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在4.0 T磁场下利用回波时间平均(1)H磁共振波谱对脑内甘氨酸进行活体检测。

In vivo detection of brain glycine with echo-time-averaged (1)H magnetic resonance spectroscopy at 4.0 T.

作者信息

Prescot Andrew P, de B Frederick Blaise, Wang Liqun, Brown John, Jensen J Eric, Kaufman Marc J, Renshaw Perry F

机构信息

Brain Imaging Center, McLean Hospital, Belmont, Massachusetts 02478, USA.

出版信息

Magn Reson Med. 2006 Mar;55(3):681-6. doi: 10.1002/mrm.20807.

Abstract

A single-voxel proton magnetic resonance spectroscopy ((1)H-MRS) method is described that enables the in vivo measurement of endogenous brain glycine (Gly) levels in human subjects. At 4.0 T, TE-averaging (1)H-MRS dramatically attenuates the overlapping myo-inositol (mI) resonances at 3.52 ppm, permitting a more reliable measure of the Gly singlet peak. This methodology initially is described and tested in phantoms. The phantom data infers that the 3.55-ppm peak predominantly is Gly with a smaller contribution from mI. The composite resonance thus is differentiated from pure Gly and mI and is labeled Gly*. The mI contribution was calculated as <2% of the total Gly* signal for a 1:1 mI/Gly mixture. The technique subsequently was used to acquire TE-averaged (1)H-MRS data from the occipital cortex of healthy control subjects. The resultant spectra closely resembled experimental phantom data. LC-model analysis provided a means for quantifying TE-averaged (1)H-MRS spectra and a mean test-retest variability measure of 15% was established for brain Gly* levels in studies of six healthy subjects.

摘要

本文描述了一种单体素质子磁共振波谱((1)H-MRS)方法,该方法能够在人体受试者体内测量内源性脑甘氨酸(Gly)水平。在4.0 T时,采用TE平均(1)H-MRS可显著减弱3.52 ppm处重叠的肌醇(mI)共振峰,从而更可靠地测量Gly单峰。该方法首先在模型中进行了描述和测试。模型数据推断,3.55 ppm处的峰主要为Gly,mI的贡献较小。因此,该复合共振峰与纯Gly和mI区分开来,并标记为Gly*。对于1:1的mI/Gly混合物,mI的贡献计算为总Gly信号的<2%。随后,该技术被用于从健康对照受试者的枕叶皮质获取TE平均(1)H-MRS数据。所得光谱与实验模型数据非常相似。LC模型分析为量化TE平均(1)H-MRS光谱提供了一种方法,在对六名健康受试者的研究中,脑Gly水平的平均重测变异度为15%。

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