International audienceThis paper describes the use of a microfluidic device comprising channels with dimensions mimicking those of the smallest capillaries found in the human microcirculation. The device structure, associated with a pair of microelectrodes, provides a tool to electrically measure the transit time of red blood cells through fine capillaries and thus generate an electrical signature for red blood cells in the context of human erythroid genetic disorders, such as sickle cell disease or hereditary spherocytosis, in which red cell elasticity is altered. Red blood cells from healthy individuals, heated or not, and red blood cells from patients with sickle cell disease or hereditary spherocytosis where characterized at a single ce...
International audienceThis paper presents a microfluidic system, characterizing the red blood cell (...
International audienceThis paper presents a microfluidic system, characterizing the red blood cell (...
This paper presents a microfluidic system, characterizing the red blood cell (RBC) deformability thr...
International audienceThis paper describes the use of a microfluidic device comprising channels with...
International audienceThis paper describes the use of a microfluidic device comprising channels with...
International audienceThis paper describes the use of a microfluidic device comprising channels with...
International audienceThis paper describes the use of a microfluidic device comprising channels with...
International audienceThis paper describes the use of a microfluidic device comprising channels with...
International audienceIn this paper, sickled red blood cells of different densities from distinct Si...
International audienceIn this paper, sickled red blood cells of different densities from distinct Si...
International audienceIn this paper, sickled red blood cells of different densities from distinct Si...
International audienceIn this paper, sickled red blood cells of different densities from distinct Si...
International audienceIn this paper, sickled red blood cells of different densities from distinct Si...
International audienceThis paper presents a microfluidic system, characterizing the red blood cell (...
International audienceThis paper presents a microfluidic system, characterizing the red blood cell (...
International audienceThis paper presents a microfluidic system, characterizing the red blood cell (...
International audienceThis paper presents a microfluidic system, characterizing the red blood cell (...
This paper presents a microfluidic system, characterizing the red blood cell (RBC) deformability thr...
International audienceThis paper describes the use of a microfluidic device comprising channels with...
International audienceThis paper describes the use of a microfluidic device comprising channels with...
International audienceThis paper describes the use of a microfluidic device comprising channels with...
International audienceThis paper describes the use of a microfluidic device comprising channels with...
International audienceThis paper describes the use of a microfluidic device comprising channels with...
International audienceIn this paper, sickled red blood cells of different densities from distinct Si...
International audienceIn this paper, sickled red blood cells of different densities from distinct Si...
International audienceIn this paper, sickled red blood cells of different densities from distinct Si...
International audienceIn this paper, sickled red blood cells of different densities from distinct Si...
International audienceIn this paper, sickled red blood cells of different densities from distinct Si...
International audienceThis paper presents a microfluidic system, characterizing the red blood cell (...
International audienceThis paper presents a microfluidic system, characterizing the red blood cell (...
International audienceThis paper presents a microfluidic system, characterizing the red blood cell (...
International audienceThis paper presents a microfluidic system, characterizing the red blood cell (...
This paper presents a microfluidic system, characterizing the red blood cell (RBC) deformability thr...