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完整工作心脏中光学动作电位和NADH荧光图谱。

Maps of optical action potentials and NADH fluorescence in intact working hearts.

作者信息

Salama G, Lombardi R, Elson J

出版信息

Am J Physiol. 1987 Feb;252(2 Pt 2):H384-94. doi: 10.1152/ajpheart.1987.252.2.H384.

Abstract

Voltage-sensitive dyes were used to stain intact perfused hearts and to simultaneously measure optical action potentials (APs) from 124 sites on the epicardium. Patterns of electrical depolarization (activation) and repolarization (recovery) along the surface of the heart were determined from the upstrokes and repolarization phases of optical APs. Standard surface extracellular techniques can detect electrical activation but not the recovery or the duration of APs. The optical recordings were previously shown to be equivalent to intracellular electrode measurements (Salama and Morad, Science Wash. DC 191: 485-487, 1976) and now reveal that AP durations are heterogeneous throughout the epicardium, with durations increasing from the base to the apex of the ventricles. In hearts beating under normal sinus rhythm, the direction and conduction velocity of the activation waves could be altered by electrical stimulation. The normal heterogeneities in AP durations became more pronounced in the presence of the Ca2+-entry blocker, verapamil. The local metabolic state of the tissue was also monitored optically through its intrinsic NADH fluorescence measured from 124 separate regions on the heart. The time course and extent of metabolic injury caused by general anoxia or by a local ischemia induced by a coronary ligation was monitored through maps of NADH fluorescence. The present technique makes it possible to correlate changes in the metabolic state of the muscle with detailed changes in patterns of electrical activity and thus provides a powerful new tool to study fundamental aspects of normal and abnormal cardiac rhythm.

摘要

电压敏感染料被用于对完整的灌注心脏进行染色,并同时测量心外膜124个位点的光学动作电位(APs)。根据光学动作电位的上升支和复极化阶段,确定沿心脏表面的电去极化(激活)和复极化(恢复)模式。标准的表面细胞外技术可以检测电激活,但不能检测动作电位的恢复或持续时间。先前已证明光学记录等同于细胞内电极测量(萨拉马和莫拉德,《科学》华盛顿特区191: 485 - 487, 1976),现在揭示出动作电位持续时间在整个心外膜是异质的,从心室底部到心尖持续时间增加。在正常窦性心律下跳动的心脏中,激活波的方向和传导速度可通过电刺激改变。在存在钙通道阻滞剂维拉帕米的情况下,动作电位持续时间的正常异质性变得更加明显。还通过从心脏上124个独立区域测量的组织固有NADH荧光,对组织的局部代谢状态进行光学监测。通过NADH荧光图谱监测由全身缺氧或冠状动脉结扎诱导局部缺血引起的代谢损伤的时间进程和程度。本技术使得将肌肉代谢状态的变化与电活动模式的详细变化相关联成为可能,从而为研究正常和异常心律的基本方面提供了一个强大的新工具。

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