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Author Spotlight: Integrating Ultrasound Imaging with Biochemical Markers for Thyroid Disease Diagnosis
Published on: February 9, 2024
Dual-energy computed tomography-based volumetric thyroid iodine quantification: correlation with thyroid hormonal
1Korea University College of Medicine, Ansan Hospital, Department of Radiology, Ansan, South Korea.
Insights
Dual-energy computed tomography (DECT) can measure intrathyroidal iodine concentration (IC) non-invasively. Lower IC is associated with thyroid hormone dysfunction and diffuse thyroid disease (DTD).
Area of Science:
- Radiology
- Endocrinology
- Medical Imaging
Background:
- Thyroid hormonal status and diffuse thyroid disease (DTD) are critical in endocrine health.
- Accurate assessment of intrathyroidal iodine concentration (IC) is essential for understanding thyroid function.
- Current methods for assessing IC may be invasive or lack precision.
Purpose of the Study:
- To investigate the relationship between intrathyroidal iodine concentration (IC) and thyroid hormonal status or pathologic diagnosis.
- To evaluate the utility of dual-energy computed tomography (DECT) for non-invasively quantifying IC.
Main Methods:
- Retrospective analysis of neck CT examinations using a dual-layer DECT scanner.
- Volumetric IC measurements of thyroid parenchyma from non-contrast images.
- Comparison of mean IC based on thyroid hormonal status (hypothyroid, euthyroid, hyperthyroid) and DTD.
- Accuracy assessment using a Gammex phantom with known iodine concentrations.
Main Results:
- Mean parenchymal IC was lowest in hyperthyroid patients, followed by hypothyroid, then euthyroid patients (P < 0.01).
- In euthyroid patients, mean parenchymal IC was lower in those with DTD compared to those without (P < 0.01).
- DECT protocol demonstrated high accuracy with median percentage deviations of 5.1% from expected values in phantom studies.
Conclusions:
- DECT-based IC quantification is a potentially useful method for identifying thyroid hormone dysfunction.
- This non-contrast imaging technique can help diagnose diffuse thyroid disease (DTD).
- DECT offers valuable information from non-contrast CT images without intravenous contrast administration.
Purpose:
To investigate the relationship between intrathyroidal iodine concentration (IC) (mg I/mL) and thyroid hormonal status or pathologic diagnosis with the use of dual-energy computed tomography (DECT).
Methods:
We retrospectively included patients who underwent neck CT examination between September 2016 and August 2021 using a dual-layer DECT scanner (120 kilovolt peak) for preoperative thyroid imaging. We performed volumetric IC measurements at the thyroid parenchyma on the additional iodine map generated from non-contrast images. We then compared the mean IC of thyroid parenchyma based on thyroid hormonal status (hypothyroid, euthyroid, and hyperthyroid) and diffuse thyroid disease (DTD). Additionally, we determined the accuracy of iodine quantification with our site-specific DECT acquisition protocol using a GammexTM phantom containing seven iodine inserts with different ICs ranging from 2 to 20 mgI/mL.
Results:
Among the 578 patients (M:F: 87:491, age: 48.6 ± 11.7 years) who were finally selected, the mean thyroid parenchymal ICs was the lowest in the hyperthyroid group, followed by the hypothyroid group, and then the euthyroid group (0.68 ± 0.37, n = 44 vs. 1.13 ± 0.42, n = 61 vs. 1.32 ± 0.43, n = 473, P < 0.01, respectively). In the patients with euthyroidism, the mean parenchymal IC was already lower in the patients with pathologically proven DTD than in those without DTD (1.22 ± 0.44 mgI/mL vs. 1.45 ± 0.37 mgI/mL, P < 0.01). Based on the phantom study, the median percentage deviations from the expected values were 5.1% for ICs of 2-20 mgI/mL.
Conclusion:
DECT-based IC quantification could be a potentially useful method for identifying patients with thyroid hormone dysfunction or DTD without the use of contrast media.
Clinical Significance:
Without the need for intravenous administration, DECT-based intrathyroidal IC quantification provides potentially valuable information from the non-contrast CT image of the thyroid parenchyma.
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