We present a new method to measure the shear elastic moduli and viscosities of erythrocyte membranes which is based on the fixation and transient deformation of cells in a high-frequency electric field. A frequency domain of constant force (arising by Maxwell Wagner polarization) is selected to minimize dissipative effects. The electric force is thus calculated by electrostatic principles by considering the cell as a conducting body in a dielectric fluid and neglecting membrane polarization effects. The elongation A of the cells perpendicular to their rotational axis exhibits a linear regime (A proportional to Maxwell tension or to square of the electric field E2) at small, and a nonlinear regime (A proportional to square root of Maxwell te...
The membranes of human red blood cells (RBCs) are a composite of a fluid lipid bilayer and a triangu...
Recently proposed analysis of the extensil stress developed in a cellular membrane subjected to an a...
Analysis of the angular distribution of extensil mechanical stress, sigma e, generated in cytoplasmi...
We present a new method to measure the shear elastic moduli and viscosities of erythrocyte membranes...
Dielectrophoresis in microfluidics provides a useful tool to test biomechanics of living cells, rega...
High-frequency electric fields can be used to induce deformation of red blood cells. In the temperat...
Force relaxation and permanent deformation processes in erythrocyte membrane were investigated with ...
Concentrated adult erythrocyte suspensions were subjected to low amplitude oscillatory shear in a We...
Biological cells in general, and erythrocytes in particular, have been experimentally observed to un...
AbstractOptical tweezers are used to apply calibrated forces to human erythrocytes, via small silica...
We envision that electrodeformation of biological cells through dielectrophoresis as a new technique...
An analytical electromechanical model of a spherical cell exposed to an alternating electric field w...
According to Bishop method, a lot of reticulocytes were induced in mouse blood and were separated. U...
Biological cells stressed by external electric fields undergo mechanical deformation and remodeling ...
Investigation of mechanical properties of erythrocyte membranes is a pressing issue in practical rea...
The membranes of human red blood cells (RBCs) are a composite of a fluid lipid bilayer and a triangu...
Recently proposed analysis of the extensil stress developed in a cellular membrane subjected to an a...
Analysis of the angular distribution of extensil mechanical stress, sigma e, generated in cytoplasmi...
We present a new method to measure the shear elastic moduli and viscosities of erythrocyte membranes...
Dielectrophoresis in microfluidics provides a useful tool to test biomechanics of living cells, rega...
High-frequency electric fields can be used to induce deformation of red blood cells. In the temperat...
Force relaxation and permanent deformation processes in erythrocyte membrane were investigated with ...
Concentrated adult erythrocyte suspensions were subjected to low amplitude oscillatory shear in a We...
Biological cells in general, and erythrocytes in particular, have been experimentally observed to un...
AbstractOptical tweezers are used to apply calibrated forces to human erythrocytes, via small silica...
We envision that electrodeformation of biological cells through dielectrophoresis as a new technique...
An analytical electromechanical model of a spherical cell exposed to an alternating electric field w...
According to Bishop method, a lot of reticulocytes were induced in mouse blood and were separated. U...
Biological cells stressed by external electric fields undergo mechanical deformation and remodeling ...
Investigation of mechanical properties of erythrocyte membranes is a pressing issue in practical rea...
The membranes of human red blood cells (RBCs) are a composite of a fluid lipid bilayer and a triangu...
Recently proposed analysis of the extensil stress developed in a cellular membrane subjected to an a...
Analysis of the angular distribution of extensil mechanical stress, sigma e, generated in cytoplasmi...