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在水信号获取过程中的水抑制:具有水参考和并发功能 MRI 的高速磁共振波谱成像。

On the acquisition of the water signal during water suppression: High-speed MR spectroscopic imaging with water referencing and concurrent functional MRI.

机构信息

Department of Neurology, University of New Mexico, Albuquerque, New, Mexico, USA.

Department of Physics and Astronomy, University of New Mexico, Albuquerque, New, Mexico, USA.

出版信息

NMR Biomed. 2021 May;34(5):e4261. doi: 10.1002/nbm.4261. Epub 2020 Jan 30.

Abstract

This study evaluated the utility of concurrent water signal acquisition as part of the water suppression in MR spectroscopic imaging (MRSI), to allow simultaneous water referencing for metabolite quantification, and to concurrently acquire functional MRI (fMRI) data. We integrated a spatial-spectral binomial water excitation RF pulse and a short spatial-spectral echo-planar readout into the water suppression module of 2D and 3D proton-echo-planar-spectroscopic-imaging (PEPSI) with a voxel size as small as 4 x 4 x 6 mm . Metabolite quantification in reference to tissue water was validated in healthy controls for different prelocalization methods (spin-echo, PRESS and semi-LASER) and the clinical feasibility of a 3-minute 3D semi-Laser PEPSI scan (TR/TE: 1250/32 ms) with water referencing in patients with brain tumors was demonstrated. Spectral quality, SNR, Cramer-Rao-lower-bounds and water suppression efficiency were comparable with conventional PEPSI. Metabolite concentration values in reference to tissue water, using custom LCModel-based spectral fitting with relaxation correction, were in the range of previous studies and independent of the prelocalization method used. Next, we added a phase-encoding undersampled echo-volumar imaging (EVI) module during water suppression to concurrently acquire metabolite maps with water referencing and fMRI data during task execution and resting state in healthy controls. Integration of multimodal signal acquisition prolongated minimum TR by less than 50 ms on average. Visual and motor activation in concurrent fMRI/MRSI (TR: 1250-1500 ms, voxel size: 4 x 4 x 6 mm ) was readily detectable in single-task blocks with percent signal change comparable with conventional fMRI. Resting-state connectivity in sensory and motor networks was detectable in 4 minutes. This hybrid water suppression approach for multimodal imaging has the potential to significantly reduce scan time and extend neuroscience research and clinical applications through concurrent quantitative MRSI and fMRI acquisitions.

摘要

这项研究评估了在磁共振波谱成像(MRSI)中同时采集水信号作为水抑制的一部分的效用,以允许对代谢物定量进行同时的水参考,并同时采集功能磁共振成像(fMRI)数据。我们将空间-谱二项式水激发 RF 脉冲和短的空间-谱回波平面读出集成到二维和三维质子回波平面波谱成像(PEPSI)的水抑制模块中,体素大小小至 4 x 4 x 6 毫米。对于不同的预定位方法(自旋回波、PRESS 和半 LASER),我们在健康对照组中验证了参考组织水的代谢物定量,并展示了在脑肿瘤患者中进行 3 分钟 3D 半 LASER PEPSI 扫描(TR/TE:1250/32 ms)的临床可行性,该扫描具有水参考和参考组织水的代谢物浓度值,使用基于 LCModel 的光谱拟合和弛豫校正的定制方法,与以前的研究相似,与所使用的预定位方法无关。接下来,我们在水抑制期间添加相位编码欠采样回波容积成像(EVI)模块,以在任务执行期间和健康对照组的静息状态下同时采集具有水参考的代谢物图和 fMRI 数据。多模态信号采集的集成平均将最小 TR 延长了不到 50 毫秒。在具有与传统 fMRI 可比的信号变化百分比的单任务块中,可轻松检测到并发 fMRI/MRSI(TR:1250-1500 ms,体素大小:4 x 4 x 6 毫米)中的视觉和运动激活。在 4 分钟内可检测到感觉和运动网络中的静息状态连通性。这种用于多模态成像的混合水抑制方法有可能通过同时进行定量 MRSI 和 fMRI 采集来显著减少扫描时间,并扩展神经科学研究和临床应用。

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