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心房扑动的电生理机制。

Electrophysiological mechanisms of atrial flutter.

作者信息

Tai Ching-Tai, Chen Shin-Ann

机构信息

Division of Cardiology, Department of Medicine, National Yang-Ming University School of Medicine, Taipei Veterans General Hospital, Taiwan, ROC.

出版信息

Indian Pacing Electrophysiol J. 2006 Apr 1;6(2):119-32.

Abstract

Atrial flutter (AFL) is a common arrhythmia in clinical practice. Several experimental models such as tricuspid regurgitation model, tricuspid ring model, sterile pericarditis model and atrial crush injury model have provided important information about reentrant circuit and can test the effect of antiarrhythmic drugs. Human atrial flutter has typical and atypical forms. Typical atrial flutter rotates around tricuspid annulus and uses the crista terminalis and sometimes sinus venosa as the boundary. The IVC-tricuspid isthmus is a slow conduction zone and the target of radiofrequency ablation. Atypical atrial flutter may arise from the right or left atrium. Right atrial flutter includes upper loop reentry, free wall reentry and figure of eight reentry. Left atrial flutter includes mitral annular atrial flutter, pulmonary vein-related atrial flutter and left septal atrial flutter. Radiofrequency ablation of the isthmus between the boundaries can eliminate these arrhythmias.

摘要

心房扑动(AFL)是临床实践中一种常见的心律失常。三尖瓣反流模型、三尖瓣环模型、无菌性心包炎模型和心房挤压伤模型等几种实验模型提供了有关折返环路的重要信息,并可测试抗心律失常药物的效果。人类心房扑动有典型和非典型两种形式。典型心房扑动围绕三尖瓣环旋转,并以终末嵴有时还以腔静脉窦作为边界。下腔静脉-三尖瓣峡部是一个缓慢传导区,也是射频消融的靶点。非典型心房扑动可能起源于右心房或左心房。右心房扑动包括上环路折返、游离壁折返和8字形折返。左心房扑动包括二尖瓣环心房扑动、肺静脉相关性心房扑动和左间隔心房扑动。消融边界之间的峡部可消除这些心律失常。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cd7d/1501102/b4e35789cda2/ipej060119-01.jpg

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