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Neuropharmacology|July 5, 2005
Differential binding properties of [3H]dextrorphan and [3H]MK-801 in heterologously expressed NMDA receptorsK T LePage, J E Ishmael, C M Low, et al.The Journal of Neuroscience : the Official Journal of the Society for Neuroscience|January 11, 2000
Control of GluR1 AMPA receptor function by cAMP-dependent protein kinaseT G Banke, D Bowie, H Lee, et al.Journal of Neuroscience Methods|August 1, 1994
Determination of extracellular bicarbonate and carbon dioxide concentrations in brain slices using carbonate and pH-selective microelectrodesM Chesler, J C Chen, R P KraigNeuroscience Letters|April 27, 2001
HEPES prevents edema in rat brain slicesD G MacGregor, M Chesler, M E RiceMolecular Pharmacology|April 4, 1998
Antagonist properties of a phosphono isoxazole amino acid at glutamate R1-4 (R,S)-2-amino-3-(3-hydroxy-5-methyl-4-isoxazolyl)propionic acid receptor subtypesP Wahl, C Anker, S F Traynelis, et al.Neuron|October 1, 1994
Identification of two cysteine residues that are required for redox modulation of the NMDA subtype of glutamate receptorJ M Sullivan, S F Traynelis, H S Chen, et al.Journal of Neurotrauma|June 1, 1994
Dynamics of extracellular calcium activity following contusion of the rat spinal cordT Moriya, A Z Hassan, W Young, et al.Nature Neuroscience|August 31, 2001
Allosteric interaction between the amino terminal domain and the ligand binding domain of NR2AF Zheng, K Erreger, C M Low, et al.The Journal of Neuroscience : the Official Journal of the Society for Neuroscience|November 9, 2000
Interstitial carbonic anhydrase (CA) activity in brain is attributable to membrane-bound CA type IVC K Tong, L P Brion, C Suarez, et al.Pageof 11