Biological fluid dynamics: Hemodynamics
ORAL · M18 ·
Presentations
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A novel residence-time based blood rheology model: Are we overestimating the non-Newtonian behavior of blood in patient-specific models?
ORAL
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Presenters
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Amirhossein Arzani
- Northern Arizona University
Authors
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Amirhossein Arzani
- Northern Arizona University
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Volumetric vs. Linear Reduction of Arterial Stenosis for Trans-stenotic Pressure Gradient in Image-based Computational Hemodynamics
ORAL
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Presenters
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Monsurul Khan
- Department of Mechanical & Energy Engineering, Indiana University-Purdue University, Indianapolis, Indiana, USA
Authors
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Monsurul Khan
- Department of Mechanical & Energy Engineering, Indiana University-Purdue University, Indianapolis, Indiana, USA
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Rou Chen
- Department of Mechanical & Energy Engineering, Indiana University-Purdue University, Indianapolis, Indiana, USA
- Department of Mechanical & Energy Engineering, Indiana University Purdue University Indianapolis
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Alan P Sawchuk
- Department of Vascular Surgery, Indiana University School of Medicine, Indiana, USA
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Xin Fang
- 3Department of Vascular Surgery, Hangzhou 1st People’s Hospital, Hangzhou, China
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Raghu L. Motaganahalli
- Department of Vascular Surgery, Indiana University School of Medicine, Indiana, USA
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Huidan (Whitney) Yu
- Department of Mechanical & Energy Engineering, Indiana University-Purdue University, Indianapolis, Indiana, USA, Department of Vascular Surgery, Indiana University School of
- Department of Mechanical & Energy Engineering, Indiana University Purdue University Indianapolis
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The novel criterion of Reynolds resolution to assess the wall shear stress accuracy estimated by magnetic resonance velocimetry
ORAL
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Presenters
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Byungkuen Yang
- Hanyang University
Authors
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Byungkuen Yang
- Hanyang University
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Seungbin Ko
- Hanyang University
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Jee-Hyun Cho
- Korea Basic Science Institute
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Jeesoo Lee
- Hanyang University
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Simon Song
- Hanyang University
- Department of Mechanical Engineering, Hanyang University
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Nanoparticle diffusion in sheared cellular blood flow
ORAL
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Presenters
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Zixiang Liu
- Georgia Institute of Technology
Authors
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Zixiang Liu
- Georgia Institute of Technology
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Jonathan R Clausen
- Sandia National Laboratories
- Sandia National Lab
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Rekha R Rao
- Sandia National Laboratories
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Cyrus K Aidun
- Georgia Institute of Technology
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Reduced order coronary hemodynamics modeling
ORAL
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Presenters
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Mehran Mirramezani
- University of California, Berkeley
Authors
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Mehran Mirramezani
- University of California, Berkeley
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Shawn C Shadden
- Univ of California - Berkeley
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Red blood cell partitioning at simulated bifurcations in physiologically realistic microvascular networks
ORAL
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Presenters
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Prosenjit Bagchi
- Rutgers University
Authors
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Prosenjit Bagchi
- Rutgers University
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Peter Balogh
- Rutgers University
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Analysis of nanoparticle transport in blood flow through microvascular bifurcations
ORAL
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Presenters
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Jonathan R Clausen
- Sandia National Laboratories
- Sandia National Lab
Authors
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Jonathan R Clausen
- Sandia National Laboratories
- Sandia National Lab
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Zixiang Liu
- Georgia Institute of Technology
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Dan S Bolintineanu
- Sandia National Laboratories
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Jeremy B Lechman
- Sandia National Laboratories
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Justin L Wagner
- Sandia National Laboratories
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Kimberly S Butler
- Sandia National Laboratories
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Rekha R Rao
- Sandia National Laboratories
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Cyrus K Aidun
- Georgia Institute of Technology
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The cell-free layer (CFL) in simulated microvascular networks
ORAL
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Presenters
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Peter Balogh
- Rutgers University
Authors
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Peter Balogh
- Rutgers University
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Prosenjit Bagchi
- Rutgers University
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Uncertainty quantification for patient-specific cardiovascular simulations in high-performance computing
ORAL
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Presenters
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Jongmin Seo
- Stanford Univ
Authors
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Jongmin Seo
- Stanford Univ
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Daniele E. Schiavazzi
- University of Notre Dame
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Alison L Marsden
- Stanford Univ
- Stanford University
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Study type B aortic dissection using a deconvolution-based nonlinear filter
ORAL
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Presenters
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Huijuan Xu
- Georgia Tech, Emory University
Authors
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Huijuan Xu
- Georgia Tech, Emory University
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Alessandro Veneziani
- Emory University
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