The purpose of this study was to evaluate the radiation attenuation properties of PC-ISO, a commercially available, biocompatible, sterilizable 3D printing material, and its suitability for customized, single-use gynecologic (GYN) brachytherapy applicators that have the potential for accurate guiding of seeds through linear and curved internal channels. A custom radiochromic film dosimetry apparatus was 3D-printed in PC-ISO with a single catheter channel and a slit to hold a film segment. The apparatus was designed specifically to test geometry pertinent for use of this material in a clinical setting. A brachytherapy dose plan was computed to deliver a cylindrical dose distribution to the film. The dose plan used an 192Ir source and was nor...
A novel system was developed to improve commissioning and quality assurance of brachytherapy applica...
Purpose/objectivesThree-dimensional (3D) printing is recognized as an effective clinical and educati...
PurposeThree-dimensional (3D) printing technology allows physicians to rapidly create customized dev...
The purpose of this study was to evaluate the radiation attenuation properties of PC-ISO, a commerci...
The purpose of this study was to evaluate the radiation attenuation properties of PC-ISO, a commerci...
Purpose Dosimetric assessment of high dose rate (HDR) brachytherapy applicators, printed in 3D with ...
Abstract 3D printing technology has allowed the creation of custom applicators for high dose rate (H...
Purpose: This study presents an evaluation of gamma analysis of Gafchromic EBT3 films as dosimetric ...
A novel phantom is presented for 'full system' dosimetric audit comparing planned and delivered dose...
Background: Brachytherapy involves placement of radioactive sources inside or near the tumour. For g...
Method and Materials: An Ir‐192 line source was simulated using Plato treatment planning software to...
Introduction Dosimetric accuracy is a major issue in the quality assurance (QA) program for treatmen...
In vivo dosimetry (IVD) is an excellent mode of treatment verification and detection of possible ove...
A novel system was developed to improve commissioning and quality assurance of brachytherapy applica...
Introduction: Optical three-dimensional scanning devices can produce geometrically accurate, high-re...
A novel system was developed to improve commissioning and quality assurance of brachytherapy applica...
Purpose/objectivesThree-dimensional (3D) printing is recognized as an effective clinical and educati...
PurposeThree-dimensional (3D) printing technology allows physicians to rapidly create customized dev...
The purpose of this study was to evaluate the radiation attenuation properties of PC-ISO, a commerci...
The purpose of this study was to evaluate the radiation attenuation properties of PC-ISO, a commerci...
Purpose Dosimetric assessment of high dose rate (HDR) brachytherapy applicators, printed in 3D with ...
Abstract 3D printing technology has allowed the creation of custom applicators for high dose rate (H...
Purpose: This study presents an evaluation of gamma analysis of Gafchromic EBT3 films as dosimetric ...
A novel phantom is presented for 'full system' dosimetric audit comparing planned and delivered dose...
Background: Brachytherapy involves placement of radioactive sources inside or near the tumour. For g...
Method and Materials: An Ir‐192 line source was simulated using Plato treatment planning software to...
Introduction Dosimetric accuracy is a major issue in the quality assurance (QA) program for treatmen...
In vivo dosimetry (IVD) is an excellent mode of treatment verification and detection of possible ove...
A novel system was developed to improve commissioning and quality assurance of brachytherapy applica...
Introduction: Optical three-dimensional scanning devices can produce geometrically accurate, high-re...
A novel system was developed to improve commissioning and quality assurance of brachytherapy applica...
Purpose/objectivesThree-dimensional (3D) printing is recognized as an effective clinical and educati...
PurposeThree-dimensional (3D) printing technology allows physicians to rapidly create customized dev...