P B Abinaya, Lavanya Dharmalingam, Siva Kaliyamoorthy
The combined use of ultrasonography, shear wave elastography, and cytopathology enhances thyroid nodule characterization. Elastography is a valuable adjunct to conventional ultrasound and FNAC, supporting improved risk stratification and clinical decision-making.
BACKGROUND: Thyroid nodules are commonly detected with high-resolution ultrasonography. While most are benign, a significant minority are malignant, necessitating accurate risk stratification. Conventional ultrasound is sensitive but has limited specificity due to overlapping features.
AIM: To assess the diagnostic accuracy of ultrasound elastography in thyroid nodules by correlating elastography findings with cytopathology.
MATERIALS AND METHODS: This analytical cross-sectional study included 100 patients (20-60 years) with thyroid nodules evaluated using B-mode ultrasound and TI-RADS classification. Shear wave elastography was performed to assess tissue stiffness. Nodules with suspicious features underwent ultrasound-guided FNAC, reported using the Bethesda system. Statistical analysis was done using SPSS v26.0, with significance set at P < 0.05.
RESULTS: The mean age was 39.16 ± 12.24 years, with female predominance. Most nodules were hypoechoic, and 22% were TI-RADS 5. Elastography identified 28% of nodules as stiff. Cytopathology showed 56% benign and 44% malignant lesions. A weak but statistically significant negative correlation was observed between elastography findings and cytopathology (P = 0.05).
CONCLUSION: The combined use of ultrasonography, shear wave elastography, and cytopathology enhances thyroid nodule characterization. Elastography is a valuable adjunct to conventional ultrasound and FNAC, supporting improved risk stratification and clinical decision-making.