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Published on: September 28, 2022
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.
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.
Purpose:
Normative data on the growth and development of the upper airway across the sexes is needed for the diagnosis and treatment of congenital and acquired respiratory anomalies and to gain insight on developmental changes in speech acoustics and disorders with craniofacial anomalies.
Methods:
The growth of the upper airway in children ages birth to 5 years, as compared to adults, was quantified using an imaging database with computed tomography studies from typically developing individuals. Methodological criteria for scan inclusion and airway measurements included: head position, histogram-based airway segmentation, anatomic landmark placement, and development of a semi-automatic centerline for data extraction. A comprehensive set of 2D and 3D supra- and sub-glottal measurements from the choanae to tracheal opening were obtained including: naso-oro-laryngo-pharynx subregion volume and length, each subregion's superior and inferior cross-sectional-area, and antero-posterior and transverse/width distances.
Results:
Growth of the upper airway during the first 5 years of life was more pronounced in the vertical and transverse/lateral dimensions than in the antero-posterior dimension. By age 5 years, females have larger pharyngeal measurement than males. Prepubertal sex-differences were identified in the subglottal region.
Conclusions:
Our findings demonstrate the importance of studying the growth of the upper airway in 3D. As the lumen length increases, its shape changes, becoming increasingly elliptical during the first 5 years of life. This study also emphasizes the importance of methodological considerations for both image acquisition and data extraction, as well as the use of consistent anatomic structures in defining pharyngeal regions.
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