NMR rheotomography: Feasibility and clinical potential
- 1 March 1982
- journal article
- research article
- Published by Wiley in Medical Physics
- Vol. 9 (2) , 188-193
- https://doi.org/10.1118/1.595158
Abstract
An investigation was undertaken of the effect of flow on NMR images. The new technique of flow analysis examined here was termed NMR rheotomography. Images were acquired through use of a spin-echo technique. They were of doped water passing through a glass U-tube, simulating a small vein, which fitted into the magnetic field gradient and radiofrequency coils of an NMR imaging apparatus. For the case of the inlet arm of the U-tube, the flow images displayed an intensity distribution which compared favorably to a simple physical model based on laminar flow. The intensity distribution observed for the outlet arm was explained through consideration of the perturbation to flow introduced by the U-bend. The NMR spin-echo image can be modified by flow in a predictable manner. Display of the velocity profile is apparently possible. Through use of a U-tube some separation can be demonstrated within a single image of the twin factors, proton incursion into the image slice and proton dephasing, which generally combine to modify the flow image intensity. Discrimination between different modes of flow may be possible by NMR CT [computed tomography]. The clinical potential suggested by the results is discussed; NMR rheotomography may prove to be particularly useful for the noninvasive diagnosis of structurally-originating cardiovascular defects.This publication has 8 references indexed in Scilit:
- Gated Sodium-23 Nuclear Magnetic Resonance Images of an Isolated Perfused Working Rat HeartScience, 1981
- Tests for DNA and chromosomal damage induced by nuclear magnetic resonance imaging.Radiology, 1980
- Tomography of hydrogen with nuclear magnetic resonance.Radiology, 1980
- In vivo imaging of the rat anatomy with nuclear magnetic resonance.Radiology, 1980
- Nuclear Magnetic Resonance (NMR) Tomography of the BrainJournal of Computer Assisted Tomography, 1980
- The propagation of turbulence produced by a stenosisJournal of Biomechanics, 1980
- RF magnetic field penetration, phase shift and power dissipation in biological tissue: implications for NMR imagingPhysics in Medicine & Biology, 1978
- Principles of computer assisted tomography (CAT) in radiographic and radioisotopic imagingPhysics in Medicine & Biology, 1976