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Analyser-based mammography using single-image reconstruction

  • D Briedis
  • , Karen K W Siu
  • , David Paganin
  • , Konstantin M Pavlov
  • , Rob A Lewis

Research output: Contribution to journalArticlepeer-review

19 Citations (Scopus)

Abstract

We implement an algorithm that is able to decode a single analyser-based x-ray phase-contrast image of a sample, converting it into an equivalent conventional absorption-contrast radiograph. The algorithm assumes the projection approximation for x-ray propagation in a single-material object embedded in a substrate of approximately uniform thickness. Unlike the phase-contrast images, which have both directional bias and a bias towards edges present in the sample, the reconstructed images are directly interpretable in terms of the projected absorption coefficient of the sample. The technique was applied to a Leeds TOR [MAM] phantom, which is designed to test mammogram quality by the inclusion of simulated microcalcifications, filaments and circular discs. This phantom was imaged at varying doses using three modalities: analyser-based synchrotron imaging and imaging using a conventional mammography unit. Features in the following resulting images were then assigned a quality score by volunteers. The single-image reconstruction method achieved higher scores at equivalent and lower doses than the conventional mammography images, but no improvement of visualization of the simulated microcalcifications, and some degradation in image quality at reduced doses for filament features.
Original languageEnglish
Pages (from-to)3599-3611
JournalPhysics in Medicine and Biology
Volume50
Issue number15
DOIs
Publication statusPublished - 2005

Keywords

  • Radiology and Organ Imaging
  • Photonics, Optoelectronics and Optical Communications

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