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3T磁共振成像中的伪影:物理背景与减少策略

Artifacts in 3-T MRI: physical background and reduction strategies.

作者信息

Dietrich Olaf, Reiser Maximilian F, Schoenberg Stefan O

机构信息

Department of Clinical Radiology-Grosshadern, Ludwig Maximilian University of Munich, Marchioninistr. 15, 81377 Munich, Germany.

出版信息

Eur J Radiol. 2008 Jan;65(1):29-35. doi: 10.1016/j.ejrad.2007.11.005. Epub 2007 Dec 26.

Abstract

Magnetic resonance imaging (MRI) at a field-strength of 3 T has become more and more frequently used in recent years. In an increasing number of radiological sites, 3-T MRI now starts to play the same role for clinical imaging that was occupied by 1.5-T systems in the past. Because of physical limitations related to the higher field strength and because of protocols transferred from 1.5-T MRI that are not yet fully optimized for 3 T, radiologists and technicians working at these systems are relatively often confronted with image artifacts related to 3-T MRI. The purpose of this review article is to present the most relevant artifacts that arise in 3-T MRI, to provide some physical background on the formation of artifacts, and to suggest strategies to reduce or avoid these artifacts. The discussed artifacts are classified and ordered according to the physical mechanism or property of the MRI system responsible for their occurrence: artifacts caused by B0 inhomogeneity and susceptibility effects, B1 inhomogeneity and wavelength effects, chemical-shift effects, blood flow and magnetohydrodynamics, and artifacts related to SNR.

摘要

近年来,3T场强的磁共振成像(MRI)应用越来越频繁。在越来越多的放射科室,3T MRI如今在临床成像中开始发挥过去1.5T系统所占据的相同作用。由于与更高场强相关的物理限制,以及从1.5T MRI转移过来且尚未完全针对3T进行优化的协议,使用这些系统的放射科医生和技术人员相对经常面临与3T MRI相关的图像伪影。这篇综述文章的目的是介绍3T MRI中出现的最相关伪影,提供一些关于伪影形成的物理背景,并提出减少或避免这些伪影的策略。所讨论的伪影根据导致其出现的MRI系统的物理机制或特性进行分类和排序:由B0不均匀性和磁化率效应、B1不均匀性和波长效应、化学位移效应、血流和磁流体动力学以及与信噪比相关的伪影引起的伪影。

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