OBJECTIVE: To establish optimal robust optimization uncertainty settings for clinical head and neck cancer (HNC) patients undergoing 3D image-guided pencil beam scanning (PBS) proton therapy. METHODS: We analyzed ten consecutive HNC patients treated with 70 and 54.25 GyRBE to the primary and prophylactic clinical target volumes (CTV) respectively using intensity-modulated proton therapy (IMPT). Clinical plans were generated using robust optimization with 5 mm/3% setup/range uncertainties (RayStation v6.1). Additional plans were created for 4, 3, 2 and 1 mm setup and 3% range uncertainty and for 3 mm setup and 3%, 2% and 1% range uncertainty. Systematic and random error distributions were determined for setup and range uncertainties based on...
I.Introduction and purpose Intensity modulated proton therapy (IMPT) generally improves healthy tiss...
Purpose: To investigate the impact of setup and range uncertainties, breathing motion, and interplay...
Advances in radiotherapy technology has made it possible to deliver highly conformal beams such as I...
OBJECTIVE: To establish optimal robust optimization uncertainty settings for clinical head and neck ...
PurposeSetup, range, and anatomical uncertainties influence the dose delivered with intensity modula...
Purpose To compare the clinical benefit of robust optimized Intensity Modulated Proton Therapy (mini...
PURPOSE:To compare the clinical benefit of robust optimized Intensity Modulated Proton Therapy (mini...
Background and purpose: In the Netherlands, head-and-neck cancer (HNC) patients are referred for pro...
PURPOSE To evaluate the robustness of head and neck plans for treatment with intensity modulated ...
Intensity modulated proton therapy (IMPT) offers the possibility of generatingexcellent target cover...
Background and purpose: In intensity modulated proton therapy (IMPT), the impact of setup errors and...
PURPOSE: To incorporate small non-rigid variations of head and neck patients into the robust evaluat...
The objective of this work is to compare the planning target volume (PTV)-based intensity-modulated ...
Background and purpose\ud \ud To apply target probabilistic planning (TPP) approach to intensity mod...
BACKGROUND & PURPOSE: Intensity-modulated proton therapy (IMPT) of superficial lesions requires pre-...
I.Introduction and purpose Intensity modulated proton therapy (IMPT) generally improves healthy tiss...
Purpose: To investigate the impact of setup and range uncertainties, breathing motion, and interplay...
Advances in radiotherapy technology has made it possible to deliver highly conformal beams such as I...
OBJECTIVE: To establish optimal robust optimization uncertainty settings for clinical head and neck ...
PurposeSetup, range, and anatomical uncertainties influence the dose delivered with intensity modula...
Purpose To compare the clinical benefit of robust optimized Intensity Modulated Proton Therapy (mini...
PURPOSE:To compare the clinical benefit of robust optimized Intensity Modulated Proton Therapy (mini...
Background and purpose: In the Netherlands, head-and-neck cancer (HNC) patients are referred for pro...
PURPOSE To evaluate the robustness of head and neck plans for treatment with intensity modulated ...
Intensity modulated proton therapy (IMPT) offers the possibility of generatingexcellent target cover...
Background and purpose: In intensity modulated proton therapy (IMPT), the impact of setup errors and...
PURPOSE: To incorporate small non-rigid variations of head and neck patients into the robust evaluat...
The objective of this work is to compare the planning target volume (PTV)-based intensity-modulated ...
Background and purpose\ud \ud To apply target probabilistic planning (TPP) approach to intensity mod...
BACKGROUND & PURPOSE: Intensity-modulated proton therapy (IMPT) of superficial lesions requires pre-...
I.Introduction and purpose Intensity modulated proton therapy (IMPT) generally improves healthy tiss...
Purpose: To investigate the impact of setup and range uncertainties, breathing motion, and interplay...
Advances in radiotherapy technology has made it possible to deliver highly conformal beams such as I...