Literature DB >> 20140798

Outflow boundary conditions for 3D simulations of non-periodic blood flow and pressure fields in deformable arteries.

I E Vignon-Clementel1, C A Figueroa, K E Jansen, C A Taylor.   

Abstract

The simulation of blood flow and pressure in arteries requires outflow boundary conditions that incorporate models of downstream domains. We previously described a coupled multidomain method to couple analytical models of the downstream domains with 3D numerical models of the upstream vasculature. This prior work either included pure resistance boundary conditions or impedance boundary conditions based on assumed periodicity of the solution. However, flow and pressure in arteries are not necessarily periodic in time due to heart rate variability, respiration, complex transitional flow or acute physiological changes. We present herein an approach for prescribing lumped parameter outflow boundary conditions that accommodate transient phenomena. We have applied this method to compute haemodynamic quantities in different physiologically relevant cardiovascular models, including patient-specific examples, to study non-periodic flow phenomena often observed in normal subjects and in patients with acquired or congenital cardiovascular disease. The relevance of using boundary conditions that accommodate transient phenomena compared with boundary conditions that assume periodicity of the solution is discussed.

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Year:  2010        PMID: 20140798     DOI: 10.1080/10255840903413565

Source DB:  PubMed          Journal:  Comput Methods Biomech Biomed Engin        ISSN: 1025-5842            Impact factor:   1.763


  69 in total

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Journal:  J Pharmacol Toxicol Methods       Date:  2011-11-04       Impact factor: 1.950

2.  Boundary conditions of patient-specific fluid dynamics modelling of cavopulmonary connections: possible adaptation of pulmonary resistances results in a critical issue for a virtual surgical planning.

Authors:  Giancarlo Pennati; Chiara Corsini; Daria Cosentino; Tain-Yen Hsia; Vincenzo S Luisi; Gabriele Dubini; Francesco Migliavacca
Journal:  Interface Focus       Date:  2011-03-09       Impact factor: 3.906

3.  A Framework for Comparing Vascular Hemodynamics at Different Points in Time.

Authors:  J Gounley; M Vardhan; A Randles
Journal:  Comput Phys Commun       Date:  2018-06-02       Impact factor: 4.390

Review 4.  Patient-Specific Modeling of Hemodynamics: Supporting Surgical Planning in a Fontan Circulation Correction.

Authors:  Theodorus M J van Bakel; Kevin D Lau; Jennifer Hirsch-Romano; Santi Trimarchi; Adam L Dorfman; C Alberto Figueroa
Journal:  J Cardiovasc Transl Res       Date:  2018-01-08       Impact factor: 4.132

5.  Computational Simulation of the Pulmonary Arteries and its Role in the Study of Pediatric Pulmonary Hypertension.

Authors:  Kendall S Hunter; Jeffrey A Feinstein; D Dunbar Ivy; Robin Shandas
Journal:  Prog Pediatr Cardiol       Date:  2010-12-01

Review 6.  Multiscale imaging and computational modeling of blood flow in the tumor vasculature.

Authors:  Eugene Kim; Spyros Stamatelos; Jana Cebulla; Zaver M Bhujwalla; Aleksander S Popel; Arvind P Pathak
Journal:  Ann Biomed Eng       Date:  2012-05-08       Impact factor: 3.934

7.  Verification of the coupled-momentum method with Womersley's Deformable Wall analytical solution.

Authors:  Vasilina Filonova; Christopher J Arthurs; Irene E Vignon-Clementel; C Alberto Figueroa
Journal:  Int J Numer Method Biomed Eng       Date:  2019-12-21       Impact factor: 2.747

8.  Cardiac remodelling following thoracic endovascular aortic repair for descending aortic aneurysms.

Authors:  Theodorus M J van Bakel; Christopher J Arthurs; Foeke J H Nauta; Kim A Eagle; Joost A van Herwaarden; Frans L Moll; Santi Trimarchi; Himanshu J Patel; C Alberto Figueroa
Journal:  Eur J Cardiothorac Surg       Date:  2019-06-01       Impact factor: 4.191

9.  Computational analysis of the effectiveness of blood flushing with saline injection from an intravascular diagnostic catheter.

Authors:  Narugopal Ghata; Ralph C Aldredge; Julien Bec; Laura Marcu
Journal:  Int J Numer Method Biomed Eng       Date:  2014-07-17       Impact factor: 2.747

10.  A multiscale model for the study of cardiac biomechanics in single-ventricle surgeries: a clinical case.

Authors:  Alessio Meoli; Elena Cutrì; Adarsh Krishnamurthy; Gabriele Dubini; Francesco Migliavacca; Tain-Yen Hsia; Giancarlo Pennati; Andrew Taylor; Alessandro Giardini; Sachin Khambadkone; Silvia Schievano; Marc de Leval; T-Y Hsia; Edward Bove; Adam Dorfman; G Hamilton Baker; Anthony Hlavacek; Francesco Migliavacca; Giancarlo Pennati; Gabriele Dubini; Alison Marsden; Jeffrey Feinstein; Irene Vignon-Clementel; Richard Figliola; John McGregor
Journal:  Interface Focus       Date:  2015-04-06       Impact factor: 3.906

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