BACKGROUND
Cardiac resynchronization therapy (CRT) improves survival and symptoms in patients with heart failure with reduced ejection fraction and electromechanical dyssynchrony, yet up to 30-40% do not respond despite guideline-based selection. Hemodynamic forces (HDF) quantify intraventricular pressure gradients and can be derived from routine echocardiographic images. The aim of this study was to assess the predictive and prognostic value of HDF parameters in patients undergoing CRT and to investigate changes in HDF after CRT implantation.
METHODS
The following HDF parameters were assessed in 198 patients from the multicenter, prospective MARC study: (i) apical-basal force, (ii) latero-septal force (iii) their ratio (iv) force vector angle, (v) systolic apical-basal force, (vi) systolic angle. CRT response was defined as ≥15% reduction in left ventricular end-systolic volume (LVESV) at 6 months. The composite outcome of all-cause mortality or cardiovascular hospitalization was analyzed using Cox regression models with long-term follow-up.
RESULTS
120 patients (60.6%) demonstrated echocardiographic response to CRT at 6 months. The addition of baseline systolic angle to clinical, electrocardiographic, and conventional echocardiographic markers of dyssynchrony significantly improved model fit for CRT response, although discrimination was not significantly improved. Responders showed significant improvement in HDF parameters after CRT, whereas no significant changes were observed in non-responders. During a median follow-up of 9.3 years, baseline systolic angle was independently associated with the composite endpoint of all-cause mortality or cardiovascular hospitalization and significantly improved risk stratification when added to established prognostic markers.
CONCLUSION
HDF parameters provide complementary descriptive insight into ventricular mechanics in patients undergoing CRT. Baseline systolic angle was independently associated with both reverse remodeling and long-term outcome, although discrimination was not significantly improved. While these findings suggest potential value for HDF assessment, further research is warranted to determine the clinical relevance in CRT patients.
R. Tarantini, W. Gerrits, C. Chiu et al.· Journal of the American Soci...· 0 citations
BACKGROUND
Right heart catheterization is the gold standard for diagnosing heart failure with preserved ejection fraction but is invasive and not readily accessible. The left atrioventricular coupling index (LACI), defined as the ratio of left atrial minimal volume to left ventricular end-diastolic volume, has been proposed as a surrogate of left ventricular diastolic dysfunction. This study compares 3 imaging modalities for LACI assessment and evaluates diagnostic performance for heart failure with preserved ejection fraction.
METHODS
We retrospectively included 1680 patients from 2 academic hospitals (Amsterdam UMC, The Netherlands, and ASPIRE registry). All underwent diagnostic right heart catheterization and cardiac magnetic resonance imaging (CMR); a subset additionally underwent cardiac computed tomography, and/or echocardiography. Patients were divided into derivation and validation cohorts. left atrial and left ventricular volumes were measured at end-diastole. Agreement between imaging modalities was evaluated with Bland-Altman plots. The predictive performance of LACI for heart failure with preserved ejection fraction was evaluated using receiver operating characteristic analysis, with cut-off values derived in the derivation cohort and tested unchanged in the validation cohort.
RESULTS
Assessment of LACI measurement accuracy across imaging modalities showed strong agreement between CMR and echocardiography. CMR LACI outperformed echocardiography (area-under-the-curve=0.84 versus 0.65), while cardiac computed tomography tended to overestimate LACI. The derivation cohort identified LACI ≥36% on CMR as the optimal threshold (sensitivity: 64%, specificity: 83%), which was tested in the validation cohort (sensitivity: 58%, specificity: 82%).
CONCLUSIONS
LACI ≥36%, particularly measured via CMR, shows strong diagnostic potential for heart failure with preserved ejection fraction as a noninvasive adjunct to current diagnostic strategies.
C. Janssen-Telders, J. Abele, L. Meijboom et al.· Journal of the American Hear...· 0 citations
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