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Signal-to-noise ratio enhancement of intermolecular double-quantum coherence MR spectroscopy in inhomogeneous fields with phased array coils on a 3 tesla whole-body scanner

✍ Scribed by Yanqin Lin; Zhong Chen; Jianhui Zhong


Publisher
John Wiley and Sons
Year
2011
Tongue
English
Weight
258 KB
Volume
33
Category
Article
ISSN
1053-1807

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✦ Synopsis


Abstract

Purpose

To improve signal‐to‐noise ratio (SNR) of intermolecular double‐quantum coherence (iDQC) MRS on a 3 Tesla (T) whole‐body scanner.

Materials and Methods

A 32‐channel phased array coil was used to acquire iDQC signal of a MRS phantom in the presence of large field inhomogeneity. The obtained individual spectra from the array elements were combined together in the time domain using a multichannel nonparametric singular value decomposition algorithm. The results were compared quantitatively with those acquired with a circularly polarized (CP) head coil.

Results

The achieved gain in SNR ranges from 1.63 to 2.10 relative to the CP coil, mainly depending on the relative position between the surface of the phased array coil and the voxel of acquisition.

Conclusion

SNR enhancement of iDQC MRS in inhomogeneous fields on a 3T whole‐body scanner is feasible with phased array coils. This can facilitate iDQC applications of high‐resolution in vivo spectroscopy in the presence of field inhomogeneity for potential disease diagnosis in humans. J. Magn. Reson. Imaging 2011;33:698–703. © 2011 Wiley‐Liss, Inc.


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## Abstract Signals from intermolecular double‐quantum coherences (iDQCs) have been shown to be insensitive to macroscopic field inhomogeneities and thus enable acquisition of high‐ resolution MR spectroscopy in the presence of large inhomogeneous fields. In this paper, localized iDQC ^1^H spectros