Introduction: As the prognosis of early-stage breast cancer patients is excellent, prevention of radiation induced toxicity has become crucial. Reduction of margins compensating for intrafraction motion reduces non-target dose. We assessed motion of the tumor bed throughout APBI treatment fractions and calculated CTV-PTV margins for breathing and drift.Methods: This prospective clinical trial included patients treated with APBI on a Cyberknife with fiducial tracking. Paired orthogonal kV images made throughout the entire fraction were used to extract the tumor bed position. The images used for breathing modelling were used to calculate breathing amplitudes. The margins needed to compensate for breathing and drift were calculated according t...
This study evaluated the effect of respiratory movement on field-in-field (FIF) forward intensity-mo...
Anatomical motion during external beam radiotherapy can reduce the accuracy of radiation delivery an...
In radiotherapy, dose distributions are optimized patient individually to ensure high dose to the tu...
Introduction: With the introduction of accelerated partial breast irradiation (APBI) and the trend o...
Intrafraction motion has long been suspected of causing inaccuracies in the resultant dose delivered...
In early-stage breast-cancer patients, accelerated partial-breast irradiation techniques (APBI) and ...
PURPOSE: One of the major challenges in stereotactic body radiation therapy (SBRT) of renal cell car...
Image-guided radiotherapy (IGRT) has helped to dramatically reduce safety margins compensating for p...
Purpose: To investigate the dosimetric impact of breathing motion on robustly optimized proton thera...
Breast irradiation is one of the most challenging problems in radiotherapy due to the complex shape ...
Background: Intra-fraction motion represents a crucial issue in the era of precise radiotherapy in s...
Background and purpose To investigate the intra-fraction breast motion during long-lasting treatment...
PURPOSE: To quantify intrafractional motion to determine population-based radiotherapy treatment mar...
This study evaluated the effect of respiratory movement on field-in-field (FIF) forward intensity-mo...
Anatomical motion during external beam radiotherapy can reduce the accuracy of radiation delivery an...
In radiotherapy, dose distributions are optimized patient individually to ensure high dose to the tu...
Introduction: With the introduction of accelerated partial breast irradiation (APBI) and the trend o...
Intrafraction motion has long been suspected of causing inaccuracies in the resultant dose delivered...
In early-stage breast-cancer patients, accelerated partial-breast irradiation techniques (APBI) and ...
PURPOSE: One of the major challenges in stereotactic body radiation therapy (SBRT) of renal cell car...
Image-guided radiotherapy (IGRT) has helped to dramatically reduce safety margins compensating for p...
Purpose: To investigate the dosimetric impact of breathing motion on robustly optimized proton thera...
Breast irradiation is one of the most challenging problems in radiotherapy due to the complex shape ...
Background: Intra-fraction motion represents a crucial issue in the era of precise radiotherapy in s...
Background and purpose To investigate the intra-fraction breast motion during long-lasting treatment...
PURPOSE: To quantify intrafractional motion to determine population-based radiotherapy treatment mar...
This study evaluated the effect of respiratory movement on field-in-field (FIF) forward intensity-mo...
Anatomical motion during external beam radiotherapy can reduce the accuracy of radiation delivery an...
In radiotherapy, dose distributions are optimized patient individually to ensure high dose to the tu...