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异质狨猴前额叶皮质簇中的模拟动态转变

Simulated dynamical transitions in a heterogeneous marmoset pFC cluster.

作者信息

Pailthorpe Bernard A

机构信息

Brain Dynamics Group, School of Physics, University of Sydney, Sydney, NSW, Australia.

出版信息

Front Comput Neurosci. 2024 May 28;18:1398898. doi: 10.3389/fncom.2024.1398898. eCollection 2024.

Abstract

Network analysis of the marmoset cortical connectivity data indicates a significant 3D cluster in and around the pre-frontal cortex. A multi-node, heterogeneous neural mass model of this six-node cluster was constructed. Its parameters were informed by available experimental and simulation data so that each neural mass oscillated in a characteristic frequency band. Nodes were connected with directed, weighted links derived from the marmoset structural connectivity data. Heterogeneity arose from the different link weights and model parameters for each node. Stimulation of the cluster with an incident pulse train modulated in the standard frequency bands induced a variety of dynamical state transitions that lasted in the range of 5-10 s, suggestive of timescales relevant to short-term memory. A short gamma burst rapidly reset the beta-induced transition. The theta-induced transition state showed a spontaneous, delayed reset to the resting state. An additional, continuous gamma wave stimulus induced a new beating oscillatory state. Longer or repeated gamma bursts were phase-aligned with the beta oscillation, delivering increasing energy input and causing shorter transition times. The relevance of these results to working memory is yet to be established, but they suggest interesting opportunities.

摘要

对狨猴皮质连接数据的网络分析表明,在额叶前皮质及其周围存在一个显著的三维簇。构建了这个六节点簇的多节点、异质神经团模型。其参数由现有的实验和模拟数据提供,以便每个神经团在特定的频带内振荡。节点通过从狨猴结构连接数据中得出的有向加权链接相连。异质性源于每个节点不同的链接权重和模型参数。用在标准频带中调制的入射脉冲序列刺激该簇,会引发持续5 - 10秒的各种动态状态转变,这暗示了与短期记忆相关的时间尺度。一个短的伽马暴迅速重置了由贝塔波引发的转变。由西塔波引发的转变状态显示出向静息状态的自发延迟重置。额外的连续伽马波刺激会诱发一种新的拍频振荡状态。更长或重复的伽马暴与贝塔振荡相位对齐,提供增加的能量输入并导致更短的转变时间。这些结果与工作记忆的相关性尚待确定,但它们暗示了有趣的机会。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3ed1/11165126/ade804035ccf/fncom-18-1398898-g0001.jpg

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