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在 9.4T 场强下比较四种 31P 单体磁共振波谱序列在人脑的应用

Comparison of four 31P single-voxel MRS sequences in the human brain at 9.4 T.

机构信息

High-Field MR Center, Max Planck Institute for Biological Cybernetics, Tübingen, Germany.

IMPRS for Cognitive and Systems Neuroscience, University of Tübingen, Tübingen, Germany.

出版信息

Magn Reson Med. 2021 Jun;85(6):3010-3026. doi: 10.1002/mrm.28658. Epub 2021 Jan 11.

Abstract

PURPOSE

In this study, different single-voxel localization sequences were implemented and systematically compared for the first time for phosphorous MRS ( P-MRS) in the human brain at 9.4 T.

METHODS

Two multishot sequences, image-selected in vivo spectroscopy (ISIS) and a conventional slice-selective excitation combined with localization by adiabatic selective refocusing (semiLASER) variant of the spin-echo full intensity-acquired localized spectroscopy (SPECIAL-semiLASER), and two single-shot sequences, semiLASER and stimulated echo acquisition mode (STEAM), were implemented and optimized for P-MRS in the human brain at 9.4 T. Pulses and coil setup were optimized, localization accuracy was tested in phantom experiments, and absolute SNR of the sequences was compared in vivo. The SNR per unit time (SNR/t) was derived and compared for all four sequences and verified experimentally for ISIS in two different voxel sizes (3 × 3 × 3 cm , 5 × 5 × 5 cm , 10-minute measurement time). Metabolite signals obtained with ISIS were quantified. The possible spectral quality in vivo acquired in clinically feasible time (3:30 minutes, 3 × 3 × 3 cm ) was explored for two different coil setups.

RESULTS

All evaluated sequences performed with good localization accuracy in phantom experiments and provided well-resolved spectra in vivo. However, ISIS has the lowest chemical shift displacement error, the best localization accuracy, the highest SNR/t for most metabolites, provides metabolite concentrations comparable to literature values, and is the only one of the sequences that allows for the detection of the whole P spectrum, including β-adenosine triphosphate, with the used setup. The SNR/t of STEAM is comparable to the SNR/t of ISIS. The semiLASER and SPECIAL-semiLASER sequences provide good results for metabolites with long T .

CONCLUSION

At 9.4 T, high-quality single-voxel localized P-MRS can be performed in the human brain with different localization methods, each with inherent characteristics suitable for different research issues.

摘要

目的

本研究首次在 9.4T 人体脑部磁共振磷谱(P-MRS)中,实现并系统比较不同的单体素定位序列。

方法

本研究实施了两种多射序列,即基于体素选择的体内光谱(ISIS)和传统的切片选择激发与基于绝热选择性重聚焦的局部光谱(SPECIAL-semiLASER)相结合的半激光(semiLASER)变体,以及两种单射序列,即半激光(semiLASER)和激发回波采集模式(STEAM),并对其进行了优化,以在 9.4T 人体脑部进行 P-MRS。优化了脉冲和线圈设置,在体模实验中测试了定位准确性,并比较了体内序列的绝对信噪比(SNR)。推导并比较了所有四个序列的单位时间信噪比(SNR/t),并在两种不同的体素大小(3×3×3cm、5×5×5cm、10 分钟测量时间)的 ISIS 中进行了实验验证。对 ISIS 获得的代谢物信号进行了定量分析。对于两种不同的线圈设置,在临床可行的时间(3:30 分钟,3×3×3cm)内探索了体内可能获得的光谱质量。

结果

所有评估的序列在体模实验中均具有良好的定位准确性,并在体内提供了分辨率良好的光谱。然而,ISIS 具有最低的化学位移位移误差、最佳的定位准确性、大多数代谢物的最高 SNR/t、提供与文献值相当的代谢物浓度,并且是唯一一种能够在使用的设置下检测整个 P 谱,包括β-三磷酸腺苷的序列。STEAM 的 SNR/t 与 ISIS 的 SNR/t 相当。半激光(semiLASER)和 SPECIAL-semiLASER 序列对 T 较长的代谢物提供了良好的结果。

结论

在 9.4T 下,不同的定位方法可以在人体脑部进行高质量的单体素局部 P-MRS,每种方法都具有适合不同研究问题的固有特征。

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