2024
Differential Stroke Volume between Left and Right Ventricles as a Predictor of Clinical Outcomes: The MESA Study.
Abdollahi A, Kato Y, Bakhshi H, Varadarajan V, Chehab O, Zeitoun R, Ostovaneh M, Wu C, Bertoni A, Shah S, Ambale-Venkatesh B, Bluemke D, Lima J. Differential Stroke Volume between Left and Right Ventricles as a Predictor of Clinical Outcomes: The MESA Study. Radiology 2024, 312: e232973. PMID: 39041933, PMCID: PMC11294760, DOI: 10.1148/radiol.232973.Peer-Reviewed Original ResearchConceptsLV stroke volumeHeart failureAtrial fibrillationRisk of mortalityStroke volumeCardiac MRICardiovascular diseaseClinical outcomesIncreased riskIncreased risk of heart failureRight ventricular (RVPredictor of clinical outcomeMultivariate Cox proportional hazards regression modelsRisk of heart failureCox proportional hazards regression modelsBaseline LV functionRV stroke volumeIncreased risk of mortalityProportional hazards regression modelsValvular heart diseaseVentricular stroke volumeHazards regression modelsLV functionPrognostic valueRight ventricleRadiologic-Pathologic Correlation of Cardiac Tumors: Updated 2021 WHO Tumor Classification.
Lorca M, Chen I, Jew G, Furlani A, Puri S, Haramati L, Chaturvedi A, Velez M, Chaturvedi A. Radiologic-Pathologic Correlation of Cardiac Tumors: Updated 2021 WHO Tumor Classification. RadioGraphics 2024, 44: e230126. PMID: 38722782, DOI: 10.1148/rg.230126.Peer-Reviewed Educational MaterialsConceptsCardiac tumorsClassification of tumorsCardiac massWorld Health OrganizationCharacterization of cardiac massesWorld Health Organization Classification of TumorsWorld Health Organization tumor classificationWorld Health Organization classificationMalignant cardiac massesPrimary cardiac tumorsPrimary cardiac neoplasmsCardiac metastasisPapillary fibroelastomaThoracoabdominal CTCardiac CTCardiac neoplasmsIntracardiac massesNoncardiac indicationsSurgical managementRadiological investigationsTumor biologyTumor typesCardiac MRIAnatomical variantsTreatment planningRole of Cardiac MRI in Pericardial Diseases
Anthony C, Akintoye E, Wang T, Klein A. Role of Cardiac MRI in Pericardial Diseases. Current Cardiovascular Imaging Reports 2024, 17: 43-51. DOI: 10.1007/s12410-024-09591-x.Peer-Reviewed Original ResearchDiagnosis of pericardial diseaseResponse to therapyPericardial diseaseCardiac MRIDiagnosis of pericarditisInitiation of treatmentCardiac MRI techniquesRecurrent pericarditisAcute pericarditisMedical therapyAdjunctive roleTherapyPericarditisDiagnosisDiseaseImaging toolCardiacPatientsMRISummaryCMRPrognosis
2023
Imaging Acute and Chronic Cardiac Complications of COVID-19 and after COVID-19 Vaccination.
Sánchez Tijmes F, Marschner C, de Matos J, Urzua Fresno C, Gutiérrez Chacoff J, Thavendiranathan P, Fuss C, Hanneman K. Imaging Acute and Chronic Cardiac Complications of COVID-19 and after COVID-19 Vaccination. RadioGraphics 2023, 43: e230044. PMID: 37616171, DOI: 10.1148/rg.230044.Peer-Reviewed Original ResearchConceptsLate gadolinium enhancementGadolinium enhancementCardiac MRICOVID-19 vaccinePattern of late gadolinium enhancementCardiac complications of COVID-19MRNA-based COVID-19 vaccinesPresence of cardiovascular diseaseStress-induced cardiomyopathyMultimodality cardiac imagingBasal inferolateral wallMinority of patientsPersistent cardiac symptomsAdverse cardiovascular eventsComplications of COVID-19Chronic cardiac complicationsManifestations of COVID-19Potential mechanisms of injuryMechanism of injuryCardiovascular manifestations of COVID-19Messenger ribonucleic acidAcute COVID-19Cardiac symptomsCardiovascular manifestationsImaging findings
2018
Chapter 8 Cardiac Magnetic Resonance Imaging
Mojibian H, Pouraliakbar H. Chapter 8 Cardiac Magnetic Resonance Imaging. 2018, 159-166. DOI: 10.1016/b978-0-323-51149-0.00008-0.Peer-Reviewed Original Research
2015
Microvascular obstruction detected by cardiac MRI after AMI for the prediction of LV remodeling and MACE: A meta-analysis of prospective trials
Romero J, Lupercio F, Díaz J, Goodman-Meza D, Haramati L, Levsky J, Shaban N, Piña I, Garcia M. Microvascular obstruction detected by cardiac MRI after AMI for the prediction of LV remodeling and MACE: A meta-analysis of prospective trials. International Journal Of Cardiology 2015, 202: 344-348. PMID: 26426275, DOI: 10.1016/j.ijcard.2015.08.197.Peer-Reviewed Original ResearchMultimodality Imaging of Cardiac Sarcoidosis
Blankstein R, Miller E. Multimodality Imaging of Cardiac Sarcoidosis. 2015, 51-72. DOI: 10.1007/978-3-319-14624-9_7.ChaptersCardiac sarcoidosisCardiac MRIImaging testsHigh negative predictive valueExtra-cardiac diseasePreferred imaging testLate gadolinium enhancementFuture adverse eventsNegative predictive valueActive myocardial inflammationImmunosuppressive therapyCardiac involvementMyocardial inflammationAdverse eventsExcellent prognosisClinical criteriaReliable reference standardGadolinium enhancementSarcoidosisPredictive valueMultimodality imagingPatientsTherapyMRIDiagnosis
2004
Semi-automatic surface detection for quantification of left ventricular volumes and mass by real-time three-dimensional echocardiography
Caiani E, Corsi C, Sugeng L, Weinert L, Battani R, Mor-Avi V, Lang R. Semi-automatic surface detection for quantification of left ventricular volumes and mass by real-time three-dimensional echocardiography. International Congress Series 2004, 1268: 1067-1071. DOI: 10.1016/j.ics.2004.03.059.Peer-Reviewed Original ResearchEjection fractionConsecutive patientsLeft ventricular (LV) functionReal-time three-dimensional echocardiographyQuantification of left ventricular volumesAssessment of left ventricular (LV) functionRT3D imagesAssessment of LV dimensionsThree-dimensional echocardiographyLeft ventricular volumeBland-Altman analysisSurface detection techniqueSurface detectionLV massLV dimensionsCardiac MRIMRI valuesVentricular volumeEnd-systoleReal-time three-dimensionalLV cavityPatientsEndocardial borderMRISemi-automatically
2003
Detecting Acute Coronary Syndrome in the Emergency Department With Cardiac Magnetic Resonance Imaging
Kwong RY, Schussheim AE, Rekhraj S, Aletras AH, Geller N, Davis J, Christian TF, Balaban RS, Arai AE. Detecting Acute Coronary Syndrome in the Emergency Department With Cardiac Magnetic Resonance Imaging. Circulation 2003, 107: 531-537. PMID: 12566362, DOI: 10.1161/01.cir.0000047527.11221.29.Peer-Reviewed Original ResearchMeSH KeywordsAcute DiseaseAgedAngina, UnstableChest PainCoronary DiseaseDiagnosis, DifferentialElectrocardiographyEmergency Service, HospitalFemaleFollow-Up StudiesHumansLikelihood FunctionsLogistic ModelsMagnetic Resonance ImagingMaleMiddle AgedMyocardial InfarctionPredictive Value of TestsProspective StudiesROC CurveSensitivity and SpecificityTroponinConceptsAcute coronary syndromeStrict ECG criteriaTIMI risk scoreCoronary syndromeChest painEmergency departmentPeak troponinAbnormal ECGRisk scoreECG criteriaProbable acute coronary syndromeCardiac MRIMultivariate logistic regression analysisCardiac magnetic resonance imagingDiagnostic operating characteristicsHours of presentationTriage of patientsAcute myocardial infarctionLogistic regression analysisCurrent diagnostic strategiesMagnetic resonance imagingUnstable anginaConsecutive patientsVentricular functionClinical parameters
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