PURPOSE: Pencil beam scanned proton therapy (PBS-PT) treatment quality might be compromised by interplay and motion effects. Via fraction-wise reconstruction of 4D dose distributions and dose accumulation, we assess the clinical relevance of motion related target dose degradation in thoracic cancer patients.METHODS AND MATERIALS: For the ten thoracic patients (Hodgkin lymphoma and non-small cell lung cancer) treated at our proton therapy facility, daily breathing pattern records, treatment delivery log-files and weekly repeated 4DCTs were collected. Patients exhibited point-max target motion of up to 20 mm. They received robustly optimized treatment plans, delivered with five-times rescanning in fractionated regimen. Treatment delivery reco...
Objective.4D dose calculation (4DDC) for pencil beam scanned (PBS) proton therapy is typically based...
Purpose: Despite the anticipated clinical benefits of intensity-modulated proton therapy (IMPT), pla...
Purpose: For locally advanced-stage non-small cell lung cancer (NSCLC), inter-fraction target motion...
PURPOSE: Pencil beam scanned proton therapy (PBS-PT) treatment quality might be compromised by inter...
Background and purpose Motion-induced uncertainties hamper the clinical implementation of pencil bea...
Purpose The unpredictable interplay between dynamic proton therapy delivery and target motion in the...
Background and purpose Motion-induced uncertainties hamper the clinical implementation of pencil bea...
Four-dimensional dose calculation (4D-DC) is crucial for predicting the dosimetric outcome in the pr...
Due to anticipated clinical benefits, moving targets are potential future indications for pencil bea...
Background: Time-resolved volumetric magnetic resonance imaging (4DMRI) offers the potential to anal...
Proton therapy using pencil beam scanning (PBS) has become more common in cancer treatment during th...
Purpose/ObjectiveFor pencil beam scanning proton therapy (PBS-PT), moving targets remain challenging...
Objective.4D dose calculation (4DDC) for pencil beam scanned (PBS) proton therapy is typically based...
Purpose: Despite the anticipated clinical benefits of intensity-modulated proton therapy (IMPT), pla...
Purpose: For locally advanced-stage non-small cell lung cancer (NSCLC), inter-fraction target motion...
PURPOSE: Pencil beam scanned proton therapy (PBS-PT) treatment quality might be compromised by inter...
Background and purpose Motion-induced uncertainties hamper the clinical implementation of pencil bea...
Purpose The unpredictable interplay between dynamic proton therapy delivery and target motion in the...
Background and purpose Motion-induced uncertainties hamper the clinical implementation of pencil bea...
Four-dimensional dose calculation (4D-DC) is crucial for predicting the dosimetric outcome in the pr...
Due to anticipated clinical benefits, moving targets are potential future indications for pencil bea...
Background: Time-resolved volumetric magnetic resonance imaging (4DMRI) offers the potential to anal...
Proton therapy using pencil beam scanning (PBS) has become more common in cancer treatment during th...
Purpose/ObjectiveFor pencil beam scanning proton therapy (PBS-PT), moving targets remain challenging...
Objective.4D dose calculation (4DDC) for pencil beam scanned (PBS) proton therapy is typically based...
Purpose: Despite the anticipated clinical benefits of intensity-modulated proton therapy (IMPT), pla...
Purpose: For locally advanced-stage non-small cell lung cancer (NSCLC), inter-fraction target motion...