The production of anthropomorphic phantoms generated from tissue-equivalent materials is challenging but offers an excellent copy of the typical environment encountered in typical patients. High-quality dosimetry measurements and the correlation of the measured dose with the biological effects elicited by it are a prerequisite in preparation of clinical trials with novel radiotherapy approaches. We designed and produced a partial upper arm phantom from tissue-equivalent materials for use in experimental high-dose-rate radiotherapy. The phantom was compared to original patient data using density values and Hounsfield units obtained from CT scans. Dose simulations were conducted for broad-beam irradiation and microbeam radiotherapy (MRT) and ...
Three dimensional (3D) scanning and printing technology is utilized to create phantom models of mice...
Purpose: To design and manufacture a customized thoracic phantom slab utilizing the 3D printing proc...
The ICRU Report on `Phantoms and Computational Models in Radiation Therapy, Diagnosis and Protection...
The production of anthropomorphic phantoms generated from tissue-equivalent materials is challenging...
This paper reports on the methodology and materials used to construct anthropomorphic phantoms for u...
Purpose: The aim of this study was to produce a low-cost anatomical model of adult male including lo...
It is important to measure organ dose in diagnostic radiology & radiotherapy. Because measure...
Purpose: An anthropomorphic pelvic phantom was designed and constructed to meet specific criteria fo...
Computational anthropomorphic phantoms have k e n used since the 1970s for dosimetric calculations. ...
This study used the specific example of 3D printing with acrylonitrile butadiene styrene (ABS) as a ...
Background: With the increasing complexity of external beam therapy, so-called “end-to-end ” tests a...
The lack of rigorous quality standards in pre-clinical radiation dosimetry has renewed interest in t...
Significant improvements in radiotherapy are likely to come from biological rather than technical op...
Anthropomorphic phantoms used for radiation dose measurements are designed to mimic human tissue in ...
Water is treated as radiological equivalent to human tissue. While this seems justified, there is ne...
Three dimensional (3D) scanning and printing technology is utilized to create phantom models of mice...
Purpose: To design and manufacture a customized thoracic phantom slab utilizing the 3D printing proc...
The ICRU Report on `Phantoms and Computational Models in Radiation Therapy, Diagnosis and Protection...
The production of anthropomorphic phantoms generated from tissue-equivalent materials is challenging...
This paper reports on the methodology and materials used to construct anthropomorphic phantoms for u...
Purpose: The aim of this study was to produce a low-cost anatomical model of adult male including lo...
It is important to measure organ dose in diagnostic radiology & radiotherapy. Because measure...
Purpose: An anthropomorphic pelvic phantom was designed and constructed to meet specific criteria fo...
Computational anthropomorphic phantoms have k e n used since the 1970s for dosimetric calculations. ...
This study used the specific example of 3D printing with acrylonitrile butadiene styrene (ABS) as a ...
Background: With the increasing complexity of external beam therapy, so-called “end-to-end ” tests a...
The lack of rigorous quality standards in pre-clinical radiation dosimetry has renewed interest in t...
Significant improvements in radiotherapy are likely to come from biological rather than technical op...
Anthropomorphic phantoms used for radiation dose measurements are designed to mimic human tissue in ...
Water is treated as radiological equivalent to human tissue. While this seems justified, there is ne...
Three dimensional (3D) scanning and printing technology is utilized to create phantom models of mice...
Purpose: To design and manufacture a customized thoracic phantom slab utilizing the 3D printing proc...
The ICRU Report on `Phantoms and Computational Models in Radiation Therapy, Diagnosis and Protection...