Zero-field nuclear magnetic resonance of chemically exchanging systems

Zero-field nuclear magnetic resonance can identify species and collective behaviors in mixtures without applied magnetic fields. Here the authors demonstrate its use for resolving proton exchange in ammonium and for the detection of hyperpolarized pyruvic acid, an important imaging biomarker.

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Autores principales: Danila A. Barskiy, Michael C. D. Tayler, Irene Marco-Rius, John Kurhanewicz, Daniel B. Vigneron, Sevil Cikrikci, Ayca Aydogdu, Moritz Reh, Andrey N. Pravdivtsev, Jan-Bernd Hövener, John W. Blanchard, Teng Wu, Dmitry Budker, Alexander Pines
Formato: article
Lenguaje:EN
Publicado: Nature Portfolio 2019
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Acceso en línea:https://doaj.org/article/58e06c5dcabe4e329f3f3e6e1d38ac26
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spelling oai:doaj.org-article:58e06c5dcabe4e329f3f3e6e1d38ac262021-12-02T17:32:10ZZero-field nuclear magnetic resonance of chemically exchanging systems10.1038/s41467-019-10787-92041-1723https://doaj.org/article/58e06c5dcabe4e329f3f3e6e1d38ac262019-07-01T00:00:00Zhttps://doi.org/10.1038/s41467-019-10787-9https://doaj.org/toc/2041-1723Zero-field nuclear magnetic resonance can identify species and collective behaviors in mixtures without applied magnetic fields. Here the authors demonstrate its use for resolving proton exchange in ammonium and for the detection of hyperpolarized pyruvic acid, an important imaging biomarker.Danila A. BarskiyMichael C. D. TaylerIrene Marco-RiusJohn KurhanewiczDaniel B. VigneronSevil CikrikciAyca AydogduMoritz RehAndrey N. PravdivtsevJan-Bernd HövenerJohn W. BlanchardTeng WuDmitry BudkerAlexander PinesNature PortfolioarticleScienceQENNature Communications, Vol 10, Iss 1, Pp 1-9 (2019)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Danila A. Barskiy
Michael C. D. Tayler
Irene Marco-Rius
John Kurhanewicz
Daniel B. Vigneron
Sevil Cikrikci
Ayca Aydogdu
Moritz Reh
Andrey N. Pravdivtsev
Jan-Bernd Hövener
John W. Blanchard
Teng Wu
Dmitry Budker
Alexander Pines
Zero-field nuclear magnetic resonance of chemically exchanging systems
description Zero-field nuclear magnetic resonance can identify species and collective behaviors in mixtures without applied magnetic fields. Here the authors demonstrate its use for resolving proton exchange in ammonium and for the detection of hyperpolarized pyruvic acid, an important imaging biomarker.
format article
author Danila A. Barskiy
Michael C. D. Tayler
Irene Marco-Rius
John Kurhanewicz
Daniel B. Vigneron
Sevil Cikrikci
Ayca Aydogdu
Moritz Reh
Andrey N. Pravdivtsev
Jan-Bernd Hövener
John W. Blanchard
Teng Wu
Dmitry Budker
Alexander Pines
author_facet Danila A. Barskiy
Michael C. D. Tayler
Irene Marco-Rius
John Kurhanewicz
Daniel B. Vigneron
Sevil Cikrikci
Ayca Aydogdu
Moritz Reh
Andrey N. Pravdivtsev
Jan-Bernd Hövener
John W. Blanchard
Teng Wu
Dmitry Budker
Alexander Pines
author_sort Danila A. Barskiy
title Zero-field nuclear magnetic resonance of chemically exchanging systems
title_short Zero-field nuclear magnetic resonance of chemically exchanging systems
title_full Zero-field nuclear magnetic resonance of chemically exchanging systems
title_fullStr Zero-field nuclear magnetic resonance of chemically exchanging systems
title_full_unstemmed Zero-field nuclear magnetic resonance of chemically exchanging systems
title_sort zero-field nuclear magnetic resonance of chemically exchanging systems
publisher Nature Portfolio
publishDate 2019
url https://doaj.org/article/58e06c5dcabe4e329f3f3e6e1d38ac26
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