Background: Despite increasing reports of 3D printing in medical applications, the use of 3D printing in breast imaging is limited, thus, personalized 3D-printed breast model could be a novel approach to overcome current limitations in utilizing breast magnetic resonance imaging (MRI) for quantitative assessment of breast density. The aim of this study is to develop a patient-specific 3D-printed breast phantom and to identify the most appropriate materials for simulating the MR imaging characteristics of fibroglandular and adipose tissues. Methods: A patient-specific 3D-printed breast model was generated using 3D-printing techniques for the construction of the hollow skin and fibroglandular region shells. Then, the T1 relaxation time...
Phantoms, which are non-biological test objects, are used to validate a variety of biomedical imagin...
PURPOSE: In the research and development of dedicated tomographic breast imaging systems, digital br...
Purpose: Human cortical bone has a rapid T2 - decay, and it can be visualized using ultrashort echo ...
Three-dimensional (3D) printing has become an increasingly developed technique in the medical field ...
Breast physical phantoms are a basic tool for the assessment and verification of performance standar...
Despite the development and implementation of several MRI techniques for breast density assessments,...
Purpose: To design, fabricate and characterize 3D printed, anatomically realistic, compressed breast...
Purpose: Breast cancer is a major public health issue for women, and early detection significantly i...
3D breast modelling for 2D and 3D breast X-ray imaging would benefit from the availability of digita...
PurposeWe present a breast phantom designed to enable quantitative assessment of measurements of T1 ...
Anthropomorphic phantoms are models of real or virtual parts of the body, organ or tissue, represent...
X-ray physical breast phantoms play a major and crucial role in X-ray medical imaging, particularly ...
ABSTRACT Objective. This work describes an approach for producing physical anthropomorphic breast p...
Recently we have started a project for virtual clinical trials in 2D (digital mammography, digital b...
Phantoms, which are non-biological test objects, are used to validate a variety of biomedical imagin...
Phantoms, which are non-biological test objects, are used to validate a variety of biomedical imagin...
PURPOSE: In the research and development of dedicated tomographic breast imaging systems, digital br...
Purpose: Human cortical bone has a rapid T2 - decay, and it can be visualized using ultrashort echo ...
Three-dimensional (3D) printing has become an increasingly developed technique in the medical field ...
Breast physical phantoms are a basic tool for the assessment and verification of performance standar...
Despite the development and implementation of several MRI techniques for breast density assessments,...
Purpose: To design, fabricate and characterize 3D printed, anatomically realistic, compressed breast...
Purpose: Breast cancer is a major public health issue for women, and early detection significantly i...
3D breast modelling for 2D and 3D breast X-ray imaging would benefit from the availability of digita...
PurposeWe present a breast phantom designed to enable quantitative assessment of measurements of T1 ...
Anthropomorphic phantoms are models of real or virtual parts of the body, organ or tissue, represent...
X-ray physical breast phantoms play a major and crucial role in X-ray medical imaging, particularly ...
ABSTRACT Objective. This work describes an approach for producing physical anthropomorphic breast p...
Recently we have started a project for virtual clinical trials in 2D (digital mammography, digital b...
Phantoms, which are non-biological test objects, are used to validate a variety of biomedical imagin...
Phantoms, which are non-biological test objects, are used to validate a variety of biomedical imagin...
PURPOSE: In the research and development of dedicated tomographic breast imaging systems, digital br...
Purpose: Human cortical bone has a rapid T2 - decay, and it can be visualized using ultrashort echo ...