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A multicentre and multi-national evaluation of the accuracy of quantitative Lu-177 SPECT/CT imaging performed within the MRTDosimetry project

Zitieren Sie bitte immer diese URN: urn:nbn:de:bvb:20-opus-270380
  • Purpose Patient-specific dosimetry is required to ensure the safety of molecular radiotherapy and to predict response. Dosimetry involves several steps, the first of which is the determination of the activity of the radiopharmaceutical taken up by an organ/lesion over time. As uncertainties propagate along each of the subsequent steps (integration of the time–activity curve, absorbed dose calculation), establishing a reliable activity quantification is essential. The MRTDosimetry project was a European initiative to bring together expertise inPurpose Patient-specific dosimetry is required to ensure the safety of molecular radiotherapy and to predict response. Dosimetry involves several steps, the first of which is the determination of the activity of the radiopharmaceutical taken up by an organ/lesion over time. As uncertainties propagate along each of the subsequent steps (integration of the time–activity curve, absorbed dose calculation), establishing a reliable activity quantification is essential. The MRTDosimetry project was a European initiative to bring together expertise in metrology and nuclear medicine research, with one main goal of standardizing quantitative \(^{177}\)Lu SPECT/CT imaging based on a calibration protocol developed and tested in a multicentre inter-comparison. This study presents the setup and results of this comparison exercise. Methods The inter-comparison included nine SPECT/CT systems. Each site performed a set of three measurements with the same setup (system, acquisition and reconstruction): (1) Determination of an image calibration for conversion from counts to activity concentration (large cylinder phantom), (2) determination of recovery coefficients for partial volume correction (IEC NEMA PET body phantom with sphere inserts), (3) validation of the established quantitative imaging setup using a 3D printed two-organ phantom (ICRP110-based kidney and spleen). In contrast to previous efforts, traceability of the activity measurement was required for each participant, and all participants were asked to calculate uncertainties for their SPECT-based activities. Results Similar combinations of imaging system and reconstruction lead to similar image calibration factors. The activity ratio results of the anthropomorphic phantom validation demonstrate significant harmonization of quantitative imaging performance between the sites with all sites falling within one standard deviation of the mean values for all inserts. Activity recovery was underestimated for total kidney, spleen, and kidney cortex, while it was overestimated for the medulla. Conclusion This international comparison exercise demonstrates that harmonization of quantitative SPECT/CT is feasible when following very specific instructions of a dedicated calibration protocol, as developed within the MRTDosimetry project. While quantitative imaging performance demonstrates significant harmonization, an over- and underestimation of the activity recovery highlights the limitations of any partial volume correction in the presence of spill-in and spill-out between two adjacent volumes of interests.zeige mehrzeige weniger

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Autor(en): Johannes Tran-GiaORCiD, Ana M. Denis-Bacelar, Kelley M. Ferreira, Andrew P. Robinson, Nicholas Calvert, Andrew J. Fenwick, Domenico Finocchiaro, Federica Fioroni, Elisa Grassi, Warda Heetun, Stephanie J. Jewitt, Maria Kotzassarlidou, Michael Ljungberg, Daniel R. McGowan, Nathaniel Scott, James Scuffham, Katarina Sjögreen Gleisner, Jill Tipping, Jill Wevrett, Michael Lassmann
URN:urn:nbn:de:bvb:20-opus-270380
Dokumentart:Artikel / Aufsatz in einer Zeitschrift
Institute der Universität:Medizinische Fakultät / Klinik und Poliklinik für Nuklearmedizin
Sprache der Veröffentlichung:Englisch
Titel des übergeordneten Werkes / der Zeitschrift (Englisch):EJNMMI Physics
Erscheinungsjahr:2021
Band / Jahrgang:8
Aufsatznummer:55
Originalveröffentlichung / Quelle:EJNMMI Physics (2021) 8:55. https://doi.org/10.1186/s40658-021-00397-0
DOI:https://doi.org/10.1186/s40658-021-00397-0
Allgemeine fachliche Zuordnung (DDC-Klassifikation):6 Technik, Medizin, angewandte Wissenschaften / 61 Medizin und Gesundheit / 610 Medizin und Gesundheit
Freie Schlagwort(e):177Lu SPECT/CT imaging; 3D printing; harmonization of SPECT/CT imaging; international multicenter comparison exercise; molecular radiotherapy (MRT); phantom; quantitative SPECT/CT; standardization of SPECT/CT imaging; traceability of SPECT/CT imaging
Datum der Freischaltung:05.05.2022
Beteiligte Körperschaft:The MRTDosimetry Collaboration
OpenAIRE:OpenAIRE
Sammlungen:Open-Access-Publikationsfonds / Förderzeitraum 2021
Lizenz (Deutsch):License LogoCC BY: Creative-Commons-Lizenz: Namensnennung 4.0 International