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场强对磁共振图像的影响:同一受试者在0.5T、1.0T和1.5T下的比较。

Effect of field strength on MR images: comparison of the same subject at 0.5, 1.0, and 1.5 T.

作者信息

Maubon A J, Ferru J M, Berger V, Soulage M C, DeGraef M, Aubas P, Coupeau P, Dumont E, Rouanet J P

机构信息

Department of Radiology, Centre Medico-chirurgical Beausoleil, Montpellier, France.

出版信息

Radiographics. 1999 Jul-Aug;19(4):1057-67. doi: 10.1148/radiographics.19.4.g99jl281057.

Abstract

To assess the effect of field strength on magnetic resonance (MR) images, the same healthy subject was imaged at three field strengths: 0.5, 1.0, and 1.5 T. Imaging was performed with three similarly equipped MR imagers of the same generation and from the same manufacturer. The same imaging sequences were used with identical parameters and without repetition time correction for field strength. Imaging was performed in four anatomic locations: the brain, lumbar spine, knee, and abdomen. Quantitative image analysis involved calculation of signal-to-noise ratio, contrast-to-noise ratio, and relative contrast; qualitative image analysis was performed by four readers blinded to field strength. The results of all of the examinations were considered to be of diagnostic value. In general, signal-to-noise ratio and contrast-to-noise ratio were lowest at 0.5 T and highest at 1.5 T; relative contrast was not related to field strength. At qualitative analysis, images obtained at 1.0 and 1.5 T were superior to images obtained at 0.5 T; qualitative differences were less important in locations where there is motion or high magnetic susceptibility differences between tissues (e.g., the spine and abdomen). However, excellent image quality was obtained with all three field strengths.

摘要

为评估场强对磁共振(MR)图像的影响,对同一健康受试者在三种场强下进行成像:0.5T、1.0T和1.5T。成像使用了同一代且来自同一制造商的三台配备相似的MR成像仪。使用相同的成像序列,参数相同且未针对场强进行重复时间校正。成像在四个解剖部位进行:脑、腰椎、膝关节和腹部。定量图像分析包括计算信噪比、对比噪声比和相对对比度;定性图像分析由四名对场强不知情的阅片者进行。所有检查结果均被认为具有诊断价值。一般来说,信噪比和对比噪声比在0.5T时最低,在1.5T时最高;相对对比度与场强无关。在定性分析中,1.0T和1.5T获得的图像优于0.5T获得的图像;在存在组织间运动或高磁化率差异的部位(如脊柱和腹部),定性差异不太重要。然而,三种场强下均获得了优异的图像质量。

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