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相位对比磁共振成像的广义重建:梯度场畸变效应的分析与校正

Generalized reconstruction of phase contrast MRI: analysis and correction of the effect of gradient field distortions.

作者信息

Markl M, Bammer R, Alley M T, Elkins C J, Draney M T, Barnett A, Moseley M E, Glover G H, Pelc N J

机构信息

Department of Radiology, Stanford University, Stanford, California 94304, USA.

出版信息

Magn Reson Med. 2003 Oct;50(4):791-801. doi: 10.1002/mrm.10582.

Abstract

To characterize gradient field nonuniformity and its effect on velocity encoding in phase contrast (PC) MRI, a generalized model that describes this phenomenon and enables the accurate reconstruction of velocities is presented. In addition to considerable geometric distortions, inhomogeneous gradient fields can introduce deviations from the nominal gradient strength and orientation, and therefore spatially-dependent first gradient moments. Resulting errors in the measured phase shifts used for velocity encoding can therefore cause significant deviations in velocity quantification. The true magnitude and direction of the underlying velocities can be recovered from the phase difference images by a generalized PC velocity reconstruction, which requires the acquisition of full three-directional velocity information. The generalized reconstruction of velocities is applied using a matrix formalism that includes relative gradient field deviations derived from a theoretical model of local gradient field nonuniformity. In addition, an approximate solution for the correction of one-directional velocity encoding is given. Depending on the spatial location of the velocity measurements, errors in velocity magnitude can be as high as 60%, while errors in the velocity encoding direction can be up to 45 degrees. Results of phantom measurements demonstrate that effects of gradient field nonuniformity on PC-MRI can be corrected with the proposed method.

摘要

为了表征梯度场不均匀性及其对相位对比(PC)MRI中速度编码的影响,本文提出了一种描述该现象并能实现速度精确重建的广义模型。除了显著的几何畸变外,不均匀梯度场还会导致与标称梯度强度和方向的偏差,从而产生空间相关的一阶梯度矩。因此,用于速度编码的测量相移中的误差会导致速度量化的显著偏差。通过广义PC速度重建可以从相位差图像中恢复潜在速度的真实大小和方向,这需要获取完整的三维速度信息。使用包含从局部梯度场不均匀性理论模型导出的相对梯度场偏差的矩阵形式来应用速度的广义重建。此外,还给出了单向速度编码校正的近似解。根据速度测量的空间位置,速度大小的误差可能高达60%,而速度编码方向的误差可能高达45度。体模测量结果表明,所提出的方法可以校正梯度场不均匀性对PC-MRI的影响。

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