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1. Unmasking Latent Inhibitory Connections in Human Cortex to Reveal Dormant Cortical Memories

2. Co-dependent excitatory and inhibitory plasticity accounts for quick, stable and long-lasting memories in biological networks.

3. A structurally precise mechanism links an epilepsy-associated KCNC2 potassium channel mutation to interneuron dysfunction.

4. Metabolically regulated spiking could serve neuronal energy homeostasis and protect from reactive oxygen species.

5. Developmental depression-to-facilitation shift controls excitation-inhibition balance.

6. Regimes and mechanisms of transient amplification in abstract and biological neural networks.

7. Developmentally regulated impairment of parvalbumin interneuron synaptic transmission in an experimental model of Dravet syndrome.

8. A familiar thought: Machines that replace us?

9. Towards Democratizing and Automating Online Conferences: Lessons from the Neuromatch Conferences.

10. The Remarkable Robustness of Surrogate Gradient Learning for Instilling Complex Function in Spiking Neural Networks.

11. Talking science, online.

12. Complementary Inhibitory Weight Profiles Emerge from Plasticity and Allow Flexible Switching of Receptive Fields.

13. Training deep neural density estimators to identify mechanistic models of neural dynamics.

14. Think: Theory for Africa.

15. Neural mechanisms of attending to items in working memory.

16. Publisher Correction: Motor primitives in space and time via targeted gain modulation in cortical networks.

17. Motor primitives in space and time via targeted gain modulation in cortical networks.

18. Cortical Signal Propagation: Balance, Amplify, Transmit.

19. Synaptic Transmission Optimization Predicts Expression Loci of Long-Term Plasticity.

20. Inhibitory Plasticity: Balance, Control, and Codependence.

21. Inhibitory engrams in perception and memory.

23. Mapping the function of neuronal ion channels in model and experiment.

24. Unmasking Latent Inhibitory Connections in Human Cortex to Reveal Dormant Cortical Memories.

25. Connection-type-specific biases make uniform random network models consistent with cortical recordings.

26. Activity-dependent dendritic spine neck changes are correlated with synaptic strength.

27. Optimal control of transient dynamics in balanced networks supports generation of complex movements.

28. Inhibitory synaptic plasticity: spike timing-dependence and putative network function.

29. Non-normal amplification in random balanced neuronal networks.

30. Inhibitory plasticity balances excitation and inhibition in sensory pathways and memory networks.

31. State-dependent function of neocortical chandelier cells.

32. Gating multiple signals through detailed balance of excitation and inhibition in spiking networks.

33. Gating deficits in model networks: a path to schizophrenia?

34. Signal propagation and logic gating in networks of integrate-and-fire neurons.

35. Neural network dynamics.

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