DocumentCode :
3243454
Title :
Super-resolution MRI using finite rate of innovation curves
Author :
Ongie, Greg ; Jacob, Mathews
Author_Institution :
Dept. of Math., Univ. of Iowa, Iowa City, IA, USA
fYear :
2015
fDate :
16-19 April 2015
Firstpage :
1248
Lastpage :
1251
Abstract :
We propose a two-stage algorithm for the super-resolution of MR images from their low-frequency k-space samples. In the first stage we estimate a resolution-independent mask whose zeros represent the edges of the image. This builds off recent work extending the theory of sampling signals of finite rate of innovation (FRI) to two-dimensional curves. We enable its application to MRI by proposing extensions of the signal models allowed by FRI theory, and by developing a more robust and efficient means to determine the edge mask. In the second stage of the scheme, we recover the super-resolved MR image using the discretized edge mask as an image prior. We evaluate our scheme on simulated single-coil MR data obtained from analytical phantoms, and compare against total variation reconstructions. Our experiments show improved performance in both noiseless and noisy settings.
Keywords :
biomedical MRI; edge detection; image reconstruction; image representation; image resolution; medical image processing; noise; phantoms; FRI signal sampling; FRI theory; analytical phantom; discretized edge mask; efficient edge mask determination; finite rate of innovation curve; image edge representation; image prior; low-frequency k-space sample; noiseless setting; noisy setting; resolution-independent mask estimation; resolution-independent mask zero; robust edge mask determination; signal model; simulated single-coil MR data; super-resolved MR image recovery; superresolution MRI; total variation reconstruction; two-dimensional curve; two-stage algorithm; Image edge detection; Magnetic resonance imaging; Noise; Signal resolution; Spatial resolution; TV; Finite Rate of Innovation Curves; MRI; Super-resolution;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Biomedical Imaging (ISBI), 2015 IEEE 12th International Symposium on
Conference_Location :
New York, NY
Type :
conf
DOI :
10.1109/ISBI.2015.7164100
Filename :
7164100
Link To Document :
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