[[abstract]]One major factor of red blood cell damage induced by artificial heart valves is the magnitude of turbulent shear stresses in the flow field. An often-cited threshold for hemolysis is 400 N/m2 (Sallam and Hwang, Biorheology 21 (1984) 783). This value, however, was measured with a one-component laser Doppler anemometer and was not calculated from the major principal Reynolds shear stress, therefore underestimatng the threshold. This study performed flow field measurements under similar conditions, using a two-component laser Doppler anemometer and determining major principal Reynolds shear stress, to reevaluate the hemolytic threshold as 800 N/m2 with an exposure time of 1 ms. The Kolmogorov length scales, approximately 9 μm, are ...
In recent years, the idea of using a pump as a left ventricle assist device is being well developed ...
Nowadays, the use of computational fluid dynamics (CFD) in the design phase of new blood contacting ...
Blood contacting artificial organs, whether used as a bridge to transplantation, or even as a perman...
[[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...
Artificial heart valves may expose blood to flow conditions that lead to unnaturally high stress and...
[[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...
[[abstract]]Among the clinical complications of mechanical heart valves (MHVs), hemolysis was previo...
Red blood cells (RBC) are exposed to various levels of shear stress (SS) during their flow in the ci...
Non-physiological turbulent blood flow is known to occur in and near implanted cardiovascular device...
[[abstract]]Among the clinical complications of mechanical heart valves (MHVs), hemolysis was previo...
The use of computational fluid dynamics (CFO) to predict red blood cell trauma (hemolysis) in blood ...
Accurate quantitative evaluation of shear stress-related hemolysis (destruction of red blood cells) ...
In recent years, the idea of using a pump as a left ventricle assist device is being well developed ...
Nowadays, the use of computational fluid dynamics (CFD) in the design phase of new blood contacting ...
Blood contacting artificial organs, whether used as a bridge to transplantation, or even as a perman...
[[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...
Artificial heart valves may expose blood to flow conditions that lead to unnaturally high stress and...
[[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...
[[abstract]]Among the clinical complications of mechanical heart valves (MHVs), hemolysis was previo...
Red blood cells (RBC) are exposed to various levels of shear stress (SS) during their flow in the ci...
Non-physiological turbulent blood flow is known to occur in and near implanted cardiovascular device...
[[abstract]]Among the clinical complications of mechanical heart valves (MHVs), hemolysis was previo...
The use of computational fluid dynamics (CFO) to predict red blood cell trauma (hemolysis) in blood ...
Accurate quantitative evaluation of shear stress-related hemolysis (destruction of red blood cells) ...
In recent years, the idea of using a pump as a left ventricle assist device is being well developed ...
Nowadays, the use of computational fluid dynamics (CFD) in the design phase of new blood contacting ...
Blood contacting artificial organs, whether used as a bridge to transplantation, or even as a perman...