Wang Sheng-Jun, Xu Xin-Jian, Wu Zhi-Xi, Huang Zi-Gang, Wang Ying-Hai
Institute of Theoretical Physics, Lanzhou University, Lanzhou Gansu 730000, China.
Phys Rev E Stat Nonlin Soft Matter Phys. 2008 Dec;78(6 Pt 1):061906. doi: 10.1103/PhysRevE.78.061906. Epub 2008 Dec 3.
We investigate the influence of efficacy of synaptic interaction on firing synchronization in excitatory neuronal networks. We find spike death phenomena: namely, the state of neurons transits from the limit cycle to a fixed point or transient state. The phenomena occur under the perturbation of an excitatory synaptic interaction, which has a high efficacy. We show that the decrease of synaptic current results in spike death through depressing the feedback of the sodium ionic current. In the networks with the spike death property the degree of synchronization is lower and insensitive to the heterogeneity of neurons. The mechanism of the influence is that the transition of the neuron state disrupts the adjustment of the rhythm of the neurons oscillation and prevents a further increase of the firing synchronization.
我们研究了突触相互作用效能对兴奋性神经元网络放电同步性的影响。我们发现了尖峰死亡现象:即神经元状态从极限环转变为固定点或瞬态。这些现象发生在具有高效能的兴奋性突触相互作用的扰动下。我们表明,突触电流的减少通过抑制钠离子电流的反馈导致尖峰死亡。在具有尖峰死亡特性的网络中,同步程度较低且对神经元的异质性不敏感。其影响机制是神经元状态的转变扰乱了神经元振荡节律的调整,并阻止了放电同步性的进一步增加。