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20172019
most citedPore lifetimes in cell electroporation: Complex dark pores?

11 citations · 13 across the 5 of their papers we have counts for

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physics.bio-ph2019

Biophysics-based critique of the assisted discharge mechanism hypothesis

Julie V. Stern, Thiruvallur R. Gowrishankar, Kyle C. Smith +1

Cell experiments with large, short electric field pulses of opposite polarity reveal a remarkable phenomenon: Bipolar cancellation (BPC). Typical defining experiments involve quant…

physics.bio-ph2017

Solute transport within single pores post-pulse

Julie V. Stern, Thiruvallur R. Gowrishankar, James C. Weaver

We present results of studying the post-pulse transport properties of single pores. Single pores exhibit active transport (drift), and not just passive transport (diffusion) at ear…

physics.bio-ph2017

Electroporation dynamics for different pore lifetimes based on the standard model

Thiruvallur R. Gowrishankar, Julie V. Stern, James C. Weaver

Standard model of electropration (EP) has long emphasized a single pore lifetime to explain post-pulse transport across cell membranes. However, pore lifetimes estimated from molec…

physics.bio-ph20172 cited

Broad pore lifetime distributions: A fundamental concept for cell electroporation

Julie V. Stern, Thiruvallur R. Gowrishankar, Kyle C. Smith +1

We describe a concept that has the potential to change how we think about the underlying mechanisms of cell membrane electroporation (EP). Prior experimental, theoretical and model…

physics.bio-ph201711 cited

Pore lifetimes in cell electroporation: Complex dark pores?

James C. Weaver, P. Thomas Vernier

We review some of the basic concepts and the possible pore structures associated with electroporation (EP) for times after electrical pulsing. We purposefully give only a short des…