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犬模型急性缺血期间浦肯野系统在自发性室性心动过速中的作用。

Role of the Purkinje system in spontaneous ventricular tachycardia during acute ischemia in a canine model.

作者信息

Arnar D O, Bullinga J R, Martins J B

机构信息

Department of Internal Medicine, University of Iowa College of Medicine, Iowa City 52242, USA.

出版信息

Circulation. 1997 Oct 7;96(7):2421-9. doi: 10.1161/01.cir.96.7.2421.

Abstract

BACKGROUND

A role for the Purkinje system in the development of spontaneous ventricular tachycardia (VT) during acute ischemia has been suspected but not proved. We used a three-dimensional activation mapping system incorporating Purkinje signals to characterize the mechanism and site of origin of spontaneous VT occurring in the first 30 minutes after coronary artery occlusion in a dog model.

METHODS AND RESULTS

The left anterior descending coronary artery was occluded in 48 dogs after instrumentation of the risk zone with 21 multipolar plunge needles, each recording 6 bipolar electrograms through the myocardial wall. VT of Purkinje origin was defined as a focal endocardial VT with a Purkinje potential identified before muscle potential on the electrode recording the earliest activity. Purkinje potentials were identified on an average of 10 of the 21 plunge needles. During atrial pacing at cycle lengths of 300 to 700 ms, a total of 25 VTs were observed from 18 of the 48 dogs (37.5%). Of the VTs, 15 (60.0%) were of focal Purkinje origin, 1 (4.0%) of focal endocardial origin, 2 (8.0%) of focal midmyocardial origin, and 2 (8.0%) of focal epicardial origin; 3 (12.0%) had a reentrant mechanism, whereas in 2 (8.0%), the mechanism could not be defined. The mean cycle length of all VTs was 265+/-17 ms (mean+/-SEM, n=25). Of the 25 VTs, 19 originated from an ischemic area as defined by significant decreases in voltages of muscle electrograms at the time of occurrence of the VT, 4 originated from an ischemic border zone, and the origin of 2 could not be determined.

CONCLUSIONS

In this model, VT with a focal mechanism is commonly seen in the early ischemic period. Sixty percent of the VTs were of focal Purkinje origin as characterized by three-dimensional activation mapping. The results of this study indicate that Purkinje tissue may play an important role in the development of early ischemic VT.

摘要

背景

浦肯野系统在急性缺血期间自发性室性心动过速(VT)的发生中所起的作用一直受到怀疑但尚未得到证实。我们使用了一种结合浦肯野信号的三维激动标测系统,以在犬模型中冠状动脉闭塞后的最初30分钟内发生的自发性室速的机制和起源部位进行特征描述。

方法与结果

在48只犬中,用21根多极插入针将危险区植入仪器后,闭塞左前降支冠状动脉,每根针通过心肌壁记录6个双极电图。起源于浦肯野的室速被定义为局灶性心内膜室速,在记录最早激动的电极上,浦肯野电位在肌肉电位之前被识别。在21根插入针中,平均有10根识别出了浦肯野电位。在300至700毫秒的周期长度进行心房起搏期间,48只犬中的18只(37.5%)共观察到25次室速。在这些室速中,15次(60.0%)起源于局灶性浦肯野,1次(4.0%)起源于心内膜局灶,2次(8.0%)起源于心肌中层局灶,2次(8.0%)起源于心外膜局灶;3次(12.0%)有折返机制,而2次(8.0%)的机制无法确定。所有室速的平均周期长度为265±17毫秒(平均值±标准误,n = 25)。在25次室速中,19次起源于缺血区,定义为室速发生时肌肉电图电压显著降低,4次起源于缺血边缘区,2次的起源无法确定。

结论

在该模型中,局灶性机制的室速在早期缺血期常见。三维激动标测显示,60%的室速起源于局灶性浦肯野。本研究结果表明,浦肯野组织可能在早期缺血性室速的发生中起重要作用。

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