"Effect of Bicuspid Aortic Valve Cusp Fusion on Aorta Wall Shear Stress: Preliminary Computational Assessment and Implication for Aortic Dilation"
written by Kai Cao, Philippe Sucosky,
published by World Journal of Cardiovascular Diseases, Vol.5 No.6, 2015
has been cited by the following article(s):
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[2] The Hemodynamic Theory of Bicuspid Aortic Valve Disease
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[3] Impact of the bicuspid aortic valve on aortic root haemodynamics: three-dimensional computed fluid dynamics simulation
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[5] Discrete Subaortic Stenosis: Perspective Roadmap to a Complex Disease
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[6] Wall Shear Stress Directional Abnormalities in BAV Aortas: Toward a New Hemodynamic Predictor of Aortopathy?
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[7] Design of a Novel Tissue Culture System to Subject Aortic Tissue to Multidirectional Bicuspid Aortic Valve Wall Shear Stress
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[8] Morphotype-Dependent Flow Characteristics in Bicuspid Aortic Valve Ascending Aortas: A Benchtop Particle Image Velocimetry Study
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[9] Fluid–Structure Interaction Models of Bicuspid Aortic Valves: The Effects of Nonfused Cusp Angles
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[10] Fluid-structure interaction modeling of valvular hemodynamics and secondary aortopathy
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[11] Aortic valve leaflet wall shear stress characterization revisited: impact of coronary flow
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[12] Simulations of morphotype-dependent hemodynamics in non-dilated bicuspid aortic valve aortas
Journal of Biomechanics, 2016
[13] Mechanobiology in cardiovascular disease management: potential strategies and current needs
Frontiers in bioengineering and biotechnology, 2016
[14] Computational comparison of regional stress and deformation characteristics in tricuspid and bicuspid aortic valve leaflets
International Journal for Numerical Methods in Biomedical Engineering, 2016
[15] Bicuspid aortic valve hemodynamics does not promote remodeling in porcine aortic wall concavity
World Journal of Cardiology, 2015
[16] Predictores biomecánicos de dilatación en aorta ascendente en población con válvula aórtica bicúspide mediante resonancia magnética 4D flow