A Multiple Layers Superconducting Magnet Design for 9.4T Magnetic Resonance Imaging
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: 2014DOI: 10.1109/TASC.2013.2281371
Keyword(s): biomedical MRI,integer programming,linear programming,medical image processing,niobium compounds,superconducting coils,superconducting critical field,superconducting magnets,titanium compounds,wires (electric),0-1 integer linear programming optimization method,center magnetic induction,coils geometries,diameter spherical volume,maximum magnetic field,multiple layers superconducting magnet design,niobium-titanium superconducting wire,peak field control,whole-body magnetic resona
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A Multiple Layers Superconducting Magnet Design for 9.4T Magnetic Resonance Imaging
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contributor author | Guoqing Zhang | |
contributor author | Zian Zhu | |
contributor author | Ling Zhao | |
contributor author | Zhilong Hou | |
contributor author | Feipeng Ning | |
contributor author | Weichao Yao | |
date accessioned | 2020-03-12T18:27:44Z | |
date available | 2020-03-12T18:27:44Z | |
date issued | 2014 | |
identifier issn | 1051-8223 | |
identifier other | 6595038.pdf | |
identifier uri | https://libsearch.um.ac.ir:443/fum/handle/fum/959306?locale-attribute=en | |
format | general | |
language | English | |
publisher | IEEE | |
title | A Multiple Layers Superconducting Magnet Design for 9.4T Magnetic Resonance Imaging | |
type | Journal Paper | |
contenttype | Metadata Only | |
identifier padid | 7991863 | |
subject keywords | biomedical MRI | |
subject keywords | integer programming | |
subject keywords | linear programming | |
subject keywords | medical image processing | |
subject keywords | niobium compounds | |
subject keywords | superconducting coils | |
subject keywords | superconducting critical field | |
subject keywords | superconducting magnets | |
subject keywords | titanium compounds | |
subject keywords | wires (electric) | |
subject keywords | 0-1 integer linear programming optimization method | |
subject keywords | center magnetic induction | |
subject keywords | coils geometries | |
subject keywords | diameter spherical volume | |
subject keywords | maximum magnetic field | |
subject keywords | multiple layers superconducting magnet design | |
subject keywords | niobium-titanium superconducting wire | |
subject keywords | peak field control | |
subject keywords | whole-body magnetic resona | |
identifier doi | 10.1109/TASC.2013.2281371 | |
journal title | Applied Superconductivity, IEEE Transactions on | |
journal volume | 24 | |
journal issue | 3 | |
filesize | 372686 | |
citations | 0 |