School of Electrical Engineering and Automation, Tianjin University, Tianjin, China.
Chaos. 2011 Jun;21(2):023133. doi: 10.1063/1.3603818.
This paper investigates vibrational resonance in multi-layer feedforward network (FFN) based on FitzHugh-Nagumo (FHN) neuron model. High-frequency stimuli can improve the input-output linearity of firing rates, especially for the inputs with low firing rate. For FFN network, it is found that high-frequency disturbances play important roles in enhancing the propagation of weak signal through layers. Synfire-enhanced phenomenon of signal propagation is also observed in multi-layers network, when the signal transmission is affected by high-frequency disturbances. Network connections are found to be important for the propagation of weak signal. Besides that, the characteristics of high-frequency stimuli such as heterogeneity and frequency can also modulate the propagation of neural code through layers.
本文研究了基于 FitzHugh-Nagumo(FHN)神经元模型的多层前馈网络(FFN)中的振动共振。高频刺激可以提高发射率的输入-输出线性度,特别是对于低发射率的输入。对于 FFN 网络,发现高频干扰在增强弱信号在层间的传播中起着重要作用。在信号传输受到高频干扰影响时,也观察到多层层网络中信号传播的 Synfire 增强现象。发现网络连接对于弱信号的传播很重要。此外,高频刺激的特性,如异质性和频率,也可以调节神经码通过层的传播。