It is hypothesized that high frequency components of nanosecond pulsed electric fields (nsPEFs), determined by transient pulse features, are important for maximizing electric field interactions with intracellular structures. For monopolar square wave pulses, these transient features are determined by the rapid rise and fall of the pulsed electric fields. To determine effects on mitochondria membranes and plasma membranes, N1-S1 hepatocellular carcinoma cells were exposed to single 600 ns pulses with varying electric fields (0-80 kV/cm) and short (15 ns) or long (150 ns) rise and fall times. Plasma membrane effects were evaluated using Fluo-4 to determine calcium influx, the only measurable source of increases in intracellular calcium. Mitoc...
The interaction of nanosecond duration pulsed electric fields (nsPEFs) with biological cells, and th...
High electric field-treated cells are permeable to molecular dye through either opening of pores in ...
The evolution of pulse power technology from high power physics to biology and medicine places nanos...
It is hypothesized that high frequency components of nanosecond pulsed electric fields (nsPEFs), det...
Electrical models for biological cells predict that reducing the duration of applied electrical puls...
The continuing effort to manipulate cell-signaling pathways for therapeutic benefit has lead to the ...
Pulse power technology using nanosecond pulsed electric fields (nsPEFs) offers a new stimulus to mod...
Pulsed power treatment has been used to induce regulated cell death (RCD) in cells or ablate tumors ...
AbstractNanosecond, megavolt-per-meter, pulsed electric fields induce phosphatidylserine (PS) extern...
High-intensity nanosecond pulse electric fields (nsPEF) can preferentially induce various effects, m...
Bioelectrics is the application of electric fields to cells in a conducting media, treating the cell...
Changes in [Ca2+]i response of individual Jurkat cells to nanosecond pulsed electric fields (nsPEFs)...
Nanosecond pulsed electric field induced biological effects have been a focus of research interests ...
Intense nanosecond pulsed electric fields (nsPEFs) interact with cellular membranes and intracellula...
BackgroundNanosecond, megavolt-per-meter pulsed electric fields scramble membrane phospholipids, rel...
The interaction of nanosecond duration pulsed electric fields (nsPEFs) with biological cells, and th...
High electric field-treated cells are permeable to molecular dye through either opening of pores in ...
The evolution of pulse power technology from high power physics to biology and medicine places nanos...
It is hypothesized that high frequency components of nanosecond pulsed electric fields (nsPEFs), det...
Electrical models for biological cells predict that reducing the duration of applied electrical puls...
The continuing effort to manipulate cell-signaling pathways for therapeutic benefit has lead to the ...
Pulse power technology using nanosecond pulsed electric fields (nsPEFs) offers a new stimulus to mod...
Pulsed power treatment has been used to induce regulated cell death (RCD) in cells or ablate tumors ...
AbstractNanosecond, megavolt-per-meter, pulsed electric fields induce phosphatidylserine (PS) extern...
High-intensity nanosecond pulse electric fields (nsPEF) can preferentially induce various effects, m...
Bioelectrics is the application of electric fields to cells in a conducting media, treating the cell...
Changes in [Ca2+]i response of individual Jurkat cells to nanosecond pulsed electric fields (nsPEFs)...
Nanosecond pulsed electric field induced biological effects have been a focus of research interests ...
Intense nanosecond pulsed electric fields (nsPEFs) interact with cellular membranes and intracellula...
BackgroundNanosecond, megavolt-per-meter pulsed electric fields scramble membrane phospholipids, rel...
The interaction of nanosecond duration pulsed electric fields (nsPEFs) with biological cells, and th...
High electric field-treated cells are permeable to molecular dye through either opening of pores in ...
The evolution of pulse power technology from high power physics to biology and medicine places nanos...