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Entropy (Basel, Switzerland)|June 2, 2021
Electrophysiological Properties from Computations at a Single Voltage: Testing Theory with Stochastic SimulationsMichael A Wilson, Andrew PohorilleThe Journal of Physical Chemistry. B|October 28, 2022
Structure and Computational Electrophysiology of Ac-LS3, a Synthetic Ion ChannelMichael A Wilson, Andrew PohorilleThe Journal of Physical Chemistry. B|March 17, 2021
Computational Electrophysiology from a Single Molecular Dynamics Simulation and the Electrodiffusion ModelAndrew Pohorille, Michael A WilsonThe Journal of Physical Chemistry. B|December 13, 2016
Validity of the Electrodiffusion Model for Calculating Conductance of Simple Ion ChannelsAndrew Pohorille, Michael A Wilson, Chenyu WeiLife (Basel, Switzerland)|June 8, 2017
Flexible Proteins at the Origin of LifeAndrew Pohorille, Michael A Wilson, Gareth ShannonAstrobiology|February 16, 2005
The origin and early evolution of membrane channelsAndrew Pohorille, Karl Schweighofer, Michael A WilsonOrigins of Life and Evolution of the Biosphere : the Journal of the International Society for the Study of the Origin of Life|September 12, 2003
Membrane peptides and their role in protobiological evolutionAndrew Pohorille, Michael A Wilson, Christophe ChipotOrigins of Life and Evolution of the Biosphere : the Journal of the International Society for the Study of the Origin of Life|January 24, 2015
Towards co-evolution of membrane proteins and metabolismMichael A Wilson, Chenyu Wei, Andrew PohorilleThe Journal of Chemical Physics|December 16, 2014
Combining molecular dynamics and an electrodiffusion model to calculate ion channel conductanceMichael A Wilson, Thuy Hien Nguyen, Andrew PohorilleBiophysical Journal|May 18, 2011
Molecular dynamics simulation of the antiamoebin ion channel: linking structure and conductanceMichael A Wilson, Chenyu Wei, Pär Bjelkmar, et al.Pageof 7