The change in the membrane potential of Jurkat cells in response to nanosecond pulsed electric fields was studied for pulses with a duration of 60 ns and maximum field strengths of similar to 100 kV/cm (100 V/cell diameter). Membranes of Jurkat cells were stained with a fast voltage-sensitive dye, ANNINE-6, which has a subnanosecond voltage response time. A temporal resolution of 5 ns was achieved by the excitation of this dye with a tunable laser pulse. The laser pulse was synchronized with the applied electric field to record images at times before, during, and after exposure. When exposing the Jurkat cells to a pulse, the voltage across the membrane at the anodic pole of the cell reached values of 1.6 V after 15 ns, almost twice the volt...
Nanosecond pulsed electric field induced biological effects have been a focus of research interests ...
AbstractTime courses of electropermeabilization were analyzed during the electric field application ...
AbstractA simple electrical model for living cells predicts an increasing probability for electric f...
The change in the membrane potential of Jurkat cells in response to nanosecond pulsed electric field...
AbstractThe change in the membrane potential of Jurkat cells in response to nanosecond pulsed electr...
AbstractA simple electrical model for living cells predicts an increasing probability for electric f...
AbstractSeveral reports have recently been published on effects of very short and intense electric p...
A simple electrical model for living cells predicts an increasing probability for electric field int...
High electric field-treated cells are permeable to molecular dye through either opening of pores in ...
The continuing effort to manipulate cell-signaling pathways for therapeutic benefit has lead to the ...
High electric field-treated cells are permeable to molecular dye through either opening of pores in ...
Controlled permeability can be conferred to cell membranes by exposing cells to a microsecond electr...
The continuing effort to manipulate cell-signaling pathways for therapeutic benefit has lead to the ...
The continuing effort to manipulate cell-signaling pathways for therapeutic benefit has lead to the ...
Nanosecond pulsed electric field induced biological effects have been a focus of research interests ...
Nanosecond pulsed electric field induced biological effects have been a focus of research interests ...
AbstractTime courses of electropermeabilization were analyzed during the electric field application ...
AbstractA simple electrical model for living cells predicts an increasing probability for electric f...
The change in the membrane potential of Jurkat cells in response to nanosecond pulsed electric field...
AbstractThe change in the membrane potential of Jurkat cells in response to nanosecond pulsed electr...
AbstractA simple electrical model for living cells predicts an increasing probability for electric f...
AbstractSeveral reports have recently been published on effects of very short and intense electric p...
A simple electrical model for living cells predicts an increasing probability for electric field int...
High electric field-treated cells are permeable to molecular dye through either opening of pores in ...
The continuing effort to manipulate cell-signaling pathways for therapeutic benefit has lead to the ...
High electric field-treated cells are permeable to molecular dye through either opening of pores in ...
Controlled permeability can be conferred to cell membranes by exposing cells to a microsecond electr...
The continuing effort to manipulate cell-signaling pathways for therapeutic benefit has lead to the ...
The continuing effort to manipulate cell-signaling pathways for therapeutic benefit has lead to the ...
Nanosecond pulsed electric field induced biological effects have been a focus of research interests ...
Nanosecond pulsed electric field induced biological effects have been a focus of research interests ...
AbstractTime courses of electropermeabilization were analyzed during the electric field application ...
AbstractA simple electrical model for living cells predicts an increasing probability for electric f...