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Detectability and Volumetric Accuracy of Pulmonary Nodules in Low-Dose Photon-Counting Detector Computed Tomography: An Anthropomorphic Phantom Study

The aim of this phantom study was to assess the detectability and volumetric accuracy of pulmonary nodules on photon-counting detector CT (PCD-CT) at different low-dose levels compared to conventional energy-integrating detector CT (EID-CT). In-house fabricated artificial nodules of different shapes...

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Autores principales: Hop, Joost F., Walstra, Anna N. H., Pelgrim, Gert-Jan, Xie, Xueqian, Panneman, Noor A., Schurink, Niels W., Faby, Sebastian, van Straten, Marcel, de Bock, Geertruida H., Vliegenthart, Rozemarijn, Greuter, Marcel J. W.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10669978/
https://www.ncbi.nlm.nih.gov/pubmed/37998584
http://dx.doi.org/10.3390/diagnostics13223448
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author Hop, Joost F.
Walstra, Anna N. H.
Pelgrim, Gert-Jan
Xie, Xueqian
Panneman, Noor A.
Schurink, Niels W.
Faby, Sebastian
van Straten, Marcel
de Bock, Geertruida H.
Vliegenthart, Rozemarijn
Greuter, Marcel J. W.
author_facet Hop, Joost F.
Walstra, Anna N. H.
Pelgrim, Gert-Jan
Xie, Xueqian
Panneman, Noor A.
Schurink, Niels W.
Faby, Sebastian
van Straten, Marcel
de Bock, Geertruida H.
Vliegenthart, Rozemarijn
Greuter, Marcel J. W.
author_sort Hop, Joost F.
collection PubMed
description The aim of this phantom study was to assess the detectability and volumetric accuracy of pulmonary nodules on photon-counting detector CT (PCD-CT) at different low-dose levels compared to conventional energy-integrating detector CT (EID-CT). In-house fabricated artificial nodules of different shapes (spherical, lobulated, spiculated), sizes (2.5–10 mm and 5–1222 mm(3)), and densities (−330 HU and 100 HU) were randomly inserted into an anthropomorphic thorax phantom. The phantom was scanned with a low-dose chest protocol with PCD-CT and EID-CT, in which the dose with PCD-CT was lowered from 100% to 10% with respect to the EID-CT reference dose. Two blinded observers independently assessed the CT examinations of the nodules. A third observer measured the nodule volumes using commercial software. The influence of the scanner type, dose, observer, physical nodule volume, shape, and density on the detectability and volumetric accuracy was assessed by a multivariable regression analysis. In 120 CT examinations, 642 nodules were present. Observer 1 and 2 detected 367 (57%) and 289 nodules (45%), respectively. With PCD-CT and EID-CT, the nodule detectability was similar. The physical nodule volumes were underestimated by 20% (range 8–52%) with PCD-CT and 24% (range 9–52%) with EID-CT. With PCD-CT, no significant decrease in the detectability and volumetric accuracy was found at dose reductions down to 10% of the reference dose (p > 0.05). The detectability and volumetric accuracy were significantly influenced by the observer, nodule volume, and a spiculated nodule shape (p < 0.05), but not by dose, CT scanner type, and nodule density (p > 0.05). Low-dose PCD-CT demonstrates potential to detect and assess the volumes of pulmonary nodules, even with a radiation dose reduction of up to 90%.
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spelling pubmed-106699782023-11-15 Detectability and Volumetric Accuracy of Pulmonary Nodules in Low-Dose Photon-Counting Detector Computed Tomography: An Anthropomorphic Phantom Study Hop, Joost F. Walstra, Anna N. H. Pelgrim, Gert-Jan Xie, Xueqian Panneman, Noor A. Schurink, Niels W. Faby, Sebastian van Straten, Marcel de Bock, Geertruida H. Vliegenthart, Rozemarijn Greuter, Marcel J. W. Diagnostics (Basel) Article The aim of this phantom study was to assess the detectability and volumetric accuracy of pulmonary nodules on photon-counting detector CT (PCD-CT) at different low-dose levels compared to conventional energy-integrating detector CT (EID-CT). In-house fabricated artificial nodules of different shapes (spherical, lobulated, spiculated), sizes (2.5–10 mm and 5–1222 mm(3)), and densities (−330 HU and 100 HU) were randomly inserted into an anthropomorphic thorax phantom. The phantom was scanned with a low-dose chest protocol with PCD-CT and EID-CT, in which the dose with PCD-CT was lowered from 100% to 10% with respect to the EID-CT reference dose. Two blinded observers independently assessed the CT examinations of the nodules. A third observer measured the nodule volumes using commercial software. The influence of the scanner type, dose, observer, physical nodule volume, shape, and density on the detectability and volumetric accuracy was assessed by a multivariable regression analysis. In 120 CT examinations, 642 nodules were present. Observer 1 and 2 detected 367 (57%) and 289 nodules (45%), respectively. With PCD-CT and EID-CT, the nodule detectability was similar. The physical nodule volumes were underestimated by 20% (range 8–52%) with PCD-CT and 24% (range 9–52%) with EID-CT. With PCD-CT, no significant decrease in the detectability and volumetric accuracy was found at dose reductions down to 10% of the reference dose (p > 0.05). The detectability and volumetric accuracy were significantly influenced by the observer, nodule volume, and a spiculated nodule shape (p < 0.05), but not by dose, CT scanner type, and nodule density (p > 0.05). Low-dose PCD-CT demonstrates potential to detect and assess the volumes of pulmonary nodules, even with a radiation dose reduction of up to 90%. MDPI 2023-11-15 /pmc/articles/PMC10669978/ /pubmed/37998584 http://dx.doi.org/10.3390/diagnostics13223448 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Hop, Joost F.
Walstra, Anna N. H.
Pelgrim, Gert-Jan
Xie, Xueqian
Panneman, Noor A.
Schurink, Niels W.
Faby, Sebastian
van Straten, Marcel
de Bock, Geertruida H.
Vliegenthart, Rozemarijn
Greuter, Marcel J. W.
Detectability and Volumetric Accuracy of Pulmonary Nodules in Low-Dose Photon-Counting Detector Computed Tomography: An Anthropomorphic Phantom Study
title Detectability and Volumetric Accuracy of Pulmonary Nodules in Low-Dose Photon-Counting Detector Computed Tomography: An Anthropomorphic Phantom Study
title_full Detectability and Volumetric Accuracy of Pulmonary Nodules in Low-Dose Photon-Counting Detector Computed Tomography: An Anthropomorphic Phantom Study
title_fullStr Detectability and Volumetric Accuracy of Pulmonary Nodules in Low-Dose Photon-Counting Detector Computed Tomography: An Anthropomorphic Phantom Study
title_full_unstemmed Detectability and Volumetric Accuracy of Pulmonary Nodules in Low-Dose Photon-Counting Detector Computed Tomography: An Anthropomorphic Phantom Study
title_short Detectability and Volumetric Accuracy of Pulmonary Nodules in Low-Dose Photon-Counting Detector Computed Tomography: An Anthropomorphic Phantom Study
title_sort detectability and volumetric accuracy of pulmonary nodules in low-dose photon-counting detector computed tomography: an anthropomorphic phantom study
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10669978/
https://www.ncbi.nlm.nih.gov/pubmed/37998584
http://dx.doi.org/10.3390/diagnostics13223448
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