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Multi-Stability and Pattern-Selection in Oscillatory Networks with Fast Inhibition and Electrical Synapses

机译:具有快速抑制和电突触的振荡网络中的多稳定性和模式选择

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摘要

A model or hybrid network consisting of oscillatory cells interconnected by inhibitory and electrical synapses may express different stable activity patterns without any change of network topology or parameters, and switching between the patterns can be induced by specific transient signals. However, little is known of properties of such signals. In the present study, we employ numerical simulations of neural networks of different size composed of relaxation oscillators, to investigate switching between in-phase (IP) and anti-phase (AP) activity patterns. We show that the time windows of susceptibility to switching between the patterns are similar in 2-, 4- and 6-cell fully-connected networks. Moreover, in a network (N = 4, 6) expressing a given AP pattern, a stimulus with a given profile consisting of depolarizing and hyperpolarizing signals sent to different subpopulations of cells can evoke switching to another AP pattern. Interestingly, the resulting pattern encodes the profile of the switching stimulus. These results can be extended to different network architectures. Indeed, relaxation oscillators are not only models of cellular pacemakers, bursting or spiking, but are also analogous to firing-rate models of neural activity. We show that rules of switching similar to those found for relaxation oscillators apply to oscillating circuits of excitatory cells interconnected by electrical synapses and cross-inhibition. Our results suggest that incoming information, arriving in a proper time window, may be stored in an oscillatory network in the form of a specific spatio-temporal activity pattern which is expressed until new pertinent information arrives.
机译:由通过抑制突触和电突触互连的振荡单元组成的模型或混合网络可以表示不同的稳定活动模式,而无需改变网络拓扑或参数,并且可以通过特定的瞬态信号来诱导模式之间的切换。然而,对于这种信号的性质知之甚少。在本研究中,我们采用由张弛振荡器组成的不同大小的神经网络进行数值模拟,以研究同相(IP)和反相(AP)活动模式之间的切换。我们表明,在2单元,4单元和6单元全连接网络中,模式之间切换的易感性的时间窗口相似。而且,在表示给定AP模式的网络(N = 4,6)中,具有给定配置文件的刺激包括发送到不同亚细胞群的去极化和超极化信号,可以引起切换到另一个AP模式。有趣的是,结果模式编码了切换刺激的轮廓。这些结果可以扩展到不同的网络体系结构。的确,张弛振荡器不仅是细胞起搏器的模型,是突发或尖峰,还类似于神经活动的激发速率模型。我们表明,类似于为弛豫振荡器发现的开关规则适用于通过电突触和交叉抑制互连的兴奋性细胞的振荡电路。我们的结果表明,在适当的时间窗口内到达的传入信息可以以特定的时空活动模式的形式存储在振荡网络中,直到新的相关信息到达为止。

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