The growing importance of applications based on molecular medicine and genetic engineering is driving the need to develop high-performance electroporation technologies. The electroporation phenomenon involves disruption of the cell for increasing membrane permeability. Although there is a multitude of research focused on exploring new electroporation techniques, the engineering of programming schemes suitable for these electroporation methods remains a challenge. Nanosecond stimulations could be promising candidates for these techniques owing to their ability to generate a wide range of biological responses. Here we control the membrane permeabilization of cancer cells using different numbers of electric-field pulses through orientational d...
Picosecond pulse trains (psPTs) are emerging as a new characteristic diagnostic and therapeutic tool...
In gene electrotransfer and cardiac ablation with irreversible electroporation, treated muscle cells...
Externally applied voltages can create transient, nonselective pores in a cell’s membrane, a phenome...
The growing importance of applications based on molecular medicine and genetic engineering is drivin...
AbstractTreatment of biological material by pulsed electric fields is a versatile technique in biote...
Electric pulses (EPs) have been used for many biological applications from electrochemotherapy to wo...
At present, some of the most promising techniques for cell ablation, stimulation, and excitation are...
The temporal dynamics of electroporation of cells subjected to ultrashort voltage pulses are studied...
The main theme of this dissertation is to investigate the effects of electric field on biological ce...
Electroporation - the permeabilization of the cell membrane lipid bilayer due to a pulsed electric f...
Conventional electroporation has been conducted by employing short direct current (dc) pulses for de...
Electroporation is a method of disrupting the integrity of cell membrane by electric pulses (EPs). E...
Exposure of a biological cell to an electric field can produce a variety of responses [1]-[6]. If th...
We develop a model of single spherical cell electroporation and simulate spatial and temporal aspect...
UnrestrictedRecent advances in computing technology have facilitated the application of simulations ...
Picosecond pulse trains (psPTs) are emerging as a new characteristic diagnostic and therapeutic tool...
In gene electrotransfer and cardiac ablation with irreversible electroporation, treated muscle cells...
Externally applied voltages can create transient, nonselective pores in a cell’s membrane, a phenome...
The growing importance of applications based on molecular medicine and genetic engineering is drivin...
AbstractTreatment of biological material by pulsed electric fields is a versatile technique in biote...
Electric pulses (EPs) have been used for many biological applications from electrochemotherapy to wo...
At present, some of the most promising techniques for cell ablation, stimulation, and excitation are...
The temporal dynamics of electroporation of cells subjected to ultrashort voltage pulses are studied...
The main theme of this dissertation is to investigate the effects of electric field on biological ce...
Electroporation - the permeabilization of the cell membrane lipid bilayer due to a pulsed electric f...
Conventional electroporation has been conducted by employing short direct current (dc) pulses for de...
Electroporation is a method of disrupting the integrity of cell membrane by electric pulses (EPs). E...
Exposure of a biological cell to an electric field can produce a variety of responses [1]-[6]. If th...
We develop a model of single spherical cell electroporation and simulate spatial and temporal aspect...
UnrestrictedRecent advances in computing technology have facilitated the application of simulations ...
Picosecond pulse trains (psPTs) are emerging as a new characteristic diagnostic and therapeutic tool...
In gene electrotransfer and cardiac ablation with irreversible electroporation, treated muscle cells...
Externally applied voltages can create transient, nonselective pores in a cell’s membrane, a phenome...