Publication
Title
Delay-induced destabilization of entrainment of nerve impulses on ephaptically coupled nerve fibers
Author
Abstract
We study the effect of delay on the synchronization of two nerve impulses traveling along two ephaptically coupled, unmyelinated nerve fibers. The system is modeled as a pair of delay-coupled Fitzhugh-Nagumo equations. A multiple-scale perturbation approach is used for the analysis of these equations in the limit of weak coupling. In the absence of delay, two pulses with identical speeds are shown to be entrained precisely. However, as the delay is increased beyond a critical value, we show that this precise entrainment becomes unstable. We make quantitative estimates for the actual values of delay at which this can occur in the case of squid giant axons and compare them with the relevant time scales involved.
Language
English
Source (journal)
Physical review : E : statistical, nonlinear, and soft matter physics / American Physical Society. - Melville, N.Y., 2001 - 2015
Publication
Melville, N.Y. : American Physical Society , 2009
ISSN
1539-3755 [print]
1550-2376 [online]
DOI
10.1103/PHYSREVE.79.011910
Volume/pages
79 :1 (2009)
Article Reference
011910
ISI
000262976600085
Medium
E-only publicatie
Full text (Publisher's DOI)
UAntwerpen
Publication type
Subject
External links
Web of Science
Record
Identifier
Creation 29.10.2019
Last edited 19.08.2024
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