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Article type: Research Article
Authors: Fukushima, T.a | Homma, T.a | Azuma, T.a | Harakawa, K.b
Affiliations: [a] Institute of Cardiovascular Diseases, Shinshu University School of Medicine, Matsumoto, 390, Japan | [b] Department of Pharmacology, Shinshu University School of Medicine, Matsumoto, 390, Japan
Note: [] Accepted by: Editor S. Oka
Abstract: Steady and pulsatile flow in a glass model simulating an arterial bifurcation was investigated by flow visualization techniques. Secondary flow generated at the bifurcation has a similar pattern to a vortex, called the horseshoe vortex, produced around a wall-based protuberance in a circular tube. The same flow disturbance was clearly observed during the decelerating phase of pulsatile flow. The vortex produces a stagnation point on the top and bottom wall just upstream from the bifurcation apex. When aluminium dust was suspended in the test fluid perfusing the blood vessel model, particles deposited over an area spreading from the stagnation point to the lateral corners of the bifurcation. Comparison between the present results and topographical patterns of atherosclerosis reported in the literature suggests that it is in such low shear regions that lipid deposition tends to occur most.
Keywords: pulsatile flow, secondary flow, flow separation, arterial bifurcation, particle deposition, atherosclerosis
DOI: 10.3233/BIR-1987-24102
Journal: Biorheology, vol. 24, no. 1, pp. 3-12, 1987
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