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在3T磁场下用于探索人脑中可交换质子的非水激发磁共振波谱技术。

Non-water-excitation MR spectroscopy techniques to explore exchanging protons in human brain at 3 T.

作者信息

Dziadosz Martyna, Bogner Wolfgang, Kreis Roland

机构信息

Departments of Radiology and Biomedical Research, University of Bern, Bern, Switzerland.

Graduate School for Cellular and Biomedical Sciences, University of Bern, Bern, Switzerland.

出版信息

Magn Reson Med. 2020 Nov;84(5):2352-2363. doi: 10.1002/mrm.28322. Epub 2020 Jun 30.

Abstract

PURPOSE

To develop localization sequences for in vivo MR spectroscopy (MRS) on clinical scanners of 3 T to record spectra that are not influenced by magnetization transfer from water.

METHODS

Image-selected in vivo spectroscopy (ISIS) localization and chemical-shift-selective excitation (termed I-CSE) was combined in two ways: first, full ISIS localization plus a frequency-selective spin-echo and second, two-dimensional (2D) ISIS plus a frequency-selective excitation and slice-selective refocusing. The techniques were evaluated at 3 T in phantoms and human subjects in comparison to standard techniques with water presaturation or metabolite-cycling. ISIS included gradient-modulated offset-independent adiabatic (GOIA)-type adiabatic inversion pulses; echo times were 8-10 ms.

RESULTS

The novel 2D and 3D I-CSE methods yield upfield spectra that are comparable to those from standard MRS, except for shorter echo times and a limited frequency range. On the downfield/high-frequency side, they yield much more signal for exchangeable protons when compared to MRS with water presaturation or metabolite-cycling and longer echo times.

CONCLUSION

Novel non-water-excitation MRS sequences offer substantial benefits for the detection of metabolite signals that are otherwise suppressed by saturation transfer from water. Avoiding water saturation and using very short echo times allows direct observation of faster exchanging moieties than was previously possible at 3 T and additionally makes the methods less susceptible to fast T relaxation.

摘要

目的

开发用于3T临床扫描仪上的体内磁共振波谱(MRS)定位序列,以记录不受水的磁化传递影响的波谱。

方法

图像选择体内波谱法(ISIS)定位和化学位移选择激发(称为I-CSE)以两种方式结合:第一,完整的ISIS定位加上频率选择自旋回波;第二,二维(2D)ISIS加上频率选择激发和切片选择重聚焦。与采用水预饱和或代谢物循环的标准技术相比,在3T条件下对体模和人体受试者进行了这些技术的评估。ISIS包括梯度调制的与偏移无关的绝热(GOIA)型绝热反转脉冲;回波时间为8 - 10毫秒。

结果

新型的二维和三维I-CSE方法产生的上场波谱与标准MRS的波谱相当,只是回波时间较短且频率范围有限。在下场/高频侧,与采用水预饱和或代谢物循环且回波时间较长的MRS相比,它们在可交换质子方面产生的信号要多得多。

结论

新型非水激发MRS序列为检测否则会被水的饱和传递抑制的代谢物信号带来了显著益处。避免水饱和并使用非常短的回波时间,使得能够直接观察到比3T条件下以前可能的情况更快交换的部分,并且还使这些方法对快速T弛豫的敏感性降低。

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