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Guidelines for Elective Pediatric Fiberoptic Intubation
Published on: January 17, 2011
[Development of evidence-based clinical practice guidelines for endotracheal suction in premature infants]
Ching-Fen Tu1, Hui-Mei Kao2, Ying-Ju Chang3
1Department of Nursing, Chang Jung Christian University, Taiwan, ROC.
Insights
New clinical guidelines for endotracheal suctioning (ETS) in premature infants improve safety. These evidence-based recommendations reduce risks like hypoxemia and bradycardia, enhancing neurodevelopmental outcomes for vulnerable newborns.
Area of Science:
- Neonatal Intensive Care
- Pediatric Respiratory Care
- Evidence-Based Medicine
Context:
- Endotracheal suctioning (ETS) is standard for mechanically ventilated premature infants.
- ETS carries risks including hypoxemia and bradycardia, potentially impacting neurodevelopment.
- Current practices require evidence-based refinement to optimize infant outcomes.
Purpose:
- To develop and implement evidence-based clinical-practice guidelines for endotracheal suctioning in premature infants.
- To address key issues and provide recommendations for safe and effective ETS.
- To establish expert consensus and evaluate guideline efficacy in a neonatal intensive care setting.
Summary:
- A multidisciplinary team developed 39 recommendations across 13 ETS issues, achieving 75% expert consensus via the Delphi method.
- Guidelines cover pre-assessment, suction parameters, infection control, and post-suctioning care.
- Pilot testing showed adherence to guidelines resulted in normal cardiorespiratory responses in infants.
Impact:
- Provides a standardized, evidence-based approach to ETS for premature infants.
- Aims to minimize adverse events like hypoxemia and bradycardia.
- Enhances the safety and quality of care for mechanically ventilated neonates, potentially improving long-term neurodevelopmental outcomes.
Background:
Endotracheal suctioning (ETS) for mechanically ventilated premature infants is a routine practice in neonatal intensive care. However, ETS is associated with hypoxemia and bradycardia, which may cause brain damage and negatively affect neurodevelopmental outcomes.
Purpose:
This study develops a set of evidence-based clinical-practice ETS guidelines for premature infants.
Methods:
A multidisciplinary task group at a medical center in southern Taiwan was established. Team members analyzed current ETS practice guidelines, constructed foreground questions, reviewed each question systemically, drafted a new set of guidelines, established expert consensus, disseminated the developed guidelines within a hospital setting, and evaluated their efficacy in practice.
Results:
The developed ETS guidelines address 13 issues with 39 recommendations. The Delphi method found that 75% of experts agreed with all of the recommendations. Issues addressed in the ETS included pre-assessment, frequency of suctioning, pre-oxygenation, suction-tube selection, infection control, suction pressure and depth decision making, humidity with normal saline, suction duration and number, containment and comforting, assessment during and after suctioning, recovery time, and documentation. The panel of clinical and methodological experts recommended that ETS be used in practice and nurses in the neonatal intensive care unit evaluated the ETS as applicable and accessible. The cardiorespiratory responses to ETS of 5 premature infants were within normal ranges without episodes of hypoxemia (oxygen saturation < 85%) or bradycardia (heart rate < 100 beat/min).
Conclusions:
This set of evidence-based ETS guidelines for premature infants integrated recommendations from the best available literature and obtained a high consensus among clinical experts. Thus, these guidelines are recommended for clinical application.
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