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首页> 外文期刊>NeuroImage >Activation induced changes in GABA: Functional MRS at 7 T with MEGA-sLASER
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Activation induced changes in GABA: Functional MRS at 7 T with MEGA-sLASER

机译:激活诱导GABA的变化:7 T与Mega-Slaser的功能MRS

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摘要

Abstract Functional magnetic resonance spectroscopy (fMRS) has been used to assess the dynamic metabolic responses of the brain to a physiological stimulus non-invasively. However, only limited information on the dynamic functional response of γ-aminobutyric acid (GABA), the primary inhibitory neurotransmitter in the brain, is available. We aimed to measure the activation-induced changes in GABA unambiguously using a spectral editing method, instead of the conventional direct detection techniques used in previous fMRS studies. The Mescher-Garwood-semi-localised by adiabatic selective refocusing (MEGA-sLASER) sequence was developed at 7 T to obtain the time course of GABA concentration without macromolecular contamination. A significant decrease (?12±5%) in the GABA to total creatine ratio (GABA/tCr) was observed in the motor cortex during a period of 10 min of hand-clenching, compared to an initial baseline level (GABA/tCr =0.11±0.02) at rest. An increase in the Glx (glutamate and glutamine) to tCr ratio was also found, which is in agreement with previous findings. In contrast, no significant changes in NAA/tCr and tCr were detected. With consistent and highly efficient editing performance for GABA detection and the advantage of visually identifying GABA resonances in the spectra, MEGA-sLASER is demonstrated to be an effective method for studying of dynamic changes in GABA at 7 T.
机译:摘要功能磁共振光谱(FMRS)已被用于评估大脑对生理刺激的动态代谢响应是非侵入性的。然而,只有有关γ-氨基丁酸(GABA)的动态功能反应的有限信息,可获得大脑中的主要抑制性神经递质。我们旨在使用光谱编辑方法毫不含糊地测量GABA的激活诱导的变化,而不是先前的FMRS研究中使用的传统直接检测技术。由绝热选择性重键(Mega-Slaser)序列的Mescher-Garwood-Semi-Lockized在7℃开发,以获得GABA浓度的时间过程,而无需大分子污染。与初始基线水平相比,在10分钟的手中,在电动机皮层中观察到GABA至总肌酸比(GABA / TCR)中的显着降低(?12±5%)在电动机闭合时,相比(GABA / TCR = 0.11±0.02)静止。还发现了GLX(谷氨酸和谷氨酰胺)对TCR比的增加,这与先前的发现一致。相比之下,未检测到NAA / TCR和TCR的显着变化。对于GABA检测的一致性和高效的编辑性能以及在光谱中可视地识别GABA共振的优点,兆级斜坡被证明是研究GABA在7 T的动态变化的有效方法。

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