Cargando…

Validation of dose distribution for liver tumors treated with real-time-image gated spot-scanning proton therapy by log data based dose reconstruction

In spot scanning proton therapy (SSPT), the spot position relative to the target may fluctuate through tumor motion even when gating the radiation by utilizing a fiducial marker. We have established a procedure that evaluates the delivered dose distribution by utilizing log data on tumor motion and...

Descripción completa

Detalles Bibliográficos
Autores principales: Yamada, Takahiro, Takao, Seishin, Koyano, Hidenori, Nihongi, Hideaki, Fujii, Yusuke, Hirayama, Shusuke, Miyamoto, Naoki, Matsuura, Taeko, Umegaki, Kikuo, Katoh, Norio, Yokota, Isao, Shirato, Hiroki, Shimizu, Shinichi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8273791/
https://www.ncbi.nlm.nih.gov/pubmed/33948661
http://dx.doi.org/10.1093/jrr/rrab024
_version_ 1783721439455608832
author Yamada, Takahiro
Takao, Seishin
Koyano, Hidenori
Nihongi, Hideaki
Fujii, Yusuke
Hirayama, Shusuke
Miyamoto, Naoki
Matsuura, Taeko
Umegaki, Kikuo
Katoh, Norio
Yokota, Isao
Shirato, Hiroki
Shimizu, Shinichi
author_facet Yamada, Takahiro
Takao, Seishin
Koyano, Hidenori
Nihongi, Hideaki
Fujii, Yusuke
Hirayama, Shusuke
Miyamoto, Naoki
Matsuura, Taeko
Umegaki, Kikuo
Katoh, Norio
Yokota, Isao
Shirato, Hiroki
Shimizu, Shinichi
author_sort Yamada, Takahiro
collection PubMed
description In spot scanning proton therapy (SSPT), the spot position relative to the target may fluctuate through tumor motion even when gating the radiation by utilizing a fiducial marker. We have established a procedure that evaluates the delivered dose distribution by utilizing log data on tumor motion and spot information. The purpose of this study is to show the reliability of the dose distributions for liver tumors treated with real-time-image gated SSPT (RGPT). In the evaluation procedure, the delivered spot information and the marker position are synchronized on the basis of log data on the timing of the spot irradiation and fluoroscopic X-ray irradiation. Then a treatment planning system reconstructs the delivered dose distribution. Dose distributions accumulated for all fractions were reconstructed for eight liver cases. The log data were acquired in all 168 fractions for all eight cases. The evaluation was performed for the values of maximum dose, minimum dose, D99, and D5–D95 for the clinical target volumes (CTVs) and mean liver dose (MLD) scaled by the prescribed dose. These dosimetric parameters were statistically compared between the planned dose distribution and the reconstructed dose distribution. The mean difference of the maximum dose was 1.3% (95% confidence interval [CI]: 0.6%—2.1%). Regarding the minimum dose, the mean difference was 0.1% (95% CI: −0.5%—0.7%). The mean differences of D99, D5–D95 and MLD were below 1%. The reliability of dose distributions for liver tumors treated with RGPT-SSPT was shown by the evaluation of the accumulated dose distributions.
format Online
Article
Text
id pubmed-8273791
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher Oxford University Press
record_format MEDLINE/PubMed
spelling pubmed-82737912021-07-13 Validation of dose distribution for liver tumors treated with real-time-image gated spot-scanning proton therapy by log data based dose reconstruction Yamada, Takahiro Takao, Seishin Koyano, Hidenori Nihongi, Hideaki Fujii, Yusuke Hirayama, Shusuke Miyamoto, Naoki Matsuura, Taeko Umegaki, Kikuo Katoh, Norio Yokota, Isao Shirato, Hiroki Shimizu, Shinichi J Radiat Res Fundamental Radiation Science In spot scanning proton therapy (SSPT), the spot position relative to the target may fluctuate through tumor motion even when gating the radiation by utilizing a fiducial marker. We have established a procedure that evaluates the delivered dose distribution by utilizing log data on tumor motion and spot information. The purpose of this study is to show the reliability of the dose distributions for liver tumors treated with real-time-image gated SSPT (RGPT). In the evaluation procedure, the delivered spot information and the marker position are synchronized on the basis of log data on the timing of the spot irradiation and fluoroscopic X-ray irradiation. Then a treatment planning system reconstructs the delivered dose distribution. Dose distributions accumulated for all fractions were reconstructed for eight liver cases. The log data were acquired in all 168 fractions for all eight cases. The evaluation was performed for the values of maximum dose, minimum dose, D99, and D5–D95 for the clinical target volumes (CTVs) and mean liver dose (MLD) scaled by the prescribed dose. These dosimetric parameters were statistically compared between the planned dose distribution and the reconstructed dose distribution. The mean difference of the maximum dose was 1.3% (95% confidence interval [CI]: 0.6%—2.1%). Regarding the minimum dose, the mean difference was 0.1% (95% CI: −0.5%—0.7%). The mean differences of D99, D5–D95 and MLD were below 1%. The reliability of dose distributions for liver tumors treated with RGPT-SSPT was shown by the evaluation of the accumulated dose distributions. Oxford University Press 2021-05-05 /pmc/articles/PMC8273791/ /pubmed/33948661 http://dx.doi.org/10.1093/jrr/rrab024 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 Fundamental Radiation Science
Yamada, Takahiro
Takao, Seishin
Koyano, Hidenori
Nihongi, Hideaki
Fujii, Yusuke
Hirayama, Shusuke
Miyamoto, Naoki
Matsuura, Taeko
Umegaki, Kikuo
Katoh, Norio
Yokota, Isao
Shirato, Hiroki
Shimizu, Shinichi
Validation of dose distribution for liver tumors treated with real-time-image gated spot-scanning proton therapy by log data based dose reconstruction
title Validation of dose distribution for liver tumors treated with real-time-image gated spot-scanning proton therapy by log data based dose reconstruction
title_full Validation of dose distribution for liver tumors treated with real-time-image gated spot-scanning proton therapy by log data based dose reconstruction
title_fullStr Validation of dose distribution for liver tumors treated with real-time-image gated spot-scanning proton therapy by log data based dose reconstruction
title_full_unstemmed Validation of dose distribution for liver tumors treated with real-time-image gated spot-scanning proton therapy by log data based dose reconstruction
title_short Validation of dose distribution for liver tumors treated with real-time-image gated spot-scanning proton therapy by log data based dose reconstruction
title_sort validation of dose distribution for liver tumors treated with real-time-image gated spot-scanning proton therapy by log data based dose reconstruction
topic Fundamental Radiation Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8273791/
https://www.ncbi.nlm.nih.gov/pubmed/33948661
http://dx.doi.org/10.1093/jrr/rrab024
work_keys_str_mv AT yamadatakahiro validationofdosedistributionforlivertumorstreatedwithrealtimeimagegatedspotscanningprotontherapybylogdatabaseddosereconstruction
AT takaoseishin validationofdosedistributionforlivertumorstreatedwithrealtimeimagegatedspotscanningprotontherapybylogdatabaseddosereconstruction
AT koyanohidenori validationofdosedistributionforlivertumorstreatedwithrealtimeimagegatedspotscanningprotontherapybylogdatabaseddosereconstruction
AT nihongihideaki validationofdosedistributionforlivertumorstreatedwithrealtimeimagegatedspotscanningprotontherapybylogdatabaseddosereconstruction
AT fujiiyusuke validationofdosedistributionforlivertumorstreatedwithrealtimeimagegatedspotscanningprotontherapybylogdatabaseddosereconstruction
AT hirayamashusuke validationofdosedistributionforlivertumorstreatedwithrealtimeimagegatedspotscanningprotontherapybylogdatabaseddosereconstruction
AT miyamotonaoki validationofdosedistributionforlivertumorstreatedwithrealtimeimagegatedspotscanningprotontherapybylogdatabaseddosereconstruction
AT matsuurataeko validationofdosedistributionforlivertumorstreatedwithrealtimeimagegatedspotscanningprotontherapybylogdatabaseddosereconstruction
AT umegakikikuo validationofdosedistributionforlivertumorstreatedwithrealtimeimagegatedspotscanningprotontherapybylogdatabaseddosereconstruction
AT katohnorio validationofdosedistributionforlivertumorstreatedwithrealtimeimagegatedspotscanningprotontherapybylogdatabaseddosereconstruction
AT yokotaisao validationofdosedistributionforlivertumorstreatedwithrealtimeimagegatedspotscanningprotontherapybylogdatabaseddosereconstruction
AT shiratohiroki validationofdosedistributionforlivertumorstreatedwithrealtimeimagegatedspotscanningprotontherapybylogdatabaseddosereconstruction
AT shimizushinichi validationofdosedistributionforlivertumorstreatedwithrealtimeimagegatedspotscanningprotontherapybylogdatabaseddosereconstruction