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心率对原位猪心脏急性缺血期间传导速度和细胞外钾离子浓度变化的影响。

Effect of rate on changes in conduction velocity and extracellular potassium concentration during acute ischemia in the in situ pig heart.

作者信息

Harper J R, Johnson T A, Engle C L, Martin D G, Fleet W, Gettes L S

机构信息

Division of Cardiology, University of North Carolina, Chapel Hill 27599.

出版信息

J Cardiovasc Electrophysiol. 1993 Dec;4(6):661-71. doi: 10.1111/j.1540-8167.1993.tb01252.x.

Abstract

INTRODUCTION

The purpose of our study was to determine if the slowing of longitudinal intraventricular conduction in the in situ porcine heart during acute regional no-flow ischemia was rate dependent. Further, we investigated whether any rate dependence could be correlated to a rate-dependent component of the ischemia-induced rise in extracellular potassium concentration, [K+]e.

METHODS AND RESULTS

We studied in situ hearts in nine anesthetized open chest pigs in which acute no-flow ischemia was induced by occlusion of the left anterior descending coronary artery. To determine the effects of steady-state rate on the slowing of conduction and rise in [K+]e during ischemia, we varied the rate of stimulation during sequential occlusions from 90 to 150 beats/min. Longitudinal conduction velocity was determined by unipolar electrodes embedded in a plaque that was sutured to the epicardial surface in the center of the ischemic zone. Myocardial [K+]e was determined simultaneously by potassium-sensitive electrodes placed at or within 1 to 2 mm of the epicardium in close proximity to the activation recording electrodes. Conduction velocity decreased more rapidly at the more rapid rates of stimulation although the reduction in conduction velocity occurring prior to the onset of conduction block was similar at both rates. The potassium change was not rate dependent and rose at the same rate regardless of the rate of stimulation.

CONCLUSION

Our study demonstrates that the steady-state rate-dependent component of the slowing of intraventricular conduction induced by acute ischemia in the in situ porcine heart occurs in the absence of a rate-dependent component in the rise of [K+]e. Between rates of 90 and 150 beats/min, the rate dependence of the conduction slowing may be attributed to one or more potassium-independent factors such as the rate-dependent changes in resting membrane potential, in Vmax of the action potential upstroke, and in cell-to-cell uncoupling, which have been observed in other models of acute ischemia.

摘要

引言

我们研究的目的是确定在急性局部无血流缺血期间,原位猪心脏室内纵向传导减慢是否与心率有关。此外,我们还研究了这种心率依赖性是否与缺血诱导的细胞外钾离子浓度升高([K⁺]e)的心率依赖性成分相关。

方法与结果

我们对9只麻醉开胸猪的原位心脏进行了研究,通过阻塞左前降支冠状动脉诱导急性无血流缺血。为了确定稳态心率对缺血期间传导减慢和[K⁺]e升高的影响,我们在连续阻塞期间将刺激频率从90次/分钟变化到150次/分钟。纵向传导速度由嵌入斑块中的单极电极测定,该斑块缝合在缺血区中心的心外膜表面。心肌[K⁺]e通过放置在心外膜处或距心外膜1至2毫米内、紧邻激活记录电极的钾敏感电极同时测定。尽管在两种心率下传导阻滞发生前传导速度的降低相似,但在更快的刺激频率下传导速度下降得更快。钾离子变化与心率无关,无论刺激频率如何,其升高速度相同。

结论

我们的研究表明,原位猪心脏急性缺血诱导的室内传导减慢的稳态心率依赖性成分在[K⁺]e升高不存在心率依赖性成分的情况下发生。在90至150次/分钟的心率之间,传导减慢的心率依赖性可能归因于一个或多个与钾离子无关的因素,如静息膜电位、动作电位上升支的最大速率以及细胞间去耦联的心率依赖性变化,这些在其他急性缺血模型中已被观察到。

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