English

Spike-Phase Coupling As an Order Parameter in a Leaky Integrate-and-Fire Model

Adaptation and Self-Organizing Systems 2020-11-11 v2 Disordered Systems and Neural Networks

Abstract

While criticality is widely observed in neural networks, its underlying neural mechanism is not known well. We consider a network of NN excitatory leaky integrated and fire (LIF) neurons that reside on a regular lattice with periodic boundary conditions. The cooperation between neurons, KK, plays the role of the control parameter that is expected to generate criticality when the critical cooperation strength, KcK_c, is adopted. We show that the coupling between spike timing and the phase of temporal fluctuations of a cooperative activity of the network, i.e. population-averaged voltage (PAV), resorts to identifying an order parameter. By increasing KK, we find a continuous transition from irregular spiking to a phase-locked state at the critical point, KcK_c. Moreover, we deploy the finite-size scaling analysis to obtain the critical exponents of this transition. We also show that the neuronal avalanches created at this critical point, display a remarkable scaling behavior with the exponents in a fair agreement with the experimental values.

Keywords

Cite

@article{arxiv.1903.00998,
  title  = {Spike-Phase Coupling As an Order Parameter in a Leaky Integrate-and-Fire Model},
  author = {Nahid Safari and Farhad Shahbazi and Mohammad Dehghani-Habibabadi and Moein Esghaei and Marzieh Zare},
  journal= {arXiv preprint arXiv:1903.00998},
  year   = {2020}
}

Comments

8 pages, 6 figures

R2 v1 2026-06-23T07:56:55.776Z