Episode

On balanced neural networks - with Nicolas Brunel - #34

Podcast
Theoretical Neuroscience Podcast
Published
Nov 8, 2025
Duration seconds
5939
Processing state
not_requested
Canonical source
https://431c9cd0-a1ff-4f9a-ac41-4fca68240d88.libsyn.com/on-balanced-neural-networks-with-nicolas-brunel-34
Audio
https://traffic.libsyn.com/secure/431c9cd0-a1ff-4f9a-ac41-4fca68240d88/ThN-034-NicolasBrunel_mixdown.mp3?dest-id=4181327
JSON
/v1/public/podcasts/theoretical-neuroscience-podcast-6657149/episodes/on-balanced-neural-networks-with-nicolas-brunel-34
Markdown
/podcast/theoretical-neuroscience-podcast-6657149/on-balanced-neural-networks-with-nicolas-brunel-34.md

Actions

  • POST https://stenobird.com/v1/public/podcasts/theoretical-neuroscience-podcast-6657149/episodes/on-balanced-neural-networks-with-nicolas-brunel-34/transcription-requests
    Idempotently request low-priority transcript generation for this episode.
  • GET https://stenobird.com/podcast/theoretical-neuroscience-podcast-6657149/on-balanced-neural-networks-with-nicolas-brunel-34.md
    Read the agent-friendly Markdown representation of this episode resource.

Summary

An important discovery that has come out of computational neuroscience, is that cortical neurons in vivo appear to receive so-called balanced inputs. In the balanced state the excitatory and inhibitory synaptic inputs to a neuron are about equal, and action potentials occur when a fluctuation temporarily makes the excitation dominate. The theory, for example, explains the observed irregular firing of cortical neurons in the background state. Today's guest was one of the key developers of the theory in the late 1990s.