Blood Flow Imaging by Cine Magnetic Resonance
- 1 September 1986
- journal article
- research article
- Published by Wolters Kluwer Health in Journal of Computer Assisted Tomography
- Vol. 10 (5) , 715-722
- https://doi.org/10.1097/00004728-198609000-00001
Abstract
A technique for measurig blood flow by whole body nuclear magnetic resonance is described. This method uses imaging gradient profiles that combine even echo rephasing with a field echo sequence to overcome the problem of signal loss from flowing blood. The flow velocity component in any desired direction may be measured b appropriate gradient profile modifications, producing velocity dependent phase shifts that can be displayed by phase mapping. The sequence allows for fast repetition so that flow information may be acquired rapidly from many points in the cardiac cycle and has been used in this mode to observe and measure blood flow in the heart chambers and great vessels. Flow measurements in the femoral artery were also carried out using the same technique; these were compared with similar measurements obtained byDoppler ultrasound. The technique can readily be applied using standard imaging equipment and should prove useful in the clinical assessment of many diseases of the cardiovascular system.This publication has 7 references indexed in Scilit:
- Verification and evaluation of internal flow and motion. True magnetic resonance imaging by the phase gradient modulation method.Radiology, 1985
- Pulsatile blood velocity in human arteries displayed by magnetic resonance imaging.Radiology, 1984
- Measurement of Flow with NMR Imaging Using a Gradient Pulse and Phase Difference TechniqueJournal of Computer Assisted Tomography, 1984
- NMR Even Echo Rephasing in Slow Laminar FlowJournal of Computer Assisted Tomography, 1984
- Magnetic resonance signal intensity patterns obtained from continuous and pulsatile flow models.Radiology, 1984
- Nuclear Magnetic Resonance Blood Flow Measurements in the Human BrainScience, 1983
- NMR rheotomography: Feasibility and clinical potentialMedical Physics, 1982