Optimal PEEP during one-lung ventilation with capnothorax: An experimental study.

Reinius, Henrik; Borges, Joao Batista; Engström, Joakim; Ahlgren, Oskar; Lennmyr, Fredrik; Larsson, Anders; Fredén, Filip · Acta Anaesthesiol Scand · 2019

basic_science · Level V

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Abstract

One-lung ventilation (OLV) with induced capnothorax carries the risk of severely impaired ventilation and circulation. Optimal PEEP may mitigate the physiological perturbations during these conditions. Right-sided OLV with capnothorax (16 cm H<sub>2</sub> O) on the left side was initiated in eight anesthetized, muscle-relaxed piglets. A recruitment maneuver and a decremental PEEP titration from PEEP 20 cm H<sub>2</sub> O to zero end-expiratory pressure (ZEEP) was performed. Regional ventilation and perfusion were studied with electrical impedance tomography and computer tomography of the chest was used. End-expiratory lung volume and hemodynamics were recorded and. PaO<sub>2</sub> peaked at PEEP 12 cm H<sub>2</sub> O (49 ± 14 kPa) and decreased to 11 ± 5 kPa at ZEEP (P < 0.001). PaCO<sub>2</sub> was 9.5 ± 1.3 kPa at 20 cm H<sub>2</sub> O PEEP and did not change when PEEP step-wise was reduced to 12 cm H<sub>2</sub> O PaCO<sub>2.</sub> At lower PEEP, PaCO<sub>2</sub> increased markedly. The ventilatory driving pressure was lowest at PEEP 14 cm H<sub>2</sub> O (19.6 ± 5.8 cm H<sub>2</sub> O) and increased to 38.3 ± 6.1 cm H<sub>2</sub> O at ZEEP (P < 0.001). When reducing PEEP below 12-14 cm H<sub>2</sub> O ventilation shifted from the dependent to the nondependent regions of the ventilated lung (P = 0.003), and perfusion shifted from the ventilated to the nonventilated lung (P = 0.02). Optimal PEEP was 12-18 cm H<sub>2</sub> O and probably relates to capnothorax insufflation pressure. With suboptimal PEEP, ventilation/perfusion mismatch in the ventilated lung and redistribution of blood flow to the nonventilated lung occurred.

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