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Echocardiographic Evaluation of Atrial Communications before Transcatheter Closure
Published on: February 8, 2022
The search for borderline hearts within biventricular repairs of complete atrioventricular septal defects
Justin Robinson1, Georgios Belitsis1, John Ehrlinger1
1Department of Thoracic and Cardiovascular Surgery, Cleveland Clinic, Cleveland, Ohio.
Insights
Four distinct morphologic clusters of complete atrioventricular septal defect (cAVSD) were identified in children undergoing biventricular repair (BVR). These clusters show varied associations with survival and left atrioventricular valve reintervention rates.
Area of Science:
- Pediatric Cardiology
- Congenital Heart Disease
- Cardiac Surgery
Background:
- Complete atrioventricular septal defect (cAVSD) is a complex congenital heart defect.
- Biventricular repair (BVR) is a common surgical approach for cAVSD.
- Understanding morphologic variations is crucial for surgical outcomes.
Purpose of the Study:
- To identify distinct morphologic clusters in children with cAVSD undergoing BVR.
- To analyze the association between these clusters and post-repair mortality.
- To determine the relationship between clusters and left atrioventricular valve (LAVV) reintervention.
Main Methods:
- Utilized unsupervised clustering on preintervention echocardiograms from 685 children with cAVSD.
- Data collected from 34 Congenital Heart Surgeons' Society hospitals.
- Follow-up data for mortality and LAVV reintervention analyzed.
Main Results:
- Identified four morphologic clusters (B, D, C, A) based on AVV diameter and left ventricular features.
- Mortality rates at 8 years ranged from 6.9% to 11% across clusters.
- LAVV reintervention rates at 8 years ranged from 14% to 15% across clusters.
Conclusions:
- Preintervention echocardiography can delineate four distinct morphologic clusters of cAVSD.
- These clusters correlate with survival and LAVV reintervention after BVR.
- Findings may inform surgical decision-making for complex cAVSD cases.
Objectives:
To discover distinct clusters of morphologic features within the spectrum of complete atrioventricular septal defect among children who underwent biventricular repair and determine their association with postrepair mortality and left atrioventricular valve reintervention.
Methods:
From January 1, 2012, to July 1, 2024, 685 children with complete atrioventricular septal defect enrolled across 34 Congenital Heart Surgeons' Society hospitals underwent biventricular repair and had core laboratory analysis of a preintervention echocardiogram. Morphologic clusters were identified by unsupervised staggered interaction distance clustering. Median follow-up for mortality and left atrioventricular valve reintervention was 4.1 and 3.3 years, respectively, with 10% of each followed >8.4 and >7.7 years, respectively.
Results:
Four clusters-B, D, C, and A-were identified: median common atrioventricular valve diameter closed at end-diastole was 8.6 cm/m2 in B (n = 136), 10 cm/m2 in D (n = 224), 11 cm/m2 in C (n = 156), and 12 cm/m2 in A (n = 169). Hearts in B had lower indices of left ventricular constituents: length from atrioventricular valve to apex 11 cm/m2 versus 12 in D, 13 cm/m2 in C, and 14 cm/m2 in A. Mortality at 1 and 8 years, respectively, was 5.5% and 9.1% in B, 5.4% and 6.9% in D, 4.6% and 9.7% in C, and 4.5% and 11% in A. Left atrioventricular valve reintervention at 1 and 8 years, respectively, was 8.4% and 14% in B, 7.4% and 15% in D, 9.3% and 14% in C, and 6.7% and 15% in A.
Conclusions:
Preintervention echocardiographic features identify 4 morphologic clusters of complete atrioventricular septal defect. Associations with survival and left atrioventricular valve reintervention after biventricular repair provide knowledge that may guide decision making in surgical management of so-called borderline hearts.
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