Computational hemodynamic simulation of non-Newtonian fluid-structure interaction in a curved stenotic artery
Abstract
Keywords
References
- Papageorgiou, N. (2016). Cardiovascular diseases: Genetic susceptibility, environmental factors and their interaction. Academic Press.
- Goldsmith, H. L., & Skalak, R. (1975). Hemodynamics. Annual Review of Fluid Mechanics, 7(1), 213-247.
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- Wong, K. K., Wu, J., Liu, G., Huang, W., & Ghista, D. N. (2020). Coronary arteries hemodynamics: Effect of arterial geometry on hemodynamic parameters causing atherosclerosis. Medical & Biological Engineering & Computing, 58, 1831-1843.
- Berger, S. A., & Jou, L.-D. (2000). Flows in stenotic vessels. Annual Review of Fluid Mechanics, 32, 347-382.
- Dash, R. K., Jayaraman, G., & Mehta, K. N. (1999). Flow in a catheterized curved artery with stenosis. Journal of Biomechanics, 32(1), 49-61.
- Kim, J., Jin, D., Choi, H., Kweon, J., Yang, D. H., & Kim, Y. H. (2020). A zero-dimensional predictive model for the pressure drop in the stenotic coronary artery based on its geometric characteristics. Journal of Biomechanics, 113, 110076.
Details
Primary Language
English
Subjects
Biomechanical Engineering
Journal Section
Research Article
Authors
Sireetorn Kuharat
*
0009-0000-5739-9137
United Kingdom
M. A. Chaudhry
This is me
0000-0001-7611-9356
United Kingdom
O. Anwar Beg
0000-0001-5925-6711
United Kingdom
Tasveer A. Bég
This is me
0009-0004-1023-8255
United Kingdom
Early Pub Date
October 13, 2024
Publication Date
December 20, 2024
Submission Date
May 31, 2024
Acceptance Date
September 30, 2024
Published in Issue
Year 1970 Volume: 8 Number: 4
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