## Abstract It is shown that highโresolution ^1^H NMR spectra of intact excised tissues and organs can be obtained by rotating the sample slowly about an axis at the magic angle of 54ยฐ44โฒ with the external magnetic field. In this way tissue and cellular damage invoked by standard magic angle spinni
Localized in vivo isotropic-anisotropic correlation 1H NMR spectroscopy using ultraslow magic angle spinning
โ Scribed by Robert A. Wind; Jian Z. Hu; Paul D. Majors
- Publisher
- John Wiley and Sons
- Year
- 2005
- Tongue
- English
- Weight
- 393 KB
- Volume
- 55
- Category
- Article
- ISSN
- 0740-3194
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โฆ Synopsis
Abstract
In a previous work (1), the susceptibility broadening in the ^1^H NMR metabolite spectrum obtained in a live mouse was separated from the isotropic information, which significantly increased the spectral resolution. This was achieved using ultraslow magic angle spinning (MAS) of the animal combined with a modified phaseโcorrected magic angle turning (PHORMAT) pulse sequence. However, PHORMAT cannot be used for spatially selective spectroscopy. This article introduces a modified sequence called localized magic angle turning (LOCMAT) that makes this possible. Proton LOCMAT spectra were obtained from the liver and heart of a live mouse while the animal was spun at a speed of 4 Hz in a 2 Tesla field. It was found that even in this relatively low field, LOCMAT provided isotropic line widths that were a factor of 4โ10 times smaller than those obtained in a stationary animal. Furthermore, the susceptibility broadening of the heart metabolites showed unusual features that are not observed in dead animals. The limitations of LOCMAT and possible ways to improve the technique are discussed. It is concluded that in vivo LOCMAT can significantly enhance the utility of NMR spectroscopy for biomedical research. Magn Reson Med, 2006. Published 2005 WileyโLiss, Inc.
๐ SIMILAR VOLUMES
It is demonstrated that a high-resolution (1)H NMR spectrum of excised rat liver can be obtained using the technique of magic angle turning (MAT) at a sample spinning rate of 1 Hz. A variant of the phase-corrected MAT (PHORMAT) pulse sequence that includes a water suppression segment was developed f