Department of Cardiac Electrophysiology, University of Pittsburgh, Pittsburgh, PA, USA.
Circ Arrhythm Electrophysiol. 2013 Apr;6(2):364-70. doi: 10.1161/CIRCEP.113.000248. Epub 2013 Mar 8.
There is a significant variability observed in the conduction properties of the atrioventricular node. In a subset of hearts, impulse transmission tends to fall into two distinct conduction regions, termed the slow and fast pathway, and a further subset are capable of dual conduction of a single input stimulus, termed double firing.
In this article, we closely characterize two distinct responses in patients with double firing properties of the atrioventricular node, separating these into discrete types: those with slow and fast pathway interaction and interdependence (interactive), and those with independent pathway properties (orthogonal). We use novel mathematical techniques to evaluate the relative decrement and unique properties of conduction during the overlapping slow and fast pathway conduction zones.
Our analysis demonstrates two distinct patterns of pathway conduction in double firing patients, termed interactive and orthogonal. We show parallel overlapping segments of slow and fast pathway decremental conduction curves in interactive pathways, with no such findings with orthogonal conduction. These findings suggest anatomic correlates of pathway conduction, with interactive pathways likely having a common distal segment and orthogonal pathways able to independently activate downstream structures.
房室结的传导特性存在显著的可变性。在一部分心脏中,冲动传递倾向于分为两个明显的传导区域,称为慢径和快径,还有一部分心脏能够对单个输入刺激进行双重传导,称为双射。
在本文中,我们对具有房室结双射特性的患者的两种不同反应进行了仔细描述,将其分为离散类型:那些具有慢径和快径相互作用和相互依赖(相互作用)的类型,以及那些具有独立径路特性(正交)的类型。我们使用新的数学技术来评估重叠的慢径和快径传导区的相对递减和传导的独特特性。
我们的分析表明,双射患者的径路传导存在两种不同的模式,称为相互作用和正交。我们在相互作用径路中显示了慢径和快径递减传导曲线的平行重叠部分,而在正交传导中没有发现这种情况。这些发现提示了径路传导的解剖学相关性,相互作用径路可能具有共同的远端节段,而正交径路能够独立激活下游结构。