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时间要精准?神经元回路中尖峰时间依赖型可塑性、大脑节律性和神经胶质细胞相互作用的概述。

Timing to be precise? An overview of spike timing-dependent plasticity, brain rhythmicity, and glial cells interplay within neuronal circuits.

机构信息

Laboratory of Cellular Neuroscience and Plasticity, Department of Physiology, Anatomy and Cell Biology, Universidad Pablo de Olavide, ES-41013, Seville, Spain.

Department of Biosciences and Nutrition and Department of Women's and Children's Health, Karolinska Institutet, 171 77, Stockholm, Sweden.

出版信息

Mol Psychiatry. 2023 Jun;28(6):2177-2188. doi: 10.1038/s41380-023-02027-w. Epub 2023 Mar 29.

Abstract

In the mammalian brain information processing and storage rely on the complex coding and decoding events performed by neuronal networks. These actions are based on the computational ability of neurons and their functional engagement in neuronal assemblies where precise timing of action potential firing is crucial. Neuronal circuits manage a myriad of spatially and temporally overlapping inputs to compute specific outputs that are proposed to underly memory traces formation, sensory perception, and cognitive behaviors. Spike-timing-dependent plasticity (STDP) and electrical brain rhythms are suggested to underlie such functions while the physiological evidence of assembly structures and mechanisms driving both processes continues to be scarce. Here, we review foundational and current evidence on timing precision and cooperative neuronal electrical activity driving STDP and brain rhythms, their interactions, and the emerging role of glial cells in such processes. We also provide an overview of their cognitive correlates and discuss current limitations and controversies, future perspectives on experimental approaches, and their application in humans.

摘要

在哺乳动物的大脑中,信息处理和存储依赖于神经元网络进行的复杂编码和解码事件。这些活动基于神经元的计算能力及其在神经元集合中的功能参与,其中动作电位发射的精确时间至关重要。神经元电路管理着大量空间和时间上重叠的输入,以计算特定的输出,这些输出被认为是记忆痕迹形成、感觉感知和认知行为的基础。据推测,尖峰时间依赖性可塑性(STDP)和脑电节律是这些功能的基础,而驱动这两个过程的集合结构和机制的生理证据仍然很少。在这里,我们回顾了关于驱动 STDP 和脑节律的时间精度和协同神经元电活动的基础和当前证据,及其相互作用,以及胶质细胞在这些过程中的新作用。我们还概述了它们的认知相关性,并讨论了当前的局限性和争议、实验方法的未来展望以及它们在人类中的应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7929/10611582/196f064f939c/41380_2023_2027_Fig1_HTML.jpg

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