Biophysical properties are widely used to detect pathophysiological processes of vascular diseases or clinical states. For early detection of cardiovascular diseases, it is necessary to simultaneously measure multiple biophysical properties in a microfluidic environment. However, a microfluidic-based technique for measuring multiple biophysical properties has not been demonstrated. In this study, a simple measurement method was suggested to quantify three biophysical properties of blood, including red blood cell (RBC) deformability, RBC aggregation, and hematocrit. To demonstrate the suggested method, a microfluidic device was constructed, being composed of a big-sized channel (BC), a parallel micropillar (MP), a main channel, a branch chan...
This paper presents a microfluidic system, characterizing the red blood cell (RBC) deformability thr...
Advances in microfluidic applications have made it possible to design microsystems in which various ...
International audienceIn this paper, sickled red blood cells of different densities from distinct Si...
Hemorheological properties such as viscosity, deformability, and aggregation have been employed to m...
This paper reports a microfluidic system for biophysical characterization of red blood cells (RBCs) ...
Red blood cell (RBC) aggregation and erythrocyte sedimentation rate (ESR) are considered to be promi...
To identify the biophysical properties of blood samples consistently, macroscopic pumps have been us...
Biophysical (mechanical and electrical) properties of living cells have been proven to play importan...
Red blood cell (RBC) deformability has been considered a potential biomarker for monitoring patholog...
Red blood cell (RBC) aggregation causes to alter hemodynamic behaviors at low flow-rate regions of p...
International audienceThis paper describes the use of a microfluidic device comprising channels with...
Assessment of red blood cell (RBC) deformability as a biomarker requires expensive equipment to indu...
An osmotic fragility test is a useful way to determine the extent of red blood cell (RBC) hemolysis ...
En raison d’une mutation génétique, l'hémoglobine contenue dans les globules rouges (GRs) se polymér...
Blood viscosity has been considered as one of important biophysical parameters for effectively monit...
This paper presents a microfluidic system, characterizing the red blood cell (RBC) deformability thr...
Advances in microfluidic applications have made it possible to design microsystems in which various ...
International audienceIn this paper, sickled red blood cells of different densities from distinct Si...
Hemorheological properties such as viscosity, deformability, and aggregation have been employed to m...
This paper reports a microfluidic system for biophysical characterization of red blood cells (RBCs) ...
Red blood cell (RBC) aggregation and erythrocyte sedimentation rate (ESR) are considered to be promi...
To identify the biophysical properties of blood samples consistently, macroscopic pumps have been us...
Biophysical (mechanical and electrical) properties of living cells have been proven to play importan...
Red blood cell (RBC) deformability has been considered a potential biomarker for monitoring patholog...
Red blood cell (RBC) aggregation causes to alter hemodynamic behaviors at low flow-rate regions of p...
International audienceThis paper describes the use of a microfluidic device comprising channels with...
Assessment of red blood cell (RBC) deformability as a biomarker requires expensive equipment to indu...
An osmotic fragility test is a useful way to determine the extent of red blood cell (RBC) hemolysis ...
En raison d’une mutation génétique, l'hémoglobine contenue dans les globules rouges (GRs) se polymér...
Blood viscosity has been considered as one of important biophysical parameters for effectively monit...
This paper presents a microfluidic system, characterizing the red blood cell (RBC) deformability thr...
Advances in microfluidic applications have made it possible to design microsystems in which various ...
International audienceIn this paper, sickled red blood cells of different densities from distinct Si...