Paravalvular leaks (PVLs) may lead to hemolysis. In vitro shear stress forces above 300 Pa cause erythrocyte destruction. PVL channel dimensions may determine magnitude of shear stress forces that affect erythrocytes; however, this has not been tested. It remains unclear how different properties of PVL channels contribute to presence of hemolysis. A model of a left ventricle was created based on data from computer tomography with Slicer software PVLs of various shapes and sizes were introduced. Blood flow was simulated using ANSYS Fluent software. The following variables were examined: wall shear stress, shear stress in fluid, volume of PVL channel with shear stress exceeding 300 Pa, and duration of exposure of erythrocytes to shear stress ...
Annular Couette type blood shearing devices have been used for analysis of blood damage related to d...
[[abstract]]Among the clinical complications of mechanical heart valves (MHVs), hemolysis was previo...
[[abstract]]Artificial prostheses create non-physiologic flow conditions with stress forces that may...
Artificial heart valves may expose blood to flow conditions that lead to unnaturally high stress and...
The paper reports the prediction of mechanical hemolysis by three different models for the case of b...
Accurate quantitative evaluation of shear stress-related hemolysis (destruction of red blood cells) ...
The use of computational fluid dynamics (CFO) to predict red blood cell trauma (hemolysis) in blood ...
Valvular hemolysis and thrombosis are common complications associated with stenotic heart valves. Th...
The potential of red blood cell (RBC) and platelet damage was studied for a novel microfluidic hemop...
Introduction : Paravalvular leak (PVL) related to a surgical prosthetic valve may be associated with...
Nowadays, the use of computational fluid dynamics (CFD) in the design phase of new blood contacting ...
International audienceCardiac disease and clinical intervention may both lead to an increased risk f...
To better understand how platelets behave when exposed to high shear stress, computational fluid dyn...
There are more than 300,000 heart valves implanted annually worldwide with about 50% of them being m...
[[abstract]]Among the clinical complications of mechanical heart valves (MHVs), hemolysis was previo...
Annular Couette type blood shearing devices have been used for analysis of blood damage related to d...
[[abstract]]Among the clinical complications of mechanical heart valves (MHVs), hemolysis was previo...
[[abstract]]Artificial prostheses create non-physiologic flow conditions with stress forces that may...
Artificial heart valves may expose blood to flow conditions that lead to unnaturally high stress and...
The paper reports the prediction of mechanical hemolysis by three different models for the case of b...
Accurate quantitative evaluation of shear stress-related hemolysis (destruction of red blood cells) ...
The use of computational fluid dynamics (CFO) to predict red blood cell trauma (hemolysis) in blood ...
Valvular hemolysis and thrombosis are common complications associated with stenotic heart valves. Th...
The potential of red blood cell (RBC) and platelet damage was studied for a novel microfluidic hemop...
Introduction : Paravalvular leak (PVL) related to a surgical prosthetic valve may be associated with...
Nowadays, the use of computational fluid dynamics (CFD) in the design phase of new blood contacting ...
International audienceCardiac disease and clinical intervention may both lead to an increased risk f...
To better understand how platelets behave when exposed to high shear stress, computational fluid dyn...
There are more than 300,000 heart valves implanted annually worldwide with about 50% of them being m...
[[abstract]]Among the clinical complications of mechanical heart valves (MHVs), hemolysis was previo...
Annular Couette type blood shearing devices have been used for analysis of blood damage related to d...
[[abstract]]Among the clinical complications of mechanical heart valves (MHVs), hemolysis was previo...
[[abstract]]Artificial prostheses create non-physiologic flow conditions with stress forces that may...