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回波平面扩散成像中涡流伪影的特征与校正

Characterization of and correction for eddy current artifacts in echo planar diffusion imaging.

作者信息

Jezzard P, Barnett A S, Pierpaoli C

机构信息

Unit on MRI Physics, Laboratory of Brain and Cognition, NIMH, National Institutes of Health, Bethesda, Maryland, USA.

出版信息

Magn Reson Med. 1998 May;39(5):801-12. doi: 10.1002/mrm.1910390518.

Abstract

Magnetic resonance diffusion imaging is potentially an important tool for the noninvasive characterization of normal and pathological tissue. The technique, however, is prone to a number of artifacts that can severely affect its ability to provide clinically useful information. In this study, the problem of eddy current-induced geometric distortions that occur in diffusion images acquired with echo planar sequences was addressed. These geometric distortions produce artifacts in computed maps of diffusion parameters and are caused by misalignments in the individual diffusion-weighted images that comprise the diffusion data set. A new approach is presented to characterize and calibrate the eddy current effects, enabling the eddy current distortions to be corrected in sets of interleaved (or snapshot) echo planar diffusion images. Correction is achieved by acquiring one-dimensional field maps in the read and phase encode direction for each slice and each diffusion step. The method is then demonstrated through the correction of distortions in diffusion images of the human brain. It is shown that by using the eddy current correction scheme outlined, the eddy current-induced artifacts in the diffusion-weighted images are almost completely eliminated. In addition, there is a significant improvement in the quality of the resulting diffusion tensor maps.

摘要

磁共振扩散成像有可能成为一种用于对正常组织和病变组织进行无创特征描述的重要工具。然而,该技术容易出现多种伪影,这些伪影会严重影响其提供临床有用信息的能力。在本研究中,解决了在采用回波平面序列采集的扩散图像中出现的涡流诱导几何畸变问题。这些几何畸变在扩散参数的计算图中产生伪影,并且是由构成扩散数据集的各个扩散加权图像中的失准所引起的。本文提出了一种新方法来表征和校准涡流效应,从而能够在交错(或快照)回波平面扩散图像集中校正涡流畸变。通过为每个切片和每个扩散步骤在读取和相位编码方向上采集一维场图来实现校正。然后通过校正人脑扩散图像中的畸变来演示该方法。结果表明,通过使用所概述的涡流校正方案,扩散加权图像中由涡流引起的伪影几乎被完全消除。此外,所得扩散张量图的质量有显著提高。

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