A stochastic model for describing the firing activity of a couple of interacting neurons subject to time-dependent stimuli is proposed. Two stochastic differential equations suitably coupled and including periodic terms to represent stimuli imposed to one or both neurons are considered to describe the problem. We investigate the first passage time densities through specified firing thresholds for the involved time non-homogeneous Gauss-Markov processes. We provide simulation results and numerical approximations of the firing densities. Asymptotic behaviors of the first passage times are also given.

Stochastic modeling of the firing activity of coupled neurons periodically driven

Carfora Maria Francesca;
2015

Abstract

A stochastic model for describing the firing activity of a couple of interacting neurons subject to time-dependent stimuli is proposed. Two stochastic differential equations suitably coupled and including periodic terms to represent stimuli imposed to one or both neurons are considered to describe the problem. We investigate the first passage time densities through specified firing thresholds for the involved time non-homogeneous Gauss-Markov processes. We provide simulation results and numerical approximations of the firing densities. Asymptotic behaviors of the first passage times are also given.
2015
Istituto Applicazioni del Calcolo ''Mauro Picone''
Inglese
Manuel de León, Wei Feng, Zhaosheng Feng, Xin Lu, J.M. Martell, Javier Parcet, Daniel Peralta-Salas and Weihua Ruan
Dynamical Systems, Differential Equations and Applications - AIMS Proceedings, 2015
195
203
9
http://www.aimsciences.org/journals/contentsListPro.jsp?pubID=818
Sì, ma tipo non specificato
LIF neuronal model
first passage time
Gauss-Markov processes
periodic stimulus
asymptotic regime.
1
02 Contributo in Volume::02.01 Contributo in volume (Capitolo o Saggio)
268
none
Carfora, Maria Francesca;Pirozzi, Enrica
info:eu-repo/semantics/bookPart
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/304017
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