Breathing adapted radiotherapy: a 4D gating software for lung cancer
<p>Abstract</p> <p>Purpose</p> <p>Physiological respiratory motion of tumors growing in the lung can be corrected with respiratory gating when treated with radiotherapy (RT). The optimal respiratory phase for beam-on may be assessed with a respiratory phase optimizer (R...
Main Authors: | , , , , , , , , |
---|---|
Format: | Article |
Language: | English |
Published: |
BMC
2011-06-01
|
Series: | Radiation Oncology |
Subjects: | |
Online Access: | http://www.ro-journal.com/content/6/1/78 |
id |
doaj-f136d74222114f4db97f6f9b1a9875c6 |
---|---|
record_format |
Article |
spelling |
doaj-f136d74222114f4db97f6f9b1a9875c62020-11-25T00:17:35ZengBMCRadiation Oncology1748-717X2011-06-01617810.1186/1748-717X-6-78Breathing adapted radiotherapy: a 4D gating software for lung cancerZaidi HabibAzria DavidFenoglietto PascalVinh-Hung VincentVock JacquelinePeguret NicolasWissmeyer MichaelRatib OsmanMiralbell Raymond<p>Abstract</p> <p>Purpose</p> <p>Physiological respiratory motion of tumors growing in the lung can be corrected with respiratory gating when treated with radiotherapy (RT). The optimal respiratory phase for beam-on may be assessed with a respiratory phase optimizer (RPO), a 4D image processing software developed with this purpose.</p> <p>Methods and Materials</p> <p>Fourteen patients with lung cancer were included in the study. Every patient underwent a 4D-CT providing ten datasets of ten phases of the respiratory cycle (0-100% of the cycle). We defined two morphological parameters for comparison of 4D-CT images in different respiratory phases: tumor-volume to lung-volume ratio and tumor-to-spinal cord distance. The RPO automatized the calculations (200 per patient) of these parameters for each phase of the respiratory cycle allowing to determine the optimal interval for RT.</p> <p>Results</p> <p>Lower lobe lung tumors not attached to the diaphragm presented with the largest motion with breathing. Maximum inspiration was considered the optimal phase for treatment in 4 patients (28.6%). In 7 patients (50%), however, the RPO showed a most favorable volumetric and spatial configuration in phases other than maximum inspiration. In 2 cases (14.4%) the RPO showed no benefit from gating. This tool was not conclusive in only one case.</p> <p>Conclusions</p> <p>The RPO software presented in this study can help to determine the optimal respiratory phase for gated RT based on a few simple morphological parameters. Easy to apply in daily routine, it may be a useful tool for selecting patients who might benefit from breathing adapted RT.</p> http://www.ro-journal.com/content/6/1/78Lung cancerradiotherapy4D-CTgating |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Zaidi Habib Azria David Fenoglietto Pascal Vinh-Hung Vincent Vock Jacqueline Peguret Nicolas Wissmeyer Michael Ratib Osman Miralbell Raymond |
spellingShingle |
Zaidi Habib Azria David Fenoglietto Pascal Vinh-Hung Vincent Vock Jacqueline Peguret Nicolas Wissmeyer Michael Ratib Osman Miralbell Raymond Breathing adapted radiotherapy: a 4D gating software for lung cancer Radiation Oncology Lung cancer radiotherapy 4D-CT gating |
author_facet |
Zaidi Habib Azria David Fenoglietto Pascal Vinh-Hung Vincent Vock Jacqueline Peguret Nicolas Wissmeyer Michael Ratib Osman Miralbell Raymond |
author_sort |
Zaidi Habib |
title |
Breathing adapted radiotherapy: a 4D gating software for lung cancer |
title_short |
Breathing adapted radiotherapy: a 4D gating software for lung cancer |
title_full |
Breathing adapted radiotherapy: a 4D gating software for lung cancer |
title_fullStr |
Breathing adapted radiotherapy: a 4D gating software for lung cancer |
title_full_unstemmed |
Breathing adapted radiotherapy: a 4D gating software for lung cancer |
title_sort |
breathing adapted radiotherapy: a 4d gating software for lung cancer |
publisher |
BMC |
series |
Radiation Oncology |
issn |
1748-717X |
publishDate |
2011-06-01 |
description |
<p>Abstract</p> <p>Purpose</p> <p>Physiological respiratory motion of tumors growing in the lung can be corrected with respiratory gating when treated with radiotherapy (RT). The optimal respiratory phase for beam-on may be assessed with a respiratory phase optimizer (RPO), a 4D image processing software developed with this purpose.</p> <p>Methods and Materials</p> <p>Fourteen patients with lung cancer were included in the study. Every patient underwent a 4D-CT providing ten datasets of ten phases of the respiratory cycle (0-100% of the cycle). We defined two morphological parameters for comparison of 4D-CT images in different respiratory phases: tumor-volume to lung-volume ratio and tumor-to-spinal cord distance. The RPO automatized the calculations (200 per patient) of these parameters for each phase of the respiratory cycle allowing to determine the optimal interval for RT.</p> <p>Results</p> <p>Lower lobe lung tumors not attached to the diaphragm presented with the largest motion with breathing. Maximum inspiration was considered the optimal phase for treatment in 4 patients (28.6%). In 7 patients (50%), however, the RPO showed a most favorable volumetric and spatial configuration in phases other than maximum inspiration. In 2 cases (14.4%) the RPO showed no benefit from gating. This tool was not conclusive in only one case.</p> <p>Conclusions</p> <p>The RPO software presented in this study can help to determine the optimal respiratory phase for gated RT based on a few simple morphological parameters. Easy to apply in daily routine, it may be a useful tool for selecting patients who might benefit from breathing adapted RT.</p> |
topic |
Lung cancer radiotherapy 4D-CT gating |
url |
http://www.ro-journal.com/content/6/1/78 |
work_keys_str_mv |
AT zaidihabib breathingadaptedradiotherapya4dgatingsoftwareforlungcancer AT azriadavid breathingadaptedradiotherapya4dgatingsoftwareforlungcancer AT fenogliettopascal breathingadaptedradiotherapya4dgatingsoftwareforlungcancer AT vinhhungvincent breathingadaptedradiotherapya4dgatingsoftwareforlungcancer AT vockjacqueline breathingadaptedradiotherapya4dgatingsoftwareforlungcancer AT peguretnicolas breathingadaptedradiotherapya4dgatingsoftwareforlungcancer AT wissmeyermichael breathingadaptedradiotherapya4dgatingsoftwareforlungcancer AT ratibosman breathingadaptedradiotherapya4dgatingsoftwareforlungcancer AT miralbellraymond breathingadaptedradiotherapya4dgatingsoftwareforlungcancer |
_version_ |
1725379041740980224 |