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Upper airway in infants-a computed tomography-based analysis
Tariq M Wani1,2, Mahmood Rafiq3, Nahida Akhter2
1Department of Anesthesiology and Pain Medicine, Nationwide Children's Hospital, Columbus, OH, USA.
Insights
The pediatric airway in infants is elliptical, not funnel-shaped. The subglottic region and cricoid ring show distinct anteroposterior widening and transverse narrowing in neonates and infants.
Area of Science:
- Pediatric radiology
- Airway anatomy
- Neonatal imaging
Background:
- Challenging the traditional view of a funnel-shaped pediatric airway.
- Highlighting the elliptical nature of the pediatric airway with the subglottis as the narrowest point.
- Addressing the lack of separate studies on airway shape in neonates and infants.
Purpose of the Study:
- To define the upper airway shape in neonates and infants.
- To determine differences in airway shape between infants and older children.
Main Methods:
- Analysis of 40 computed tomographic (CT) scans from children aged 0-12 months.
- Measurements of transverse and anteroposterior diameters at subglottic and cricoid levels.
- CT scans obtained during natural sleep or sedation with spontaneous ventilation.
Main Results:
- Mean age of subjects was 5.9 months.
- Airway dimensions at the subglottic region: transverse 5.3 mm, anteroposterior 7.2 mm.
- Airway dimensions at the cricoid ring: transverse 6.1 mm, anteroposterior 6.7 mm, showing transverse widening and anteroposterior narrowing from subglottis to cricoid.
Conclusions:
- The airway in neonates and infants is elliptical between the subglottic area and cricoid.
- The cricoid ring in infants is not round, unlike in older children.
- Infant airways are wider anteroposteriorly and narrower transversely from the subglottis to the cricoid.
Background:
Recent studies suggest that the pediatric airway is elliptical with the subglottis rather than the cricoid as the narrowest part contrary to the old belief of a funnel-shaped airway. The shape of the airway in neonates and infants has not been studied separately. This study seeks to define the shape of the upper airway in neonates and infants, and determine if there are differences in airway shape between infants and older children.
Methods:
We studied 40 computed tomographic scans of children from birth to 12 months of age undergoing radiological evaluation unrelated to airway symptomatology. The computed tomographic scans were obtained during either natural sleep or with sedation and spontaneous ventilation without airway devices in place. Transverse and anteroposterior diameters were measured at the subglottic level and at the cricoid ring.
Results:
The mean age was 5.9 ± 3.4 months. The mean transverse and anteroposterior diameters were 5.3 ± 0.83 mm and 7.2 ± 0.89 mm at the subglottic region and 6.1 ± 0.86 mm and 6.7 ± 0.79 mm at the cricoid level. An increase in the transverse dimension of the airway was observed from the subglottic region to the cricoid ring. Although the anteroposterior dimension decreased from the subglottis to the cricoid ring, the airway remained wider in the anteroposterior dimension compared to the transverse dimension from the subglottis to the cricoid ring.
Conclusion:
The present study demonstrates that the airway in neonates and infants between the subglottic area and the cricoid remains elliptical. The cricoid is not round as has been observed in older children. The airway is wider anteroposteriorly and narrows in the transverse dimension from the subglottis to the cricoid in infants.
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