Monte Carlo Simulations Corroborate PET-Measured Discrepancies in Activity Assessments of Commercial <sup>90</sup>Y Vials.

Auditore, Lucrezia; Pistone, Daniele; Italiano, Antonio; Amato, Ernesto; Gnesin, Silvano · J Nucl Med · 2023

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Abstract

In a recent multicenter study, discrepancies between PET/CT-measured activity and vendor-calibrated activity for <sup>90</sup>Y glass and resin microspheres were found. In the present work, the origin of these discrepancies was investigated by Monte Carlo (MC) simulations. <b>Methods:</b> Three vial configurations, containing <sup>90</sup>Y-chloride, <sup>90</sup>Y-labeled glass microspheres, and <sup>90</sup>Y-labeled resin microspheres, were modeled with GAMOS, and the electric signal generated in an activity meter was simulated. Energy deposition was scored in the activity meter-active regions and converted into electric current per unit activity. Internal bremsstrahlung (IB) photons, always accompanying β-decay, were simulated in addition to <sup>90</sup>Y decays. The electric current per source activity obtained for <sup>90</sup>Y glass and resin microspheres, I<sub>glass</sub> and I<sub>resin</sub>, was compared in terms of relative percentage difference with that of <sup>90</sup>Y-chloride ([Formula: see text] and [Formula: see text]) and each other (δ). The findings of this work were compared with the ones obtained through PET measurements in the multicenter study. <b>Results:</b> With the inclusion of IB photons as primary particles in MC simulations, the [Formula: see text] and [Formula: see text] results were 24.6% ± 3.9% and -15.0% ± 2.2%, respectively, whereas δ was 46.5% ± 1.9%, in very good agreement with the values reported in the multicenter study. <b>Conclusion:</b> The MC simulations performed in this study indicate that the discrepancies recently found between PET/CT-measured activity and vendor-calibrated activity for <sup>90</sup>Y glass and resin microspheres can be attributed to differences in the geometry of the respective commercial vials and to the metrologic approach adopted for activity meter calibration with a <sup>90</sup>Y-chloride liquid source. Furthermore, IB photons were shown to play a relevant role in determining the electric current in the activity meter.

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