Rodrigo Publio
Affiliations: | OIST, Onna-son, Okinawa-ken, Japan |
Area:
CEREBELLUM, PLASTICITYGoogle:
"Rodrigo Publio"Mean distance: 15.49 (cluster 6) | S | N | B | C | P |
Parents
Sign in to add mentorAntonio C. Roque | grad student | 2004-2008 | USP-RP |
Erik De Schutter | post-doc | 2008- | OIST |
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Publications
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Sudhakar SK, Hong S, Raikov I, et al. (2019) Correction: Spatiotemporal network coding of physiological mossy fiber inputs by the cerebellar granular layer. Plos Computational Biology. 15: e1007472 |
Sudhakar SK, Hong S, Raikov I, et al. (2017) Spatiotemporal network coding of physiological mossy fiber inputs by the cerebellar granular layer. Plos Computational Biology. 13: e1005754 |
Celis CA, Publio R, Roque AC. (2014) Electrical coupling in the retina ganglion cell layer increases the dynamic range Bmc Neuroscience. 15 |
Arruda D, Publio R, Roque AC. (2013) The periglomerular cell of the olfactory bulb and its role in controlling mitral cell spiking: a computational model. Plos One. 8: e56148 |
Publio R, Ceballos CC, Roque AC. (2012) Dynamic range of vertebrate retina ganglion cells: importance of active dendrites and coupling by electrical synapses. Plos One. 7: e48517 |
Arruda D, Publio R, Roque AC. (2011) Interplay of periglomerular and granule cell inhibitory synapses on mitral cell spiking Bmc Neuroscience. 12 |
Publio R, Oliveira RF, Roque AC. (2009) A computational study on the role of gap junctions and rod Ih conductance in the enhancement of the dynamic range of the retina. Plos One. 4: e6970 |
Arruda D, Publio R, Roque AC. (2009) Reduced compartmental model of the periglomerular cell of the mammalian olfactory bulb Bmc Neuroscience. 10 |
Publio R, De Schutter E. (2009) Links between complex spikes and multiple synaptic plasticity mechanisms in the cerebellar cortex Bmc Neuroscience. 10 |
Publio R, Oliveira RF, Roque AC. (2007) The effect of gap junctions on the dynamic range in a model of the rod photoreceptors layer Bmc Neuroscience. 8 |