Biological Fluid Dynamics: Physiological Microcirculation
ORAL · M03 · ID: 22751
Presentations
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The effects of the endothelial surface layer's (ESL's) hydraulic resistivity and resistance to compression on red blood cell partitioning, deformation, and penetration of the ESL
ORAL
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Publication: Triebold, C, Barber, J. Dependence of Red Blood Cell Dynamics in Microvessel Bifurcations on the Endothelial Surface Layer's Resistance to Flow and Compression. (Submitted to BMMB.)
Triebold, C. The Effects of the Endothelial Surface Layer on Red Blood Cell Dynamics in Microvessel Bifurcations. 2021. Purdue Dissertation (Being processed).
Triebold, C, Barber, J. Dependence of Red Blood Cell Interactions in Microvessel Bifurcations on the Endothelial Surface Layer's Resistance to Flow and Compression. (Planned paper/Work in progress.)Presenters
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Jared Barber
Indiana University - Purdue University Indianapolis
Authors
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Jared Barber
Indiana University - Purdue University Indianapolis
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Carlson Triebold
Indiana University-Purdue University Indianapolis
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Computational Modeling of Flow-Mediated Fibrin Degradation in Arterial Blood Clots During Thrombolysis.
ORAL
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Presenters
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Lindsey S Nast
Authors
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Lindsey S Nast
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Debanjan Mukherjee
University of Colorado, Boulder
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Control of low flow regions in the cerebral vasculature sets an optimal arteriole-venule number ratio.
ORAL
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Publication: PNAS accepted paper: Control of low flow regions in the cortical vasculature determines optimal arterio-venous ratios. (In Press)
Presenters
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Yujia Qi
University of California, Los Angeles
Authors
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Yujia Qi
University of California, Los Angeles
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Marcus Roper
University of California, Los Angeles, UCLA, California State University, Los Angeles
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Application of Echo-PTV and Deep Learning for the Visualization and Quantification of the Cerebral Microcirculation
ORAL
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Presenters
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Zeng Zhang
Johns Hopkins University
Authors
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Zeng Zhang
Johns Hopkins University
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Misun Hwang
Children's Hospital of Philadelphia
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Todd J Kilbaugh
Children's Hospital of Philadelphia
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Anush Sridharan
Children's Hospital of Philadelphia
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Joseph Katz
Johns Hopkins University
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Multi-stability in blood vessel network motifs
ORAL
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Presenters
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George W Atkinson
University of Oxford
Authors
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George W Atkinson
University of Oxford
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Helen Byrne
University of Oxford
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Philip Maini
University of Oxford
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Joe Pitt-Francis
University of Oxford
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Red blood cell shape transitions and dynamics in time-dependent capillary flows
ORAL
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Presenters
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Christian Wagner
Saarland University
Authors
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Christian Wagner
Saarland University
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Stephan Gekle
University of Bayreuth
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Steffen M Recktenwald
Saarland University
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Katharina Graessel
University of Bayreuth
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Felix Maurer
Saarland University
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Relations between network topology, hemodynamic and oxygen supply investigates by a 1D numerical model of microcirculation
ORAL
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Presenters
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Laureline JULIEN
Institut Jean le Rond d'Alembert - Sorbonne Université Paris
Authors
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Laureline JULIEN
Institut Jean le Rond d'Alembert - Sorbonne Université Paris
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Michel PAQUES
Hôpital des Quinze-Vingt, Institut de la Vision, Paris
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José-Maria FULLANA
Institut Jean le Rond d'Alembert - Sorbonne Université Paris
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A Fully Second Order Constitutive Theory of Fluids
ORAL
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Publication: Paolucci, S.: Second Order Constitutive Theory of Fluids. Continuum Mechanics and Thermodynamics, to appear.
Presenters
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Samuel Paolucci
University of Notre Dame
Authors
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Samuel Paolucci
University of Notre Dame
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