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Abstract

<jats:p>Right ventricular (RV) trabeculation may reflect adaptation to loading conditions and imprinting of early developmental processes, yet its genetic determinants and clinical relevance in adults remain poorly understood. In contrast to the left ventricle, the RV has distinct developmental origins, geometry and loading conditions, suggesting chamber-specific mechanisms of trabecular remodelling. Using deep learning-based image segmentation and fractal dimension analysis, we quantified RV trabecular complexity in diastole and systole in 48,118 UK Biobank participants with genetic data. RV trabecular morphology was associated with systolic function, as well as cardiometabolic and respiratory conditions. Genetic analyses across the allele frequency spectrum identified 52 common loci and 45 genes with a burden of protein-altering variants, implicating sarcomeric function, cytoskeletal organisation, and early cardiac patterning. Although many loci showed shared effects across both ventricles, we also identified RV-specific genetic associations linked to congenital heart disease and respiratory phenotypes. Notably, associations at CFTR suggest a connection between airway-associated mucus regulation and RV remodelling, whereas MYH6 implicates sarcomeric and developmental mechanisms in adult RV patterning. Together, these findings establish RV trabeculation as a trait that captures both shared and chamber-specific mechanisms relevant to cardiovascular health and disease.</jats:p>

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Keywords

genetic conditions developmental mechanisms trabecular

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