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以更少获取更多:用于单次采集同时进行T加权成像、T映射、映射、磁敏感加权成像(SWI)和定量磁敏感图(QSM)的多回波MP2RAGE技术

Extracting more for less: multi-echo MP2RAGE for simultaneous T -weighted imaging, T mapping, mapping, SWI, and QSM from a single acquisition.

作者信息

Sun Hongfu, Cleary Jon O, Glarin Rebecca, Kolbe Scott C, Ordidge Roger J, Moffat Bradford A, Pike G Bruce

机构信息

School of Information Technology and Electrical Engineering, University of Queensland, Brisbane, Queensland, Australia.

Department of Radiology, University of Calgary, Calgary, Alberta, Canada.

出版信息

Magn Reson Med. 2020 Apr;83(4):1178-1191. doi: 10.1002/mrm.27975. Epub 2019 Sep 10.

Abstract

PURPOSE

To demonstrate simultaneous T -weighted imaging, T mapping, mapping, SWI, and QSM from a single multi-echo (ME) MP2RAGE acquisition.

METHODS

A single-echo (SE) MP2RAGE sequence at 7 tesla was extended to ME with 4 bipolar gradient echo readouts. T -weighted images and T maps calculated from individual echoes were combined using sum of squares and averaged, respectively. ME-combined SWI and associated minimum intensity projection images were generated with TE-adjusted homodyne filters. A QSM reconstruction pipeline was used, including a phase-offsets correction and coil combination method to properly combine the phase images from the 32 receiver channels. Measurements of susceptibility, , and T of brain tissue from ME-MP2RAGE were compared with those from standard ME-gradient echo and SE-MP2RAGE.

RESULTS

The ME combined T -weighted, T map, SWI, and minimum intensity projection images showed increased SNRs compared to the SE results. The proposed coil combination method led to QSM results free of phase-singularity artifacts, which were present in the standard adaptive combination method. T -weighted, T , and susceptibility maps from ME-MP2RAGE were comparable to those obtained from SE-MP2RAGE and ME-gradient echo, whereas maps showed increased blurring and reduced SNR. T , , and susceptibility values of brain tissue from ME-MP2RAGE were consistent with those from SE-MP2RAGE and ME-gradient echo.

CONCLUSION

High-resolution structural T weighted imaging, T mapping, mapping, SWI, and QSM can be extracted from a single 8.5-min ME-MP2RAGE acquisition using a customized reconstruction pipeline. This method can be applied to replace separate SE-MP2RAGE and ME-gradient echo acquisitions to significantly shorten total scan time.

摘要

目的

展示从单次多回波(ME)MP2RAGE采集中同时获取T加权成像、T图谱、图谱、磁敏感加权成像(SWI)和定量磁敏感图谱(QSM)。

方法

将7特斯拉的单回波(SE)MP2RAGE序列扩展为具有4个双极梯度回波读出的多回波序列。从各个回波计算得到的T加权图像和T图谱分别使用平方和组合并平均。使用经TE调整的零差滤波器生成ME组合的SWI及相关的最小强度投影图像。采用了一种QSM重建流程,包括相位偏移校正和线圈组合方法,以正确组合来自32个接收通道的相位图像。将ME-MP2RAGE获得的脑组织的磁化率、和T测量值与标准ME梯度回波和SE-MP2RAGE的测量值进行比较。

结果

与SE结果相比,ME组合的T加权、T图谱、SWI和最小强度投影图像显示信噪比增加。所提出的线圈组合方法产生的QSM结果没有标准自适应组合方法中出现的相位奇点伪影。ME-MP2RAGE的T加权、T和磁化率图谱与SE-MP2RAGE和ME梯度回波获得的图谱相当,而图谱显示模糊增加且信噪比降低。ME-MP2RAGE的脑组织的T、和磁化率值与SE-MP2RAGE和ME梯度回波的一致。

结论

使用定制的重建流程,可以从单次8.5分钟的ME-MP2RAGE采集中提取高分辨率结构T加权成像、T图谱、图谱、SWI和QSM。该方法可用于替代单独的SE-MP2RAGE和ME梯度回波采集,以显著缩短总扫描时间。

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