吉林大学学报(理学版) ›› 2025, Vol. 63 ›› Issue (3): 915-0923.

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光敏FitzHugh-Nagumo神经元网络中的奇异态

王馨玥, 安新磊, 王小童   

  1. 兰州交通大学 数理学院, 兰州 730070
  • 收稿日期:2024-03-22 出版日期:2025-05-26 发布日期:2025-05-26
  • 通讯作者: 王馨玥 E-mail:wxy075@163.com

Chimera States in Photosensitive FitzHugh-Nagumo Neural Network

WANG Xinyue, AN Xinlei, WANG Xiaotong   

  1. School of Mathematics and Physics, Lanzhou Jiaotong University, Lanzhou 730070, China
  • Received:2024-03-22 Online:2025-05-26 Published:2025-05-26

摘要: 在含有光电管的FitzHugh-Nagumo(FHN)神经元模型基础上, 将电感与光电管串联以构建光敏神经元模型. 首先, 通过数值仿真, 绘制不同耦合强度下网络的时空图和膜电位相位图; 其次, 分别改变神经元外部激励源振幅和光电管输出电压振幅, 计算对应参数下的序参量SI; 最后, 从正态分布中随机选取各神经元外部激励源振幅和光电管输出电压振幅的取值, 构建非全同神经元网络, 改变耦合强度和正态分布标准差并计算对应序参量SI. 结果表明: 在一定参数范围内, 当耦合强度增大时, 网络可从非同步过渡至奇异态, 最终达到完全同步, 适当的振幅取值可扩大奇异态对应的耦合强度区间; 在非全同神经元网络中, 奇异态对应的耦合强度区间与标准差的取值呈正相关.

关键词: 奇异态, FHN神经元模型, 光敏神经元, 同步

Abstract: On the basis of the FitzHugh-Nagumo(FHN) neuron model containing phototubes, we connected the inductors in series with phototubes to construct a photosensitive neuron model. Firstly, we plotted the time-space diagram and membrane potential phase diagram of the network under different coupling strengths by numerical simulation. Secondly, we changed the amplitude of the external excitation source of the neuron and the output voltage amplitude of the phototube separately, and calculated the order parameter SI under the corresponding parameters. Finally, the values of the amplitude of the external excitation source and the output voltage amplitude of the phototube for each neuron were randomly selected from a normal distribution, we constructed a non-all-identical neural network, changed the coupling strength and the standard deviation of the normal distribution, and calculated the corresponding order parameter SI. The results show that, when the coupling strength increases within a certain parameter range, the network can transition from asynchronous to chimera state, and ultimately achieving synchronous. The appropriate value of amplitude can expand the coupling strength interval corresponding to chimera state. In the non-all-identical neuron network, the coupling strength interval corresponding to the chimera state is positively correlated with the value of the standard deviation.

Key words: chimera state, FHN neuron model, photosensitive neuron, synchronization

中图分类号: 

  • O415