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Detection of phase singularities in triangular meshes.

作者信息

Rantner L J, Wieser L, Stühlinger M C, Hintringer F, Tilg B, Fischer G

机构信息

Institute of Biomedical Engineering, University for Health Sciences, Medical Informatics and Technology, Eduard-Wallnöfer-Zentrum 1, 6060 Hall in Tirol, Austria.

出版信息

Methods Inf Med. 2007;46(6):646-54. doi: 10.3414/me0427.

DOI:10.3414/me0427
PMID:18066414
Abstract

OBJECTIVES

Phase singularities have become a key marker in animal and computer models of atrial and ventricular fibrillation. However, existing algorithms for the automatic detection of phase singularities are limited to regular, quadratic mesh grids. We present an algorithm to automatically and exactly detect phase singularities in triangular meshes.

METHODS

For each node an oriented path inscribing the node with one unit of spatial discretization is identified. At each time step the phase information is calculated for all nodes. The so-called topological charge is also computed for each node. A non-zero (+/- 2pi) charge is obtained for all nodes with a path enclosing a phase singularity. Thus all charged nodes belonging to the same phase singularity have to be clustered.

RESULTS

With the use of the developed algorithm, phase singularities can be detected in triangular meshes with an accuracy of below 0.2 mm - independent of the type of membrane kinetics used.

CONCLUSIONS

With the possibility to detect phase singularities automatically and exactly, important quantitative data on cardiac fibrillation can be gained.

摘要

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