Computational and experimental modulation of a noisy chaotic neuronal system

Author:

Gonzalez Josselyn1ORCID,Follmann Rosangela2ORCID,Rosa Epaminondas13ORCID,Stein Wolfgang1ORCID

Affiliation:

1. School of Biological Sciences, Illinois State University 1 , Normal, Illinois 61790, USA

2. School of Information Technology, Illinois State University 2 , Normal, Illinois 61790, USA

3. Department of Physics, Illinois State University 3 , Normal, Illinois 61790, USA

Abstract

In this work, we study the interplay between chaos and noise in neuronal state transitions involving period doubling cascades. Our approach involves the implementation of a neuronal mathematical model under the action of neuromodulatory input, with and without noise, as well as equivalent experimental work on a biological neuron in the stomatogastric ganglion of the crab Cancer borealis. Our simulations show typical transitions between tonic and bursting regimes that are mediated by chaos and period doubling cascades. While this transition is less evident when intrinsic noise is present in the model, the noisy computational output displays features akin to our experimental results. The differences and similarities observed in the computational and experimental approaches are discussed.

Funder

Illinois State University - CAS Interdisciplinary award

RD Weigel research grant

Mockford-Thompson summer fellowship

National Science Foundation

Publisher

AIP Publishing

Subject

Applied Mathematics,General Physics and Astronomy,Mathematical Physics,Statistical and Nonlinear Physics

Reference54 articles.

1. The essence of chaos;Pure Appl. Geophys.,1996

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