Author:
Motovilova Elizaveta,Tan Ek Tsoon,Taracila Victor,Vincent Jana M.,Grafendorfer Thomas,Shin James,Potter Hollis G.,Robb Fraser J. L.,Sneag Darryl B.,Winkler Simone A.
Abstract
AbstractMagnetic resonance imaging systems rely on signal detection via radiofrequency coil arrays which, ideally, need to provide both bendability and form-fitting stretchability to conform to the imaging volume. However, most commercial coils are rigid and of fixed size with a substantial mean offset distance of the coil from the anatomy, which compromises the spatial resolution and diagnostic image quality as well as patient comfort. Here, we propose a soft and stretchable receive coil concept based on liquid metal and ultra-stretchable polymer that conforms closely to a desired anatomy. Moreover, its smart geometry provides a self-tuning mechanism to maintain a stable resonance frequency over a wide range of elongation levels. Theoretical analysis and numerical simulations were experimentally confirmed and demonstrated that the proposed coil withstood the unwanted frequency detuning typically observed with other stretchable coils (0.4% for the proposed coil as compared to 4% for a comparable control coil). Moreover, the signal-to-noise ratio of the proposed coil increased by more than 60% as compared to a typical, rigid, commercial coil.
Funder
National Institutes of Health
GE Healthcare
Publisher
Springer Science and Business Media LLC
Cited by
17 articles.
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