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Journal of Neurophysiology|March 10, 2012
A neuromechanical model explaining forward and backward stepping in the stick insectT I Tóth, S Knops, S Daun-GruhnJournal of Neurophysiology|November 9, 2012
A neuromechanical model for the neuronal basis of curve walking in the stick insectS Knops, T I Tóth, C Guschlbauer, et al.Journal of Neurophysiology|November 20, 2015
A three-leg model producing tetrapod and tripod coordination patterns of ipsilateral legs in the stick insectT I Tóth, S Daun-GruhnJournal of Computational Neuroscience|April 24, 2015
A network model comprising 4 segmental, interconnected ganglia, and its application to simulate multi-legged locomotion in crustaceansM Grabowska, T I Toth, C Smarandache-Wellmann, et al.Journal of Neuroscience Methods|October 12, 2001
Estimation of the activation and kinetic properties of I(Na) and I(K) from the time course of the action potentialT I Tóth, V CrunelliNeuroscience|May 13, 1998
Effects of tapering geometry and inhomogeneous ion channel distribution in a neuron modelT I Tóth, V CrunelliNeuroreport|October 6, 1997
Simulation of intermittent action potential firing in thalamocortical neuronsT I Tóth, V CrunelliJournal of Neuroscience Methods|December 1, 1995
A numerical procedure to estimate kinetic and steady-state characteristics of inactivating ionic currentsT I Tóth, V CrunelliJournal of Neuroscience Methods|March 7, 2001
Solution of the nerve cable equation using Chebyshev approximationsT I Tóth, V CrunelliAnnals of Biomedical Engineering|January 1, 1990
Using fractals to understand the opening and closing of ion channelsL S Liebovitch, T I TóthPageof 2