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Simulation of Cardiac Arrhythmias Using a 2D Heterogeneous Whole Heart Model

机译:使用二维异质全心模型模拟心律失常

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摘要

Simulation studies of cardiac arrhythmias at the whole heart level with electrocardiogram (ECG) gives an understanding of how the underlying cell and tissue level changes manifest as rhythm disturbances in the ECG. We present a 2D whole heart model (WHM2D) which can accommodate variations at the cellular level and can generate the ECG waveform. It is shown that, by varying cellular-level parameters like the gap junction conductance (GJC), excitability, action potential duration (APD) and frequency of oscillations of the auto-rhythmic cell in WHM2D a large variety of cardiac arrhythmias can be generated including sinus tachycardia, sinus bradycardia, sinus arrhythmia, sinus pause, junctional rhythm, Wolf Parkinson White syndrome and all types of AV conduction blocks. WHM2D includes key components of the electrical conduction system of the heart like the SA (Sino atrial) node cells, fast conducting intranodal pathways, slow conducting atriovenctricular (AV) node, bundle of His cells, Purkinje network, atrial, and ventricular myocardial cells. SA nodal cells, AV nodal cells, bundle of His cells, and Purkinje cells are represented by the Fitzhugh-Nagumo (FN) model which is a reduced model of the Hodgkin-Huxley neuron model. The atrial and ventricular myocardial cells are modeled by the Aliev-Panfilov (AP) two-variable model proposed for cardiac excitation. WHM2D can prove to be a valuable clinical tool for understanding cardiac arrhythmias.
机译:心电图(ECG)对整个心脏水平的心律不齐进行模拟研究,可以了解潜在的细胞和组织水平变化如何在ECG中表现为节律紊乱。我们提出了一个二维全心模型(WHM2D),它可以适应细胞水平的变化并可以生成ECG波形。结果表明,通过改变细胞水平参数,例如间隙连接电导(GJC),兴奋性,动作电位持续时间(APD)和WHM2D中自律性细胞的振荡频率,可以产生多种心律失常,包括窦性心动过速,窦性心动过缓,窦性心律不齐,窦性停顿,结节律,沃尔夫·帕金森·怀特综合征和所有类型的房室传导阻滞。 WHM2D包括心脏电传导系统的关键组件,例如SA(窦房结)细胞,快速传导的结内途径,缓慢传导的房室结(AV)节点,His细胞束,浦肯野网络,心房和心室心肌细胞。 SA结节细胞,AV结节细胞,His细胞束和Purkinje细胞由Fitzhugh-Nagumo(FN)模型代表,该模型是Hodgkin-Huxley神经元模型的简化模型。心房和心室心肌细胞通过提出用于心脏兴奋的Aliev-Panfilov(AP)两变量模型进行建模。 WHM2D可以证明是了解心律不齐的有价值的临床工具。

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