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交感神经对犬心脏电交替和机械交替的影响。

Sympathetic influences on electrical and mechanical alternans in the canine heart.

作者信息

Euler D E, Guo H, Olshansky B

机构信息

Department of Medicine, Loyola University Medical Center, Maywood, IL 60153, USA.

出版信息

Cardiovasc Res. 1996 Nov;32(5):854-60.

PMID:8944816
Abstract

OBJECTIVE

The aim was to investigate the influence of the sympathetic nervous system on the induction of mechanical and electrical alternans in the intact canine heart.

METHODS

Experiments were performed on 8 open-chest dogs anesthetized with sodium pentobarbital. A micromanometer-tipped catheter was used to measure left ventricular pressure, dp/dt and the time constant of isovolumic relaxation. Rapid atrial pacing was used to induce alternans and the left stellate ganglion was stimulated electrically to alter sympathetic tone. The longest pacing cycle length that showed a significant alternation in peak systolic pressure was defined as the alternans threshold. Electrical alternans was detected by comparing the ST-T area in the surface ECG (lead II) on alternate beats.

RESULTS

The alternans threshold was 305(s.e.m. 10.4) ms under control conditions and decreased to 271(12.1), 225(33.4), and 177(6.2)ms, as the frequency of left stellate stimulation was increased to 1, 2, and 5 Hz, respectively (P < 0.001). Tau and peak -dp/dt began to alternate at the same pacing cycle length as peak +dp/dt and peak systolic pressure. Electrical alternans was only observed during mechanical alternans and the ST-T area of the strong beat was 243(143)% greater than the ST-T area of the weak beat (P < 0.001). Timolol (1 mg.kg-1) blocked the effect of left stellate stimulation (1 and 2 Hz) on mechanical and electrical alternans.

CONCLUSIONS

Left sympathetic activation causes a frequency-dependent reduction in the threshold cycle length for global mechanical and electrical alternans. Alternation in relaxation occurs at the same pacing cycle length as does alternation in contraction. Repolarization alternans in the surface ECG appears to reflect underlying mechanical events.

摘要

目的

研究交感神经系统对完整犬心机械和电交替现象诱发的影响。

方法

对8只戊巴比妥钠麻醉的开胸犬进行实验。使用微测压导管测量左心室压力、dp/dt和等容舒张时间常数。采用快速心房起搏诱发交替现象,并电刺激左星状神经节以改变交感神经张力。将收缩压峰值出现显著交替的最长起搏周期长度定义为交替阈值。通过比较体表心电图(II导联)中交替心搏的ST-T面积来检测电交替现象。

结果

在对照条件下,交替阈值为305(标准误10.4)ms,随着左星状神经节刺激频率分别增加到1、2和5Hz,交替阈值分别降至271(12.1)、225(33.4)和177(6.2)ms(P<0.001)。Tau和峰值-dp/dt与峰值+dp/dt和收缩压峰值在相同的起搏周期长度开始交替。仅在机械交替期间观察到电交替现象,强心搏的ST-T面积比弱心搏的ST-T面积大243(143)%(P<0.001)。噻吗洛尔(1mg·kg-1)可阻断左星状神经节刺激(1和2Hz)对机械和电交替现象的影响。

结论

左交感神经激活导致整体机械和电交替现象的阈值周期长度呈频率依赖性降低。舒张期交替与收缩期交替发生在相同的起搏周期长度。体表心电图中的复极交替似乎反映了潜在的机械事件。

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