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Dose-aware 5-star image quality rating in CT: Findings from the IAEA-MGH study.

Journal articles  - Journal Article
Rehani, MM; Gershan, V; Narang, M; Radulovska, JC; Atac, GK; Klucsai, R; Turk, T; Zujic, PV; Venius, J; Remedios, D
Published in: Eur J Radiol
August 6, 2026

OBJECTIVE: To evaluate the feasibility, reproducibility, and operational impact of a structured, dose-aware 5-star CT image quality (IQ) rating system across multiple institutions and clinical indications. MATERIALS AND METHODS: This retrospective, multinational, IAEA study included 2737 adult (1247 chest, 1490 abdomen) CT examinations across six hospitals in five countries of Europe. Three radiologists per hospital scored CT images using a standardized 5-star system designed to evaluate diagnostic IQ with consideration of radiation dose. Data collected included CT scanner type, clinical indication, patient characteristics, CTDIvol, and DLP. Inter-reader agreement, concordance of star ratings, and dose metrics were evaluated per hospital and clinical indication. RESULTS: The rating framework demonstrated robust reproducibility, with three-reader concordance reaching up to 93% in highly standardized centers and complete discordance remaining exceptionally rare (1.6% cases overall). A compelling inverse correlation between CTDIvol and star ratings was observed, especially for larger patients. Analysis by clinical indication revealed that some intrinsically noise-tolerant exams (for pulmonary nodules and kidney stones) showed high radiation exposure, highlighting an opportunity for optimization. Certain centers used higher-dose protocols, heavily skewing toward 2-star ratings. CONCLUSIONS: The 5-star CT IQ rating system is reproducible and supports dose-aware CT optimization. Noise-tolerant examinations should maintain diagnostic quality at lower radiation dose, supporting wider use of low-dose protocols. The method highlights opportunities for multinational and manufacturer-level protocol harmonization and may guide optimization strategies, including the number of series and reconstruction approaches.

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Published In

Eur J Radiol

DOI

EISSN

1872-7727

Publication Date

August 6, 2026

Volume

204

Start / End Page

113133

Location

Ireland

Related Subject Headings

  • Nuclear Medicine & Medical Imaging
  • 3202 Clinical sciences
 

Citation

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Rehani, M. M., Gershan, V., Narang, M., Radulovska, J. C., Atac, G. K., Klucsai, R., … Remedios, D. (2026). Dose-aware 5-star image quality rating in CT: Findings from the IAEA-MGH study. Eur J Radiol, 204, 113133. https://doi.org/10.1016/j.ejrad.2026.113133
Rehani, Madan M., Vesna Gershan, Mohak Narang, Jasminka C. Radulovska, Gokce K. Atac, Robert Klucsai, Tajana Turk, Petra V. Zujic, Jonas Venius, and Denis Remedios. “Dose-aware 5-star image quality rating in CT: Findings from the IAEA-MGH study.Eur J Radiol 204 (August 6, 2026): 113133. https://doi.org/10.1016/j.ejrad.2026.113133.
Rehani MM, Gershan V, Narang M, Radulovska JC, Atac GK, Klucsai R, et al. Dose-aware 5-star image quality rating in CT: Findings from the IAEA-MGH study. Eur J Radiol. 2026 Aug 6;204:113133.
Rehani, Madan M., et al. “Dose-aware 5-star image quality rating in CT: Findings from the IAEA-MGH study.Eur J Radiol, vol. 204, Aug. 2026, p. 113133. Pubmed, doi:10.1016/j.ejrad.2026.113133.
Rehani MM, Gershan V, Narang M, Radulovska JC, Atac GK, Klucsai R, Turk T, Zujic PV, Venius J, Remedios D. Dose-aware 5-star image quality rating in CT: Findings from the IAEA-MGH study. Eur J Radiol. 2026 Aug 6;204:113133.
Journal cover image

Published In

Eur J Radiol

DOI

EISSN

1872-7727

Publication Date

August 6, 2026

Volume

204

Start / End Page

113133

Location

Ireland

Related Subject Headings

  • Nuclear Medicine & Medical Imaging
  • 3202 Clinical sciences