Thermal annihilation of photo-induced radicals following dynamic nuclear polarization to produce transportable frozen hyperpolarized 13C-substrates

Hyperpolarized molecules provide unique contrast for MRI but due to their short relaxation time need to be prepared shortly before injection. Here the authors report a method for eliminating the main source of relaxation and producing frozen polarized substances that can be stored and transported.

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Autores principales: Andrea Capozzi, Tian Cheng, Giovanni Boero, Christophe Roussel, Arnaud Comment
Formato: article
Lenguaje:EN
Publicado: Nature Portfolio 2017
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Acceso en línea:https://doaj.org/article/68e26bd0df55499d95cb79462df23fa5
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spelling oai:doaj.org-article:68e26bd0df55499d95cb79462df23fa52021-12-02T14:40:34ZThermal annihilation of photo-induced radicals following dynamic nuclear polarization to produce transportable frozen hyperpolarized 13C-substrates10.1038/ncomms157572041-1723https://doaj.org/article/68e26bd0df55499d95cb79462df23fa52017-06-01T00:00:00Zhttps://doi.org/10.1038/ncomms15757https://doaj.org/toc/2041-1723Hyperpolarized molecules provide unique contrast for MRI but due to their short relaxation time need to be prepared shortly before injection. Here the authors report a method for eliminating the main source of relaxation and producing frozen polarized substances that can be stored and transported.Andrea CapozziTian ChengGiovanni BoeroChristophe RousselArnaud CommentNature PortfolioarticleScienceQENNature Communications, Vol 8, Iss 1, Pp 1-7 (2017)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Andrea Capozzi
Tian Cheng
Giovanni Boero
Christophe Roussel
Arnaud Comment
Thermal annihilation of photo-induced radicals following dynamic nuclear polarization to produce transportable frozen hyperpolarized 13C-substrates
description Hyperpolarized molecules provide unique contrast for MRI but due to their short relaxation time need to be prepared shortly before injection. Here the authors report a method for eliminating the main source of relaxation and producing frozen polarized substances that can be stored and transported.
format article
author Andrea Capozzi
Tian Cheng
Giovanni Boero
Christophe Roussel
Arnaud Comment
author_facet Andrea Capozzi
Tian Cheng
Giovanni Boero
Christophe Roussel
Arnaud Comment
author_sort Andrea Capozzi
title Thermal annihilation of photo-induced radicals following dynamic nuclear polarization to produce transportable frozen hyperpolarized 13C-substrates
title_short Thermal annihilation of photo-induced radicals following dynamic nuclear polarization to produce transportable frozen hyperpolarized 13C-substrates
title_full Thermal annihilation of photo-induced radicals following dynamic nuclear polarization to produce transportable frozen hyperpolarized 13C-substrates
title_fullStr Thermal annihilation of photo-induced radicals following dynamic nuclear polarization to produce transportable frozen hyperpolarized 13C-substrates
title_full_unstemmed Thermal annihilation of photo-induced radicals following dynamic nuclear polarization to produce transportable frozen hyperpolarized 13C-substrates
title_sort thermal annihilation of photo-induced radicals following dynamic nuclear polarization to produce transportable frozen hyperpolarized 13c-substrates
publisher Nature Portfolio
publishDate 2017
url https://doaj.org/article/68e26bd0df55499d95cb79462df23fa5
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AT tiancheng thermalannihilationofphotoinducedradicalsfollowingdynamicnuclearpolarizationtoproducetransportablefrozenhyperpolarized13csubstrates
AT giovanniboero thermalannihilationofphotoinducedradicalsfollowingdynamicnuclearpolarizationtoproducetransportablefrozenhyperpolarized13csubstrates
AT christopheroussel thermalannihilationofphotoinducedradicalsfollowingdynamicnuclearpolarizationtoproducetransportablefrozenhyperpolarized13csubstrates
AT arnaudcomment thermalannihilationofphotoinducedradicalsfollowingdynamicnuclearpolarizationtoproducetransportablefrozenhyperpolarized13csubstrates
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