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用于在体脑快速局部二维相关光谱分析的非均匀加权采样

Non-uniformly weighted sampling for faster localized two-dimensional correlated spectroscopy of the brain in vivo.

作者信息

Verma Gaurav, Chawla Sanjeev, Nagarajan Rajakumar, Iqbal Zohaib, Albert Thomas M, Poptani Harish

机构信息

Radiology, B6 Blockley Hall, 423 Guardian Drive, Philadelphia, PA 19104, United States.

Radiological Sciences, David Geffen School of Medicine, University of California, Los Angeles, CA 90095, United States.

出版信息

J Magn Reson. 2017 Apr;277:104-112. doi: 10.1016/j.jmr.2017.02.012. Epub 2017 Feb 22.

Abstract

Two-dimensional localized correlated spectroscopy (2D L-COSY) offers greater spectral dispersion than conventional one-dimensional (1D) MRS techniques, yet long acquisition times and limited post-processing support have slowed its clinical adoption. Improving acquisition efficiency and developing versatile post-processing techniques can bolster the clinical viability of 2D MRS. The purpose of this study was to implement a non-uniformly weighted sampling (NUWS) scheme for faster acquisition of 2D-MRS. A NUWS 2D L-COSY sequence was developed for 7T whole-body MRI. A phantom containing metabolites commonly observed in the brain at physiological concentrations was scanned ten times with both the NUWS scheme of 12:48 duration and a 17:04 constant eight-average sequence using a 32-channel head coil. 2D L-COSY spectra were also acquired from the occipital lobe of four healthy volunteers using both the proposed NUWS and the conventional uniformly-averaged L-COSY sequence. The NUWS 2D L-COSY sequence facilitated 25% shorter acquisition time while maintaining comparable SNR in humans (+0.3%) and phantom studies (+6.0%) compared to uniform averaging. NUWS schemes successfully demonstrated improved efficiency of L-COSY, by facilitating a reduction in scan time without affecting signal quality.

摘要

二维局部相关光谱法(2D L-COSY)比传统的一维(1D)磁共振波谱技术具有更高的光谱分散性,但采集时间长和后处理支持有限减缓了其在临床上的应用。提高采集效率和开发通用的后处理技术可以增强二维磁共振波谱的临床可行性。本研究的目的是实施一种非均匀加权采样(NUWS)方案,以更快地采集二维磁共振波谱。为7T全身MRI开发了一种NUWS 2D L-COSY序列。使用32通道头部线圈,对一个含有生理浓度下大脑中常见代谢物的体模进行扫描,分别采用时长为12:48的NUWS方案和17:04的恒定八次平均序列扫描十次。还分别使用所提出的NUWS和传统的均匀平均L-COSY序列,从四名健康志愿者的枕叶采集二维L-COSY光谱。与均匀平均相比,NUWS 2D L-COSY序列在人体(+0.3%)和体模研究(+6.0%)中采集时间缩短了25%,同时保持了相当的信噪比。NUWS方案通过减少扫描时间而不影响信号质量,成功地证明了L-COSY效率的提高。

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