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From the Cover: Imaging input and output of neocortical networks in vivo

机译:从封面开始:体内新皮质网络的成像输入和输出

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摘要

Neural activity manifests itself as complex spatiotemporal activation patterns in cell populations. Even for local neural circuits, a comprehensive description of network activity has been impossible so far. Here we demonstrate that two-photon calcium imaging of bulk-labeled tissue permits dissection of local input and output activities in rat neocortex in vivo. Besides astroglial and neuronal calcium transients, we found spontaneous calcium signals in the neuropil that were tightly correlated to the electrocorticogram. This optical encephalogram (OEG) is shown to represent bulk calcium signals in axonal structures, thus providing a measure of local input activity. Simultaneously, output activity in local neuronal populations could be derived from action potential-evoked calcium transients with single-spike resolution. By using these OEG and spike activity measures, we characterized spontaneous activity during cortical Up states. We found that (i) spiking activity is sparse (<0.1 Hz); (ii) on average, only ≈10% of neurons are active during each Up state; (iii) this active subpopulation constantly changes with time; and (iv) spiking activity across the population is evenly distributed throughout the Up-state duration. Furthermore, the number of active neurons directly depended on the amplitude of the OEG, thus optically revealing an input-output function for the local network. We conclude that spontaneous activity in the neocortex is sparse and heterogeneously distributed in space and time across the neuronal population. The dissection of the various signal components in bulk-loaded tissue as demonstrated here will enable further studies of signal flow through cortical networks.
机译:神经活动表现为细胞群体中复杂的时空激活模式。到目前为止,即使对于局部神经回路,也无法全面描述网络活动。在这里,我们证明散装标签组织的两光子钙成像可以解剖大鼠新皮层体内的局部输入和输出活动。除了星形胶质细胞和神经元钙瞬变,我们还发现神经纤维中的自发钙信号与皮层电图紧密相关。该光学脑波图(OEG)显示为代表轴突结构中的大量钙信号,从而提供了局部输入活动的量度。同时,局部神经元种群的输出活动可以源自动作电位诱发的钙瞬变,具有单峰分辨能力。通过使用这些OEG和峰值活动度量,我们表征了皮质上皮状态下的自发活动。我们发现(i)尖峰活动稀疏(<0.1 Hz); (ii)在每个Up状态期间,平均只有约10%的神经元处于活动状态; (iii)这个活跃的亚群会随着时间不断变化; (iv)在整个上州期间,整个人群的突击活动平均分布。此外,活跃神经元的数量直接取决于OEG的幅度,从而从视觉上揭示了本地网络的输入输出功能。我们得出的结论是,新皮层中的自发活动是稀疏的,并且在整个神经元群体中的时空分布不均。如此处所示,对散装组织中各种信号成分的解剖将使进一步研究通过皮质网络的信号流成为可能。

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