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谷氨酸和乳酸的增加在生理激活中普遍存在吗?在 7Tesla 下人类大脑运动激活过程中的 1H 功能磁共振波谱研究。

Are glutamate and lactate increases ubiquitous to physiological activation? A (1)H functional MR spectroscopy study during motor activation in human brain at 7Tesla.

机构信息

Laboratory of Functional and Metabolic Imaging, Ecole Polytechnique Federale de Lausanne, Station 6, 1015 Lausanne, Switzerland.

Department of Radiology, University Hospitals of Lausanne Rue du Bugnon 21, 1011 Lausanne, Switzerland.

出版信息

Neuroimage. 2014 Jun;93 Pt 1:138-45. doi: 10.1016/j.neuroimage.2014.02.016. Epub 2014 Feb 18.

Abstract

Recent studies at high field (7Tesla) have reported small metabolite changes, in particular lactate and glutamate (below 0.3μmol/g) during visual stimulation. These studies have been limited to the visual cortex because of its high energy metabolism and good magnetic resonance spectroscopy (MRS) sensitivity using surface coil. The aim of this study was to extend functional MRS (fMRS) to investigate for the first time the metabolite changes during motor activation at 7T. Small but sustained increases in lactate (0.17μmol/g±0.05μmol/g, p<0.001) and glutamate (0.17μmol/g±0.09μmol/g, p<0.005) were detected during motor activation followed by a return to the baseline after the end of activation. The present study demonstrates that increases in lactate and glutamate during motor stimulation are small, but similar to those observed during visual stimulation. From the observed glutamate and lactate increase, we inferred that these metabolite changes may be a general manifestation of the increased neuronal activity. In addition, we propose that the measured metabolite concentration increases imply an increase in ΔCMRO2 that is transiently below that of ΔCMRGlc during the first 1 to 2min of the stimulation.

摘要

最近在高场(7Tesla)进行的研究报告了在视觉刺激过程中出现的小代谢物变化,特别是乳酸盐和谷氨酸盐(低于 0.3μmol/g)。由于其高能量代谢和使用表面线圈的良好磁共振波谱(MRS)灵敏度,这些研究仅限于视觉皮层。本研究的目的是扩展功能磁共振波谱(fMRS),首次研究在 7T 下运动激活过程中的代谢物变化。在运动激活期间检测到乳酸盐(0.17μmol/g±0.05μmol/g,p<0.001)和谷氨酸盐(0.17μmol/g±0.09μmol/g,p<0.005)的小但持续增加,随后在激活结束后恢复到基线。本研究表明,运动刺激期间乳酸盐和谷氨酸盐的增加虽然较小,但与视觉刺激期间观察到的增加相似。从观察到的谷氨酸盐和乳酸盐增加推断,这些代谢物变化可能是神经元活动增加的一般表现。此外,我们提出测量到的代谢物浓度增加意味着在刺激的最初 1 到 2 分钟内,ΔCMRO2 的增加暂时低于 ΔCMRGlc。

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