Biological Fluid Dynamics: Physiological Large Vessels I
ORAL · M15 · ID: 22757
Presentations
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A fast approach to determine resistances and compliances of the Windkessel models in the simulation of aortic flow
ORAL
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Presenters
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Zongze Li
University of South Florida
Authors
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Zongze Li
University of South Florida
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Wenbin Mao
University of South Florida
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Fluid-particle Interaction Using Immersed Finite Element Method With Applications in Arterial Flows
ORAL
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Presenters
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Chayut Teeraratkul
University of Colorado, Boulder
Authors
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Chayut Teeraratkul
University of Colorado, Boulder
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Debanjan Mukherjee
University of Colorado, Boulder
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Morphological Features of Intraluminal Thrombus Drive Vessel Wall Stress and Oxygen Flow
ORAL
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Presenters
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Rana Zakerzadeh
Duquesne University
Authors
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Rana Zakerzadeh
Duquesne University
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Alexis Throop
Duquesne University
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Martina Bukac
University of Notre Dame
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Fluid mechanics of prostatic artery embolization
ORAL
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Presenters
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Mostafa Mahmoudi
Department of Mechanical Engineering, Northern Arizona University, Northern Arizona University
Authors
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Mostafa Mahmoudi
Department of Mechanical Engineering, Northern Arizona University, Northern Arizona University
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Chadrick Jennings
Department of Mechanical Engineering, Northern Arizona University
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Keith Pereira
Department of Radiology, Saint Louis University
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Andrew F Hall
Department of Biomedical Engineering, Saint Louis University
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Amirhossein Arzani
Department of Mechanical Engineering, Northern Arizona University, Northern Arizona University
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Flow in the Circle of Willis during vasospasm: A poorly understood manifold for complex intracranial hemodynamics through patient-specific simulations.
ORAL
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Presenters
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Angela Straccia
University of Washington
Authors
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Angela Straccia
University of Washington
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Dan Leotta
University of Washington
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Fanette Chassagne
Mines Saint-Etienne, Mines Saint-Etienne, INSERM, UMR1059, SAINBIOSE, CIS-EMSE, Saint-Etienne, France
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David Bass
Dpt. of Neurological Surgery, Univ. of Washington, University of Washington
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Michael Levitt
Dpt. of Neurological Surgery, Univ. of Washington, University of Washington
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Alberto Aliseda
University of Washington
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The Effects of Left Ventricle Contractility on Aortic-Brain Hemodynamic Coupling
ORAL
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Presenters
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Niema M Pahlevan
University of Southern California, Univ of Southern California, Department of Aerospace and Mechanical Engineering, University of Southern California, Los Angeles, CA, USA
Authors
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Niema M Pahlevan
University of Southern California, Univ of Southern California, Department of Aerospace and Mechanical Engineering, University of Southern California, Los Angeles, CA, USA
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Faisal Amlani
Univ of Southern California, University of Southern California
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Kevin S King
Department of Neuroradiology, Barrow Neurological Institute
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Arian Aghilinejad
University of Southern California
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Numerical investigation of venous valve flow conditions in relation to development of disease
ORAL
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Presenters
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Jacob T Biesinger
Utah Valley University
Authors
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Jacob T Biesinger
Utah Valley University
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Matthew S Ballard
Utah Valley Univ
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The fluid-structure instability driving aortic aneurysm formation and growth
ORAL
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Presenters
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Tom Y Zhao
Northwestern University
Authors
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Tom Y Zhao
Northwestern University
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Guy Elisha
Northwestern University, Mechanical Engineering, Northwestern University
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Ethan Johnson
Northwestern University
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Sourav Halder
Northwestern University, Theoretical and Applied Mechanics, Northwestern University
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Ben C Smith
Northwestern University
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Bradley D Smith
Northwestern University
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Michael Markl
Northwestern University
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Neelesh A Patankar
Northwestern University, Mechanical Engineering, Northwestern University
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On the Modeling of Mechanotransduction in Flow-Mediated Dilation
ORAL
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Publication: Sidnawi, B., Chen, Z., Sehgal, C. & Wu, Q. Characterization of arterial flow mediated dilation via a physics-based model. J. Mech. Behav. Biomed. Mater. 107, 103756 (2020).<br><br>Sidnawi, B., Chen, Z., Sehgal, C., Santhanam, S. & Wu, Q. On the modeling of mechanotransduction in flow-mediated dilation. J. Mech. Behav. Biomed. Mater. 120, 104606 (2021).
Presenters
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Bchara Sidnawi
Villanova University
Authors
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Bchara Sidnawi
Villanova University
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Zhen Chen
University of Pennsylvania
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Chandra Sehgal
University of Pennsylvania
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Sridhar Santhanam
Villanova University
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Qianhong Wu
Villanova University
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Investigation of endothelial and stem cell biochemical response in biomimetic 3D printed blood vessel scaffolds
ORAL
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Presenters
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Kartik V Bulusu
George Washington University
Authors
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Kartik V Bulusu
George Washington University
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Timothy Esworthy
George Washington University
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Lijie Grace Zhang
George Washington University
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Michael W Plesniak
George Washington University
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