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Effect of lateral positioning on upper airway size and morphology in sedated children
Ronald S Litman1, Nicole Wake, Lai-Ming Lisa Chan
1University of Pennsylvania School of Medicine, Philadelphia, Pennsylvania 19104, USA. litmanr@email.chop.edu
Insights
Lateral positioning significantly widens the upper airway in sedated children, particularly in the region from the epiglottis to the vocal cords. This finding suggests positional changes can improve airway dimensions in pediatric patients.
Area of Science:
- Pediatric imaging and airway anatomy.
Background:
- Lateral positioning is known to decrease upper airway obstruction in adults with sleep apnea and in paralyzed, anesthetized individuals.
- It was hypothesized that lateral positioning would increase upper airway cross-sectional area and volume in sedated, spontaneously breathing children.
Purpose of the Study:
- To investigate the effect of lateral positioning on upper airway dimensions in sedated, spontaneously breathing children.
- To compare upper airway cross-sectional area and volume in the supine versus lateral positions.
Main Methods:
- Children aged 2-12 years undergoing deep sedation for MRI of the head or neck were included.
- T1 axial magnetic resonance imaging scans of the upper airway were acquired in both supine and lateral positions.
- 3D reconstructions were generated using specialized software to compute total airway volume and cross-sectional areas.
Main Results:
- Lateral positioning led to a significant increase in total upper airway volume (P < 0.001).
- Mean total airway volume increased from 6.0 mL in the supine position to 8.7 mL in the lateral position.
- All noncartilaginous airway areas increased, with the greatest relative change observed between the epiglottis tip and vocal cords.
Conclusions:
- The upper airway in sedated, spontaneously breathing children widens when placed in a lateral position.
- The region between the epiglottis tip and vocal cords shows the most significant increase in size with lateral positioning.
Background:
Lateral positioning decreases upper airway obstruction in paralyzed, anesthetized adults and in individuals with sleep apnea during sleep. The authors hypothesized that lateral positioning increases upper airway cross-sectional area and total upper airway volume when compared with the supine position in sedated, spontaneously breathing children.
Methods:
Children aged 2-12 yr requiring magnetic resonance imaging examination of the head or neck region using deep sedation with propofol were studied. Exclusion criteria included any type of anatomical or neurologic entity that could influence upper airway shape or size. T1 axial scans of the upper airway were obtained in the supine and lateral positions, with the head and neck axes maintained neutral. Using software based on fuzzy connectedness segmentation (3D-VIEWNIX; Medical Imaging Processing Group, University of Pennsylvania, Philadelphia, PA), the magnetic resonance images were processed and segmented to render a three-dimensional reconstruction of the upper airway. Total airway volumes and cross-sectional areas were computed between the nasal vomer and the vocal cords. Two-way paired t tests were used to compare airway sizes between supine and lateral positions.
Results:
Sixteen of 17 children analyzed had increases in upper airway total volume. The total airway volume (mean +/- SD) was 6.0 +/- 2.9 ml in the supine position and 8.7 +/- 2.5 ml in the lateral position (P < 0.001). All noncartilaginous areas of the upper airway increased in area in the lateral compared with the supine position. The region between the tip of the epiglottis and vocal cords demonstrated the greatest relative percent change.
Conclusions:
The upper airway of a sedated, spontaneously breathing child widens in the lateral position. The region between the tip of the epiglottis and the vocal cords demonstrates the greatest relative percent increase in size.
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