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犬左心室心内膜下浦肯野纤维层与心室层之间功能性电耦合的变化。

Variations in the functional electrical coupling between the subendocardial Purkinje and ventricular layers of the canine left ventricle.

作者信息

Rawling D A, Joyner R W, Overholt E D

出版信息

Circ Res. 1985 Aug;57(2):252-61. doi: 10.1161/01.res.57.2.252.

Abstract

Action potential propagation from the subendocardial Purkinje network into the ventricular muscle is an essential link in cardiac activation. Studies of papillary muscles have indicated that ventricular muscle activation by the Purkinje network occurs only at discrete, localized regions near the papillary muscle base. Over the rest of the endocardial surface, however, the spatial distribution of these subendocardial Purkinje to ventricular muscle connections has been less well defined. We therefore studied in vitro 12 canine left ventricular preparations (eight from the septum, four from the lateral wall), using a high-density (1-mm spacings), high-resolution extracellular mapping technique to determine the subendocardial Purkinje and ventricular muscle activation sequences. These studies show that the distribution of subendocardial Purkinje to ventricular muscle electrical coupling is spatially inhomogeneous, and that the junctional regions themselves have variable degrees of electrical coupling. We also attempted to determine whether ventricular muscle coupling to the Purkinje network might influence Purkinje network conduction velocity. We found that on the papillary muscle apex, a region without direct Purkinje to ventricular muscle propagation, Purkinje network conduction velocity was slowed, suggesting that the Purkinje network might be electrically loaded by the underlying ventricular muscle. Finally, we performed numerical simulations using a model consisting of two layers of excitable cells to evaluate the effects that different electrical coupling patterns and/or different coupling resistivities between the two layers might have on activation of each layer. These simulation studies suggest that a coupling pattern having discrete junctional sites between the two layers (similar to our findings for subendocardial Purkinje to ventricular muscle coupling) is beneficial, as this arrangement allows more rapid activation of both layers by minimizing electrical loading of the thin Purkinje layer by the thicker ventricular muscle layer.

摘要

动作电位从心内膜下浦肯野网络传播至心室肌是心脏激动过程中的一个重要环节。对乳头肌的研究表明,浦肯野网络对心室肌的激动仅发生在乳头肌基部附近离散的局部区域。然而,在心内膜表面的其余部分,这些心内膜下浦肯野纤维与心室肌连接的空间分布尚未明确界定。因此,我们使用高密度(间隔1毫米)、高分辨率的细胞外标测技术,对12个犬左心室标本(8个取自室间隔,4个取自侧壁)进行了体外研究,以确定心内膜下浦肯野纤维和心室肌的激动顺序。这些研究表明,心内膜下浦肯野纤维与心室肌电耦合的分布在空间上是不均匀的,且连接区域本身具有不同程度的电耦合。我们还试图确定心室肌与浦肯野网络的耦合是否会影响浦肯野网络的传导速度。我们发现,在乳头肌顶端这个没有浦肯野纤维直接向心室肌传播的区域,浦肯野网络的传导速度减慢,这表明浦肯野网络可能因下层心室肌而产生电负荷。最后,我们使用由两层可兴奋细胞组成的模型进行了数值模拟,以评估两层之间不同的电耦合模式和/或不同的耦合电阻对每层激动的影响。这些模拟研究表明,两层之间具有离散连接点的耦合模式(类似于我们在心内膜下浦肯野纤维与心室肌耦合中的发现)是有益的,因为这种排列通过最小化较厚的心室肌层对较薄的浦肯野层的电负荷,使两层能更快地被激动。

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