2025/01/06 by Xander Jacquemyn, Alexander Van De Bruaene, Werner Budts +2 · 1 voice
Medicine · #Cardiovascular and Diving-Related Complications #Congenital Heart Disease Studies #Vascular anomalies and interventions
paper · doi:10.1093/ehjci/jeaf001
openalex publication_date 2025/01/06 · openalex created_date 2025/01/07 · openalex updated_date 2026/07/28
AIMS: Atrial septal defect (ASD) and partial abnormal pulmonary venous connection (PAPVC) are non-cyanotic congenital heart defects (CHDs) that produce a left-to-right shunt. This single-centre retrospective study aimed to assess the haemodynamic impact of isolated ASD, isolated PAPVC, and ASD-associated PAPVC using cardiovascular magnetic resonance (CMR). METHODS AND RESULTS: From our CMR registry (2002-24), 110 patients were included: isolated ASD (n = 64), isolated PAPVC (n = 18), and ASD-associated PAPVC (n = 28, mostly sinus venosus septal defects). CMR included geometric assessment of the cardiac chambers and great vessels, assessment of ventricular function, and flow patterns through the systemic (Qs) and pulmonary circulation (Qp). Patients were compared with a 40 control subjects with normal CMR findings. Significant differences were observed between controls, isolated ASD, isolated PAPVC, and ASD-associated PAPVC groups in left ventricular end-diastolic volumes (EDVs) indexed to body surface area (BSA) [80 mL/m2 (75-90) vs. 71 mL/m2 (57-79) vs. 71 mL/m2 (63-80) vs. 64 mL/m2 [57-72], P < 0.001], right ventricular EDVs/BSA [82 mL/m2 (74-88) vs. 110 mL/m2 (101-127) vs. 150 mL/m2 (120-165) vs. 154 mL/m2 (128-181), P < 0.001)] and Qp/Qs ratio [0.99 (0.95-1.01) vs. 1.49 (1.34-1.67) vs. 1.96 (1.55-2.40) vs. 2.15 (1.81-2.64), P < 0.001]. No significant modulating factors were found for cardiac chambers or great vessels geometry, ventricular function, or flow patterns between the patient groups. CONCLUSION: Despite phenotypic differences, no specific anatomical influences were found, suggesting that outcomes in isolated ASD, isolated PAPVC, and ASD-associated PAPVC are mainly driven by the degree of shunting.