Bifurcation Analysis on Phase-Amplitude Cross-Frequency Coupling in Neural Networks with Dynamic Synapses

被引:8
|
作者
Sase, Takumi [1 ]
Katori, Yuichi [2 ,3 ]
Komuro, Motomasa [4 ]
Aihara, Kazuyuki [1 ,2 ]
机构
[1] Univ Tokyo, Grad Sch Informat Sci & Technol, Tokyo, Japan
[2] Univ Tokyo, Inst Ind Sci, Tokyo, Japan
[3] Future Univ Hakodate, Sch Syst Informat Sci, Hakodate, Hokkaido, Japan
[4] Teikyo Univ Sci, Ctr Fundamental Educ, Uenohara, Yamanashi, Japan
关键词
phase-amplitude cross-frequency coupling; dynamic synapse; excitatory and inhibitory networks; mean field model; bifurcation analysis; MT1SNC bifurcation; discrete-time neuron model; NEOCORTICAL PYRAMIDAL NEURONS; HIPPOCAMPUS IN-VITRO; COINCIDENCE DETECTION; SYNAPTIC DEPRESSION; ASSOCIATIVE MEMORY; THETA-OSCILLATIONS; GAMMA OSCILLATIONS; BEHAVING RAT; BETA RHYTHMS; CORTEX;
D O I
10.3389/fncom.2017.00018
中图分类号
Q [生物科学];
学科分类号
07 ; 0710 ; 09 ;
摘要
We investigate a discrete-time network model composed of excitatory and inhibitory neurons and dynamic synapses with the aim at revealing dynamical properties behind oscillatory phenomena possibly related to brain functions. We use a stochastic neural network model to derive the corresponding macroscopic mean field dynamics, and subsequently analyze the dynamical properties of the network. In addition to slow and fast oscillations arising from excitatory and inhibitory networks, respectively, we show that the interaction between these two networks generates phase-amplitude cross-frequency coupling (CFC), in which multiple different frequency components coexist and the amplitude of the fast oscillation is modulated by the phase of the slow oscillation. Furthermore, we clarify the detailed properties of the oscillatory phenomena by applying the bifurcation analysis to the mean field model, and accordingly show that the intermittent and the continuous CFCs can be characterized by an aperiodic orbit on a closed curve and one on a torus, respectively. These two CFC modes switch depending on the coupling strength from the excitatory to inhibitory networks, via the saddle-node cycle bifurcation of a one-dimensional torus in map (MT1SNC), and may be associated with the function of multi-item representation. We believe that the present modelmight have potential for studying possible functional roles of phase-amplitude CFC in the cerebral cortex.
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页数:19
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