Shear stress on blood cells and platelets transported in a turbulent flow dictates the fate and biological activity of these cells. We present a theoretical link between energy dissipation in turbulent flows to the shear stress that cells experience and show that for the case of physiological turbulent blood flow: (a) the Newtonian assumption is valid, (b) turbulent eddies are universal for the most complex of blood flow problems, and (c) shear stress distribution on turbulent blood flows is possibly universal. Further we resolve a long standing inconsistency in hemolysis between laminar and turbulent flow using the theoretical framework. This work demonstrates that energy dissipation as opposed to bulk shear stress in laminar or turbulent ...
An exhaustive description of the dynamics under shear flow of a large number of red blood cells in a...
Measurements made for oscillatory flow of blood in circular tubes show that blood possesses elastic ...
The blood is a complex fluid that contains, in addition to water, cells, macro-molecules and a large...
Shear stress on blood cells and platelets transported in a turbulent flow dictates the fate and biol...
Viscous shear stress and Reynolds stress are often used to predict hemolysis and thrombosis due to f...
Non-physiological turbulent blood flow is known to occur in and near implanted cardiovascular device...
[[abstract]]Non-physiologic turbulent flow occurs in medical cardiovascular devices resulting in hem...
Hemolytic profile of an artificial device chronically implanted in the cardiovascular system may rep...
Red blood cells play a major role in body metabolism by supplying oxygen from the microvasculature t...
Red blood cells play a major role in body metabolism by supplying oxygen from the microvasculature t...
International audienceThe problem of understanding the movement of red blood cells (RBCs) is at the ...
Computational prediction of blood damage has become a crucial tool for evaluating blood-wetted medic...
Blood viscosity decreases with shear stress, a property essential for an efficient perfusion of the ...
International audienceIn this work, we compared the dynamics of motion in a linear shear flow of ind...
We investigated how non-Newtonian viscosity behavior affects the flow characteristics of blood cells...
An exhaustive description of the dynamics under shear flow of a large number of red blood cells in a...
Measurements made for oscillatory flow of blood in circular tubes show that blood possesses elastic ...
The blood is a complex fluid that contains, in addition to water, cells, macro-molecules and a large...
Shear stress on blood cells and platelets transported in a turbulent flow dictates the fate and biol...
Viscous shear stress and Reynolds stress are often used to predict hemolysis and thrombosis due to f...
Non-physiological turbulent blood flow is known to occur in and near implanted cardiovascular device...
[[abstract]]Non-physiologic turbulent flow occurs in medical cardiovascular devices resulting in hem...
Hemolytic profile of an artificial device chronically implanted in the cardiovascular system may rep...
Red blood cells play a major role in body metabolism by supplying oxygen from the microvasculature t...
Red blood cells play a major role in body metabolism by supplying oxygen from the microvasculature t...
International audienceThe problem of understanding the movement of red blood cells (RBCs) is at the ...
Computational prediction of blood damage has become a crucial tool for evaluating blood-wetted medic...
Blood viscosity decreases with shear stress, a property essential for an efficient perfusion of the ...
International audienceIn this work, we compared the dynamics of motion in a linear shear flow of ind...
We investigated how non-Newtonian viscosity behavior affects the flow characteristics of blood cells...
An exhaustive description of the dynamics under shear flow of a large number of red blood cells in a...
Measurements made for oscillatory flow of blood in circular tubes show that blood possesses elastic ...
The blood is a complex fluid that contains, in addition to water, cells, macro-molecules and a large...