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AbstractAbstract
[en] The imparted energy to the glandular tissue in the breast (glandular imparted energy, GIE) is proposed for an improved assessment of the individual radiation-induced risk resulting from X-ray breast imaging. GIE is computed from an estimation of the quantity and localisation of glandular tissue in the breast. After a digital breast tomosynthesis (DBT) acquisition, the volumetric glandular content (volumetric breast density, VBD) is computed from the central X-ray projection. The glandular tissue distribution is determined by labelling the DBT voxels to ensure the conservation of the VBD. Finally, the GIE is calculated by Monte Carlo computation on the resulting tissue-labelled DBT volume. For verification, the method was applied to 10 breast-shaped digital phantoms made of different glandular spheres in an adipose background, and to a digital anthropomorphic phantom. Results were compared to direct GIE computations on the phantoms considered as 'ground-truth'. The major limitations in accuracy are those of DBT, in particular the limited z-resolution. However, for most phantoms, the results can be considered as acceptable. (authors)
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OXMI 2015: 4. Malmoe Conference on Medical Imaging - Optimisation in X-ray and Molecular Imaging 2015; Gothenburg (Sweden); 28-30 May 2015; Available from doi: http://dx.doi.org/10.1093/rpd/ncw106; Country of input: France; 18 refs.
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Journal Article
Literature Type
Conference
Journal
Radiation Protection Dosimetry; ISSN 0144-8420;
; v. 169(1-4); p. 267-273

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