Treatment planning for heavy-ion radiotherapy: physical beam model and dose optimization
Планирование лечения при лучевой терапии тяжёлыми ионами: физическая модель пучка и оптимизация дозы
2000-10-23
SCID: 54.1/sw3kye9q
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carbon-ion beam modelheavy-ion radiotherapyintensity-modulated fieldsinverse treatment planningraster scan system
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Abstract (AI)
We describe a novel code system, TRiP, dedicated to the planning of radiotherapy with energetic ions, in particular 12C. The software is designed to cooperate with three-dimensional active dose shaping devices like the GSI raster scan system. This unique beam delivery system allows us to select any combination from a list of 253 individual beam energies, 7 different beam spot sizes and 15 intensity levels. The software includes a beam model adapted to and verified for carbon ions. Inverse planning techniques are implemented in order to obtain a uniform target dose distribution from clinical input data, i.e. CT images and patient contours. This implies the automatic generation of intensity modulated fields of heavy ions with as many as 40000 raster points, where each point corresponds to a specific beam position, energy and particle fluence. This set of data is directly passed to the beam delivery and control system. The treatment planning code has been in clinical use since the start of the GSI pilot project in December 1997. Forty-eight patients have been successfully planned and treated.
Key Findings
1
Inverse planning automatically generates uniform target-dose distributions and intensity-modulated fields containing up to 40,000 raster points from CT images and patient contours.
2
TRiP is a novel treatment-planning code developed specifically for energetic-ion radiotherapy, particularly carbon-ion therapy.
3
TRiP supports GSI raster scanning with 253 beam energies, seven spot sizes, and 15 intensity levels for three-dimensional active dose shaping.
4
The system incorporates a carbon-ion beam model adapted to and experimentally verified for clinical planning.
5
The treatment-planning system has been used clinically since December 1997, enabling successful planning and treatment of 48 patients.
Research Object
heavy-ion radiotherapy treatment planning with energetic carbon-ion beams
Research Subject
physical beam modeling and inverse dose optimization for generating uniform, intensity-modulated target dose distributions
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2000-10-23
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