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Dynamic interlaminar and thalamocortical interaction supported by top-down beta rhythms

机译:自上而下的β节奏支持的动态层间和肌肤互动

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The neocortex, as a great majority of the cerebral cortex, conceals multiple bands of oscillations recorded in local field potentials (LFPs), which are associated with different neural circuits and their corresponding brain functions. Not only are the complex neural connections in this area significant factors in the emergence of the cortical oscillations, but the inputs from the thalamus to the cortex along with cortical projections to dorsal thalamic nuclei and to the thalamic reticular nucleus as a part of the ventral nuclei as well. These cortical oscillations are related to sensory processing, memory, cognition, and motor control. Here, we developed a functional simulation model of the basic thalamocortical - corticothalamic loop architecture with detailed cortical laminar structure and a diverse set of neuron types. Our model generates prominent β oscillations, and demonstrates the role of the time-varying bottom up inputs in the dynamics of β oscillation in different layers of the cortex. Through excitatory top-down β signals, which were strongly modulated based on frontal attentional inputs, two states were also modeled: Attended and Non-Attended.
机译:新皮层,作为大多数大脑皮层的,隐藏记录在局部场电位(个LFP),其与不同的神经电路及其对应的脑功能相关联的振动的多个频带。不仅是在在皮质振荡的出现这一领域显著因素对皮质沿着与皮质突起到背侧丘脑核和丘脑网状核作为腹侧核的部分的复杂的神经连接,但由丘脑的输入为好。这些皮质振荡都与感觉处理,记忆,认知,和电机控制。在这里,我们发展的基本丘脑的功能仿真模型 - 详细的皮质层结构corticothalamic回路架构和一组不同的神经元类型。我们的模型生成突出β振荡,并演示的随时间变化的自底向上的输入中在皮层的不同层β振荡的动力学的作用。通过兴奋自上而下β信号,是经调制的基础上额叶注意力投入强烈,两个国家也仿照:参加和不参加。

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