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Plug-and-Play Methods for Magnetic Resonance Imaging: Using Denoisers for Image Recovery

Rizwan Ahmad, Charles A. Bouman, Gregery T. Buzzard, Stanley H. Chan, Sizhuo Liu, Edward T. Reehorst, Philip Schniter

2020IEEE Signal Processing Magazine258 citationsDOIOpen Access PDF

Abstract

Magnetic Resonance Imaging (MRI) is a non-invasive diagnostic tool that provides excellent soft-tissue contrast without the use of ionizing radiation. Compared to other clinical imaging modalities (e.g., CT or ultrasound), however, the data acquisition process for MRI is inherently slow, which motivates undersampling and thus drives the need for accurate, efficient reconstruction methods from undersampled datasets. In this article, we describe the use of "plug-and-play" (PnP) algorithms for MRI image recovery. We first describe the linearly approximated inverse problem encountered in MRI. Then we review several PnP methods, where the unifying commonality is to iteratively call a denoising subroutine as one step of a larger optimization-inspired algorithm. Next, we describe how the result of the PnP method can be interpreted as a solution to an equilibrium equation, allowing convergence analysis from the equilibrium perspective. Finally, we present illustrative examples of PnP methods applied to MRI image recovery.

Topics & Concepts

UndersamplingComputer scienceIterative reconstructionMagnetic resonance imagingInverse problemReal-time MRIConvergence (economics)Medical imagingAlgorithmMathematical optimizationArtificial intelligenceComputer visionMathematicsRadiologyMedicineEconomicsMathematical analysisEconomic growthSparse and Compressive Sensing TechniquesAdvanced MRI Techniques and ApplicationsMedical Imaging Techniques and Applications
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