Optimization of yttrium-90 PET for simultaneous PET/MR imaging: A phantom study

Med Phys. 2016 Aug;43(8):4768. doi: 10.1118/1.4958958.

Abstract

Purpose: Positron emission tomography (PET) imaging of yttrium-90 in the liver post radioembolization has been shown useful for personalized dosimetry calculations and evaluation of extrahepatic deposition. The purpose of this study was to quantify the benefits of several MR-based data correction approaches offered by using a combined PET/MR system to improve Y-90 PET imaging. In particular, the feasibility of motion and partial volume corrections were investigated in a controlled phantom study.

Methods: The ACR phantom was filled with an initial concentration of 8 GBq of Y-90 solution resulting in a contrast of 10:1 between the hot cylinders and the background. Y-90 PET motion correction through motion estimates from MR navigators was evaluated by using a custom-built motion stage that simulated realistic amplitudes of respiration-induced liver motion. Finally, the feasibility of an MR-based partial volume correction method was evaluated using a wavelet decomposition approach.

Results: Motion resulted in a large (∼40%) loss of contrast recovery for the 8 mm cylinder in the phantom, but was corrected for after MR-based motion correction was applied. Partial volume correction improved contrast recovery by 13% for the 8 mm cylinder.

Conclusions: MR-based data correction improves Y-90 PET imaging on simultaneous PET/MR systems. Assessment of these methods must be studied further in the clinical setting.

MeSH terms

  • Movement
  • Multimodal Imaging / instrumentation*
  • Phantoms, Imaging*
  • Positron-Emission Tomography / instrumentation*
  • Tomography, X-Ray Computed / instrumentation*
  • Yttrium Radioisotopes*

Substances

  • Yttrium Radioisotopes