PubMed · 11025518
Gradient preemphasis calibration in diffusion-weighted echo-planar imaging.
Abstract
This article describes a method which enables fast and objective pulse-sequence-specific preemphasis calibration, using standard pulse sequences and system hardware. The method is based on a k-space measurement technique, and has been applied to single-shot, diffusion-weighted, spin-echo, echo-planar imaging (DW-SE-EPI), which is particularly sensitive to eddy-current-induced image distortions. The efficiency of the technique was demonstrated not only by the reduction of eddy-current fields to a negligible level using full preemphasis compensation, but also by the fact that adjustment of the slow time-base alone sufficed for the practical elimination of image distortions in the DW-SE-EPI images and the subsequent diffusion tensor maps (in a phantom and a human brain). By seeking to eliminate directly the effect of eddy-current-induced phase shifts during the EPI data collection, the method is free of the complications and restrictions associated with other eddy-current correction techniques for DW-SE-EPI (such as acquisition of additional calibration scans, intense postprocessing, extensive pulse-sequence modifications), making their use redundant.
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N G Papadakis, K M Martin, J D Pickard, L D Hall, T A Carpenter, C L Huang. 2000. Gradient preemphasis calibration in diffusion-weighted echo-planar imaging.. https://doi.org/10.1002/1522-2594(200010)44%3A4%3C616%3A%3Aaid-mrm16%3E3.0.co%3B2-t
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