Short-term effects of positive end-expiratory pressure on breathing pattern: an interventional study in adult intensive care patients

Crit Care. 2005 Aug;9(4):R407-15. doi: 10.1186/cc3735. Epub 2005 Jun 9.

Abstract

Introduction: Positive end-expiratory pressure (PEEP) is used in mechanically ventilated patients to increase pulmonary volume and improve gas exchange. However, in clinical practice and with respect to adult, ventilator-dependent patients, little is known about the short-term effects of PEEP on breathing patterns.

Methods: In 30 tracheally intubated, spontaneously breathing patients, we sequentially applied PEEP to the trachea at 0, 5 and 10 cmH2O, and then again at 5 cmH2O for 30 s each, using the automatic tube compensation mode.

Results: Increases in PEEP were strongly associated with drops in minute ventilation (P < 0.0001) and respiratory rate (P < 0.0001). For respiratory rate, a 1 cmH2O change in PEEP in either direction resulted in a change in rate of 0.4 breaths/min. The effects were exclusively due to changes in expiratory time. Effects began to manifest during the first breath and became fully established in the second breath for each PEEP level. Identical responses were found when PEEP levels were applied for 10 or 60 s. Post hoc analysis revealed a similar but stronger response in patients with impaired respiratory system compliance.

Conclusion: In tracheally intubated, spontaneously breathing adult patients, the level of PEEP significantly influences the resting short-term breathing pattern by selectively affecting expiratory time. These findings are best explained by the Hering-Breuer inflation/deflation reflex.

Publication types

  • Clinical Trial
  • Research Support, Non-U.S. Gov't

MeSH terms

  • Adult
  • Aged
  • Carbon Dioxide / metabolism
  • Critical Care / methods*
  • Exhalation
  • Female
  • Humans
  • Inhalation
  • Intubation, Intratracheal
  • Lung Compliance
  • Male
  • Middle Aged
  • Positive-Pressure Respiration / methods*
  • Respiratory Mechanics*
  • Tidal Volume

Substances

  • Carbon Dioxide