Litcius/Paper detail

Topological charge-density method of identifying phase singularities in cardiac fibrillation

Yin-Jie He, Qi-Hao Li, Kuangshi Zhou, Ruhong Jiang, Chenyang Jiang, Jun-Ting Pan, Dafang Zheng, Bo Zheng, Hong Zhang

2021Physical review. E15 citationsDOI

Abstract

Spiral waves represent the key motifs of typical self-sustained dynamical patterns in excitable systems such as cardiac tissue. The motion of phase singularities (PSs) that lies at the center of spiral waves captures many qualitative and, in some cases, quantitative features of their complex dynamics. Recent clinical studies suggested that ablating the tissue at PS locations may cure atrial fibrillation. Here, we propose a different method to determine the location of PSs. Starting from the definition of the topological charge of spiral waves, we obtain the expression of the topological charge density in a discrete case. With this expression, we can calculate the topological charge at each grid in the space directly, so as to accurately identify the position of PSs.

Topics & Concepts

Gravitational singularityTopological quantum numberSpiral (railway)Position (finance)Topology (electrical circuits)Charge (physics)PhysicsCharge densityPhase (matter)Expression (computer science)Statistical physicsClassical mechanicsComputer scienceMathematicsMathematical analysisQuantum mechanicsFinanceEconomicsCombinatoricsProgramming languageNonlinear Dynamics and Pattern Formationstochastic dynamics and bifurcationNeural dynamics and brain function