Modified volumetric capnography-derived parameter: A potentially stable indicator in monitoring cardiopulmonary resuscitation efficacy in a porcine model.

Xu, Jun; Yu, Xuezhong; Zhang, Lili; Fu, Yangyang; Jin, Kui; Yin, Lu; Yu, Shanshan; Liu, Danyu · Resuscitation · 2020

basic_science · Level V

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Abstract

We aimed to investigate whether the ability of the volumetric capnography-derived parameter, the volume of CO<sub>2</sub> eliminated per minute and per kg body weight (V'CO<sub>2</sub> kg<sup>-1</sup>), in monitoring the quality of CPR and predicting the return of spontaneous circulation (ROSC) remains undisturbed by hyperventilation. This randomised crossover study included 12 male domestic pigs. After 4 min of untreated ventricular fibrillation, mechanical CPR was administered. Following 5-min washout periods, each animal underwent two sessions of experiments; four 5-min ventilation trials followed by advanced life support, consecutively in the two sessions. Different ventilation types had no significant impact on V'CO<sub>2</sub> kg<sup>-1</sup> or haemodynamics. However, PETCO<sub>2</sub> was significantly affected by the ventilation type and coronary perfusion pressure (P < 0.05). The means ± standard deviations of PETCO<sub>2</sub> decreased linearly with an increase in the respiratory rate (RR) (P < 0.05). The PETCO<sub>2</sub> decreased from 20.42 ± 9.51 to 16.16 ± 5.07 (P < 0.05) as the tidal volume increased from 10 to 20 mL min<sup>-1</sup>. No significant differences in V'CO<sub>2</sub> kg<sup>-1</sup> were observed between the three RR levels of ventilation types (P = 0.274). Post hoc analysis demonstrated a significant difference between the highest value of V'CO<sub>2</sub> kg<sup>-1</sup> in double tidal volume hyperventilation and normal ventilation and triple respiratory rate hyperventilation (P < 0.05). The AUC for V'CO<sub>2</sub> kg<sup>-1</sup> and PETCO<sub>2</sub> in discriminating between survivors and non-survivors was 0.80 and 0.71, respectively. V'CO<sub>2</sub> kg<sup>-1</sup> performs better than PETCO<sub>2</sub> in monitoring the quality of CPR during hyperventilation. In predicting ROSC during variations in a ventilation state, V'CO<sub>2</sub> kg<sup>-1</sup> has good predictive ability.

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