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Neuroscience|April 18, 2003
Developmental and regional differences in the consolidation of long-term potentiationE A Kramár, G LynchJournal of Neuroendocrinology|October 12, 2013
Rapid effects of oestrogen on synaptic plasticity: interactions with actin and its signalling proteinsA H Babayan, E A KramárRegulatory Peptides|January 29, 1997
Angiotensin II- and IV-induced changes in cerebral blood flow. Roles of AT1, AT2, and AT4 receptor subtypesE A Kramár, J W Harding, J W WrightNeuroscience|March 8, 2002
Alpha3 integrin receptors contribute to the consolidation of long-term potentiationE A Kramár, J A Bernard, C M Gall, et al.Regulatory Peptides|August 26, 1998
Role of nitric oxide in angiotensin IV-induced increases in cerebral blood flowE A Kramár, R Krishnan, J W Harding, et al.Neuroscience|October 30, 2012
Estrogen promotes learning-related plasticity by modifying the synaptic cytoskeletonE A Kramár, A H Babayan, C M Gall, et al.The Journal of Neuroscience : the Official Journal of the Society for Neuroscience|May 11, 1999
Contributions of the brain angiotensin IV-AT4 receptor subtype system to spatial learningJ W Wright, L Stubley, E S Pederson, et al.Brain Research|April 3, 2001
The effects of angiotensin IV analogs on long-term potentiation within the CA1 region of the hippocampus in vitroE A Kramár, D L Armstrong, S Ikeda, et al.Neurobiology of Learning and Memory|July 10, 2022
Temporal endurance of exercise-induced benefits on hippocampus-dependent memory and synaptic plasticity in female miceT N Dong, E A Kramár, J H Beardwood, et al.Brain Research|June 5, 1995
Autoradiographic identification of brain angiotensin IV binding sites and differential c-Fos expression following intracerebroventricular injection of angiotensin II and IV in ratsK A Roberts, L T Krebs, E A Kramár, et al.Pageof 2