Clinical feasibility of <sup>90</sup>Y digital PET/CT for imaging microsphere biodistribution following radioembolization.
case_series · Level IV
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- Record sourced from PubMed, PMID 28405728.
- Also identified by DOI 10.1007/s00259-017-3694-4.
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Abstract
The purpose of this study was to evaluate the clinical feasibility of next generation solid-state digital photon counting PET/CT (dPET/CT) technology and imaging findings in patients following <sup>90</sup>Y microsphere radioembolization in comparison with standard of care (SOC) bremsstrahlung SPECT/CT (bSPECT/CT). Five patients underwent SOC <sup>90</sup>Y bremsstrahlung imaging immediately following routine radioembolization with 3.5 ± 1.7 GBq of <sup>90</sup>Y-labeled glass microspheres. All patients also underwent dPET/CT imaging at 29 ± 11 h following radioembolization. Matched pairs comparison was used to compare image quality, image contrast and <sup>90</sup>Y biodistribution between dPET/CT and bSPECT/CT images. Volumetric assessments of <sup>90</sup>Y activity using different isocontour thresholds on dPET/CT and bSPECT/CT images were also compared. Digital PET/CT consistently provided better visual image quality and <sup>90</sup>Y-to-background image contrast while depicting <sup>90</sup>Y biodistribution than bSPECT/CT. Isocontour volumetric assessment using a 1% threshold precisely outlined <sup>90</sup>Y activity and the treatment volume on dPET/CT images, whereas a more restrictive 20% threshold on bSPECT/CT images was needed to obtain comparable treatment volumes. The use of a less restrictive 10% threshold isocontour on bSPECT/CT images grossly overestimated the treatment volume when compared with the 1% threshold on dPET/CT images. Digital PET/CT is clinically feasible for the assessment of <sup>90</sup>Y microsphere biodistribution following radioembolization, and provides better visual image quality and image contrast than routine bSPECT/CT with comparable acquisition times. With further optimization and clinical validation, dPET technology may allow faster and more accurate imaging-based assessment of <sup>90</sup>Y microsphere biodistribution.
Medical subject headings
- Embolization, Therapeutic
- Microspheres
- Positron Emission Tomography Computed Tomography
- Yttrium Radioisotopes