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基于化学位移的真实水脂图像:改良自旋回波磁共振图像的区域相位校正

Chemical shift-based true water and fat images: regional phase correction of modified spin-echo MR images.

作者信息

Borrello J A, Chenevert T L, Meyer C R, Aisen A M, Glazer G M

出版信息

Radiology. 1987 Aug;164(2):531-7. doi: 10.1148/radiology.164.2.3602397.

Abstract

The process of separating water and fat signal in magnetic resonance images with the Dixon pulse sequence is hindered by phase errors in the water-fat opposed image. These errors arise from static field inhomogeneities, varying magnetic susceptibilities of different body tissues, and other causes. Phase correction performed with data from phantom imaging can compensate for static field inhomogeneities but not for the other effects. A regional phase-correction algorithm is presented that removes non-chemical-shift phase effects and produces true water and fat images. The technique has been applied with good results to 21 patients and healthy volunteers. The images include ones of the abdomen, knees, hips, spine, and head. This method of regional phase correction is an efficacious way of producing separate water and fat images with the Dixon pulse sequence.

摘要

利用狄克逊脉冲序列在磁共振图像中分离水和脂肪信号的过程会受到水脂反相位图像中的相位误差的阻碍。这些误差源于静磁场不均匀性、不同身体组织的磁敏感性变化以及其他原因。使用体模成像数据进行的相位校正可以补偿静磁场不均匀性,但无法补偿其他影响。本文提出了一种区域相位校正算法,该算法可消除非化学位移相位效应并生成真实的水和脂肪图像。该技术已应用于21例患者和健康志愿者,并取得了良好效果。图像包括腹部、膝盖、臀部、脊柱和头部的图像。这种区域相位校正方法是利用狄克逊脉冲序列生成单独的水和脂肪图像的有效方法。

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