Principles of Ultrasound. Basic Principles of Doppler Ultrasound. Transducers Normal Anatomy and Flow. Quantitative Echocardiography. Imaging Artifacts and Pitfalls.Equipment, Complications, Infection Control, and Safety. Segmental Ventricular Function and Ischema. Global Ventricular Function and Hemodynamics. Cardiomyopathy. Pericardium. Aorta. Echocardiography During Cardiac Surgery. Perioperative Role of TEE in Mechanical Circulatory Assistance. Native Aortic Valve.
Tricuspid transcatheter edge-to-edge repair alleviates symptoms, but survival benefit remains inconsistent. The authors conducted a Preferred Reporting Items for Systematic Reviews and Meta-Analyses 2020-compliant systematic review and meta-analysis (CRD42024600438) to identify multivariable predictors of procedural success and adverse outcomes. PubMed, Scopus, the Cochrane Library, and Google Scholar were searched (from January 2008 to March 2025) for adjusted predictors of mortality, heart failure hospitalization, major adverse cardiovascular events, and procedural success. Random-effects meta-analysis was performed when ≥2 independent cohorts reported comparable estimates. Fifty-nine studies met the inclusion criteria. Baseline tricuspid regurgitation severity (OR: 2.50; 95% CI: 1.33-4.71), nonanteroseptal jet location (OR: 2.46; 95% CI: 1.08-5.60), and increasing coaptation gap (HR: 1.19 per mm; 95% CI: 1.07-1.33) predicted residual tricuspid regurgitation. Residual tricuspid regurgitation ≥3+ was the only predictor suitable for pooled synthesis across endpoints and was associated with all-cause mortality (HR: 2.19; 95% CI: 1.60-3.00) and major adverse cardiovascular events (HR: 1.84; 95% CI: 1.37-2.48) (I2 = 0%-2%.) Renal dysfunction, impaired right ventricular function and remodeling, pulmonary hypertension, and right ventricular-pulmonary arterial uncoupling reflect advanced disease substrate and demonstrated consistent associations with adverse outcomes. Among surgical risk models, the European System for Cardiac Operative Risk Evaluation II score showed limited discrimination, whereas the TRI-SCORE performed better; tricuspid transcatheter edge-to-edge repair-specific clinical models remain limited, and validated procedural prediction models are emerging. Limited data suggest that an intermediate disease profile may derive the greatest benefit, but this finding is confined to single-registry analyses. Further work is required to define optimal disease-stage thresholds and develop integrated risk models incorporating procedural outcome predictors.
Despite the challenges associated with periprocedural imaging, transcatheter tricuspid valve interventions have shown important impact on outcomes. A comprehensive understanding of the anatomy of the right heart and surrounding structures is crucial. One way to optimize these interventions is by identifying the optimal fluoroscopic viewing angles along the S-curve of the tricuspid valve. Integration of chamber views using multimodality imaging (multislice computed tomography, fluoroscopy, and echocardiography) may increase operator confidence and reduce procedural duration, radiation exposure, contrast volume, and complication rates.
BACKGROUND:A significant number of patients with severe mitral regurgitation (MR) are not suitable for either surgical or transcatheter edge-to-edge repair because of high surgical risk or inappropriate mitral valve anatomy. OBJECTIVES:The aim of this study was to evaluate the HighLife Trans-Septal Mitral Valve Replacement (TSMVR) system in patients with symptomatic MR and high surgical risk. METHODS:This prospective, multicenter, nonrandomized feasibility study evaluated the safety and performance of the HighLife TSMVR system in patients with moderate to severe or severe symptomatic MR during 1-year follow-up. Echocardiographic data were assessed at an independent core laboratory. RESULTS:A total of 30 patients (mean age 75.6 years, 27% women, median Society of Thoracic Surgeons score 5.5%) with severe MR (90% with secondary MR, median left ventricular ejection fraction 43%) were treated at 13 sites. In 27 of the 30 patients, the HighLife TSMVR system was implanted successfully (technical success rate 90%). Device success at 30 days was 83%. After 1 year, 5 patients (17%) had died. None of the patients who underwent implantation required mitral valve reintervention. All patients who underwent implantation had no or trace (78%) or mild (22%) MR, the mean gradient of the HighLife valve was 5.1 mm Hg, and there were no signs of left ventricular outflow tract obstruction (mean gradient 2.0 mm Hg). CONCLUSIONS:The 1-year results from the HighLife TSMVR feasibility study demonstrate a high technical success rate, excellent valve function, no left ventricular outflow tract obstruction, and no need for mitral valve reintervention. Additional patient outcomes and longer follow-up are needed to confirm these findings. (Expanded Study of the HighLife 28mm Trans-Septal Trans-Catheter Mitral Valve in Patients With Moderate-Severe or Severe Mitral Regurgitation and at High Surgical Risk; NCT04029363).
Reduction of right ventricular (RV) function after cardiac surgery has been shown to impact outcomes. Conventional indices for right ventricular dysfunction are validated using transthoracic echocardiogram (TTE) which has limited use compared to transesophageal echocardiogram (TEE) in the perioperative settings. The aim of this study was to assess the agreement of RV systolic function assessment with TEE compared to TTE and assess the association of echocardiographic parameter with hemodynamic indices of RV dysfunction. This was a single center prospective observational study in an academic institution. Fifty adult patients undergoing elective cardiac surgery were included. TTE, TEE and stroke volume measurements pre-cardiopulmonary bypass (CPB) and post-CPB were performed. The variables of interest were anatomical M-mode tricuspid annular plane systolic excursion (AMM-TAPSE), fractional area change (FAC), tricuspid annular velocity (S’) and myocardial performance index (MPI). FAC and AMM-TAPSE measured at the mid-esophageal 4 chamber view had substantial agreement with the TTE acquired parameters (Lin’s concordance correlation coefficient (CCC) = 0.76, 95%CI 0.59–0.86 and CCC = 0.85, 95%CI 0.76–0.91). S’ was significantly underestimated by TEE (CCC = 0.07, 95%CI 0.04–0.19) and MPI showed moderate agreement (CCC = 0.45 95%CI 0.19–0.65). Despite the significant changes in echocardiographic parameters, there were no corresponding changes in stroke volume (SV) or pulmonary artery pulsatility index at the post-CPB period. TEE acquired FAC and AMM-TAPSE had substantial agreement with pre-operative TTE values and no significant differences between the pre-CPB and post-CPB period. Systolic RV echocardiographic parameters decreased post-CPB but this was not accompanied by significant hemodynamic changes.
Background The management of anticoagulation for mechanical heart valves during pregnancy poses a unique challenge. Mechanical valve thrombosis is a devastating complication for which surgery is often the treatment of choice. However, cardiac surgery for prosthetic valve dysfunction in pregnant patients confers a high risk of maternofetal morbidity and mortality. Case summary A 39-year-old woman in her first pregnancy at 30 weeks gestation presented to hospital with a mechanical mitral valve thrombosis despite therapeutic anticoagulation with low-molecular-weight heparin. She underwent an emergent caesarean section followed immediately by a bioprosthetic mitral valve replacement. This occurred after careful planning and organization on the part of a large multidisciplinary team. Discussion A proactive, rather than reactive, approach to the surgical management of a mechanical valve thrombosis in pregnancy will maximize the chances of successful maternal and fetal outcomes.
OBJECTIVES The aim of this study was to define the optimal fluoroscopic viewing angles of both coronary ostia and important coronary bifurcations by using 3-dimensional multislice computed tomographic data. BACKGROUND Optimal fluoroscopic projections are crucial for coronary imaging and interventions. Historically, coronary fluoroscopic viewing angles were derived empirically from experienced operators. METHODS In this analysis, 100 consecutive patients who underwent computed tomographic coronary angiography (CTCA) for suspected coronary artery disease were studied. A CTCA-based method is described to define optimal viewing angles of both coronary ostia and important coronary bifurcations to guide percutaneous coronary interventions. RESULTS The average optimal viewing angle for ostial left main stenting was left anterior oblique (LAO) 37 degrees, cranial (CRA) 22 degrees (95% confidence interval [CI]: LAO 33 degrees to 40 degrees, CRA 19 degrees to 25 degrees) and for ostial right coronary stenting was LAO 79 degrees, CRA 41 degrees (95% CI: LAO 74 degrees to 84 degrees, CRA 37 degrees to 45 degrees). Estimated mean optimal viewing angles for bifurcation stenting were as follows: left main: LAO 0 degrees, caudal (CAU) 49 degrees (95% CI: right anterior oblique [RAO] 8 degrees to LAO 8 degrees, CAU 43 degrees to 54 degrees); left anterior descending with first diagonal branch: LAO 11 degrees, CRA 71 degrees (95% CI: RAO 6 degrees to LAO 27 degrees, CRA 66 degrees to 77 degrees); left circumflex bifurcation with first marginal branch: LAO 24 degrees, CAU 33 degrees (95% CI: LAO 15 degrees to 33 degrees, CAU 25 degrees to 41 degrees); and posterior descending artery and posterolateral branch: LAO 44 degrees, CRA 34 degrees (95% CI: LAO 35 degrees to 52 degrees, CRA 27 degrees to 41 degrees). CONCLUSIONS CTCA can suggest optimal fluoroscopic viewing angles of coronary artery ostia and bifurcations. As the frequency of use of diagnostic CTCA increases in the future, it has the potential to provide additional information for planning and guiding percutaneous coronary intervention procedures. (C) 2020 by the American College of Cardiology Foundation.
Transcatheter edge-to-edge mitral valve repair is a viable alternative to surgery in patients with severe mitral regurgitation and high surgical risk. Yet the specific group of patients who would optimally benefit from this therapy remains to be determined. Selection of patients for transcatheter strategy is currently based on surgical prognostic scores and technical feasibility. Meanwhile, various clinical, anatomic, and procedural factors have been recently recognized as predictors of adverse outcomes following transcatheter edge-to-edge mitral valve repair, including device failure, recurrent mitral regurgitation, and mortality. Integration of these prognostic factors in the decision-making process of the heart team might improve patient management and outcomes. Herein, the authors review the different factors related to symptomatic status, comorbidity, serum biomarkers, echocardiographic findings, and procedural technique that have been identified as independent predictors of adverse outcome following transcatheter edge-to-edge mitral valve repair and discuss their potential application in everyday clinical practice.
Mitral regurgitation (MR) is a known complication of transcatheter aortic valve replacement (TAVR). We report a case of a 90-year-old man with severe symptomatic aortic stenosis who underwent elective TAVR. The procedure was complicated by severe functional MR from left ventricular stunning and dilatation caused by hypotension throughout the procedure. An Impella CP (Abiomed, Inc, Danvers, MA) was inserted to unload the left ventricle and decrease its size with subsequent improvement in MR severity, which was sustained after Impella CP removal. In conclusion, we present the first case of successful management of post-TAVR severe functional MR with an Impella CP.
Transcatheter aortic valve replacement (TAVR) is the standard of care in a large population of patients with severe symptomatic aortic valve stenosis. The sizing of TAVR devices is done from ECG-gated CT angiographic image volumes. The most crucial step of the analysis is the determination of the aortic valve annular plane. In this paper, we present a fully tridimensional recursive multiresolution convolutional neural network (CNN) to infer the location and orientation of the aortic valve annular plane. We manually labeled 1007 ECG-gated CT volumes from 94 patients with severe degenerative aortic valve stenosis. The algorithm was implemented and trained using the TensorFlow framework (Google LLC, USA). We performed K-fold cross-validation with K = 9 groups such that CT volumes from a given patient are assigned to only one group. We achieved an average out-of-plane localization error of (0.7 ± 0.6) mm for the training dataset and of (0.9 ± 0.8) mm for the evaluation dataset, which is on par with other published methods and clinically insignificant. The angular orientation error was (3.9 ± 2.3)° for the training dataset and (6.4 ± 4.0)° for the evaluation dataset. For the evaluation dataset, 84.6% of evaluation image volumes had a better than 10° angular error, which is similar to expert-level accuracy. When measured in the inferred annular plane, the relative measurement error was (4.73 ± 5.32)% for the annular area and (2.46 ± 2.94)% for the annular perimeter. The proposed algorithm is the first application of CNN to aortic valve planimetry and achieves an accuracy on par with proposed automated methods for localization and approaches an expert-level accuracy for orientation. The method relies on no heuristic specific to the aortic valve and may be generalizable to other anatomical features.
AIMSThis study sought to analyse multislice computed tomography (MSCT) data of patients with tricuspid regurgitation and to report the variability of fluoroscopic viewing angles for several right-sided heart structures, as well as chamber views of the right heart in order to determine the optimal fluoroscopic viewing angles of six right-sided heart structures and right-heart chamber views.METHODS AND RESULTSThe MSCT data of 44 patients with mild to severe tricuspid regurgitation (TR) were retrospectively analysed. For each patient, we determined the optimal fluoroscopic viewing angles of the annulus/orifice en face view of the tricuspid valve, atrial septum, superior vena cava (SVC), inferior vena cava (IVC), coronary sinus (CS) and pulmonary valve. In this TR patient cohort, the average fluoroscopic viewing angle for the en face view of the tricuspid valve annulus was LAO 54-CAUD 15; RAO 10-CAUD 66 for the SVC orifice; LAO 27-CRA 59 for the IVC orifice; RAO 28-CRA 19 for the CS orifice; RAO 33-CAUD 33 for the atrial septum and LAO 13-CAUD 52 for the pulmonary valve annulus. The average viewing angle for right-heart chamber views was LAO 55-CAUD 15 for the one-chamber view; RAO 59-CAUD 54 for the two-chamber view; RAO 27-CRA 19 for the three-chamber view and LAO 5-CRA 60 for the four-chamber view.CONCLUSIONSMSCT can provide patient-specific fluoroscopic viewing angles of right-sided heart structures. This information may facilitate transcatheter right-heart interventions.
Performing transcatheter tricuspid valve interventions requires a thorough knowledge of right-heart imaging. Integration of chamber views across the spectrum of imaging modalities (i.e., multislice computed tomography, fluoroscopy, and echocardiography) can facilitate transcatheter interventions on the right heart. Optimal fluoroscopic viewing angles for guiding interventional procedures can be obtained using pre-procedural multislice computed tomography scans. The present paper describes fluoroscopic viewing angles necessary to appreciate right-heart chamber anatomy and their relationship to echocardiography using multislice computed tomography.
Performing transcatheter tricuspid valve interventions requires a thorough knowledge of right-heart imaging. Integration of chamber views across the spectrum of imaging modalities (i.e., multislice computed tomography, fluoroscopy, and echocardiography) can facilitate transcatheter interventions on the right heart. Optimal fluoroscopic viewing angles for guiding interventional procedures can be obtained using pre-procedural multislice computed tomography scans. The present paper describes fluoroscopic viewing angles necessary to appreciate right-heart chamber anatomy and their relationship to echocardiography using multislice computed tomography.
BACKGROUND AND AIM OF THE STUDY:The surgical correction of functional mitral regurgitation (MR) remains challenging and controversial. The study aim was to systematically review the outcomes of surgical mitral valve repair (MVRpr) and mitral valve replacement (MVR) in patients with significant functional MR and left ventricular (LV) dysfunction. METHODS:A meta-analysis was performed of published data acquired from patients with moderate to severe functional MR and LV ejection fraction (LVEF) <40% who underwent surgical MVRpr or MVR. The data were meta-analyzed across studies using Bayesian hierarchical models when feasible. RESULTS:The search yielded 36 observational studies. The pooled proportion of operative mortality following MVRpr was 5% (33 studies; 2,231 patients; 95% credible interval (CrI) 4-7%), while that following MVR was 10% (10 studies; 389 patients; 95% CrI 5-18%). For patients undergoing MVRpr, pooled proportions of postoperative cerebrovascular accidents and renal failure were 2% (11 studies; 750 patients; 95% CrI 1-3%) and 9% (11 studies; 756 patients; 95% CrI 5-16%), respectively. The five-year actuarial survival rates following MVRpr across 12 studies ranged from 47% to 78% (median 66%). CONCLUSIONS:In selected patients with significant functional MR and LV dysfunction, surgical MVRpr and MVR can be performed with acceptable intermediate operative mortality risks.
Aims: Transcatheter mitral valve replacement (TMVR) is an emerging technology with the potential to treat patients with severe mitral regurgitation at excessive risk for surgical mitral valve surgery. Multimodality imaging of the mitral valvular complex and surrounding structures will be an important component for patient selection for TMVR. Our aim was to describe and evaluate a systematic multi-slice computed tomography (MSCT) image analysis methodology that provides measurements relevant for transcatheter mitral valve replacement.Methods and results: A systematic step-by-step measurement methodology is described for structures of the mitral valvular complex including: the mitral valve annulus, left ventricle, left atrium, papillary muscles and left ventricular outflow tract. To evaluate reproducibility, two observers applied this methodology to a retrospective series of 49 cardiac MSCT scans in patients with heart failure and significant mitral regurgitation. For each of 25 geometrical metrics, we evaluated inter-observer difference and intra-class correlation. The inter-observer difference was below 10% and the intra-class correlation was above 0.81 for measurements of critical importance in the sizing of TMVR devices: the mitral valve annulus diameters, area, perimeter, the inter-trigone distance, and the aorto-mitral angle.Conclusions: MSCT can provide measurements that are important for patient selection and sizing of TMVR devices. These measurements have excellent inter-observer reproducibility in patients with functional mitral regurgitation.