Literature DB >> 24801550

Multi-material decomposition using statistical image reconstruction for spectral CT.

Yong Long, Jeffrey A Fessler.   

Abstract

Spectral computed tomography (CT) provides information on material characterization and quantification because of its ability to separate different basis materials. Dual-energy (DE) CT provides two sets of measurements at two different source energies. In principle, two materials can be accurately decomposed from DECT measurements. However, many clinical and industrial applications require three or more material images. For triple-material decomposition, a third constraint, such as volume conservation, mass conservation or both, is required to solve three sets of unknowns from two sets of measurements. The recently proposed flexible image-domain (ID) multi-material decomposition) method assumes each pixel contains at most three materials out of several possible materials and decomposes a mixture pixel by pixel. We propose a penalized-likelihood (PL) method with edge-preserving regularizers for each material to reconstruct multi-material images using a similar constraint from sinogram data. We develop an optimization transfer method with a series of pixel-wise separable quadratic surrogate (PWSQS) functions to monotonically decrease the complicated PL cost function. The PWSQS algorithm separates pixels to allow simultaneous update of all pixels, but keeps the basis materials coupled to allow faster convergence rate than our previous proposed material- and pixel-wise SQS algorithms. Comparing with the ID method using 2-D fan-beam simulations, the PL method greatly reduced noise, streak and cross-talk artifacts in the reconstructed basis component images, and achieved much smaller root mean square errors.

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Year:  2014        PMID: 24801550      PMCID: PMC4125500          DOI: 10.1109/TMI.2014.2320284

Source DB:  PubMed          Journal:  IEEE Trans Med Imaging        ISSN: 0278-0062            Impact factor:   10.048


  38 in total

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  44 in total

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5.  Segmentation-free x-ray energy spectrum estimation for computed tomography using dual-energy material decomposition.

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7.  Statistical image-domain multimaterial decomposition for dual-energy CT.

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8.  Algorithm-enabled partial-angular-scan configurations for dual-energy CT.

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9.  An Image-Domain Contrast Material Extraction Method for Dual-Energy Computed Tomography.

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10.  A Spectral CT Method to Directly Estimate Basis Material Maps From Experimental Photon-Counting Data.

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Journal:  IEEE Trans Med Imaging       Date:  2017-04-24       Impact factor: 10.048

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