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Modeling the axial extension of a transmission line source within iterative reconstruction via multiple transmission sources

  • J. E. Bowsher
  • , M. P. Tornai
  • , J. Peter
  • , D. E. González Trotter
  • , A. Krol
  • , D. R. Gilland
  • , R. J. Jaszczak
  • IEEE
  • Duke University

Research output: Contribution to journalArticlepeer-review

15 Scopus citations

Abstract

Reconstruction algorithms for transmission tomography have generally assumed that the photons reaching a particular detector bin at a particular angle originate from a single point source. In this paper, we highlight several cases of extended transmission sources, in which it may be useful to approach the estimation of attenuation coefficients as a problem involving multiple transmission point sources. Examined in detail is the case of a fixed transmission line source with a fan-beam collimator. This geometry can result in attenuation images that have significant axial blur. Herein it is also shown, empirically, that extended transmission sources can result in biased estimates of the average attenuation, and an explanation is proposed. The finite axial resolution of the transmission line source configuration is modeled within iterative reconstruction using an expectation-maximization algorithm that was previously derived for estimating attenuation coefficients from single photon emission computed tomography (SPECT) emission data. The same algorithm is applicable to both problems because both can be thought of as involving multiple transmission sources. It is shown that modelling axial blur within reconstruction removes the bias in the average estimated attenuation and substantially improves the axial resolution of attenuation images.

Original languageEnglish
Pages (from-to)200-215
Number of pages16
JournalIEEE Transactions on Medical Imaging
Volume21
Issue number3
DOIs
StatePublished - Mar 2002

Keywords

  • Extended transmission sources
  • Image reconstruction
  • SPECT
  • Transmission tomography

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