Clinical and experimental studies on electromechanical dissociation.

Author:

Vincent J L,Thijs L,Weil M H,Michaels S,Silverberg R A

Abstract

Electromechanical dissociation (EMD) is the most frequent cause of unsuccessful cardiac resuscitation in critically ill patients. In a clinical study of cardiac arrest, including 54 episodes in 50 fully monitored patients, 14 episodes of ventricular fibrillation were observed and seven were reversed. In the remaining 40 instances, 36 cases of EMD were initially observed. Four patients had asystole. None of the patients with EMD or asystole were successfully resuscitated. For objective study of EMD and its treatment, we developed an experimental model in which ventricular fibrillation was induced in mechanically ventilated dogs. EMD was predictably observed when, after an interval of 120 seconds, ventricular fibrillation was reversed with an external countershock. Neither metabolic acidosis nor metabolic alkalosis modified the incidence of EMD. A few dogs were pretreated with glucose-insulin-potassium or pharmacologic doses of methylprednisolone, but this did not clearly reduce the incidence of EMD. However, the onset of EMD was delayed when the body temperature of the animal was spontaneously reduced.

Publisher

Ovid Technologies (Wolters Kluwer Health)

Subject

Physiology (medical),Cardiology and Cardiovascular Medicine

Reference26 articles.

1. McCall MM III: Cardiac arrest and its treatment. In The Heart 4th ed edited by Hurst JW. New York McGraw-Hill 1978 ch 50

2. Diagnostic considerations in electromechanical dissociation (editorial);Friedman HS;Am J Cardiol,1979

3. Boycks EC Weil MH Shubin H: Monitoring the critically ill patient. Journees d'Informatique Medicale 1973 tome 1: Textes des Communications: Surveillance des Malades Aigus

4. Standards for cardiopulmonary resuscitation (CPR) and emergency cardiac care (ECC). JAMA 227 (suppl): 833 1974

5. Clinical Use of a Nomogram to Estimate Proper Ventilation during Artificial Respiration

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