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2016 | OriginalPaper | Buchkapitel

Detailed Analysis of Scatter Contribution from Different Simulated Geometries of X-ray Detectors

verfasst von : Elena Marimon, Hammadi Nait-Charif, Asmar Khan, Philip A. Marsden, Oliver Diaz

Erschienen in: Breast Imaging

Verlag: Springer International Publishing

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Abstract

Scattering is one of the main issues left in planar mammography examinations, as it degrades the quality of the image and complicates the diagnostic process. Although widely used, anti-scatter grids have been found to be inefficient, increasing the dose delivered, the equipment price and not eliminating all the scattered radiation. Alternative scattering reduction methods, based on post-processing algorithms using Monte Carlo (MC) simulations, are being developed to substitute anti-scatter grids. Idealized detectors are commonly used in the simulations for the purpose of simplification. In this study, the scatter distribution of three detector geometries is analyzed and compared: Case 1 makes use of idealized detector geometry, Case 2 uses a scintillator plate and Case 3 uses a more realistic detector simulation, based on the structure of an indirect mammography X-ray detector. This paper demonstrates that common configuration simplifications may introduce up to 14 % of underestimation of the scatter in simulation results.

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Metadaten
Titel
Detailed Analysis of Scatter Contribution from Different Simulated Geometries of X-ray Detectors
verfasst von
Elena Marimon
Hammadi Nait-Charif
Asmar Khan
Philip A. Marsden
Oliver Diaz
Copyright-Jahr
2016
DOI
https://doi.org/10.1007/978-3-319-41546-8_27

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