Numerical simulation of aortic bifurcation flows: the effect of flow divider curvature
Publication
, Journal Article
Friedman, MH; Ehrlich, LW
Published in: J. Biomech. (UK)
1984
Two dimensional steady flow calculations in computational regions obtained from radiographs of human aortic bifurcations correlate well with unsteady measurements of wall shear in flow-through casts of the same vessels. The results suggests that wall slope may be an important factor affecting the variability of shear along the medial walls of this arterial segment. If extremes of shear stress promote atherogenesis, then variations in the curvature of the proximal iliac arteries may affect the susceptibility of these vessels to vascular disease on their medial aspect
Duke Scholars
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Published In
J. Biomech. (UK)
DOI
Publication Date
1984
Volume
17
Issue
12
Start / End Page
881 / 888
Related Subject Headings
- Biomedical Engineering
- 1106 Human Movement and Sports Sciences
- 0913 Mechanical Engineering
- 0903 Biomedical Engineering
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Friedman, M. H., & Ehrlich, L. W. (1984). Numerical simulation of aortic bifurcation flows: the effect of flow divider curvature. J. Biomech. (UK), 17(12), 881–888. https://doi.org/10.1016/0021-9290(84)90001-0
Friedman, M. H., and L. W. Ehrlich. “Numerical simulation of aortic bifurcation flows: the effect of flow divider curvature.” J. Biomech. (UK) 17, no. 12 (1984): 881–88. https://doi.org/10.1016/0021-9290(84)90001-0.
Friedman MH, Ehrlich LW. Numerical simulation of aortic bifurcation flows: the effect of flow divider curvature. J Biomech (UK). 1984;17(12):881–8.
Friedman, M. H., and L. W. Ehrlich. “Numerical simulation of aortic bifurcation flows: the effect of flow divider curvature.” J. Biomech. (UK), vol. 17, no. 12, 1984, pp. 881–88. Manual, doi:10.1016/0021-9290(84)90001-0.
Friedman MH, Ehrlich LW. Numerical simulation of aortic bifurcation flows: the effect of flow divider curvature. J Biomech (UK). 1984;17(12):881–888.
Published In
J. Biomech. (UK)
DOI
Publication Date
1984
Volume
17
Issue
12
Start / End Page
881 / 888
Related Subject Headings
- Biomedical Engineering
- 1106 Human Movement and Sports Sciences
- 0913 Mechanical Engineering
- 0903 Biomedical Engineering