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首页> 外文期刊>Physical review, E >Hysteresis, neural avalanches, and critical behavior near a first-order transition of a spiking neural network
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Hysteresis, neural avalanches, and critical behavior near a first-order transition of a spiking neural network

机译:旋转神经网络的一阶转换附近的滞后,神经雪崩和关键行为

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Many experimental results, both in vivo and in vitro, support the idea that the brain cortex operates near a critical point and at the same time works as a reservoir of precise spatiotemporal patterns. However, the mechanism at the basis of these observations is still not clear. In this paper we introduce a model which combines both these features, showing that scale-free avalanches are the signature of a system posed near the spinodal line of a first-order transition, with many spatiotemporal patterns stored as dynamical metastable attractors. Specifically, we studied a network of leaky integrate-and-fire neurons whose connections are the result of the learning of multiple spatiotemporal dynamical patterns, each with a randomly chosen ordering of the neurons.We found that the network shows a first-order transition between a low-spiking-rate disordered state (down), and a high-rate state characterized by the emergence of collective activity and the replay of one of the stored patterns (up). The transition is characterized by hysteresis, or alternation of up and down states, depending on the lifetime of the metastable states. In both cases, critical features and neural avalanches are observed. Notably, critical phenomena occur at the edge of a discontinuous phase transition, as recently observed in a network of glow lamps.
机译:许多实验结果,体内和体外都支持脑皮质在临界点附近运行的想法,同时作为精确的时空模式的储层。然而,基于这些观察结果的机制仍未清楚。在本文中,我们介绍了一种组合这些特征的模型,表明无垢雪崩是一阶转变的旋转线路靠近旋转型转换的系统的签名,其中许多空间图案作为动态稳定吸引物存储。具体而言,我们研究了一个泄漏的整合和火神经元网络,其连接是多种时空动态模式的学习的结果,每个都具有随机选择的神经元的排序。我们发现网络显示了一阶转换低尖峰速率无序状态(下),以及具有集体活动的出现的高速速率以及储存模式之一的重放的高速率状态。转变的特征在于滞后,上下状态的交替,这取决于亚稳态的寿命。在这两种情况下,观察到关键特征和神经雪崩。值得注意的是,正是在不连续阶段转换的边缘发生的临界现象,如最近在发光灯网络中观察到的。

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