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体内小鼠脑的同步三维磁共振弹性成像

Simultaneous 3D MR elastography of the in vivo mouse brain.

作者信息

Kearney Steven P, Majumdar Shreyan, Royston Thomas J, Klatt Dieter

机构信息

Department of Mechanical and Industrial Engineering, University of Illinois at Chicago, Chicago, IL, United States of America. Argonne National Laboratory, Advanced Photon Source, Argonne, IL, United States of America.

出版信息

Phys Med Biol. 2017 Sep 15;62(19):7682-7693. doi: 10.1088/1361-6560/aa8444.

DOI:10.1088/1361-6560/aa8444
PMID:28777745
Abstract

The feasibility of sample interval modulation (SLIM) magnetic resonance elastography (MRE) for the in vivo mouse brain is assessed, and an alternative SLIM-MRE encoding method is introduced. In SLIM-MRE, the phase accumulation for each motion direction is encoded simultaneously by varying either the start time of the motion encoding gradient (MEG), SLIM-phase constant (SLIM-PC), or the initial phase of the MEG, SLIM-phase varying (SLIM-PV). SLIM-PC provides gradient moment nulling, but the mutual gradient shift necessitates increased echo time (TE). SLIM-PV requires no increased TE, but exhibits non-uniform flow compensation. Comparison was to conventional MRE using six C57BL/6 mice. For SLIM-PC, the Spearman's rank correlation to conventional MRE for the shear storage and loss modulus images were 80% and 76%, respectively, and likewise for SLIM-PV, 73% and 69%, respectively. The results of the Wilcoxon rank sum test showed that there were no statistically significant differences between the spatially averaged shear moduli derived from conventional-MRE, SLIM-PC, and SLIM-PV acquisitions. Both SLIM approaches were comparable to conventional MRE scans with Spearman's rank correlation of 69%-80% and with 3 times reduction in scan time. The SLIM-PC method had the best correlation, and SLIM-PV may be a useful tool in experimental conditions, where both measurement time and T2 relaxation is critical.

摘要

评估了样本间隔调制(SLIM)磁共振弹性成像(MRE)在小鼠活体脑内应用的可行性,并介绍了一种替代的SLIM-MRE编码方法。在SLIM-MRE中,通过改变运动编码梯度(MEG)的起始时间、SLIM相位常数(SLIM-PC)或MEG的初始相位(SLIM相位变化,SLIM-PV),同时对每个运动方向的相位积累进行编码。SLIM-PC可实现梯度矩归零,但相互梯度偏移需要增加回波时间(TE)。SLIM-PV不需要增加TE,但存在不均匀的流动补偿。使用6只C57BL/6小鼠与传统MRE进行比较。对于SLIM-PC,其剪切储能模量和损耗模量图像与传统MRE的Spearman等级相关性分别为80%和76%,SLIM-PV的相应相关性分别为73%和69%。Wilcoxon秩和检验结果表明,传统MRE、SLIM-PC和SLIM-PV采集得到的空间平均剪切模量之间无统计学显著差异。两种SLIM方法与传统MRE扫描具有可比性,Spearman等级相关性为69%-80%,扫描时间减少了3倍。SLIM-PC方法具有最佳相关性,而SLIM-PV在测量时间和T2弛豫都很关键的实验条件下可能是一种有用的工具。

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