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A simple one-dimensional map-based model of spiking neurons with wide ranges of firing rates and complexities

Authors :
Alireza Bahramian
Janarthanan Ramadoss
Fahimeh Nazarimehr
Karthikeyan Rajagopal
Sajad Jafari
Iqtadar Hussain
Source :
Journal of theoretical biology. 539
Publication Year :
2021

Abstract

This paper introduces a simple 1-dimensional map-based model of spiking neurons. During the past decades, dynamical models of neurons have been used to investigate the biology of human nervous systems. The models simulate experimental records of neurons' voltages using difference or differential equations. Difference neuronal models have some advantages besides the differential ones. They are usually simpler, and considering the cost of needed computations, they are more efficient. In this paper, a simple 1-dimensional map-based model of spiking neurons is introduced. Sample entropy is applied to analyze the complexity of the model's dynamics. The model can generate a wide range of time series with different firing rates and different levels of complexities. Besides, using some tools like bifurcation diagrams and cobwebs, the introduced model is analyzed.

Details

ISSN :
10958541
Volume :
539
Database :
OpenAIRE
Journal :
Journal of theoretical biology
Accession number :
edsair.doi.dedup.....989ea9ed3d3d9794bbdc170e4ef5e0aa