Literature DB >> 32697867

A variable resolution approach for improved acquisition of hyperpolarized 13 C metabolic MRI.

Jeremy W Gordon1, Adam W Autry1, Shuyu Tang1,2, Jasmine Y Graham1,2, Robert A Bok1, Xucheng Zhu1,2, Javier E Villanueva-Meyer1, Yan Li1, Michael A Ohilger1, Maria Roselle Abraham3, Duan Xu1,2, Daniel B Vigneron1,2, Peder E Z Larson1,2.   

Abstract

PURPOSE: To ameliorate tradeoffs between a fixed spatial resolution and signal-to-noise ratio (SNR) for hyperpolarized 13 C MRI.
METHODS: In MRI, SNR is proportional to voxel volume but retrospective downsampling or voxel averaging only improves SNR by the square root of voxel size. This can be exploited with a metabolite-selective imaging approach that independently encodes each compound, yielding high-resolution images for the injected substrate and coarser resolution images for downstream metabolites, while maintaining adequate SNR for each. To assess the efficacy of this approach, hyperpolarized [1-13 C]pyruvate data were acquired in healthy Sprague-Dawley rats (n = 4) and in two healthy human subjects.
RESULTS: Compared with a constant resolution acquisition, variable-resolution data sets showed improved detectability of metabolites in pre-clinical renal studies with a 3.5-fold, 8.7-fold, and 6.0-fold increase in SNR for lactate, alanine, and bicarbonate data, respectively. Variable-resolution data sets from healthy human subjects showed cardiac structure and neuro-vasculature in the higher resolution pyruvate images (6.0 × 6.0 mm2 for cardiac and 7.5 × 7.5 mm2 for brain) that would otherwise be missed due to partial-volume effects and illustrates the level of detail that can be achieved with hyperpolarized substrates in a clinical setting.
CONCLUSION: We developed a variable-resolution strategy for hyperpolarized 13 C MRI using metabolite-selective imaging and demonstrated that it mitigates tradeoffs between a fixed spatial resolution and SNR for hyperpolarized substrates, providing both high resolution pyruvate and coarse resolution metabolite data sets in a single exam. This technique shows promise to improve future studies by maximizing metabolite SNR while minimizing partial-volume effects from the injected substrate.
© 2020 International Society for Magnetic Resonance in Medicine.

Entities:  

Keywords:  EPI; MRI; carbon-13; hyperpolarization; pyruvate

Mesh:

Substances:

Year:  2020        PMID: 32697867      PMCID: PMC7719570          DOI: 10.1002/mrm.28421

Source DB:  PubMed          Journal:  Magn Reson Med        ISSN: 0740-3194            Impact factor:   4.668


  49 in total

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Authors:  Charles H Cunningham; Albert P Chen; Michael Lustig; Brian A Hargreaves; Janine Lupo; Duan Xu; John Kurhanewicz; Ralph E Hurd; John M Pauly; Sarah J Nelson; Daniel B Vigneron
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6.  A regional bolus tracking and real-time B1 calibration method for hyperpolarized 13 C MRI.

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  10 in total

1.  Kinetic analysis of multi-resolution hyperpolarized 13 C human brain MRI to study cerebral metabolism.

Authors:  Jasmine Y Hu; Yaewon Kim; Adam W Autry; Mary M Frost; Robert A Bok; Javier E Villanueva-Meyer; Duan Xu; Yan Li; Peder E Z Larson; Daniel B Vigneron; Jeremy W Gordon
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2.  Metabolic MRI with hyperpolarized [1-13C]pyruvate separates benign oligemia from infarcting penumbra in porcine stroke.

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3.  Di-chromatic interpolation of magnetic resonance metabolic images.

Authors:  Nicholas Dwork; Jeremy W Gordon; Shuyu Tang; Daniel O'Connor; Esben Søvsø Szocska Hansen; Christoffer Laustsen; Peder E Z Larson
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4.  Pilot Study of Hyperpolarized 13C Metabolic Imaging in Pediatric Patients with Diffuse Intrinsic Pontine Glioma and Other CNS Cancers.

Authors:  A W Autry; I Park; C Kline; H-Y Chen; J W Gordon; S Raber; C Hoffman; Y Kim; K Okamoto; D B Vigneron; J M Lupo; M Prados; Y Li; D Xu; S Mueller
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5.  Characterization and compensation of f 0 inhomogeneity artifact in spiral hyperpolarized 13 C imaging of the human heart.

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Review 6.  Current human brain applications and challenges of dynamic hyperpolarized carbon-13 labeled pyruvate MR metabolic imaging.

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7.  Initial Experience on Hyperpolarized [1-13C]Pyruvate MRI Multicenter Reproducibility-Are Multicenter Trials Feasible?

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9.  Hyperpolarized 13 C MRI Reveals Large Changes in Pyruvate Metabolism During Digestion in Snakes.

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  10 in total

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