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兔心脏冷却时的心室复极模式

Ventricular repolarization pattern under heart cooling in the rabbit.

作者信息

Azarov J E, Shmakov D N, Vityazev V A, Roshchevskaya I M, Arteyeva N V, Kharin S N, Roshchevsky M P

机构信息

Laboratory of Cardiac Physiology, Institute of Physiology, Komi Science Center, Ural Division, Russian Academy of Sciences, Syktyvkar, Russia.

出版信息

Acta Physiol (Oxf). 2008 Jun;193(2):129-38. doi: 10.1111/j.1748-1716.2008.01835.x. Epub 2008 Feb 18.

Abstract

AIM

Prolongation of ventricular repolarization is characteristic of myocardial cooling. In the present study, we investigated whether this prolongation is uniform or not throughout ventricular epicardium and how these hypothermia-induced changes express in the body surface potential distribution.

METHODS

Epicardial and body surface potential mapping from 64 unipolar leads was carried out in 18 anaesthetized adult rabbits. Mild hypothermia documented by lowering the mediastinal and rectal temperature from 38 to 32 degrees C was elicited by perfusion of the mediastinum with cooled saline. Activation times, repolarization times and activation-recovery intervals were determined in each epicardial lead.

RESULTS

Baseline activation-recovery intervals distributed non-uniformly on the ventricular epicardium, increasing progressively from the apex to the base and from the left ventricular (LV) sites to the right ventricular (RV) sites (P < 0.05), governing the repolarization sequence of ventricular epicardium. Heart cooling from 38 to 32 degrees C produced the heterogeneous prolongation of activation-recovery intervals which was more pronounced at the apex than at the base, and in the LV areas compared to the RV areas (P < 0.05). These nonuniform changes in local repolarization durations resulted in the development of base-to-apex repolarization sequence and inversion of the body surface potential distribution during the T wave.

CONCLUSION

Thus, under cooling the rabbit heart from 38 to 32 degrees C, the nonuniform prolongation of local repolarization durations resulted in the reversal of ventricular epicardial repolarization sequence which, in turn, was responsible for the inversion in the body surface potential distribution during the T wave.

摘要

目的

心室复极延长是心肌冷却的特征。在本研究中,我们调查了这种延长在整个心室心外膜是否均匀,以及这些低温诱导的变化在体表电位分布中如何表现。

方法

对18只麻醉的成年兔子进行64导联单极心外膜和体表电位标测。通过向纵隔灌注冷盐水使纵隔和直肠温度从38℃降至32℃,从而实现轻度低温。测定每个心外膜导联的激动时间、复极时间和激动-恢复间期。

结果

基线激动-恢复间期在心室心外膜上分布不均匀,从心尖到心底、从左心室部位到右心室部位逐渐增加(P<0.05),决定了心室心外膜的复极顺序。心脏温度从38℃降至32℃导致激动-恢复间期的不均匀延长,在心尖比心底更明显,在左心室区域比右心室区域更明显(P<0.05)。局部复极持续时间的这些不均匀变化导致了从心底到心尖的复极顺序的发展以及T波期间体表电位分布的倒置。

结论

因此,在将兔子心脏温度从38℃降至32℃时,局部复极持续时间的不均匀延长导致心室心外膜复极顺序的逆转,这反过来又导致了T波期间体表电位分布的倒置。

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