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Assessment of paediatric Hashimoto's thyroiditis using superb microvascular imaging
Z Bayramoglu1, S G Kandemirli2, E Caliskan1
1Department of Radiology, Istanbul Medical Faculty, Istanbul University, Fatih Istanbul, Turkey.
Insights
Superb microvascular imaging detects early vascular changes in Hashimoto's thyroiditis (HT) that Doppler imaging misses. This technique offers quantitative assessment of thyroid vascularity, aiding in diagnosis.
Area of Science:
- Radiology
- Endocrinology
- Medical Imaging
Background:
- Hashimoto's thyroiditis (HT) is an autoimmune disease affecting the thyroid gland.
- Conventional ultrasound (US) with Doppler imaging is used for thyroid evaluation.
- Subtle vascular changes may occur in early stages of HT.
Purpose of the Study:
- To evaluate the effectiveness of superb microvascular imaging (SMI) compared to greyscale and Doppler imaging for thyroid gland assessment in patients with HT.
- To compare imaging findings between HT patients and healthy controls.
Main Methods:
- The study included 70 patients with HT and 33 healthy controls.
- Ultrasound examinations were performed using a Canon Aplio 500 with a linear 10-14 MHz transducer.
- Thyroid volume, Doppler indices (resistive index, peak-systolic velocity, end-diastolic velocity), and vascularity index (VI) using SMI were measured.
Main Results:
- HT patients exhibited significantly larger thyroid volumes and higher peak-systolic velocities than controls.
- The median vascularity index (VI) was significantly higher in HT patients (13.5%) compared to controls (7.95%).
- VI showed a positive correlation with anti-thyroglobulin and anti-thyroid peroxidase antibody levels, with an optimal cut-off of 10.58% for HT diagnosis (sensitivity 67.1%, specificity 90%).
Conclusions:
- Superb microvascular imaging can detect subtle vascularity changes in early Hashimoto's thyroiditis, which are not visible with conventional Doppler parameters.
- SMI provides excellent visualization of microvascular structures and quantitative assessment of thyroid vascularity.
- VI derived from SMI is a valuable parameter for diagnosing HT.
Aim:
To evaluate the role of superb microvascular imaging along with greyscale and Doppler imaging for thyroid gland evaluation in Hashimoto's thyroiditis (HT) versus control subjects.
Materials And Methods:
The study included 33 healthy volunteers with normal ultrasound and laboratory findings and 70 patients with HT based on laboratory and sonographic findings who were undergoing follow-up and receiving medical treatment. HT patients were classified based on the modification of the scheme proposed by Sostre and Reyes that incorporates the extent of hypoechoic foci or patchy infiltration as grade A (foci involving <50% of the gland) and B (foci involving >50% of the gland). Thyroid volume, mean resistive indices, peak-systolic and end-diastolic velocities based on Doppler imaging, and vascularity index via superb microvascular imaging were obtained using a Canon Aplio 500 ultrasound device using a linear 10-14 MHz transducer.
Results:
Patients with HT had significantly higher median thyroid volume and peak-systolic velocities (7.32 ml and 19 cm/s, respectively) compared to control subjects (4.62 ml and 16 cm/s, respectively). HT patients had significantly higher median vascularity index (VI; 13.5%) compared to control subjects (7.95%). A significant fair positive correlation with VI and anti-thyroglobulin antibody levels (r=0.356, p<0.05) and significant moderate positive correlation with VI and anti-thyroid peroxidase antibody levels (r=0.503, p<0.05) were found. In HT diagnosis, the optimal VI cut-off value was 10.58% with a sensitivity and specificity of 67.1% and 90%, respectively.
Conclusion:
Superb microvascular imaging appears to allow assessment of subtle vascularity changes in early HT stages that cannot be detected by Doppler parameters. This technique demonstrates excellent visualization of the microvascular structures and quantitative assessment based on a novel parameter such as VI.
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