Nucl Med Mol Imaging.  2016 Sep;50(3):207-212. 10.1007/s13139-015-0391-8.

Pixelized Measurement of (99m)Tc-HDP Micro Particles Formed in Gamma Correction Phantom Pinhole Scan: a Reference Study

Affiliations
  • 1Biomedical Engineering and Research Institute, Catholic University of Korea College of Medicine, Seoul, Korea.
  • 2Radiopharmaceutical Science Laboratory, Department of Nuclear Medicine, Seoul National University College of Medicine, Seoul, Korea.
  • 3Department of Nuclear Medicine, Sung Ae General Hospital, Seoul, Korea. ywbahk@hanmail.net
  • 4Department of Nuclear Medicine, Catholic University of Korea College of Medicine, Seoul, Korea.

Abstract

PURPOSE
Currently, traumatic bone diseases are diagnosed by assessing the micro (99m)Tc-hydroxymethylene diphosphonate (HDP) uptake in injured trabeculae with ongoing osteoneogenesis demonstrated by gamma correction pinhole scan (GCPS). However, the mathematic size quantification of micro-uptake is not yet available.We designed and performed this phantom-based study to set up an in-vitro model of the mathematical calculation of micro-uptake by the pixelized measurement.
METHODS
The micro (99m)Tc-HDP deposits used in this study were spontaneously formed both in a large standard flood and small house-made dish phantoms. The processing was as follows: first, phantoms were flooded with distilled water and (99m)Tc-HDP was therein injected to induce micro (99m)Tc-HDP deposition; second, the deposits were scanned using parallel-hole and pinhole collimator to generally survey (99m)Tc-HDP deposition pattern; and third, the scans underwent gamma correction (GC) to discern individual deposits for size measurement.
RESULTS
In original naïve scans, tracer distribution was simply nebulous in appearance and, hence, could not be measured. Impressively, however, GCPS could discern individual micro deposits so that they were calculated by pixelized measurement. Phantoms naturally formed micro (99m)Tc-HDP deposits that are analogous to (99m)Tc-HDP uptake on in-vivo bone scan. The smallest one we measured was 0.414 mm. Flooded phantoms and therein injected (99m)Tc-HDP form nebulous micro (99m)Tc-HDP deposits that are rendered discernible by GCPB and precisely calculable using pixelized measurement.
CONCLUSIONS
This method can be used for precise quantitative and qualitative diagnosis of bone and joint diseases at the trabecular level.

Keyword

Gamma correction; Micro deposit; (99m)Tc–HDP; Pinhole scan; Pixelized measurement

MeSH Terms

Bone Diseases
Diagnosis
Joint Diseases
Mathematics
Methods
Water
Water
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