Flow fields in rotary blood pumps (RBPs) have a significant influence on hemocompatibility. Because flow characteristics vary with flow rate, different operating conditions play a role. Furthermore, turbulence is crucial in the evaluation of blood damage potential, but the level of turbulence in implantable RBPs is still unknown. In this study, we addressed both research aspects and for the first time measured turbulent flow fields in the HeartMate 3 (HM3) at different operating flows. The averaged, three-dimensional velocity field including fluctuating velocity components in a HM3 with a transparent lower housing was measured using three-dimensional particle tracking velocimetry (3D-PTV). In vitro results were compared with computational f...
We investigate the potential of prosthetic heart valves to generate abnormal flow and stress pattern...
Accurate quantitative evaluation of shear stress-related hemolysis (destruction of red blood cells) ...
Since vascular access devices may cause disturbances in blood flow, possibly damaging red blood cell...
Flow fields in rotary blood pumps (RBPs) have a significant influence on hemocompatibility. Because ...
The use of computational fluid dynamics (CFO) to predict red blood cell trauma (hemolysis) in blood ...
Nowadays, the use of computational fluid dynamics (CFD) in the design phase of new blood contacting ...
Patients with ventricular assist devices still suffer from high rates of adverse events. Since many ...
Thrombus formation and hemolysis have been linked to the dynamics of blood flow in rotary blood pump...
The performance of blood-processing devices largely depends on the associated fluid dynamics, which ...
Hemolytic profile of an artificial device chronically implanted in the cardiovascular system may rep...
In rotodynamic blood pumps (RBPs) a substantial proportion of input energy is dissipated into the bl...
Pathological platelet activation by abnormal shear stresses is regarded as a main clinical complicat...
Rotary blood pumps (RBPs) are implanted into patients with end-stage heart failure to support the le...
Ventricular Assist Devices are continuous flow pumps that act as cardiac orthoses. The evaluation of...
Ventricular assist devices (VADs), among which the HeartMate 3 (HM3) is the latest clinically approv...
We investigate the potential of prosthetic heart valves to generate abnormal flow and stress pattern...
Accurate quantitative evaluation of shear stress-related hemolysis (destruction of red blood cells) ...
Since vascular access devices may cause disturbances in blood flow, possibly damaging red blood cell...
Flow fields in rotary blood pumps (RBPs) have a significant influence on hemocompatibility. Because ...
The use of computational fluid dynamics (CFO) to predict red blood cell trauma (hemolysis) in blood ...
Nowadays, the use of computational fluid dynamics (CFD) in the design phase of new blood contacting ...
Patients with ventricular assist devices still suffer from high rates of adverse events. Since many ...
Thrombus formation and hemolysis have been linked to the dynamics of blood flow in rotary blood pump...
The performance of blood-processing devices largely depends on the associated fluid dynamics, which ...
Hemolytic profile of an artificial device chronically implanted in the cardiovascular system may rep...
In rotodynamic blood pumps (RBPs) a substantial proportion of input energy is dissipated into the bl...
Pathological platelet activation by abnormal shear stresses is regarded as a main clinical complicat...
Rotary blood pumps (RBPs) are implanted into patients with end-stage heart failure to support the le...
Ventricular Assist Devices are continuous flow pumps that act as cardiac orthoses. The evaluation of...
Ventricular assist devices (VADs), among which the HeartMate 3 (HM3) is the latest clinically approv...
We investigate the potential of prosthetic heart valves to generate abnormal flow and stress pattern...
Accurate quantitative evaluation of shear stress-related hemolysis (destruction of red blood cells) ...
Since vascular access devices may cause disturbances in blood flow, possibly damaging red blood cell...