PURPOSE: Robust optimization is becoming the gold standard for generating robust plans against various kinds of treatment uncertainties. Today, most robust optimization strategies use a pragmatic set of treatment scenarios (the so-called uncertainty set) consisting of combinations of maximum errors, of each considered uncertainty source (such as tumor motion, setup and image-conversion errors). This approach presents two key issues. First, a subset of considered scenarios is unnecessarily improbable which could potentially compromise the plan quality. Second, the resulting large uncertainty set leads to long plan computation times, which limits the potential for robust optimization as a standard clinical tool. In order to address these issu...
Purpose: To develop an efficient method to implement random set-up errors and organ motion in robust...
I. Introduction and purpose Several studies reported both systematic and random variations of the me...
PURPOSE: To provide methods for quantification of uncertainties in 4-dimensional (4D) treatment duri...
Purpose Robust optimization is becoming the gold standard for generating robust plans against variou...
A major challenge in the application of intensity-modulated proton therapy (IMPT) for lung cancer pa...
PURPOSE: Robust optimization is a computational expensive process resulting in long plan computation...
Background: Major challenges in the application of intensity-modulated proton therapy (IMPT) for lun...
Purpose: Breathing motion and approximate dose calculation engines may increase proton range uncerta...
Particle therapy (PT) with scanned carbon ions has been shown to improve the treatment of stage IV l...
Background and purpose: There is no consensus about an ideal robust optimization (RO) strategy for p...
Pencil beam scanning (PBS) proton therapy is due to its steep dose gradients a promising treatment o...
INTRODUCTION: Robust planning is essential in proton therapy for ensuring adequate treatment deliver...
We report on development of a new four-dimensional (4D) optimisation approach for scanned proton bea...
Purpose Intensity-modulated proton therapy (IMPT) for lung tumors with a large tumor movement is cha...
Purpose: Large intra- and inter-fraction variations of the breathing motion amplitude have been repo...
Purpose: To develop an efficient method to implement random set-up errors and organ motion in robust...
I. Introduction and purpose Several studies reported both systematic and random variations of the me...
PURPOSE: To provide methods for quantification of uncertainties in 4-dimensional (4D) treatment duri...
Purpose Robust optimization is becoming the gold standard for generating robust plans against variou...
A major challenge in the application of intensity-modulated proton therapy (IMPT) for lung cancer pa...
PURPOSE: Robust optimization is a computational expensive process resulting in long plan computation...
Background: Major challenges in the application of intensity-modulated proton therapy (IMPT) for lun...
Purpose: Breathing motion and approximate dose calculation engines may increase proton range uncerta...
Particle therapy (PT) with scanned carbon ions has been shown to improve the treatment of stage IV l...
Background and purpose: There is no consensus about an ideal robust optimization (RO) strategy for p...
Pencil beam scanning (PBS) proton therapy is due to its steep dose gradients a promising treatment o...
INTRODUCTION: Robust planning is essential in proton therapy for ensuring adequate treatment deliver...
We report on development of a new four-dimensional (4D) optimisation approach for scanned proton bea...
Purpose Intensity-modulated proton therapy (IMPT) for lung tumors with a large tumor movement is cha...
Purpose: Large intra- and inter-fraction variations of the breathing motion amplitude have been repo...
Purpose: To develop an efficient method to implement random set-up errors and organ motion in robust...
I. Introduction and purpose Several studies reported both systematic and random variations of the me...
PURPOSE: To provide methods for quantification of uncertainties in 4-dimensional (4D) treatment duri...