Super-resolution in medical imaging : An illustrative approach through ultrasound

The requirements for better resolution in all medical imaging modalities currently represent a very important and open challenge. Accurate measurement and visualization of structure in living tissues is intrinsically limited by the imaging system features. Imaging beyond these limits in medical imag...

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Published in2009 IEEE International Symposium on Biomedical Imaging: From Nano to Macro pp. 249 - 252
Main Authors Kouame, D., Ploquin, M.
Format Conference Proceeding
LanguageEnglish
Published IEEE 01.06.2009
Subjects
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ISBN1424439310
9781424439317
ISSN1945-7928
DOI10.1109/ISBI.2009.5193030

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Abstract The requirements for better resolution in all medical imaging modalities currently represent a very important and open challenge. Accurate measurement and visualization of structure in living tissues is intrinsically limited by the imaging system features. Imaging beyond these limits in medical imaging is referred to as super-resolution. We provide first a brief overview of super-resolution imaging and present a technique for achieving super-resolution in medical imaging based on analysis of the imaging system point spread function, and illustrate the methodology in the case of ultrasound imaging. The technique proposed uses parametric modeling to estimate B-mode images. The technique behavior is illustrated using phantom and in vivo images.
AbstractList The requirements for better resolution in all medical imaging modalities currently represent a very important and open challenge. Accurate measurement and visualization of structure in living tissues is intrinsically limited by the imaging system features. Imaging beyond these limits in medical imaging is referred to as super-resolution. We provide first a brief overview of super-resolution imaging and present a technique for achieving super-resolution in medical imaging based on analysis of the imaging system point spread function, and illustrate the methodology in the case of ultrasound imaging. The technique proposed uses parametric modeling to estimate B-mode images. The technique behavior is illustrated using phantom and in vivo images.
Author Kouame, D.
Ploquin, M.
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Snippet The requirements for better resolution in all medical imaging modalities currently represent a very important and open challenge. Accurate measurement and...
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StartPage 249
SubjectTerms AR model
Biomedical imaging
High-resolution imaging
Image analysis
Image resolution
Image sensors
Medical diagnostic imaging
Medical Imaging
Multidimensional
Optical imaging
Spatial resolution
Strontium
Super-resolution
Ultrasonic imaging
Ultrasound
Title Super-resolution in medical imaging : An illustrative approach through ultrasound
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