Title :
An iterative maximum-likelihood polychromatic algorithm for CT
Author :
De Man, Bruno ; Nuyts, Johan ; Dupont, Patrick ; Marchal, Guy ; Suetens, Paul
Author_Institution :
Univ. Hospital Gasthuisberg, Leuven, Belgium
Abstract :
A new iterative maximum-likelihood reconstruction algorithm for X-ray computed tomography is presented. The algorithm prevents beam hardening artifacts by incorporating a polychromatic acquisition model. The continuous spectrum of the X-ray tube is modeled as a number of discrete energies. The energy dependence of the attenuation is taken into account by decomposing the linear attenuation coefficient into a photoelectric component and a Compton scatter component. The relative weight of these components is constrained based on prior material assumptions. Excellent results are obtained for simulations and for phantom measurements. Beam-hardening artifacts are effectively eliminated. The relation with existing algorithms is discussed. The results confirm that improving the acquisition model assumed by the reconstruction algorithm results in reduced artifacts. Preliminary results indicate that metal artifact reduction is a very promising application for this new algorithm.
Keywords :
Compton effect; computerised tomography; image reconstruction; iterative methods; medical image processing; CT; Compton scatter component; acquisition model; beam-hardening artifacts; discrete energies; iterative maximum-likelihood polychromatic algorithm; linear attenuation coefficient; medical diagnostic imaging; phantom measurements; photoelectric component; polychromatic acquisition model; Attenuation; Computed tomography; Extraterrestrial measurements; Hospitals; Image reconstruction; Iterative algorithms; Nuclear medicine; Reconstruction algorithms; X-ray imaging; X-ray scattering; Algorithms; Image Processing, Computer-Assisted; Models, Theoretical; Phantoms, Imaging; Tomography, X-Ray Computed;
Journal_Title :
Medical Imaging, IEEE Transactions on