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从递归突触强度和神经网络动力学角度看后顶叶皮层和前额叶皮层中不同的静息膜电位

Different resting membrane potentials in posterior parietal cortex and prefrontal cortex in the view of recurrent synaptic strengths and neural network dynamics.

作者信息

Yoo Minsu, Yang Yoon-Sil, Rah Jong-Cheol, Choi Joon Ho

机构信息

Korea Brain Research Institute, Daegu, Republic of Korea.

Daegu Gyeongbuk Institute of Science and Technology, Daegu, Republic of Korea.

出版信息

Front Cell Neurosci. 2023 Jul 13;17:1153970. doi: 10.3389/fncel.2023.1153970. eCollection 2023.

Abstract

In this study, we introduce the importance of elevated membrane potentials (MPs) in the prefrontal cortex (PFC) compared to that in the posterior parietal cortex (PPC), based on new observations of different MP levels in these areas. Through experimental data and spiking neural network modeling, we investigated a possible mechanism of the elevated membrane potential in the PFC and how these physiological differences affect neural network dynamics and cognitive functions in the PPC and PFC. Our findings indicate that NMDA receptors may be a main contributor to the elevated MP in the PFC region and highlight the potential of using a modeling toolkit to investigate the means by which changes in synaptic properties can affect neural dynamics and potentiate desirable cognitive functions through population activities in the corresponding brain regions.

摘要

在本研究中,基于对前额叶皮质(PFC)和顶叶后皮质(PPC)不同膜电位水平的新观察,我们阐述了前额叶皮质中升高的膜电位相较于顶叶后皮质的重要性。通过实验数据和尖峰神经网络建模,我们研究了前额叶皮质中膜电位升高的可能机制,以及这些生理差异如何影响顶叶后皮质和前额叶皮质中的神经网络动力学和认知功能。我们的研究结果表明,NMDA受体可能是前额叶皮质区域膜电位升高的主要促成因素,并突出了使用建模工具包来研究突触特性变化通过相应脑区群体活动影响神经动力学并增强理想认知功能的方式的潜力。

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