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Patterns of ongoing activity and the functional architecture of the primary visual cortex.

机译:持续活动的模式和主要视觉皮层的功能架构。

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Ongoing spontaneous activity in the cerebral cortex exhibits complex spatiotemporal patterns in the absence of sensory stimuli. To elucidate the nature of this ongoing activity, we present a theoretical treatment of two contrasting scenarios of cortical dynamics: (1) fluctuations about a single background state and (2) wandering among multiple "attractor" states, which encode a single or several stimulus features. Studying simplified network rate models of the primary visual cortex (V1), we show that the single state scenario is characterized by fast and high-dimensional Gaussian-like fluctuations, whereas in the multiple state scenario the fluctuations are slow, low dimensional, and highly non-Gaussian. Studying a more realistic model that incorporates correlations in the feed-forward input, spatially restricted cortical interactions, and an experimentally derived layout of pinwheels, we show that recent optical-imaging data of ongoing activity in V1 are consistent with the presence of either a singlebackground state or multiple attractor states encoding many features.
机译:在没有感觉刺激的情况下,大脑皮层正在进行的自发活动表现出复杂的时空模式。为了阐明这种持续活动的性质,我们提出了两种截然不同的皮质动力学情景的理论方法:(1)关于单个背景状态的波动和(2)在编码单个或多个刺激的多个“吸引者”状态之间徘徊。特征。研究主要视觉皮层(V1)的简化网络速率模型,我们发现单状态场景的特征是快速和高维高斯样波动,而在多状态场景中,波动是慢速,低维和高度波动。非高斯。研究一个更现实的模型,该模型将前馈输入中的相关性,空间受限的皮质交互作用以及风车的实验得出的结果结合起来,我们发现V1中正在进行的活动的最新光学成像数据与单个背景的存在一致状态或编码许多功能的多个吸引子状态。

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