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Pediatric Cardiology as the Science of Adaptation Under Cardiovascular Constraint: Rethinking the Fundamental Unit of
Colin J McMahon1,2, Michael Kim3
1Department of Pediatric Cardiology, Children's Health Ireland at Crumlin, Dublin, D12 N512, Ireland. cmcmahon992004@yahoo.com.
Abstract:
Pediatric cardiology has traditionally been organized around cardiac anatomy and physiology. Congenital and acquired cardiovascular disorders are classified according to structural and functional abnormalities, and clinical management is directed toward their identification and treatment. This approach has transformed survival and remains foundational to the discipline. As outcomes improve, however, an increasingly important question is why individuals exposed to similar cardiovascular constraints follow markedly different long-term trajectories. We propose adaptation under cardiovascular constraint as an integrative framework for studying this variation. Cardiovascular disorders establish physiological constraints within developing individuals, while trajectories of neurodevelopment, exercise capacity, growth, physiological reserve, and multisystem health emerge through interactions among those constraints, development, and adaptive responses. We propose the developmental trajectory as a fundamental unit through which adaptation can be observed and studied alongside anatomical diagnosis and conventional physiology. This perspective builds on developments already occurring within pediatric cardiology, including longitudinal and precision-health approaches, and integrates concepts from resilience theory, developmental biology, complexity science, network physiology, and physiological reserve. Pediatric cardiovascular disorders provide particularly informative models of developmental adaptation because physiological constraints may begin early, persist across development, and be characterized longitudinally. The framework reframes a central scientific question in pediatric cardiology: how do developing individuals maintain, modify, or lose function under sustained cardiovascular constraint? Its empirical value will depend on whether longitudinal measures of adaptation improve prediction, identify emerging vulnerability, or reveal potentially modifiable processes beyond established risk models.
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