Biofluids: Physiological VI - Experimental Studies in Blood Flows
ORAL · R23 ·
Presentations
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Dynamical systems characterization of inertial effects of fluid flow in a curved artery model under pulsatile flow forcing
ORAL
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Authors
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Michael Leggiero
- The George Washington University
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Kartik V. Bulusu
- The George Washington University
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Michael Plesniak
- The George Washington University
- George Washington University
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Pulse wave analysis in a 180-degree curved artery model: Implications under physiological and non-physiological inflows
ORAL
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Authors
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Kartik V. Bulusu
- The George Washington University
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Michael Plesniak
- The George Washington University
- George Washington University
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Secondary flow structures in the presence of Type-IV stent fractures through a bent tube model for curved arteries: Effect of circulation thresholding
ORAL
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Authors
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Shadman Hussain
- The George Washington University
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Kartik V. Bulusu
- The George Washington University
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Michael Plesniak
- The George Washington University
- George Washington University
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Setup of a Biomedical Facility to Study Physiologically Relevant Flow-Structure Interactions
ORAL
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Authors
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Faraz Mehdi
- Texas Tech University
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Jian Sheng
- Texas Tech University
- Texas Tech Univ.
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Effect of centrifugal forces on formation of secondary flow structures in a 180-degree curved artery model under pulsatile inflow conditions
ORAL
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Authors
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Shannon Callahan
- The George Washington University
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Roshan Sajjad
- The George Washington University
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Kartik V. Bulusu
- The George Washington University
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Michael Plesniak
- The George Washington University
- George Washington University
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Distant downstream steady-state flow studies of a mechanical heart valve: PIV study of secondary flow in a model aortic arch
ORAL
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Authors
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Brandon R. Fix
- The George Washington University
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Christopher J. Popma
- The George Washington University
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Kartik V. Bulusu
- The George Washington University
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Michael Plesniak
- The George Washington University
- George Washington University
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Plasma protein induced clustering of red blood cells in micro capillaries
ORAL
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Authors
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Christian Wagner
- Experimental Physics, Saarland University
- Saarland University, Experimental Physics Department
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Mathias Brust
- Experimental Physics, Saarland University
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Othmane Aouane
- Experimental Physics, Saarland University
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Daniel Flormann
- Experimental Physics, Saarland University
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Marine Thiebaud
- Laboratoire Interdisciplinaire de Physique, CNRS - UMR 5588, Universit\'e Grenoble I
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Claude Verdier
- Laboratoire Interdisciplinaire de Physique, CNRS - UMR 5588, Universit\'e Grenoble I
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Gwennou Coupier
- Laboratoire Interdisciplinaire de Physique, CNRS - UMR 5588, Universit\'e Grenoble I
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Thomas Podgorski
- Laboratoire Interdisciplinaire de Physique, CNRS - UMR 5588, Universit\'e Grenoble I
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Chaouqi Misbah
- Laboratoire Interdisciplinaire de Physique, CNRS - UMR 5588, Universit\'e Grenoble I
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Hassib Selmi
- Laboratoire d'Ing\'enierie Math\'ematique, Ecole Polytechnique de Tunisie
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Flow investigation in sidewall aneurysm model using a novel PIV multi-time-lag method
ORAL
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Authors
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Pierre Bouillot
- Interventional Neuroradiology Unit, Service of Neuroradiology, University Hospitals of Geneva
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Olivier Brina
- Interventional Neuroradiology Unit, Service of Neuroradiology, University Hospitals of Geneva
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Rafik Ouared
- Interventional Neuroradiology Unit, Service of Neuroradiology, University Hospitals of Geneva
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Karl-Olof Lovblad
- Interventional Neuroradiology Unit, Service of Neuroradiology, University Hospitals of Geneva
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Vitor Mendes Pereira
- Interventional Neuroradiology Unit, Service of Neuroradiology, University Hospitals of Geneva
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Mohamed Farhat
- Laboratory for Hydrolic Machines (LMH-IMHEF), Ecole Polytechnique Federale de Lausanne (EPFL), Avenue de Cour 33bis, CH-1007 Lausanne, Switzerland
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Effect of swirling inlet condition on the flow field in a stenosis phantom model
ORAL
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Authors
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Hojin Ha
- POSTECH
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Sang Joon Lee
- POSTECH
- Department of Mechanical Engineering, Pohang University of Science and Technology (POSTECH)
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