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Brain Research|August 19, 1977
Phasic gain control of reflexes from the dorsum of the paw during spinal locomotionH Forssberg, S Grillner, S RossignolExperimental Brain Research|October 24, 1977
The adaptation of a reflex response to the ongoing phase of locomotion in fishS Grillner, S Rossignol, P WallénNeuroscience Letters|March 20, 1987
Single sensory neurons activate excitatory amino acid receptors in the lamprey spinal cordL Brodin, J Christenson, S GrillnerThe European Journal of Neuroscience|January 8, 1998
Substance P modulates sensory action potentials in the lamprey via a protein kinase C-mediated reduction of a 4-aminopyridine-sensitive potassium conductanceD Parker, E Svensson, S GrillnerBrain Research|August 3, 1981
Entrainment of the spinal pattern generators for swimming by mechano-sensitive elements in the lamprey spinal cord in vitroS Grillner, A McClellan, C PerretEuropean Journal of Pain (London, England)|May 6, 2017
Children with chronic stress-induced recurrent muscle pain have enhanced startle reactionG Alfvén, S Grillner, E AnderssonActa Physiologica Scandinavica|March 1, 1980
The locomotion of the low spinal cat. I. Coordination within a hindlimbH Forssberg, S Grillner, J HalbertsmaNeuroscience Letters|May 22, 1989
Increase in endogenous 5-hydroxytryptamine levels modulates the central network underlying locomotion in the lamprey spinal cordJ Christenson, J Franck, S GrillnerActa Physiologica Scandinavica|March 1, 1984
Phasic variations of extracellular potassium during fictive swimming in the lamprey spinal cord in vitroP Wallén, P Grafe, S GrillnerNeuroreport|August 21, 1995
Reticulospinal neurones provide monosynaptic glycinergic inhibition of spinal neurones in lampreyT Wannier, G Orlovsky, S GrillnerPageof 28