Applications of nuclear magnetic cross‐relaxation spectroscopy to tissues
- 1 February 1991
- journal article
- research article
- Published by Wiley in Magnetic Resonance in Medicine
- Vol. 17 (2), 452-459
- https://doi.org/10.1002/mrm.1910170216
Abstract
Magnetic cross-relaxation in aqueous heterogeneous systems is a long established phenomenon that makes the observable decay constants for the system mixtures of more fundamental relaxation times which characterize the relaxation of the coupled components. By exploiting the magnetic relaxation coupling between the water spins and the immobilized spins in a tissue, the water-proton-signal intensity may be used to map indirectly a frequency response that is directly related to the 1H NMR spectrum of the immobilized components of the tissue. This method is applied to a number of rat tissues to determine whether there are significant differences among tissues that might be exploited in applications of this experiment to diagnostic magnetic imaging. Significant differences are found among nine rat tissues studied, which suggests that the experimental approach may be used to superimpose fundamentally new information, the dynamic character of the usually unobservable immobilized macromolecular components of the tissue, on a magnetic image. © 1991 Academic Press, Inc.Keywords
This publication has 9 references indexed in Scilit:
- Nuclear magnetic cross-relaxation spectroscopyJournal of Magnetic Resonance (1969), 1990
- Direct measurements of longitudinal relaxation and magnetization transfer in heterogeneous systemsJournal of Magnetic Resonance (1969), 1990
- Magnetization transfer contrast (MTC) and tissue water proton relaxation in vivoMagnetic Resonance in Medicine, 1989
- Proton-nuclear spin relaxation and molecular dynamics in the lysozyme-water systemJournal of the American Chemical Society, 1982
- Magnetic cross-relaxation among protons in protein solutionsBiochemistry, 1978
- The measurement of cross-relaxation effects in the proton NMR spin-lattice relaxation of water in biological systems: Hydrated collagen and muscleJournal of Magnetic Resonance (1969), 1978
- Cross relaxation and spin diffusion effects on the proton NMR of biopolymers in H2OFEBS Letters, 1978
- Proton magnetic relaxation and spin diffusion in proteinsJournal of Magnetic Resonance (1969), 1976
- The Principles of Nuclear MagnetismAmerican Journal of Physics, 1961