AAPM Task Group 66U1 report 83.B: Quality assurance for computed‐tomography simulators in radiation oncology

Abstract This Task Group (TG) report provides updated guidance from American Association of Physicists in Medicine TG 66, published in 2003, on quality assurance (QA) of computed tomography (CT) simulators used for radiation therapy (RT) treatment planning. In addition to updates and expansions of the original recommendations, this report provides recommendations for QA on various techniques that are now commonly used in radiation oncology but were not covered by TG 66, including respiratory‐correlated four‐dimensional CT (4D‐CT), extended Hounsfield Unit scales, metal‐artifact reduction, extended field‐of‐view, and multi‐energy CT. The report provides recommendations for the scanning of material‐density calibration phantoms and for the maintenance and management of CT scan protocols. A risk‐based analysis of the CT simulation process is presented, using an example of the 4D‐CT process for lung stereotactic body RT simulation. A comprehensive summary of recommendations from both the original and the updated report is included for reference in the appendix.

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Publication Details

Journal
Medical Physics
Published
2026-09-16
DOI
https://doi.org/10.1002/mp.70659
Primary Topic
Advanced X-ray and CT Imaging
Type
article
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article

AAPM Task Group 66U1 report 83.B: Quality assurance for computed‐tomography simulators in radiation oncology

J. Cammin, Mihaela Rosu‐Bubulac, D.E. Prah, M. Saiful Huq et al.
Medical Physics
Advanced X-ray and CT Imaging
article

AAPM Task Group 66U1 report 83.B: Quality assurance for computed‐tomography simulators in radiation oncology

J. Cammin, Mihaela Rosu‐Bubulac, D.E. Prah, M. Saiful Huq, Bernice Hoppel, Hao Dang, Jainil Shah, Kenneth J. Ruchala, Jessica R. Miller, Indra J. Das, Sarah Castillo, Heng Li, Shuai Leng, Qihui Lyu, Hao Zhang
article en

Abstract

Abstract This Task Group (TG) report provides updated guidance from American Association of Physicists in Medicine TG 66, published in 2003, on quality assurance (QA) of computed tomography (CT) simulators used for radiation therapy (RT) treatment planning. In addition to updates and expansions of the original recommendations, this report provides recommendations for QA on various techniques that are now commonly used in radiation oncology but were not covered by TG 66, including respiratory‐correlated four‐dimensional CT (4D‐CT), extended Hounsfield Unit scales, metal‐artifact reduction, extended field‐of‐view, and multi‐energy CT. The report provides recommendations for the scanning of material‐density calibration phantoms and for the maintenance and management of CT scan protocols. A risk‐based analysis of the CT simulation process is presented, using an example of the 4D‐CT process for lung stereotactic body RT simulation. A comprehensive summary of recommendations from both the original and the updated report is included for reference in the appendix.

Medical PhysicsVol. 53(10)
Northside Hospital (US), Northwestern University (US), University of Maryland, Baltimore (US), University of Wisconsin System (US), Canon (Japan) (JP), Philips (Finland) (FI), Mayo Clinic (US), Memorial Sloan Kettering Cancer Center (US), University of Wisconsin–Madison (US), Johns Hopkins University (US), University of California, San Francisco (US), Virginia Commonwealth University (US), Medical College of Wisconsin (US), UPMC Hillman Cancer Center (US), Philips (United States) (US), Atrion Medical (United States) (US), Siemens Healthcare (United States) (US), Think A Move (United States) (US)
Openalex Percentile: Top 21%
Advanced X-ray and CT Imaging
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