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Borys Wróbel
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2010 – 2019
- 2019
- [c28]Muhammad Yaqoob, Volker Steuber, Borys Wróbel:
The Importance of Self-excitation in Spiking Neural Networks Evolved to Recognize Temporal Patterns. ICANN (1) 2019: 758-771 - 2018
- [c27]Chama Bensmail, Volker Steuber, Neil Davey, Borys Wróbel:
Spiking Neural Network Controllers Evolved for Animat Foraging Based on Temporal Pattern Recognition in the Presence of Noise on Input. ICANN (1) 2018: 304-313 - [c26]Muhammad Aamir Khan, Volker Steuber, Neil Davey, Borys Wróbel:
Spiking Neural Networks Evolved to Perform Multiplicative Operations. ICANN (1) 2018: 314-321 - [c25]Muhammad Yaqoob, Borys Wróbel:
Very Small Spiking Neural Networks Evolved for Temporal Pattern Recognition and Robust to Perturbed Neuronal Parameters. ICANN (1) 2018: 322-331 - [c24]Muhammad Yaqoob, Borys Wróbel:
Robust Very Small Spiking Neural Networks Evolved with Noise to Recognize Temporal Patterns. ALIFE 2018: 665-672 - [c23]Robin C. Purshouse, Christine Zarges, Sylvain Cussat-Blanc, Michael G. Epitropakis, Marcus Gallagher, Thomas Jansen, Pascal Kerschke, Xiaodong Li, Fernando G. Lobo, Julian F. Miller, Pietro S. Oliveto, Mike Preuss, Giovanni Squillero, Alberto Paolo Tonda, Markus Wagner, Thomas Weise, Dennis Wilson, Borys Wróbel, Ales Zamuda:
Workshops at PPSN 2018. PPSN (2) 2018: 490-497 - 2017
- [c22]Chama Bensmail, Volker Steuber, Neil Davey, Borys Wróbel:
Evolving spiking neural networks to control animats for temporal pattern recognition and foraging. SSCI 2017: 1-8 - [c21]Muhammad Yaqoob, Borys Wróbel:
Very small spiking neural networks evolved to recognize a pattern in a continuous input stream. SSCI 2017: 1-8 - 2016
- [c20]Borys Wróbel:
Evolution of Spiking Neural Networks Robust to Noise and Damage for Control of Simple Animats. PPSN 2016: 686-696 - 2014
- [c19]Joachim Erdei, Borys Wróbel:
Evolution of Animats Following a Moving Target in an Artificial Ecosystem. ALIFE 2014: 98-104 - [c18]Alessandro Fontana, Andrea Soltoggio, Borys Wróbel:
POET: An Evo-Devo Method to Optimize the Weights of Large Artificial Neural Networks. ALIFE 2014: 447-454 - [c17]Ahmed Abdelmotaleb, Neil Davey, Maria J. Schilstra, Volker Steuber, Borys Wróbel:
volving Spiking Neural Networks for Temporal Pattern Recognition in the Presence of Noise. ALIFE 2014: 965-972 - [p1]Borys Wróbel, Michal Joachimczak:
Using the Genetic Regulatory Evolving Artificial Networks (GReaNs) Platform for Signal Processing, Animat Control, and Artificial Multicellular Development. Growing Adaptive Machines 2014: 187-200 - 2013
- [j3]Michal Joachimczak, Taras Kowaliw, René Doursat, Borys Wróbel:
Evolutionary design of soft-bodied animats with decentralized control. Artif. Life Robotics 18(3-4): 152-160 (2013) - [c16]Alessandro Fontana, Borys Wróbel:
An artificial lizard regrows its tail (and more): regeneration of 3-dimensional structures with hundreds of thousands of artificial cells. ECAL 2013: 144-150 - [c15]Michal Joachimczak, Taras Kowaliw, René Doursat, Borys Wróbel:
Controlling development and chemotaxis of soft-bodied multicellular animats with the same gene regulatory network. ECAL 2013: 454-461 - [c14]Joachim Erdei, Michal Joachimczak, Borys Wróbel:
Evolving gene regulatory networks controlling foraging strategies of prey and predators in an artificial ecosystem. ECAL 2013: 531-537 - [c13]Alessandro Fontana, Borys Wróbel:
Morphogen-based self-generation of evolving artificial multicellular structures with millions of cells. GECCO (Companion) 2013: 107-108 - [c12]Alessandro Fontana, Borys Wróbel:
Evolution and development of complex computational systems using the paradigm of metabolic computing in Epigenetic Tracking. WIVACE 2013: 27-34 - 2012
- [j2]Michal Joachimczak, Borys Wróbel:
Evolution of robustness to damage in artificial 3-dimensional development. Biosyst. 109(3): 498-505 (2012) - [c11]Michal Joachimczak, Taras Kowaliw, René Doursat, Borys Wróbel:
Brainless Bodies: Controlling the Development and Behavior of Multicellular Animats by Gene Regulation and Diffusive Signals. ALIFE 2012 - [c10]Michal Joachimczak, Borys Wróbel:
Open Ended Evolution of 3D Multicellular Development Controlled by Gene Regulatory Networks. ALIFE 2012 - [c9]Borys Wróbel, Ahmed Abdelmotaleb, Michal Joachimczak:
Evolving Networks Processing Signals with a Mixed Paradigm, Inspired by Gene Regulatory Networks and Spiking Neurons. BIONETICS 2012: 135-149 - [c8]Michal Joachimczak, Taras Kowaliw, René Doursat, Borys Wróbel:
Evolving morphologies and controllers for soft-bodied multicellular animats using gene regulatory networks and artificial embryogenesis. GECCO (Companion) 2012: 357-360 - [c7]Michal Joachimczak, Borys Wróbel:
Co-evolution of morphology and control of soft-bodied multicellular animats. GECCO 2012: 561-568 - [c6]Borys Wróbel, Michal Joachimczak, Alberto Montebelli, Robert Lowe:
The Search for Beauty: Evolution of Minimal Cognition in an Animat Controlled by a Gene Regulatory Network and Powered by a Metabolic System. SAB 2012: 198-208 - 2010
- [c5]Michal Joachimczak, Borys Wróbel:
Processing Signals with Evolving Artificial Gene Regulatory Networks. ALIFE 2010: 203-212 - [c4]Michal Joachimczak, Borys Wróbel:
Evolving Gene Regulatory Networks for Real Time Control of Foraging Behaviours. ALIFE 2010: 348-358
2000 – 2009
- 2009
- [j1]Michal Joachimczak, Borys Wróbel:
Complexity of the Search Space in a Model of Artificial Evolution of Gene Regulatory Networks Controlling 3D Multicellular Morphogenesis. Adv. Complex Syst. 12(3): 347-369 (2009) - [c3]Michal Joachimczak, Borys Wróbel:
Evolution of the Morphology and Patterning of Artificial Embryos: Scaling the Tricolour Problem to the Third Dimension. ECAL (1) 2009: 35-43 - 2008
- [c2]Michal Joachimczak, Borys Wróbel:
Evo-devo in silico - a Model of a Gene Network Regulating Multicellular Development in 3D Space with Artificial Physics. ALIFE 2008: 297-304 - 2004
- [c1]Borys Wróbel, Rafael Sanjuán, Andrés Moya, Fernando González-Candelas:
The Use of Weighted Least Squares Test Statistic in Branch and Topology Testing. Spanish Bioinformatics Conference 2004: 154-156
Coauthor Index
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