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A graphical user interface for an electron monitor unit calculator using a sector‐integration algorithm and exponential curve‐fitting method

A new electron monitor unit (MU) calculator program called “eMUc” was developed to provide a convenient electron MU calculation platform for the physics and radiotherapy staff in electron radiotherapy. The program was written using the Microsoft Visual Basic.net framework and has a user‐friendly fro...

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Detalles Bibliográficos
Autores principales: Chow, James C.L., Grigorov, Grigor N., MacGregor, Christopher
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2006
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5722481/
https://www.ncbi.nlm.nih.gov/pubmed/16518317
http://dx.doi.org/10.1120/jacmp.v7i1.2183
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author Chow, James C.L.
Grigorov, Grigor N.
MacGregor, Christopher
author_facet Chow, James C.L.
Grigorov, Grigor N.
MacGregor, Christopher
author_sort Chow, James C.L.
collection PubMed
description A new electron monitor unit (MU) calculator program called “eMUc” was developed to provide a convenient electron MU calculation platform for the physics and radiotherapy staff in electron radiotherapy. The program was written using the Microsoft Visual Basic.net framework and has a user‐friendly front‐end window with the following features: (1) Apart from using the well‐known polynomial curve‐fitting method for the interpolation and extrapolation of relative output factors (ROFs), an exponential curve‐fitting method was used to obtain better results. (2) A new algorithm was used to acquire the radius in each angular segment in the irregular electron field during the sector integration. (3) A comprehensive graphical user interface running on the Microsoft Windows operating system was used. (4) Importing irregular electron cutout field images to the calculator program was simplified by using only a commercial optical scanner. (5) Interlocks were provided when the input patient treatment parameters could not be handled by the calculator database accurately. (6) A patient treatment record could be printed out as an electronic file or hard copy and transferred to the patient database. The data acquisition mainly required ROF measurements using various circular cutouts for all the available electron energies and applicators for our Varian 21 EX linear accelerator. To verify and implement the calculator, the measured results using our specific designed irregular and clinical cutouts were compared to those predicted by the calculator. Both agreed well with an error of [Formula: see text]. PACS number(s): 87.53.Fs; 87.53.Hv; 87.66.‐a
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spelling pubmed-57224812018-04-02 A graphical user interface for an electron monitor unit calculator using a sector‐integration algorithm and exponential curve‐fitting method Chow, James C.L. Grigorov, Grigor N. MacGregor, Christopher J Appl Clin Med Phys Radiation Oncology Physics A new electron monitor unit (MU) calculator program called “eMUc” was developed to provide a convenient electron MU calculation platform for the physics and radiotherapy staff in electron radiotherapy. The program was written using the Microsoft Visual Basic.net framework and has a user‐friendly front‐end window with the following features: (1) Apart from using the well‐known polynomial curve‐fitting method for the interpolation and extrapolation of relative output factors (ROFs), an exponential curve‐fitting method was used to obtain better results. (2) A new algorithm was used to acquire the radius in each angular segment in the irregular electron field during the sector integration. (3) A comprehensive graphical user interface running on the Microsoft Windows operating system was used. (4) Importing irregular electron cutout field images to the calculator program was simplified by using only a commercial optical scanner. (5) Interlocks were provided when the input patient treatment parameters could not be handled by the calculator database accurately. (6) A patient treatment record could be printed out as an electronic file or hard copy and transferred to the patient database. The data acquisition mainly required ROF measurements using various circular cutouts for all the available electron energies and applicators for our Varian 21 EX linear accelerator. To verify and implement the calculator, the measured results using our specific designed irregular and clinical cutouts were compared to those predicted by the calculator. Both agreed well with an error of [Formula: see text]. PACS number(s): 87.53.Fs; 87.53.Hv; 87.66.‐a John Wiley and Sons Inc. 2006-02-21 /pmc/articles/PMC5722481/ /pubmed/16518317 http://dx.doi.org/10.1120/jacmp.v7i1.2183 Text en © 2006 The Authors. This is an open access article under the terms of the Creative Commons Attribution (http://creativecommons.org/licenses/by/3.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Radiation Oncology Physics
Chow, James C.L.
Grigorov, Grigor N.
MacGregor, Christopher
A graphical user interface for an electron monitor unit calculator using a sector‐integration algorithm and exponential curve‐fitting method
title A graphical user interface for an electron monitor unit calculator using a sector‐integration algorithm and exponential curve‐fitting method
title_full A graphical user interface for an electron monitor unit calculator using a sector‐integration algorithm and exponential curve‐fitting method
title_fullStr A graphical user interface for an electron monitor unit calculator using a sector‐integration algorithm and exponential curve‐fitting method
title_full_unstemmed A graphical user interface for an electron monitor unit calculator using a sector‐integration algorithm and exponential curve‐fitting method
title_short A graphical user interface for an electron monitor unit calculator using a sector‐integration algorithm and exponential curve‐fitting method
title_sort graphical user interface for an electron monitor unit calculator using a sector‐integration algorithm and exponential curve‐fitting method
topic Radiation Oncology Physics
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5722481/
https://www.ncbi.nlm.nih.gov/pubmed/16518317
http://dx.doi.org/10.1120/jacmp.v7i1.2183
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