We investigated experimentally the rheological behavior of whole human blood subjected to large amplitude oscillatory shear under strain control to assess its nonlinear viscoelastic response. In these rheological tests, the shear stress response presented higher harmonic contributions, revealing the nonlinear behavior of human blood that is associated with changes in its internal microstructure. For the rheological conditions investigated, intra-cycle strain-stiffening and intra-cycle shear-thinning behavior of the human blood samples were observed and quantified based on the Lissajous–Bowditch plots. The results demonstrated that the dissipative nature of whole blood is more intense than its elastic component. We also assessed the effect o...
A balance method was used to investigate the viscometric behavior and aggregation properties of bloo...
A new method is presented to describe the low shear rate behavior of blood. We observed the response...
International audienceBlood viscosity is an important determinant of local flow characteristics, whi...
We investigated experimentally the rheological behavior of whole human blood subjected to large ampl...
Blood is a complex fluid with non-Newtonian characteristics and consists primarily of a concentrated...
Measurements made for oscillatory flow of blood in circular tubes show that blood possesses elastic ...
Rheology of viscoelastic uids is a complex phenomenon. Full blood is an example of a body uid of non...
Abstract: Modeling by means of employing the generalized and modified Maxwell-Gurevich-Rabinovich (M...
The blood is a complex fluid that contains, in addition to water, cells, macro-molecules and a large...
With the aid of multiple linear regression analysis, the dependence of whole blood viscoelasticity o...
Press Shear viscosity and nonlinear behavior of whole blood under large amplitude oscillatory shea
The mechanical properties determine to a large extent the functioning of a blood clot. These propert...
We present a numerical analysis of the rheology of a suspension of red blood cells (RBCs) for differ...
Red blood cells play a major role in body metabolism by supplying oxygen from the microvasculature t...
A balance method was used to investigate the viscometric behavior and aggregation properties of bloo...
A new method is presented to describe the low shear rate behavior of blood. We observed the response...
International audienceBlood viscosity is an important determinant of local flow characteristics, whi...
We investigated experimentally the rheological behavior of whole human blood subjected to large ampl...
Blood is a complex fluid with non-Newtonian characteristics and consists primarily of a concentrated...
Measurements made for oscillatory flow of blood in circular tubes show that blood possesses elastic ...
Rheology of viscoelastic uids is a complex phenomenon. Full blood is an example of a body uid of non...
Abstract: Modeling by means of employing the generalized and modified Maxwell-Gurevich-Rabinovich (M...
The blood is a complex fluid that contains, in addition to water, cells, macro-molecules and a large...
With the aid of multiple linear regression analysis, the dependence of whole blood viscoelasticity o...
Press Shear viscosity and nonlinear behavior of whole blood under large amplitude oscillatory shea
The mechanical properties determine to a large extent the functioning of a blood clot. These propert...
We present a numerical analysis of the rheology of a suspension of red blood cells (RBCs) for differ...
Red blood cells play a major role in body metabolism by supplying oxygen from the microvasculature t...
A balance method was used to investigate the viscometric behavior and aggregation properties of bloo...
A new method is presented to describe the low shear rate behavior of blood. We observed the response...
International audienceBlood viscosity is an important determinant of local flow characteristics, whi...