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Self-organization of synchronous activity propagation in neuronal networks driven by local excitation

机译:局部激发驱动神经元网络中同步活动传播的自组织

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Many experimental and theoretical studies have suggested that the reliable propagation of synchronous neural activity is crucial for neural information processing. The propagation of synchronous firing activity in so-called synfire chains has been studied extensively in feed-forward networks of spiking neurons. However, it remains unclear how such neural activity could emerge in recurrent neuronal networks through synaptic plasticity. In this study, we investigate whether local excitation, i.e., neurons that fire at a higher frequency than the other, spontaneously active neurons in the network, can shape a network to allow for synchronous activity propagation. We use two-dimensional, locally connected and heterogeneous neuronal networks with spike-timing dependent plasticity (STDP). We find that, in our model, local excitation drives profound network changes within seconds. In the emergent network, neural activity propagates synchronously through the network. This activity originates from the site of the local excitation and propagates through the network. The synchronous activity propagation persists, even when the local excitation is removed, since it derives from the synaptic weight matrix. Importantly, once this connectivity is established it remains stable even in the presence of spontaneous activity. Our results suggest that synfire-chain-like activity can emerge in a relatively simple way in realistic neural networks by locally exciting the desired origin of the neuronal sequence.
机译:许多实验和理论研究表明,同步神经活动的可靠传播对于神经信息处理至关重要。在尖峰神经元的前馈网络中,广泛研究了同步发射活动在所谓的合成点火链中的传播。但是,尚不清楚这种神经活动如何通过突触可塑性在复发性神经元网络中出现。在这项研究中,我们调查了局部激发(即以比网络中其他自发活跃神经元更高的频率激发的神经元)是否可以塑造网络以允许同步活动传播。我们使用二维的,局部连接的和异构的神经元网络,具有与尖峰时序相关的可塑性(STDP)。我们发现,在我们的模型中,局部激励在几秒钟内驱动了深刻的网络变化。在紧急网络中,神经活动通过网络同步传播。此活动源自本地激发的位置,并通过网络传播。即使取消了局部激励,同步活动传播仍会持续,因为它源自突触权重矩阵。重要的是,一旦建立了这种连通性,即使在自发活动的存在下,它也保持稳定。我们的结果表明,通过实际激发神经元序列的所需来源,可以在现实的神经网络中以相对简单的方式出现synfire链状活动。

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