Publikationen von E Giannakakis
Alle Typen
Zeitschriftenartikel (1)
1.
Zeitschriftenartikel
28 (4), S. 458 - 478 (2022)
When to Be Critical? Performance and Evolvability in Different Regimes of Neural Ising Agents. Artificial Life Konferenzbeitrag (2)
2.
Konferenzbeitrag
2021, 78, S. 1 - 3. ALIFE 2021: The 2021 Conference on Artificial Life, Praha, Czech Republic, 19. Juli 2021 - 23. Juli 2021. MIT Press (2021)
Reservoir computing with self-organizing neural oscillators. In: Artificial Life Conference Proceedings, Bd. 3.
Konferenzbeitrag
2021, 79. ALIFE 2021: The 2021 Conference on Artificial Life, Praha, Czech Republic, 19. Juli 2021 - 23. Juli 2021. MIT Press (2021)
The dynamical regime and its importance for evolvability, task performance and generalization. In: Artificial Life Conference Proceedings, Bd. Poster (7)
4.
Poster
Synaptic-type-specific clustering optimizes the computational capabilities of balanced recurrent networks. Computational and Systems Neuroscience Meeting (COSYNE 2023), Montreal, Quebec, Canada (2023)
5.
Poster
The topology of E/I recurrent networks regulates their ability to learn the dynamics of chaotic attractors. Bernstein Conference 2022, Berlin, Germany (2022)
6.
Poster
Cellular automata for efficient large-scale simulations of spiking networks. Bernstein Conference 2022, Berlin, Germany (2022)
7.
Poster
Clustered recurrent connectivity promotes the development of E/I co-tuning via synaptic plasticity. Computational and Systems Neuroscience Meeting (COSYNE 2022), Lisboa, Portugal (2022)
8.
Poster
Recurrent connectivity controls the ability of inhibitory synaptic plasticity to produce E/I co-tuning. 30th Annual Computational Neuroscience Meeting (CNS*2021) (2021)
9.
Poster
Recurrent connectivity regulates the ability of inhibitory STDP to produce E/I co-tuning in a spiking network. Bernstein Conference 2021 (2021)
10.
Poster
Examining network dynamics under inhibitory rewiring. Bernstein Conference 2021 (2021)
Preprint (2)
11.
Preprint
Environmental variability and network structure determine the optimal plasticity mechanisms in embodied agents. (eingereicht)
12.
Preprint
Recurrent connectivity structure controls the emergence of co-tuned excitation and inhibition. (eingereicht)