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Experimental Brain Research|January 1, 1983
Cortical mechanisms related to the direction of two-dimensional arm movements: relations in parietal area 5 and comparison with motor cortexJ F Kalaska, R Caminiti, A P GeorgopoulosThe European Journal of Neuroscience|November 21, 1998
Endogenous activation of metabotropic glutamate receptors contributes to burst frequency regulation in the lamprey locomotor networkP Krieger, S Grillner, A El ManiraBrain Research|January 28, 1985
N-Methyl-D-aspartate (NMDA), kainate and quisqualate receptors and the generation of fictive locomotion in the lamprey spinal cordL Brodin, S Grillner, C M RovainenThe European Journal of Neuroscience|April 1, 1997
Locomotor-related presynaptic modulation of primary afferents in the lampreyA El Manira, J Tegnér, S GrillnerBiological Cybernetics|October 29, 1999
Neural mechanisms potentially contributing to the intersegmental phase lag in lamprey.II. Hemisegmental oscillations produced by mutually coupled excitatory neuronsJ H Kotaleski, A Lansner, S GrillnerBrain Research|May 4, 1999
Role of glutamate receptor subtypes in the lamprey respiratory networkF Bongianni, T G Deliagina, S GrillnerJournal of Neurophysiology|August 1, 1996
Central modulation of stretch receptor neurons during fictive locomotion in lampreyL Vinay, J Y Barthe, S GrillnerAnnals of the New York Academy of Sciences|February 3, 1999
Vertebrate locomotion--a lamprey perspectiveS Grillner, D Parker, A el ManiraBrain Research|February 2, 1988
The dorsal cell, one class of primary sensory neuron in the lamprey spinal cord. II. A light- and electron microscopical studyJ Christenson, P A Lagerbäck, S GrillnerExperimental Brain Research|January 1, 1991
Cognitive spatial-motor processes. 5. Specification of the direction of visually guided isometric forces in two-dimensional space: time course of information transmitted and effect of constant force biasJ T Massey, R A Drake, A P GeorgopoulosPageof 28