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大角度多采集平衡稳态自由进动实现同时脂肪抑制和带宽减少。

Simultaneous fat suppression and band reduction with large-angle multiple-acquisition balanced steady-state free precession.

机构信息

Department of Electrical and Computer Engineering, Brigham Young University, Provo, UT, USA.

出版信息

Magn Reson Med. 2012 Apr;67(4):1004-12. doi: 10.1002/mrm.23076. Epub 2011 Oct 28.

Abstract

Balanced steady-state free precession (bSSFP) MRI is a rapid and signal-to-noise ratio-efficient imaging method, but suffers from characteristic bands of signal loss in regions of large field inhomogeneity. Several methods have been developed to reduce the severity of these banding artifacts, typically involving the acquisition of multiple bSSFP datasets (and the accompanying increase in scan time). Fat suppression with bSSFP is also challenging; most existing methods require an additional increase in scan time, and some are incompatible with bSSFP band-reduction techniques. This work was motivated by the need for both robust fat suppression and band reduction in the presence of field inhomogeneity when using bSSFP for flow-independent peripheral angiography. The large flip angles used in this application to improve vessel conspicuity and contrast lead to specific absorption rate considerations, longer repetition times, and increased severity of banding artifacts. In this work, a novel method that simultaneously suppresses fat and reduces bSSFP banding artifact with the acquisition of only two phase-cycled bSSFP datasets is presented. A weighted sum of the two bSSFP acquisitions is taken on a voxel-by-voxel basis, effectively synthesizing an off-resonance profile at each voxel that puts fat in the stop band while keeping water in the pass band. The technique exploits the near-sinusoidal shape of the bSSFP off-resonance spectrum for many tissues at large (>50°) flip angles.

摘要

平衡稳态自由进动(bSSFP)MRI 是一种快速且信噪比效率高的成像方法,但在大磁场不均匀区域会出现特征性的信号丢失带。已经开发了几种方法来减轻这些带伪影的严重程度,通常涉及采集多个 bSSFP 数据集(并相应增加扫描时间)。使用 bSSFP 进行与流动无关的外周血管造影时,抑制脂肪的效果也具有挑战性;大多数现有方法需要额外增加扫描时间,有些方法与 bSSFP 带减少技术不兼容。这项工作的动机是在使用 bSSFP 进行与流动无关的外周血管造影时,需要在存在磁场不均匀性的情况下同时实现稳健的脂肪抑制和带减少。在这种应用中,为了提高血管的显著性和对比度,使用了大的翻转角,这导致了特定吸收率的考虑、更长的重复时间和带伪影的严重程度增加。在这项工作中,提出了一种新的方法,该方法仅通过采集两个相控 bSSFP 数据集,同时抑制脂肪并减少 bSSFP 带伪影。对每个体素的两个 bSSFP 采集进行加权和,有效地在每个体素处合成一个离频轮廓,使脂肪处于阻带,而水处于通带。该技术利用了在大翻转角 (>50°) 下许多组织的 bSSFP 离频光谱的近正弦形状。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cd29/3306491/19790527045d/nihms303051f1.jpg

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