Purpose: To provide the first clinical test case for commissioning of 192Ir brachytherapy model-based dose calculation algorithms (MBDCAs) according to the AAPM TG-186 report workflow. Acquisition and Validation Methods: A computational patient phantom model was generated from a clinical multi-catheter 192Ir HDR breast brachytherapy case. Regions of interest (ROIs) were contoured and digitized on the patient CT images and the model was written to a series of DICOM CT images using MATLAB. The model was imported into two commercial treatment planning systems (TPSs) currently incorporating an MBDCA. Identical treatment plans were prepared using a generic 192Ir HDR source and the TG-43-based algorithm of each TPS. This was followed by dose to m...
The charge of Task Group 186 (TG-186) is to provide guidance for early adopters of model-based dose ...
La Braquiterapia de alta tasa de dosis HDR es una moderna técnica de tratamiento que ha venido tenie...
Purpose: To assess the dosimetric effects of the presence of the applicator, air pockets in clinical...
Purpose: To provide the first clinical test case for commissioning of 192Ir brachytherapy model-base...
Purpose: In order to facilitate a smooth transition for brachytherapy dose calculations from the Ame...
In order to facilitate a smooth transition for brachytherapy dose calculations from the American Ass...
PURPOSE: A joint working group was created by the American Association of Physicists in Medicine (AA...
The introduction of model-based dose calculation algorithms (MBDCAs) in brachytherapy provides an op...
This work presents BrachyGuide, a brachytherapy-dedicated software tool for the automatic preparatio...
Monte Carlo simulation dosimetry is used to compare 169Yb to 192Ir for breast high dose rate (HDR) b...
###EgeUn###Aim:The aim of this study is to investigate the accuracy of dose distributions calculated...
Purpose: To develop a fast Monte Carlo code based on EGSnrc for accurate dose calculation around bra...
Dagli, Ayse/0000-0003-1219-8870WOS: 000510503900013Aim: the aim of this study is to investigate the ...
Purpose: The TG‐186 report provides guidance to early adopters of model‐based dose calculation algor...
PURPOSE Most dose calculations for HDR brachytherapy treatments are based on the AAPM-TG43 formal...
The charge of Task Group 186 (TG-186) is to provide guidance for early adopters of model-based dose ...
La Braquiterapia de alta tasa de dosis HDR es una moderna técnica de tratamiento que ha venido tenie...
Purpose: To assess the dosimetric effects of the presence of the applicator, air pockets in clinical...
Purpose: To provide the first clinical test case for commissioning of 192Ir brachytherapy model-base...
Purpose: In order to facilitate a smooth transition for brachytherapy dose calculations from the Ame...
In order to facilitate a smooth transition for brachytherapy dose calculations from the American Ass...
PURPOSE: A joint working group was created by the American Association of Physicists in Medicine (AA...
The introduction of model-based dose calculation algorithms (MBDCAs) in brachytherapy provides an op...
This work presents BrachyGuide, a brachytherapy-dedicated software tool for the automatic preparatio...
Monte Carlo simulation dosimetry is used to compare 169Yb to 192Ir for breast high dose rate (HDR) b...
###EgeUn###Aim:The aim of this study is to investigate the accuracy of dose distributions calculated...
Purpose: To develop a fast Monte Carlo code based on EGSnrc for accurate dose calculation around bra...
Dagli, Ayse/0000-0003-1219-8870WOS: 000510503900013Aim: the aim of this study is to investigate the ...
Purpose: The TG‐186 report provides guidance to early adopters of model‐based dose calculation algor...
PURPOSE Most dose calculations for HDR brachytherapy treatments are based on the AAPM-TG43 formal...
The charge of Task Group 186 (TG-186) is to provide guidance for early adopters of model-based dose ...
La Braquiterapia de alta tasa de dosis HDR es una moderna técnica de tratamiento que ha venido tenie...
Purpose: To assess the dosimetric effects of the presence of the applicator, air pockets in clinical...