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Computational Investigation Of Blood Flow And Flow-mediated Transport In Arterial Thrombus Neighborhood

View ORCID ProfileChayut Teeraratkul, View ORCID ProfileZachariah Irwin, View ORCID ProfileShawn C. Shadden, View ORCID ProfileDebanjan Mukherjee
doi: https://doi.org/10.1101/2020.06.11.147488
Chayut Teeraratkul
1Department of Mechanical Engineering, University of Colorado Boulder
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Zachariah Irwin
1Department of Mechanical Engineering, University of Colorado Boulder
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Shawn C. Shadden
2Department of Mechanical Engineering, University of California, Berkeley
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Debanjan Mukherjee
1Department of Mechanical Engineering, University of Colorado Boulder
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  • For correspondence: debanjan@colorado.edu
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Abstract

A pathologically formed blood clot or thrombus is central to major cardiovascular diseases like heart attack and stroke. Detailed quantitative evaluation of flow and flow-mediated transport processes in the thrombus neighborhood within large artery hemodynamics is crucial for understanding disease progression and assessing treatment efficacy. This, however, remains a challenging task owing to the complexity of pulsatile viscous flow interactions with arbitrary shape and heterogeneous microstructure of realistic thrombi. Here, we address this challenge by conducting a systematic parametric simulation based study on characterizing unsteady hemodynamics and flow-mediated transport in the neighborhood of an arterial thrombus. We use a hybrid particle-continuum based finite element approach to handle arbitrary thrombus shape and microstructural variations. Results from a cohort of 50 different unsteady flow scenarios are presented, including unsteady vortical structures, pressure-gradient across the thrombus boundary, finite time Lyapunov exponents, and dynamic coherent structures that organize advective transport. We clearly illustrate the synergistic influence of three key parameters - thrombus shape, microstructure, and extent of wall disease - in terms of: (a) determining hemodynamic features in the thrombus neighborhood; and (b) governing the balance between advection, permeation, and diffusion to regulate transport processes in the thrombus neighborhood.

Competing Interest Statement

The authors have declared no competing interest.

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The copyright holder for this preprint is the author/funder, who has granted bioRxiv a license to display the preprint in perpetuity. All rights reserved. No reuse allowed without permission.
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Posted June 12, 2020.
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Computational Investigation Of Blood Flow And Flow-mediated Transport In Arterial Thrombus Neighborhood
Chayut Teeraratkul, Zachariah Irwin, Shawn C. Shadden, Debanjan Mukherjee
bioRxiv 2020.06.11.147488; doi: https://doi.org/10.1101/2020.06.11.147488
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Computational Investigation Of Blood Flow And Flow-mediated Transport In Arterial Thrombus Neighborhood
Chayut Teeraratkul, Zachariah Irwin, Shawn C. Shadden, Debanjan Mukherjee
bioRxiv 2020.06.11.147488; doi: https://doi.org/10.1101/2020.06.11.147488

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