[[abstract]]Non-physiologic turbulent flow occurs in medical cardiovascular devices resulting in hemodynamic stresses that may damage red blood cells (RBC) and cause hemolysis. Hemolysis was previously thought to result from Reynolds shear stress (RSS) in turbulent flows. A more recent hypothesis suggests that turbulent viscous shear stresses (TVSS) at spatial scales similar in size to RBCs are related to their damage. We applied two-dimensional digital particle image velocimetry to measure the flow field of a free-submerged axisymmetric jet that was utilized to hemolyze porcine RBCs in selected locations. Assuming a dynamic equilibrium for the sub-grid scale (SGS) energy flux between the resolved and the sub-grid scales, the SGS energy flu...
We present a numerical analysis of the rheology of a suspension of red blood cells (RBCs) for differ...
[[abstract]]Among the clinical complications of mechanical heart valves (MHVs), hemolysis was previo...
Red blood cells play a major role in body metabolism by supplying oxygen from the microvasculature t...
[[abstract]]Non-physiologic turbulent flow occurs in medical cardiovascular devices resulting in hem...
Viscous shear stress and Reynolds stress are often used to predict hemolysis and thrombosis due to f...
A series of careful studies has been made on blood damage in a rotational viscometer. Specific atten...
Partial or complete failure of red blood cell membrane, also known as hemolysis, is a persistent iss...
[[abstract]]One major factor of red blood cell damage induced by artificial heart valves is the magn...
Hemolytic profile of an artificial device chronically implanted in the cardiovascular system may rep...
Use of laminar flow-derived power law models to predict hemolysis with turbulence remains problemati...
Measurements were made of the turbulence intensity of blood of various hematocrits (volume percentag...
Red blood cells (RBC) are exposed to various levels of shear stress (SS) during their flow in the ci...
Shear stress on blood cells and platelets transported in a turbulent flow dictates the fate and biol...
Shear stress on blood cells and platelets transported in a turbulent flow dictates the fate and biol...
Non-physiological turbulent blood flow is known to occur in and near implanted cardiovascular device...
We present a numerical analysis of the rheology of a suspension of red blood cells (RBCs) for differ...
[[abstract]]Among the clinical complications of mechanical heart valves (MHVs), hemolysis was previo...
Red blood cells play a major role in body metabolism by supplying oxygen from the microvasculature t...
[[abstract]]Non-physiologic turbulent flow occurs in medical cardiovascular devices resulting in hem...
Viscous shear stress and Reynolds stress are often used to predict hemolysis and thrombosis due to f...
A series of careful studies has been made on blood damage in a rotational viscometer. Specific atten...
Partial or complete failure of red blood cell membrane, also known as hemolysis, is a persistent iss...
[[abstract]]One major factor of red blood cell damage induced by artificial heart valves is the magn...
Hemolytic profile of an artificial device chronically implanted in the cardiovascular system may rep...
Use of laminar flow-derived power law models to predict hemolysis with turbulence remains problemati...
Measurements were made of the turbulence intensity of blood of various hematocrits (volume percentag...
Red blood cells (RBC) are exposed to various levels of shear stress (SS) during their flow in the ci...
Shear stress on blood cells and platelets transported in a turbulent flow dictates the fate and biol...
Shear stress on blood cells and platelets transported in a turbulent flow dictates the fate and biol...
Non-physiological turbulent blood flow is known to occur in and near implanted cardiovascular device...
We present a numerical analysis of the rheology of a suspension of red blood cells (RBCs) for differ...
[[abstract]]Among the clinical complications of mechanical heart valves (MHVs), hemolysis was previo...
Red blood cells play a major role in body metabolism by supplying oxygen from the microvasculature t...