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双自旋回波弥散加权成像结合改良的涡流校正。

Double-spin-echo diffusion weighting with a modified eddy current adjustment.

机构信息

Department of Systems Neuroscience, University Medical Center Hamburg-Eppendorf, 20246 Hamburg, Germany.

出版信息

Magn Reson Imaging. 2010 Apr;28(3):434-40. doi: 10.1016/j.mri.2009.12.004. Epub 2010 Jan 13.

Abstract

Magnetic field inhomogeneities like eddy current-related gradient fields cause geometric distortions in echo-planar imaging (EPI). This in particular affects diffusion-weighted imaging where these distortions vary with the direction of the diffusion weighting and hamper the accurate determination of diffusion parameters. The double-spin-echo preparation often used aims to reduce the cumulative eddy current effect by adjusting the diffusion-weighting gradient pulse durations to the time constant of the dominant eddy current contribution. However, eddy currents with a variety of time constants may be present and cause residual distortions. Here, a modification is proposed where the two bipolar gradient pairs of the preparation are adjusted independently to different time constants. At the expense of a slightly prolonged echo time, residual geometric distortions and correspondingly increased values of the diffusion anisotropy can be reduced as is demonstrated in phantoms and the human brain. Thus, it may help to improve the reliability of diffusion-weighted EPI.

摘要

磁场非均匀性,如涡流相关的梯度场,会在回波平面成像(EPI)中导致几何变形。这尤其会影响扩散加权成像,因为这些变形会随扩散加权的方向而变化,从而妨碍扩散参数的准确确定。经常使用的双自旋回波准备旨在通过将扩散加权梯度脉冲持续时间调整为主要涡流贡献的时间常数来减少累积涡流效应。然而,可能存在具有各种时间常数的涡流,并导致残留变形。在这里,提出了一种修改方法,其中准备的两个双极梯度对被独立调整到不同的时间常数。以稍微延长回波时间为代价,可以减小残留的几何变形和相应增加的扩散各向异性值,如在体模和人脑上所证明的那样。因此,它可能有助于提高扩散加权 EPI 的可靠性。

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