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Ejection Fraction-Related Differences in Left Ventricular and Atrial Strain Indices Among Pediatric Fontan
Carmen Corina Șuteu1,2, Amalia Fagarasan1,2, Nicola Suteu1
1Department of Pediatrics III, Faculty of Medicine, "George Emil Palade" University of Medicine, Pharmacy, Science, and Technology of Târgu Mureș, 540136 Târgu Mureș, Romania.
Insights
In pediatric Fontan patients with systemic left ventricle (LV) morphology, reduced ejection fraction (EF) correlates with poorer clinical and hemodynamic status. Advanced strain imaging offers insights beyond conventional echocardiography for assessing ventricular-atrial interactions.
Area of Science:
- Cardiology
- Pediatric Cardiology
- Echocardiography
Background:
- Assessing ventricular function in Fontan patients is challenging.
- Ejection fraction (EF) has limited sensitivity for early dysfunction.
- The roles of strain and advanced imaging in systemic left ventricle (LV) physiology require further definition.
Purpose of the Study:
- Compare LV and atrial strain indices between pediatric Fontan patients with preserved versus reduced EF.
- Evaluate global and segmental LV strain and conventional echocardiographic parameters against cardiac morphology.
Main Methods:
- Retrospective analysis of pediatric Fontan patients with systemic LV morphology.
- Multimodality echocardiographic evaluation including 2D/3D parameters, LV strain, and left atrial strain.
- Outcomes analyzed by EF status and congenital morphology.
Main Results:
- Reduced EF group showed worse clinical status, higher pulmonary vascular resistance index, and greater systemic congestion.
- Conventional 2D indices showed limited differences, except for LV end-systolic volume and diameter.
- LV and atrial strain indices provided complementary information on myocardial deformation and ventricular-atrial interactions.
Conclusions:
- Reduced EF in pediatric Fontan patients is linked to adverse clinical and hemodynamic status.
- Conventional echocardiography has limited ability to differentiate between EF groups.
- Strain indices offer valuable insights into ventricular-atrial interactions and myocardial function in Fontan circulation.
Abstract:
Background: Ventricular function assessments in Fontan patients remain challenging. Ejection fraction (EF) lacks sensitivity for early dysfunction, and the roles of strain and advanced imaging in systemic left ventricle (LV) physiology are not fully defined. We aimed to compare (i) LV and atrial strain indices between pediatric Fontan patients with preserved EF (P-LVEF) versus reduced EF (R-LVEF) and (ii) echocardiographic global longitudinal strain, segmental longitudinal strain indices, and conventional 2D and 3D echocardiographic parameters through cardiac morphology. Methods: Pediatric patients with Fontan circulation and systemic LV morphology underwent clinical, hemodynamic, and multimodality echocardiographic evaluation, including 2D/3D parameters, global and segmental LV strain, and left atrial strain. Outcomes were analyzed according to EF status and congenital morphology. Significant results from multiple comparisons were followed by post hoc analysis, where appropriate. Results: Patients with a reduced EF exhibited a worse clinical status, a higher pulmonary vascular resistance index, and greater systemic congestion compared with those with a preserved EF. Conventional 2D indices showed no significant differences between the two studied groups except for LV end-systolic volume (ESV) (p = 0.0315) and LV end-systolic longitudinal diameter (ESL) (p = 0.0024), which showed higher values in the R-LVEF group. Although the relative frequency of impaired deformation was higher in Fontan patients with an unbalanced atrioventricular canal compared with the Fontan patients with a tricuspid atresia + pulmonary stenosis + ventricular septal defect, the difference did not reach statistical significance (p = 0.1365). Most segmental longitudinal strain values were not significantly different across patients with different cardiac morphology, except for the basal anterior segment and apical inferoseptal segment (p < 0.05). Conclusions: In pediatric Fontan patients with systemic LV morphology, a reduced EF was associated with a worse clinical and hemodynamic status. Conventional echocardiographic indices showed a limited ability to differentiate between the compared groups. Although no statistically significant differences were detected between pediatric Fontan patients with preserved EF and reduced EF, LV and atrial strain indices provided complementary information on ventricular-atrial interactions and myocardial deformation. These findings are exploratory and warrant confirmation in larger, prospective studies.
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