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Article
Correction of Scatter in Computed Tomography Images of Bone
Medical Physics
  • Thomas N. Hangartner, Wright State University - Main Campus
Document Type
Article
Publication Date
5-1-1987
Abstract

A cylindrical aluminum/Plexiglas phantom representing trabecular bone surrounded by various amounts of cortical bone was constructed. Measurements of this phantom using a computed tomography scanner with a 125I photon source demonstrated errors of 0% to 28% in the density of trabecular bone. Two contributing factors are identified: scatter and exponential edge-gradient effect. A simple first-order correction is developed to correct for the scatter-induced error. Relative to the exponential edge-gradient effect, which contributes up to 3.4% error over the range of cortical thicknesses measured, the correction procedure reduces the scatter-induced error to a level of -0.66% to +0.61%. The consistency of the optimized correction parameters with the physical model as well as the effect of scatter measured by the same phantom on a GE 8800 scanner are shown.

DOI
10.1118/1.596089
Citation Information
Thomas N. Hangartner. "Correction of Scatter in Computed Tomography Images of Bone" Medical Physics Vol. 14 Iss. 3 (1987) p. 335 - 340 ISSN: 0094-2405
Available at: http://works.bepress.com/thomas_hangartner/12/