Related Experiment Video
Updated: Apr 19, 2026

Echocardiographic Approaches and Protocols for Comprehensive Phenotypic Characterization of Valvular Heart Disease in Mice
Published on: February 14, 2017
Etiology of bicuspid aortic valve disease: Focus on hemodynamics
Samantha K Atkins1, Philippe Sucosky1
1Samantha K Atkins, Philippe Sucosky, Department of Aerospace and Mechanical Engineering, University of Notre Dame, Notre Dame, IN 46556, United States.
Insights
Bicuspid aortic valve (BAV) disease, the most common heart defect, may stem from altered blood flow mechanics, not just genetics. New research highlights hemodynamic stresses contributing to valve calcification and aortic dilation in BAV patients.
Area of Science:
- Cardiology
- Biomedical Engineering
- Genetics
Background:
- Bicuspid aortic valve (BAV) is the most common inherited cardiac defect, often leading to calcific aortic valve disease and aortic dilation.
- The exact cause of BAV-related pathologies remains debated, with historical links to genetic factors.
- Significant clinical and economic burdens necessitate a deeper understanding of BAV disease etiology.
Purpose of the Study:
- To review and discuss the hypothetical etiologies of bicuspid aortic valve disease.
- To emphasize recent advances supporting a hemodynamic theory for BAV pathogenesis.
- To highlight the need for investigating causality between mechanical forces and biological responses in BAV.
Main Methods:
- Review of current literature on BAV disease.
- Discussion of findings from advanced cardiovascular imaging techniques.
- Exploration of flow characterization methods and tissue culture studies.
Main Results:
- Recent imaging and flow studies suggest altered hemodynamics play a crucial role in BAV complications.
- Abnormal mechanical stresses on leaflets and aortic walls may trigger cell-mediated processes.
- Evidence increasingly supports a hemodynamic etiology over purely genetic factors.
Conclusions:
- Hemodynamic forces, rather than solely genetics, are increasingly implicated in the development of BAV valvulopathy and aortopathy.
- Further research is needed to establish a causal link between mechanical abnormalities and BAV disease pathogenesis.
- Understanding the hemodynamic basis of BAV disease is critical for developing targeted therapies.
Abstract:
The bicuspid aortic valve (BAV) is the most common form of inheritable cardiac defect. Although this abnormality may still achieve normal valvular function, it is often associated with secondary valvular and aortic complications such as calcific aortic valve disease and aortic dilation. The clinical significance and economic burden of BAV disease justify the need for improved clinical guidelines and more robust therapeutic modalities, which address the root-cause of those pathologies. Unfortunately, the etiology of BAV valvulopathy and aortopathy is still a debated issue. While the BAV anatomy and its secondary complications have been linked historically to a common genetic root, recent advances in medical imaging have demonstrated the existence of altered hemodynamics near BAV leaflets prone to calcification and BAV aortic regions vulnerable to dilation. The abnormal mechanical stresses imposed by the BAV on its leaflets and on the aortic wall could be transduced into cell-mediated processes, leading ultimately to valvular calcification and aortic medial degeneration. Despite increasing evidence for this hemodynamic etiology, the demonstration of the involvement of mechanical abnormalities in the pathogenesis of BAV disease requires the investigation of causality between the blood flow environment imposed on the leaflets and the aortic wall and the local biology, which has been lacking to date. This editorial discusses the different hypothetical etiologies of BAV disease with a particular focus on the most recent advances in cardiovascular imaging, flow characterization techniques and tissue culture methodologies that have provided new evidence in support of the hemodynamic theory.
Related Concept Videos
Aortic Regurgitation I: Introduction
Mitral Stenosis I: Introduction
Aortic Regurgitation II: Clinical Features and Diagnostic Tests
Mitral Valve Prolapse I: Introduction
Mitral Regurgitation I: Introduction
Heart Valves
The AV valves prevent the backflow of blood from the ventricles to the atria during ventricular contraction. These valves function with the assistance of the chordae tendineae and papillary muscles. When the ventricles are relaxed, the chordae tendineae are slack, allowing blood to flow from the atria into the...

