paper-with-me

홈 › Papers

Self Tuned Criticality: Controlling a neuron near its bifurcation point via temporal correlations

2022-06-20 · Juliane T. Moraes, Eyisto J. Aguilar Trejo, Sabrina Camargo, Silvio C. Ferreira, Dante R. Chialvo

Previous work showed that the collective activity of large neuronal networks can be tamed to remain near its critical point by a feedback control that maximizes the temporal correlations of the mean-field fluctuations. Since such correlations behave similarly near instabilities across nonlinear dynamical systems, it is expected that the principle should control also low dimensional dynamical systems exhibiting continuous or discontinuous bifurcations from fixed points to limit cycles. Here we present numerical evidence that the dynamics of a single neuron can be controlled in the vicinity of its bifurcation point. The approach is tested in two models: a 2D generic excitable map and the paradigmatic FitzHugh-Nagumo neuron model. The results show that in both cases, the system can be self-tuned to its bifurcation point by modifying the control parameter according to the first coefficient of the autocorrelation function.

📄 PDF Abstract BibTeX arXiv:2206.10000

Code (0)

등록된 구현이 없습니다.

Similar Papers 제목 키워드 기반

Control of excitable systems is optimal near criticality

2019-12-13

Experiments suggest that cerebral cortex gains several functional advantages by operating in a dynamical regime near the critical point of a phase transition. However, a long-standing criticism of this hypothesis is that…

Self-assembled neuromorphic networks at self-organized criticality in Ag-hBN platform

2022-12-07 · Ankit Rao, Sooraj Sanjay, Majid Ahmadi, Anirudh Venugopalrao 외

Networks and systems which exhibit brain-like behavior can analyze information from intrinsically noisy and unstructured data with very low power consumption. Such characteristics arise due to the critical nature and com…

Noradrenergic neuromodulation of nonlinear bursting neurons controls critical dynamics

2021-06-15 · Brandon R. Munn, Eli J. Müller, James M. Shine

In order to remain adaptable to a dynamic environment, neural activity must be simultaneously both sensitive and stable. To solve this problem, the brain has been hypothesised to sit near a critical boundary. Yet, precis…

A Neuronal Model at the Edge of Criticality: An Ising-Inspired Approach to Brain Dynamics

2025-06-08 · Sajedeh Sarmastani, Maliheh Ghodrat, Yousef Jamali

We present a neuronal network model inspired by the Ising model, where each neuron is a binary spin ($s_i = \pm1$) interacting with its neighbors on a 2D lattice. Updates are asynchronous and follow Metropolis dynamics, …

Fractal analyses of networks of integrate-and-fire stochastic spiking neurons

2018-01-19

Although there is increasing evidence of criticality in the brain, the processes that guide neuronal networks to reach or maintain criticality remain unclear. The present research examines the role of neuronal gain plast…

Time SeriesTime Series Analysis