揭示谷氨酸动态:人类短期记忆学习在额叶和顶叶-枕叶皮层的认知需求:功能性磁共振研究。

Q3 Medicine
Hossein Mohammadi, Shahriyar Jamshidi, Hassan Khajehpour, Iman Adibi, Abbas Rahimiforoushani, Shaghayegh Karimi, Nasim Dadashi Serej, Nader Riyahi Alam
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引用次数: 0

摘要

背景:获取新知识需要大脑突触水平的改变。谷氨酸是一种关键的神经递质,在这些过程中起着关键作用,特别是在学习和记忆形成中。尽管先前的研究已经探索了谷氨酸在认知功能中的作用,但对其在记忆任务中的实时动态的全面理解仍然是难以捉摸的。目的:利用功能磁共振波谱(fMRS)研究脑皮层背外侧和顶枕区记忆任务中谷氨酸的调节。材料与方法:本实验以14名健康右撇子(女性5名,平均年龄30.64±4.49岁)为研究对象,将fMRS采集与改良的Sternberg言语工作记忆任务同时进行。应用组织校正时,采用LCModel定量测定DLPFC和顶枕体素的谷氨酸/总肌酸(Glu/tCr)比值。结果:任务期间Glu/tCr调制显著升高,且随记忆负荷的增加,DLPFC区和顶枕区分别升高19.9% (p =0.018)和33% (p =0.046)。结论:我们开创性的fMRS研究对s期记忆(STM)和学习过程中的大脑功能产生了开创性的见解。这项研究为研究健康和紊乱大脑的代谢功能提供了有价值的方法进步。基于这些发现,认知需求与谷氨酸水平直接相关,强调了认知处理的神经化学基础。此外,所获得的结果可能会挑战传统的左半球为中心的语言工作记忆模型,从而导致大脑半球对认知功能的深层视觉贡献。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Unveiling Glutamate Dynamics: Cognitive Demands in Human Short-Term Memory Learning Across Frontal and Parieto-Occipital Cortex: A Functional MRS Study.

Background: Acquiring new knowledge necessitates alterations at the synaptic level within the brain. Glutamate, a pivotal neurotransmitter, plays a critical role in these processes, particularly in learning and memory formation. Although previous research has explored glutamate's involvement in cognitive functions, a comprehensive understanding of its real-time dynamics remains elusive during memory tasks.

Objective: This study aimed to investigate glutamate modulation during memory tasks in the right Dorsolateral Prefrontal Cortex (DLPFC) and parieto-occipital regions using functional Magnetic Resonance Spectroscopy (fMRS).

Material and methods: This experimental research applied fMRS acquisition concurrently with a modified Sternberg's verbal working memory task for fourteen healthy right-handed participants (5 females, mean age=30.64±4.49). The glutamate/total-creatine (Glu/tCr) ratio was quantified by LCModel in the DLPFC and parieto-occipital voxels while applying the tissue corrections.

Results: The significantly higher Glu/tCr modulation was observed during the task with a trend of increased modulation with memory load in both the DLPFC (19.9% higher, P-value=0.018) and parieto-occipital (33% higher, P-value=0.046) regions compared to the rest.

Conclusion: Our pioneering fMRS study has yielded groundbreaking insights into brain functions during S-term Memory (STM) and learning. This research provides valuable methodological advancements for investigating the metabolic functions of both healthy and disordered brains. Based on the findings, cognitive demands directly correlate with glutamate levels, highlighting the neurochemical underpinnings of cognitive processing. Additionally, the obtained results potentially challenge the traditional left-hemisphere-centric model of verbal working memory, leading to the deep vision of hemispheric contributions to cognitive functions.

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来源期刊
Journal of Biomedical Physics and Engineering
Journal of Biomedical Physics and Engineering Medicine-Radiology, Nuclear Medicine and Imaging
CiteScore
2.90
自引率
0.00%
发文量
64
审稿时长
10 weeks
期刊介绍: The Journal of Biomedical Physics and Engineering (JBPE) is a bimonthly peer-reviewed English-language journal that publishes high-quality basic sciences and clinical research (experimental or theoretical) broadly concerned with the relationship of physics to medicine and engineering.
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