Purpose Intensity-modulated proton therapy (IMPT) for lung tumors with a large tumor movement is challenging due to loss of robustness in the target coverage. Often an upper cut-off at 5-mm tumor movement is used for proton patient selection. In this study, we propose (1) a robust and easily implementable treatment planning strategy for lung tumors with a movement larger than 5 mm, and (2) a four-dimensional computed tomography (4DCT) robust evaluation strategy for evaluating the dose distribution on the breathing phases. Materials and methods We created a treatment planning strategy based on the internal target volume (ITV) concept (aim 1). The ITV was created as a union of the clinical target volumes (CTVs) on the eight 4DCT phases. The I...
Purpose: Motion management is crucial in scanned proton therapy for mobile tumours. Current motion m...
Purpose: To investigate the impact of setup and range uncertainties, breathing motion, and interplay...
Intensity modulated particle therapy (IMPT) with carbon ions can generate highly conformal treatment...
Purpose Intensity-modulated proton therapy (IMPT) for lung tumors with a large tumor movement is cha...
A major challenge in the application of intensity-modulated proton therapy (IMPT) for lung cancer pa...
Background: Major challenges in the application of intensity-modulated proton therapy (IMPT) for lun...
Background and purpose: There is no consensus about an ideal robust optimization (RO) strategy for p...
PURPOSE: Compared to volumetric modulated arc therapy (VMAT), clinical benefits are anticipated when...
Abstract Background The principle aim of this study is to incorporate 4DCT ventilation imaging into ...
PURPOSE Motion management is crucial in scanned proton therapy for mobile tumours. Current motion...
Particle therapy (PT) with scanned carbon ions has been shown to improve the treatment of stage IV l...
PURPOSE: Compared to volumetric modulated arc therapy (VMAT), clinical benefits are anticipated when...
Purpose: Despite the anticipated clinical benefits of intensity-modulated proton therapy (IMPT), pla...
IntroductionDue to its time structure, the proton pencil beam scanning is more susceptible to intra-...
Purpose: Motion management is crucial in scanned proton therapy for mobile tumours. Current motion m...
Purpose: To investigate the impact of setup and range uncertainties, breathing motion, and interplay...
Intensity modulated particle therapy (IMPT) with carbon ions can generate highly conformal treatment...
Purpose Intensity-modulated proton therapy (IMPT) for lung tumors with a large tumor movement is cha...
A major challenge in the application of intensity-modulated proton therapy (IMPT) for lung cancer pa...
Background: Major challenges in the application of intensity-modulated proton therapy (IMPT) for lun...
Background and purpose: There is no consensus about an ideal robust optimization (RO) strategy for p...
PURPOSE: Compared to volumetric modulated arc therapy (VMAT), clinical benefits are anticipated when...
Abstract Background The principle aim of this study is to incorporate 4DCT ventilation imaging into ...
PURPOSE Motion management is crucial in scanned proton therapy for mobile tumours. Current motion...
Particle therapy (PT) with scanned carbon ions has been shown to improve the treatment of stage IV l...
PURPOSE: Compared to volumetric modulated arc therapy (VMAT), clinical benefits are anticipated when...
Purpose: Despite the anticipated clinical benefits of intensity-modulated proton therapy (IMPT), pla...
IntroductionDue to its time structure, the proton pencil beam scanning is more susceptible to intra-...
Purpose: Motion management is crucial in scanned proton therapy for mobile tumours. Current motion m...
Purpose: To investigate the impact of setup and range uncertainties, breathing motion, and interplay...
Intensity modulated particle therapy (IMPT) with carbon ions can generate highly conformal treatment...