Implications of bulk motion for diffusion‐weighted imaging experiments: Effects, mechanisms, and solutions
- 21 March 2001
- journal article
- review article
- Published by Wiley in Journal of Magnetic Resonance Imaging
- Vol. 13 (4), 486-495
- https://doi.org/10.1002/jmri.1072
Abstract
This review article describes the effect of bulk motion on diffusion‐weighted imaging experiments, and examines methods for correcting the resulting artifacts. The emphasis throughout the article is on two‐dimensional imaging of the brain. The effects of translational and rotational motion on the MR signal are described, and the literature concerning pulsatile brain motion is examined. Methods for ameliorating motion effects are divided into three generic categories. The first is methods that should be intrinsically insensitive to macroscopic motion. These include motion‐compensated diffusion‐weighting schemes, single‐shot EPI, projection reconstruction, and line scanning. Of these, only single‐shot EPI and projection reconstruction methods can obtain high‐quality images without compromising on sensitivity. The second category of methods is those that can be made insensitive to bulk motion. The methods examined here are FLASH and RARE. It is shown that for both sequences motion insensitivity is in general attained only at the cost of a 50% reduction in sensitivity. The final set of methods examined are those that correct for motion, primarily navigator echoes. The properties and limitations of the navigator echo approach are presented, as are those of methods which attempt to correct the acquired data by minimizing image artifacts. The review concludes with a short summary in which the current status of diffusion imaging in the presence of bulk motion is examined. J. Magn. Reson. Imaging 2001;13:486–495.Keywords
This publication has 72 references indexed in Scilit:
- Analysis and comparison of motion‐correction techniques in diffusion‐weighted imagingJournal of Magnetic Resonance Imaging, 1996
- A Modified sub‐second fast‐STEAM sequence incorporating bipolar gradients for in vivo diffusion imagingMagnetic Resonance in Medicine, 1996
- Use of a projection reconstruction method to decrease motion sensitivity in diffusion-weighted MRIMagnetic Resonance in Medicine, 1993
- Diffusion imaging of the human brain in vivo using high‐speed STEAM MRIMagnetic Resonance in Medicine, 1992
- Echo‐planar imaging of diffusion and perfusionMagnetic Resonance in Medicine, 1991
- Rapid NMR imaging of molecular self-diffusion using a modified CE-FAST sequenceJournal of Magnetic Resonance, 1989
- FLASH imaging. Rapid NMR imaging using low flip-angle pulsesJournal of Magnetic Resonance (1969), 1986
- The limitations of NMR recalled-echo imaging techniquesJournal of Magnetic Resonance (1969), 1985
- The spatial mapping of translational diffusion coefficients by the NMR imaging techniquePhysics in Medicine & Biology, 1985
- NMR Even Echo Rephasing in Slow Laminar FlowJournal of Computer Assisted Tomography, 1984