Purpose: To analyze the intrafraction motion of the prostate during external-beam radiation therapy of patients with prostate cancer. Methods and Materials: Between August 2001-December 2005, 427 patients with Stage T3Nx/0Mx/0 prostate carcinoma received intensity-modulated radiation therapy treatment combined with position verification with fiducial gold markers. For a total of 11,426 treatment fractions (average, 27 per patient), portal images were taken of the first segment of all five beams. The irradiation time of the technique varied between 5-7 min. From these data, the location of gold markers could be established within every treatment beam under the assumption of minimal marker movement. Results: In 66% of treatment fractions, a m...
International audiencePurpose: To investigate the impact on dose distribution of intrafraction motio...
The purpose of this work is to determine appropriate radiation therapy beam margins to account for i...
Purpose: To quantify the dosimetric impact of intrafractional motion on reduced‐margin IMRT treatmen...
INTRODUCTION: Intrafractional motion consists of two components: (1) the movement between the on-lin...
Purpose: Interportal adjustment was applied to patients with prostate cancer using three fiducial ma...
Purpose: Determine the time-dependent magnitude of intrafraction prostate displacement and a cutoff ...
Purpose: This study aimed to evaluate prostate volume changes and prostate motions during radiothera...
Introduction: Intrafraction organ motion during external beam radiotherapy can cause dosimetric inac...
Purpose/Objective: To determine intrafraction prostate motion during volumetric modulated arc therap...
International audiencePurpose: To investigate the impact on dose distribution of intra-fraction moti...
PURPOSE: To determine intra-fraction displacement of the prostate gland from imaging pre- and post-r...
Purpose: When one is performing online setup correction for prostate positioning displacements prior...
Purpose: Although the interfraction motion of the prostate has been previously studied through the u...
Thesis: S.B., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2015.This...
Purpose: Interportal adjustment was applied to patients with prostate cancer using three fiducial ma...
International audiencePurpose: To investigate the impact on dose distribution of intrafraction motio...
The purpose of this work is to determine appropriate radiation therapy beam margins to account for i...
Purpose: To quantify the dosimetric impact of intrafractional motion on reduced‐margin IMRT treatmen...
INTRODUCTION: Intrafractional motion consists of two components: (1) the movement between the on-lin...
Purpose: Interportal adjustment was applied to patients with prostate cancer using three fiducial ma...
Purpose: Determine the time-dependent magnitude of intrafraction prostate displacement and a cutoff ...
Purpose: This study aimed to evaluate prostate volume changes and prostate motions during radiothera...
Introduction: Intrafraction organ motion during external beam radiotherapy can cause dosimetric inac...
Purpose/Objective: To determine intrafraction prostate motion during volumetric modulated arc therap...
International audiencePurpose: To investigate the impact on dose distribution of intra-fraction moti...
PURPOSE: To determine intra-fraction displacement of the prostate gland from imaging pre- and post-r...
Purpose: When one is performing online setup correction for prostate positioning displacements prior...
Purpose: Although the interfraction motion of the prostate has been previously studied through the u...
Thesis: S.B., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2015.This...
Purpose: Interportal adjustment was applied to patients with prostate cancer using three fiducial ma...
International audiencePurpose: To investigate the impact on dose distribution of intrafraction motio...
The purpose of this work is to determine appropriate radiation therapy beam margins to account for i...
Purpose: To quantify the dosimetric impact of intrafractional motion on reduced‐margin IMRT treatmen...