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心房颤动中螺旋波和点源的模拟及其在转子定位中的应用

Simulation of Spiral Waves and Point Sources in Atrial Fibrillation with Application to Rotor Localization.

作者信息

Ganesan Prasanth, Shillieto Kristina E, Ghoraani Behnaz

机构信息

Department of Electrical Engineering, Florida Atlantic University, Boca Raton, Florida.

Rochester Institute of Technology, Rochester, NewYork.

出版信息

Proc IEEE Int Symp Comput Based Med Syst. 2017 Jun;2017:379-384. doi: 10.1109/CBMS.2017.161. Epub 2017 Nov 13.

Abstract

Cardiac simulations play an important role in studies involving understanding and investigating the mechanisms of cardiac arrhythmias. Today, studies of arrhythmogenesis and maintenance are largely being performed by creating simulations of a particular arrhythmia with high accuracy comparable to the results of clinical experiments. Atrial fibrillation (AF), the most common arrhythmia in the United States and many other parts of the world, is one of the major field where simulation and modeling is largely used. AF simulations not only assist in understanding its mechanisms but also help to develop, evaluate and improve the computer algorithms used in electrophysiology (EP) systems for ablation therapies. In this paper, we begin with a brief overeview of some common techniques used in simulations to simulate two major AF mechanisms - spiral waves (or rotors) and point (or focal) sources. We particularly focus on 2D simulations using Nygren 's mathematical model of human atrial cell. Then, we elucidate an application of the developed AF simulation to an algorithm designed for localizing AF rotors for improving current AF ablation therapies. Our simulation methods and results, along with the other discussions presented in this paper is aimed to provide engineers and professionals with a working-knowledge of application-specific simulations of spirals and foci.

摘要

心脏模拟在涉及理解和研究心律失常机制的研究中发挥着重要作用。如今,心律失常发生和维持的研究很大程度上是通过创建特定心律失常的模拟来进行的,其精度可与临床实验结果相媲美。心房颤动(AF)是美国和世界许多其他地区最常见的心律失常,是大量使用模拟和建模的主要领域之一。AF模拟不仅有助于理解其机制,还有助于开发、评估和改进用于消融治疗的电生理(EP)系统中的计算机算法。在本文中,我们首先简要概述一些模拟中用于模拟两种主要AF机制——螺旋波(或转子)和点(或局灶)源的常见技术。我们特别关注使用Nygren人类心房细胞数学模型的二维模拟。然后,我们阐明了所开发的AF模拟在一种为定位AF转子而设计的算法中的应用,以改进当前的AF消融治疗。我们的模拟方法和结果,以及本文中的其他讨论旨在为工程师和专业人员提供关于螺旋和局灶特定应用模拟的实用知识。

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Mechanisms of Atrial Fibrillation - Reentry, Rotors and Reality.心房颤动的机制——折返、转子与现实
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本文引用的文献

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Models of cardiac tissue electrophysiology: progress, challenges and open questions.心脏组织电生理学模型:进展、挑战与开放性问题。
Prog Biophys Mol Biol. 2011 Jan;104(1-3):22-48. doi: 10.1016/j.pbiomolbio.2010.05.008. Epub 2010 May 27.
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Cardiac cell modelling: observations from the heart of the cardiac physiome project.心脏细胞建模:来自心脏生理系统项目核心的观察。
Prog Biophys Mol Biol. 2011 Jan;104(1-3):2-21. doi: 10.1016/j.pbiomolbio.2010.03.002. Epub 2010 Mar 18.

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