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关于使用水模图像校准和校正磁共振扩散张量成像中涡流诱导伪影的研究

On the use of water phantom images to calibrate and correct eddy current induced artefacts in MR diffusion tensor imaging.

作者信息

Bastin M E, Armitage P A

机构信息

Department of Medical Physics and Medical Engineering, University of Edinburgh, Western General Hospital, Crewe Road, EH4 2XU UK, Edinburgh, Scotland, United Kingdom.

出版信息

Magn Reson Imaging. 2000 Jul;18(6):681-7. doi: 10.1016/s0730-725x(00)00158-2.

Abstract

The accurate determination of absolute measures of diffusion anisotropy in vivo using single-shot, echo-planar imaging techniques requires the acquisition of a set of high signal-to-noise ratio, diffusion-weighted images that are free from eddy current induced image distortions. Such geometric distortions can be characterized and corrected in brain imaging data using magnification (M), translation (T), and shear (S) distortion parameters derived from separate water phantom calibration experiments. Here we examine the practicalities of using separate phantom calibration data to correct high b-value diffusion tensor imaging data by investigating the stability of these distortion parameters, and hence the eddy currents, with time. It is found that M, T, and S vary only slowly with time (i.e., on the order of weeks), so that calibration scans need not be performed after every patient examination. This not only minimises the scan time required to collect the calibration data, but also the computational time needed to characterize these eddy current induced distortions. Examples of how measurements of diffusion anisotropy are improved using this post-processing scheme are also presented.

摘要

使用单次激发回波平面成像技术在体内准确测定扩散各向异性的绝对测量值,需要采集一组高信噪比、无涡流引起图像畸变的扩散加权图像。这种几何畸变可以在脑成像数据中,使用从单独的水体模校准实验得出的放大率(M)、平移(T)和切变(S)畸变参数来表征和校正。在此,我们通过研究这些畸变参数以及涡流随时间的稳定性,来检验使用单独的体模校准数据校正高b值扩散张量成像数据的实用性。研究发现,M、T和S随时间变化缓慢(即几周的量级),因此无需在每次患者检查后都进行校准扫描。这不仅将采集校准数据所需的扫描时间减至最少,还减少了表征这些涡流引起畸变所需的计算时间。文中还给出了使用这种后处理方案如何改善扩散各向异性测量的示例。

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