OBJECTIVES: The aim was to define the 3-dimensional (3D) geometrical changes of the aortic root and to determine the local shear stress profile of aortic root elements during the cardiac cycle. METHODS: Six sonomicrometric crystals (200 Hz) were implanted into the aortic root of five pigs at the commissures and at the aortic root base (AoB). 3D aortic root deformation including volume, torsion and tilt angle were determined. Geometrical data with measured local flow and pressure conditions was used for computed fluid dynamics modelling of the aortic root. RESULTS: Compared with end-diastole, the sinotubular junction and AoB have maximal expansion at peak ejection: 16.42 ± 6.36 and 7.60 ± 2.52%, and minimal at isovolaemic relaxation: 2.87 ± ...
The aim was to evaluate the impact of a bicuspid aortic valve (BAV) on local shear stress and on the...
Understanding aortic root in vivo biomechanics can help in elucidating key mechanisms involved in ao...
Understanding aortic root in vivo biomechanics can help in elucidating key mechanisms involved in ao...
OBJECTIVES The aim was to define the 3-dimensional (3D) geometrical changes of the aortic root and ...
The aim was to determine 3-dimensional (3D) geometrical deformation of the aortic root (AoR) followi...
The aim was to determine 3-dimensional (3D) geometrical deformation of the aortic root (AoR) followi...
The aim was to evaluate the impact of the aortic valve reimplantation (David) and of the aortic root...
The aim was to evaluate the impact of the aortic valve reimplantation (David) and of the aortic root...
OBJECTIVES The aim was to evaluate the impact of a bicuspid aortic valve (BAV) on local shear stres...
OBJECTIVES The aim was to evaluate the impact of a bicuspid aortic valve (BAV) on local shear stres...
Background: This study was designed to investigate the anatomical relationship of the different leve...
Understanding aortic root in vivo biomechanics can help in elucidating key mechanisms involved in ao...
The aim was to evaluate the impact of a bicuspid aortic valve (BAV) on local shear stress and on the...
Understanding aortic root in vivo biomechanics can help in elucidating key mechanisms involved in ao...
Understanding aortic root in vivo biomechanics can help in elucidating key mechanisms involved in ao...
The aim was to evaluate the impact of a bicuspid aortic valve (BAV) on local shear stress and on the...
Understanding aortic root in vivo biomechanics can help in elucidating key mechanisms involved in ao...
Understanding aortic root in vivo biomechanics can help in elucidating key mechanisms involved in ao...
OBJECTIVES The aim was to define the 3-dimensional (3D) geometrical changes of the aortic root and ...
The aim was to determine 3-dimensional (3D) geometrical deformation of the aortic root (AoR) followi...
The aim was to determine 3-dimensional (3D) geometrical deformation of the aortic root (AoR) followi...
The aim was to evaluate the impact of the aortic valve reimplantation (David) and of the aortic root...
The aim was to evaluate the impact of the aortic valve reimplantation (David) and of the aortic root...
OBJECTIVES The aim was to evaluate the impact of a bicuspid aortic valve (BAV) on local shear stres...
OBJECTIVES The aim was to evaluate the impact of a bicuspid aortic valve (BAV) on local shear stres...
Background: This study was designed to investigate the anatomical relationship of the different leve...
Understanding aortic root in vivo biomechanics can help in elucidating key mechanisms involved in ao...
The aim was to evaluate the impact of a bicuspid aortic valve (BAV) on local shear stress and on the...
Understanding aortic root in vivo biomechanics can help in elucidating key mechanisms involved in ao...
Understanding aortic root in vivo biomechanics can help in elucidating key mechanisms involved in ao...
The aim was to evaluate the impact of a bicuspid aortic valve (BAV) on local shear stress and on the...
Understanding aortic root in vivo biomechanics can help in elucidating key mechanisms involved in ao...
Understanding aortic root in vivo biomechanics can help in elucidating key mechanisms involved in ao...