProgressionFemaleFollow-Up StudiesGlomerular Filtration RateHeart FailureHumansInfusions, IntravenousMaleMiddle AgedPrognosisPulmonary Wedge PressureRecovery of FunctionRenal InsufficiencyRetrospective StudiesStroke VolumeVasodilator AgentsConceptsDecompensated heart failureRenal functionStable renal functionCardiac indexHeart failureVasodilator usePulmonary Artery Catheterization Effectiveness trialAcute decompensated heart failureSimilar hemodynamic parametersCharacteristics of patientsCongestive heart failureComparison of patientsAdvanced disease stateCardiorenal interactionsIntravenous inotropesCause mortalityWorse survivalHemodynamic variablesPoor prognosisCreatinine valuesEffectiveness trialHemodynamic parametersHemodynamic differencesPatientsDisease states
1993
The relationship between “Normal” transesophageal color-flow doppler-defined tricuspid regurgitation and thermodilution right ventricular ejection fraction measurements
Rafferty T, Durkin M, Hines R, Elefteriades J, O'Connor T. The relationship between “Normal” transesophageal color-flow doppler-defined tricuspid regurgitation and thermodilution right ventricular ejection fraction measurements. Journal Of Cardiothoracic And Vascular Anesthesia 1993, 7: 167-174. PMID: 8477021, DOI: 10.1016/1053-0770(93)90211-3.Peer-Reviewed Original ResearchConceptsTricuspid regurgitationEjection fractionRight ventricular ejection fraction measurementsThermodilution right ventricular ejection fractionRight atrial pressure waveformTricuspid regurgitation jet areaRight ventricular ejection fractionVentricular ejection fraction measurementsRight ventricular functionVentricular ejection fractionJet areaEjection fraction measurementsRevascularization patientsChest closureCardiopulmonary bypassVentricular functionAtrial areaEndotracheal intubationTricuspid valveRegurgitation indexRegurgitationWaveform abnormalitiesExcursion ratioPressure waveformRegression analysisCardiac output monitoring by echocardiography: should we pass on Swan-Ganz catheters?
Perrino A. Cardiac output monitoring by echocardiography: should we pass on Swan-Ganz catheters? The Yale Journal Of Biology And Medicine 1993, 66: 397-413. PMID: 7825341, PMCID: PMC2588877.Peer-Reviewed Original ResearchMeSH KeywordsCardiac OutputCatheterization, Swan-GanzContraindicationsEchocardiographyHeartHumansMonitoring, IntraoperativeMonitoring, PhysiologicConceptsCardiac output monitoringSwan-Ganz catheterOutput monitoringEchocardiographic techniquesSwan-Ganz catheterizationVentricular loading conditionsPerioperative carePerioperative monitoringCardiac outputTransesophageal echocardiographyCardiac performanceEchocardiographyCardiac anatomyNoninvasive techniqueCatheterSatisfactory technique
1992
Intrapulmonary doppler for continuous measurement of cardiac output
Heerdt P. Intrapulmonary doppler for continuous measurement of cardiac output. Journal Of Cardiothoracic And Vascular Anesthesia 1992, 6: 382-383. PMID: 1611006, DOI: 10.1016/1053-0770(92)90178-a.Peer-Reviewed Original Research
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