Literature DB >> 16898437

Integrating respiratory gating into a megavoltage cone-beam CT system.

Jenghwa Chang1, Jussi Sillanpaa, Clifton C Ling, Edward Seppi, Ellen Yorke, Gikas Mageras, Howard Amols.   

Abstract

We have previously described a low-dose megavoltage cone beam computed tomography (MV CBCT) system capable of producing projection image using one beam pulse. In this study, we report on its integration with respiratory gating for gated radiotherapy. The respiratory gating system tracks a reflective marker on the patient's abdomen midway between the xiphoid and umbilicus, and disables radiation delivery when the marker position is outside predefined thresholds. We investigate two strategies for acquiring gated scans. In the continuous rotation-gated acquisition, the linear accelerator (LINAC) is set to the fixed x-ray mode and the gantry makes a 5 min, 360 degree continuous rotation, during which the gating system turns the radiation beam on and off, resulting in projection images with an uneven distribution of projection angles (e.g., in 70 arcs each covering 2 degrees). In the gated rotation-continuous acquisition, the LINAC is set to the dynamic arc mode, which suspends the gantry rotation when the gating system inhibits the beam, leading to a slightly longer (6-7 min) scan time, but yielding projection images with more evenly distributed projection angles (e.g., approximately 0.8 degrees between two consecutive projection angles). We have tested both data acquisition schemes on stationary (a contrast detail and a thoracic) phantoms and protocol lung patients. For stationary phantoms, a separate motion phantom not visible in the images is used to trigger the RPM system. Frame rate is adjusted so that approximately 450 images (13 MU) are acquired for each scan and three-dimensional tomographic images reconstructed using a Feldkamp filtered backprojection algorithm. The gated rotation-continuous acquisition yield reconstructions free of breathing artifacts. The tumor in parenchymal lung and normal tissues are easily discernible and the boundary between the diaphragm and the lung sharply defined. Contrast-to-noise ratio (CNR) is not degraded relative to nongated scans of stationary phantoms. The continuous rotation-gated acquisition scan also yields tomographic images with discernible anatomic features; however, streak artifacts are observed and CNR is reduced by approximately a factor of 4. In conclusion, we have successfully developed a gated MV CBCT system to verify the patient positioning for gated radiotherapy.

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Year:  2006        PMID: 16898437     DOI: 10.1118/1.2207136

Source DB:  PubMed          Journal:  Med Phys        ISSN: 0094-2405            Impact factor:   4.071


  19 in total

1.  A novel technique for markerless, self-sorted 4D-CBCT: feasibility study.

Authors:  Irina Vergalasova; Jing Cai; Fang-Fang Yin
Journal:  Med Phys       Date:  2012-03       Impact factor: 4.071

2.  Extraction of tumor motion trajectories using PICCS-4DCBCT: a validation study.

Authors:  Zhihua Qi; Guang-Hong Chen
Journal:  Med Phys       Date:  2011-10       Impact factor: 4.071

3.  Super-resolution imaging in a multiple layer EPID.

Authors:  Haijian Chen; Joerg Rottmann; Stephen Sf Yip; Daniel Morf; Rony Füglistaller; Josh Star-Lack; George Zentai; Ross Berbeco
Journal:  Biomed Phys Eng Express       Date:  2017-02-21

4.  Monte Carlo investigations of megavoltage cone-beam CT using thick, segmented scintillating detectors for soft tissue visualization.

Authors:  Yi Wang; Larry E Antonuk; Youcef El-Mohri; Qihua Zhao; Amit Sawant; Hong Du
Journal:  Med Phys       Date:  2008-01       Impact factor: 4.071

5.  Autoadaptive phase-correlated (AAPC) reconstruction for 4D CBCT.

Authors:  Frank Bergner; Timo Berkus; Markus Oelhafen; Patrik Kunz; Tinsu Pan; Marc Kachelriess
Journal:  Med Phys       Date:  2009-12       Impact factor: 4.071

6.  Prior Image Constrained Compressed Sensing (PICCS).

Authors:  Guang-Hong Chen; Jie Tang; Shuai Leng
Journal:  Proc SPIE Int Soc Opt Eng       Date:  2008-03-03

7.  Evaluation of respiration-correlated digital tomosynthesis in lung.

Authors:  Joseph Santoro; Sergey Kriminski; D Michael Lovelock; Kenneth Rosenzweig; Hassan Mostafavi; Howard I Amols; Gig S Mageras
Journal:  Med Phys       Date:  2010-03       Impact factor: 4.071

8.  Potential underestimation of the internal target volume (ITV) from free-breathing CBCT.

Authors:  Irina Vergalasova; Jacqueline Maurer; Fang-Fang Yin
Journal:  Med Phys       Date:  2011-08       Impact factor: 4.071

9.  High temporal resolution and streak-free four-dimensional cone-beam computed tomography.

Authors:  Shuai Leng; Jie Tang; Joseph Zambelli; Brian Nett; Ranjini Tolakanahalli; Guang-Hong Chen
Journal:  Phys Med Biol       Date:  2008-09-24       Impact factor: 3.609

10.  Observation of interfractional variations in lung tumor position using respiratory gated and ungated megavoltage cone-beam computed tomography.

Authors:  Jenghwa Chang; Gig S Mageras; Ellen Yorke; Fernando De Arruda; Jussi Sillanpaa; Kenneth E Rosenzweig; Agung Hertanto; Hai Pham; Edward Seppi; Alex Pevsner; C Clifton Ling; Howard Amols
Journal:  Int J Radiat Oncol Biol Phys       Date:  2007-04-01       Impact factor: 7.038

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