Red blood cell (RBC) shape change under static and dynamic shear stress has been a source of interest for at least 50 years. High-speed time-lapse microscopy was used to observe the rate of deformation and relaxation when RBCs are subjected to periodic shear stress and deformation forces as they pass through an obstacle. We show that red blood cells are reversibly de-formed and take on characteristic shapes not previously seen in physiological buffers when the maximum shear stress was between 2.2 and 25 Pa (strain rate 2200 to 25,000 s−1). We quantify the rates of RBC deformation and recovery using Kaplan–Meier survival analysis. The time to deformation decreased from 320 to 23 milliseconds with increasing flow rates, but the distance trave...
Red blood cell (RBC) deformability plays a key role in oxygen exchange between blood and tissues in ...
Red blood cell (RBC) deformability plays a key role in oxygen exchange between blood and tissues in ...
In this work, we report on a systematic fluidodynamic investigation of red blood cell (RBC) suspensi...
Red blood cell (RBC) shape change under static and dynamic shear stress has been a source of interes...
Red blood cell (RBC) shape change under static and dynamic shear stress has been a source of interes...
Red blood cells (RBCs) are the major cellular component in blood and are highly deformable in their ...
Most work on the dynamic response of red blood cells (RBCs) to hydrodynamic stress has focused on li...
The main focus of the thesis was to study and understand why human RBC change their shape upon incre...
Implantable cardiovascular devices are commonly used in clinical treatment for end stage cardiovascu...
Implantable cardiovascular devices are commonly used in clinical treatment for end stage cardiovascu...
Red blood cells (RBCs) are the most common type of blood cell, have a biconcave disk shape with diam...
In this work, we report on a systematic fluidodynamic investigation of red blood cell (RBC) suspensi...
In this work, we report on a systematic fluidodynamic investigation of red blood cell (RBC) suspensi...
In this work, we report on a systematic fluidodynamic investigation of red blood cell (RBC) suspensi...
Red blood cell (RBC) deformability plays a key role in oxygen exchange between blood and tissues in ...
Red blood cell (RBC) deformability plays a key role in oxygen exchange between blood and tissues in ...
Red blood cell (RBC) deformability plays a key role in oxygen exchange between blood and tissues in ...
In this work, we report on a systematic fluidodynamic investigation of red blood cell (RBC) suspensi...
Red blood cell (RBC) shape change under static and dynamic shear stress has been a source of interes...
Red blood cell (RBC) shape change under static and dynamic shear stress has been a source of interes...
Red blood cells (RBCs) are the major cellular component in blood and are highly deformable in their ...
Most work on the dynamic response of red blood cells (RBCs) to hydrodynamic stress has focused on li...
The main focus of the thesis was to study and understand why human RBC change their shape upon incre...
Implantable cardiovascular devices are commonly used in clinical treatment for end stage cardiovascu...
Implantable cardiovascular devices are commonly used in clinical treatment for end stage cardiovascu...
Red blood cells (RBCs) are the most common type of blood cell, have a biconcave disk shape with diam...
In this work, we report on a systematic fluidodynamic investigation of red blood cell (RBC) suspensi...
In this work, we report on a systematic fluidodynamic investigation of red blood cell (RBC) suspensi...
In this work, we report on a systematic fluidodynamic investigation of red blood cell (RBC) suspensi...
Red blood cell (RBC) deformability plays a key role in oxygen exchange between blood and tissues in ...
Red blood cell (RBC) deformability plays a key role in oxygen exchange between blood and tissues in ...
Red blood cell (RBC) deformability plays a key role in oxygen exchange between blood and tissues in ...
In this work, we report on a systematic fluidodynamic investigation of red blood cell (RBC) suspensi...