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March 3, 20260 citationsOpen Access

Characterization and Calibration of the iQID Digital Autoradiography System for Direct Quantitative Imaging of Beta-Emitters in Tissue Samples

OKOhyun KwonSJSean JollotaAAAdedamola O. Adeniyi

Key Points

  • The iQID system achieves a spatial resolution of approximately 43 µm for beta-emitter 177Lu while estimating total activity within 2% of reference values.
  • Count rates are converted to activity using a methodology yielding a linear response within the range of 0 to 300 Bq, enhancing quantitative accuracy.
  • Cross-modality benchmarking compares the iQID performance against preclinical µSPECT/CT to validate its effectiveness in realistic scenarios.
  • The study lays the groundwork for accurate activity estimation in ex vivo tissue samples, highlighting the advantages over traditional imaging techniques.

Abstract

Autoradiography provides microscale mapping of radionuclide distributions, a promising approach to complement nuclear medicine imaging for small-scale radiopharmaceutical therapy (RPT) research. However, quantitative protocols for β-emitters remain under-established compared to those for α-emitters. In this work, the ionizing-radiation quantum imaging detector (iQID) digital autoradiography system was characterized and calibrated specifically for the theranostic β-emitter 177 Lu. Spatial resolution, detection efficiency, background and minimum detectable activity, and depth dependence were characterized and compared to Geant4 Monte Carlo simulations. A methodology for converting count rates to activity was established, yielding a high linear response (range from 0 to 300 Bq). To validate the system for realistic measurement scenarios, cross-modality benchmarking was performed using a custom stacked multi-layer virtual water phantom to compare iQID performance with preclinical µSPECT/CT. The iQID system demonstrated an effective spatial resolution of ∼43 µm for 177 Lu and achieved total activity estimates of (0.194 ± 0.022) MBq, agreeing within 2% with the dispensed reference (0.197 ± 0.015) MBq. Crucially, iQID exhibited superior quantitative accuracy for small-scale features (0.8 mm to 2.5 mm diameters), resolving activity concentrations in regions where µSPECT/CT performance was severely limited by partial volume effects. This study establishes a validated framework for quantitative 177 Lu digital autoradiography, laying the groundwork for accurate activity estimation in ex vivo tissue samples.

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Cite This Study

Kwon et al. (2026) studied this question.

synapsesocial.com/papers/69a75c5fc6e9836116a2533ehttps://doi.org/10.64898/2026.01.27.701920
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