Background: The optimal tidal volume (VT) during Cardio-Pulmonary Resuscitation (CPR) remains unknown. Capnogram could permit to detect ventilation induced harmful effect.
Objectives: The objectives of the present study were to describe the impact of different VT on hemodynamics during CPR; and to evaluate whether capnogram analysis can assess the influence of ventilation on circulation.
Methods: Eighteen pigs had five minutes of untreated ventricular fibrillation followed by CPR with automated continuous chest compressions and ventilation settings randomly combining VT 6, 10 or 14 ml/kg. Capnograms were recorded to determine thoracic distension patterns. After return of spontaneous circulation (ROSC), all surviving animals were ventilated 2 h and lungs were withdrawn for histological analysis.
Results: VT was associated with differences in the hemodynamic parameters studied. VT at 6 or 14 ml/kg graphically showed poorer cerebral and coronary perfusion pressures and mean arterial pressure than a VT at 10 ml/kg. The capnogram could distinguish three levels of thoracic distension. Thoracic distension was associated with differences in the hemodynamic parameters studied. Animals with either low or high distension showed poorer cerebral and coronary perfusion pressures and mean arterial pressure than those with moderate distension. ROSC was obtained in 13 (72%) animals. Histology showed that both low and high VT was associated with a trend towards higher lung damage.
Conclusions: In this animal study, a U-shaped relationship observed with VT suggests that both small and large VT may impair circulation. Capnogram analysis could contribute to identify ventilation settings associated with hemodynamic compromise.
Keywords: Airway closure; CO(2) pattern; Capnogram; Cardiopulmonary resuscitation; Thoracic distension; Tidal volume.
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