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兔心脏心房颤动时的房室结传导

Atrioventricular nodal conduction during atrial fibrillation in rabbit heart.

作者信息

Mazgalev T, Dreifus L S, Bianchi J, Michelson E L

出版信息

Am J Physiol. 1982 Nov;243(5):H754-60. doi: 10.1152/ajpheart.1982.243.5.H754.

Abstract

Atrial fibrillation was induced in 15 superfused rabbit atrial-atrioventricular nodal preparations in which surface bipolar electrograms were recorded simultaneously from the crista terminalis, interatrial septum, and His bundle along with microelectrode action potentials from cells in the atrionodal (AN), nodal (N), and nodal-His (NH) regions of the atrioventricular node. Effective engagement of the atrioventricular node with propagation to the His bundle was critically dependent on the relative timing of activation at the crista terminalis and interatrial septal input regions of the atrioventricular node. Conduction through the AN and N regions appeared dependent on the relative timing of activation wave fronts emerging from the two input regions. Asynchronous engagement of AN and N regions resulted in both distortion of action potentials and concealed conduction, with delayed conduction and block to the NH region and His bundle. Successful engagement of the NH region always produced a 1:1 NH-to-His bundle relationship. It is concluded that during atrial fibrillation 1) activation of the AN region occurs as a result of the variable interaction of inputs from the crista terminalis and interatrial septum; 2) predictably, effective synchronous engagement of the AN and consequently the N region is responsible for conduction to the NH and His bundle regions; 3) conversely, asynchronous activation inputs from the crista terminalis and interatrial septum result in fragmented, asynchronous as well as concealed conduction within the AN and N regions with block in the atrioventricular node and variable conduction to the His bundle.

摘要

在15个经超灌流的兔心房 - 房室结标本中诱发房颤,在这些标本中,同时记录了终嵴、房间隔和希氏束的表面双极电图,以及房室结的房结区(AN)、结区(N)和结 - 希区(NH)细胞的微电极动作电位。房室结与希氏束的有效传导关键取决于房室结终嵴和房间隔输入区激活的相对时间。通过AN和N区的传导似乎取决于从两个输入区出现的激活波前的相对时间。AN和N区的异步传导导致动作电位失真和隐匿性传导,伴有传导延迟和向NH区及希氏束的传导阻滞。NH区的成功传导总是产生1:1的NH与希氏束关系。得出的结论是,在房颤期间:1)AN区的激活是终嵴和房间隔输入相互作用变化的结果;2)可以预见,AN区以及随后N区的有效同步传导负责向NH区和希氏束区的传导;3)相反地,终嵴和房间隔的异步激活输入导致AN和N区内传导的碎片化、异步以及隐匿性传导,伴有房室结传导阻滞和向希氏束的可变传导。

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