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通过鬼影相位调制和时间滤波提高动态射频扰相成像中的扰相效率。

Improved spoiling efficiency in dynamic RF-spoiled imaging by ghost phase modulation and temporal filtering.

作者信息

Nielsen Jon-Fredrik, Noll Douglas C

机构信息

Department of Biomedical Engineering, University of Michigan, Ann Arbor, Michigan, USA.

出版信息

Magn Reson Med. 2016 Jun;75(6):2388-93. doi: 10.1002/mrm.25843. Epub 2015 Jul 7.

Abstract

PURPOSE

Radiofrequency-spoiled steady-state sequences offer rapid data acquisition with T1- or T2*-weighting. The spoiler gradients in these sequences must be large enough to suppress ghost artifacts, and are chosen empirically. However, certain factors such as the need to minimize gradient first moments or acoustic noise can limit the spoiler size and, hence, the ability to suppress ghosts. We present an acquisition and preprocessing strategy for improved spoiling efficiency in conventional and echo-shifted dynamic radiofrequency-spoiled 3D imaging.

THEORY AND METHODS

By requiring each time-frame in a dynamic imaging sequence to contain a particular (restricted) number of total radiofrequency shots, the ghost signal can be made to alternate in sign every other frame. The ghost is then suppressed by Fourier transforming along the temporal dimension, and removing the Nyquist frequency in preprocessing (similar to UNFOLD). The method works for both Cartesian and non-Cartesian imaging.

RESULTS

We demonstrate improved ghost suppression with the proposed approach, for both conventional and echo-shifted spoiled gradient echo imaging in stationary phantoms and in vivo. Cartesian echo-shifted spoiled gradient echo imaging produces two ghosts shifted in opposite directions, both of which are suppressed with our method.

CONCLUSION

For a given spoiler gradient area, the proposed approach substantially suppresses the ghost signal in both conventional and echo-shifted dynamic radiofrequency-spoiled imaging. Magn Reson Med 75:2388-2393, 2016. © 2015 Wiley Periodicals, Inc.

摘要

目的

射频扰相稳态序列可实现T1加权或T2*加权的快速数据采集。这些序列中的扰相梯度必须足够大以抑制鬼影伪影,且通常是凭经验选择。然而,某些因素,如需要最小化梯度首矩或声学噪声,可能会限制扰相大小,从而限制抑制鬼影的能力。我们提出一种采集和预处理策略,以提高传统及回波偏移动态射频扰相三维成像中的扰相效率。

理论与方法

通过要求动态成像序列中的每个时间帧包含特定(受限)数量的总射频激发,可使鬼影信号每隔一帧在正负号上交替。然后通过沿时间维度进行傅里叶变换,并在预处理中去除奈奎斯特频率(类似于UNFOLD)来抑制鬼影。该方法适用于笛卡尔成像和非笛卡尔成像。

结果

我们证明了所提出的方法在静止体模和体内的传统及回波偏移扰相梯度回波成像中均能改善鬼影抑制效果。笛卡尔回波偏移扰相梯度回波成像会产生两个向相反方向偏移的鬼影,而我们的方法可同时抑制这两个鬼影。

结论

对于给定的扰相梯度面积,所提出的方法在传统及回波偏移动态射频扰相成像中均能显著抑制鬼影信号。《磁共振医学》75:2388 - 2393, 2016。© 2015威利期刊公司。

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