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Co-emergence of multi-scale cortical activities of irregular firing oscillations and avalanches achieves cost-efficient information capacity

机译:不规则点火振荡和雪崩的多尺度皮质活动的共同出现实现了具有成本效益的信息容量

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摘要

The brain is highly energy consuming, therefore is under strong selective pressure to achieve cost-efficiency in both cortical connectivities and activities. However, cost-efficiency as a design principle for cortical activities has been rarely studied. Especially it is not clear how cost-efficiency is related to ubiquitously observed multi-scale properties: irregular firing, oscillations and neuronal avalanches. Here we demonstrate that these prominent properties can be simultaneously observed in a generic, biologically plausible neural circuit model that captures excitation-inhibition balance and realistic dynamics of synaptic conductance. Their co-emergence achieves minimal energy cost as well as maximal energy efficiency on information capacity, when neuronal firing are coordinated and shaped by moderate synchrony to reduce otherwise redundant spikes, and the dynamical clusterings are maintained in the form of neuronal avalanches. Such cost-efficient neural dynamics can be employed as a foundation for further efficient information processing under energy constraint.
机译:大脑消耗大量能量,因此承受强大的选择压力以实现皮质连接和活动方面的成本效益。然而,成本效率作为皮层活动的设计原则很少被研究。特别是,尚不清楚成本效率与普遍观察到的多尺度特性(不规则发射,振荡和神经元雪崩)之间的关系。在这里,我们证明了这些突出的特性可以在通用的,生物学上合理的神经回路模型中同时观察到,该模型捕获了兴奋抑制平衡和突触电导的现实动态。当神经元放电通过适度的同步进行协调和成形以减少其他多余的尖峰时,它们的共现可实现最小的能量消耗以及信息容量上的最大能量效率,并以神经雪崩的形式维持动态聚类。这种具有成本效益的神经动力学可以用作在能量约束下进一步有效信息处理的基础。

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