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Portrait of Predrag Bakic. Photo

Predrag Bakic

Associate Professor, Principal investigator, PhD, FAAPM

Portrait of Predrag Bakic. Photo

Acquisition Geometry vs Radiation Dose in Digital Breast Tomosynthesis : Design Considerations for Optimizing the Reconstruction Quality Through Denoising

Author

  • Arthur C. Costa
  • Renann F. Brandão
  • Lucas R. Borges
  • Bruno Barufaldi
  • Andrew D.A. Maidment
  • Predrag R. Bakic
  • Anders Tingberg
  • Alessandro Foi
  • Marcelo A.C. Vieira

Editor

  • Alcimar Barbosa Soares
  • Renata Ferranti Leoni
  • George Cunha Cardoso

Summary, in English

In the last decade, breast cancer diagnosis has seen the widespread application of digital breast tomosynthesis (DBT) in screening programs. DBT involves the X-ray tube traversing along an arc trajectory parallel to the patient’s chest wall, acquiring multiple low-dose mammograms from various angles. Reconstruction algorithms process these projection views to generate a stack of slices forming a pseudo-3D volume of the breast. While DBT offers intricate structural visualization, variations in acquisition geometry impact lesion visualization and vertical resolution of the reconstructed slices. Studies have explored optimal parameter combinations, demonstrating their impact on lesion detection. Radiation dose is a critical factor influencing image quality, with a trade-off between projection number and exposure per projection. Virtual clinical trial (VCT) tools facilitate testing different acquisition geometries without clinical trials constraints. In this study we investigate the impact of angular range and projection number on DBT reconstructed images for two different scenarios, maintaining total radiation dose and keeping the dose per projection constant. We evaluate the quality of images and identify optimal acquisition protocols for lesion visualization assessing the contrast-to-noise ratio. Results reveal that by maintaining the total radiation dose, our denoising pipeline approaches image quality comparable to higher-dose acquisitions, demonstrating the potential for optimized DBT protocols.

Department/s

  • Radiology Diagnostics, Malmö
  • LUCC: Lund University Cancer Centre
  • Medical Radiation Physics, Malmö

Publishing year

2025

Language

English

Pages

905-914

Publication/Series

IFMBE Proceedings

Document type

Paper in conference proceeding

Publisher

Springer Science and Business Media B.V.

Topic

  • Radiology and Medical Imaging

Keywords

  • acquisition geometry
  • breast lesion visualization
  • Digital breast tomosynthesis
  • image denoising
  • radiation dose
  • SDG 3 - Good Health and Well-being

Conference name

29th Brazilian Congress of Biomedical Engineering, CBEB 2024

Conference date

2024-09-02 - 2024-09-06

Conference place

Ribeirão Preto-SP, Brazil

Status

Published

Report number

127 IFMBE

Research group

  • Radiology Diagnostics, Malmö
  • Medical Radiation Physics, Malmö

ISBN/ISSN/Other

  • ISBN: 9783031949333
  • ISSN: 1433-9277
  • ISSN: 1680-0737