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低温时的心脏电生理学。对医学治疗的启示。

Cardiac electrophysiology during hypothermia. Implications for medical treatment.

作者信息

Bjørnstad H, Tande P M, Refsum H

机构信息

Department of Medical Physiology, IMB, University of Tromsø, Norway.

出版信息

Arctic Med Res. 1991;50 Suppl 6:71-5.

PMID:1811584
Abstract

Reduction in body temperature induces characteristic electrophysiological and mechanical alterations of the heart. The heart rate is markedly reduced. Myocardial conduction is slowed, partly due to reduced rate of depolarization of the action potential, and is reflected by widening of the QRS-complex in the ECG. There is also a fall in resting membrane potential. Action potential duration and refractory period are markedly lengthened during hypothermia, attributed to delayed repolarization. This is reflected by increased QT-time in the ECG. Since action potential duration changes significantly even after as small temperature changes as 1 to 2 degrees C, nonuniform cooling or rewarming of the heart may cause significant dispersion of conduction, action potential duration and refractoriness in the myocardium. This dispersion may cause unidirectional block, hence creating a substrate for reentry atrial and ventricular arrhythmias, and may be an important mechanism for explaining the hypothermia-associated arrhythmias. Class III antiarrhythmic drugs such as d-sotalol lengthen long action potentials at low temperatures to a greater extent than the shorter action potentials at higher temperatures. This may further increase dispersion and thereby the tendency towards arrhythmias. Sotalol as an example, shows that some antiarrhythmic drugs may have increased arrhythmogenic effect and should probably be contraindicated during hypothermia.

摘要

体温降低会引发心脏特征性的电生理和机械改变。心率显著降低。心肌传导减慢,部分原因是动作电位去极化速率降低,这在心电图中表现为QRS波群增宽。静息膜电位也会下降。体温过低时,动作电位持续时间和不应期会显著延长,这归因于复极化延迟。这在心电图中表现为QT间期延长。由于即使体温仅变化1至2摄氏度,动作电位持续时间也会发生显著变化,因此心脏的不均匀冷却或复温可能会导致心肌传导、动作电位持续时间和不应期出现显著离散。这种离散可能会导致单向阻滞,从而为房性和室性折返性心律失常创造条件,并且可能是解释低温相关性心律失常的重要机制。III类抗心律失常药物,如d-索他洛尔,在低温时对较长动作电位的延长程度大于对较高温度下较短动作电位的延长程度。这可能会进一步增加离散度,从而增加心律失常的倾向。以索他洛尔为例,表明一些抗心律失常药物可能具有增加致心律失常的作用,在体温过低时可能应禁用。

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