VULNERABILITY IN EXCITABLE BELOUSOV-ZHABOTINSKY MEDIUM FROM 1D TO 2D

Citation
M. Gomezgesteira et al., VULNERABILITY IN EXCITABLE BELOUSOV-ZHABOTINSKY MEDIUM FROM 1D TO 2D, Physica. D, 76(4), 1994, pp. 359-368
Citations number
24
Categorie Soggetti
Mathematical Method, Physical Science",Physics,"Physycs, Mathematical
Journal title
ISSN journal
01672789
Volume
76
Issue
4
Year of publication
1994
Pages
359 - 368
Database
ISI
SICI code
0167-2789(1994)76:4<359:VIEBMF>2.0.ZU;2-G
Abstract
Mechanisms for initiating rotating waves in 1D and 2D excitable media were compared and parameters affecting wavefront formation were analyz ed. The time delay between two sequentially initiated wavefronts (a co nditioning wave followed by a test wave) was varied in order to induce rotating waves, a protocol similar to that utilized in cardiac muscle experiments to reveal vulnerability to rotating wave initiation. We d efine the vulnerability region, VR, as the range of time delays betwee n conditioning and test waves where the test waves evolves into a rota ting wave. The smaller the VR, the more resistant the heart is against origination of dangerous cardiac arrhythmias. Heterogeneity of cardia c muscle is widely recognized as the prerequisite for rotating wave in itiation. We have identified the VR in homogeneous 2D excitable media. In the Belousov-Zhabotinsky (BZ) reaction with immobilized catalyst a nd in the Oregonator model of this reaction, a properly timed test wav e gives rise to rotating waves. The VR was increased when the size of the perturbation used for test wave creation was increased or when the threshold for propagation was decreased. Increasing the dimensionalit y of the medium for 1D to 2D results in diminishing of VR.