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Technical Principles of Dual-Energy Cone Beam Computed Tomography and Clinical Applications for Radiation Therapy

PURPOSE: Medical imaging is an indispensable tool in radiotherapy for dose planning, image guidance and treatment monitoring. Cone beam CT (CBCT) is a low dose imaging technique with high spatial resolution capability as a direct by-product of using flat-panel detectors. However, certain issues such...

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Autores principales: Sajja, Shailaja, Lee, Young, Eriksson, Markus, Nordström, Håkan, Sahgal, Arjun, Hashemi, Masoud, Mainprize, James G., Ruschin, Mark
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7004939/
https://www.ncbi.nlm.nih.gov/pubmed/32051885
http://dx.doi.org/10.1016/j.adro.2019.07.013
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author Sajja, Shailaja
Lee, Young
Eriksson, Markus
Nordström, Håkan
Sahgal, Arjun
Hashemi, Masoud
Mainprize, James G.
Ruschin, Mark
author_facet Sajja, Shailaja
Lee, Young
Eriksson, Markus
Nordström, Håkan
Sahgal, Arjun
Hashemi, Masoud
Mainprize, James G.
Ruschin, Mark
author_sort Sajja, Shailaja
collection PubMed
description PURPOSE: Medical imaging is an indispensable tool in radiotherapy for dose planning, image guidance and treatment monitoring. Cone beam CT (CBCT) is a low dose imaging technique with high spatial resolution capability as a direct by-product of using flat-panel detectors. However, certain issues such as x-ray scatter, beam hardening and other artifacts limit its utility to the verification of patient positioning using image-guided radiotherapy. METHODS AND MATERIALS: Dual-energy (DE)-CBCT has recently demonstrated promise as an improved tool for tumor visualization in benchtop applications. It has the potential to improve soft-tissue contrast and reduce artifacts caused by beam hardening and metal. In this review, the practical aspects of developing a DE-CBCT based clinical and technical workflow are presented based on existing DE-CBCT literature and concepts adapted from the well-established library of work in DE-CT. Furthermore, the potential applications of DE-CBCT on its future role in radiotherapy are discussed. RESULTS AND CONCLUSIONS: Based on current literature and an investigation of future applications, there is a clear potential for DE-CBCT technologies to be incorporated into radiotherapy. The applications of DE-CBCT include (but are not limited to): adaptive radiotherapy, brachytherapy, proton therapy, radiomics and theranostics.
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spelling pubmed-70049392020-02-12 Technical Principles of Dual-Energy Cone Beam Computed Tomography and Clinical Applications for Radiation Therapy Sajja, Shailaja Lee, Young Eriksson, Markus Nordström, Håkan Sahgal, Arjun Hashemi, Masoud Mainprize, James G. Ruschin, Mark Adv Radiat Oncol Critical Review PURPOSE: Medical imaging is an indispensable tool in radiotherapy for dose planning, image guidance and treatment monitoring. Cone beam CT (CBCT) is a low dose imaging technique with high spatial resolution capability as a direct by-product of using flat-panel detectors. However, certain issues such as x-ray scatter, beam hardening and other artifacts limit its utility to the verification of patient positioning using image-guided radiotherapy. METHODS AND MATERIALS: Dual-energy (DE)-CBCT has recently demonstrated promise as an improved tool for tumor visualization in benchtop applications. It has the potential to improve soft-tissue contrast and reduce artifacts caused by beam hardening and metal. In this review, the practical aspects of developing a DE-CBCT based clinical and technical workflow are presented based on existing DE-CBCT literature and concepts adapted from the well-established library of work in DE-CT. Furthermore, the potential applications of DE-CBCT on its future role in radiotherapy are discussed. RESULTS AND CONCLUSIONS: Based on current literature and an investigation of future applications, there is a clear potential for DE-CBCT technologies to be incorporated into radiotherapy. The applications of DE-CBCT include (but are not limited to): adaptive radiotherapy, brachytherapy, proton therapy, radiomics and theranostics. Elsevier 2019-07-30 /pmc/articles/PMC7004939/ /pubmed/32051885 http://dx.doi.org/10.1016/j.adro.2019.07.013 Text en © 2019 The Author(s) http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Critical Review
Sajja, Shailaja
Lee, Young
Eriksson, Markus
Nordström, Håkan
Sahgal, Arjun
Hashemi, Masoud
Mainprize, James G.
Ruschin, Mark
Technical Principles of Dual-Energy Cone Beam Computed Tomography and Clinical Applications for Radiation Therapy
title Technical Principles of Dual-Energy Cone Beam Computed Tomography and Clinical Applications for Radiation Therapy
title_full Technical Principles of Dual-Energy Cone Beam Computed Tomography and Clinical Applications for Radiation Therapy
title_fullStr Technical Principles of Dual-Energy Cone Beam Computed Tomography and Clinical Applications for Radiation Therapy
title_full_unstemmed Technical Principles of Dual-Energy Cone Beam Computed Tomography and Clinical Applications for Radiation Therapy
title_short Technical Principles of Dual-Energy Cone Beam Computed Tomography and Clinical Applications for Radiation Therapy
title_sort technical principles of dual-energy cone beam computed tomography and clinical applications for radiation therapy
topic Critical Review
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7004939/
https://www.ncbi.nlm.nih.gov/pubmed/32051885
http://dx.doi.org/10.1016/j.adro.2019.07.013
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