Introduces the fundamentals of spin relaxation in magnetic resonance, covering spin-lattice and spin-spin relaxation, and rotational motion in liquids.
Covers the principles and applications of magnetic resonance imaging, including NMR spectroscopy, multi-dimensional imaging, and image contrast mechanisms.
Introduces spatial information into magnetic resonance imaging, covering static, RF, and gradient fields for spatial encoding and slice-selection techniques.
Explores chemical exchange phenomena in magnetic resonance, covering symmetrical and unsymmetrical exchange, line-broadening effects, and distinct regimes.