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在离体猫心室缺血期间同时记录心内膜和心外膜的动作电位:时间电生理异质性与心律失常的关系。

Simultaneous recording of action potentials from endocardium and epicardium during ischemia in the isolated cat ventricle: relation of temporal electrophysiologic heterogeneities to arrhythmias.

作者信息

Kimura S, Bassett A L, Kohya T, Kozlovskis P L, Myerburg R J

出版信息

Circulation. 1986 Aug;74(2):401-9. doi: 10.1161/01.cir.74.2.401.

Abstract

We studied the effects of ischemia on transmembrane action potentials, conduction time, and refractory periods of both endocardial and epicardial muscle cells of coronary-perfused cat left ventricles. Oxygenated Tyrode's solution was perfused through the left anterior descending coronary artery, while the preparation was superfused with Tyrode's solution gassed with 95% N2 and 5% CO2. Transmembrane action potentials recorded simultaneously from endocardial and epicardial cells were normal during coronary perfusion. When perfusion was discontinued ("ischemia"), rapid deterioration of action potentials and prolongation of conduction time were observed in both endocardial and epicardial cells. The magnitude of the reduction of action potential amplitude and action potential duration (APD), and of prolongation of conduction time, was greater in epicardial cells than in endocardial cells, although the change in resting membrane potential was almost the same. However, APD of endocardial cells decreased progressively during 30 min of ischemia, whereas APD of epicardial cells was reduced maximally at 10 min and then partially recovered. Shortening of refractory periods of endocardial cells paralleled APD shortening, whereas refractory periods of epicardial cells decreased for the first 10 min and then increased. At 10 min of ischemia, APD and refractory periods of epicardial cells were significantly shorter than those of endocardial cells. At 30 min of ischemia, refractory periods of epicardial cells exceeded those of endocardial cells because of development of greater postrepolarization refractoriness in epicardial cells. Accompanying these different changes in APD and refractory periods of endocardial and epicardial cells, spontaneous extrasystolic impulses increased and rapid runs of extrasystolic impulses could be induced by extrastimuli.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

我们研究了缺血对冠状动脉灌注猫左心室心内膜和心外膜肌细胞跨膜动作电位、传导时间和不应期的影响。用含氧的台氏液通过左冠状动脉前降支进行灌注,同时用含95%氮气和5%二氧化碳的台氏液对标本进行表面灌注。在冠状动脉灌注期间,同时记录的心内膜和心外膜细胞的跨膜动作电位正常。当灌注停止(“缺血”)时,在心内膜和心外膜细胞中均观察到动作电位迅速恶化和传导时间延长。尽管静息膜电位的变化几乎相同,但心外膜细胞动作电位幅度和动作电位时程(APD)的降低幅度以及传导时间的延长幅度比心内膜细胞更大。然而,缺血30分钟内心内膜细胞的APD逐渐降低,而心外膜细胞的APD在10分钟时最大程度降低,然后部分恢复。心内膜细胞不应期的缩短与APD的缩短平行,而心外膜细胞的不应期在前10分钟缩短,然后延长。在缺血10分钟时,心外膜细胞的APD和不应期明显短于心内膜细胞。在缺血30分钟时,由于心外膜细胞复极后不应期增强,心外膜细胞的不应期超过心内膜细胞。伴随着心内膜和心外膜细胞APD和不应期的这些不同变化,自发性早搏冲动增加,额外刺激可诱发快速的早搏冲动发作。(摘要截断于250字)

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