IEEE Transactions on Applied Superconductivity · 2013 · 51 citations · 8 references
Superconducting MaterialMagnetic PropertiesEngineeringMagnetic ResonanceBiomedical EngineeringMagnetic MaterialsMagnetic Resonance ImagingMagnetoresistanceMagnetismSuperconductivityMagnetic Resonance ImagesHigh Tc SuperconductorsMagnet SystemNeurologyBi-2223 Tape ConductorsSuperconducting DevicesMaterials ScienceHigh-tc SuperconductivityNeuroimagingMagnetic MaterialSpintronicsHigh-temperature SuperconductivityNeuroscienceMagnetic PropertyMagnetic DeviceMedicine
We have designed and fabricated a 3T magnetic resonance imaging magnet system for the human brain, which was wound with Bi-2223 tape conductors. Cooled by a Gifford-McMahon cryocooler, it was operated at 20 K with a stored energy of 2.3 MJ. A magnetic-field homogeneity of 5 ppm was attained at 1.5 T, which was our target value. Using this Bi-2223 high-temperature superconducting magnet, we obtained magnetic resonance images in 1.5 T at 8.5 K. The system was successfully magnetized to 3 T, which is the final target field in our project. This work demonstrates the potential of the high-temperature superconducting magnet for use in human magnetic resonance imaging experiments.
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Ken‐ichi Sato, Shinichi Kobayashi, T. Nakashima · Japanese Journal of Applied Physics · 2011 · 59 citations
Superconducting Material, Engineering, Bismuth-based Superconductors +22