Skip navigation
Skip navigation

Browsing by Author Chung, Shin-Ho

Or enter first few letters:  
Showing results 64 to 83 of 93

Molecular dynamics estimates of ion diffusion in model hydrophobic and KcsA potassium channels

Author(s)Allen, Toby; Kuyucak, Serdar; Chung, Shin-Ho
TypeJournal article
Date Published2000
Date Created-

Molecular dynamics simulations of Na+ and leucine transport by LeuT

Author(s)Chen, Rong; Chung, Shin-Ho
TypeJournal article
Date Published2015
Date Created-
01_Chen_Molecular_Dynamics_Simulations_2013.pdf.jpg

Molecular Dynamics Simulations of Scorpion Toxin Recognition by the Ca²⁺-Activated Potassium Channel KCa3.1

Author(s)Chen, Rong; Chung, Shin-Ho
TypeJournal article
Date Published2013
Date Created-

Molecular dynamics study of the KcsA potassium channel

Author(s)Allen, Toby; Kuyucak, Serdar; Chung, Shin-Ho
TypeJournal article
Date Published1999
Date Created-

Multi-ion versus single-ion conduction mechanisms can yield current rectification in biological ion channels

Author(s)Hilder, Tamsyn; Corry, Ben; Chung, Shin-Ho
TypeJournal article
Date Published2014
Date Created-

Permeation and Block of the Kv1.2 Channel Examined Using Brownian and Molecular Dynamics

Author(s)Gordon, Dan; Chung, Shin-Ho
TypeJournal article
Date Published2011
Date Created-

Permeation Dynamics of Chloride Ions in the CIC-O and CIC-1 Channels

Author(s)Corry, Ben; O'Mara, Megan; Chung, Shin-Ho
TypeJournal article
Date Published2004
Date Created-

Permeation in Gramicidin Ion Channels by Directly Estimating the Potential of Mean force Using Brownian Dynamics Simulations

Author(s)Krishnamurthy, Vikram; Hoyles, Matthew; Saab, Rayan, et al
TypeJournal article
Date Published2006
Date Created-

Permeation Models and Structure-function Relationships in Ion Channels

Author(s)Kuyucak, Serdar; Chung, Shin-Ho
TypeJournal article
Date Published2002
Date Created-

Permeation of ions across the potassium channel: Brownian dynamics studies

Author(s)Chung, Shin-Ho; Allen, Toby; Hoyles, Matthew, et al
TypeJournal article
Date Published1999
Date Created-

Predicting channel function from channel structure using Brownian dynamics simulations

Author(s)Chung, Shin-Ho; Kuyucak, Serdar
TypeJournal article
Date Published2001
Date Created-

Recent Advances in Ion Channel Research

Author(s)Chung, Shin-Ho; Kuyucak, Serdar
TypeJournal article
Date Published2002
Date Created-

Reservoir Boundaries in Brownian Dynamics Simulations of Ion Channels

Author(s)Corry, Ben; Hoyles, Matthew; Allen, Toby, et al
TypeJournal article
Date Published2002
Date Created-

Rigid Body Brownian Dynamics as a Tool for Studying Ion Channel Blockers

Author(s)Gordon, Daniel; Chen, Rong; Ho, Junming, et al
TypeJournal article
Date Published2012
Date Created-

Salt Rejection and Water Transport Through Boron Nitride Nanotubes

Author(s)Hilder, Tamsyn; Gordon, Daniel; Chung, Shin-Ho
TypeJournal article
Date Published2009
Date Created-

Signal Processing Based on Hidden Markov models for Extracting Small Channel Currents

Author(s)Krishnamurthy, Vikram; Chung, Shin-Ho
TypeBook chapter
Date Published2006
Date Created-

Silicon carbide nanotube as a chloride-selective channel

Author(s)Hilder, Tamsyn; Yang, Rui; Gordon, Daniel, et al
TypeJournal article
Date Published2012
Date Created-
01_Chen_Structural_Basis_of_the_2012.pdf.jpg

Structural Basis of the Selective Block of Kv1.2 by Maurotoxin from Computer Simulations

Author(s)Chen, Rong; Chung, Shin-Ho
TypeJournal article
Date Published10-Oct-2012
Date Created-
01_Hilder_Synthetic_cation-selective_2011.pdf.jpg

Synthetic cation-selective nanotube: Permeant cations chaperoned by anions

Author(s)Hilder, Tamsyn A.; Gordon, Dan; Chung, Shin-Ho
TypeJournal article
Date Published2011
Date Created-

Synthetic Chloride-Selective Carbon Nanotubes Examined by Using Molecular and Stochastic Dynamics

Author(s)Hilder, Tamsyn A.; Gordon, Dan; Chung, Shin-Ho
TypeJournal article
Date Published2010
Date Created-

Updated:  12 April 2016/ Responsible Officer:  University Librarian/ Page Contact:  Library Systems & Web Coordinator