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Comparison of a Hybrid IMRT/VMAT technique with non-coplanar VMAT and non-coplanar IMRT for unresectable olfactory neuroblastoma using the RayStation treatment planning system—EUD, NTCP and planning study

The purpose of this study was to compare hybrid intensity-modulated radiotherapy (IMRT) and volumetric-modulated arc therapy (Hybrid IMRT/VMAT), with non-coplanar (nc) IMRT and nc-VMAT treatment plans for unresectable olfactory neuroblastoma (ONB). Hybrid IMRT/VMAT, nc-IMRT and nc-VMAT plans were op...

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Autores principales: Raturi, Vijay P, Motegi, Atsushi, Zenda, Sadamoto, Nakamura, Naoki, Hojo, Hidehiro, Kageyama, Shin-Ichiro, Okumura, Masayuki, Rachi, Toshiya, Ohyoshi, Hajime, Tachibana, Hidenobu, Motegi, Kana, Ariji, Takaki, Nakamura, Masaki, Hirano, Yasuhiro, Hirata, Hidenari, Akimoto, Tetsuo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8127663/
https://www.ncbi.nlm.nih.gov/pubmed/33839761
http://dx.doi.org/10.1093/jrr/rrab010
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author Raturi, Vijay P
Motegi, Atsushi
Zenda, Sadamoto
Nakamura, Naoki
Hojo, Hidehiro
Kageyama, Shin-Ichiro
Okumura, Masayuki
Rachi, Toshiya
Ohyoshi, Hajime
Tachibana, Hidenobu
Motegi, Kana
Ariji, Takaki
Nakamura, Masaki
Hirano, Yasuhiro
Hirata, Hidenari
Akimoto, Tetsuo
author_facet Raturi, Vijay P
Motegi, Atsushi
Zenda, Sadamoto
Nakamura, Naoki
Hojo, Hidehiro
Kageyama, Shin-Ichiro
Okumura, Masayuki
Rachi, Toshiya
Ohyoshi, Hajime
Tachibana, Hidenobu
Motegi, Kana
Ariji, Takaki
Nakamura, Masaki
Hirano, Yasuhiro
Hirata, Hidenari
Akimoto, Tetsuo
author_sort Raturi, Vijay P
collection PubMed
description The purpose of this study was to compare hybrid intensity-modulated radiotherapy (IMRT) and volumetric-modulated arc therapy (Hybrid IMRT/VMAT), with non-coplanar (nc) IMRT and nc-VMAT treatment plans for unresectable olfactory neuroblastoma (ONB). Hybrid IMRT/VMAT, nc-IMRT and nc-VMAT plans were optimized for 12 patients with modified Kadish C stage ONB. Dose prescription was 65 Gy in 26 fractions. Dose–volume histogram parameters, conformation number (CN), homogeneity index (HI), integral dose and monitor units (MUs) delivered per fraction were assessed. Equivalent uniform dose (EUD) and normal tissue complication probability (NTCP) based on the EUD model (NTCP(Logit)) and the Lyman–Kutcher–Burman model (NTCP(LKB)) were also evaluated. We found that the Hybrid IMRT/VMAT plan significantly improved the CN for clinical target volume (CTV) and planning treatment volume (PTV) compared with the nc-VMAT plan. In general, sparing of organs at risk (OARs) is similar with the three techniques, although the Hybrid IMRT/VMAT plan resulted in a significantly reduced D(max) to contralateral (C/L) optic nerve compared with the nc-IMRT plan. The Hybrid IMRT/VMAT plan significantly reduce EUD to the ipsilateral (I/L) and C/L optic nerve in comparison with the nc-IMRT plan and nc-VMAT plan, but the difference in NTCP between the three technique was <1%. We concluded that the Hybrid IMRT/VMAT technique can offer improvement in terms of target conformity and EUD for optic nerves, while achieving equal or better OAR sparing compared with nc-IMRT and nc-VMAT, and can be a viable radiation technique for treating unresectable ONB. However, the clinical benefit of these small differences in dosimetric data, EUD and NTCP of optic nerves may be minimal.
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spelling pubmed-81276632021-05-20 Comparison of a Hybrid IMRT/VMAT technique with non-coplanar VMAT and non-coplanar IMRT for unresectable olfactory neuroblastoma using the RayStation treatment planning system—EUD, NTCP and planning study Raturi, Vijay P Motegi, Atsushi Zenda, Sadamoto Nakamura, Naoki Hojo, Hidehiro Kageyama, Shin-Ichiro Okumura, Masayuki Rachi, Toshiya Ohyoshi, Hajime Tachibana, Hidenobu Motegi, Kana Ariji, Takaki Nakamura, Masaki Hirano, Yasuhiro Hirata, Hidenari Akimoto, Tetsuo J Radiat Res Oncology/Medicine The purpose of this study was to compare hybrid intensity-modulated radiotherapy (IMRT) and volumetric-modulated arc therapy (Hybrid IMRT/VMAT), with non-coplanar (nc) IMRT and nc-VMAT treatment plans for unresectable olfactory neuroblastoma (ONB). Hybrid IMRT/VMAT, nc-IMRT and nc-VMAT plans were optimized for 12 patients with modified Kadish C stage ONB. Dose prescription was 65 Gy in 26 fractions. Dose–volume histogram parameters, conformation number (CN), homogeneity index (HI), integral dose and monitor units (MUs) delivered per fraction were assessed. Equivalent uniform dose (EUD) and normal tissue complication probability (NTCP) based on the EUD model (NTCP(Logit)) and the Lyman–Kutcher–Burman model (NTCP(LKB)) were also evaluated. We found that the Hybrid IMRT/VMAT plan significantly improved the CN for clinical target volume (CTV) and planning treatment volume (PTV) compared with the nc-VMAT plan. In general, sparing of organs at risk (OARs) is similar with the three techniques, although the Hybrid IMRT/VMAT plan resulted in a significantly reduced D(max) to contralateral (C/L) optic nerve compared with the nc-IMRT plan. The Hybrid IMRT/VMAT plan significantly reduce EUD to the ipsilateral (I/L) and C/L optic nerve in comparison with the nc-IMRT plan and nc-VMAT plan, but the difference in NTCP between the three technique was <1%. We concluded that the Hybrid IMRT/VMAT technique can offer improvement in terms of target conformity and EUD for optic nerves, while achieving equal or better OAR sparing compared with nc-IMRT and nc-VMAT, and can be a viable radiation technique for treating unresectable ONB. However, the clinical benefit of these small differences in dosimetric data, EUD and NTCP of optic nerves may be minimal. Oxford University Press 2021-04-12 /pmc/articles/PMC8127663/ /pubmed/33839761 http://dx.doi.org/10.1093/jrr/rrab010 Text en © The Author(s) 2021. Published by Oxford University Press on behalf of The Japanese Radiation Research Society and Japanese Society for Radiation Oncology. https://creativecommons.org/licenses/by/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) ), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Oncology/Medicine
Raturi, Vijay P
Motegi, Atsushi
Zenda, Sadamoto
Nakamura, Naoki
Hojo, Hidehiro
Kageyama, Shin-Ichiro
Okumura, Masayuki
Rachi, Toshiya
Ohyoshi, Hajime
Tachibana, Hidenobu
Motegi, Kana
Ariji, Takaki
Nakamura, Masaki
Hirano, Yasuhiro
Hirata, Hidenari
Akimoto, Tetsuo
Comparison of a Hybrid IMRT/VMAT technique with non-coplanar VMAT and non-coplanar IMRT for unresectable olfactory neuroblastoma using the RayStation treatment planning system—EUD, NTCP and planning study
title Comparison of a Hybrid IMRT/VMAT technique with non-coplanar VMAT and non-coplanar IMRT for unresectable olfactory neuroblastoma using the RayStation treatment planning system—EUD, NTCP and planning study
title_full Comparison of a Hybrid IMRT/VMAT technique with non-coplanar VMAT and non-coplanar IMRT for unresectable olfactory neuroblastoma using the RayStation treatment planning system—EUD, NTCP and planning study
title_fullStr Comparison of a Hybrid IMRT/VMAT technique with non-coplanar VMAT and non-coplanar IMRT for unresectable olfactory neuroblastoma using the RayStation treatment planning system—EUD, NTCP and planning study
title_full_unstemmed Comparison of a Hybrid IMRT/VMAT technique with non-coplanar VMAT and non-coplanar IMRT for unresectable olfactory neuroblastoma using the RayStation treatment planning system—EUD, NTCP and planning study
title_short Comparison of a Hybrid IMRT/VMAT technique with non-coplanar VMAT and non-coplanar IMRT for unresectable olfactory neuroblastoma using the RayStation treatment planning system—EUD, NTCP and planning study
title_sort comparison of a hybrid imrt/vmat technique with non-coplanar vmat and non-coplanar imrt for unresectable olfactory neuroblastoma using the raystation treatment planning system—eud, ntcp and planning study
topic Oncology/Medicine
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8127663/
https://www.ncbi.nlm.nih.gov/pubmed/33839761
http://dx.doi.org/10.1093/jrr/rrab010
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