A benchmark study of numerical schemes for one-dimensional arterial blood flow modelling

Author:

Boileau Etienne1,Nithiarasu Perumal1,Blanco Pablo J.23,Müller Lucas O.23,Fossan Fredrik Eikeland4,Hellevik Leif Rune4,Donders Wouter P.5,Huberts Wouter5,Willemet Marie6,Alastruey Jordi6

Affiliation:

1. Zienkiewicz Centre for Computational Engineering, College of Engineering; Swansea University; Swansea, SA2 8PP UK

2. National Laboratory for Scientific Computing, LNCC/MCTI; Av. Getúlio Vargas 333, Petrópolis Rio de Janeiro 25651-075 Brazil

3. National Institute of Science and Technology in Medicine Assisted by Scientific Computing, INCT-MACC; Petrópolis Rio de Janeiro Brazil

4. Department of Structural Engineering, Division of Biomechanics; Norwegian University of Science and Technology; Trondheim Norway

5. Faculty of Health, Medicine and Life Sciences, Biomedical Engineering; Maastricht University Medical Centre; Maastricht The Netherlands

6. Division of Imaging Sciences and Biomedical Engineering, St. Thomas' Hospital; King's College London; London, SE1 7EH UK

Funder

EPSRC

WT

(NIHR)

Publisher

Wiley

Subject

Applied Mathematics,Computational Theory and Mathematics,Molecular Biology,Modeling and Simulation,Biomedical Engineering,Software

Reference67 articles.

1. Forward and backward waves in the arterial system;Westerhof;Cardiovascular Research,1972

2. An introduction to wave intensity analysis;Parker;Medical and Biological Engineering and Computing,2009

3. Novel wave intensity analysis of arterial pulse wave propagation accounting for peripheral reflections;Alastruey;International Journal of Numerical Methods in Biomedical Engineering,2014

4. On the one-dimensional theory of blood flow in the larger vessels;Hughes;Mathematical Biosciences,1973

5. Multi-branched model of the human arterial system;Avolio;Medical and Biological Engineering and Computing,1980

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