activity
20152024
most citedSpike-burst chimera states in an adaptive exponential integrate-and-fire neuronal network

31 citations · 101 across the 18 of their papers we have counts for

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9 papers · 1 filter

physics.bio-ph2024★ 2 cited

When climate variables improve the dengue forecasting: a machine learning approach

Sidney T. da Silva, Enrique C. Gabrick, Paulo R. Protachevicz +4

Dengue is a viral vector-borne infectious disease that affects many countries worldwide, infecting around 390 million people per year. The main outbreaks occur in subtropical and t…

physics.bio-ph2024

Spiral wave dynamics in a neuronal network model

Diogo L. M. Souza, Fernando S. Borges, Enrique C. Gabrick +8

Spiral waves are spatial-temporal patterns that can emerge in different systems as heart tissues, chemical oscillators, ecological networks and the brain. These waves have been ide…

physics.bio-ph2024

Impact of periodic vaccination in SEIRS seasonal model

Enrique C. Gabrick, Eduardo L. Brugnago, Silvio L. T. de Souza +6

We study three different strategies of vaccination in a SEIRS (Susceptible--Exposed--Infected--Recovered--Susceptible) seasonal forced model, which are: () continuous vaccinatio…

physics.bio-ph2024★ 5 cited

Adaptive Exponential Integrate-and-Fire Model with Fractal Extension

Diogo L. M. Souza, Enrique C. Gabrick, Paulo R. Protachevicz +6

The description of neuronal activity has been of great importance in neuroscience. In this field, mathematical models are useful to describe the electrophysical behaviour of neuron…

physics.bio-ph2023

Multistability and chaos in SEIRS epidemic model with a periodic time-dependent transmission rate

Eduardo L. Brugnago, Enrique C. Gabrick, Kelly C. Iarosz +4

In this work, we study the dynamics of a SEIRS epidemic model with a periodic time-dependent transmission rate. Emphasizing the influence of the seasonality frequency on the system…

physics.bio-ph2023

Fractional dynamics and recurrence analysis in cancer model

Enrique C. Gabrick, Matheus R. Sales, Elaheh Sayari +8

In this work, we analyze the effects of fractional derivatives in the chaotic dynamics of a cancer model. We begin by studying the dynamics of a standard model, {\it i.e.}, with in…