The response of a cell to an external electric field is investigated using dimensional analysis and singular perturbation. The results demonstrate that the response of a cell is a two-stage process consisting of the initial polarization that proceeds with the cellular time constant (< 1 microseconds), and of the actual change of physiological state that proceeds with the membrane time constant (several milliseconds). The second stage is governed by an ordinary differential equation similar to that of a space-clamped membrane patch but formulated in terms of intracellular rather than transmembrane potential. Therefore, it is meaningful to analyze the physiological state and the dynamics of a cell as a whole instead of the physiological state...
Biological cells stressed by external electric fields undergo mechanical deformation and remodeling ...
Membrane-potential dynamics mediate bacterial electrical signaling at both intra- and intercellular ...
Electric pulses across intact vesicles and cells can lead to transient increase in permeability of t...
Electrical stimulation of cardiac cells by imposed extracellular electric fields results in a transm...
Abstract: The use of electric field stimulation to elicit a desired cell/tissue response has become ...
The dynamics of electroporation of biological cells subjected to nanosecond, high intensity pulses a...
Transient membrane permeabilization by application of high electric field intensity pulses on cells ...
AbstractSeveral reports have recently been published on effects of very short and intense electric p...
The relation between extracellular electric fields and changes in membrane potential that such field...
The kinetics and amplitudes of membrane potential induced by externally applied electric field pulse...
Analysis of the angular distribution of extensil mechanical stress, sigma e, generated in cytoplasmi...
AbstractTransmembrane potential responses of single cardiac cells stimulated at rest were studied wi...
Biological cells stressed by external electric fields undergo mechanical deformation and remodeling ...
AbstractThis study expands a previously developed model of a single cell electroporated by an extern...
AbstractSeveral reports have recently been published on effects of very short and intense electric p...
Biological cells stressed by external electric fields undergo mechanical deformation and remodeling ...
Membrane-potential dynamics mediate bacterial electrical signaling at both intra- and intercellular ...
Electric pulses across intact vesicles and cells can lead to transient increase in permeability of t...
Electrical stimulation of cardiac cells by imposed extracellular electric fields results in a transm...
Abstract: The use of electric field stimulation to elicit a desired cell/tissue response has become ...
The dynamics of electroporation of biological cells subjected to nanosecond, high intensity pulses a...
Transient membrane permeabilization by application of high electric field intensity pulses on cells ...
AbstractSeveral reports have recently been published on effects of very short and intense electric p...
The relation between extracellular electric fields and changes in membrane potential that such field...
The kinetics and amplitudes of membrane potential induced by externally applied electric field pulse...
Analysis of the angular distribution of extensil mechanical stress, sigma e, generated in cytoplasmi...
AbstractTransmembrane potential responses of single cardiac cells stimulated at rest were studied wi...
Biological cells stressed by external electric fields undergo mechanical deformation and remodeling ...
AbstractThis study expands a previously developed model of a single cell electroporated by an extern...
AbstractSeveral reports have recently been published on effects of very short and intense electric p...
Biological cells stressed by external electric fields undergo mechanical deformation and remodeling ...
Membrane-potential dynamics mediate bacterial electrical signaling at both intra- and intercellular ...
Electric pulses across intact vesicles and cells can lead to transient increase in permeability of t...