The behavior of suspensions of individual blood cells, such as red blood cells (RBCs), flowing through microvessels and microfluidic systems depend strongly on the hematocrit (Hct), microvessel topology and cell properties. Although it is well known that blood rheological properties are temperature dependent, to the best of our knowledge no work has studied the role of the temperature on the RBCs dispersion. A powerful way to investigate this latter effect is through a high-speed video microscopy system, which provides detailed flow measurements of each individual RBC. Hence, the effect of temperature on the RBCs dispersion flowing through a 100μm glass capillary was examined by means of a confocal micro-PTV system. Hundreds of labeled RBCs...
Red blood cell (RBC) deformability is important for tissue perfusion and a key determinant of blood ...
The flow properties of blood in the microcirculation depend strongly on the hematocrit (Hct), microv...
Microvascular blood flow resistance has a strong impact on cardiovascular function and tissue perfus...
The behavior of suspensions of individual blood cells, such as red blood cells (RBCs), flowing throu...
The rheological behaviour of the red blood cells (RBCs) flowing in microvessels and microchannels de...
The rheological behaviour of the red blood cells (RBCs) flowing in microvessels and microchannels de...
Abstract. The motion of the red blood cells (RBCs) flowing in microvessels and microchannels depend ...
The motion of the red blood cells (RBCs) flowing in microvessels and microchannels depend on several...
Author manuscript; available in PMC 2012 March 1.We investigate the biophysical characteristics of h...
The flow properties of blood in the microcirculation depend strongly on the hematocrit (Hct), microv...
The flow properties of blood in the microcirculation depend strongly on the hematocrit (Hct), micr...
Blood in large arteries may be treated as a homogenous fluid from a macroscopic prospective. Howeve...
Red blood cells (RBCs) are the most abundant cells in human blood. Remarkably RBCs deform and bridge...
In this study, we use a confocal micro-PIV (Particle Image Velocimetry) system to investigate red b...
Submitted to Physical Review Fluids (2022-11-30)Red Blood Cells flowing in a microchannel undergo di...
Red blood cell (RBC) deformability is important for tissue perfusion and a key determinant of blood ...
The flow properties of blood in the microcirculation depend strongly on the hematocrit (Hct), microv...
Microvascular blood flow resistance has a strong impact on cardiovascular function and tissue perfus...
The behavior of suspensions of individual blood cells, such as red blood cells (RBCs), flowing throu...
The rheological behaviour of the red blood cells (RBCs) flowing in microvessels and microchannels de...
The rheological behaviour of the red blood cells (RBCs) flowing in microvessels and microchannels de...
Abstract. The motion of the red blood cells (RBCs) flowing in microvessels and microchannels depend ...
The motion of the red blood cells (RBCs) flowing in microvessels and microchannels depend on several...
Author manuscript; available in PMC 2012 March 1.We investigate the biophysical characteristics of h...
The flow properties of blood in the microcirculation depend strongly on the hematocrit (Hct), microv...
The flow properties of blood in the microcirculation depend strongly on the hematocrit (Hct), micr...
Blood in large arteries may be treated as a homogenous fluid from a macroscopic prospective. Howeve...
Red blood cells (RBCs) are the most abundant cells in human blood. Remarkably RBCs deform and bridge...
In this study, we use a confocal micro-PIV (Particle Image Velocimetry) system to investigate red b...
Submitted to Physical Review Fluids (2022-11-30)Red Blood Cells flowing in a microchannel undergo di...
Red blood cell (RBC) deformability is important for tissue perfusion and a key determinant of blood ...
The flow properties of blood in the microcirculation depend strongly on the hematocrit (Hct), microv...
Microvascular blood flow resistance has a strong impact on cardiovascular function and tissue perfus...