AI Article Synopsis

  • Hyperpolarized metabolic imaging shows promise for improving diagnosis and management of diseases like heart disease by providing detailed insights into myocardial metabolism at high resolution.
  • A new spectral-spatial radiofrequency pulse technique was developed, allowing for effective imaging using a 7 Tesla MRI, which managed to capture metabolic changes in rodents under different dietary states.
  • The imaging approach achieved impressive spatial and temporal resolutions, revealing significant variations in metabolic activity among different rodent groups, thus highlighting its potential for advancing preclinical cardiovascular research.

Article Abstract

Purpose: Hyperpolarized metabolic imaging has the potential to revolutionize the diagnosis and management of diseases where metabolism is dysregulated, such as heart disease. We investigated the feasibility of imaging rodent myocardial metabolism at high resolution at 7 T.

Methods: We present here a fly-back spectral-spatial radiofrequency pulse that sidestepped maximum gradient strength requirements and enabled high resolution metabolic imaging of the rodent myocardium. A 3D echo-planar imaging readout followed, with centric ordered z-phase encoding. The cardiac gated sequence was used to image metabolism in rodents whose metabolic state had been manipulated by being fasted, fed, or fed and given the pyruvate dehydrogenase kinase inhibitor dichloroacetate.

Results: We imaged hyperpolarized metabolites with a spatial resolution of 2×2×3.8 mm(3) and a temporal resolution of 1.8 s in the rat heart at 7 T. Significant differences in myocardial pyruvate dehydrogenase flux were observed between the three groups of animals, concomitant with the known biochemistry.

Conclusion: The proposed sequence was able to image in vivo metabolism with excellent spatial resolution in the rat heart. The field of view enabled the simultaneous multi-organ acquisition of metabolic information from the rat, which is of great utility for preclinical research in cardiovascular disease. Magnetic Resonance in Medicine published by Wiley Periodicals, Inc. on behalf of International Society for Magnetic Resonance.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC4556070PMC
http://dx.doi.org/10.1002/mrm.25730DOI Listing

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