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Published on: December 22, 2023
Is biventricular vascular coupling a better indicator of ventriculo-ventricular interaction in congenital heart
Emily L Yang1, Shelby Kutty2, Brian D Soriano1
1Division of Cardiology, Seattle Children's Hospital, Seattle, WA, USA.
Insights
Cardiovascular MRI offers a superior method for assessing ventricular-vascular coupling ratio in children with congenital heart disease (CHD). This MRI-derived ratio better reflects ventriculo-ventricular interaction compared to traditional echocardiography methods.
Area of Science:
- Pediatric Cardiology
- Cardiovascular Imaging
- Biomedical Engineering
Background:
- Ventriculo-ventricular interactions are crucial in biventricular physiology but poorly quantified.
- Cardiovascular magnetic resonance (CMR) imaging offers advanced visualization of cardiac function.
- Assessing ventricular-vascular coupling ratio may elucidate these complex interactions.
Purpose of the Study:
- To evaluate the utility of ventricular-vascular coupling ratio derived from cardiovascular MRI in children with congenital heart disease (CHD).
- To compare MRI-derived ventricular-vascular coupling ratio with echocardiography measurements.
- To investigate the association between ventricular-vascular coupling ratio and patient outcomes.
Main Methods:
- Inclusion of pediatric patients with biventricular physiology and cardiac disease.
- Calculation of ventricular-vascular coupling ratio using Sanz's method (MRI) and Bullet method (echocardiography).
- Subgroup analysis for right and left heart conditions; regression analysis for outcome associations.
Main Results:
- MRI-derived biventricular ventricular-vascular coupling ratio showed significant correlations with individual ventricular ejection fractions.
- Echocardiography underestimated left ventricular-vascular coupling ratio and showed modest correlation with MRI findings.
- An uncoupled right ventricular-vascular coupling ratio weakly correlated with the need for intervention and exercise performance.
Conclusions:
- MRI-derived biventricular ventricular-vascular coupling ratio provides a more accurate assessment of ventriculo-ventricular interaction in pediatric CHD.
- These MRI-based associations are stronger than traditional parameters.
- The findings are applicable to both right and left heart conditions in pediatric CHD.
Background:
Ventriculo-ventricular interactions are known to exist, though not well quantified. We hypothesised that the ventricular-vascular coupling ratio assessed by cardiovascular MRI would provide insight into this relationship. We also sought to compare MRI-derived ventricular-vascular coupling ratio to echocardiography and patient outcomes.
Methods:
Children with cardiac disease and biventricular physiology were included. Sanz's and Bullet methods were used to calculate ventricular-vascular coupling ratio by MRI and echocardiography, respectively. Subgroup analysis was performed for right and left heart diseases. Univariate and multivariate regressions were performed to determine associations with outcomes.
Results:
A total of 55 patients (age 14.3 ± 2.5 years) were included. Biventricular ventricular-vascular coupling ratio by MRI correlated with each other (r = 0.41; p = 0.003), with respect to ventricle's ejection fraction (r = -0.76 to -0.88; p < 0.001) and other ventricle's ejection fraction (r = -0.42 to -0.47; p < 0.01). However, biventricular ejection fraction had only weak correlation with each other (r = 0.31; p = 0.02). Echo underestimated ventricular-vascular coupling ratio for the left ventricle (p < 0.001) with modest correlation to MRI-derived ventricular-vascular coupling ratio (r = 0.43; p = 0.002). There seems to be a weak correlation between uncoupled right ventricular-vascular coupling ratio with the need for intervention and performance on exercise testing (r = 0.33; p = 0.02).
Conclusion:
MRI-derived biventricular ventricular-vascular coupling ratio provides a better estimate of ventriculo-ventricular interaction in children and adolescents with CHD. These associations are stronger than traditional parameters and applicable to right and left heart conditions.
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