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BMC Cell Biology|May 28, 2016
Characteristics and plasticity of electrical synaptic transmissionSebastian Curti, John O'BrienJournal of Neurophysiology|May 3, 2019
Response to coincident inputs in electrically coupled primary afferents is heterogeneous and is enhanced by H-current (IH) modulationFederico Davoine, Sebastian CurtiJournal of Physiology, Paris|November 28, 2009
Functional specializations of primary auditory afferents on the Mauthner cells: interactions between membrane and synaptic propertiesSebastian Curti, Alberto E PeredaBiology|January 21, 2022
Function and Plasticity of Electrical Synapses in the Mammalian Brain: Role of Non-Junctional MechanismsSebastian Curti, Federico Davoine, Antonella DapinoThe Journal of General Physiology|June 28, 2023
D-type K+ current rules the function of electrically coupled neurons in a species-specific fashionAntonella Dapino, Federico Davoine, Sebastian CurtiNeuroscience|March 27, 2025
Functional interaction of electrical coupling and H-current and its putative impact on inhibitory transmissionFederico F Trigo, Pepe Alcamí, Sebastian CurtiThe Journal of Neuroscience : the Official Journal of the Society for Neuroscience|March 30, 2012
Synergy between electrical coupling and membrane properties promotes strong synchronization of neurons of the mesencephalic trigeminal nucleusSebastian Curti, Gregory Hoge, James I Nagy, et al.The Journal of Membrane Biology|June 26, 2012
Electrical transmission between mammalian neurons is supported by a small fraction of gap junction channelsSebastian Curti, Gregory Hoge, James I Nagy, et al.Biochimica Et Biophysica Acta|June 5, 2012
Gap junction-mediated electrical transmission: regulatory mechanisms and plasticityAlberto E Pereda, Sebastian Curti, Gregory Hoge, et al.Neuron|September 10, 2013
Molecular and functional asymmetry at a vertebrate electrical synapseJohn E Rash, Sebastian Curti, Kimberly G Vanderpool, et al.Pageof 1