In-phase oscillations from the cooperation of cellular and network positive feedback in synaptically-coupled oscillators
Chaotic Dynamics
2021-10-06 v2 Dynamical Systems
Neurons and Cognition
Abstract
We study the emergent dynamics of a network of synaptically coupled slow-fast oscillators. Synaptic coupling provides a network-level positive feedback mechanism that cooperates with cellular-level positive feedback to ignite in-phase network oscillations. Using analytical bifurcation analysis, we prove that the Perron-Frobenius eigenvector of the network adjacency matrix fully controls the oscillation pattern locally in a neighborhood of a Hopf bifurcation. Besides shifting the focus from the spectral properties of the network Laplacian matrix to the network adjacency matrix, we discuss other key differences between synaptic and diffusive coupling.
Keywords
Cite
@article{arxiv.2109.13932,
title = {In-phase oscillations from the cooperation of cellular and network positive feedback in synaptically-coupled oscillators},
author = {Omar Juarez-Alvarez and Alessio Franci},
journal= {arXiv preprint arXiv:2109.13932},
year = {2021}
}
Comments
6 pages, 3 figures, Conference on Decision and Control 2021