We report on development of a new four-dimensional (4D) optimisation approach for scanned proton beams, which incorporates both irregular motion patterns and the delivery dynamics of the treatment machine into the plan optimiser. Furthermore, we assess the effectiveness of this technique to reduce dose to critical structures in proximity to moving targets, while maintaining effective target dose homogeneity and coverage. The proposed approach has been tested using both a simulated phantom and a clinical liver cancer case, and allows for realistic 4D calculations and optimisation using irregular breathing patterns extracted from e.g. 4DCT-MRI (4D computed tomography-magnetic resonance imaging). 4D dose distributions resulting from our 4D opt...
In 2016 and 2017, the 8th and 9th 4D treatment planning workshop took place in Groningen (the Nether...
Objective.4D dose calculation (4DDC) for pencil beam scanned (PBS) proton therapy is typically based...
Proton therapy (PT) exploits the Bragg peak depth-dose profile to obtain conformal treat- ments, wh...
Pencil beam scanning (PBS) proton therapy is due to its steep dose gradients a promising treatment o...
Background and purpose Scanned carbon beam therapy offers advantageous dose distributions and an inc...
International audienceIn the treatment of moving targets with proton beams, time resolved image guid...
A major challenge in the application of intensity-modulated proton therapy (IMPT) for lung cancer pa...
Due to anticipated clinical benefits, moving targets are potential future indications for pencil bea...
Pencil beam scanned (PBS) proton therapy has many advantages over conventional radiotherapy, but its...
4D multi-image-based (4DMIB) optimization is a form of robust optimization where different uncertain...
Pencil beam scanned (PBS) proton therapy has many advantages over conventional radiotherapy, but its...
Background: Major challenges in the application of intensity-modulated proton therapy (IMPT) for lun...
Particle therapy (PT) with scanned carbon ions has been shown to improve the treatment of stage IV l...
Proton radiotherapy has advantages to deliver accurate high conformal radiation dose to the tumor wh...
PURPOSE: Robust optimization is becoming the gold standard for generating robust plans against vario...
In 2016 and 2017, the 8th and 9th 4D treatment planning workshop took place in Groningen (the Nether...
Objective.4D dose calculation (4DDC) for pencil beam scanned (PBS) proton therapy is typically based...
Proton therapy (PT) exploits the Bragg peak depth-dose profile to obtain conformal treat- ments, wh...
Pencil beam scanning (PBS) proton therapy is due to its steep dose gradients a promising treatment o...
Background and purpose Scanned carbon beam therapy offers advantageous dose distributions and an inc...
International audienceIn the treatment of moving targets with proton beams, time resolved image guid...
A major challenge in the application of intensity-modulated proton therapy (IMPT) for lung cancer pa...
Due to anticipated clinical benefits, moving targets are potential future indications for pencil bea...
Pencil beam scanned (PBS) proton therapy has many advantages over conventional radiotherapy, but its...
4D multi-image-based (4DMIB) optimization is a form of robust optimization where different uncertain...
Pencil beam scanned (PBS) proton therapy has many advantages over conventional radiotherapy, but its...
Background: Major challenges in the application of intensity-modulated proton therapy (IMPT) for lun...
Particle therapy (PT) with scanned carbon ions has been shown to improve the treatment of stage IV l...
Proton radiotherapy has advantages to deliver accurate high conformal radiation dose to the tumor wh...
PURPOSE: Robust optimization is becoming the gold standard for generating robust plans against vario...
In 2016 and 2017, the 8th and 9th 4D treatment planning workshop took place in Groningen (the Nether...
Objective.4D dose calculation (4DDC) for pencil beam scanned (PBS) proton therapy is typically based...
Proton therapy (PT) exploits the Bragg peak depth-dose profile to obtain conformal treat- ments, wh...