Purpose Dosimetric assessment of high dose rate (HDR) brachytherapy applicators, printed in 3D with acrylonitrile butadiene styrene (ABS) at different infill percentage. Materials and methods A low-cost, desktop, 3D printer (Hamlet 3DX100, Hamlet, Dublin, IE) was used for manufacturing simple HDR applicators, reproducing typical geometries in brachytherapy: cylindrical (common in vaginal treatment) and flat configurations (generally used to treat superficial lesions). Printer accuracy was investigated through physical measurements. The dosimetric consequences of varying the applicator's density by tuning the printing infill percentage were analysed experimentally by measuring depth dose profiles and superficial dose distribution with Gafchr...
Background and purpose: In radiotherapy (RT) bolus material is used to increase skin dose and elimin...
Method and Materials: An Ir‐192 line source was simulated using Plato treatment planning software to...
To describe the steps undertaken to commission a 3D high dose rate (HDR) brachytherapy treatment pla...
Abstract 3D printing technology has allowed the creation of custom applicators for high dose rate (H...
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...
Background and purpose 3D printing is rapidly evolving and further assessment of materials and techn...
Introduction: Additive manufacturing or 3-dimensional printing has become a widespread technology wi...
The purpose of this paper is to demonstrate that an inexpensive 3D printer can be used to manufactur...
This study used the specific example of 3D printing with acrylonitrile butadiene styrene (ABS) as a ...
OBJECTIVE: Boluses are used in high-energy radiotherapy in order to overcome the skin sparing effect...
www.tcrt.org HDR surface molds offer an alternative radiotherapy modality to electrons for the treat...
Purpose/objectivesThree-dimensional (3D) printing is recognized as an effective clinical and educati...
Boluses are used in high-energy radiotherapy in order to overcome the skin sparing effect. In practi...
This work is aimed at studying the use of 3D printing technology for the manufacture of personalized...
Background and purpose: In radiotherapy (RT) bolus material is used to increase skin dose and elimin...
Method and Materials: An Ir‐192 line source was simulated using Plato treatment planning software to...
To describe the steps undertaken to commission a 3D high dose rate (HDR) brachytherapy treatment pla...
Abstract 3D printing technology has allowed the creation of custom applicators for high dose rate (H...
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...
Background and purpose 3D printing is rapidly evolving and further assessment of materials and techn...
Introduction: Additive manufacturing or 3-dimensional printing has become a widespread technology wi...
The purpose of this paper is to demonstrate that an inexpensive 3D printer can be used to manufactur...
This study used the specific example of 3D printing with acrylonitrile butadiene styrene (ABS) as a ...
OBJECTIVE: Boluses are used in high-energy radiotherapy in order to overcome the skin sparing effect...
www.tcrt.org HDR surface molds offer an alternative radiotherapy modality to electrons for the treat...
Purpose/objectivesThree-dimensional (3D) printing is recognized as an effective clinical and educati...
Boluses are used in high-energy radiotherapy in order to overcome the skin sparing effect. In practi...
This work is aimed at studying the use of 3D printing technology for the manufacture of personalized...
Background and purpose: In radiotherapy (RT) bolus material is used to increase skin dose and elimin...
Method and Materials: An Ir‐192 line source was simulated using Plato treatment planning software to...
To describe the steps undertaken to commission a 3D high dose rate (HDR) brachytherapy treatment pla...