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Updated: Jan 8, 2026

Author Spotlight: Integrating Ultrasound Imaging with Biochemical Markers for Thyroid Disease Diagnosis
Published on: February 9, 2024
Thyroid sonoelastography in paediatrics: A comparison between healthy and diffuse thyroid disease
Marta Tovar Pérez1, Juan de Dios Berna Mestre1, Luis Enrique Fernández Rodríguez1
1Hospital Clínico Universitario Virgen de la Arrixaca, El Palmar, Murcia, Spain.
Insights
Shear wave elastography can help detect diffuse thyroid disease in children. A shear wave velocity below 1.75 m/s indicates a low probability of this condition.
Area of Science:
- Pediatric endocrinology
- Medical imaging
- Rheumatology
Background:
- Shear wave elastography (SWE) is a non-invasive ultrasound technique measuring tissue stiffness.
- Diffuse thyroid diseases encompass a range of conditions affecting thyroid gland structure and function.
- Accurate assessment of diffuse thyroid disease in children is crucial for timely diagnosis and management.
Purpose of the Study:
- To evaluate thyroid shear wave velocity (SWV) in healthy children.
- To determine the optimal number of SWV measurements for reliable assessment.
- To establish a diagnostic cut-off value for detecting diffuse thyroid disease in pediatric populations.
Main Methods:
- Retrospective analysis of 194 children (<16 years) undergoing thyroid ultrasound (2019-2021).
- SWE performed, obtaining 6 and 10 SWV measurements (m/s) from both thyroid lobes.
- Statistical analyses included t-tests, correlation, ROC curves, and Fagan nomograms.
Main Results:
- Children with diffuse thyroid disease (n=50) had higher SWV (2.09 m/s) than controls (n=144, 1.75 m/s) (p<0.001).
- An SWV < 1.75 m/s was associated with a low probability (8%) of diffuse thyroid disease.
- Accuracy significantly decreased with fewer than 10 measurements (p<0.001).
Conclusions:
- Ten SWV measurements are recommended for optimal SWE evaluation in children.
- An SWV threshold of 1.75 m/s can help rule out diffuse thyroid disease.
- SWE shows promise as a supplementary tool for diagnosing diffuse thyroid disease in pediatric patients.
Introduction:
Shear wave elastography has been increasingly used as a supplementary tool to assess diffuse thyroid disease. This study aimed to evaluate thyroid shear wave velocity in healthy children, determine the optimal number of shear wave velocity measurements and establish a diagnostic cut-off value to aid in the detection of diffuse thyroid disease.
Methods:
We retrospectively analysed children (<16 years) who underwent thyroid ultrasound between 2019 and 2021. Both those with and without thyroid pathology were included consecutively. Shear wave elastography was performed, and 6 and 10 shear wave velocity measurements (m/s) were obtained from the right and left lobes, respectively. Analyses included Student's t-test, Pearson's correlation, receiver operating characteristic curve and Fagan nomogram.
Results:
Of 194 children, 144 controls had normal ultrasound findings, while 50 diffuse thyroid disease cases showed echostructural abnormalities in 84%. Shear wave velocity was higher in the diffuse thyroid disease group (2.09 ± 0.34 (1.42-2.88) m/s) than controls (1.75 ± 0.21 (1.38-2.47) m/s) (p < 0.001). The area under the curve was 0.805 ± 0.041 (0.725-0.884); shear wave velocity < 1.75 m/s was associated with a low probability of diffuse thyroid disease (8% (4-14%)). Accuracy fell significantly when measurements were reduced from 10 to 6 (p < 0.001). No laboratory tests confirmed euthyroid status in controls.
Conclusions:
Ten shear wave velocity measurements were recommended for optimal shear wave elastography evaluation. A shear wave velocity < 1.75 m/s suggested a low probability of diffuse thyroid disease.
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