Literature DB >> 26754064

Magnetic resonance imaging of (1)H long lived states derived from parahydrogen induced polarization in a clinical system.

Dirk Graafen1, María Belén Franzoni2, Laura M Schreiber3, Hans W Spiess4, Kerstin Münnemann4.   

Abstract

Hyperpolarization is a powerful tool to overcome the low sensitivity of nuclear magnetic resonance (NMR). However, applications are limited due to the short lifetime of this non equilibrium spin state caused by relaxation processes. This issue can be addressed by storing hyperpolarization in slowly decaying singlet spin states which was so far mostly demonstrated for non-proton spin pairs, e.g. (13)C-(13)C. Protons hyperpolarized by parahydrogen induced polarization (PHIP) in symmetrical molecules, are very well suited for this strategy because they naturally exhibit a long-lived singlet state. The conversion of the NMR silent singlet spin state to observable magnetization can be achieved by making use of singlet-triplet level anticrossings. In this study, a low-power radiofrequency pulse sequence is used for this purpose, which allows multiple successive singlet-triplet conversions. The generated magnetization is used to record proton images in a clinical magnetic resonance imaging (MRI) system, after 3min waiting time. Our results may open unprecedented opportunities to use the standard MRI nucleus (1)H for e.g. metabolic imaging in the future.
Copyright © 2016. Published by Elsevier Inc.

Keywords:  Hyperpolarization; Long lived state; PHIP; Parahydrogen; Pulse sequence

Mesh:

Substances:

Year:  2015        PMID: 26754064     DOI: 10.1016/j.jmr.2015.12.006

Source DB:  PubMed          Journal:  J Magn Reson        ISSN: 1090-7807            Impact factor:   2.229


  5 in total

1.  Parahydrogen-Induced Polarization of Diethyl Ether Anesthetic.

Authors:  Nuwandi M Ariyasingha; Baptiste Joalland; Hassan R Younes; Oleg G Salnikov; Nikita V Chukanov; Kirill V Kovtunov; Larisa M Kovtunova; Valerii I Bukhtiyarov; Igor V Koptyug; Juri G Gelovani; Eduard Y Chekmenev
Journal:  Chemistry       Date:  2020-09-17       Impact factor: 5.236

2.  Clinical-Scale Batch-Mode Production of Hyperpolarized Propane Gas for MRI.

Authors:  Oleg G Salnikov; Panayiotis Nikolaou; Nuwandi M Ariyasingha; Kirill V Kovtunov; Igor V Koptyug; Eduard Y Chekmenev
Journal:  Anal Chem       Date:  2019-03-20       Impact factor: 6.986

3.  Using hyperpolarised NMR and DFT to rationalise the unexpected hydrogenation of quinazoline to 3,4-dihydroquinazoline.

Authors:  Josh E Richards; Alexander J J Hooper; Oliver W Bayfield; Martin C R Cockett; Gordon J Dear; A Jonathon Holmes; Richard O John; Ryan E Mewis; Natalie Pridmore; Andy D Roberts; Adrian C Whitwood; Simon B Duckett
Journal:  Chem Commun (Camb)       Date:  2018-09-11       Impact factor: 6.222

4.  Singlet-Contrast Magnetic Resonance Imaging: Unlocking Hyperpolarization with Metabolism*.

Authors:  J Eills; E Cavallari; R Kircher; G Di Matteo; C Carrera; L Dagys; M H Levitt; K L Ivanov; S Aime; F Reineri; K Münnemann; D Budker; G Buntkowsky; S Knecht
Journal:  Angew Chem Int Ed Engl       Date:  2021-02-11       Impact factor: 15.336

Review 5.  Recent advances in the application of parahydrogen in catalysis and biochemistry.

Authors:  Gerd Buntkowsky; Franziska Theiss; Jonas Lins; Yuliya A Miloslavina; Laura Wienands; Alexey Kiryutin; Alexandra Yurkovskaya
Journal:  RSC Adv       Date:  2022-04-26       Impact factor: 4.036

  5 in total

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