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Journal of Nuclear Medicine Technology

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18F-Sodium fluoride positron emission tomography: History, technical feasibility, mechanism of action, normal bio-distribution, and diagnostic performance in bone metastasis detection compared to other imaging modalities

Kriti Ahuja, Houman Sotoudeh, Samuel J Galgano, Ramandeep Singh, Nishant Gupta, Siddhartha Gaddamanugu and Gagandeep Choudhary
Journal of Nuclear Medicine Technology December 2019, jnmt.119.234336; DOI: https://doi.org/10.2967/jnmt.119.234336
Kriti Ahuja
1 Department of Radiology, University of Alabama at Birmingham, United States;
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Houman Sotoudeh
1 Department of Radiology, University of Alabama at Birmingham, United States;
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Samuel J Galgano
1 Department of Radiology, University of Alabama at Birmingham, United States;
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Ramandeep Singh
2 Department of Radiology, Massachusetts General Hospital, United States;
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Nishant Gupta
3 Department of Radiology, Columbia University at Bassett Healthcare, United States;
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Siddhartha Gaddamanugu
1 Department of Radiology, University of Alabama at Birmingham, United States;
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Gagandeep Choudhary
4 University of Alabama at Birmingham, United States
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Abstract

The skeleton is overall the third most common metastatic site after the lungs and liver. Accurate diagnosis of osseous metastasis is critical for initial staging, treatment planning, restaging, treatment monitoring and survival prediction. Currently, 99mTc-methylene diphosphonate (99mTc-MDP) whole-body scan is the cornerstone of imaging to detect osseous metastasis. Though 18F-sodium fluoride (18F-NaF) was one of the oldest medical tracers but was replaced by other tracers until recently, owing to its physical properties. Continued development of positron emission tomographic (PET) scanners have opened a new era for 18F-NaF and given its higher sensitivity, there have been increasing applications in imaging. In this review, we will discuss the history, technical aspects, radiobiology, and bio-distribution of this tracer. Finally, we compared the accuracy of 18F-NaF PET with other conventional imaging for detection of osseous metastasis.

  • Bone
  • PET
  • Radiopharmaceuticals
  • 18F-sodium fluoride
  • 99mTc-methylene diphosphonate
  • PET-CT
  • bone metastases
  • bone scan
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Journal of Nuclear Medicine Technology: 53 (1)
Journal of Nuclear Medicine Technology
Vol. 53, Issue 1
March 1, 2025
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18F-Sodium fluoride positron emission tomography: History, technical feasibility, mechanism of action, normal bio-distribution, and diagnostic performance in bone metastasis detection compared to other imaging modalities
Kriti Ahuja, Houman Sotoudeh, Samuel J Galgano, Ramandeep Singh, Nishant Gupta, Siddhartha Gaddamanugu, Gagandeep Choudhary
Journal of Nuclear Medicine Technology Dec 2019, jnmt.119.234336; DOI: 10.2967/jnmt.119.234336

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18F-Sodium fluoride positron emission tomography: History, technical feasibility, mechanism of action, normal bio-distribution, and diagnostic performance in bone metastasis detection compared to other imaging modalities
Kriti Ahuja, Houman Sotoudeh, Samuel J Galgano, Ramandeep Singh, Nishant Gupta, Siddhartha Gaddamanugu, Gagandeep Choudhary
Journal of Nuclear Medicine Technology Dec 2019, jnmt.119.234336; DOI: 10.2967/jnmt.119.234336
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Keywords

  • bone
  • PET
  • radiopharmaceuticals
  • 18F-sodium fluoride
  • 99mTc-methylene diphosphonate
  • PET-CT
  • bone metastases
  • bone scan
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