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Visually Evoked Spiking Evolves While Spontaneous Ongoing Dynamics Persist

机译:自发持续的动态持续存在时,视觉诱发的尖峰会不断演变

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Neurons in the primary visual cortex spontaneously spike even when there are no visual stimuli. It is unknown whether the spiking evoked by visual stimuli is just a modification of the spontaneous ongoing cortical spiking dynamics or whether the spontaneous spiking state disappears and is replaced by evoked spiking. This study of laminar recordings of spontaneous spiking and visually evoked spiking of neurons in the ferret primary visual cortex shows that the spiking dynamics does not change: the spontaneous spiking as well as evoked spiking is controlled by a stable and persisting fixed point attractor. Its existence guarantees that evoked spiking return to the spontaneous state. However, the spontaneous ongoing spiking state and the visual evoked spiking states are qualitatively different and are separated by a threshold (separatrix). The functional advantage of this organization is that it avoids the need for a system reorganization following visual stimulation, and impedes the transition of spontaneous spiking to evoked spiking and the propagation of spontaneous spiking from layer 4 to layers 2–3.
机译:即使没有视觉刺激,初级视觉皮层中的神经元也会自发地突增。尚不清楚由视觉刺激引起的尖峰仅仅是对自发的进行性皮层尖峰动力学的改变,还是自发的尖峰状态消失并被诱发的尖峰替代。这项关于雪貂初级视觉皮层中神经元自发尖峰和视觉诱发尖峰的层状记录研究表明,尖峰动力学没有改变:自发尖峰和诱发尖峰由稳定且持续的定点吸引子控制。它的存在保证了诱发的尖峰返回自发状态。但是,自发的正在进行的峰值状态和视觉诱发的峰值状态在质量上是不同的,并且由阈值(分隔线)隔开。这种组织的功能优势在于,它避免了视觉刺激后对系统进行重组的需要,并阻止了自发尖峰到诱发尖峰的过渡以及自发尖峰从第4层传播到第2-3层。

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