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比较用金属微电极和玻璃微电极记录的心脏动作电位。

Comparing cardiac action potentials recorded with metal and glass microelectrodes.

作者信息

Omichi C, Lee M H, Ohara T, Naik A M, Wang N C, Karagueuzian H S, Chen P S

机构信息

Division of Cardiology, Department of Medicine, Cedars-Sinai Medical Center and University of California Los Angeles School of Medicine, Los Angeles, California 90048, USA.

出版信息

Am J Physiol Heart Circ Physiol. 2000 Dec;279(6):H3113-7. doi: 10.1152/ajpheart.2000.279.6.H3113.

Abstract

Machine-pulled high-impedance glass capillary microelectrode is standard for transmembrane potential (TMP) recordings. However, it is fragile and difficult to impale, especially in beating myocardial tissues. We hypothesize that a high-impedance pure iridium metal electrode can be used as an alternative to the glass microelectrode for TMP recording. The TMPs were simultaneously recorded from isolated perfused swine right ventricles with a metal microelectrode and a standard glass microelectrode during pacing and during ventricular fibrillation. The basic morphology of TMP recorded with these electrodes was comparable. The action potential duration (APD) at 90% repolarization was 241 +/- 29 ms for the metal microelectrode and 236 +/- 31 ms for the glass microelectrode with a good correlation (r = 0.99, P < 0.0001). The maximum slope value of the APD restitution curves during pacing was also significantly correlated. One metal microelectrode and >20 glass microelectrodes were needed per study. We conclude that, in isolated perfused swine right ventricles, the TMP recorded by the metal microelectrode is comparable with that recorded by the glass microelectrode. Because the metal microelectrode is more durable than the glass microelectrode, it can serve as an alternative for APD recording and for restitution analyses.

摘要

机械牵拉式高阻抗玻璃微电极是记录跨膜电位(TMP)的标准电极。然而,它很脆弱且难以刺入,尤其是在搏动的心肌组织中。我们推测高阻抗纯铱金属电极可作为玻璃微电极的替代品用于TMP记录。在起搏和室颤期间,用金属微电极和标准玻璃微电极同时记录离体灌注猪右心室的TMP。用这些电极记录的TMP的基本形态具有可比性。金属微电极在90%复极化时的动作电位持续时间(APD)为241±29毫秒,玻璃微电极为236±31毫秒,相关性良好(r = 0.99,P < 0.0001)。起搏期间APD恢复曲线的最大斜率值也显著相关。每项研究需要一个金属微电极和超过20个玻璃微电极。我们得出结论,在离体灌注猪右心室中,金属微电极记录的TMP与玻璃微电极记录的相当。由于金属微电极比玻璃微电极更耐用,它可作为APD记录和恢复分析的替代品。

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