The purpose of this study was to acquire a localized 2D (two-dimensional) 1 H correlation spectrum, in a volume of interest reasonably small, and within an experiment time compatible with clinical applications. A modified PRESS technique has been used. The last 180ยฐpulse of the PRESS sequence has be
3D Localized 2D NMR Spectroscopy on an MRI Scanner
โ Scribed by L.N. Ryner; J.A. Sorenson; M.A. Thomas
- Publisher
- Elsevier Science
- Year
- 1995
- Tongue
- English
- Weight
- 955 KB
- Volume
- 107
- Category
- Article
- ISSN
- 1064-1866
No coin nor oath required. For personal study only.
โฆ Synopsis
Three-dimensionally localized versions of several two-dimensional NMR sequences have been implemented on a 1.5 T whole-body MRI/MRS scanner. In addition to the localization of voxels, the slice-selective RF pulses were also used for refocusing/transfer of various coherences in the 2D NMR sequences. Initial phantom and in vivo human studies are presented here. The sequences were localized versions of 2D J-resolved, 2D zero-quantum, 2D double-quantum, zero-quantum-filtered COSY and SECSY, and double-quantum-filtered COSY and SECSY. Two-dimensional plots for the J-resolved and multiple-quantum sequences are presented for a phantom containing an aqueous solution of 10 mM alanine. Sensitivity of different multiple-quantum-coherence orders to B0 inhomogeneity is discussed. Localized double-quantum-filtered COSY of a phantom containing physiological concentrations of several metabolites also is presented to demonstrate the feasibility of performing this technique within time limits reasonable for human comfort. The first-reported 2D J-resolved 1H in vivo MR spectrum localized in three dimensions in presented here, acquired predominantly from the cerebral white matter of a healthy volunteer and demonstrating the use of localized 2D NMR techniques in vivo.
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