International audiencePurpose: To investigate the impact on dose distribution of intrafraction motion during moderate hypofractionated prostate cancer treatments and to estimate minimum non-isotropic and asymmetric (NI-AS) treatment margins taking motion into account.Methods: Prostate intrafraction 3D displacements were recorded with a transperineal ultrasound probe and were evaluated in 46 prostate cancer patients (876 fractions) treated by moderate hypofractionated radiation therapy (60 Gy in 20 fractions). For 18 patients (346 fractions), treatment plans were recomputed increasing CTV-to-PTV margins from 0 to 6 mm with an auto-planning optimization algorithm. Dose distribution was estimated using the voxel shifting method by displacing C...
Purpose: To analyze the intrafraction motion of the prostate during external-beam radiation therapy ...
Purpose: To investigate the dosimetric impact of intrafraction prostate motion and the effect of rob...
Purpose: Online adaptive radiation therapy (OART) uses daily imaging to identify changes in the pati...
International audiencePurpose: To investigate the impact on dose distribution of intrafraction motio...
International audiencePurpose: To investigate the impact on dose distribution of intra-fraction moti...
International audiencePurpose or ObjectiveTo investigate two different methods for predicting minimu...
Introduction: Intrafraction organ motion during external beam radiotherapy can cause dosimetric inac...
Purpose: Determine the time-dependent magnitude of intrafraction prostate displacement and a cutoff ...
The purpose of this work is to determine appropriate radiation therapy beam margins to account for i...
The purpose of this work is to determine appropriate radiation therapy beam margins to account for i...
INTRODUCTION: Intrafractional motion consists of two components: (1) the movement between the on-lin...
To investigate the dosimetric impact of intrafraction translation and rotation motion of the prostat...
Purpose: To analyze the intrafraction motion of the prostate during external-beam radiation therapy ...
Purpose: To investigate the dosimetric impact of intrafraction prostate motion and the effect of rob...
Purpose: Online adaptive radiation therapy (OART) uses daily imaging to identify changes in the pati...
International audiencePurpose: To investigate the impact on dose distribution of intrafraction motio...
International audiencePurpose: To investigate the impact on dose distribution of intra-fraction moti...
International audiencePurpose or ObjectiveTo investigate two different methods for predicting minimu...
Introduction: Intrafraction organ motion during external beam radiotherapy can cause dosimetric inac...
Purpose: Determine the time-dependent magnitude of intrafraction prostate displacement and a cutoff ...
The purpose of this work is to determine appropriate radiation therapy beam margins to account for i...
The purpose of this work is to determine appropriate radiation therapy beam margins to account for i...
INTRODUCTION: Intrafractional motion consists of two components: (1) the movement between the on-lin...
To investigate the dosimetric impact of intrafraction translation and rotation motion of the prostat...
Purpose: To analyze the intrafraction motion of the prostate during external-beam radiation therapy ...
Purpose: To investigate the dosimetric impact of intrafraction prostate motion and the effect of rob...
Purpose: Online adaptive radiation therapy (OART) uses daily imaging to identify changes in the pati...