4.4 Article

Collective irregular dynamics in balanced networks of leaky integrate-and-fire neurons

Journal

EUROPEAN PHYSICAL JOURNAL-SPECIAL TOPICS
Volume 227, Issue 10-11, Pages 1185-1204

Publisher

SPRINGER HEIDELBERG
DOI: 10.1140/epjst/e2018-00079-7

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Funding

  1. French government [ANR-16-IDEX-008, ANR-11-LBX-0023-01]

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We extensively explore networks of weakly unbalanced, leaky integrate-and-fire (LIF) neurons for different coupling strength, connectivity, and by varying the degree of refractoriness, as well as the delay in the spike transmission. We find that the neural network does not only exhibit a microscopic (single-neuron) stochastic-like evolution, but also a collective irregular dynamics (CID). Our analysis is based on the computation of a suitable order parameter, typically used to characterize synchronization phenomena and on a detailed scaling analysis (i.e. simulations of different network sizes). As a result, we can conclude that CID is a true thermodynamic phase, intrinsically different from the standard asynchronous regime.

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