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Neuroscience|March 22, 2012
The hemisegmental locomotor network revisitedL Cangiano, R H Hill, S GrillnerAnnals of the New York Academy of Sciences|February 3, 1999
Modeling of the spinal neuronal circuitry underlying locomotion in a lower vertebrateA Lansner, J H Kotaleski, S GrillnerBrain Research|December 9, 1985
Ionic mechanisms of 3 types of functionally different neurons in the lamprey spinal cordR H Hill, P Arhem, S GrillnerBiological Cybernetics|October 29, 1999
Neural mechanisms potentially contributing to the intersegmental phase lag in lamprey.I. Segmental oscillations dependent on reciprocal inhibitionJ H Kotaleski, S Grillner, A LansnerScience (New York, N.Y.)|February 3, 1984
The edge cell, a possible intraspinal mechanoreceptorS Grillner, T Williams, P A LagerbäckNeuroscience Letters|June 17, 1988
Simulation of the segmental burst generating network for locomotion in lampreyS Grillner, J T Buchanan, A LansnerJournal of Neurophysiology|December 1, 1996
Activation of pharmacologically distinct metabotropic glutamate receptors depresses reticulospinal-evoked monosynaptic EPSPs in the lamprey spinal cordP Krieger, A el Manira, S GrillnerJournal of Neurophysiology|October 1, 1994
Calcium-dependent potassium channels play a critical role for burst termination in the locomotor network in lampreyA el Manira, J Tegnér, S GrillnerBrain Research|October 16, 1989
Activation of N-methyl-D-aspartate (NMDA) receptors augments repolarizing responses in lamprey spinal neuronsR H Hill, L Brodin, S GrillnerJournal of Neurophysiology|October 16, 2001
Effects of optic flow in motor cortex and area 7aH Merchant, A Battaglia-Mayer, A P GeorgopoulosPageof 28