Key result
Understanding the role of pulmonary vascular hemodynamics on right ventricular and tricuspid valve morphology improves the pathophysiological comprehension of secondary tricuspid regurgitation.
Why the study?
Severe functional or secondary TR is associated with poor long-term outcomes, but an understanding of its physiologic causes is lacking, precluding a systematic treatment approach.
A comprehensive understanding of the complex anatomic relationship between the tricuspid valve, right ventricle, and pulmonary vasculature is essential for improving therapeutic approaches to secondary tricuspid regurgitation.
Refines secondary tricuspid regurgitation mechanisms; leaves open whether pulmonary vascular targeting alters morphology or outcomes.
Importance: Severe functional or secondary tricuspid regurgitation (TR) is associated with poor long-term outcomes in natural history studies as well as specific disease states. An understanding of the physiologic causes of the TR is lacking precluding a systematic approach to treatment. Observations: The complex anatomic relationship between the tricuspid valve apparatus and structure of the right side of the heart lends insight into the functional changes seen with secondary TR. The association of these changes with changes in pulmonary vascular hemodynamics can lead to a cascade of events that result in disease progression. Conclusions and Relevance: Appreciating the role of pulmonary vascular hemodynamics on right ventricular and tricuspid valve morphology and function improves our understanding of the pathophysiology of secondary TR. The limitations of current therapeutic approaches for secondary TR have stimulated interest in improving outcomes with this morbid disease. Changes in timing or approach to intervention require a more comprehensive understanding of the pathophysiology.
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Hahn et al. (2019) conducted a review in Secondary tricuspid regurgitation. Understanding the role of pulmonary vascular hemodynamics on right ventricular and tricuspid valve morphology improves the pathophysiological comprehension of secondary tricuspid regurgitation.
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