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Spatially structured oscillations in a two-dimensional excitatory neuronal network with synaptic depression

机译:具有突触抑制的二维兴奋性神经元网络中的空间结构振荡

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摘要

We study the spatiotemporal dynamics of a two-dimensional excitatory neuronal network with synaptic depression. Coupling between populations of neurons is taken to be nonlocal, while depression is taken to be local and presynaptic. We show that the network supports a wide range of spatially structured oscillations, which are suggestive of phenomena seen in cortical slice experiments and in vivo. The particular form of the oscillations depends on initial conditions and the level of background noise. Given an initial, spatially localized stimulus, activity evolves to a spatially localized oscillating core that periodically emits target waves. Low levels of noise can spontaneously generate several pockets of oscillatory activity that interact via their target patterns. Periodic activity in space can also organize into spiral waves, provided that there is some source of rotational symmetry breaking due to external stimuli or noise. In the high gain limit, no oscillatory behavior exists, but a transient stimulus can lead to a single, outward propagating target wave.
机译:我们研究具有突触抑制的二维兴奋性神经元网络的时空动力学。神经元种群之间的耦合被认为是非局部的,而抑郁症被认为是局部的和突触前的。我们表明网络支持广泛的空间结构的振荡,这表明在皮层切片实验和体内看到的现象。振荡的具体形式取决于初始条件和背景噪声的水平。给定初始的,在空间上局部的刺激,活动就会演变为周期性地发射目标波的空间局部振荡核心。低水平的噪声会自发地产生一些振荡活动,并通过它们的目标模式进行交互。如果存在由于外部刺激或噪声而导致旋转对称性破裂的某些原因,则空间中的周期性活动也可以组织成螺旋波。在高增益限制下,不存在振荡行为,但是瞬态刺激会导致单个向外传播的目标波。

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  • 年度 2010
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  • 正文语种 {"code":"en","name":"English","id":9}
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