4.3 Article

Electrical impedance tomography monitoring in acute respiratory distress syndrome patients with mechanical ventilation during prolonged positive end-expiratory pressure adjustments

Journal

JOURNAL OF THE FORMOSAN MEDICAL ASSOCIATION
Volume 115, Issue 3, Pages 195-202

Publisher

ELSEVIER TAIWAN
DOI: 10.1016/j.jfma.2015.03.001

Keywords

acute respiratory distress syndrome; electrical impedance tomography; positive end-expiratory pressure

Funding

  1. National Science Council (NSC) [101-2320-B-006 -002 -MY2]

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Background/purpose: The time required to reach oxygenation equilibrium after positive endexpiratory pressure (PEEP) adjustments in mechanically ventilated patients with acute respiratory distress syndrome (ARDS) is unclear. We used electrical impedance tomography to elucidate gas distribution and factors related to oxygenation status following PEEP in patients with ARDS. Methods: Nineteen mechanically ventilated ARDS patients were placed on baseline PEEP (PEEPB) for 1 hour, PEEPB - 4 cmH(2)OPEEP (PEEPL) for 30 minutes, and PEEPB + 4cmH(2)OPEEP (PEEPH) for 1 hour. Tidal volume and respiratory rate were similar. Impedance changes, respiratory parameters, and arterial blood gases were measured at baseline, 5 minutes, and 30 minutes after PEEPL, and 5 minutes, 15 minutes, 30 minutes, and 1 hour after PEEPH. Results: PaO2/fraction of inspired oxygen (P/F ratio) decreased quickly from PEEPB to PEEPL, and stabilized 5 minutes after PEEPL. However the P/F ratio progressively increased from PEEPL to PEEPH, and a significantly higher P/F ratio and end-expiratory lung impedance were found at 60 minutes compared to 5 minutes after PEEPH. The end-expiratory lung impedance level significantly correlated with P/F ratio (p < 0.001). With increasing PEEP, dorsal ventilation significantly increased; however, regional ventilation did not change over time with PEEP level. Conclusion: Late improvements in oxygenation following PEEP escalation are probably due to slow recruitment in ventilated ARDS patients. Electrical impedance tomography may be an appropriate tool to assess recruitment and oxygenation status in patients with changes in PEEP. Copyright (C) 2015, Formosan Medical Association. Published by Elsevier Taiwan LLC.

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