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Journal of Nuclear Medicine Technology

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Research ArticleImaging

Simulated Fewer-Angle SPECT/CT Imaging Protocol for Parathyroid Adenoma

Jennifer B. Ficke, Nora L. Watson, Derek J. Stocker, Kevin E. Schlegel, Maya C. Sahajwalla and Chad C. Adams
Journal of Nuclear Medicine Technology June 2024, 52 (2) 132-136; DOI: https://doi.org/10.2967/jnmt.122.264649
Jennifer B. Ficke
1Department of Radiology, Walter Reed National Military Medical Center, Bethesda, Maryland;
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Nora L. Watson
2Department of Research Programs, Walter Reed National Military Medical Center, Bethesda, Maryland; and
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Derek J. Stocker
1Department of Radiology, Walter Reed National Military Medical Center, Bethesda, Maryland;
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Kevin E. Schlegel
1Department of Radiology, Walter Reed National Military Medical Center, Bethesda, Maryland;
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Maya C. Sahajwalla
1Department of Radiology, Walter Reed National Military Medical Center, Bethesda, Maryland;
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Chad C. Adams
3Department of Radiology, Eisenhower Army Medical Center, Augusta, Georgia
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Abstract

A new SPECT/CT protocol for parathyroid imaging detailing fewer image-angle acquisitions (fewer-angle SPECT/CT [FASpecT/CT]) was evaluated for identification of parathyroid adenoma. The motivation for validating this protocol was to be able to use it in the future to decrease patient imaging time in our clinic. Methods: This was a retrospective review of existing data performed as a simulated case control study evaluating 50 parathyroid SPECT/CT scans acquired using the standard 60-stop protocol and the tested 15-stop FASpecT protocol acquired using angular sampling software. Agreement on the final interpretations between imaging methods was evaluated using the McNemar test and the Cohen κ. Interrater reliability among the 3 readers was described for each method using the Fleiss κ interpreted as in the strength-of-agreement guidelines by Landis and Koch. Results: Of the 50 evaluated images, 45 (90%) had concordant final image interpretations between imaging methods. The sensitivity of FASpecT/CT relative to SPECT/CT was 17 of 19 (89.5%; 95% CI, 66.9%–98.7%), and the specificity was 28 of 31 (90.3%; 95% CI, 74.2%–98.0%). Additionally, there was statistically significant substantial agreement between protocols and among readers for each protocol. Conclusion: Adequate diagnostic-quality SPECT/CT images can be acquired using significantly fewer imaging stops given advances in camera quality and processing algorithms such as iterative reconstruction.

  • SPECT/CT
  • FASpecT
  • parathyroid adenoma

Footnotes

  • Published online Nov. 14, 2023.

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Journal of Nuclear Medicine Technology: 52 (2)
Journal of Nuclear Medicine Technology
Vol. 52, Issue 2
June 1, 2024
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Simulated Fewer-Angle SPECT/CT Imaging Protocol for Parathyroid Adenoma
Jennifer B. Ficke, Nora L. Watson, Derek J. Stocker, Kevin E. Schlegel, Maya C. Sahajwalla, Chad C. Adams
Journal of Nuclear Medicine Technology Jun 2024, 52 (2) 132-136; DOI: 10.2967/jnmt.122.264649

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Simulated Fewer-Angle SPECT/CT Imaging Protocol for Parathyroid Adenoma
Jennifer B. Ficke, Nora L. Watson, Derek J. Stocker, Kevin E. Schlegel, Maya C. Sahajwalla, Chad C. Adams
Journal of Nuclear Medicine Technology Jun 2024, 52 (2) 132-136; DOI: 10.2967/jnmt.122.264649
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Keywords

  • SPECT/CT
  • FASpecT
  • parathyroid adenoma
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