2006 |
20 | EE | Rodrigo Publio,
Rodrigo F. Oliveira,
Antônio C. Roque-da-Silva:
A realistic model of rod photoreceptor for use in a retina network model.
Neurocomputing 69(10-12): 1020-1024 (2006) |
19 | EE | Marilene de Pinho,
Marcelo B. Mazza,
Antônio C. Roque-da-Silva:
A computational model of the primary auditory cortex exhibiting plasticity in the frequency representation.
Neurocomputing 70(1-3): 3-8 (2006) |
2005 |
18 | EE | Rodrigo F. Oliveira,
Luciano da Fontoura Costa,
Antônio C. Roque-da-Silva:
A possible mechanism of curvature coding in early vision.
Neurocomputing 65-66: 117-124 (2005) |
2004 |
17 | EE | Marcelo B. Mazza,
Marilene de Pinho,
José Roberto C. Piqueira,
Antônio C. Roque-da-Silva:
A Dynamical Model of Fast Cortical Reorganization.
Journal of Computational Neuroscience 16(2): 177-201 (2004) |
2003 |
16 | EE | Gabriela Antunes,
Fábio M. Simões-de-Souza,
Antônio C. Roque-da-Silva:
Sensitivity of AMPA receptor channel to calcium oscillations: a computational study.
Neurocomputing 52-54: 341-346 (2003) |
2002 |
15 | EE | Fábio M. Simões-de-Souza,
Antônio C. Roque-da-Silva:
Simulation of a vertebrate receptor cell of the olfactory epithelium for use in network models.
Neurocomputing 44-46: 177-182 (2002) |
14 | EE | Marilene de Pinho,
Marcelo B. Mazza,
José Roberto C. Piqueira,
Antônio C. Roque-da-Silva:
Shannon's entropy applied to the analysis of tonotopic reorganization in a computational model of classical conditioning.
Neurocomputing 44-46: 359-364 (2002) |
13 | EE | Marcelo B. Mazza,
Marilene de Pinho,
José Roberto C. Piqueira,
Antônio C. Roque-da-Silva:
Using information theory for the analysis of cortical reorganization in a realistic computational model of the somatosensory system.
Neurocomputing 44-46: 923-928 (2002) |
12 | EE | Rodrigo F. Oliveira,
Antônio C. Roque-da-Silva:
A biologically plausible neural network model of the primate primary visual system.
Neurocomputing 44-46: 957-963 (2002) |
2001 |
11 | EE | Marilene de Pinho,
Marcelo B. Mazza,
Antônio C. Roque-da-Silva:
A realistic model of tonotopic reorganization in the auditory cortex in response to cochlear lesions.
Neurocomputing 38-40: 1169-1174 (2001) |
10 | EE | Marcelo B. Mazza,
Marilene de Pinho,
Antônio C. Roque-da-Silva:
Alterations of maps induced by blockage of synaptic receptors in a computer simulation of the somatosensory system.
Neurocomputing 38-40: 1453-1459 (2001) |
9 | EE | Silvia M. Kuva,
Gilson F. Lima,
Osame Kinouchi,
Marcelo H. R. Tragtenberg,
Antônio C. Roque-da-Silva:
A minimal model for excitable and bursting elements.
Neurocomputing 38-40: 255-261 (2001) |
2000 |
8 | EE | Cristiane Salum,
Silvio Morato,
Antônio C. Roque-da-Silva:
Anxiety-like behavior in rats: a computational model.
Neural Networks 13(1): 21-29 (2000) |
7 | EE | Marcelo B. Mazza,
Antônio C. Roque-da-Silva:
Realistic computer simulation of cortical lesion induced imbalances in properties of somatotopic maps.
Neurocomputing 32-33: 453-459 (2000) |
6 | EE | Marilene de Pinho,
Marcelo B. Mazza,
Antônio C. Roque-da-Silva:
A biologically plausible computational model of classical conditioning induced reorganization of tonotopic maps in the auditory cortex.
Neurocomputing 32-33: 685-691 (2000) |
1999 |
5 | EE | Marcelo B. Mazza,
Marilene de Pinho,
Antônio C. Roque-da-Silva:
Biologically Plausible Models of Topographic Map Formation in the Somatosensory and Auditory Cortices.
Int. J. Neural Syst. 9(3): 265-271 (1999) |
4 | EE | Marilene de Pinho,
Antônio C. Roque-da-Silva:
A realistic computational model of formation and variability of tonotopic maps in the auditory cortex.
Neurocomputing 26-27: 355-359 (1999) |
3 | EE | Marcelo B. Mazza,
Antônio C. Roque-da-Silva:
Computational model of topographic reorganization in somatosensory cortex in response to digit lesions.
Neurocomputing 26-27: 435-441 (1999) |
2 | EE | Cristiane Salum,
Antônio C. Roque-da-Silva,
Alan Pickering:
Striatal dopamine in attentional learning: A computational model.
Neurocomputing 26-27: 845-854 (1999) |
1998 |
1 | EE | Marcelo B. Mazza,
Antônio C. Roque-da-Silva:
A Realistic Computer Simulation of Primary Somatosensory Cortex Replicating Static Properties of Topographic Organization.
SBRN 1998: 169-173 |