skip to main content
OSTI.GOV title logo U.S. Department of Energy
Office of Scientific and Technical Information

Title: Multibeam tomotherapy: A new treatment unit devised for multileaf collimation, intensity-modulated radiation therapy

Journal Article · · Medical Physics
DOI:https://doi.org/10.1118/1.2779129· OSTI ID:21032809
;  [1]
  1. Strahlenklinik, Universitaetsklinikum Erlangen, Universitaetstrasse 27, 91054 Erlangen, Germany and Institut fuer Medizinische Physik, Friedrich-Alexander-Universitaet Erlangen-Nuernberg, Henkestrasse 91, 91052 Erlangen (Germany)

A fully integrated system for treatment planning, application, and verification for automated multileaf collimator (MLC) based, intensity-modulated, image-guided, and adaptive radiation therapy (IMRT, IGRT and ART, respectively) is proposed. Patient comfort, which was the major development goal, will be achieved through a new unit design and short treatment times. Our device for photon beam therapy will consist of a new dual energy linac with five fixed treatment heads positioned evenly along one plane but one electron beam generator only. A minimum of moving parts increases technical reliability and reduces motion times to a minimum. Motion is allowed solely for the MLCs, the robotic patient table, and the small angle gantry rotation of {+-}36 deg. . Besides sophisticated electron beam guidance, this compact setup can be built using existing modules. The flattening-filter-free treatment heads are characterized by reduced beam-on time and contain apertures restricted in one dimension to the area of maximum primary fluence output. In the case of longer targets, this leads to a topographic intensity modulation, thanks to the combination of 'step and shoot' MLC delivery and discrete patient couch motion. Owing to the limited number of beam directions, this multislice cone beam serial tomotherapy is referred to as 'multibeam tomotherapy.' Every patient slice is irradiated by one treatment head at any given moment but for one subfield only. The electron beam is then guided to the next head ready for delivery, while the other heads are preparing their leaves for the next segment. The 'Multifocal MLC-positioning' algorithm was programmed to enable treatment planning and optimize treatment time. We developed an overlap strategy for the longitudinally adjacent fields of every beam direction, in doing so minimizing the field match problem and the effects of possible table step errors. Clinical case studies show for the same or better planning target volume coverage, better organ-at-risk sparing, and comparable mean integral dose to the normal tissue a reduction in treatment time by more than 50% to only a few minutes in comparison to high-quality 3-D conformal and IMRT treatments. As a result, it will be possible to incorporate features for better patient positioning and image guidance, while sustaining reasonable overall treatment times at the same time. The virtual multibeam tomotherapy design study TOM'5-CT contains a dedicated electron beam CT (TOM'AGE) and an objective optical topometric patient positioning system (TOPOS registered ). Thanks to the wide gantry bore of 120 cm and slim gantry depths of 70 cm, patients can be treated very comfortably, in all cases tumor-isocentrically, as well as with noncoplanar beam arrangements as in stereotactic radiosurgery with a couch rotation of up to {+-}54 deg. . The TOM'5 treatment unit on which this theoretical concept is based has a stand-alone depth of 40 cm and an outer diameter of 245 cm; the focus-isocenter distance of the heads is 100 cm with a field size of 40 cmx7 cm and 0.5 cm leaves, which operate perpendicular to the axis of table motion.

OSTI ID:
21032809
Journal Information:
Medical Physics, Vol. 34, Issue 10; Other Information: DOI: 10.1118/1.2779129; (c) 2007 American Association of Physicists in Medicine; Country of input: International Atomic Energy Agency (IAEA); ISSN 0094-2405
Country of Publication:
United States
Language:
English

Similar Records

Monte Carlo calculation of helical tomotherapy dose delivery
Journal Article · Fri Aug 15 00:00:00 EDT 2008 · Medical Physics · OSTI ID:21032809

SU-E-T-761: TOMOMC, A Monte Carlo-Based Planning VerificationTool for Helical Tomotherapy
Journal Article · Mon Jun 15 00:00:00 EDT 2015 · Medical Physics · OSTI ID:21032809

Volumetric modulated arc therapy: IMRT in a single gantry arc
Journal Article · Tue Jan 15 00:00:00 EST 2008 · Medical Physics · OSTI ID:21032809