BACKGROUND AND PURPOSE: To investigate the impact of organ motion on hypoxia-guided proton therapy treatments for non-small cell lung cancer (NSCLC) patients.MATERIALS AND METHODS: Hypoxia PET and 4D imaging data of six NSCLC patients were used to simulate hypoxia-guided proton therapy with different motion mitigation strategies including rescanning, breath-hold, respiratory gating and tumour tracking. Motion-induced dose degradation was estimated for treatment plans with dose painting of hypoxic tumour sub-volumes at escalated dose levels. Tumour control probability (TCP) and dosimetry indices were assessed to weigh the clinical benefit of dose escalation and motion mitigation. In addition, the difference in normal tissue complication prob...
Introduction: This multicentric in silico trial compares photon and proton radiotherapy for non-smal...
PURPOSE: Pencil beam scanned proton therapy (PBS-PT) treatment quality might be compromised by inter...
Purpose/ObjectivePencil beam scanning (PBS) is a highly conformal technology to treat cancer. The ti...
Background and Purpose: To investigate the impact of organ motion on hypoxia-guided proton therapy t...
BACKGROUND AND PURPOSE To investigate the impact of organ motion on hypoxia-guided proton therapy...
Background Hypoxia is known to be prevalent in solid tumors such as non-small cell lung cancer (NSC...
Purpose: To investigate the dosimetric impact of breathing motion on robustly optimized proton thera...
BACKGROUND Hypoxia is known to be prevalent in solid tumors such as non-small cell lung cancer (N...
BACKGROUND: The interplay effect might degrade the dose of pencil beam scanning proton therapy to a ...
Purpose: The safe clinical implementation of pencil beam scanning (PBS) proton therapy for lung tumo...
Purpose/Objective Pencil beam scanning (PBS) is a highly conformal technology to treat cancer. The t...
Purpose: To investigate the impact of setup and range uncertainties, breathing motion, and interplay...
Radiation dose escalation has been shown to improve local control and survival in patients with non-...
Purpose: For locally advanced-stage non-small cell lung cancer (NSCLC), inter-fraction target motion...
Purpose: Motion management is crucial in scanned proton therapy for mobile tumours. Current motion m...
Introduction: This multicentric in silico trial compares photon and proton radiotherapy for non-smal...
PURPOSE: Pencil beam scanned proton therapy (PBS-PT) treatment quality might be compromised by inter...
Purpose/ObjectivePencil beam scanning (PBS) is a highly conformal technology to treat cancer. The ti...
Background and Purpose: To investigate the impact of organ motion on hypoxia-guided proton therapy t...
BACKGROUND AND PURPOSE To investigate the impact of organ motion on hypoxia-guided proton therapy...
Background Hypoxia is known to be prevalent in solid tumors such as non-small cell lung cancer (NSC...
Purpose: To investigate the dosimetric impact of breathing motion on robustly optimized proton thera...
BACKGROUND Hypoxia is known to be prevalent in solid tumors such as non-small cell lung cancer (N...
BACKGROUND: The interplay effect might degrade the dose of pencil beam scanning proton therapy to a ...
Purpose: The safe clinical implementation of pencil beam scanning (PBS) proton therapy for lung tumo...
Purpose/Objective Pencil beam scanning (PBS) is a highly conformal technology to treat cancer. The t...
Purpose: To investigate the impact of setup and range uncertainties, breathing motion, and interplay...
Radiation dose escalation has been shown to improve local control and survival in patients with non-...
Purpose: For locally advanced-stage non-small cell lung cancer (NSCLC), inter-fraction target motion...
Purpose: Motion management is crucial in scanned proton therapy for mobile tumours. Current motion m...
Introduction: This multicentric in silico trial compares photon and proton radiotherapy for non-smal...
PURPOSE: Pencil beam scanned proton therapy (PBS-PT) treatment quality might be compromised by inter...
Purpose/ObjectivePencil beam scanning (PBS) is a highly conformal technology to treat cancer. The ti...