Fernando A. Oliveira, Assistant Professor (equivalent)
Affiliations: | Biological Science | Federal University of São Paulo, Brazil, São Paulo, São Paulo, Brazil |
Area:
Learning, Memory, Aging, NeurodegenerationGoogle:
"Fernando Oliveira"Mean distance: 15.48 (cluster 19) | S | N | B | C | P |
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Publications
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Alves VS, Oliveira FA. (2024) Plasma membrane calcium ATPase powered by glycolysis is the main mechanism for calcium clearance in the hippocampal pyramidal neuron. Life Sciences. 344: 122554 |
Alves VS, Arcisio-Miranda M, Carrettiero DC, et al. (2020) Transport of Glucose by the Plasma Membrane Affects the Removal and Concentration of Ca at Rest in Neurons - Implications of a Condition Prior to Alzheimer's Disease? Neuroscience |
Alves VS, Alves-Silva HS, Orts DJB, et al. (2019) Calcium Signaling in Neurons and Glial Cells: Role of Cav1 channels. Neuroscience. 421: 95-111 |
Moreira-Lobo DC, Cruz JS, Silva FR, et al. (2016) Thiamine Deficiency Increases Ca(2+) Current and CaV1.2 L-type Ca(2+) Channel Levels in Cerebellum Granular Neurons. Cellular and Molecular Neurobiology |
Oh MM, Oliveira FA, Waters J, et al. (2013) Altered calcium metabolism in aging CA1 hippocampal pyramidal neurons. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience. 33: 7905-11 |
Cruz JS, Kushmerick C, Moreira-Lobo DC, et al. (2012) Thiamine deficiency in vitro accelerates A-type potassium current inactivation in cerebellar granule neurons. Neuroscience. 221: 108-14 |
Cruz JS, Silva DF, Ribeiro LA, et al. (2011) Resurgent Na+ current: a new avenue to neuronal excitability control. Life Sciences. 89: 564-9 |
Oh MM, Oliveira FA, Disterhoft JF. (2010) Learning and aging related changes in intrinsic neuronal excitability. Frontiers in Aging Neuroscience. 2: 2 |
McKay BM, Matthews EA, Oliveira FA, et al. (2009) Intrinsic neuronal excitability is reversibly altered by a single experience in fear conditioning. Journal of Neurophysiology. 102: 2763-70 |
Oliveira FA, Galan DT, Ribeiro AM, et al. (2007) Thiamine deficiency during pregnancy leads to cerebellar neuronal death in rat offspring: role of voltage-dependent K+ channels. Brain Research. 1134: 79-86 |