Department of Psychiatry and Psychotherapy, Medical University of Vienna, Austria.
Department of Biomedical Imaging and Image-guided Therapy, High Field MR Centre, Medical University of Vienna, Austria.
Neuroimage. 2020 Jan 1;204:116244. doi: 10.1016/j.neuroimage.2019.116244. Epub 2019 Oct 10.
Neural plasticity is a complex process dependent on neurochemical underpinnings. Next to the glutamatergic system which contributes to memory formation via long-term potentiation (LTP) and long-term depression (LTD), the main inhibitory neurotransmitter, GABA is crucially involved in neuroplastic processes. Hence, we investigated changes in glutamate and GABA levels in the brain in healthy participants performing an associative learning paradigm. Twenty healthy participants (10 female, 25 ± 5 years) underwent paired multi-voxel magnetic resonance spectroscopy imaging before and after completing 21 days of a facial associative learning paradigm in a longitudinal study design. Changes of GABA and glutamate were compared to retrieval success in the hippocampus, insula and thalamus. No changes in GABA and glutamate concentration were found after 21 days of associative learning. However, baseline hippocampal GABA levels were significantly correlated with initial retrieval success (p = 0.013, r = 0.690). In contrast to the thalamus and insula (p>0.1), higher baseline GABA levels in the hippocampus were associated with better retrieval performance in an associative learning paradigm. Therefore, our findings support the importance of hippocampal GABA levels in memory formation in the human brain in vivo.
神经可塑性是一个依赖神经化学基础的复杂过程。除了谷氨酸能系统通过长时程增强(LTP)和长时程抑制(LTD)有助于记忆形成外,主要的抑制性神经递质 GABA 也在神经可塑性过程中起着关键作用。因此,我们在一项纵向研究中,在健康参与者完成 21 天面部联想学习范式后,研究了大脑中谷氨酸和 GABA 水平的变化。20 名健康参与者(10 名女性,25±5 岁)在完成 21 天面部联想学习范式前后接受了配对多体素磁共振波谱成像。将 GABA 和谷氨酸的变化与海马体、脑岛和丘脑的检索成功进行了比较。在进行 21 天的联想学习后,GABA 和谷氨酸的浓度没有变化。然而,基线时海马体 GABA 水平与初始检索成功显著相关(p=0.013,r=0.690)。与丘脑和脑岛(p>0.1)不同,海马体中更高的基线 GABA 水平与联想学习范式中的更好检索表现相关。因此,我们的发现支持海马体 GABA 水平在人类大脑内记忆形成中的重要性。