BI 212 John Beggs: Why Brains Seek the Edge of Chaos @braininspired
BI 212 John Beggs: Why Brains Seek the Edge of Chaos  @braininspired
Uploaded May 2025 | Updated September 2026, 4 hours ago
John Beggs on criticality in brains.

Show notes: braininspired.co/podcast/212

Patreon (full episodes and Discord community: patreon.com/braininspired

Apple podcasts: itunes.apple.com/us/podcast/brain-inspired/id1428880766?mt=2
Spotify: open.spotify.com/show/2UZj8c8Ap5oc2gh2rJxLLe

The Transmitter is an online publication that aims to deliver useful information, insights and tools to build bridges across neuroscience and advance research. Visit thetransmitter.org to explore the latest neuroscience news and perspectives, written by journalists and scientists.

Read more about our partnership: thetransmitter.org/partners

Sign up for the “Brain Inspired” email alerts to be notified every time a new “Brain Inspired” episode is released: thetransmitter.org/newsletters

To explore more neuroscience news and perspectives, visit thetransmitter.org.

ou may have heard of the critical brain hypothesis. It goes something like this: brain activity operates near a dynamical regime called criticality, poised at the sweet spot between too much order and too much chaos, and this is a good thing because systems at criticality are optimized for computing, they maximize information transfer, they maximize the time range over which they operate, and a handful of other good properties. John Beggs has been studying criticality in brains for over 20 years now. His 2003 paper with Deitmar Plenz is one of of the first if not the first to show networks of neurons operating near criticality, and it gets cited in almost every criticality paper I read. John runs the Beggs Lab at Indiana University Bloomington, and a few years ago he literally wrote the book on criticality, called The Cortex and the Critical Point: Understanding the Power of Emergence, which I highly recommend as an excellent introduction to the topic, and he continues to work on criticality these days.
On this episode we discuss what criticality is, why and how brains might strive for it, the past and present of how to measure it and why there isn't a consensus on how to measure it, what it means that criticality appears in so many natural systems outside of brains yet we want to say it's a special property of brains. These days John spends plenty of effort defending the criticality hypothesis from critics, so we discuss that, and much more. You'll hear John is super scholarly about the subject, even when asked about topics outside his main wheelhouse, so there are lots of links to papers he mentions in the show notes.

0:00 - Intro
4:28 - What is criticality?
10:19 - Why is criticality special in brains?
15:34 - Measuring criticality
24:28 - Dynamic range and criticality
28:28 - Criticisms of criticality
31:43 - Current state of critical brain hypothesis
33:34 - Causality and criticality
36:39 - Criticality as a homeostatic set point
38:49 - Is criticality necessary for life?
50:15 - Shooting for criticality far from thermodynamic equilibrium
52:45 - Quasi- and near-criticality
55:03 - Cortex vs. whole brain
58:50 - Structural criticality through development
1:01:09 - Criticality in AI
1:03:56 - Most pressing criticisms of criticality
1:10:08 - Gradients of criticality
1:22:30 - Homeostasis vs. criticality
1:29:57 - Minds and criticality
BI 212 John Beggs: Why Brains Seek the Edge of ChaosBI 243 Alison Barth: Learning as a Window to CortexBI 169 Andrea Martin: Neural Dynamics and LanguageThinking Like a Complexity Scientist19th Century Science PioneersBI 138 Matthew Larkum: The Dendrite HypothesisDefining Complexity ScienceBI 143 Rodolphe Sepulchre: Mixed Feedback ControlAI Lack of Temporal PerceptionSleep Supercharges LearningBI 132 Ila Fiete: A Grid Scaffold for MemoryCognitive vs Sensory Processing
Brain Inspired |

BI 212 John Beggs: Why Brains Seek the Edge of Chaos

SHARE TO X SHARE TO REDDIT SHARE TO FACEBOOK WALLPAPER