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- W2183206104 abstract "Blood flow in the coronary artery with consecutive stenoses has been modeled numerically in the present study and its applications to blood diseases have been inspected. Considering the importance of the artery stenosis, the distributions of the wall shear stress (WSS) in the consecutive stenoses of the artery have been numerically and theoretically investigated in this paper. Angiography results in different studies show that there usually are several stenoses along the coronary artery; accordingly, the analysis of the behavior of the blood flow around the consecutive stenoses with 40, 50, 60 and 75 percents has been focused in this study. This paper presents a comparative study of the different non-Newtonian viscosity models effects. Besides, the Newtonian model has been compared with Casson, Carreau, Powerlow and non-Newtonian Powerlow models in different percentages and distances of the stenoses. Large differences are found in the WSS magnitude distributions in the arteries with different percentage stenoses, leading to the conclusion that it is not possible to make generalizations based on the study of a single percentage of the stenosis. There is a strong correlation between WSS and critical times of the cardiac cycle and a weaker correlation between the distances of the stenoses and extremes of WSS. Also, this research shows that Casson model is the most reliable approach for the blood viscosity in transient flow." @default.
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- W2183206104 date "2012-01-01" @default.
- W2183206104 modified "2023-09-27" @default.
- W2183206104 title "3.D Analysis of Blood Flow in Consecutive Stenoses of Coronary Artery" @default.
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