TopicNeuroscience

neuronal avalanches

Content Overview
4Total items
3ePosters
1Seminar

Latest

SeminarNeuroscience

Quasicriticality and the quest for a framework of neuronal dynamics

Leandro Jonathan Fosque
Beggs lab, IU Bloomington
May 3, 2023

Critical phenomena abound in nature, from forest fires and earthquakes to avalanches in sand and neuronal activity. Since the 2003 publication by Beggs & Plenz on neuronal avalanches, a growing body of work suggests that the brain homeostatically regulates itself to operate near a critical point where information processing is optimal. At this critical point, incoming activity is neither amplified (supercritical) nor damped (subcritical), but approximately preserved as it passes through neural networks. Departures from the critical point have been associated with conditions of poor neurological health like epilepsy, Alzheimer's disease, and depression. One complication that arises from this picture is that the critical point assumes no external input. But, biological neural networks are constantly bombarded by external input. How is then the brain able to homeostatically adapt near the critical point? We’ll see that the theory of quasicriticality, an organizing principle for brain dynamics, can account for this paradoxical situation. As external stimuli drive the cortex, quasicriticality predicts a departure from criticality while maintaining optimal properties for information transmission. We’ll see that simulations and experimental data confirm these predictions and describe new ones that could be tested soon. More importantly, we will see how this organizing principle could help in the search for biomarkers that could soon be tested in clinical studies.

ePosterNeuroscience

CRITICAL NEURONAL AVALANCHES ARISE FROM EXCITATION-INHIBITION BALANCED SPONTANEOUS ACTIVITY

Maxime Janbon, Mateo Amortegui, Enrique Carlos Arnoldo Hansen, Sarah Nourin, Germán Sumbre, Adrián Ponce-Alvarez

FENS Forum 2026

ePosterNeuroscience

MALE SPECIFIC ABERRANT SPREAD OF NEURONAL AVALANCHES IN THE PREFRONTAL-AMYGDALA CIRCUIT FOLLOWING EARLY LIFE STRESS

Zoia Kharybina, Satu Palva, Sari Lauri, Henrike Hartung, Tomi Taira

FENS Forum 2026

ePosterNeuroscience

Neuronal avalanches differentiate resting-state and task conditions in Brain-Computer Interfaces

Pierpaolo Sorrentino, Marie-Constance Corsi, Denis Schwartz, Nathalie George, Laurent Hugueville, Ari E. Kahn, Sophie Dupont, Danielle S. Bassett, Viktor Jirsa, Fabrizio De Vico Fallani

neuronal avalanches coverage

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