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Research ArticleIMAGING

Technical Requirements for Na18F PET Bone Imaging of Patients Being Treated Using a Taylor Spatial Frame

Robert Hatherly, Fredrik Brolin, Åsa Oldner, Anders Sundin, Henrik Lundblad, Gerald Q. Maguire, Cathrine Jonsson, Hans Jacobsson and Marilyn E. Noz
Journal of Nuclear Medicine Technology March 2014, 42 (1) 33-36; DOI: https://doi.org/10.2967/jnmt.113.133082
Robert Hatherly
1Department of Nuclear Medicine, Karolinska University Hospital, Stockholm, Sweden
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Fredrik Brolin
1Department of Nuclear Medicine, Karolinska University Hospital, Stockholm, Sweden
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Åsa Oldner
1Department of Nuclear Medicine, Karolinska University Hospital, Stockholm, Sweden
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Anders Sundin
2Department of Molecular Medicine and Surgery, Karolinska Institute, Stockholm, Sweden
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Henrik Lundblad
2Department of Molecular Medicine and Surgery, Karolinska Institute, Stockholm, Sweden
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Gerald Q. Maguire Jr.
3School of Information and Communication Technology, KTH Royal Institute of Technology, Stockholm, Sweden
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Cathrine Jonsson
4Department of Medical Physics, Karolinska University Hospital, Stockholm, Sweden; and
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Hans Jacobsson
2Department of Molecular Medicine and Surgery, Karolinska Institute, Stockholm, Sweden
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Marilyn E. Noz
5Department of Radiology, New York University, New York, New York
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Abstract

Diagnosis of new bone growth in patients with compound tibia fractures or deformities treated using a Taylor spatial frame is difficult with conventional radiography because the frame obstructs the images and creates artifacts. The use of Na18F PET studies may help to eliminate this difficulty. Methods: Patients were positioned on the pallet of a clinical PET/CT scanner and made as comfortable as possible with their legs immobilized. One bed position covering the site of the fracture, including the Taylor spatial frame, was chosen for the study. A topogram was performed, as well as diagnostic and attenuation correction CT. The patients were given 2 MBq of Na18F per kilogram of body weight. A 45-min list-mode acquisition was performed starting at the time of injection, followed by a 5-min static acquisition 60 min after injection. The patients were examined 6 wk after the Taylor spatial frame had been applied and again at 3 mo to assess new bone growth. Results: A list-mode reconstruction sequence of 1 × 1,800 and 1 × 2,700 s, as well as the 5-min static scan, allowed visualization of regional bone turnover. Conclusion: With Na18F PET/CT, it was possible to confirm regional bone turnover as a means of visualizing bone remodeling without the interference of artifacts from the Taylor spatial frame. Furthermore, dynamic list-mode acquisition allowed different sequences to be performed, enabling, for example, visualization of tracer transport from blood to the fracture site.

  • Na18F
  • PET/CT
  • bone imaging
  • Taylor spatial frame

Footnotes

  • Published online Jan. 16, 2014.

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Journal of Nuclear Medicine Technology: 42 (1)
Journal of Nuclear Medicine Technology
Vol. 42, Issue 1
March 1, 2014
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Technical Requirements for Na18F PET Bone Imaging of Patients Being Treated Using a Taylor Spatial Frame
Robert Hatherly, Fredrik Brolin, Åsa Oldner, Anders Sundin, Henrik Lundblad, Gerald Q. Maguire, Cathrine Jonsson, Hans Jacobsson, Marilyn E. Noz
Journal of Nuclear Medicine Technology Mar 2014, 42 (1) 33-36; DOI: 10.2967/jnmt.113.133082

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Technical Requirements for Na18F PET Bone Imaging of Patients Being Treated Using a Taylor Spatial Frame
Robert Hatherly, Fredrik Brolin, Åsa Oldner, Anders Sundin, Henrik Lundblad, Gerald Q. Maguire, Cathrine Jonsson, Hans Jacobsson, Marilyn E. Noz
Journal of Nuclear Medicine Technology Mar 2014, 42 (1) 33-36; DOI: 10.2967/jnmt.113.133082
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Keywords

  • Na18F
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