| 2008 |
| 11 | EE | Javier Iglesias,
Jordi García-Ojalvo,
Alessandro E. P. Villa:
Effect of Feedback Strength in Coupled Spiking Neural Networks.
ICANN (2) 2008: 646-654 |
| 10 | EE | Olga K. Chibirova,
Javier Iglesias,
Vladyslav V. Shaposhnyk,
Alessandro E. P. Villa:
Dynamics of Firing Patterns in Evolvable Hierarchically Organized Neural Networks.
ICES 2008: 296-307 |
| 9 | EE | Javier Iglesias,
Alessandro E. P. Villa:
Emergence of Preferred Firing Sequences in Large Spiking Neural Networks during Simulated Neuronal Development.
Int. J. Neural Syst. 18(4): 267-277 (2008) |
| 2007 |
| 8 | EE | Javier Iglesias,
Olga K. Chibirova,
Alessandro E. P. Villa:
Nonlinear Dynamics Emerging in Large Scale Neural Networks with Ontogenetic and Epigenetic Processes.
ICANN (1) 2007: 579-588 |
| 7 | EE | Alessandro E. P. Villa,
Javier Iglesias:
OpenAdap.net: Evolvable Information Processing Environment.
WILF 2007: 227-236 |
| 2006 |
| 6 | EE | Juan Manuel Moreno,
Javier Iglesias,
Jan Eriksson,
Alessandro E. P. Villa:
Physical Mapping of Spiking Neural Networks Models on a Bio-inspired Scalable Architecture.
ICANN (1) 2006: 936-943 |
| 5 | EE | Javier Iglesias,
Alessandro E. P. Villa:
Neuronal Cell Death and Synaptic Pruning Driven by Spike-Timing Dependent Plasticity.
ICANN (1) 2006: 953-962 |
| 2005 |
| 4 | EE | Javier Iglesias,
Jan Eriksson,
Beatriz Pardo,
Marco Tomassini,
Alessandro E. P. Villa:
Stimulus-Driven Unsupervised Synaptic Pruning in Large Neural Networks.
BVAI 2005: 59-68 |
| 3 | EE | Javier Iglesias,
Jan Eriksson,
Beatriz Pardo,
Marco Tomassini,
Alessandro E. P. Villa:
Emergence of Oriented Cell Assemblies Associated with Spike-Timing-Dependent Plasticity.
ICANN (1) 2005: 127-132 |
| 2 | EE | Juan Manuel Moreno,
Jan Eriksson,
Javier Iglesias,
Alessandro E. P. Villa:
Implementation of Biologically Plausible Spiking Neural Networks Models on the POEtic Tissue.
ICES 2005: 188-197 |
| 2001 |
| 1 | EE | Alessandro E. P. Villa,
Igor V. Tetko,
Javier Iglesias:
Computer assisted neurophysiological analysis of cell assemblies activity.
Neurocomputing 38-40: 1025-1030 (2001) |