4D multi-image-based (4DMIB) optimization is a form of robust optimization where different uncertainty scenarios, due to anatomy variations, are considered via multiple image sets (e.g., 4DCT). In this review, we focused on providing an overview of different 4DMIB optimization implementations, introduced various frameworks to evaluate the robustness of scanned particle therapy affected by breathing motion and summarized the existing evidence on the necessity of using 4DMIB optimization clinically. Expected potential benefits of 4DMIB optimization include more robust and/or interplay-effect-resistant doses for the target volume and organs-at-risk for indications affected by anatomical variations (e.g., breathing, peristalsis, etc.). Although...
Particle therapy (PT) with scanned carbon ions has been shown to improve the treatment of stage IV l...
Purpose: Motion management is crucial in scanned proton therapy for mobile tumours. Current motion m...
PURPOSE Motion management is crucial in scanned proton therapy for mobile tumours. Current motion...
We report on development of a new four-dimensional (4D) optimisation approach for scanned proton bea...
Pencil beam scanning (PBS) proton therapy is due to its steep dose gradients a promising treatment o...
A major challenge in the application of intensity-modulated proton therapy (IMPT) for lung cancer pa...
Background and purpose Scanned carbon beam therapy offers advantageous dose distributions and an inc...
Background: Major challenges in the application of intensity-modulated proton therapy (IMPT) for lun...
PURPOSE: Target sites affected by organ motion require a time resolved (4D) dose calculation. Typica...
PURPOSE: Target sites affected by organ motion require a time resolved (4D) dose calculation. Typica...
PURPOSE: Robust optimization is becoming the gold standard for generating robust plans against vario...
<p>A tenet of modern radiotherapy (RT) is to identify the treatment target accurately, following whi...
The goal of conformal radiation techniques is to improve local tumor control through dose escalatio...
Breathing motion in radiotherapy is commonly managed with four-dimensional computed tomography (4DCT...
International audienceIn the treatment of moving targets with proton beams, time resolved image guid...
Particle therapy (PT) with scanned carbon ions has been shown to improve the treatment of stage IV l...
Purpose: Motion management is crucial in scanned proton therapy for mobile tumours. Current motion m...
PURPOSE Motion management is crucial in scanned proton therapy for mobile tumours. Current motion...
We report on development of a new four-dimensional (4D) optimisation approach for scanned proton bea...
Pencil beam scanning (PBS) proton therapy is due to its steep dose gradients a promising treatment o...
A major challenge in the application of intensity-modulated proton therapy (IMPT) for lung cancer pa...
Background and purpose Scanned carbon beam therapy offers advantageous dose distributions and an inc...
Background: Major challenges in the application of intensity-modulated proton therapy (IMPT) for lun...
PURPOSE: Target sites affected by organ motion require a time resolved (4D) dose calculation. Typica...
PURPOSE: Target sites affected by organ motion require a time resolved (4D) dose calculation. Typica...
PURPOSE: Robust optimization is becoming the gold standard for generating robust plans against vario...
<p>A tenet of modern radiotherapy (RT) is to identify the treatment target accurately, following whi...
The goal of conformal radiation techniques is to improve local tumor control through dose escalatio...
Breathing motion in radiotherapy is commonly managed with four-dimensional computed tomography (4DCT...
International audienceIn the treatment of moving targets with proton beams, time resolved image guid...
Particle therapy (PT) with scanned carbon ions has been shown to improve the treatment of stage IV l...
Purpose: Motion management is crucial in scanned proton therapy for mobile tumours. Current motion m...
PURPOSE Motion management is crucial in scanned proton therapy for mobile tumours. Current motion...