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Evaluation of fan-beam kilovoltage computed tomography image quality on a novel biological-guided radiotherapy platform

BACKGROUND AND PURPOSE: A recently developed biology-guided radiotherapy platform, equipped with positron emission tomography (PET) and computed tomography (CT), provides both anatomical and functional image guidance for radiotherapy. This study aimed to characterize performance of the kilovoltage C...

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Autores principales: Zhuang, Tingliang, Gibbard, Grant, Duan, Xinhui, Tan, Jun, Park, Yang, Lin, Mu-Han, Sun, Zhihui, Oderinde, Oluwaseyi M., Lu, Weiguo, Reynolds, Robert, Godley, Andrew, Pompos, Arnold, Dan, Tu, Garant, Aurelie, Iyengar, Puneeth, Timmerman, Robert, Jiang, Steve, Cai, Bin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10277913/
https://www.ncbi.nlm.nih.gov/pubmed/37342208
http://dx.doi.org/10.1016/j.phro.2023.100438
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author Zhuang, Tingliang
Gibbard, Grant
Duan, Xinhui
Tan, Jun
Park, Yang
Lin, Mu-Han
Sun, Zhihui
Oderinde, Oluwaseyi M.
Lu, Weiguo
Reynolds, Robert
Godley, Andrew
Pompos, Arnold
Dan, Tu
Garant, Aurelie
Iyengar, Puneeth
Timmerman, Robert
Jiang, Steve
Cai, Bin
author_facet Zhuang, Tingliang
Gibbard, Grant
Duan, Xinhui
Tan, Jun
Park, Yang
Lin, Mu-Han
Sun, Zhihui
Oderinde, Oluwaseyi M.
Lu, Weiguo
Reynolds, Robert
Godley, Andrew
Pompos, Arnold
Dan, Tu
Garant, Aurelie
Iyengar, Puneeth
Timmerman, Robert
Jiang, Steve
Cai, Bin
author_sort Zhuang, Tingliang
collection PubMed
description BACKGROUND AND PURPOSE: A recently developed biology-guided radiotherapy platform, equipped with positron emission tomography (PET) and computed tomography (CT), provides both anatomical and functional image guidance for radiotherapy. This study aimed to characterize performance of the kilovoltage CT (kVCT) system on this platform using standard quality metrics measured on phantom and patient images, using CT simulator images as reference. MATERIALS AND METHODS: Image quality metrics, including spatial resolution/modular transfer function (MTF), slice sensitivity profile (SSP), noise performance and image uniformity, contrast-noise ratio (CNR) and low-contrast resolution, geometric accuracy, and CT number (HU) accuracy, were evaluated on phantom images. Patient images were evaluated mainly qualitatively. RESULTS: On phantom images the MTF(10%) is about 0.68 lp/mm for kVCT in PET/CT Linac. The SSP agreed with nominal slice thickness within 0.7 mm. The diameter of the smallest visible target (1% contrast) is about 5 mm using medium dose mode. The image uniformity is within 2.0 HU. The geometric accuracy tests passed within 0.5 mm. Relative to CT simulator images, the noise is generally higher and the CNR is lower in PET/CT Linac kVCT images. The CT number accuracy is comparable between the two systems with maximum deviation from the phantom manufacturer range within 25 HU. On patient images, higher spatial resolution and image noise are observed on PET/CT Linac kVCT images. CONCLUSIONS: Major image quality metrics of the PET/CT Linac kVCT were within vendor-recommended tolerances. Better spatial resolution but higher noise and better/comparable low contrast visibility were observed as compared to a CT simulator when images were acquired with clinical protocols.
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spelling pubmed-102779132023-06-20 Evaluation of fan-beam kilovoltage computed tomography image quality on a novel biological-guided radiotherapy platform Zhuang, Tingliang Gibbard, Grant Duan, Xinhui Tan, Jun Park, Yang Lin, Mu-Han Sun, Zhihui Oderinde, Oluwaseyi M. Lu, Weiguo Reynolds, Robert Godley, Andrew Pompos, Arnold Dan, Tu Garant, Aurelie Iyengar, Puneeth Timmerman, Robert Jiang, Steve Cai, Bin Phys Imaging Radiat Oncol Original Research Article BACKGROUND AND PURPOSE: A recently developed biology-guided radiotherapy platform, equipped with positron emission tomography (PET) and computed tomography (CT), provides both anatomical and functional image guidance for radiotherapy. This study aimed to characterize performance of the kilovoltage CT (kVCT) system on this platform using standard quality metrics measured on phantom and patient images, using CT simulator images as reference. MATERIALS AND METHODS: Image quality metrics, including spatial resolution/modular transfer function (MTF), slice sensitivity profile (SSP), noise performance and image uniformity, contrast-noise ratio (CNR) and low-contrast resolution, geometric accuracy, and CT number (HU) accuracy, were evaluated on phantom images. Patient images were evaluated mainly qualitatively. RESULTS: On phantom images the MTF(10%) is about 0.68 lp/mm for kVCT in PET/CT Linac. The SSP agreed with nominal slice thickness within 0.7 mm. The diameter of the smallest visible target (1% contrast) is about 5 mm using medium dose mode. The image uniformity is within 2.0 HU. The geometric accuracy tests passed within 0.5 mm. Relative to CT simulator images, the noise is generally higher and the CNR is lower in PET/CT Linac kVCT images. The CT number accuracy is comparable between the two systems with maximum deviation from the phantom manufacturer range within 25 HU. On patient images, higher spatial resolution and image noise are observed on PET/CT Linac kVCT images. CONCLUSIONS: Major image quality metrics of the PET/CT Linac kVCT were within vendor-recommended tolerances. Better spatial resolution but higher noise and better/comparable low contrast visibility were observed as compared to a CT simulator when images were acquired with clinical protocols. Elsevier 2023-04-10 /pmc/articles/PMC10277913/ /pubmed/37342208 http://dx.doi.org/10.1016/j.phro.2023.100438 Text en © 2023 The Author(s) https://creativecommons.org/licenses/by/4.0/This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Original Research Article
Zhuang, Tingliang
Gibbard, Grant
Duan, Xinhui
Tan, Jun
Park, Yang
Lin, Mu-Han
Sun, Zhihui
Oderinde, Oluwaseyi M.
Lu, Weiguo
Reynolds, Robert
Godley, Andrew
Pompos, Arnold
Dan, Tu
Garant, Aurelie
Iyengar, Puneeth
Timmerman, Robert
Jiang, Steve
Cai, Bin
Evaluation of fan-beam kilovoltage computed tomography image quality on a novel biological-guided radiotherapy platform
title Evaluation of fan-beam kilovoltage computed tomography image quality on a novel biological-guided radiotherapy platform
title_full Evaluation of fan-beam kilovoltage computed tomography image quality on a novel biological-guided radiotherapy platform
title_fullStr Evaluation of fan-beam kilovoltage computed tomography image quality on a novel biological-guided radiotherapy platform
title_full_unstemmed Evaluation of fan-beam kilovoltage computed tomography image quality on a novel biological-guided radiotherapy platform
title_short Evaluation of fan-beam kilovoltage computed tomography image quality on a novel biological-guided radiotherapy platform
title_sort evaluation of fan-beam kilovoltage computed tomography image quality on a novel biological-guided radiotherapy platform
topic Original Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10277913/
https://www.ncbi.nlm.nih.gov/pubmed/37342208
http://dx.doi.org/10.1016/j.phro.2023.100438
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