Climent Andreu M, Guillem Maria S, Zhang Youhua, Millet Jose, Mazgalev Todor N
ITACA Institute of Universidad Politecnica de Valencia, 46022, Spain.
Annu Int Conf IEEE Eng Med Biol Soc. 2010;2010:2646-9. doi: 10.1109/IEMBS.2010.5626539.
Role of dual AV nodal pathway physiology in the atrioventricular nodal (AVN) conduction during atrial arrhythmias remains unclear. By using His electrogram alternans (HEA), we have developed a functional model of the atrioventricular conduction that incorporates the dual AV nodal pathway physiology. Experiments performed on 5 rabbit atrial-AVN preparations were used to develop and test the presented AV nodal functional model. HEAs from the inferior margin of the His bundle were used to identify fast and slow wavefront propagations (FP and SP). Conduction curves were calculated by using the model and compared with the real experiments, the root mean square error of the FP and SP were 7 ± 4ms and 3 ± 3 ms respectively. In addition, the model has been used for illustrating the effects of the atrioventricular node modification, which has emerged as one of the alternatives for ventricular rate control during atrial fibrillation. The presented model can help in understanding some of the unclear AV node conduction mechanisms and should be considered as a step forward in understanding the AV node and specifically its dual pathway physiology.
双房室结径路生理在房性心律失常时房室结(AVN)传导中的作用仍不清楚。通过使用希氏束电图交替现象(HEA),我们建立了一个包含双房室结径路生理的房室传导功能模型。在5个兔心房-房室结标本上进行的实验用于建立和测试所提出的房室结功能模型。来自希氏束下缘的HEA用于识别快波前向传导和慢波前向传导(FP和SP)。通过该模型计算传导曲线并与实际实验进行比较,FP和SP的均方根误差分别为7±4毫秒和3±3毫秒。此外,该模型已被用于说明房室结改良的效果,房室结改良已成为心房颤动时控制心室率的替代方法之一。所提出的模型有助于理解一些尚不明确的房室结传导机制,应被视为在理解房室结特别是其双径路生理方面向前迈出的一步。