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Neuroscience|June 23, 2004
Low micromolar concentrations of 4-aminopyridine facilitate fictive locomotion expressed by the rat spinal cord in vitroG Taccola, A NistriNeuroscience|November 18, 2005
Fictive locomotor patterns generated by tetraethylammonium application to the neonatal rat spinal cord in vitroG Taccola, A NistriActa Neurochirurgica. Supplement|July 1, 2005
Electrophysiological effects of 4-aminopyridine on fictive locomotor activity of the rat spinal cord in vitroG Taccola, A NistriNeuroscience|June 17, 2008
GABAA and strychnine-sensitive glycine receptors modulate N-methyl-D-aspartate-evoked acetylcholine release from rat spinal motoneurons: a possible role in neuroprotectionC Cervetto, G TaccolaNeuroscience|May 1, 2007
Differential modulation by tetraethylammonium of the processes underlying network bursting in the neonatal rat spinal cord in vitroG Taccola, A NistriNeuroscience|April 29, 2005
Characteristics of the electrical oscillations evoked by 4-aminopyridine on dorsal root fibers and their relation to fictive locomotor patterns in the rat spinal cord in vitroG Taccola, A NistriNeuroscience|October 30, 2012
Early spread of hyperexcitability to caudal dorsal horn networks after a chemically-induced lesion of the rat spinal cord in vitroR Deumens, G L Mazzone, G TaccolaNeuroscience|July 8, 2008
Kainate and metabolic perturbation mimicking spinal injury differentially contribute to early damage of locomotor networks in the in vitro neonatal rat spinal cordG Taccola, G Margaryan, M Mladinic, et al.Journal of Muscle Research and Cell Motility|September 18, 2015
Extracellular stimulation with human "noisy" electromyographic patterns facilitates myotube activityM Sciancalepore, T Coslovich, P Lorenzon, et al.Neuroscience|September 21, 2001
AMPA-evoked acetylcholine release from cultured spinal cord motoneurons and its inhibition by GABA and glycineG Fontana, G Taccola, J Galante, et al.Pageof 2