Mathematical modeling of blood flows in the arteries is an important and challenging problem. This study compares several non-Newtonian blood models with the Newtonian model in simulating pulsatile blood flow through two three-dimensional models of an arterial stenosis and an aneurysm. Four non-Newtonian blood models, namely the Power Law, the Casson, the Carreau, and the Generalized Power Law, as well as the Newtonian model of blood viscosity, are used to investigate the flow effects induced by these different blood constitutive equations. The aim of this study is three-fold: firstly, to investigate the variation in wall shear stress in an artery with a stenosis or aneurysm at different flow rates and degrees of severity; secondly, to comp...
The human circulatory system is complex and its modelling and simulation constitute a difficult and ...
Simulation of blood flow behaviour in the arteries and in arterial stenosis has been made and will b...
A numerical investigation of the blood flow is presented in this paper. Human blood is assumed to be...
The current study presents three-dimensional modeling and analysis of blood flow through artery sten...
The numerical simulation of blood flow in arteries using non-Newtonian viscosity model, presents two...
We investigate fluid and structural responses to pulsatile non-Newtonian blood flow through a stenos...
Being able to accurately reproduce the physiological phenomena which take place in blood vessels req...
Laser Doppler anemometry experiments and finite element simulations of steady flow in a three dimens...
This study looks at pulsatile blood flow through four different right coronary arteries, which have ...
This work aims at investigating the influence of non-Newtonian blood rheology on the hemodynamics of...
Blood flow rheology is a complex phenomenon. Presently there is no universally agreed upon model to ...
: Cardiovascular disease (CVD) and especially atherosclerosis are chronic inflammatory diseases whic...
A non-Newtonian pulsatile model of blood flow through multiple stenoses with irregular surfaces is c...
Blood is indeed a suspension of the different type of cells along with shear thinning, yield stress ...
The behavior of blood during its flow in human arteries has always been a subject of keen interest. ...
The human circulatory system is complex and its modelling and simulation constitute a difficult and ...
Simulation of blood flow behaviour in the arteries and in arterial stenosis has been made and will b...
A numerical investigation of the blood flow is presented in this paper. Human blood is assumed to be...
The current study presents three-dimensional modeling and analysis of blood flow through artery sten...
The numerical simulation of blood flow in arteries using non-Newtonian viscosity model, presents two...
We investigate fluid and structural responses to pulsatile non-Newtonian blood flow through a stenos...
Being able to accurately reproduce the physiological phenomena which take place in blood vessels req...
Laser Doppler anemometry experiments and finite element simulations of steady flow in a three dimens...
This study looks at pulsatile blood flow through four different right coronary arteries, which have ...
This work aims at investigating the influence of non-Newtonian blood rheology on the hemodynamics of...
Blood flow rheology is a complex phenomenon. Presently there is no universally agreed upon model to ...
: Cardiovascular disease (CVD) and especially atherosclerosis are chronic inflammatory diseases whic...
A non-Newtonian pulsatile model of blood flow through multiple stenoses with irregular surfaces is c...
Blood is indeed a suspension of the different type of cells along with shear thinning, yield stress ...
The behavior of blood during its flow in human arteries has always been a subject of keen interest. ...
The human circulatory system is complex and its modelling and simulation constitute a difficult and ...
Simulation of blood flow behaviour in the arteries and in arterial stenosis has been made and will b...
A numerical investigation of the blood flow is presented in this paper. Human blood is assumed to be...