Related Experiment Video
Updated: Feb 4, 2026

Application of Ultrasound and Shear Wave Elastography Imaging in a Rat Model of NAFLD/NASH
Published on: April 20, 2021
Quantitative Assessment of Palatine Tonsils in Healthy Children and Adolescents With Shear-Wave Elastography
Mehmet Öztürk1, Emine Çalişkan2, Zuhal Bayramoğlu2
1Department of Pediatric Radiology, Selcuk University Faculty of Medicine, Konya.
Insights
Shear wave elastography established normal elasticity and velocity values for palatine tonsils in children. These measurements did not significantly correlate with age, sex, or BMI, providing a baseline for diagnosing tonsil diseases.
Area of Science:
- Pediatric imaging
- Medical diagnostics
- Biophysics
Background:
- Palatine tonsils (PTs) are crucial in immune response, and understanding their biomechanical properties is vital for diagnosing diseases.
- Shear wave elastography (SWE) is a non-invasive imaging technique that measures tissue stiffness and elasticity.
Purpose of the Study:
- To define normal elasticity and velocity values for palatine tonsils in healthy children and adolescents using SWE.
- To assess the relationship between these values and factors like age, sex, and body mass index (BMI).
Main Methods:
- Prospective study involving 80 healthy children and adolescents (ages 3-17).
- Measurements of palatine tonsil elasticity, velocity, and volume using shear wave elastography.
- Statistical analysis including independent-samples t tests and Spearman correlation coefficient.
Main Results:
- Established mean elasticity values of 9.38 ± 1.27 kPa (right PT) and 9.57 ± 1.43 kPa (left PT).
- Established mean velocity values of 1.76 ± 0.11 m/s (right PT) and 1.79 ± 1.04 m/s (left PT).
- No significant differences in elasticity, velocity, or volume were found based on location, age, sex, or BMI.
Conclusions:
- This study provides reference elasticity and velocity values for palatine tonsils in children and adolescents.
- These findings can serve as a baseline for diagnosing palatine tonsil diseases.
- Further research is needed to confirm the role of elastography in differentiating pathologic tonsil tissues.
Abstract:
The normal elasticity and velocity values for palatine tonsils (PTs) in healthy children and adolescents were defined using shear wave elastography, and the relationship with potential factors affecting these values was assessed. This prospective study included a total of 80 cases with ages ranging from 3 to 17 years. Sex, age, and body mass index (BMI) were recorded. Elasticity and velocity measurements of both PTs and the relationship with basic descriptive data were investigated. For statistical analyses, independent-samples t tests and Spearman ρ (r) correlation coefficient were used. Quantitative variables are shown as the mean ± SD, and categorical variables are shown as n (%). The mean age was 10.6 ± 6.4 years, and the mean BMI was 17.40 ± 4 kg/m. The mean elasticity and velocity values were 9.38 ± 1.27 kPa and 1.76 ± 0.11 m/s for the right PT and 9.57 ± 1.43 kPa and 1.79 ± 1.04 m/s for the left PT, respectively. The mean tonsil volume was 2.44 mL for the right PT and 2.36 mL for the left PT. There were no significant differences in elasticity, velocity, and volumes when comparing location, age, or sex groups. No significant correlations were observed between the elasticity and velocity values and BMI. In conclusion, this preliminary work can be used as a reference for the diagnosis of PT diseases. Future comprehensive studies are necessary to establish the role of elastography in the diagnosis of pathologic tissue differentiation confirmed by clinical, laboratory, or pathology analyses.
Related Concept Videos
Tonsillitis I: Introduction
Etiology
Three primary contributing factors have been identified.
Tonsillitis II: Management
Cognitive Development During Adolescence
The Wave Nature of Light
Shear Diagram
First, a free-body diagram of the beam is drawn, representing all the external forces and internal reactions acting on the beam. One can calculate the reaction forces at each support by employing the equilibrium equations of force and moment. The vertical component...
Shearing Stress
The average shearing stress can be calculated by dividing the shear by the area of the cross-section.

