Human-sized magnetic particle imaging for brain applications
Magnetic particle imaging (MPI) has been applied to various pre-clinical settings, including detection of ischemic stroke in mice. Translation of MPI to a clinical setting has been obstacled by the lack of a device with sufficient bore size and, at the same time, reasonable technical requirements. H...
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2019
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oai:doaj.org-article:c0b35a28d4e24697973d7c80d4dc8c492021-12-02T14:38:36ZHuman-sized magnetic particle imaging for brain applications10.1038/s41467-019-09704-x2041-1723https://doaj.org/article/c0b35a28d4e24697973d7c80d4dc8c492019-04-01T00:00:00Zhttps://doi.org/10.1038/s41467-019-09704-xhttps://doaj.org/toc/2041-1723Magnetic particle imaging (MPI) has been applied to various pre-clinical settings, including detection of ischemic stroke in mice. Translation of MPI to a clinical setting has been obstacled by the lack of a device with sufficient bore size and, at the same time, reasonable technical requirements. Here the authors present a human-sized MPI device with low technical requirements designed for detection of brain ischemia.M. GraeserF. ThiebenP. SzwargulskiF. WernerN. GdaniecM. BobergF. GrieseM. MöddelP. LudewigD. van de VenO. M. WeberO. WoywodeB. GleichT. KnoppNature PortfolioarticleScienceQENNature Communications, Vol 10, Iss 1, Pp 1-9 (2019) |
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Science Q M. Graeser F. Thieben P. Szwargulski F. Werner N. Gdaniec M. Boberg F. Griese M. Möddel P. Ludewig D. van de Ven O. M. Weber O. Woywode B. Gleich T. Knopp Human-sized magnetic particle imaging for brain applications |
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Magnetic particle imaging (MPI) has been applied to various pre-clinical settings, including detection of ischemic stroke in mice. Translation of MPI to a clinical setting has been obstacled by the lack of a device with sufficient bore size and, at the same time, reasonable technical requirements. Here the authors present a human-sized MPI device with low technical requirements designed for detection of brain ischemia. |
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M. Graeser F. Thieben P. Szwargulski F. Werner N. Gdaniec M. Boberg F. Griese M. Möddel P. Ludewig D. van de Ven O. M. Weber O. Woywode B. Gleich T. Knopp |
author_facet |
M. Graeser F. Thieben P. Szwargulski F. Werner N. Gdaniec M. Boberg F. Griese M. Möddel P. Ludewig D. van de Ven O. M. Weber O. Woywode B. Gleich T. Knopp |
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M. Graeser |
title |
Human-sized magnetic particle imaging for brain applications |
title_short |
Human-sized magnetic particle imaging for brain applications |
title_full |
Human-sized magnetic particle imaging for brain applications |
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Human-sized magnetic particle imaging for brain applications |
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Human-sized magnetic particle imaging for brain applications |
title_sort |
human-sized magnetic particle imaging for brain applications |
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Nature Portfolio |
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2019 |
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https://doaj.org/article/c0b35a28d4e24697973d7c80d4dc8c49 |
work_keys_str_mv |
AT mgraeser humansizedmagneticparticleimagingforbrainapplications AT fthieben humansizedmagneticparticleimagingforbrainapplications AT pszwargulski humansizedmagneticparticleimagingforbrainapplications AT fwerner humansizedmagneticparticleimagingforbrainapplications AT ngdaniec humansizedmagneticparticleimagingforbrainapplications AT mboberg humansizedmagneticparticleimagingforbrainapplications AT fgriese humansizedmagneticparticleimagingforbrainapplications AT mmoddel humansizedmagneticparticleimagingforbrainapplications AT pludewig humansizedmagneticparticleimagingforbrainapplications AT dvandeven humansizedmagneticparticleimagingforbrainapplications AT omweber humansizedmagneticparticleimagingforbrainapplications AT owoywode humansizedmagneticparticleimagingforbrainapplications AT bgleich humansizedmagneticparticleimagingforbrainapplications AT tknopp humansizedmagneticparticleimagingforbrainapplications |
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1718390976827883520 |