Literature DB >> 26119950

Robust hyperpolarized (13)C metabolic imaging with selective non-excitation of pyruvate (SNEP).

Way Cherng Chen1, Xing Qi Teo1, Man Ying Lee1, George K Radda1, Philip Lee1.   

Abstract

In vivo metabolic imaging using hyperpolarized [1-(13)C]pyruvate provides localized biochemical information and is particularly useful in detecting early disease changes, as well as monitoring disease progression and treatment response. However, a major limitation of hyperpolarized magnetization is its unrecoverable decay, due not only to T1 relaxation but also to radio-frequency (RF) excitation. RF excitation schemes used in metabolic imaging must therefore be able to utilize available hyperpolarized magnetization efficiently and robustly for the optimal detection of substrate and metabolite activities. In this work, a novel RF excitation scheme called selective non-excitation of pyruvate (SNEP) is presented. This excitation scheme involves the use of a spectral selective RF pulse to specifically exclude the excitation of [1-(13)C]pyruvate, while uniformly exciting the key metabolites of interest (namely [1-(13)C]lactate and [1-(13)C]alanine) and [1-(13)C]pyruvate-hydrate. By eliminating the loss of hyperpolarized [1-(13)C]pyruvate magnetization due to RF excitation, the signal from downstream metabolite pools is increased together with enhanced dynamic range. Simulation results, together with phantom measurements and in vivo experiments, demonstrated the improvement in signal-to-noise ratio (SNR) and the extension of the lifetime of the [1-(13)C]lactate and [1-(13)C]alanine pools when compared with conventional non-spectral selective (NS) excitation. SNEP has also been shown to perform comparably well with multi-band (MB) excitation, yet SNEP possesses distinct advantages, including ease of implementation, less stringent demands on gradient performance, increased robustness to frequency drifts and B0 inhomogeneity as well as easier quantification involving the use of [1-(13)C]pyruvate-hydrate as a proxy for the actual [1-(13)C] pyruvate signal. SNEP is therefore a promising alternative for robust hyperpolarized [1-(13)C]pyruvate metabolic imaging with high fidelity.
Copyright © 2015 John Wiley & Sons, Ltd.

Entities:  

Keywords:  MRSI; RF excitation scheme; [1-13C]pyruvate; dynamic; hyperpolarized 13C; metabolic imaging; spectral selective

Mesh:

Substances:

Year:  2015        PMID: 26119950     DOI: 10.1002/nbm.3346

Source DB:  PubMed          Journal:  NMR Biomed        ISSN: 0952-3480            Impact factor:   4.044


  7 in total

1.  Multiband spectral-spatial RF excitation for hyperpolarized [2-13 C]dihydroxyacetone 13 C-MR metabolism studies.

Authors:  Irene Marco-Rius; Peng Cao; Cornelius von Morze; Matthew Merritt; Karlos X Moreno; Gene-Yuan Chang; Michael A Ohliger; David Pearce; John Kurhanewicz; Peder E Z Larson; Daniel B Vigneron
Journal:  Magn Reson Med       Date:  2016-03-28       Impact factor: 4.668

2.  Mapping of intracellular pH in the in vivo rodent heart using hyperpolarized [1-13C]pyruvate.

Authors:  Angus Z Lau; Jack J Miller; Damian J Tyler
Journal:  Magn Reson Med       Date:  2016-05-13       Impact factor: 4.668

3.  Fine-tuning the efficiency of para-hydrogen-induced hyperpolarization by rational N-heterocyclic carbene design.

Authors:  Peter J Rayner; Philip Norcott; Kate M Appleby; Wissam Iali; Richard O John; Sam J Hart; Adrian C Whitwood; Simon B Duckett
Journal:  Nat Commun       Date:  2018-10-12       Impact factor: 14.919

Review 4.  Hyperpolarized 13C MRI: Path to Clinical Translation in Oncology.

Authors:  John Kurhanewicz; Daniel B Vigneron; Jan Henrik Ardenkjaer-Larsen; James A Bankson; Kevin Brindle; Charles H Cunningham; Ferdia A Gallagher; Kayvan R Keshari; Andreas Kjaer; Christoffer Laustsen; David A Mankoff; Matthew E Merritt; Sarah J Nelson; John M Pauly; Philips Lee; Sabrina Ronen; Damian J Tyler; Sunder S Rajan; Daniel M Spielman; Lawrence Wald; Xiaoliang Zhang; Craig R Malloy; Rahim Rizi
Journal:  Neoplasia       Date:  2018-11-23       Impact factor: 5.715

Review 5.  Acquisition strategies for spatially resolved magnetic resonance detection of hyperpolarized nuclei.

Authors:  Geoffrey J Topping; Christian Hundshammer; Luca Nagel; Martin Grashei; Maximilian Aigner; Jason G Skinner; Rolf F Schulte; Franz Schilling
Journal:  MAGMA       Date:  2019-12-06       Impact factor: 2.310

6.  Simultaneous assessment of cardiac metabolism and perfusion using copolarized [1-13 C]pyruvate and 13 C-urea.

Authors:  Angus Z Lau; Jack J Miller; Matthew D Robson; Damian J Tyler
Journal:  Magn Reson Med       Date:  2016-01-07       Impact factor: 4.668

7.  Relayed hyperpolarization from para-hydrogen improves the NMR detectability of alcohols.

Authors:  Peter J Rayner; Ben J Tickner; Wissam Iali; Marianna Fekete; Alastair D Robinson; Simon B Duckett
Journal:  Chem Sci       Date:  2019-07-01       Impact factor: 9.825

  7 in total

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