DocumentCode :
3585913
Title :
Mathematical modeling of blood flow through an eccentric catheterized artery: A practical approach for a complex system
Author :
Ahrabi, Sima S. ; Shojafar, Mohammad ; Esfeh, Hamid Kazemi ; Abraham, Ajith
Author_Institution :
Dept. of Math., Univ. Teknol. Malaysia, Johor Bahru, Malaysia
fYear :
2014
Firstpage :
315
Lastpage :
321
Abstract :
In this research a two dimensional, single phase, and isothermal model is developed to investigate the effects of eccentric catheterization on blood flow characteristics in a tapered and stenosis artery which is complex system. The model conducted by assuming that the blood is as Newtonian and incompressible fluid and the temperature effects are also neglected. The results clearly show that the axial velocity and the magnitude of the wall shear stress distribution are higher for eccentric catheter than that for concentric one. Also, the resistance impedance gives the reverse trend of the wall shear stress with respect to the taper angle where blood can flow freely through diverging vessel but in the case of eccentric catheter is less than that of the concentric one when the radius of catheter is considered. In addition, the trapping appears near the wall of catheter and the trapped bolus increases in size as the radius of catheter increases.
Keywords :
blood; blood vessels; catheters; flow simulation; haemodynamics; shear flow; Newtonian fluid; axial velocity; blood flow characteristics; eccentric catheterized artery; incompressible fluid; isothermal model; mathematical modeling; resistance impedance; single-phase model; stenosis artery; tapered artery; trapped bolus; two-dimensional model; wall shear stress distribution; Arteries; Blood; Blood flow; Catheters; Fluids; Mathematical model; Stress; Blood flow; Catheter; Complex systems; Eccentric; Mathematical Biology; Mathematical Modeling;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Hybrid Intelligent Systems (HIS), 2014 14th International Conference on
Print_ISBN :
978-1-4799-7632-4
Type :
conf
DOI :
10.1109/HIS.2014.7086168
Filename :
7086168
Link To Document :
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