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Experimental study of atrial fibrillation cycle length during rapid atrial septal pacing

机译:心房间隔快速起搏时房颤周期长的实验研究

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Computer model-based simulations have shown that rapid stimulation at 60-100% of atrial fibrillation cycle length (AFCL) from a ring of electrodes located around the septum may induce local capture in both atria for most AF dynamics. The present study aims to investigate whether model-based results on AF septal pacing can be translated to experimental simulations. Acute experiments on swine hearts were performed in vivo. The septal ring of electrodes was experimentally implemented using a decapolar lasso catheter placed against the septal wall. Rapid septal pacing was applied in sequences of 10-sec simultaneously on four electrodes on the septal ring. The extent of local AF capture, defined as the ability of the rapid pacing sequence to take control over certain areas of the atria, was assessed via two decapolar mapping catheters in the right and left atrium. AFCL was measured on bipolar electrograms using a nonlinear filtering technique that uses short- and long-term electrogram energies for a robust CL extraction. AFCL was significantly higher in the right atrium compared to the AFCL in left atrium which indicates the existence of different AF dynamics in the two atria. Local capture was observed in both atria when pacing from four electrodes on the septum.
机译:基于计算机模型的模拟结果表明,对于大多数房颤动力学,位于隔垫周围的电极环在房颤周期长度(AFCL)的60-100%处快速刺激可能会诱发两个心房的局部捕获。本研究旨在调查基于AF间隔起搏的基于模型的结果是否可以转化为实验模拟。在猪体内进行急性实验。电极的隔环是通过使用隔着隔壁放置的十极套索导管在实验上实现的。在隔环上的四个电极上同时按10秒的顺序快速进行间隔起搏。通过右心房和左心房中的两个十极标测导管评估局部房颤捕获的程度,定义为快速起搏序列控制心房某些区域的能力。 AFCL是使用非线性滤波技术在双极性电描记图上测量的,该技术使用了短期和长期的电描记图能量来进行稳健的CL提取。与左心房的AFCL相比,右心房的AFCL明显更高,这表明两个心房中存在不同的AF动态。从隔垫上的四个电极起搏时,在两个心房中均观察到局部捕获。

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