Cardiac and Cardiovascular Mechanics
ORAL · Z05 · ID: 676968
Presentations
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Impact of body movement on the aortic valve hemodynamics, an ex-vivo experimental study
ORAL
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Presenters
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Wyatt E Clark
Northern Arizona University
Authors
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Wyatt E Clark
Northern Arizona University
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Ryan T Schuster
Northern Arizona University
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Zhongwang Dou
Northern Arizona University, Mechanical Engineering Department, Northern Arizona University
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Evaluating the Effect of Subaortic Stenosis on Blood Fow Downstream of Bileaflet Mechanical Heart Valve Using Particle Image Velocimetry.
ORAL
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Publication: A new article titled "A New Insight into the Hemodynamic Performance of Prosthetic Heart Valves In The Presence Of Different Types of Subaortic Stenosis: In Vitro Investigation Using a Cutting-Edge Cardiac Simulator and Particle Image Velocimetry." is submitted to PLOS ONE Journal.
Presenters
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Baha Al-Deen T El-Khader
The Hashemite University
Authors
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Othman Smadi
The Hashemite University
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Baha Al-Deen T El-Khader
The Hashemite University
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Elucidating the effect of fibrosis on left atrial flow using multi-physics, multi-scale simulations
ORAL
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Presenters
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Alejandro Gonzalo
University of Washington
Authors
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Alejandro Gonzalo
University of Washington
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Christoph M Augustin
University of Graz
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Savannah Bifulco
University of Washington
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Manuel Guerrero-Hurtado
Univ Carlos III De Madrid, Univ. Carlos III de Madrid
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Eduardo Duran
Univ Carlos III De Madrid
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Manuel Garcia-Villalba
Univ Carlos III De Madrid
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Pablo Martínez-Legazpi
Gregorio Marañon Hospital, Spain, UNED, Hospital Gregorio Maranon, Madrid, Spain, Dpt. Física Matemática y Fluidos, UNED
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Oscar Flores
Univ Carlos III de Madrid
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Javier Bermejo
Gregorio Marañon Hospital, Spain, Hospital General Universitario Gregorio Marañón, Hospital Gregorio Maranon, Madrid, Spain, Hospital General Universitario Gregorio Marañon
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Gernot Plank
University of Graz
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Nazem Akoum
University of Washington School of Medicine
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Patrick M Boyle
University of Washington
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Juan Carlos del Alamo
University of Washington
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Inferring left atrial appendage (LAA) hemodynamics from 4D CT contrast dynamics by physics informed neural networks (PINNs)
ORAL
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Presenters
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Bahetihazi Maidu
UC San Diego
Authors
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Bahetihazi Maidu
UC San Diego
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Alejandro Gonzalo
University of Washington
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Clarissa Bargellini
University of Washington
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Lorenzo Rossini
UC San Diego
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Davis Vigneault
UC San Diego
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Pablo Martínez-Legazpi
Gregorio Marañon Hospital, Spain, UNED, Hospital Gregorio Maranon, Madrid, Spain, Dpt. Física Matemática y Fluidos, UNED
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Javier Bermejo
Gregorio Marañon Hospital, Spain, Hospital General Universitario Gregorio Marañón, Hospital Gregorio Maranon, Madrid, Spain, Hospital General Universitario Gregorio Marañon
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Oscar Flores
Univ Carlos III de Madrid
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Manuel Garcia-Villalba
Univ Carlos III De Madrid
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Elliot McVeigh
UC San Diego
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Andrew M Kahn
UC San Diego, University of California, San Diego
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Juan Carlos del Alamo
University of Washington
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Study of cardiac fluid dynamics in the right side of the heart with AI PIV
ORAL
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Presenters
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Wojciech Majewski
Microvec Pte Ltd
Authors
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Wojciech Majewski
Microvec Pte Ltd
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Nidhal Bouchahda
University of Monastir
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Rim Ayari
University of Monastir
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Runjie Wei
Microvec Pte Ltd
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Molding Aortic Valve Hemodynamics Using a Novel Immersed Boundary Method
ORAL
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Presenters
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Mishal Raza
University of North Texas, University of North texas
Authors
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Hamid Sadat
University of North Texas
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Mishal Raza
University of North Texas, University of North texas
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Kamau Kingora
University of North Texas
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Aortic Replacement valves Hemodynamics in regards to Blood Stasis and Residence time
ORAL
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Presenters
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Alexandros Rosakis
Caltech
Authors
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Alexandros Rosakis
Caltech
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Morteza Gharib
Caltech, California Institute of Technology
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Hemodynamics of infarcted hearts
ORAL · Invited
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Publication: GPU accelerated digital twins of the human heart open new routes for cardiovascular research (in preparation).
Presenters
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Roberto Verzicco
Univ of Roma Tor Vergata, University of Roma Tor Vergata
Authors
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Roberto Verzicco
Univ of Roma Tor Vergata, University of Roma Tor Vergata
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Francesco Viola
Gran Sasso Science Institute
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Giulio Del Corso
Gran Sasso Science Institute
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Optimal cardiac resynchronization therapy: an in-silico investigation using a whole-heart model
ORAL
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Publication: Viola, F., Spandan, V., Meschini, V., Romero, J., Fatica, M., de Tullio, M. D., & Verzicco, R. (2022). FSEI-GPU: GPU accelerated simulations of the fluid–structure–electrophysiology interaction in the left heart. Computer physics communications, 273, 108248.<br><br>Verzicco, R. (2022). Electro-fluid-mechanics of the heart. Journal of Fluid Mechanics, 941.<br><br>Viola, F., Del Corso, G., De Paulis, R. & Verzicco, R. (2022). GPU accelerated digital twins of the human heart open new routes for cardiovascular research. In revision.
Presenters
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Francesco Viola
Gran Sasso Science Institute
Authors
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Francesco Viola
Gran Sasso Science Institute
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Giulio Del Corso
Gran Sasso Science Institute
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Ruggero De Paulis
unicamillus
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Roberto Verzicco
Univ of Roma Tor Vergata, University of Roma Tor Vergata
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Modeling High Residence Time Platelets in LVAD patients. Intraventricular Flow and Lagrangian Statistics in a Patient-Specific Model of a Deformable Ventricle.
ORAL
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Presenters
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Tingting Yang
University of Washington
Authors
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Tingting Yang
University of Washington
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Michael C Barbour
University of Washington
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Claudius Mahr
Unversity of Washington
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Alberto Aliseda
University of Washington, Department of Mechanical Engineering, University of Washington
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