AbstractA simple electrical model for living cells predicts an increasing probability for electric field interactions with intracellular substructures of both prokaryotic and eukaryotic cells when the electric pulse duration is reduced into the sub-microsecond range. The validity of this hypothesis was verified experimentally by applying electrical pulses (durations 100μs–60ns, electric field intensities 3–150kV/cm) to Jurkat cells suspended in physiologic buffer containing propidium iodide. Effects on Jurkat cells were assessed by means of temporally resolved fluorescence and light microscopy. For the longest applied pulses, immediate uptake of propidium iodide occurred consistent with electroporation as the cause of increased surface memb...
Electrical properties of cancer cells have been studied widely to understand cancer. The increase in...
AbstractSeveral reports have recently been published on effects of very short and intense electric p...
Electric pulses (EPs) have been used for many biological applications from electrochemotherapy to wo...
AbstractA simple electrical model for living cells predicts an increasing probability for electric f...
A simple electrical model for living cells predicts an increasing probability for electric field int...
International audienceElectric pulses of a few nanoseconds in duration can induce reversible permeab...
Electric pulses of a few nanoseconds in duration can induce reversible permeabilization of cell memb...
Electrical models for biological cells predict that reducing the duration of applied electrical puls...
Abstract—Experiments have been conducted that investigate the plasma membrane response of HL-60 huma...
AbstractThe change in the membrane potential of Jurkat cells in response to nanosecond pulsed electr...
AbstractFor this systematic review, 203 published reports on effects of electroporation using nanose...
Electrical models for biological cells predict that reducing the duration of applied electrical puls...
The change in the membrane potential of Jurkat cells in response to nanosecond pulsed electric field...
AbstractTreatment of biological material by pulsed electric fields is a versatile technique in biote...
The change in the membrane potential of Jurkat cells in response to nanosecond pulsed electric field...
Electrical properties of cancer cells have been studied widely to understand cancer. The increase in...
AbstractSeveral reports have recently been published on effects of very short and intense electric p...
Electric pulses (EPs) have been used for many biological applications from electrochemotherapy to wo...
AbstractA simple electrical model for living cells predicts an increasing probability for electric f...
A simple electrical model for living cells predicts an increasing probability for electric field int...
International audienceElectric pulses of a few nanoseconds in duration can induce reversible permeab...
Electric pulses of a few nanoseconds in duration can induce reversible permeabilization of cell memb...
Electrical models for biological cells predict that reducing the duration of applied electrical puls...
Abstract—Experiments have been conducted that investigate the plasma membrane response of HL-60 huma...
AbstractThe change in the membrane potential of Jurkat cells in response to nanosecond pulsed electr...
AbstractFor this systematic review, 203 published reports on effects of electroporation using nanose...
Electrical models for biological cells predict that reducing the duration of applied electrical puls...
The change in the membrane potential of Jurkat cells in response to nanosecond pulsed electric field...
AbstractTreatment of biological material by pulsed electric fields is a versatile technique in biote...
The change in the membrane potential of Jurkat cells in response to nanosecond pulsed electric field...
Electrical properties of cancer cells have been studied widely to understand cancer. The increase in...
AbstractSeveral reports have recently been published on effects of very short and intense electric p...
Electric pulses (EPs) have been used for many biological applications from electrochemotherapy to wo...