Effect of direct-current countershocks on regional myocardial contractility and perfusion. Experimental studies.
- 1 February 1981
- journal article
- research article
- Published by Wolters Kluwer Health in Circulation
- Vol. 63 (2) , 323-332
- https://doi.org/10.1161/01.cir.63.2.323
Abstract
Very high energy electrical countershocks can cause morphologic damage to the myocardium. In this study we searched for functional correlates of these shock-induced morphologic changes. We used ultrasonic sonomicrometers to measure myocardial contractility and radiolabeled microspheres to assess perfusion. Acute and chronic experiments were conducted in 45 dogs, assessing the effect of both direct (epicardial) and transthoracic shocks on beating and fibrillating hearts. High-energy or rapidly repeated epicardial shocks caused subepicardial contraction abnormalities. This indicates that electrical current delivered to the myocardium in sufficiently high amounts and concentration can cause functional damage. Thus, in open-chest defibrillation during cardiac surgery, low energies (10-20 J) should be used initially and higher energies resorted to only if lower-energy shocks fail. However, single and multiple transthoracic shocks up to 460 J delivered energy caused no detectable contraction abnormalities. Myocardial perfusion did not fall after shocks. Thus, high-energy transthoracic shocks may have no deleterious effects on the contraction and perfusion of normal myocardium.This publication has 11 references indexed in Scilit:
- Open chest defibrillation during cardiac surgery: Energy and current requirementsThe American Journal of Cardiology, 1980
- Cardiac damage produced by direct current countershock applied to the heartThe American Journal of Cardiology, 1979
- Electrical energy requirements for ventricular defibrillation.Heart, 1978
- The Energy for Ventricular Defibrillation — Too Little or Too Much?New England Journal of Medicine, 1978
- Cardioversion and "false positive" technetium-99m stannous pyrophosphate myocardial scintigrams.Circulation, 1976
- Effects of electrical countershock on serum creatine phosphokinase (CPK) isoenzyme activityThe American Journal of Cardiology, 1976
- Regional Myocardial Function during Acute Coronary Artery Occlusion and Its Modification by Pharmacologic Agents in the DogCirculation Research, 1974
- Electrical Dose for Ventricular Defibrillation of Large and Small Animals Using Precordial ElectrodesJournal of Clinical Investigation, 1974
- Transthoracic impedance to defibrillator discharge. Effect of electrode size and electrode-chest wall interfaceJournal of Electrocardiology, 1973
- Hemodynamic effects of ventricular defibrillationJournal of Clinical Investigation, 1970