Influence of prone position on gastric mucosal-arterial PCO2 gradients.
prospective_cohort · Level II
Where this comes from
- Record sourced from PubMed, PMID 11534573.
- No licence information is recorded for this record.
- Because redistribution is not established, this page shows the abstract only. Follow the links below for the full text.
Abstract
To evaluate the effects of mechanical ventilation in the prone position on gastric mucosal-arterial PCO2 gradients. Prospective clinical study. Intensive care unit in a university clinic. Twenty-five patients requiring mechanical ventilation. The physician in charge indicated the turning manoeuver for the individual patient. In addition to routine measurements of global hemodynamics and gas exchange we determined: 1) intragastric pressure; and 2) gastric mucosal-arterial PCO2 difference. After a baseline measurement in the supine position patients were turned to the prone position. After 60', 120', a median of 6.5 h (2-10 h) in the prone position, and again after 60' in the supine position, all measurements were repeated. Global hemodynamics remained unaltered throughout the study. While gastric mucosal-arterial PCO2 gradients did not change significantly during the first 60 min in the prone position, they significantly increased during the following 60 min [median/percentile: baseline: 6 (1 to -3); 60': 7 (15-5); 120': 13 (20-8) mmHg]. The median intragastric pressure was not significantly affected [baseline: 10 (13-5); 60': 12 (16-8); 120': 11 (13-7) mmHg], but 9 of the 11 patients in whom intragastric pressure increased during the first 60 min in the prone position also showed significantly increased PCO2 gradients (P < 0.01). Mechanical ventilation in the prone position may be affiliated with increased tonometric gastric mucosal-arterial PCO2 gradients depending on the effect on intraabdominal pressure. Measuring intraabdominal pressure and/or gastric mucosal PCO2 via a nasogastric tube therefore may help to detect adverse effects of this ventilatory strategy.
Medical subject headings
- Carbon Dioxide
- Gastric Mucosa
- Prone Position
- Respiration, Artificial
- Splanchnic Circulation