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模拟疾病的磁共振成像伪影:如何识别与消除它们。

MR imaging artifacts that simulate disease: how to recognize and eliminate them.

作者信息

Arena L, Morehouse H T, Safir J

机构信息

Department of Radiology, New York University, NY, USA.

出版信息

Radiographics. 1995 Nov;15(6):1373-94. doi: 10.1148/radiographics.15.6.8577963.

Abstract

Occasionally, artifacts may simulate pathologic conditions on magnetic resonance (MR) images. Motion artifacts especially affect images of the chest and abdomen. There are a number of techniques for reducing motion artifacts, including respiratory and cardiac gating, k-space phase reordering, gradient moment nulling, even echo rephasing, and physical restraints. Aliasing occurs when the field of view does not include all of the anatomic structures present in the imaged section. Aliasing artifacts can be eliminated by increasing the field of view, oversampling, and use of saturation pulses or surface coils. Truncation artifacts represent the difference between the original and the reconstructed image and can be reduced with data extrapolation algorithms or image filtering. Chemical shift artifacts and magnetic susceptibility artifacts are due to a local deformity of the magnetic field, resulting in spatial misregistration. Chemical shift artifacts are more severe in images acquired with a narrow-bandwidth technique; magnetic susceptibility artifacts are more severe in images acquired with a long echo time. Pitfalls in the interpretation of MR images can be avoided by becoming familiar with the appearances and causes of common MR imaging artifacts.

摘要

偶尔,伪影可能会在磁共振(MR)图像上模拟病理状况。运动伪影尤其会影响胸部和腹部的图像。有多种减少运动伪影的技术,包括呼吸门控和心脏门控、k空间相位重排、梯度矩归零、偶数回波重聚以及物理限制。当视野不包括成像切片中存在的所有解剖结构时,就会出现混叠。可以通过增加视野、过采样以及使用饱和脉冲或表面线圈来消除混叠伪影。截断伪影代表原始图像和重建图像之间的差异,可以通过数据外推算法或图像滤波来减少。化学位移伪影和磁化率伪影是由于磁场的局部畸变导致空间配准错误。在采用窄带技术采集的图像中化学位移伪影更严重;在采用长回波时间采集的图像中磁化率伪影更严重。通过熟悉常见MR成像伪影的表现和成因,可以避免MR图像解读中的陷阱。

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