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Flexible and compact hybrid metasurfaces for enhanced ultra high field in vivo magnetic resonance imaging
by
Schmidt, Rita
, Webb, Andrew
, Belov, Pavel
, Slobozhanyuk, Alexey
in
639/166/985
/ 639/301/930
/ Computer Simulation
/ Electromagnetic Fields
/ Humanities and Social Sciences
/ Humans
/ Magnetic resonance imaging
/ Magnetic Resonance Imaging - methods
/ multidisciplinary
/ Neuroimaging
/ NMR
/ Nuclear magnetic resonance
/ Phantoms, Imaging
/ Science
/ Science (multidisciplinary)
/ Spectrum Analysis
2017
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Flexible and compact hybrid metasurfaces for enhanced ultra high field in vivo magnetic resonance imaging
by
Schmidt, Rita
, Webb, Andrew
, Belov, Pavel
, Slobozhanyuk, Alexey
in
639/166/985
/ 639/301/930
/ Computer Simulation
/ Electromagnetic Fields
/ Humanities and Social Sciences
/ Humans
/ Magnetic resonance imaging
/ Magnetic Resonance Imaging - methods
/ multidisciplinary
/ Neuroimaging
/ NMR
/ Nuclear magnetic resonance
/ Phantoms, Imaging
/ Science
/ Science (multidisciplinary)
/ Spectrum Analysis
2017
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Do you wish to request the book?
Flexible and compact hybrid metasurfaces for enhanced ultra high field in vivo magnetic resonance imaging
by
Schmidt, Rita
, Webb, Andrew
, Belov, Pavel
, Slobozhanyuk, Alexey
in
639/166/985
/ 639/301/930
/ Computer Simulation
/ Electromagnetic Fields
/ Humanities and Social Sciences
/ Humans
/ Magnetic resonance imaging
/ Magnetic Resonance Imaging - methods
/ multidisciplinary
/ Neuroimaging
/ NMR
/ Nuclear magnetic resonance
/ Phantoms, Imaging
/ Science
/ Science (multidisciplinary)
/ Spectrum Analysis
2017
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Flexible and compact hybrid metasurfaces for enhanced ultra high field in vivo magnetic resonance imaging
Journal Article
Flexible and compact hybrid metasurfaces for enhanced ultra high field in vivo magnetic resonance imaging
2017
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Overview
Developments in metamaterials and related structures such as metasurfaces have opened up new possibilities in designing materials and devices with unique properties. Here we report a new hybrid metasurface structure, comprising a two-dimensional metamaterial surface and a very high permittivity dielectric substrate, that has been designed to enhance the local performance of an ultra-high field MRI scanner. This new flexible and compact resonant structure is the first metasurface which can be integrated with multi-element close-fitting receive coil arrays that are used for all clinical MRI scans. We demonstrate the utility of the metasurface acquiring
in-vivo
human brain images and proton MR spectra with enhanced local sensitivity on a commercial 7 Tesla system.
Publisher
Nature Publishing Group UK,Nature Publishing Group,Nature Portfolio
Subject
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