Treballs Finals de Grau de Física, Facultat de Física, Universitat de Barcelona, Curs: 2017, Tutora: Aurora Hernández-MachadoIn this work we will study the fluctuations of the red blood cell membrane where either bending or surface tension energy is present. This work will be based on a previously proposed phase field model for cellular membranes [1, 2] but including a thermal-driven noise. We simulated the fluctuations generated by this thermal noise in a membrane and compared them with recent experimental data for two morphologies of RBC cells of a discocyte and a spherocyte cell shapes. We derived the correlation function for the phase field order parameter and computed the correlation function of our numerical simulations and then...
Red blood cells (RBCs) present unique reversible shape deformability, essential for both function an...
AbstractErythrocytes are flexible cells specialized in the systemic transport of oxygen in vertebrat...
AbstractWe have analyzed the fluctuations of the red blood cell membrane in both the temporal ((ω(s−...
Copyright © 2013 Royal Society of ChemistryWe outline a new method of analysis of thermal shape fluc...
Red blood cells (RBCs) present unique reversible shape deformability, essential for both function an...
We outline a new method of analysis of thermal shape fluctuations of red blood cells, based on compa...
Red blood cells show a remarkable flicker phenomenon under physiological conditions. We have studied...
Red blood cells show a remarkable flicker phenomenon under physiological conditions. We have studied...
Red blood cells (RBCs) present unique reversible shape deformability, essential for both function an...
International audienceRed blood cells, or erythrocytes, are seen to flicker under optical microscopy...
AbstractWe describe a model of the mechanical properties of the cell plasma membrane using a finite-...
In this thesis, we describe the development of a new technique for determination of the mechanical p...
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...
We propose a new experimental technique for red blood cell thermal fluctuation analysis, which make...
Red blood cells (RBCs) present unique reversible shape deformability, essential for both function an...
AbstractErythrocytes are flexible cells specialized in the systemic transport of oxygen in vertebrat...
AbstractWe have analyzed the fluctuations of the red blood cell membrane in both the temporal ((ω(s−...
Copyright © 2013 Royal Society of ChemistryWe outline a new method of analysis of thermal shape fluc...
Red blood cells (RBCs) present unique reversible shape deformability, essential for both function an...
We outline a new method of analysis of thermal shape fluctuations of red blood cells, based on compa...
Red blood cells show a remarkable flicker phenomenon under physiological conditions. We have studied...
Red blood cells show a remarkable flicker phenomenon under physiological conditions. We have studied...
Red blood cells (RBCs) present unique reversible shape deformability, essential for both function an...
International audienceRed blood cells, or erythrocytes, are seen to flicker under optical microscopy...
AbstractWe describe a model of the mechanical properties of the cell plasma membrane using a finite-...
In this thesis, we describe the development of a new technique for determination of the mechanical p...
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...
We propose a new experimental technique for red blood cell thermal fluctuation analysis, which make...
Red blood cells (RBCs) present unique reversible shape deformability, essential for both function an...
AbstractErythrocytes are flexible cells specialized in the systemic transport of oxygen in vertebrat...
AbstractWe have analyzed the fluctuations of the red blood cell membrane in both the temporal ((ω(s−...