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Universal critical dynamics in high resolution neuronal avalanche data
Nir Friedman
, Shinya Ito
, Braden A.W. Brinkman
, Masanori Shimono
,
R. E.Lee Deville
,
Karin A. Dahmen
, John M. Beggs
, Thomas C. Butler
Mathematics
Carl R. Woese Institute for Genomic Biology
Physics
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Keyphrases
Anomalous Exponent
50%
Avalanche
50%
Avalanche Size
50%
Cortical Networks
50%
Critical Dynamics
100%
High-resolution
100%
Network Data
50%
Neural Computation
50%
Neuronal Avalanches
100%
Neuronal Network
100%
Non-equilibrium
50%
Nonequilibrium Phase Transitions
50%
Power-law Distribution
50%
Scaling Function
50%
Scaling Laws
50%
Supercritical Phase
50%
Temporal Profile
50%
Universal Scaling
50%
Computer Science
Avalanche Size
100%
Collected Data
100%
Computer Network
100%
Cortical Network
100%
Critical Point
100%
Experimental Evidence
100%
Individual Neuron
100%
Neural Computation
100%
Power-Law Distribution
100%
Engineering
Additional Feature
50%
Collected Data
50%
Critical Point
50%
High Resolution
100%
Nonequilibrium
100%
Scaling Law
50%
Physics
Computer Network
100%
Critical Phenomena
100%
High Resolution
100%