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European Journal of Pharmacology|January 26, 1993
Acamprosate (calciumacetylhomotaurinate) decreases postsynaptic potentials in the rat neocortex: possible involvement of excitatory amino acid receptorsM L Zeise, S Kasparov, M Capogna, et al.Neuropharmacology|March 1, 1994
Serotonin3 receptor agonists attenuate glutamate-induced firing in rat hippocampal CA1 pyramidal cellsJ Y Zhang, M L Zeise, R Y WangBrain Research|November 22, 1997
Interleukin-1beta does not increase synaptic inhibition in hippocampal CA3 pyramidal and dentate gyrus granule cells of the rat in vitroM L Zeise, J Espinoza, P Morales, et al.Journal of Neuroendocrinology|May 11, 2011
Corticosterone Reduces Synaptic Inhibition in Rat Hippocampal and Neocortical Neurons in vitroM L Zeise, A Teschemacher, J Arriagada, et al.Neuroscience Letters|October 16, 1987
L-homocysteic acid but not L-glutamate is an endogenous N-methyl-D-aspartic acid receptor preferring agonist in rat neocortical neurons in vitroT Knöpfel, M L Zeise, M Cuénod, et al.Neurotoxicology|December 11, 1999
Methyl bromide decreases excitability without having immediate toxic effects in rat hippocampal CA1 neurons in vitroM L Zeise, D Jofré, P Morales, et al.Neuropharmacology|July 14, 2015
Methylphenidate amplifies long-term potentiation in rat hippocampus CA1 area involving the insertion of AMPA receptors by activation of β-adrenergic and D1/D5 receptorsC Rozas, C Carvallo, D Contreras, et al.European Neuropsychopharmacology : the Journal of the European College of Neuropsychopharmacology|January 3, 2012
Acutely applied MDMA enhances long-term potentiation in rat hippocampus involving D1/D5 and 5-HT2 receptors through a polysynaptic mechanismC Rozas, S Loyola, G Ugarte, et al.Behavioural Brain Research|May 23, 2015
Methylphenidate has long-lasting metaplastic effects in the prefrontal cortex of adolescent ratsH Burgos, C Cofré, A Hernández, et al.Pageof 2