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Functional Connectivity Driven by External Stimuli in a Network of Hierarchically Organized Neural Modules

机译:由分层组织的神经模块网络中的外部刺激驱动的功能连接

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Complex neural modules with embedded neural development and synaptic plasticity features have been connected to form a hierarchical recurrent circuit. Virtual electrodes have been used to record a "neural" generated signal, called electrochipogram EChG, from each module. The EChG are processed by frequency domain methods to determine the modifications in functional connectivity by assessing quadratic phase coupling. The experimental paradigm is aimed to describe what happened prior to, at the beginning, towards the end, and after repeating an external input at fixed frequency. The results are discussed by comparing with the same signal processing methods applied to a human study.
机译:具有嵌入式神经发育和突触塑性特征的复杂神经模块已连接以形成分层复制电路。已经使用虚拟电极来从每个模块记录称为电扫描图像的“神经”生成的信号。通过评估二次相位耦合来通过频域方法处理ECHG以确定功能连通性的修改。实验范式旨在描述在开始前,朝向结束之前和在固定频率的外部输入之后描述发生的内容。通过与应用于人类研究的相同信号处理方法进行比较来讨论结果。

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