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首页> 外文期刊>The Royal Society Proceedings B: Biological Sciences >Theta oscillations by synaptic excitation in a neocortical circuit model
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Theta oscillations by synaptic excitation in a neocortical circuit model

机译:新皮层回路模型中通过突触激发的θ振荡

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摘要

Neocortical theta-band oscillatory activity is associated with cognitive tasks involving learning and memory. This oscillatory activity is proposed to originate from the synchronization of interconnected layer V intrinsic bursting (IB) neurons by recurrent excitation. To test this hypothesis, a sparsely connected spiking circuit model based on empirical data was simulated using Hodgkin-Huxley-type bursting neurons and use-dependent depressing synaptic connections. In response to a heterogeneous tonic current stimulus, the model generated coherent and robust oscillatory activity throughout the theta-band (4-12 Hz). These oscillations were not, however, self-sustaining without a driving current, and not dependent on N-methyl-D-aspartate receptor synaptic currents. At realistic connection strengths, synaptic depression was necessary to avoid instability and expanded the basin of attraction for theta oscillations by controlling the gain of recurrent excitation. These results support the hypothesis that IB neuron networks can generate robust and coherent theta-band oscillations in neocortex.
机译:新皮质θ带振荡活动与涉及学习和记忆的认知任务有关。提出该振荡活动源自通过反复激励而互连的层V本征爆发(IB)神经元的同步。为了验证该假设,使用Hodgkin-Huxley型爆发神经元和依赖于使用的抑制性突触连接对基于经验数据的稀疏连接尖峰电路模型进行了仿真。响应于不同的强音电流刺激,该模型在整个θ波段(4-12 Hz)产生了连贯且鲁棒的振荡活动。但是,这些振荡在没有驱动电流的情况下不是自持的,也不依赖于N-甲基-D-天冬氨酸受体的突触电流。在实际的连接强度下,必须通过控制递归激发的增益来避免不稳定并通过增加突触凹陷来防止θ振荡。这些结果支持了IB神经元网络可以在新皮层中产生健壮且相干的θ带振荡的假设。

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