The impedance of erythrocytes of man, cattle, sheep, dog, cat, rabbit, and chicken was measured in the range from 0.5 to 250 Mc. The dielectric constant of the red cell interior is 50 at 250 Mc, varies but little with species, and can readily be accounted for by the cells' hemoglobin content. The electrical conductivity of the red cell interior was determined between 70 and 100 Mc. The values differ from species to species within the rather limited range from 4.4 to 5.3 mmho/cm. Removal of the cell membranes does not affect the conductivity. Hence, the cell interior behaves, from an electrical point of view, like a highly concentrated hemoglobin solution. A theoretical value for the electrical conductivity of erythrocyte interiors, which is...
AbstractA method, allowing correction of electrode polarization effect in case of cell suspensions o...
Cytoplasmic conductivity of human erythrocytes may be significantly disturbed by the composition of ...
The plasma membrane functions both as a natural insulator and a diffusion barrier to the movement of...
Dielectric permittivity and conductivity data for human erythrocytes exhibit two consecutive dispers...
Usually dielectrophoretic and electrorotation measurements are carried out at low ionic strength to ...
The electrical properties of the cytoplasmatic membrane of human erythrocyte cells have been evaluat...
When placed in rotating electric fields red blood cells show a typical electrorotation spectrum with...
1. It is stated that the erythrocytes show a different cataphoresis in the same solution according t...
The aim of this work is to analyze the effects of temperature on dielectric parameters of Human Red ...
The work was carried out according to the state task of the Omsk Scientific Center SB RAS (project r...
We report measurements of the electrical impedance of human erythrocytes in the frequency range from...
Particle resistivity is explicitly included in the equations relating volume to voltage pulse, in el...
Although the electrophoretic mobility of mammalian erythrocytes has been investigated to some extent...
The electrical potential difference across the human red cell membrane has been measured directly. A...
The alterations of the passive electrical parameters (the permittivity epsilon and the electrical co...
AbstractA method, allowing correction of electrode polarization effect in case of cell suspensions o...
Cytoplasmic conductivity of human erythrocytes may be significantly disturbed by the composition of ...
The plasma membrane functions both as a natural insulator and a diffusion barrier to the movement of...
Dielectric permittivity and conductivity data for human erythrocytes exhibit two consecutive dispers...
Usually dielectrophoretic and electrorotation measurements are carried out at low ionic strength to ...
The electrical properties of the cytoplasmatic membrane of human erythrocyte cells have been evaluat...
When placed in rotating electric fields red blood cells show a typical electrorotation spectrum with...
1. It is stated that the erythrocytes show a different cataphoresis in the same solution according t...
The aim of this work is to analyze the effects of temperature on dielectric parameters of Human Red ...
The work was carried out according to the state task of the Omsk Scientific Center SB RAS (project r...
We report measurements of the electrical impedance of human erythrocytes in the frequency range from...
Particle resistivity is explicitly included in the equations relating volume to voltage pulse, in el...
Although the electrophoretic mobility of mammalian erythrocytes has been investigated to some extent...
The electrical potential difference across the human red cell membrane has been measured directly. A...
The alterations of the passive electrical parameters (the permittivity epsilon and the electrical co...
AbstractA method, allowing correction of electrode polarization effect in case of cell suspensions o...
Cytoplasmic conductivity of human erythrocytes may be significantly disturbed by the composition of ...
The plasma membrane functions both as a natural insulator and a diffusion barrier to the movement of...