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Self-Organized Criticality in Developing Neuronal Networks

机译:发展中的神经网络的自组织临界

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摘要

Recently evidence has accumulated that many neural networks exhibit self-organized criticality. In this state, activity is similar across temporal scales and this is beneficial with respect to information flow. If subcritical, activity can die out, if supercritical epileptiform patterns may occur. Little is known about how developing networks will reach and stabilize criticality. Here we monitor the development between 13 and 95 days in vitro (DIV) of cortical cell cultures (n = 20) and find four different phases, related to their morphological maturation: An initial low-activity state (≈19 DIV) is followed by a supercritical (≈20 DIV) and then a subcritical one (≈36 DIV) until the network finally reaches stable criticality (≈58 DIV). Using network modeling and mathematical analysis we describe the dynamics of the emergent connectivity in such developing systems. Based on physiological observations, the synaptic development in the model is determined by the drive of the neurons to adjust their connectivity for reaching on average firing rate homeostasis. We predict a specific time course for the maturation of inhibition, with strong onset and delayed pruning, and that total synaptic connectivity should be strongly linked to the relative levels of excitation and inhibition. These results demonstrate that the interplay between activity and connectivity guides developing networks into criticality suggesting that this may be a generic and stable state of many networks in vivo and in vitro.
机译:最近的证据表明,许多神经网络表现出自组织的临界性。在这种状态下,活动在时间尺度上是相似的,这对于信息流是有益的。如果处于亚临界状态,则活动可能消失,如果可能出现超临界癫痫样模式。关于发展中的网络将如何达到并稳定临界点,人们知之甚少。在这里,我们监测皮层细胞培养物(n = 20)的体外培养(DIV)在13到95天之间的发展,并发现与它们的形态成熟有关的四个不同阶段:初始的低活性状态(≈19DIV)随后是超临界(≈20DIV),然后是次临界(≈36DIV),直到网络最终达到稳定的临界度(≈58DIV)。使用网络建模和数学分析,我们描述了此类开发系统中紧急连接的动态。基于生理观察,该模型中的突触发育是由神经元的驱动力来调节的,以调节其连接性以达到平均激发速率稳态。我们预测抑制的成熟的特定时间过程,具有强烈的发作和延迟的修剪,总的突触连接性应与激发和抑制的相对水平密切相关。这些结果表明,活动性和连通性之间的相互作用将网络发展为临界状态,表明这可能是体内和体外许多网络的通用和稳定状态。

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