Objective.4D dose calculation (4DDC) for pencil beam scanned (PBS) proton therapy is typically based on phase-sorting of individual pencil beams onto phases of a single breathing cycle 4DCT. Understanding the dosimetric limitations and uncertainties of this approach is essential, especially for the realistic treatment scenario with irregular free breathing motion.Approach.For three liver and three lung cancer patient CTs, the deformable multi-cycle motion from 4DMRIs was used to generate six synthetic 4DCT(MRI)s, providing irregular motion (11/15 cycles for liver/lung; tumor amplitudes ∼4-18 mm). 4DDCs for two-field plans were performed, with the temporal resolution of the pencil beam delivery (4-200 ms) or with 8 phases per breathing cycle...
We report on development of a new four-dimensional (4D) optimisation approach for scanned proton bea...
Purpose/Objective For pencil beam scanning proton therapy (PBS-PT), moving targets remain challengin...
PURPOSE: Respiratory impacts in pencil beam scanned proton therapy (PBS-PT) are accounted by extensi...
Purpose/ObjectiveFor pencil beam scanning proton therapy (PBS-PT), moving targets remain challenging...
PURPOSE: Pencil beam scanned proton therapy (PBS-PT) treatment quality might be compromised by inter...
Four-dimensional dose calculation (4D-DC) is crucial for predicting the dosimetric outcome in the pr...
Pencil beam scanned (PBS) proton therapy has many advantages over conventional radiotherapy, but its...
Pencil beam scanned (PBS) proton therapy has many advantages over conventional radiotherapy, but its...
Pencil beam scanning (PBS) proton therapy is due to its steep dose gradients a promising treatment o...
Background: Time-resolved volumetric magnetic resonance imaging (4DMRI) offers the potential to anal...
Background and purpose Motion-induced uncertainties hamper the clinical implementation of pencil bea...
Proton therapy using pencil beam scanning (PBS) has become more common in cancer treatment during th...
Due to anticipated clinical benefits, moving targets are potential future indications for pencil bea...
Background and purpose Motion-induced uncertainties hamper the clinical implementation of pencil bea...
We report on development of a new four-dimensional (4D) optimisation approach for scanned proton bea...
Purpose/Objective For pencil beam scanning proton therapy (PBS-PT), moving targets remain challengin...
PURPOSE: Respiratory impacts in pencil beam scanned proton therapy (PBS-PT) are accounted by extensi...
Purpose/ObjectiveFor pencil beam scanning proton therapy (PBS-PT), moving targets remain challenging...
PURPOSE: Pencil beam scanned proton therapy (PBS-PT) treatment quality might be compromised by inter...
Four-dimensional dose calculation (4D-DC) is crucial for predicting the dosimetric outcome in the pr...
Pencil beam scanned (PBS) proton therapy has many advantages over conventional radiotherapy, but its...
Pencil beam scanned (PBS) proton therapy has many advantages over conventional radiotherapy, but its...
Pencil beam scanning (PBS) proton therapy is due to its steep dose gradients a promising treatment o...
Background: Time-resolved volumetric magnetic resonance imaging (4DMRI) offers the potential to anal...
Background and purpose Motion-induced uncertainties hamper the clinical implementation of pencil bea...
Proton therapy using pencil beam scanning (PBS) has become more common in cancer treatment during th...
Due to anticipated clinical benefits, moving targets are potential future indications for pencil bea...
Background and purpose Motion-induced uncertainties hamper the clinical implementation of pencil bea...
We report on development of a new four-dimensional (4D) optimisation approach for scanned proton bea...
Purpose/Objective For pencil beam scanning proton therapy (PBS-PT), moving targets remain challengin...
PURPOSE: Respiratory impacts in pencil beam scanned proton therapy (PBS-PT) are accounted by extensi...