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TomoMQA: Automated analysis program for MVCT quality assurance of helical tomotherapy

PURPOSE: In this study, we developed a simple but useful computer program, called TomoMQA, to offer an automated quality assurance for mega‐voltage computed tomography (MVCT) images generated via helical tomotherapy. METHODS: TomoMQA is written in MATLAB and contains three steps for analysis: (a) op...

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Autores principales: Han, Min Cheol, Hong, Chae‐Seon, Chang, Kyung Hwan, Kim, Jihun, Han, Su Chul, Kim, Dong Wook, Park, Kwangwoo, Kim, Min‐Joo, Shin, Han Back, Lee, Se Hyung, Kim, Jin Sung
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7324692/
https://www.ncbi.nlm.nih.gov/pubmed/32268003
http://dx.doi.org/10.1002/acm2.12875
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author Han, Min Cheol
Hong, Chae‐Seon
Chang, Kyung Hwan
Kim, Jihun
Han, Su Chul
Kim, Dong Wook
Park, Kwangwoo
Kim, Min‐Joo
Shin, Han Back
Lee, Se Hyung
Kim, Jin Sung
author_facet Han, Min Cheol
Hong, Chae‐Seon
Chang, Kyung Hwan
Kim, Jihun
Han, Su Chul
Kim, Dong Wook
Park, Kwangwoo
Kim, Min‐Joo
Shin, Han Back
Lee, Se Hyung
Kim, Jin Sung
author_sort Han, Min Cheol
collection PubMed
description PURPOSE: In this study, we developed a simple but useful computer program, called TomoMQA, to offer an automated quality assurance for mega‐voltage computed tomography (MVCT) images generated via helical tomotherapy. METHODS: TomoMQA is written in MATLAB and contains three steps for analysis: (a) open the DICOM dataset folder generated via helical tomotherapy (i.e., TomoTherapy(®) and Radixact™), (b) call the baseline data for the consistency test and click the “Analysis” button (or click the “Analysis” button without the baseline data and export the results as the baseline data), and (c) print an analyzed report. The overall procedure for the QA analysis included in TomoMQA is referred from the TG‐148 recommendation. Here, the tolerances for MVCT QA were implemented from TG‐148 recommended values as default; however, it can be modified by a user manually. RESULTS: To test the performance of the TomoMQA program, 15 MVCTs were prepared from five helical tomotherapy machines (1 of TomoTherapy(®) HD, 2 of TomoTherapy(®) HDA, and 2 of Radixact™) in 3 months and the QA procedures were performed using TomoMQA. From our results, the evaluation revealed that the developed program can successfully perform the MVCT QA analysis irrespective of the type of helical tomotherapy equipment. CONCLUSION: We successfully developed a new automated analysis program for MVCT QA of a helical tomotherapy platform, called TomoMQA. The developed program will be made freely downloadable from the TomoMQA‐dedicated website.
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spelling pubmed-73246922020-07-01 TomoMQA: Automated analysis program for MVCT quality assurance of helical tomotherapy Han, Min Cheol Hong, Chae‐Seon Chang, Kyung Hwan Kim, Jihun Han, Su Chul Kim, Dong Wook Park, Kwangwoo Kim, Min‐Joo Shin, Han Back Lee, Se Hyung Kim, Jin Sung J Appl Clin Med Phys Technical Notes PURPOSE: In this study, we developed a simple but useful computer program, called TomoMQA, to offer an automated quality assurance for mega‐voltage computed tomography (MVCT) images generated via helical tomotherapy. METHODS: TomoMQA is written in MATLAB and contains three steps for analysis: (a) open the DICOM dataset folder generated via helical tomotherapy (i.e., TomoTherapy(®) and Radixact™), (b) call the baseline data for the consistency test and click the “Analysis” button (or click the “Analysis” button without the baseline data and export the results as the baseline data), and (c) print an analyzed report. The overall procedure for the QA analysis included in TomoMQA is referred from the TG‐148 recommendation. Here, the tolerances for MVCT QA were implemented from TG‐148 recommended values as default; however, it can be modified by a user manually. RESULTS: To test the performance of the TomoMQA program, 15 MVCTs were prepared from five helical tomotherapy machines (1 of TomoTherapy(®) HD, 2 of TomoTherapy(®) HDA, and 2 of Radixact™) in 3 months and the QA procedures were performed using TomoMQA. From our results, the evaluation revealed that the developed program can successfully perform the MVCT QA analysis irrespective of the type of helical tomotherapy equipment. CONCLUSION: We successfully developed a new automated analysis program for MVCT QA of a helical tomotherapy platform, called TomoMQA. The developed program will be made freely downloadable from the TomoMQA‐dedicated website. John Wiley and Sons Inc. 2020-04-08 /pmc/articles/PMC7324692/ /pubmed/32268003 http://dx.doi.org/10.1002/acm2.12875 Text en © 2020 The Authors. Journal of Applied Clinical Medical Physics published by Wiley Periodicals LLC on behalf of American Association of Physicists in Medicine This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Technical Notes
Han, Min Cheol
Hong, Chae‐Seon
Chang, Kyung Hwan
Kim, Jihun
Han, Su Chul
Kim, Dong Wook
Park, Kwangwoo
Kim, Min‐Joo
Shin, Han Back
Lee, Se Hyung
Kim, Jin Sung
TomoMQA: Automated analysis program for MVCT quality assurance of helical tomotherapy
title TomoMQA: Automated analysis program for MVCT quality assurance of helical tomotherapy
title_full TomoMQA: Automated analysis program for MVCT quality assurance of helical tomotherapy
title_fullStr TomoMQA: Automated analysis program for MVCT quality assurance of helical tomotherapy
title_full_unstemmed TomoMQA: Automated analysis program for MVCT quality assurance of helical tomotherapy
title_short TomoMQA: Automated analysis program for MVCT quality assurance of helical tomotherapy
title_sort tomomqa: automated analysis program for mvct quality assurance of helical tomotherapy
topic Technical Notes
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7324692/
https://www.ncbi.nlm.nih.gov/pubmed/32268003
http://dx.doi.org/10.1002/acm2.12875
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