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首页> 外文期刊>NeuroImage >Single multi-echo GRE acquisition with short and long echo spacing for simultaneous quantitative mapping of fat fraction, B0 inhomogeneity, and susceptibility
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Single multi-echo GRE acquisition with short and long echo spacing for simultaneous quantitative mapping of fat fraction, B0 inhomogeneity, and susceptibility

机译:具有短期和长回波间距的单个多回波GRE采集,用于同时定量脂肪分数,B0不均匀性和易感性的定量映射

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Multi-echo gradient echo (mGRE) sequences have been widely adapted in clinical and scientific practice for different purposes to their capability of performing Dixon MRI, generating multi-contrast images and extracting multi-parametric maps. This work aims to extend mGRE-based techniques for imaging whole head, where further technical developments are required due to the co-existence of fat and large B0 inhomogeneity in regions such as the skull base and neck. Specifically, bipolar mGRE data were acquired with a single sequence that contains both a short echo-spacing (Delta TE) echo train to capture water-fat and B0 phase shifts (for proton density fat-fraction (FF) and B0 mapping) and a longer Delta TE echo train (and long echo times) to capture subtle susceptibility variations and R2* information. The mGRE images covering the whole head (spatial resolution 1.0 x 1.0 x 2.0 mm(3)) were acquired in 5 min. An automated processing pipeline was implemented to use the FF and B0 maps determined from the short-TE train to compensate for the effects of fat, remove the background phase for whole-head quantitative susceptibility mapping, and reduce the difficulty of spatial phase unwrapping of the long echo-time data. Data from healthy volunteers imaged on a 3 T scanner along with phantom validation are presented. Co-registered quantitative multi-parametric maps (FF, B0 inhomogeneity, R2*, local frequency shift and quantitative susceptibility) and multi-contrast images covering the whole head were successfully generated in processing times of several minutes.
机译:多回声梯度回波(MGRE)序列已广泛适用于临床和科学实践,以便不同的目的,以实现Dixon MRI的能力,产生多对比度图像并提取多参数映射。这项工作旨在扩展基于MGRE的技术,用于成像整个头部,其中需要进一步的技术开发,因为在颅底和颈部等地区的区域中的脂肪和大B0的大的B0不均匀性因此需要进一步的技术开发。具体地,用单个序列获取双极MGRE数据,该序列包含短回波间隔(Delta Te)回波列车以捕获水 - 脂肪和B0相移(用于质子密度脂肪分数(FF)和B0映射)和a较长的Delta TE Echo列车(和长期回声时间)以捕获微妙的敏感性变化和R2 *信息。在5分钟内获得覆盖整个头部的MGRE图像(空间分辨率1.0 x 1.0×2.0mm(3))。实施自动化处理管道以使用从短TE火车确定的FF和B0映射来补偿脂肪的效果,去除全头定量敏感性映射的背景阶段,并减少空间相位展开的难度长期回声时间数据。提出了来自3 T扫描仪上成像的健康志愿者以及幻影验证的数据。共同登记的定量多参数映射(FF,B0不均匀性,R2 *,局部频移和定量敏感性)和覆盖整个头部的多对比度图像在处理时间几分钟的处理时间中成功地产生。

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