The impact of ventilation rate on end-tidal carbon dioxide level during manual cardiopulmonary resuscitation.

Ruiz de Gauna, Sofía; Gutiérrez, Jose Julio; Ruiz, Jesus; Leturiondo, Mikel; Azcarate, Izaskun; González-Otero, Digna María; Corcuera, Carlos; Russell, James Knox et al. · Resuscitation · 2020

retrospective_cohort · Level III

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Abstract

Ventilation rate is a confounding factor for interpretation of end-tidal carbon dioxide (ETCO<sub>2</sub>) during cardiopulmonary resuscitation (CPR). The aim of our study was to model the effect of ventilation rate on ETCO<sub>2</sub> during manual CPR in adult out-of-hospital cardiac arrest (OHCA). We conducted a retrospective analysis of OHCA monitor-defibrillator files with concurrent capnogram, compression depth, transthoracic impedance and ECG. We annotated pairs of capnogram segments presenting differences in average ventilation rate and average ETCO<sub>2</sub> value but with other influencing factors (e.g. compression rate and depth) presenting similar values within the pair. ETCO<sub>2</sub> variation as a function of ventilation rate was adjusted through curve fitting using non-linear least squares as a measure of goodness of fit. A total of 141 pairs of segments from 102 patients were annotated. Each pair provided a single data point for curve fitting. The best goodness of fit yielded a coefficient of determination R<sup>2</sup> of 0.93. Our model described that ETCO<sub>2</sub> decays exponentially with increasing ventilation rate. The model showed no differences attributable to the airway type (endotracheal tube or supraglottic King-LT-D). Capnogram interpretation during CPR is challenging since many factors influence ETCO<sub>2</sub>. For adequate interpretation, we need to know the effect of each factor on ETCO<sub>2</sub>. Our model allows quantifying the effect of ventilation rate on ETCO<sub>2</sub> variation. Our findings could contribute to better interpretation of ETCO<sub>2</sub> during CPR.

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