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August 1, 1982AJP Heart and Circulatory Physiology84 citations

K+o accumulation and electrophysiological alterations during early myocardial ischemia

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JWJames N. WeissElectrophysiologyKSK. I. ShineUniversity of California, Los Angeles

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Abstract

Double-barreled valinomycin K+-sensitive electrodes and floating microelectrodes were used to monitor extracellular K+ concentration (K+o) and intracellular potential, respectively, in the isolated arterially perfused rabbit interventricular septum, under conditions of global ischemia without collateral flow and hypoxia with maintained flow. During ischemia K+o reproducibly increased at rates of 0.5-1 mM/min, usually in a triphasic pattern, and was accompanied by shortening of the action potential duration (APD) and an increase in conduction time (CT). Hyperkalemia, equivalent to that occurring during ischemia, in combination with respiratory acidosis (pH 6.2-6.5) and catecholamines reproduced quantitatively the ischemia-induced changes in APD and CT. None of these factors alone produced quantitatively comparable electrophysiological changes. Faster heart rates increased K+o accumulation during ischemia and accentuated the changes in APD and CT during ischemia. These findings suggest that local hyperkalemia, intracellular acidosis, and catecholamines release during early ischemia may account for electrophysiological changes predisposing to the development of reentrant arrhythmias.

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Cite This Study

Weiss et al. (1982) studied this question.

synapsesocial.com/papers/6a7e5158410afd830ac76be8https://doi.org/10.1152/ajpheart.1982.243.2.h318
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Extracellular K+ accumulation during myocardial ischemia in isolated rabbit heart1982 · 117 citations
  2. 2Differential effects of ischaemia and hyperkalaemia on myocardial repolarization and conduction times in the dog.1984 · 11 citations
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  4. 4Regional increase of extracellular potassium leads to electrical instability and reentry occurrence through the spatial heterogeneity of APD restitution2011 · 16 citations
  5. 5Effects of some components of ischemia on electrical activity and reentry in the canine ventricular conducting system.1979 · 26 citations