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Maximum-likelihood refinement for coherent diffractive imaging

New Journal of Physics · 2012 · Vol. 14(6) · pp. 063004–063004
Pierre ThibaultManuel Guizar‐Sicairos

Abstract

We introduce the application of maximum-likelihood (ML) principles to the image reconstruction problem in coherent diffractive imaging. We describe an implementation of the optimization procedure for ptychography, using conjugate gradients and including preconditioning strategies, regularization and typical modifications of the statistical noise model. The optimization principle is compared to a difference map reconstruction algorithm. With simulated data important improvements are observed, as measured by a strong increase in the signal-to-noise ratio. Significant gains in resolution and sensitivity are also demonstrated in the ML refinement of a reconstruction from experimental x-ray data. The immediate consequence of our results is the possible reduction of exposure, or dose, by up to an order of magnitude for a reconstruction quality similar to iterative algorithms currently in use. © IOP Publishing Ltd and Deutsche Physikalische Gesellschaft.

Advanced X-ray Imaging TechniquesMedical Imaging Techniques and ApplicationsSeismic Imaging and Inversion TechniquesPhysicsRegularization (linguistics)PtychographyIterative reconstructionAlgorithmSensitivity (control systems)Image qualityConjugate gradient methodInverse problemNoise (video)
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397
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References
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Choice Reviews Online · 1990 · 11,805 citations
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