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Fibrillatory conduction in a simulated two-dimensional model of human atrial tissue: effect of the interaction of two ectopic foci

机译:模拟的人房组织二维模型中的纤颤传导:两个异位灶相互作用的影响

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Atrial fibrillation (AF) is the most common tachyarrhythmia. It has been demonstrated that extra-stimuli could act as triggers for AF. In many patients it is possible that multiple ectopic foci co-exist, and their interactions may generate complex conduction patterns. Our goal is to investigate the influence of the focus frequency, conduction velocity, and anisotropy on fibrillatory pattern generation during the interaction of multiple ectopic activities under electrical remodeling conditions. Our results support the broadly accepted theory that ectopic activity acting in remodeled tissue is an initiator of reentrant mechanisms. These reentrant circuits can generate fibrillatory activity when interacting with other rapid ectopic foci and under the following conditions: high ectopic focus frequency, slow conduction velocity, and anisotropic tissue. Analyses of electrogram polymorphism allow determination of which zones of tissue permit one to know in which zone of tissue unstable activity exists. Our results give useful insights into the electrophysiological parameters that determine the initiation and maintenance of fibrillatory conduction by two ectopic foci interaction in a simulated two-dimensional sheet of human atrial cells, under chronic AF conditions.
机译:房颤(AF)是最常见的快速性心律失常。已经证明,额外刺激可以引起AF。在许多患者中,可能会同时存在多个异位灶,并且它们的相互作用可能会产生复杂的传导模式。我们的目标是研究在电重塑条件下多种异位活动相互作用期间,聚焦频率,传导速度和各向异性对颤动模式生成的影响。我们的结果支持被广泛接受的理论,即异位活动在重塑组织中起作用是折返机制的发起者。这些折返回路在与其他快速异位灶相互作用时并在以下条件下会产生纤颤活性:高异位聚焦频率,缓慢的传导速度和各向异性组织。电描记图多态性的分析允许确定哪些组织区域允许人们知道在哪个组织区域中存在不稳定活性。我们的结果为确定电生理参数提供了有用的见解,这些参数在慢性房颤条件下通过模拟人房细胞二维薄片中的两个异位灶相互作用来确定纤维性传导的起始和维持。

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