Development and validation of MCNPX-based Monte Carlo treatment plan verification system
A Monte Carlo treatment plan verification (MCTPV) system was developed for clinical treatment plan verification (TPV), especially for the conformal and intensity-modulated radiotherapy (IMRT) plans. In the MCTPV, the MCNPX code was used for particle transport through the accelerator head and the pat...
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doaj-2379aa99abfd44a6a664dbe26222503d2020-11-24T23:11:14ZengWolters Kluwer Medknow PublicationsJournal of Medical Physics0971-62031998-39132015-01-01402808910.4103/0971-6203.158678Development and validation of MCNPX-based Monte Carlo treatment plan verification systemIraj JabbariShahram MonadiA Monte Carlo treatment plan verification (MCTPV) system was developed for clinical treatment plan verification (TPV), especially for the conformal and intensity-modulated radiotherapy (IMRT) plans. In the MCTPV, the MCNPX code was used for particle transport through the accelerator head and the patient body. MCTPV has an interface with TiGRT planning system and reads the information which is needed for Monte Carlo calculation transferred in digital image communications in medicine-radiation therapy (DICOM-RT) format. In MCTPV several methods were applied in order to reduce the simulation time. The relative dose distribution of a clinical prostate conformal plan calculated by the MCTPV was compared with that of TiGRT planning system. The results showed well implementation of the beams configuration and patient information in this system. For quantitative evaluation of MCTPV a two-dimensional (2D) diode array (MapCHECK2) and gamma index analysis were used. The gamma passing rate (3%/3 mm) of an IMRT plan was found to be 98.5% for total beams. Also, comparison of the measured and Monte Carlo calculated doses at several points inside an inhomogeneous phantom for 6- and 18-MV photon beams showed a good agreement (within 1.5%). The accuracy and timing results of MCTPV showed that MCTPV could be used very efficiently for additional assessment of complicated plans such as IMRT plan.http://www.jmp.org.in/article.asp?issn=0971-6203;year=2015;volume=40;issue=2;spage=80;epage=89;aulast=JabbariIntensity-modulated radiotherapymonte carloMonte Carlo N-Particle extendedtreatment plan verification |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Iraj Jabbari Shahram Monadi |
spellingShingle |
Iraj Jabbari Shahram Monadi Development and validation of MCNPX-based Monte Carlo treatment plan verification system Journal of Medical Physics Intensity-modulated radiotherapy monte carlo Monte Carlo N-Particle extended treatment plan verification |
author_facet |
Iraj Jabbari Shahram Monadi |
author_sort |
Iraj Jabbari |
title |
Development and validation of MCNPX-based Monte Carlo treatment plan verification system |
title_short |
Development and validation of MCNPX-based Monte Carlo treatment plan verification system |
title_full |
Development and validation of MCNPX-based Monte Carlo treatment plan verification system |
title_fullStr |
Development and validation of MCNPX-based Monte Carlo treatment plan verification system |
title_full_unstemmed |
Development and validation of MCNPX-based Monte Carlo treatment plan verification system |
title_sort |
development and validation of mcnpx-based monte carlo treatment plan verification system |
publisher |
Wolters Kluwer Medknow Publications |
series |
Journal of Medical Physics |
issn |
0971-6203 1998-3913 |
publishDate |
2015-01-01 |
description |
A Monte Carlo treatment plan verification (MCTPV) system was developed for clinical treatment plan verification (TPV), especially for the conformal and intensity-modulated radiotherapy (IMRT) plans. In the MCTPV, the MCNPX code was used for particle transport through the accelerator head and the patient body. MCTPV has an interface with TiGRT planning system and reads the information which is needed for Monte Carlo calculation transferred in digital image communications in medicine-radiation therapy (DICOM-RT) format. In MCTPV several methods were applied in order to reduce the simulation time. The relative dose distribution of a clinical prostate conformal plan calculated by the MCTPV was compared with that of TiGRT planning system. The results showed well implementation of the beams configuration and patient information in this system. For quantitative evaluation of MCTPV a two-dimensional (2D) diode array (MapCHECK2) and gamma index analysis were used. The gamma passing rate (3%/3 mm) of an IMRT plan was found to be 98.5% for total beams. Also, comparison of the measured and Monte Carlo calculated doses at several points inside an inhomogeneous phantom for 6- and 18-MV photon beams showed a good agreement (within 1.5%). The accuracy and timing results of MCTPV showed that MCTPV could be used very efficiently for additional assessment of complicated plans such as IMRT plan. |
topic |
Intensity-modulated radiotherapy monte carlo Monte Carlo N-Particle extended treatment plan verification |
url |
http://www.jmp.org.in/article.asp?issn=0971-6203;year=2015;volume=40;issue=2;spage=80;epage=89;aulast=Jabbari |
work_keys_str_mv |
AT irajjabbari developmentandvalidationofmcnpxbasedmontecarlotreatmentplanverificationsystem AT shahrammonadi developmentandvalidationofmcnpxbasedmontecarlotreatmentplanverificationsystem |
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1725605220341252096 |