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导致持续性室性心动过速的各向异性折返环路中时空可兴奋间隙的特征。

Characteristics of the temporal and spatial excitable gap in anisotropic reentrant circuits causing sustained ventricular tachycardia.

作者信息

Peters N S, Coromilas J, Hanna M S, Josephson M E, Costeas C, Wit A L

机构信息

Department of Cardiology, St Mary's Hospital & Imperial College School of Medicine, London, UK.

出版信息

Circ Res. 1998 Feb 9;82(2):279-93. doi: 10.1161/01.res.82.2.279.

Abstract

The excitable gap of a reentrant circuit has both temporal (time during the cycle length that the circuit is excitable) and spatial (length of the circuit that is excitable at a given time) properties. We determined the temporal and spatial properties of the excitable gap in reentrant circuits caused by nonuniform anisotropy. Myocardial infarction was produced in canine hearts by ligation of the left anterior descending coronary artery. Four days later, reentrant circuits were mapped in the epicardial border zone of the infarcts with a multielectrode array during sustained ventricular tachycardia induced by programmed stimulation. During tachycardia, premature impulses were initiated by stimulation at sites around and in the reentrant circuits, and their conduction characteristics in the circuit were mapped. All circuits had a temporal excitable gap in at least part of the circuit, which allowed premature impulses to enter the circuit. Completely and partially excitable segments of the temporal gap were identified by measuring conduction velocity of the premature impulses; conduction was equal to the native reentrant wave front in completely excitable regions and slower than the reentrant wave front in partially excitable regions. In some circuits, a temporal gap existed throughout the circuit, permitting the entire circuit to be reset over a range of premature coupling intervals, although the size of the gap varied at different sites. In other circuits, the gap became so small at local sites that even though premature impulses could enter the circuit, the circuit could not be reset. Premature impulses could terminate reentry in circuits that could be reset or not. We also found a significant spatial gap, which was identified by determining the distance between the head of the circulating wave front, which could be located on the activation map, and its tail, which was the site most distal from the head as located by the site of entry of the premature wave front into the circuit. The spatial gap could also vary in different parts of the circuit. Therefore, nonuniform anisotropic reentrant circuits have both a temporal and spatial excitable gap with fully and partially excitable components that change in different parts of the circuit.

摘要

折返环路的可兴奋间隙具有时间(心动周期中环路可兴奋的时间段)和空间(给定时间可兴奋的环路长度)特性。我们确定了由非均匀各向异性导致的折返环路中可兴奋间隙的时间和空间特性。通过结扎犬心脏的左前降支冠状动脉制造心肌梗死。四天后,在程控刺激诱发的持续性室性心动过速期间,用多电极阵列在梗死灶的心外膜边缘区绘制折返环路。在心动过速期间,在折返环路周围和内部的部位进行刺激以引发早搏冲动,并绘制其在环路中的传导特性。所有环路在至少部分环路中存在时间可兴奋间隙,这使得早搏冲动能够进入环路。通过测量早搏冲动的传导速度来识别时间间隙的完全可兴奋段和部分可兴奋段;在完全可兴奋区域传导速度与原始折返波前相等,在部分可兴奋区域则慢于折返波前。在一些环路中,整个环路都存在时间间隙,尽管间隙大小在不同部位有所变化,但在一系列早搏偶联间期内整个环路都可被重置。在其他环路中,局部部位的间隙变得非常小,以至于即使早搏冲动能够进入环路,环路也无法被重置。早搏冲动可以终止能够被重置或不能被重置的环路中的折返。我们还发现了一个显著的空间间隙,通过确定在激活图上可定位的循环波前头部与尾部之间的距离来识别,尾部是早搏波前进入环路的部位所确定的离头部最远的部位。空间间隙在环路的不同部分也可能不同。因此,非均匀各向异性折返环路具有时间和空间可兴奋间隙,其完全和部分可兴奋成分在环路的不同部分会发生变化。

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