Tumor tracking and motion compensation with an adaptive tumor tracking system (ATTS): System description and prototype testing
- 7 August 2008
- journal article
- radiation therapy-physics
- Published by Wiley in Medical Physics
- Vol. 35 (9) , 3911-3921
- https://doi.org/10.1118/1.2964090
Abstract
A novel system for real‐time tumor tracking and motion compensation with a robotic HexaPOD treatment couch is described. The approach is based on continuous tracking of the tumor motion in portal images without implanted fiducial markers, using the therapeutic megavoltage beam, and tracking of abdominal breathing motion with optical markers. Based on the two independently acquired data sets the table movements for motion compensation are calculated. The principle of operation of the entire prototype system is detailed first. In the second part the performance of the HexaPOD couch was investigated with a robotic four‐dimensional‐phantom capable of simulating real patient tumor trajectories in three‐dimensional space. The performance and limitations of the HexaPOD table and the control system were characterized in terms of its dynamic behavior. The maximum speed and acceleration of the HexaPOD were and in the lateral direction, and and in longitudinal and anterior‐posterior direction, respectively. Base line drifts of the mean tumor position of realistic lung tumor trajectories could be fully compensated. For continuous tumor tracking and motion compensation a reduction of tumor motion up to 68% of the original amplitude was achieved. In conclusion, this study demonstrated that it is technically feasible to compensate breathing induced tumor motion in the lung with the adaptive tumor tracking system.Keywords
This publication has 52 references indexed in Scilit:
- Real-time tracking of tumor motions and deformations along the leaf travel direction with the aid of a synchronized dynamic MLC leaf sequencerPhysics in Medicine & Biology, 2007
- Statistical analysis and correlation discovery of tumor respiratory motionPhysics in Medicine & Biology, 2007
- Real‐time tumor tracking using implanted positron emission markers: Concept and simulation studyMedical Physics, 2006
- Speed and amplitude of lung tumor motion precisely detected in four-dimensional setup and in real-time tumor-tracking radiotherapyInternational Journal of Radiation Oncology*Biology*Physics, 2006
- Cone-beam CT based image-guidance for extracranial stereotactic radiotherapy of intrapulmonary tumorsActa Oncologica, 2006
- 4D imaging for target definition in stereotactic radiotherapy for lung cancerActa Oncologica, 2006
- Three-dimensional spatial modelling of the correlation between abdominal motion and lung tumour motion with breathingActa Oncologica, 2006
- How much margin reduction is possible through gating or breath hold?Physics in Medicine & Biology, 2005
- Errors and margins in radiotherapySeminars in Radiation Oncology, 2004
- Real‐time tumor‐tracking radiation therapy for lung carcinoma by the aid of insertion of a gold marker using bronchofiberscopyCancer, 2002