Computational Analysis and Visualization of Spiral Wave Reentry in a Virtual Heart Model View Full Text


Ontology type: schema:Chapter     


Chapter Info

DATE

2000

AUTHORS

Kazuo Nakazawa , Tohru Suzuki , Takashi Ashihara , Masashi Inagaki , Tsunetoyo Namba , Takanori Ikeda , Ryoji Suzuki

ABSTRACT

It has been suggested that spiral wave reentry is the principal mechanism of functional tachyarrhythmias. In this study, we present images of the dynamics of tachyarrhythmic excitation propagation based on spiral wave reentry obtained in a virtual heart model. For this purpose, we employed high-performance computation techniques using a supercomputer and visualizing techniques using color computer graphics. In this heart model, the myocardial units were represented by two types of non-linear ordinary differential equations. The myocardial units were connected to each other into simple shaped two-or three-dimensional media corresponding to the heart walls and also into a human ventricular-shaped medium. The dynamics of excitation propagation were visualized intelligibly through various improvements in the visualizing techniques employed in the implementation of the three-dimensional graphics. Our results suggested that it is possible for lethal arrhythmia, commonly called ventricular fibrillation, to occur even in hearts without any conduction abnormalities or repolarization heterogeneity, e.g., infarction or ischemia, and cause sudden death. More... »

PAGES

217-241

References to SciGraph publications

Book

TITLE

Clinical Application of Computational Mechanics to the Cardiovascular System

ISBN

978-4-431-67989-9
978-4-431-67921-9

Identifiers

URI

http://scigraph.springernature.com/pub.10.1007/978-4-431-67921-9_21

DOI

http://dx.doi.org/10.1007/978-4-431-67921-9_21

DIMENSIONS

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