-
Multicenter Study
Effects of compression depth and pre-shock pauses predict defibrillation failure during cardiac arrest.
- Dana P Edelson, Benjamin S Abella, Jo Kramer-Johansen, Lars Wik, Helge Myklebust, Anne M Barry, Raina M Merchant, HoekTerry L VandenTL, Petter A Steen, and Lance B Becker.
- Section of General Internal Medicine, University of Chicago Hospitals, Chicago, IL 60637, United States.
- Resuscitation. 2006 Nov 1; 71 (2): 137-45.
BackgroundCardiopulmonary resuscitation (CPR) and electrical defibrillation are the primary treatment options for ventricular fibrillation (VF). While recent studies have shown that providing CPR prior to defibrillation may improve outcomes, the effects of CPR quality remain unclear. Specifically, the clinical effects of compression depth and pauses in chest compression prior to defibrillation (pre-shock pauses) are unknown.MethodsA prospective, multi-center, observational study of adult in-hospital and out-of-hospital cardiac resuscitations was conducted between March 2002 and December 2005. An investigational monitor/defibrillator equipped to measure compression characteristics during CPR was used.ResultsData were analyzed from 60 consecutive resuscitations in which a first shock was administered for VF. The primary outcome was first shock success defined as removal of VF for at least 5s following defibrillation. A logistic regression analysis demonstrated that successful defibrillation was associated with shorter pre-shock pauses (adjusted odds ratio 1.86 for every 5s decrease; 95% confidence interval 1.10-3.15) and higher mean compression depth during the 30s of CPR preceding the pre-shock pause (adjusted odds ratio 1.99 for every 5mm increase; 95% confidence interval 1.08-3.66).ConclusionsThe quality of CPR prior to defibrillation directly affects clinical outcomes. Specifically, longer pre-shock pauses and shallow chest compressions are associated with defibrillation failure. Strategies to correct these deficiencies should be developed and consideration should be made to replacing current-generation automated external defibrillators that require long pre-shock pauses for rhythm analysis.
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