Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Experimental investigation of the flow downstream of a dysfunctional bileaflet mechanical aortic valve

View through CrossRef
AbstractMechanical heart valve replacement is the preferred alternative in younger patients with severe symptomatic aortic valve disease. However, thrombus and pannus formations are common complications associated with bileaflet mechanical heart valves. This leads to risks of valve leaflet dysfunction, a life‐threatening event. In this experimental study, we investigate, using time‐resolved planar particle image velocimetry, the flow characteristics in the ascending aorta in the presence of a dysfunctional bileaflet mechanical heart valve. Several configurations of leaflet dysfunction are investigated and the induced flow disturbances in terms of velocity fields, viscous energy dissipation, wall shear stress, and accumulation of viscous shear stresses are evaluated. We also explore the ability of a new set of parameters, solely based on the analysis of the normalized axial velocity profiles in the ascending aorta, to detect bileaflet mechanical heart valve dysfunction and differentiate between the different configurations tested in this study. Our results show that a bileaflet mechanical heart valve dysfunction leads to a complex spectrum of flow disturbances with each flow characteristic evaluated having its own worst case scenario in terms of dysfunction configuration. We also show that the suggested approach based on the analysis of the normalized axial velocity profiles in the ascending aorta has the potential to clearly discriminate not only between normal and dysfunctional bilealfet heart valves but also between the different leaflet dysfunction configurations. This approach could be easily implemented using phase‐contrast MRI to follow up patients with bileaflet mechanical heart valves.
Title: Experimental investigation of the flow downstream of a dysfunctional bileaflet mechanical aortic valve
Description:
AbstractMechanical heart valve replacement is the preferred alternative in younger patients with severe symptomatic aortic valve disease.
However, thrombus and pannus formations are common complications associated with bileaflet mechanical heart valves.
This leads to risks of valve leaflet dysfunction, a life‐threatening event.
In this experimental study, we investigate, using time‐resolved planar particle image velocimetry, the flow characteristics in the ascending aorta in the presence of a dysfunctional bileaflet mechanical heart valve.
Several configurations of leaflet dysfunction are investigated and the induced flow disturbances in terms of velocity fields, viscous energy dissipation, wall shear stress, and accumulation of viscous shear stresses are evaluated.
We also explore the ability of a new set of parameters, solely based on the analysis of the normalized axial velocity profiles in the ascending aorta, to detect bileaflet mechanical heart valve dysfunction and differentiate between the different configurations tested in this study.
Our results show that a bileaflet mechanical heart valve dysfunction leads to a complex spectrum of flow disturbances with each flow characteristic evaluated having its own worst case scenario in terms of dysfunction configuration.
We also show that the suggested approach based on the analysis of the normalized axial velocity profiles in the ascending aorta has the potential to clearly discriminate not only between normal and dysfunctional bilealfet heart valves but also between the different leaflet dysfunction configurations.
This approach could be easily implemented using phase‐contrast MRI to follow up patients with bileaflet mechanical heart valves.

Related Results

Statistical Characteristics of Flow Field through Open and Semi-Closed Bileaflet Mechanical Heart Valve
Statistical Characteristics of Flow Field through Open and Semi-Closed Bileaflet Mechanical Heart Valve
The formation of thrombi on the streamlined surface of the bileaflet mechanical heart valves is one of the main disadvantages of such valves. Thrombi block the valve leaflets and d...
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...
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. ...
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. ...
In vitro characterization of Lagrangian fluid transport downstream of a dysfunctional bileaflet mechanical aortic valve
In vitro characterization of Lagrangian fluid transport downstream of a dysfunctional bileaflet mechanical aortic valve
This experimental study aims to explore the Lagrangian nature of fluid transport downstream of a bileaflet mechanical aortic valve under different malfunction scenarios that might ...
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...

Back to Top