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提高高场 EPI 的 B(0)场图估计

Improved B(0) field map estimation for high field EPI.

机构信息

IBBT-Visionlab, University of Antwerp, 2610 Wilrijk, Belgium.

出版信息

Magn Reson Imaging. 2010 Apr;28(3):441-50. doi: 10.1016/j.mri.2009.12.020. Epub 2010 Feb 4.

Abstract

Echo planar imaging (EPI) is an ultrafast magnetic resonance imaging (MRI) technique that allows one to acquire a 2D image in about 100 ms. Unfortunately, the standard EPI images suffer from substantial geometric distortions, mainly originating from susceptibility differences in adjacent tissues. To reduce EPI distortions, correction methods based on a field map, which is a map of the off-resonance frequencies, have been developed. In this work, a nonlinear least squares estimator is used to optimize the estimation of the field map of the B(0) field. The model of the EPI and reference data includes parameters for the phase evolution, the complex magnitude, the relaxation of the MRI signal and the EPI-specific phase difference between odd and even echoes, and from these parameters, additional corrections might be computed. The reference data required to estimate the field map can be acquired with a modified EPI-sequence. The proposed method is tested on simulated as well as experimental data and proves to be significantly more robust against noise, compared to the previously suggested method.

摘要

平面回波成像(EPI)是一种超快速磁共振成像(MRI)技术,可在大约 100 毫秒内获取二维图像。不幸的是,标准的 EPI 图像存在严重的几何失真,主要源于相邻组织的磁化率差异。为了减少 EPI 失真,已经开发了基于磁场图的校正方法,该磁场图是离共振频率的映射。在这项工作中,使用非线性最小二乘估计器来优化 B(0)场的磁场图估计。EPI 和参考数据的模型包括相位演化、复数幅度、MRI 信号的弛豫以及奇数和偶数回波之间的 EPI 特定相位差的参数,并且可以从这些参数中计算出其他校正。用于估计磁场图的参考数据可以使用修改后的 EPI 序列获得。所提出的方法在模拟和实验数据上进行了测试,与之前提出的方法相比,它对噪声的鲁棒性显著提高。

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