PulseExploreJournal ClubDebatesTrendingResearchersJournals
Instagram
HomeExploreJournal ClubTrending
Synapse
⌘+K
Synapse
November 1, 1974948 citations

Experimental pulmonary edema due to intermittent positive pressure ventilation with high inflation pressures. Protection by positive end-expiratory pressure.

View Full Paper
HWHanna WebbDTDonald F. Tierney

Key Points

  • This research aims to understand the effects of different ventilatory pressures on pulmonary edema in rats and the protective role of PEEP.
  • Ventilated normal, anesthetized rats using a small animal respirator at varying inspiratory and end-expiratory pressures.
  • Compared pathologic lung changes between control, intermittent positive pressure breathing, and high inspiratory positive pressure breathing groups.
  • Evaluated survival rates and pulmonary edema types in different pressure conditions.
  • HIPPB 45/0 led to alveolar and perivascular edema, severe hypoxemia, and death within one hour.
  • PEEP 45/10 animals maintained normal alveolar conditions and survival, despite high inspiratory pressures.
  • Both HIPPB 30/0 and PEEP 30/10 resulted in perivascular edema, but without severe outcomes.

Abstract

We used a small animal respirator to ventilate normal, anesthetized rats with room air at peak inspiratory pressures of 14, 30, or 45 cm H2O and no added end-expiratory pressures (intermittent positive pressure breathing IPPB 14/0, high inspiratory positive pressure breathing HIPPB 30/0, HIPPB 45/0). Other rats were ventilated with the same high inspiratory pressures but with an added end-expiratory pressure of 10 cm H2O (positive end-expiratory pressure PEEP 30/10, PEEP 45/10). Control rats that were not ventilated and the IPPB 14/0 group showed no pathologic lung changes. The HIPPB 30/0 and PEEP 30/10 groups had perivascular edema but no alveolar edema. The HIPPB 45/0 animals had alveolar and perivascular edema, severe hypoxemia, and decreased dynamic compliance and died within one hour. In contrast, the PEEP 45/10 animals had no alveolar edema and survived. We postulate that interstitial perivascular edema develops from ventilation with high inflating pressures by mechanisms of lung interdependen...

Ask AI
Helpful
Bookmark
Share
View Full Paper

Cite This Study

Webb et al. (1974) studied this question.

synapsesocial.com/papers/6a0255d4cd2189d558f6021fhttps://doi.org/10.1164/arrd.1974.110.5.556
Ask AI
Helpful
Bookmark
Share
View Full Paper