School of Power and Energy Engineering, Xi'an Jiaotong University, Xi'an, Shaanxi 710049, China.
State Key Laboratory for Strength and Vibration of Mechanical Structures, School of Aerospace Engineering, Xi'an Jiaotong University, Xi'an 710049, China.
Neural Plast. 2020 Dec 1;2020:8899577. doi: 10.1155/2020/8899577. eCollection 2020.
Both of astrocytes and electromagnetic induction are magnificent to modulate neuron firing by introducing feedback currents to membrane potential. An improved astro-neuron model considering both of the two factors is employed to investigate their different roles in modulation. The mixing mode, defined by combination of period bursting and depolarization blockage, characterizes the effect of astrocytes. Mixing mode and period bursting alternatively appear in parameter space with respect to the amplitude of feedback current on neuron from astrocyte modulation. However, magnetic flux obviously plays a role of neuron firing inhibition. It not only repels the mixing mode but also suppresses period bursting. The mixing mode becomes period bursting mode and even resting state when astrocytes are hyperexcitable. Abnormal activities of astrocytes are capable to induce depolarization blockage to compose the mixing mode together with bursting mode. But electromagnetic induction shows its strong ability of inhibition of neuron firing, which is also illustrated in the bifurcation diagram. Indeed, the combination of the two factors and appropriate choice of parameters show the great potential to control disorder of neuron firing like epilepsy.
星形胶质细胞和电磁感应都可以通过向细胞膜电位引入反馈电流来调节神经元放电。采用一种改进的星形胶质细胞-神经元模型来研究这两种因素在调节中的不同作用。混合模式由周期爆发和去极化阻断的组合定义,表征了星形胶质细胞的作用。在考虑星形胶质细胞调制时,混合模式和周期爆发在神经元反馈电流幅度的参数空间中交替出现。然而,磁通量显然在神经元放电抑制中起着作用。它不仅排斥混合模式,而且抑制周期爆发。当星形胶质细胞过度兴奋时,混合模式变为周期爆发模式,甚至是静息状态。星形胶质细胞的异常活动能够诱导去极化阻断,与爆发模式一起构成混合模式。但是电磁感应显示出其抑制神经元放电的强大能力,这也在分岔图中得到了说明。事实上,这两种因素的结合和适当的参数选择显示出了控制像癫痫这样的神经元放电紊乱的巨大潜力。