Anatomic development of the upper airway during the first five years of life: A three-dimensional imaging study

Ying Ji Chuang1, Seong Jae Hwang2, Kevin A Buhr3

  • 1Vocal Tract Development Lab, Waisman Center, University of Wisconsin-Madison, Madison, Wisconsin, United States of America.

Plos One
|March 11, 2022
PubMed

Insights

Upper airway growth in children aged 0-5 years shows significant changes in vertical and transverse dimensions. By age 5, females exhibit larger pharyngeal measurements than males, indicating early sex-based differences in airway development.

Area of Science:

  • Pediatric imaging and anatomy
  • Craniofacial development
  • Respiratory system development

Background:

  • Normative data on upper airway growth is crucial for diagnosing and treating congenital and acquired respiratory anomalies.
  • Understanding developmental changes in speech acoustics and disorders associated with craniofacial anomalies requires insight into upper airway development.

Purpose of the Study:

  • To quantify the growth and development of the upper airway in children aged birth to 5 years.
  • To establish normative data on upper airway dimensions across sexes for diagnostic and research purposes.

Main Methods:

  • Utilized a computed tomography (CT) imaging database of typically developing individuals (birth to 5 years).
  • Applied methodological criteria including head position, histogram-based segmentation, and semi-automatic centerline extraction for measurements.
  • Obtained comprehensive 2D and 3D supra- and sub-glottal measurements from the choanae to the tracheal opening.

Main Results:

  • Upper airway growth was more pronounced in vertical and transverse/lateral dimensions compared to the antero-posterior dimension during the first 5 years.
  • By age 5 years, females demonstrated larger pharyngeal measurements than males.
  • Prepubertal sex-differences were identified within the subglottal region.

Conclusions:

  • 3D analysis is essential for studying upper airway growth, revealing shape changes (increasingly elliptical) as lumen length increases.
  • Methodological rigor in image acquisition, data extraction, and consistent definition of pharyngeal regions is critical for accurate analysis.
Abstract

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