Fluid–structure interaction modeling in cardiovascular medicine–A systematic review 2017–2019

M Hirschhorn, V Tchantchaleishvili, R Stevens… - Medical engineering & …, 2020 - Elsevier
Finite element analysis (FEA) and computational fluid dynamics (CFD) are generally
insufficient independently to model the physics of the cardiovascular system. Individually …

How does hemodynamics affect rupture tissue mechanics in abdominal aortic aneurysm: Focus on wall shear stress derived parameters, time-averaged wall shear …

O Mutlu, HE Salman, H Al-Thani, A El-Menyar… - Computers in biology …, 2023 - Elsevier
An abdominal aortic aneurysm (AAA) is a critical health condition with a risk of rupture,
where the diameter of the aorta enlarges more than 50% of its normal diameter. The …

[HTML][HTML] On the role of aortic valve architecture for physiological hemodynamics and valve replacement, Part I: Flow configuration and vortex dynamics

P Corso, D Obrist - Computers in biology and medicine, 2024 - Elsevier
Aortic valve replacement has become an increasing concern due to the rising prevalence of
aortic stenosis in an ageing population. Existing replacement options have limitations …

Fluid flow characteristics of healthy and calcified aortic valves using three-dimensional Lagrangian coherent structures analysis

O Mutlu, HE Salman, HC Yalcin, AB Olcay - Fluids, 2021 - mdpi.com
Aortic valve calcification is an important cardiovascular disorder that deteriorates the
accurate functioning of the valve leaflets. The increasing stiffness due to the calcification …

[HTML][HTML] Numerical investigation of the fetal left heart hemodynamics during gestational stages

HE Salman, RY Kamal, HC Yalcin - Frontiers in Physiology, 2021 - frontiersin.org
Flow-driven hemodynamic forces on the cardiac tissues have critical importance, and have a
significant role in the proper development of the heart. These mechanobiological …

Evaluating the effectiveness of 2 different flow diverter stents based on the stagnation region formation in an aneurysm sac using Lagrangian coherent structure

O Mutlu, AB Olcay, C Bilgin, B Hakyemez - World Neurosurgery, 2019 - Elsevier
Background Flow diverter stents are often used in the treatment of giant aneurysms at
carotid arteries. Although these stents promise to decrease blood flow into the aneurysm …

Determining flow stasis zones in the intracranial aneurysms and the relation between these zones and aneurysms' aspect ratios after flow diversions

B Altındağ, A Bahadır Olcay… - Interventional …, 2023 - journals.sagepub.com
Background Flow diverter stents (FDSs) are widely used to treat aneurysms in the clinic.
However, even the same flow diverter (FD) use on different patients' aneurysm sites can …

Evaluating the effect of the number of wire of flow diverter stents on the nonstagnated region formation in an aneurysm sac using lagrangian coherent structure and …

O Mutlu, AB Olcay, C Bilgin, B Hakyemez - World Neurosurgery, 2020 - Elsevier
Background Giant aneurysms at carotid arteries are typically treated with flow diverter (FD)
stents in the clinic. Although the goal of an FD stent is to direct most of the blood flow into the …

Understanding the effect of effective metal surface area of flow diverter stent's on the patient-specific intracranial aneurysm numerical model using Lagrangian …

O Mutlu, AB Olcay, C Bilgin, B Hakyemez - Journal of Clinical …, 2020 - Elsevier
The effective metal surface area (EMSA) of flow diversions plays an essential role in the
occlusion mechanism inside the aneurysm since the value of EMSA determines the amount …

Advances in biomedical fluid–structure interaction: Methodologies and applications from an interfacing perspective

T Hou, X Wei, AKM Iqbal, X Yang, J Wang, Y Ren… - Physics of …, 2024 - pubs.aip.org
Fluid–structure interaction (FSI) is a nonlinear multiphysics phenomenon that describes the
interactions between incompressible fluid flows and immersed structures, making it …