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A higher dimensional homodyne filter for phase sensitive partial Fourier reconstruction of magnetic resonance imaging

机译:用于磁共振成像的相敏部分傅里叶重构的高维零差滤波器

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The aim of this paper is to introduce procedural steps for extension of the 1D homodyne phase correction for k-space truncation in all gradient encoding directions. Compared to the existing method applied to 2D partial k-space, signal losses introduced by the phase correction filter are observed to be minimal for the modified approach. In addition, the modified form of phase correction retains the inherent property of homodyne filtering for elimination of incidental phase artifacts due to truncation. In parallel imaging, this new form of homodyne filtering is shown to be effective for minimizing the signal losses, when each of the channel k-spaces is truncated along both phase and frequency-encode directions. This is illustrated with 2D partial k-space for flow compensated multichannel susceptibility weighted imaging. Extension of this method to 3D partial k-space shows improved reconstruction of flow information in phase contrast magnetic resonance angiography with reduced blur and enhanced background suppression. (C) 2015 Elsevier Inc. All rights reserved.
机译:本文的目的是介绍在所有梯度编码方向上扩展k维空间截断的一维零差相位校正的程序步骤。与应用于2D部分k空间的现有方法相比,对于改进方法,由相位校正滤波器引入的信号损耗被观察到最小。另外,相位校正的修改形式保留了零差滤波的固有特性,以消除由于截断而引起的偶然相位伪影。在并行成像中,当沿相位和频率编码方向均截断每个信道k空间时,这种新形式的零差滤波可有效减小信号损耗。用用于流量补偿的多通道磁化率加权成像的2D部分k空间对此进行了说明。将该方法扩展到3D部分k空间,可以在相衬磁共振血管造影中改善流信息的重建,同时减少模糊并增强背景抑制。 (C)2015 Elsevier Inc.保留所有权利。

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