PURPOSE: To determine the difference in size between computed tomography (CT)-based irradiated boost volumes and simulator-based irradiated volumes in patients treated with breast-conserving therapy and to analyze whether the use of anisotropic three-dimensional clinical target volume (CTV) margins using the histologically determined free resection margins allows for a significant reduction of the CT-based boost volumes. PATIENTS AND METHODS: The CT data from 49 patients were used to delineate a planning target volume (PTV) with isotropic CTV margins and to delineate a PTV(sim) that mimicked the PTV as delineated in the era of conventional simulation. For 17 patients, a PTV with anisotropic CTV margins was defined by applying customized thr...
The purpose of this article is to compare isotropic and anisotropic margin expansion with regard to ...
Aims: To determine the effect of image-guided radiotherapy on the dose distributions in breast boost...
Purpose: Standard planning target volume (PTV) margins for lung stereotactic ablative radiation ther...
PURPOSE: To determine the difference in size between computed tomography (CT)-based irradiated boost...
Background and purpose: The purpose of this study was to investigate the effect of CT-based delineat...
BACKGROUND AND PURPOSE: The purpose of this study was to investigate the effect of CT-based delineat...
Background: The shift from conventional two-dimensional (2D) to three-dimensional (3D)conformal targ...
Introduction: Guidelines for clinical target volume (CTV) to planning target volume (PTV) margins in...
OBJECTIVE: To determine if subsets of patients may benefit from smaller or larger margins when using...
Aims: To investigate whether using a pre-operative CT scan (Preop-CT) (1) decreases interobserver va...
This study aimed to quantify the incidence and extension of microscopic disease around primary breas...
PURPOSE: To compare the location and extent of the tumor bed as defined by surgical clips and comput...
Purpose: International consensus has not been reached regarding the optimal number of implanted tumo...
The purpose of this article is to compare isotropic and anisotropic margin expansion with regard to ...
Aims: To determine the effect of image-guided radiotherapy on the dose distributions in breast boost...
Purpose: Standard planning target volume (PTV) margins for lung stereotactic ablative radiation ther...
PURPOSE: To determine the difference in size between computed tomography (CT)-based irradiated boost...
Background and purpose: The purpose of this study was to investigate the effect of CT-based delineat...
BACKGROUND AND PURPOSE: The purpose of this study was to investigate the effect of CT-based delineat...
Background: The shift from conventional two-dimensional (2D) to three-dimensional (3D)conformal targ...
Introduction: Guidelines for clinical target volume (CTV) to planning target volume (PTV) margins in...
OBJECTIVE: To determine if subsets of patients may benefit from smaller or larger margins when using...
Aims: To investigate whether using a pre-operative CT scan (Preop-CT) (1) decreases interobserver va...
This study aimed to quantify the incidence and extension of microscopic disease around primary breas...
PURPOSE: To compare the location and extent of the tumor bed as defined by surgical clips and comput...
Purpose: International consensus has not been reached regarding the optimal number of implanted tumo...
The purpose of this article is to compare isotropic and anisotropic margin expansion with regard to ...
Aims: To determine the effect of image-guided radiotherapy on the dose distributions in breast boost...
Purpose: Standard planning target volume (PTV) margins for lung stereotactic ablative radiation ther...