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用于高效T2加权水脂成像的快速自旋回波三回波狄克逊(fTED)技术。

Fast spin-echo triple-echo dixon (fTED) technique for efficient T2-weighted water and fat imaging.

作者信息

Ma Jingfei, Son Jong Bum, Zhou Yuxiang, Le-Petross Huong, Choi Haesun

机构信息

Department of Imaging Physics, University of Texas M.D. Anderson Cancer Center, Houston, Texas, USA.

Department of Electrical and Computer Engineering, Texas A&M University, College Station, Texas, USA.

出版信息

Magn Reson Med. 2007 Jul;58(1):103-109. doi: 10.1002/mrm.21268.

Abstract

Previously published fast spin-echo (FSE) implementations of a Dixon method for water and fat separation all require multiple scans and thus a relatively long scan time. Further, the minimum echo spacing (esp), a time critical for FSE image quality and scan efficiency, often needs to be increased in order to bring about the required phase shift between the water and fat signals. This work proposes and implements a novel FSE triple-echo Dixon (fTED) technique that can address these limitations. In the new technique, three raw images are acquired in a single FSE scan by replacing each frequency-encoding gradient in a conventional FSE with three consecutive gradients of alternating polarity. The timing of the three gradients is adjusted by selecting an appropriate receiver bandwidth (RBW) so that the water and fat signals for the three corresponding echoes have a relative phase shift of -180 degrees , 0 degrees , and 180 degrees , respectively. A fully automated postprocessing algorithm is then used to generate separate water-only and fat-only images for each slice. The technique was implemented with and without parallel imaging. We demonstrate that the new fTED technique enables both uniform water/fat separation and fast scanning with uncompromised scan parameters, including applications such as T(2)-weighted separate water and fat imaging of the abdomen during breath-holding.

摘要

先前发表的用于水脂分离的Dixon方法的快速自旋回波(FSE)实现方式都需要多次扫描,因此扫描时间相对较长。此外,最小回波间隔(esp)对FSE图像质量和扫描效率至关重要,为了在水和脂肪信号之间产生所需的相移,通常需要增加该间隔。这项工作提出并实现了一种新颖的FSE三回波Dixon(fTED)技术,该技术可以解决这些限制。在新技术中,通过用三个交替极性的连续梯度替换传统FSE中的每个频率编码梯度,在单次FSE扫描中采集三幅原始图像。通过选择合适的接收带宽(RBW)来调整三个梯度的时序,使得三个相应回波的水和脂肪信号分别具有-180度、0度和180度的相对相移。然后使用全自动后处理算法为每个切片生成单独的纯水图像和纯脂肪图像。该技术在有无并行成像的情况下都得到了实现。我们证明,新的fTED技术能够实现均匀的水脂分离和快速扫描,同时不影响扫描参数,包括屏气期间腹部的T(2)加权纯水和纯脂肪成像等应用。

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