Title :
Anti-aliased three-dimensional cone-beam reconstruction of low-contrast objects with algebraic methods
Author :
Mueller, Klaus ; Yagel, Roni ; Wheller, John J.
Author_Institution :
Dept. of Comput. & Inf. Sci., Ohio State Univ., Columbus, OH, USA
fDate :
6/1/1999 12:00:00 AM
Abstract :
Examines the use of the algebraic reconstruction technique (ART) and related techniques to reconstruct 3-D objects from a relatively sparse set of cone-beam projections. Although ART has been widely used for cone-beam reconstruction of high-contrast objects, e.g., in computed angiography, the work presented here explores the more challenging low-contrast case which represents a little-investigated scenario for ART. Preliminary experiments indicate that for cone angles greater than 20°, traditional ART produces reconstructions with strong aliasing artifacts. These artifacts are in addition to the usual off-midplane inaccuracies of cone-beam tomography with planar orbits. The authors find that the source of these artifacts is the nonuniform reconstruction grid sampling and correction by the cone-beam rays during the ART projection-backprojection procedure. A new method to compute the weights of the reconstruction matrix is devised, which replaces the usual constant-size interpolation filter by one whose size and amplitude is dependent on the source-voxel distance. This enables the generation of reconstructions free of cone-beam aliasing artifacts, at only little extra cost. An alternative analysis reveals that simultaneous ART (SART) also produces reconstructions without aliasing artifacts, however, at greater computational cost. Finally, the authors thoroughly investigate the influence of various ART parameters, such as volume initialization, relaxation coefficient λ, correction scheme, number of iterations, and noise in the projection data on reconstruction quality. The authors find that ART typically requires only 3 iterations to render satisfactory reconstruction results.
Keywords :
computerised tomography; image reconstruction; medical image processing; algebraic methods; antialiased three-dimensional cone-beam reconstruction; computed angiography; high-contrast objects; iterations number; low-contrast objects; medical diagnostic imaging; nonuniform reconstruction grid sampling; off-midplane inaccuracies; planar orbits; relaxation coefficient; strong aliasing artifacts; volume initialization; Angiography; Computational efficiency; Costs; Filters; Interpolation; Orbits; Sampling methods; Subspace constraints; Tomography; Transmission line matrix methods; Algorithms; Artifacts; Brain; Humans; Image Processing, Computer-Assisted; Tomography, X-Ray Computed;
Journal_Title :
Medical Imaging, IEEE Transactions on