The application of intense, short-duration pulsed electric fields to biological membranes induces an increase of their conductivity to external molecules, an effect termed electroporation (EP), which is currently exploited in several biomedical, industrial and environmental applications. The study of interaction mechanisms between pulsed electric fields and biological structures is addressed by experiments and modelling. In the latter case, analytical, circuital, numerical and molecular dynamics approaches have been proposed in the literature, providing complementary information on the EP phenomenon. In this paper, an overview on circuital modelling of EP is presented. In spite of the simplifications adopted from both a physical and electri...
Le but de ce rapport est de présenter les différentes approches biophysiques et phénoménologiques dé...
A review of molecular models explaining the basic mechanism of electroporation is presented. Essenti...
AbstractConventional electroporation (EP) changes both the conductance and molecular permeability of...
The application of intense, short-duration pulsed electric fields to biological membranes induces an...
Cell electroporation is a complex phenomenon, which consists in the emergence of defects in cell mem...
Electroporation has become a powerful tool for nonviral delivery of various biomolecules such as nuc...
Electroporation is the formation of reversible pores in cell membranes under a brief pulse of high e...
In this work, a nonlinear dispersive multiphysic model based on Maxwell and asymptotic Smoluchowsky ...
International audienceIn this paper, we propose a new dynamical model of tissue electroporation. The...
A dynamic model of electroporation is proposed in order to compute at the tissue scale the distribut...
Electroporation technique is widely used in biotechnology and medicine for the transport of various ...
A numerical model, usually employed to analyze the electroporation phenomenon in eukaryotic cells ex...
Electroporation EP, in which external electric field pulses create transient pores in a cell membran...
International audienceThe computation for the distribution of the electric field ∇ϕ within biologica...
Le but de ce rapport est de présenter les différentes approches biophysiques et phénoménologiques dé...
A review of molecular models explaining the basic mechanism of electroporation is presented. Essenti...
AbstractConventional electroporation (EP) changes both the conductance and molecular permeability of...
The application of intense, short-duration pulsed electric fields to biological membranes induces an...
Cell electroporation is a complex phenomenon, which consists in the emergence of defects in cell mem...
Electroporation has become a powerful tool for nonviral delivery of various biomolecules such as nuc...
Electroporation is the formation of reversible pores in cell membranes under a brief pulse of high e...
In this work, a nonlinear dispersive multiphysic model based on Maxwell and asymptotic Smoluchowsky ...
International audienceIn this paper, we propose a new dynamical model of tissue electroporation. The...
A dynamic model of electroporation is proposed in order to compute at the tissue scale the distribut...
Electroporation technique is widely used in biotechnology and medicine for the transport of various ...
A numerical model, usually employed to analyze the electroporation phenomenon in eukaryotic cells ex...
Electroporation EP, in which external electric field pulses create transient pores in a cell membran...
International audienceThe computation for the distribution of the electric field ∇ϕ within biologica...
Le but de ce rapport est de présenter les différentes approches biophysiques et phénoménologiques dé...
A review of molecular models explaining the basic mechanism of electroporation is presented. Essenti...
AbstractConventional electroporation (EP) changes both the conductance and molecular permeability of...