The aim of this work is to develop and investigate an inverse treatment planning process (TPP) for mixed beam radiotherapy (MBRT) capable of performing simultaneous optimization of photon and electron apertures. A simulated annealing based direct aperture optimization (DAO) is implemented to perform simultaneous optimization of photon and electron apertures, both shaped with the photon multileaf collimator (pMLC). Validated beam models are used as input for Monte Carlo dose calculations. Consideration of photon pMLC transmission during DAO and a weight re-optimization of the apertures after deliverable dose calculation are utilized to efficiently reduce the differences between optimized and deliverable dose distributions. The TPP for MBRT i...
PURPOSE The objectives of the work presented in this paper were to (1) implement a robust-optimiz...
Electron arcs in mixed-beam radiotherapy (Arc-MBRT) consisting of intensity-modulated electron arcs ...
PURPOSE The purpose of this study was to develop a treatment technique for dynamic mixed beam rad...
PURPOSE A beamlet based direct aperture optimization (DAO) for modulated electron radiotherapy (M...
Purpose The objectives of the work presented in this paper were to (1) implement a robust-optimizat...
PURPOSE To develop a novel treatment planning process (TPP) with simultaneous optimization of mod...
The purpose of this work was to develop a hybrid column generation (CG) and simulated annealing (SA)...
Within the field of medical physics, Monte Carlo radiation transport simulations are considered to b...
Standard electron treatments are nowadays still performed using standard or molded patient-specific ...
The introduction of intensity-modulated radiation therapy (IMRT) opened new possibilities for the tr...
In linac-based radiation therapy, the bulk of recent innovations have involved delivering photon rad...
PURPOSE Modulated electron radiotherapy (MERT) promises sparing of organs at risk for certain tum...
PURPOSE This paper describes the development of a forward planning process for modulated electron...
All inverse planning involves weight optimization. Beamlet-based Inverse Planning (BBIP)5 irradiates...
A novel treatment modality termed energy modulated photon radiotherapy (EMXRT) was investigated. The...
PURPOSE The objectives of the work presented in this paper were to (1) implement a robust-optimiz...
Electron arcs in mixed-beam radiotherapy (Arc-MBRT) consisting of intensity-modulated electron arcs ...
PURPOSE The purpose of this study was to develop a treatment technique for dynamic mixed beam rad...
PURPOSE A beamlet based direct aperture optimization (DAO) for modulated electron radiotherapy (M...
Purpose The objectives of the work presented in this paper were to (1) implement a robust-optimizat...
PURPOSE To develop a novel treatment planning process (TPP) with simultaneous optimization of mod...
The purpose of this work was to develop a hybrid column generation (CG) and simulated annealing (SA)...
Within the field of medical physics, Monte Carlo radiation transport simulations are considered to b...
Standard electron treatments are nowadays still performed using standard or molded patient-specific ...
The introduction of intensity-modulated radiation therapy (IMRT) opened new possibilities for the tr...
In linac-based radiation therapy, the bulk of recent innovations have involved delivering photon rad...
PURPOSE Modulated electron radiotherapy (MERT) promises sparing of organs at risk for certain tum...
PURPOSE This paper describes the development of a forward planning process for modulated electron...
All inverse planning involves weight optimization. Beamlet-based Inverse Planning (BBIP)5 irradiates...
A novel treatment modality termed energy modulated photon radiotherapy (EMXRT) was investigated. The...
PURPOSE The objectives of the work presented in this paper were to (1) implement a robust-optimiz...
Electron arcs in mixed-beam radiotherapy (Arc-MBRT) consisting of intensity-modulated electron arcs ...
PURPOSE The purpose of this study was to develop a treatment technique for dynamic mixed beam rad...