Literature DB >> 17197124

X-ray-assisted positioning of patients treated by conformal arc radiotherapy for prostate cancer: comparison of setup accuracy using implanted markers versus bony structures.

Guy Soete1, Mieke De Cock, Dirk Verellen, Dirk Michielsen, Frans Keuppens, Guy Storme.   

Abstract

PURPOSE: The aim of this study was to compare setup accuracy of NovalisBody stereoscopic X-ray positioning using implanted markers in the prostate vs. bony structures in patients treated with dynamic conformal arc radiotherapy for prostate cancer. METHODS AND MATERIALS: Random and systematic setup errors (RE and SE) of the isocenter with regard to the center of gravity of three fiducial markers were measured by means of orthogonal verification films in 120 treatment sessions in 12 patients. Positioning was performed using NovalisBody semiautomated marker fusion. The results were compared with a control group of 261 measurements in 15 patients who were positioned with NovalisBody automated bone fusion. In addition, interfraction and intrafraction prostate motion was registered in the patients with implanted markers.
RESULTS: Marker-based X-ray positioning resulted in a reduction of RE as well as SE in the anteroposterior, craniocaudal, and left-right directions compared with those in the control group. The interfraction prostate displacements with regard to the bony pelvis that could be avoided by marker positioning ranged between 1.6 and 2.8 mm for RE and between 1.3 and 4.3 mm for SE. Intrafraction random and systematic prostate movements ranged between 1.4 and 2.4 mm and between 0.8 and 1.3 mm, respectively.
CONCLUSION: The problem of interfraction prostate motion can be solved by using implanted markers. In addition, the NovalisBody X-ray system performs more accurately with markers compared with bone fusion. Intrafraction organ motion has become the limiting factor for margin reduction around the clinical target volume.

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Year:  2006        PMID: 17197124     DOI: 10.1016/j.ijrobp.2006.09.041

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


  7 in total

Review 1.  A review of image-guided radiotherapy.

Authors:  George T Y Chen; Gregory C Sharp; Shinichiro Mori
Journal:  Radiol Phys Technol       Date:  2008-12-16

2.  Changes in rectal volume and prostate localization due to placement of a rectum-emptying tube.

Authors:  Hiroshi Fuji; Shigeyuki Murayama; Masashi Niwakawa; Raizou Yamaguchi; Ryou Yamashita; Takashi Matsui; Haruo Yamashita; Tetsuo Nishimura; Kenichi Tobisu
Journal:  Jpn J Radiol       Date:  2009-06-25       Impact factor: 2.374

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.  Current concepts on imaging in radiotherapy.

Authors:  Michela Lecchi; Piero Fossati; Federica Elisei; Roberto Orecchia; Giovanni Lucignani
Journal:  Eur J Nucl Med Mol Imaging       Date:  2007-10-31       Impact factor: 9.236

5.  Calcium Phosphate Cement Paste Injection as a Fiducial Marker of Cervical Cancer.

Authors:  Ichiro Ogino; Masakazu Kitagawa; Shigenobu Watanabe; Hiroshi Yoshida; Masaharu Hata
Journal:  In Vivo       Date:  2018 Nov-Dec       Impact factor: 2.155

6.  Intrafractional prostate motion during external beam radiotherapy monitored by a real-time target localization system.

Authors:  Xu Tong; Xiaoming Chen; Jinsheng Li; Qianqian Xu; Mu-Han Lin; Lili Chen; Robert A Price; Chang-Ming Ma
Journal:  J Appl Clin Med Phys       Date:  2015-03-08       Impact factor: 2.102

7.  Appropriate patient instructions can reduce prostate motion.

Authors:  Reinhold Graf; Dirk Boehmer; Jacek Nadobny; Volker Budach; Peter Wust
Journal:  Radiat Oncol       Date:  2012-08-01       Impact factor: 3.481

  7 in total

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