Physical aspects of scintigraphy-based dosimetry for nuclear medicine therapy

Nuklearmedizin. 2010;49(3):85-95. doi: 10.3413/nukmed-0283.

Abstract

In nuclear medicine therapy the treatment of tumours by radiation exposure from internally deposited labelled antibodies or labelled peptides is currently an active field of investigation. To permit the efficient delivery of high amounts of radiation dose to tumours while limiting the radiation dose to critical organs dosimetry calculations have to be performed. These are relying on scintigraphic data being input to the well known MIRD formalism. This paper focuses on the methods and the difficulties associated with the scintigraphic determination of organ kinetics. The physical properties of the well-known scintigraphic imaging modalities, PET, SPECT and planar scintigraphy, are discussed thereby taking into account the properties of the appropriate radionuclides currently being available for therapy and dosimetry. Several arguments are given and disputed for the limited clinical use of PET and SPECT in dosimetry and the ongoing preference of planar whole-body imaging as the method of choice. The quantitative restrictions still inherent to this method are also discussed in detail. Procedural recommendations are proposed covering all processes related to data acquisition, data correction and data analysis which finally lead to reliable estimations of organ dose.

MeSH terms

  • Bone Marrow / diagnostic imaging
  • Humans
  • Positron-Emission Tomography / methods
  • Radiation Dosage
  • Radioisotopes / pharmacokinetics
  • Radioisotopes / therapeutic use*
  • Radioisotopes / urine
  • Radiometry / methods*
  • Radiotherapy Dosage
  • Software
  • Tomography, Emission-Computed, Single-Photon / methods
  • Whole Body Imaging / methods

Substances

  • Radioisotopes