Usefulness of 99mTc-Pertechnetate SPECT-CT in Thyroid Tissue Volumetry: Phantom Studies and a Clinical Case Series

Curr Radiopharm. 2022;15(3):205-217. doi: 10.2174/1874471015666220111145550.

Abstract

Background: An accurate measurement of the target volume is of primary importance in theragnostics of hyperthyroidism.

Objective: Our purpose was to evaluate the accuracy of a threshold-based isocontour extraction procedure for thyroid tissue volumetry from SPECT-CT.

Methods: Cylindrical vials with a fixed volume of 99mTcO4 at different activities were inserted into a neck phantom in two different thickness settings. Images were acquired by orienting the phantom in different positions, i.e., 40 planar images and 40 SPECT-CT. The fixed values of the isocontouring threshold for SPECT and SPECT-CT were calculated by means of linear and spline regression models. Mean, Median, Standard Deviation, Standard Error, Mean Absolute Percentage Error and Root Mean-Square Error were computed. Any difference between the planar method, SPECT and SPECT-CT and the effective volume was evaluated by means of ANOVA and posthoc tests. Moreover, planar and SPECT-CT acquisitions were performed in 8 patients with hyperthyroidism, considering relevant percentage differences greater than > 20% from the CT gold standard.

Results: Concerning phantom studies, the planar method shows higher values of each parameter than the other two methods. SPECT-CT shows lower variability. However, no significant differences were observed between SPECT and SPECT-CT measurements. In patients, relevant differences were found in 7 out of 9 lesions with the planar method, in 6 lesions with SPECT, but in only one with SPECT-CT.

Conclusion: Our study confirms the superiority of SPECT in volume measurement if compared with the planar method. A more accurate measurement can be obtained from SPECT-CT.

Keywords: SPECT; SPECT-CT; Thyroid; hyperthyroidism; theragnostics; thyroid tissue volumetry.

MeSH terms

  • Humans
  • Hyperthyroidism* / diagnostic imaging
  • Radiopharmaceuticals / pharmacology
  • Sodium Pertechnetate Tc 99m*
  • Tomography, Emission-Computed, Single-Photon / methods
  • Tomography, X-Ray Computed / methods

Substances

  • Radiopharmaceuticals
  • Sodium Pertechnetate Tc 99m