Literature DB >> 24354754

On voxel-by-voxel accumulated dose for prostate radiation therapy using deformable image registration.

Jialu Yu1, Nicholas Hardcastle2, Kyoungkeun Jeong3, Edward T Bender4, Mark A Ritter4, Wolfgang A Tomé5.   

Abstract

Since delivered dose is rarely the same with planned, we calculated the delivered total dose to ten prostate radiotherapy patients treated with rectal balloons using deformable dose accumulation (DDA) and compared it with the planned dose. The patients were treated with TomoTherapy using two rectal balloon designs: five patients had the Radiadyne balloon (balloon A), and five patients had the EZ-EM balloon (balloon B). Prostate and rectal wall contours were outlined on each pre-treatment MVCT for all patients. Delivered fractional doses were calculated using the MVCT taken immediately prior to delivery. Dose grids were accumulated to the last MVCT using DDA tools in Pinnacle3 TM (v9.100, Philips Radiation Oncology Systems, Fitchburg, USA). Delivered total doses were compared with planned doses using prostate and rectal wall DVHs. The rectal NTCP was calculated based on total delivered and planned doses for all patients using the Lyman model. For 8/10 patients, the rectal wall NTCP calculated using the delivered total dose was less than planned, with seven patients showing a decrease of more than 5% in NTCP. For 2/10 patients studied, the rectal wall NTCP calculated using total delivered dose was 2% higher than planned. This study indicates that for patients receiving hypofractionated radiotherapy for prostate cancer with a rectal balloon, total delivered doses to prostate is similar with planned while delivered dose to rectal walls may be significantly different from planned doses. 8/10 patients show significant correlation between rectal balloon anterior-posterior positions and some VD values.
© The Author(s) 2014.

Entities:  

Keywords:  DIR; Deformable dose accumulation; Planned versus delivered NTCP.; Planned versus delivered TCP; gEUD

Mesh:

Year:  2014        PMID: 24354754      PMCID: PMC4554757          DOI: 10.7785/tcrt.2012.500397

Source DB:  PubMed          Journal:  Technol Cancer Res Treat        ISSN: 1533-0338


  32 in total

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4.  Objective assessment of deformable image registration in radiotherapy: a multi-institution study.

Authors:  Rojano Kashani; Martina Hub; James M Balter; Marc L Kessler; Lei Dong; Lifei Zhang; Lei Xing; Yaoqin Xie; David Hawkes; Julia A Schnabel; Jamie McClelland; Sarang Joshi; Quan Chen; Weiguo Lu
Journal:  Med Phys       Date:  2008-12       Impact factor: 4.071

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Journal:  Rep Pract Oncol Radiother       Date:  2012-05-05

6.  Daily variations in delivered doses in patients treated with radiotherapy for localized prostate cancer.

Authors:  Patrick A Kupelian; Katja M Langen; Omar A Zeidan; Sanford L Meeks; Twyla R Willoughby; Thomas H Wagner; Sam Jeswani; Kenneth J Ruchala; Jason Haimerl; Gustavo H Olivera
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7.  The use of megavoltage CT (MVCT) images for dose recomputations.

Authors:  K M Langen; S L Meeks; D O Poole; T H Wagner; T R Willoughby; P A Kupelian; K J Ruchala; J Haimerl; G H Olivera
Journal:  Phys Med Biol       Date:  2005-08-31       Impact factor: 3.609

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9.  The utilization of consistency metrics for error analysis in deformable image registration.

Authors:  Edward T Bender; Wolfgang A Tomé
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10.  A multi-institution evaluation of deformable image registration algorithms for automatic organ delineation in adaptive head and neck radiotherapy.

Authors:  Nicholas Hardcastle; Wolfgang A Tomé; Donald M Cannon; Charlotte L Brouwer; Paul W H Wittendorp; Nesrin Dogan; Matthias Guckenberger; Stéphane Allaire; Yogish Mallya; Prashant Kumar; Markus Oechsner; Anne Richter; Shiyu Song; Michael Myers; Bülent Polat; Karl Bzdusek
Journal:  Radiat Oncol       Date:  2012-06-15       Impact factor: 3.481

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2.  Spatial and dosimetric evaluation of residual distortions of prostate and seminal vesicle bed after image-guided definitive and postoperative radiotherapy of prostate cancer with endorectal balloon.

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3.  Performance variations among clinically available deformable image registration tools in adaptive radiotherapy - how should we evaluate and interpret the result?

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4.  Recommendations of megavoltage computed tomography settings for the implementation of adaptive radiotherapy on helical tomotherapy units.

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