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扩散加权回波平面成像中涡流诱导的主磁场(Bo)偏移校正

Correction for eddy current induced Bo shifts in diffusion-weighted echo-planar imaging.

作者信息

Calamante F, Porter D A, Gadian D G, Connelly A

机构信息

Radiology and Physics Unit, Institute of Child Health, University College London Medical School, England.

出版信息

Magn Reson Med. 1999 Jan;41(1):95-102. doi: 10.1002/(sici)1522-2594(199901)41:1<95::aid-mrm14>3.0.co;2-t.

Abstract

The importance of diffusion-weighted MRI in the assessment of acute stroke is well-recognized, and quantitative maps of the apparent diffusion coefficient (ADC) are now widely used. Echoplanar imaging provides a robust method of acquiring diffusion-weighted images free of motion artifact. However, initial experience with clinical MRI systems indicates that calculation of artifact-free ADC maps from a series of echo-planar diffusion-weighted images is not necessarily straight-forward. One of the problems is that frequency shifts resulting from eddy currents can cause misregistration of base diffusion-weighted images. In this study, an on-line correction method that overcomes this problem is described, and phantom and human images that demonstrate the validity of the technique are presented. The method uses a non-phase-encoded reference scan to correct the phase of each echo in the echo train, and can provide ADC maps that are free of misregistration artifacts, without the need for off-line postprocessing.

摘要

扩散加权磁共振成像(MRI)在急性脑卒中评估中的重要性已得到广泛认可,表观扩散系数(ADC)的定量图谱目前也得到了广泛应用。回波平面成像提供了一种获取无运动伪影的扩散加权图像的可靠方法。然而,临床MRI系统的初步经验表明,从一系列回波平面扩散加权图像计算无伪影的ADC图谱并非一定简单直接。其中一个问题是,涡流导致的频率偏移会引起基础扩散加权图像的配准错误。在本研究中,描述了一种克服此问题的在线校正方法,并展示了证明该技术有效性的体模和人体图像。该方法使用非相位编码的参考扫描来校正回波链中每个回波的相位,并且无需离线后处理即可提供无配准伪影的ADC图谱。

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