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https://www.worldscientific.com/doi/abs/10.1142/S1793626809000211
The interrelationship between beam delivery at the patient and the accelerator system is shown by means of several concrete examples. Apart from a description of several subsystems in a particle therapy facility, design rules for optimizing the reliability of an accelerator and beam delivery system will be discussed, as well as some remarks ...Author: J. M. Schippers
https://www.researchgate.net/publication/263911408_Beam_Delivery_Systems_for_Particle_Radiation_Therapy_Current_Status_and_Recent_Developments
Apart from a description of several subsystems in a particle therapy facility, design rules for optimizing the reliability of an accelerator and beam delivery system will be discussed, as well as ...
https://www.ncbi.nlm.nih.gov/books/NBK44543/
Modern radiotherapy delivery methods capitalize on advances in imaging and radiation treatment planning technologies and allow for much more precise targeting of photon radiotherapy, compared to conventional techniques. The most advanced method for the delivery of high radiation doses with photon beams is IMRT.
https://www.theijpt.org/doi/full/10.14338/IJPT-15-00041.1
Particle radiation therapy requires a 3D biological-dose distribution within several percentage points of the uniformity on a tumor, with as low a dose as possible in the surrounding normal tissue. For this purpose, various beam-delivery methods have been proposed and used . Among them, HIMAC employed a single beam-wobbling method, which is one of the broad-beam methods, resulting in easy dose management and robustness against beam …Author: Koji Noda
https://grants.nih.gov/grants/guide/pa-files/PAR-13-371.html
Although existing technology, such as intensity modulated radiation therapy (IMRT) with photon (X-ray) beams, allows delivery of a well-defined, conformal dose to the target (tumor) volume, it can be achieved only by directing the beams from multiple angles.
https://www.varian.com/products/proton-therapy/treatment-delivery/probeam-360
The most powerful particle accelerator available today to treat cancer. Beam Transport System Focuses, shapes, and guides the beam to the treatment room, creating the small beam size necessary for IMPT and enabling clinicians to target very small spots across the full energy range.
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