Yayın:
Characterization of Disturbed Hemodynamics due to Stenosed Aortic Jets with a Lagrangian Coherent Structures Technique

dc.contributor.authorOlcay, A. B.
dc.contributor.authorAmindari, A.
dc.contributor.authorKirkkopru, K.
dc.contributor.authorYalcin, H. C.
dc.date.accessioned2026-01-26T02:47:17Z
dc.date.issued2018-03-01
dc.description.abstractThe aortic valve is located at left ventricular outlet and is exposed to the highest pressure in the cardiovascular system. Problems associated with the valve leaflet movement can cause complications for the heart. Specifically, aortic stenosis (AS) arises when aortic leaflets do not efficiently open. In the present study, Lagrangian Coherent Structures (LCSs) were utilized by processing a variety of Computational Fluid Dynamics (CFD) models velocity vector data further to identify the characteristics of AS jets. Particularly, effective orifice areas (EOA) for different cases were accurately identified from unstable manifolds of finite time Lyapunov exponent (FTLE) fields. Calcified leaflets were modeled by setting the leaflet's Young modulus to 10 MPa and 20 MPa for moderately and severely calcified leaflets respectively while a healthy leaflet's Young modulus was assigned to be 2 MPa. Increase in calcification degree of the leaflet caused destruction of the vortex structures near the fibrosa layer of the leaflet indicating a malfunctioning for the movement mechanism of the leaflet. Furthermore, when we analyzed stable manifolds, we identified a blockage region at the flow upstream due to the stagnant blood here. Compared to a healthy case, for the calcified valve, this blockage region was enlarged, implying an increase in AS jet velocity and wall shear stress on leaflets. As a conclusion, results from the present study indicate that aortic leaflet malfunctioning could be accurately evaluated when LCS technique was employed by post processing velocity vector data from CFD. Such precise analysis is not possible using the Eulerian CFD approach or a Doppler echocardiography since these methods are based on only analyzing instantaneous flow quantities and they overlook fluid flow characteristics of highly unsteady flows.
dc.description.urihttps://doi.org/10.29252/jafm.11.02.28185
dc.description.urihttps://doaj.org/article/51fe5c0aebe647af8bc30a4889fa8f80
dc.description.urihttps://goo.gl/S7xr2a
dc.description.urihttps://hdl.handle.net/10576/6439
dc.description.urihttps://aperta.ulakbim.gov.tr/record/36585
dc.description.urihttps://doi.org/https://doi.org/10.29252/jafm.11.02.28185
dc.identifier.doi10.29252/jafm.11.02.28185
dc.identifier.eissn1735-3645
dc.identifier.endpage384
dc.identifier.issn1735-3572
dc.identifier.openairedoi_dedup___::ca73b79e97a66b667c3d80cd5d269644
dc.identifier.startpage375
dc.identifier.urihttps://hdl.handle.net/11527/58048
dc.identifier.volume11
dc.language.isoeng
dc.publisherAcademic World Research
dc.relation.ispartofJournal of Applied Fluid Mechanics
dc.rightsOPEN
dc.sdg.typeGoal 2: Zero Hunger
dc.sdg.typeGoal 3: Good Health and Well-being
dc.subjectStenosis
dc.subjectFluid structure interaction
dc.subjectHemodynamics
dc.subjectLagrangian coherent structures
dc.subjectComputational fluid dynamics
dc.subjectCalcification
dc.subjectWall shear stress
dc.subjectPressure
dc.subjectTJ1-1570
dc.subjectAortic valve
dc.subjectMechanical engineering and machinery
dc.subjectLagrangian coherent structures
dc.subjectAortic valve
dc.subjectStenosis
dc.subjectComputational fluid dynamics
dc.subjectFluid structure interaction
dc.subjectCalcification
dc.subjectHemodynamics
dc.subjectVortex
dc.subjectWall shear stress
dc.subjectPressure.
dc.subjectVortex
dc.titleCharacterization of Disturbed Hemodynamics due to Stenosed Aortic Jets with a Lagrangian Coherent Structures Technique
dc.typeArticle
dspace.entity.typePublication

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