Javascript must be enabled to continue!
CFD Based on The Visualisation of Aortic Valve Mechanism in Aortic Valve Stenosis for Risk Prediction at The Peak Velocity
View through CrossRef
Aortic valve disease plays a crucial role in the development of cardiovascular disease (CVD), leading to increased rates of mortality and morbidity. Two diseases, aortic valve regurgitation and aortic valve stenosis are known to occur in the aortic valve. However, aortic valve stenosis is gaining attention due to its severe impact on the patient. The malfunction of the aortic valve might be affected by blood flow, which leads to stenosis. This study aims to investigate the blood flow re-circulation on the aortic valve in different stenotic regions when the blood’s velocity reaches the pick flow of the time in the systole phases. Four different models of aortic valve stenotic are designed using computer-aided design (CAD) software. The computational fluid dynamics (CFD) approach governed by the Navier-Stokes equation is imposed to identify the characteristics of the blood backflow at the left ventricle. Several hemodynamic factors are considered, such as time-averaged wall shear stress (TAWSS), oscillatory shear index (OSI) and relative residence time (RRT). The blood flow characteristic is expected to be chaotic, especially at the highest percentages of aortic valve stenosis, presenting the worst condition to the heart. This finding supports healthcare providers in foreseeing the deterioration of the patient’s condition and opting for aorta valve surgery replacement.
Title: CFD Based on The Visualisation of Aortic Valve Mechanism in Aortic Valve Stenosis for Risk Prediction at The Peak Velocity
Description:
Aortic valve disease plays a crucial role in the development of cardiovascular disease (CVD), leading to increased rates of mortality and morbidity.
Two diseases, aortic valve regurgitation and aortic valve stenosis are known to occur in the aortic valve.
However, aortic valve stenosis is gaining attention due to its severe impact on the patient.
The malfunction of the aortic valve might be affected by blood flow, which leads to stenosis.
This study aims to investigate the blood flow re-circulation on the aortic valve in different stenotic regions when the blood’s velocity reaches the pick flow of the time in the systole phases.
Four different models of aortic valve stenotic are designed using computer-aided design (CAD) software.
The computational fluid dynamics (CFD) approach governed by the Navier-Stokes equation is imposed to identify the characteristics of the blood backflow at the left ventricle.
Several hemodynamic factors are considered, such as time-averaged wall shear stress (TAWSS), oscillatory shear index (OSI) and relative residence time (RRT).
The blood flow characteristic is expected to be chaotic, especially at the highest percentages of aortic valve stenosis, presenting the worst condition to the heart.
This finding supports healthcare providers in foreseeing the deterioration of the patient’s condition and opting for aorta valve surgery replacement.
Related Results
Critical Arterial Stenosis Revisited
Critical Arterial Stenosis Revisited
Abstract
Introduction
Stenosis of an organ/tissue primary artery can produce ischemia or only reduce blood flow reserve. Despit...
Abstract 4369914: Successful Transfemoral TAVR in a Patient with Chronic Aortic Dissection and Severe Aortic Insufficiency
Abstract 4369914: Successful Transfemoral TAVR in a Patient with Chronic Aortic Dissection and Severe Aortic Insufficiency
Transcatheter aortic valve replacement is a well-established treatment for high-surgical-risk patients with severe aortic disease, providing a less invasive alternative to traditio...
Situated Visualization in Motion
Situated Visualization in Motion
Visualisation localisée en mouvement
Dans ma thèse, je définis ce qu'est la visualisation en mouvement et j'apporte plusieurs contributions sur la manière de visual...
AORTIC ROOT ANEURYSM OR ECTASIA TREATED WITH AORTIC ROOT WRAPPED PROCEDURE
AORTIC ROOT ANEURYSM OR ECTASIA TREATED WITH AORTIC ROOT WRAPPED PROCEDURE
Objectives
To develop a relatively simple and effective and less risk operation, aortic root wrapped procedure, to treat with aortic root aneurysm or ectasia.
...
Perspective Chapter: Lipoprotein (a), Cardiac Amyloidosis, and Aortic Stenosis - Underestimated Associations
Perspective Chapter: Lipoprotein (a), Cardiac Amyloidosis, and Aortic Stenosis - Underestimated Associations
This chapter aims to address two peculiar aspects of pathophysiology and clinical management of aortic valve stenosis, such as coexistence with cardiac amyloidosis and association ...
Acquired Supravalvular Aortic Stenosis: Review of a Rare Conundrum with Diverse Etiologies
Acquired Supravalvular Aortic Stenosis: Review of a Rare Conundrum with Diverse Etiologies
Background
Supravalvular aortic stenosis is a rare form of left ventricular outflow tract obstruction. Classically, supravalvular aortic stenosis occurs seconda...
Blood pressure, hypertension, and the risk of aortic aneurysm in the UK Biobank
Blood pressure, hypertension, and the risk of aortic aneurysm in the UK Biobank
Abstract
Background
Although an association between elevated blood pressure and risk of aortic aneurysm is established, f...
Aortic root wrapped procedure
Aortic root wrapped procedure
Objective
To develop a relatively simple and effective and less risk operation, aortic root wrapped procedure, to treat with aortic root aneurysm or ectasia.
...

