Gd-based protein cage nanoparticles provide enhanced r1 relaxivity and detect experimental atherosclerosis

Bibliographic Details
Main Authors: McConnell Michael V, Kitagawa Toshiro, Kosuge Hisanori, Qazi Shefah, Abedin Md Joynald, Uchida Masaki, Liepold Lars O, Douglas Trevor
Format: Article
Language:English
Published: BMC 2011-02-01
Series:Journal of Cardiovascular Magnetic Resonance
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spelling doaj-6d2048ccd2e44c5fa20019fbeb7eae532020-11-25T02:15:32ZengBMCJournal of Cardiovascular Magnetic Resonance1097-66471532-429X2011-02-0113Suppl 1P37010.1186/1532-429X-13-S1-P370Gd-based protein cage nanoparticles provide enhanced r1 relaxivity and detect experimental atherosclerosisMcConnell Michael VKitagawa ToshiroKosuge HisanoriQazi ShefahAbedin Md JoynaldUchida MasakiLiepold Lars ODouglas Trevor
collection DOAJ
language English
format Article
sources DOAJ
author McConnell Michael V
Kitagawa Toshiro
Kosuge Hisanori
Qazi Shefah
Abedin Md Joynald
Uchida Masaki
Liepold Lars O
Douglas Trevor
spellingShingle McConnell Michael V
Kitagawa Toshiro
Kosuge Hisanori
Qazi Shefah
Abedin Md Joynald
Uchida Masaki
Liepold Lars O
Douglas Trevor
Gd-based protein cage nanoparticles provide enhanced r1 relaxivity and detect experimental atherosclerosis
Journal of Cardiovascular Magnetic Resonance
author_facet McConnell Michael V
Kitagawa Toshiro
Kosuge Hisanori
Qazi Shefah
Abedin Md Joynald
Uchida Masaki
Liepold Lars O
Douglas Trevor
author_sort McConnell Michael V
title Gd-based protein cage nanoparticles provide enhanced r1 relaxivity and detect experimental atherosclerosis
title_short Gd-based protein cage nanoparticles provide enhanced r1 relaxivity and detect experimental atherosclerosis
title_full Gd-based protein cage nanoparticles provide enhanced r1 relaxivity and detect experimental atherosclerosis
title_fullStr Gd-based protein cage nanoparticles provide enhanced r1 relaxivity and detect experimental atherosclerosis
title_full_unstemmed Gd-based protein cage nanoparticles provide enhanced r1 relaxivity and detect experimental atherosclerosis
title_sort gd-based protein cage nanoparticles provide enhanced r1 relaxivity and detect experimental atherosclerosis
publisher BMC
series Journal of Cardiovascular Magnetic Resonance
issn 1097-6647
1532-429X
publishDate 2011-02-01
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AT kitagawatoshiro gdbasedproteincagenanoparticlesprovideenhancedr1relaxivityanddetectexperimentalatherosclerosis
AT kosugehisanori gdbasedproteincagenanoparticlesprovideenhancedr1relaxivityanddetectexperimentalatherosclerosis
AT qazishefah gdbasedproteincagenanoparticlesprovideenhancedr1relaxivityanddetectexperimentalatherosclerosis
AT abedinmdjoynald gdbasedproteincagenanoparticlesprovideenhancedr1relaxivityanddetectexperimentalatherosclerosis
AT uchidamasaki gdbasedproteincagenanoparticlesprovideenhancedr1relaxivityanddetectexperimentalatherosclerosis
AT liepoldlarso gdbasedproteincagenanoparticlesprovideenhancedr1relaxivityanddetectexperimentalatherosclerosis
AT douglastrevor gdbasedproteincagenanoparticlesprovideenhancedr1relaxivityanddetectexperimentalatherosclerosis
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