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Protocols for Prone Positioning in Pediatric Patients with Hypoxemia: Impact on Oxygenation, Lung Function, and
Jose Luis Estela-Zape1,2, Valeria Sanclemente-Cardoza3, Leidy Tatiana Ordoñez-Mora1,2
1Faculty of Health, Universidad Santiago de Cali, Cali 760035, Colombia.
Insights
Prone positioning significantly improves oxygenation in pediatric hypoxemia, enhancing pulmonary function. Further research is needed to determine optimal duration and standardize protocols for this intervention.
Area of Science:
- Pediatric Critical Care Medicine
- Respiratory Physiology
- Evidence-Based Medicine
Background:
- Hypoxemia is a critical concern in pediatric intensive care.
- Prone positioning is a potential intervention to improve oxygenation.
- Existing protocols and their efficacy require systematic evaluation.
Purpose of the Study:
- To identify protocols for prone positioning in pediatric hypoxemia.
- To evaluate the impact of prone positioning on oxygenation.
- To assess clinical outcomes associated with prone positioning.
Main Methods:
- Systematic review adhering to PRISMA guidelines.
- Comprehensive literature search across major scientific databases.
- Inclusion of 5 studies meeting predefined criteria.
Main Results:
- Prone positioning, especially for 12-20 hours, improved pulmonary function and oxygenation (SpO2 13-38%).
- Combined with alveolar recruitment, it increased functional residual capacity and reduced atelectasis.
- Short-term application (2-4 hours) also showed significant improvements in PaO2 and SpO2.
Conclusions:
- Prone positioning is effective in improving pulmonary function and addressing refractory hypoxemia in pediatric patients.
- Current evidence suggests benefits but lacks standardized optimal duration.
- Further research is essential to establish evidence-based guidelines for prone positioning protocols.
Abstract:
Background/Objectives: This review aims to identify existing protocols and evaluate the effects of prone positioning on oxygenation and clinical outcomes in pediatric patients with hypoxemia. Methods: A systematic review was conducted in accordance with the PRISMA guidelines and registered in PROSPERO (CRD42023457270). Literature research was performed in Scopus, PubMed, Web of Science, and ScienceDirect. The final search was completed in January 2025. Results: A total of 2033 studies were identified, with 5 meeting inclusion criteria. Forty percent applied prone positioning for 12 to 20 h, improving pulmonary function. Combined with alveolar recruitment, prone positioning increased functional residual capacity and reduced atelectasis, with SpO2 improvements from 13% to 38% and atelectasis reduction from 8% to 47%. Another 40% focused on oxygenation, reporting PaO2 increases from 52 to 59 mmHg and SpO2 improvements from 93.2% to 96.2% within 2 to 4 h. One study found a significant SpO2 difference between prone (98.3%) and supine (96.2%) positions (p = 0.003). Protocols commonly included facial tilt and pillows to reduce compression. Safety measures involved checking catheter and tube placement, suspending enteral nutrition 30 min before repositioning, and hemodynamic monitoring. Adverse events were rare, including two cases of tube obstruction and one hypercapnia. No significant differences were observed in ventilation duration, oxygen therapy length, or 28-day survival between groups. Conclusions: Prone positioning improves pulmonary function and addresses refractory hypoxemia in pediatric patients. However, the optimal duration remains unclear, underscoring the need for further research to establish standardized guidelines.
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