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Normative values of thymus in healthy children; stiffness by shear wave elastography
Zuhal Bayramoğlu1, Mehmet Öztürk2, Emine Çalışkan3
1Department of Pediatric Radiology, İstanbul University, İstanbul School of Medicine, İstanbul, Turkey.
Insights
Shear wave elastography (SWE) provides normal stiffness values for the pediatric thymus. Thymus elasticity decreases with age, height, and weight in children, aiding in quantitative evaluation.
Area of Science:
- Pediatric Radiology
- Medical Ultrasound
- Biophysics
Background:
- The thymus gland undergoes significant postnatal growth and involution.
- Understanding normal thymus development is crucial for pediatric imaging.
- Shear wave elastography (SWE) offers a non-invasive method to assess tissue stiffness.
Purpose of the Study:
- To determine normal mediastinal thymus stiffness values in children using SWE.
- To investigate the relationship between thymus stiffness and age, height, weight, and BMI.
- To establish normative data for pediatric thymus elastography.
Main Methods:
- Prospective study of 146 children undergoing neck ultrasound.
- Parasternal and suprasternal SWE evaluation of the mediastinal thymus.
- Children categorized into six age groups (0-8+ years).
- Analysis of mean shear wave elasticity (kPa) and velocity (m/sec) in relation to demographic data.
Main Results:
- Mean thymus elasticity was 6.76±1.04 kPa across all participants.
- No statistically significant differences in elasticity were found between age or gender groups.
- Significant negative correlations were observed between thymus elasticity and age, height, and weight (p<0.001).
Conclusions:
- SWE enables quantitative assessment of thymus stiffness in children.
- Thymus elasticity demonstrates a negative correlation with increasing age, height, and weight.
- Normative elastography values can be established for the pediatric thymus based on these findings.
Purpose:
Thymus grows after birth, reaches maximal size after the first few years and involutes by puberty. Because of the postnatal developmental and involutional duration, we aimed toinvestigate normal stiffness values of mediastinal thymus by shear wave elastography (SWE) in different age groups of children and discuss imaging findings of thymus.
Methods:
We prospectively examined 146 children (90 girls, 56 boys) who underwent a thyroid or neck ultrasound examination. All subjects underwent ultrasound and SWE evaluation of mediastinal thymus by parasternal and suprasternal approach. We subdivided the subjects based on the ages as 0 to 2 months (group 1), >2 to 6 months (group 2); >6 months to 2 years (group 3), >2 to 5 years (group 4), >5 to 8 years (group 5), and greater than 8 years old (group 6).We investigated differences of mean shear wave elasticity (kPa) and shear wave velocity (m/sec) values among age groups and the association of SWE values with age, body mass index (BMI), height, and weight of the patients.
Results:
Medians and ranges of age, height, weight, and BMI were 24 (2-84) months, 85 (55-120) cm, 12(4.55-22) kg, 15.37 (13.92-17.51) kg/m2, 11 (2.64-23.15) cc, respectively. Mean shear wave elasticity of thymus when all participants were included was 6.76±1.04 kPa. Differences of mean elasticity values among age groups and also gender groups were not statistically significant. There were highly significant negative correlations among age (r:0.3), height (r:0.26), weight (r:0.3) with elasticity and also velocity values (p<0.001). The thymus elasticity is negatively correlated with age.
Conclusion:
Quantitative evaluation of the thymus by SWE provides normative stiffness values based on age and gender groups. The thymus elasticity decreases with increased age, height and weight.
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