Literature DB >> 15337537

Measurements of intrafraction motion and interfraction and intrafraction rotation of prostate by three-dimensional analysis of daily portal imaging with radiopaque markers.

Jean-François Aubry1, Luc Beaulieu, Louis-Martin Girouard, Sylviane Aubin, Daniel Tremblay, Jacques Laverdière, Eric Vigneault.   

Abstract

PURPOSE: To measure the interfraction and intrafraction motion of the prostate during the course of external beam radiotherapy using a video electronic portal imaging device and three-dimensional analysis. METHODS AND MATERIALS: Eighteen patients underwent implantation with two or three gold markers in the prostate before five-angle/11-field conformal radiotherapy. Using CT data as the positional reference, multiple daily sets of portal images, and a three-dimensional reconstruction algorithm, intrafraction translations, as well as interfraction and intrafraction rotations, were analyzed along the three principal axes (left-right [LR], superoinferior [SI], and AP). The overall mean values and standard deviations (SDs), along with random and systematic SDs, were computed for these translations and rotations.
RESULTS: For 282 intrafraction translational displacements, the random SD was 0.8 mm (systematic SD, 0.2) in the LR, 1.0 mm (systematic SD, 0.4) in the SI, and 1.4 mm (systematic SD, 0.7) in the AP axes. The analysis of 348 interfraction rotations revealed random SDs of 6.1 degrees (systematic SD, 5.6 degrees ) around the LR axis, 2.8 degrees (systematic SD, 2.4 degrees ) around the SI axis, and 2.0 degrees (systematic SD, 2.2 degrees ) around the AP axis. The intrafraction rotational motion observed during 44 fractions had a random SD of 1.8 degrees (systematic SD, 1.0 degrees ) around the LR, 1.1 degrees (systematic SD, 0.8 degrees ) around the SI, and 0.6 degrees (systematic SD, 0.3 degrees ) around the AP axis.
CONCLUSION: The interfraction rotations observed were more important than those reported in previous studies. Intrafraction motion was generally smaller in magnitude than interfraction motion. However, the intrafraction rotations and translations of the prostate should be taken into account when designing planning target volume margins because their magnitudes are not negligible.

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Year:  2004        PMID: 15337537     DOI: 10.1016/j.ijrobp.2004.02.045

Source DB:  PubMed          Journal:  Int J Radiat Oncol Biol Phys        ISSN: 0360-3016            Impact factor:   7.038


  37 in total

1.  Prostate intrafraction motion evaluation using kV fluoroscopy during treatment delivery: a feasibility and accuracy study.

Authors:  Justus Adamson; Qiuwen Wu
Journal:  Med Phys       Date:  2008-05       Impact factor: 4.071

2.  Impact of different setup approaches in image-guided radiotherapy as primary treatment for prostate cancer: a study of 2940 setup deviations in 980 MVCTs.

Authors:  Kilian Schiller; Alessia Petrucci; Hans Geinitz; Tibor Schuster; Hanno Specht; Severin Kampfer; Marciana Nona Duma
Journal:  Strahlenther Onkol       Date:  2014-04-23       Impact factor: 3.621

3.  Modeling positioning uncertainties of prostate cancer external beam radiation therapy using pre-treatment data.

Authors:  Per Munck af Rosenschöld; Neil B Desai; Jung Hun Oh; Aditya Apte; Margie Hunt; Abraham Kalikstein; James Mechalakos; Laura Happersett; Joseph O Deasy; Michael J Zelefsky
Journal:  Radiother Oncol       Date:  2014-02-20       Impact factor: 6.280

4.  Comparison of prostate positioning guided by three-dimensional transperineal ultrasound and cone beam CT.

Authors:  Minglun Li; Hendrik Ballhausen; Nina-Sophie Hegemann; Michael Reiner; Stefan Tritschler; Christian Gratzke; Farkhad Manapov; Stefanie Corradini; Ute Ganswindt; Claus Belka
Journal:  Strahlenther Onkol       Date:  2016-12-07       Impact factor: 3.621

5.  Dosimetric consequences of rotational errors in radiation therapy of pediatric brain tumor patients.

Authors:  Chris Beltran; Alexander Pegram; Thomas E Merchant
Journal:  Radiother Oncol       Date:  2011-07-02       Impact factor: 6.280

6.  Prostate intrafraction motion assessed by simultaneous kilovoltage fluoroscopy at megavoltage delivery I: clinical observations and pattern analysis.

Authors:  Justus Adamson; Qiuwen Wu
Journal:  Int J Radiat Oncol Biol Phys       Date:  2010-06-25       Impact factor: 7.038

7.  Optimizing monoscopic kV fluoro acquisition for prostate intrafraction motion evaluation.

Authors:  Justus Adamson; Qiuwen Wu
Journal:  Phys Med Biol       Date:  2008-12-10       Impact factor: 3.609

8.  Planning target volume margins for prostate radiotherapy using daily electronic portal imaging and implanted fiducial markers.

Authors:  David Skarsgard; Pat Cadman; Ali El-Gayed; Robert Pearcey; Patricia Tai; Nadeem Pervez; Jackson Wu
Journal:  Radiat Oncol       Date:  2010-06-10       Impact factor: 3.481

9.  Prostate cancer treated with image-guided helical TomoTherapy® and image-guided LINAC-IMRT : Correlation between high-dose bladder volume, margin reduction, and genitourinary toxicity.

Authors:  Sonia Drozdz; Michael Schwedas; Henning Salz; Susan Foller; Thomas G Wendt
Journal:  Strahlenther Onkol       Date:  2016-01-07       Impact factor: 3.621

10.  Automatic prostate tracking and motion assessment in volumetric modulated arc therapy with an electronic portal imaging device.

Authors:  Juan Diego Azcona; Ruijiang Li; Edward Mok; Steven Hancock; Lei Xing
Journal:  Int J Radiat Oncol Biol Phys       Date:  2013-04-19       Impact factor: 7.038

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