<p>Nominal D<sub>98</sub> (blue) and worst-case scenario (red) of PTV-based (a,c) and minimax IMPT plans (b,d) for CTV<sub>70</sub> (a-b) and CTV<sub>54.25</sub> (c-d). Solid lines connect the averages and boxplots represent the distribution of these parameters of all patients per plan type. The horizontal blue lines represent the CTV dose criterion that marks 95% of the prescribed dose (66.5 Gy and 51.5 Gy).</p
PurposeWe investigated the feasibility of robust optimization for volumetric modulated arc therapy (...
PURPOSE:To compare the clinical benefit of robust optimized Intensity Modulated Proton Therapy (mini...
Purpose: To prove the ability of protons to reproduce a dose gradient that matches a dose painting b...
Robust optimization generates scenario-based plans by a minimax optimization method to find optimal ...
International audienceContinuous improvements have been made in the way to prescribe, record and rep...
In typical treatment planning of 3D IMRT, the incident energy fluence is optimized to achieve a homo...
The objective of this work is to compare the planning target volume (PTV)-based intensity-modulated ...
Purpose: We aimed to derive a "robustness recipe" giving the range robustness (RR) and setup robustn...
Background and purpose: A planning target volume (PTV) in photon treatments aims to ensure that the ...
This is the version of the article before peer review or editing, as submitted by an author to Physi...
Objective: We compared the sensitivity of intensity modulated proton therapy (IMPT) and photon volum...
<p>P1: 1A vs. c-IMRT P2: 2A vs. c-IMRT P3: 2A vs.1A P4: 3A vs.2A P5: 3A vs. c-IMRT</p><p>Dosimetric ...
Dotted lines denote 95% of the prescribed dose to PTV-TN.<p><b>Copyright information:</b></p><p>Take...
Background and purpose: To assess the potential of composite minimax robust optimization (CMRO) comp...
<p>BDC, basal dose compensation; LDC, local dose control; PTVnx, planning target volume of nasophary...
PurposeWe investigated the feasibility of robust optimization for volumetric modulated arc therapy (...
PURPOSE:To compare the clinical benefit of robust optimized Intensity Modulated Proton Therapy (mini...
Purpose: To prove the ability of protons to reproduce a dose gradient that matches a dose painting b...
Robust optimization generates scenario-based plans by a minimax optimization method to find optimal ...
International audienceContinuous improvements have been made in the way to prescribe, record and rep...
In typical treatment planning of 3D IMRT, the incident energy fluence is optimized to achieve a homo...
The objective of this work is to compare the planning target volume (PTV)-based intensity-modulated ...
Purpose: We aimed to derive a "robustness recipe" giving the range robustness (RR) and setup robustn...
Background and purpose: A planning target volume (PTV) in photon treatments aims to ensure that the ...
This is the version of the article before peer review or editing, as submitted by an author to Physi...
Objective: We compared the sensitivity of intensity modulated proton therapy (IMPT) and photon volum...
<p>P1: 1A vs. c-IMRT P2: 2A vs. c-IMRT P3: 2A vs.1A P4: 3A vs.2A P5: 3A vs. c-IMRT</p><p>Dosimetric ...
Dotted lines denote 95% of the prescribed dose to PTV-TN.<p><b>Copyright information:</b></p><p>Take...
Background and purpose: To assess the potential of composite minimax robust optimization (CMRO) comp...
<p>BDC, basal dose compensation; LDC, local dose control; PTVnx, planning target volume of nasophary...
PurposeWe investigated the feasibility of robust optimization for volumetric modulated arc therapy (...
PURPOSE:To compare the clinical benefit of robust optimized Intensity Modulated Proton Therapy (mini...
Purpose: To prove the ability of protons to reproduce a dose gradient that matches a dose painting b...