AbstractWe have analyzed the fluctuations of the red blood cell membrane in both the temporal ((ω(s−1)) and spatial (q(m−1)) frequency domains. The cells were examined over a range of osmolarities leading to cell volumes from 50% to 170% of that in the isotonic state. The fluctuations of the isotonic cell showed an ∼q−3-dependence, indicative of a motion dominated by bending, with an inferred bending modulus of ∼9×10−19J. When the cells were osmotically swollen to just below the point of lysis (166% of physiological volume), a q−1-dependence of the fluctuations supervened, implying that the motion was now dominated by membrane tension; estimated as ∼1.3×10−4nm−1. When, on the other hand, the cells were osmotically dehydrated, the fluctuatio...
International audienceRed blood cells, or erythrocytes, are seen to flicker under optical microscopy...
We study the mechanical relaxation behavior of human red blood cells by observing the time evolution...
AbstractErythrocytes are flexible cells specialized in the systemic transport of oxygen in vertebrat...
Red blood cells (RBCs) present unique reversible shape deformability, essential for both function an...
Red blood cells are amazingly deformable structures able to re-cover their initial shape even after ...
Red blood cells (RBCs) present unique reversible shape deformability, essential for both function an...
AbstractLocal mechanical fluctuations of the cell membrane of human erythrocytes were shown to invol...
AbstractErythrocytes (red blood cells) play an essential role in the respiratory functions of verteb...
AbstractLocal mechanical fluctuations of the cell membrane of human erythrocytes were shown to invol...
The observation of low-frequency fluctuations of the cell membrane in erythrocytes and in several nu...
In this thesis, we describe the development of a new technique for determination of the mechanical p...
Red blood cells (RBCs) present unique reversible shape deformability, essential for both function an...
Red blood cells (RBCs) present unique reversible shape deformability, essential for both function an...
AbstractWe show theoretically how adenosine 5′-triphosphate (ATP)-induced dynamic dissociations of s...
AbstractWe show theoretically how adenosine 5′-triphosphate (ATP)-induced dynamic dissociations of s...
International audienceRed blood cells, or erythrocytes, are seen to flicker under optical microscopy...
We study the mechanical relaxation behavior of human red blood cells by observing the time evolution...
AbstractErythrocytes are flexible cells specialized in the systemic transport of oxygen in vertebrat...
Red blood cells (RBCs) present unique reversible shape deformability, essential for both function an...
Red blood cells are amazingly deformable structures able to re-cover their initial shape even after ...
Red blood cells (RBCs) present unique reversible shape deformability, essential for both function an...
AbstractLocal mechanical fluctuations of the cell membrane of human erythrocytes were shown to invol...
AbstractErythrocytes (red blood cells) play an essential role in the respiratory functions of verteb...
AbstractLocal mechanical fluctuations of the cell membrane of human erythrocytes were shown to invol...
The observation of low-frequency fluctuations of the cell membrane in erythrocytes and in several nu...
In this thesis, we describe the development of a new technique for determination of the mechanical p...
Red blood cells (RBCs) present unique reversible shape deformability, essential for both function an...
Red blood cells (RBCs) present unique reversible shape deformability, essential for both function an...
AbstractWe show theoretically how adenosine 5′-triphosphate (ATP)-induced dynamic dissociations of s...
AbstractWe show theoretically how adenosine 5′-triphosphate (ATP)-induced dynamic dissociations of s...
International audienceRed blood cells, or erythrocytes, are seen to flicker under optical microscopy...
We study the mechanical relaxation behavior of human red blood cells by observing the time evolution...
AbstractErythrocytes are flexible cells specialized in the systemic transport of oxygen in vertebrat...