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Updated: Dec 1, 2025

Image Acquisition using Portable Sonography for Emergency Airway Management
Published on: September 28, 2022
Age-Related Changes in Upper Airway Anatomy Via Ultrasonography in Pediatric Patients
Nicholas M Dalesio, Rajeev Wadia1, Helen Harvey2
1From the Departments of Anesthesiology and Critical Care Medicine.
Insights
Ultrasonography can evaluate the pediatric airway in children under 10. While feasible, this imaging tool
Area of Science:
- Pediatric imaging
- Medical ultrasonography
- Anatomy and physiology
Background:
- Ultrasonography offers a portable, noninvasive method for assessing the upper airway.
- Evaluating pediatric airway anatomy is crucial for understanding growth and development.
Purpose of the Study:
- To establish a systematic approach for identifying key pediatric airway features using ultrasound.
- To determine if ultrasonography can detect anatomical airway changes related to growth in children.
Main Methods:
- A prospective, observational study included 84% of patients aged 1 day to 10 years undergoing elective surgery.
- Five standardized ultrasound views of the airway were obtained under anesthesia.
- A broadband linear array transducer was utilized for imaging and measurements.
Main Results:
- Several airway measurements, including the distance from the cricoid to the thyroid cartilage and structures in the vocal cord and submental regions, showed significant correlation with age.
- Tracheal diameter in the sagittal sternal notch view was not measurable due to air.
- Some measurements, like skin to cricothyroid membrane distance and anterior to posterior commissure distance, did not show significant age-related changes.
Conclusions:
- Airway ultrasonography is a viable tool for evaluating the pediatric airway in children under 10 years old.
- The ability of ultrasound to detect age-related anatomical changes is specific to certain measurements within the airway.
Purpose:
Ultrasonography is a portable, noninvasive tool that may be used to evaluate the upper airway. The purpose of our study was to present a systematic approach to identify salient features of the pediatric airway and determine whether ultrasonography can identify anatomical changes that occur with growth and development.
Methods:
We present a prospective, observational trial where patients included were between 1 day and 10 years of age presenting for elective surgery who had no known history of unfavorable airway pathology. We sequentially obtained 5 ultrasound views under anesthesia: (1) sagittal sternal notch view of the trachea, (2) sagittal longitudinal view of trachea (LT), (3) axial view at the level of the vocal cords (AVC), (4) axial view at the level of the cricoid membrane (AC), and (5) sagittal longitudinal submental space view (SM). A broadband linear array transducer was used to identify airway structures and perform measurements.
Results:
Eighty-four percent of enrolled patients underwent airway imaging and were analyzed using multiple regression and Spearman correlation (ρ). In view 1, tracheal diameter via sagittal sternal notch view was immeasurable because of air disturbance. In the LT view, the distance from the skin to the cricothyroid membrane (LT1) did not statistically increase with age in days (P = 0.06); however, the distance from the cricoid to thyroid cartilage (LT2) did correlate to age (P < 0.001; 99% confidence interval [CI], 1.8 × 10-5, 7.7 × 10-5; ρ = 0.77, P = 0.001). We found a statistically significant relationship between age and the distance between the anterior and posterior commissures (AVC2; P < 0.001; 99% CI, 1.0 × 10-4, 1.7 × 10-4; ρ = 0.80, P < 0.001), the distance from the skin to the posterior commissure (AVC3; P < 0.001; 99% CI, 9.6 × 10-5, 2.0 × 10-4; ρ = 0.73, P < 0.001), the distance to the cricoid cartilage (AC; P < 0.001; 99% CI, 2.0 × 10-5, 7.7 × 10-5; ρ = 0.66, P < 0.001), and the distance from the tongue base to the soft palate (SM2; P < 0.001; 9% CI, 1.8 × 10-4, 3.9 × 10-4; ρ = 0.85, P < 0.001). There were no significant relationships between age and AVC1 (P = 0.16) and SM1 (P = 0.44).
Conclusions:
Airway ultrasound is a feasible tool to evaluate the pediatric airway in children younger than 10 years; however, the detection of age-related changes of certain structures is limited to select measurements.
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