English

Information Synergy in the Anticipatory Dynamics of a Retina

Neurons and Cognition 2021-10-04 v3 Adaptation and Self-Organizing Systems Biological Physics

Abstract

Visual perceptions often come with illusions whose physical origin are not well understood yet. The encoding of stochastic light intensity x(t)x(t) into spikes with firing rate r(t)r(t) at time tt is investigated in an experiment with retinas from bullfrogs to understand the mechanism of anticipation. Partial information decomposition of the mutual information between rr and the combined state {x,x˙}\{x,\dot x\} is found to be consistent with the encoding form: r(t)(1λ)x(t)+λx˙(t)τ0r(t) \sim (1-\lambda)x(t) + \lambda \dot x(t) \tau_0 with λ\lambda being a system dependent parameter and τ0\tau_0 a constant. This form of r(t)r(t) indicates that a retina is capable of anticipation based on the synergistic information generation between xx and x˙\dot x. Our results suggest that illusions such as the anticipation studied here during retinal perception can originate from the recombination of information extracted in the retinal network.

Keywords

Cite

@article{arxiv.2103.07122,
  title  = {Information Synergy in the Anticipatory Dynamics of a Retina},
  author = {Qi-Rong Lin and Po-Yu Chou and C. K. Chan},
  journal= {arXiv preprint arXiv:2103.07122},
  year   = {2021}
}