Mean glandular dose (MGD) is not only determined by the compressed breast thickness (CBT) and the glandular content, but also by the distribution of glandular tissues in breast. Depth dose inside the breast in mammography has been widely concerned as glandular dose decreases rapidly with increasing depth. In this study, an experiment using thermo luminescent dosimeters (TLDs) was carried out to validate Monte Carlo simulations of mammography. Percent depth doses (PDDs) at different depth values were measured inside simple breast phantoms of different thicknesses. The experimental values were well consistent with the values calculated by Geant4. Then a detailed breast model with a CBT of 4 cm and a glandular content of 50%, which has been co...
PURPOSE: To characterize the dependence of normalized glandular dose (DgN) on various breast model a...
Purpose - To characterize the dependence of normalized glandular dose (DgN) on various breast model ...
Purpose To characterize the dependence of normalized glandular dose (DgN) on various breast model...
Purpose: To provide mean glandular dose (MGD) estimates via Monte Carlo (MC) simulations as a functi...
Purpose To provide mean glandular dose (MGD) estimates via Monte Carlo (MC) simulations as a func...
Purpose To provide mean glandular dose (MGD) estimates via Monte Carlo (MC) simulations as a func...
Purpose To provide mean glandular dose (MGD) estimates via Monte Carlo (MC) simulations as a func...
Purpose: To compare, via Monte Carlo simulations, homogeneous and non-homogenous breast models adopt...
The rationale of this study is to perform a personalized dosimetry in digital mammography, using Mon...
The rationale of this study is to perform a personalized dosimetry in digital mammography, using Mon...
Item does not contain fulltextPURPOSE: To characterize the dependence of normalized glandular dose (...
Purpose To compare, via Monte Carlo simulations, homogeneous and non-homogenous breast models adopt...
Breast cancer is the leading cause of cancer deaths in female subjects. Screening Digital Mammograph...
Purpose To compare, via Monte Carlo simulations, homogeneous and non-homogenous breast models adopt...
Purpose To compare, via Monte Carlo simulations, homogeneous and non-homogenous breast models adopt...
PURPOSE: To characterize the dependence of normalized glandular dose (DgN) on various breast model a...
Purpose - To characterize the dependence of normalized glandular dose (DgN) on various breast model ...
Purpose To characterize the dependence of normalized glandular dose (DgN) on various breast model...
Purpose: To provide mean glandular dose (MGD) estimates via Monte Carlo (MC) simulations as a functi...
Purpose To provide mean glandular dose (MGD) estimates via Monte Carlo (MC) simulations as a func...
Purpose To provide mean glandular dose (MGD) estimates via Monte Carlo (MC) simulations as a func...
Purpose To provide mean glandular dose (MGD) estimates via Monte Carlo (MC) simulations as a func...
Purpose: To compare, via Monte Carlo simulations, homogeneous and non-homogenous breast models adopt...
The rationale of this study is to perform a personalized dosimetry in digital mammography, using Mon...
The rationale of this study is to perform a personalized dosimetry in digital mammography, using Mon...
Item does not contain fulltextPURPOSE: To characterize the dependence of normalized glandular dose (...
Purpose To compare, via Monte Carlo simulations, homogeneous and non-homogenous breast models adopt...
Breast cancer is the leading cause of cancer deaths in female subjects. Screening Digital Mammograph...
Purpose To compare, via Monte Carlo simulations, homogeneous and non-homogenous breast models adopt...
Purpose To compare, via Monte Carlo simulations, homogeneous and non-homogenous breast models adopt...
PURPOSE: To characterize the dependence of normalized glandular dose (DgN) on various breast model a...
Purpose - To characterize the dependence of normalized glandular dose (DgN) on various breast model ...
Purpose To characterize the dependence of normalized glandular dose (DgN) on various breast model...