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Dose error from deviation of dwell time and source position for high dose-rate (192)Ir in remote afterloading system

The influence of deviations in dwell times and source positions for (192)Ir HDR-RALS was investigated. The potential dose errors for various kinds of brachytherapy procedures were evaluated. The deviations of dwell time ΔT of a (192)Ir HDR source for the various dwell times were measured with a well...

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Autores principales: Okamoto, Hiroyuki, Aikawa, Ako, Wakita, Akihisa, Yoshio, Kotaro, Murakami, Naoya, Nakamura, Satoshi, Hamada, Minoru, Abe, Yoshihisa, Itami, Jun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4099994/
https://www.ncbi.nlm.nih.gov/pubmed/24566719
http://dx.doi.org/10.1093/jrr/rru001
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author Okamoto, Hiroyuki
Aikawa, Ako
Wakita, Akihisa
Yoshio, Kotaro
Murakami, Naoya
Nakamura, Satoshi
Hamada, Minoru
Abe, Yoshihisa
Itami, Jun
author_facet Okamoto, Hiroyuki
Aikawa, Ako
Wakita, Akihisa
Yoshio, Kotaro
Murakami, Naoya
Nakamura, Satoshi
Hamada, Minoru
Abe, Yoshihisa
Itami, Jun
author_sort Okamoto, Hiroyuki
collection PubMed
description The influence of deviations in dwell times and source positions for (192)Ir HDR-RALS was investigated. The potential dose errors for various kinds of brachytherapy procedures were evaluated. The deviations of dwell time ΔT of a (192)Ir HDR source for the various dwell times were measured with a well-type ionization chamber. The deviations of source position ΔP were measured with two methods. One is to measure actual source position using a check ruler device. The other is to analyze peak distances from radiographic film irradiated with 20 mm gap between the dwell positions. The composite dose errors were calculated using Gaussian distribution with ΔT and ΔP as 1σ of the measurements. Dose errors depend on dwell time and distance from the point of interest to the dwell position. To evaluate the dose error in clinical practice, dwell times and point of interest distances were obtained from actual treatment plans involving cylinder, tandem-ovoid, tandem-ovoid with interstitial needles, multiple interstitial needles, and surface-mold applicators. The ΔT and ΔP were 32 ms (maximum for various dwell times) and 0.12 mm (ruler), 0.11 mm (radiographic film). The multiple interstitial needles represent the highest dose error of 2%, while the others represent less than approximately 1%. Potential dose error due to dwell time and source position deviation can depend on kinds of brachytherapy techniques. In all cases, the multiple interstitial needles is most susceptible.
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spelling pubmed-40999942014-08-12 Dose error from deviation of dwell time and source position for high dose-rate (192)Ir in remote afterloading system Okamoto, Hiroyuki Aikawa, Ako Wakita, Akihisa Yoshio, Kotaro Murakami, Naoya Nakamura, Satoshi Hamada, Minoru Abe, Yoshihisa Itami, Jun J Radiat Res Oncology The influence of deviations in dwell times and source positions for (192)Ir HDR-RALS was investigated. The potential dose errors for various kinds of brachytherapy procedures were evaluated. The deviations of dwell time ΔT of a (192)Ir HDR source for the various dwell times were measured with a well-type ionization chamber. The deviations of source position ΔP were measured with two methods. One is to measure actual source position using a check ruler device. The other is to analyze peak distances from radiographic film irradiated with 20 mm gap between the dwell positions. The composite dose errors were calculated using Gaussian distribution with ΔT and ΔP as 1σ of the measurements. Dose errors depend on dwell time and distance from the point of interest to the dwell position. To evaluate the dose error in clinical practice, dwell times and point of interest distances were obtained from actual treatment plans involving cylinder, tandem-ovoid, tandem-ovoid with interstitial needles, multiple interstitial needles, and surface-mold applicators. The ΔT and ΔP were 32 ms (maximum for various dwell times) and 0.12 mm (ruler), 0.11 mm (radiographic film). The multiple interstitial needles represent the highest dose error of 2%, while the others represent less than approximately 1%. Potential dose error due to dwell time and source position deviation can depend on kinds of brachytherapy techniques. In all cases, the multiple interstitial needles is most susceptible. Oxford University Press 2014-07 2014-02-23 /pmc/articles/PMC4099994/ /pubmed/24566719 http://dx.doi.org/10.1093/jrr/rru001 Text en © The Author 2014. Published by Oxford University Press on behalf of The Japan Radiation Research Society and Japanese Society for Radiation Oncology. http://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/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Oncology
Okamoto, Hiroyuki
Aikawa, Ako
Wakita, Akihisa
Yoshio, Kotaro
Murakami, Naoya
Nakamura, Satoshi
Hamada, Minoru
Abe, Yoshihisa
Itami, Jun
Dose error from deviation of dwell time and source position for high dose-rate (192)Ir in remote afterloading system
title Dose error from deviation of dwell time and source position for high dose-rate (192)Ir in remote afterloading system
title_full Dose error from deviation of dwell time and source position for high dose-rate (192)Ir in remote afterloading system
title_fullStr Dose error from deviation of dwell time and source position for high dose-rate (192)Ir in remote afterloading system
title_full_unstemmed Dose error from deviation of dwell time and source position for high dose-rate (192)Ir in remote afterloading system
title_short Dose error from deviation of dwell time and source position for high dose-rate (192)Ir in remote afterloading system
title_sort dose error from deviation of dwell time and source position for high dose-rate (192)ir in remote afterloading system
topic Oncology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4099994/
https://www.ncbi.nlm.nih.gov/pubmed/24566719
http://dx.doi.org/10.1093/jrr/rru001
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