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首页> 外文期刊>Nature physics >Self-organized criticality occurs in non-conservative neuronal networks during 'up' states
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Self-organized criticality occurs in non-conservative neuronal networks during 'up' states

机译:自组织的临界状态发生在“保守”状态的非保守神经元网络中

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During sleep, under anaesthesia and in vitro, cortical neurons in sensory, motor, association and executive areas fluctuate between so-called up and down states, which are characterized by distinct membrane potentials and spike rates. Another phenomenon observed in preparations similar to those that exhibit up and down states-such as anaesthetized rats, brain slices and cultures devoid of sensory input, as well as awake monkey cortex-is self-organized criticality (SOC). SOC is characterized by activity -avalanches- with a branching parameter near unity and size distribution that obeys a power law with a critical exponent of about -'3/2. Recent work has demonstrated SOC in conservative neuronal network models, but critical behaviour breaks down when biologically realistic -leaky- neurons are introduced. Here, we report robust SOC behaviour in networks of non-conservative leaky integrate-and-fire neurons with short-term synaptic depression. We show analytically and numerically that these networks typically have two stable activity levels, corresponding to up and down states, that the networks switch spontaneously between these states and that up states are critical and down states are subcritical.
机译:在睡眠期间,在麻醉和体外条件下,感觉,运动,联想和执行区域的皮质神经元在所谓的上下状态之间波动,其特征在于明显的膜电位和峰值频率。在类似于表现出上下状态的制剂中观察到的另一种现象是自组织的临界状态(SOC),这些制剂具有麻醉状态的大鼠,脑切片和缺乏感觉输入的培养物以及清醒的猴皮层。 SOC的特征是活动-雪崩-分支参数接近于单位和大小分布,其服从幂律,其临界指数约为-'3 / 2。最近的工作已经在保守的神经元网络模型中证明了SOC,但是当引入生物学上真实的泄漏神经元时,关键行为就会崩溃。在这里,我们报告在短期突触性抑郁症的非保守性泄漏整合和解雇神经元网络中的强大SOC行为。我们通过分析和数字显示,这些网络通常具有两个稳定的活动级别,分别对应于上状态和下状态,该网络在这些状态之间自发切换,上状态为关键状态而下状态为次临界状态。

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